US3589578A - Tension-relieving device for stretchable sheet material - Google Patents
Tension-relieving device for stretchable sheet material Download PDFInfo
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- US3589578A US3589578A US792254*A US3589578DA US3589578A US 3589578 A US3589578 A US 3589578A US 3589578D A US3589578D A US 3589578DA US 3589578 A US3589578 A US 3589578A
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- Prior art keywords
- speed
- roller
- measuring
- drive
- web
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H23/00—Registering, tensioning, smoothing or guiding webs
- B65H23/04—Registering, tensioning, smoothing or guiding webs longitudinally
- B65H23/18—Registering, tensioning, smoothing or guiding webs longitudinally by controlling or regulating the web-advancing mechanism, e.g. mechanism acting on the running web
- B65H23/188—Registering, tensioning, smoothing or guiding webs longitudinally by controlling or regulating the web-advancing mechanism, e.g. mechanism acting on the running web in connection with running-web
- B65H23/1888—Registering, tensioning, smoothing or guiding webs longitudinally by controlling or regulating the web-advancing mechanism, e.g. mechanism acting on the running web in connection with running-web and controlling web tension
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06H—MARKING, INSPECTING, SEAMING OR SEVERING TEXTILE MATERIALS
- D06H3/00—Inspecting textile materials
- D06H3/02—Inspecting textile materials visually
- D06H3/04—Inspecting textile materials visually wherein the material is supported on a table
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10S—TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10S242/00—Winding, tensioning, or guiding
- Y10S242/908—Fluid treatment or handling
Definitions
- a feed roller In apparatus for advancing a knitted fabric or other stretchable web material, preferably toward a lengthmeasuring device, a feed roller is drivingly engageable with the material and there are material guide means so arranged as to cause the travelling material to form a shallow sagging portion.
- the feed roller is driven by speed-controllable drive COUNTER TENSlON-RELIEYING DEVICE FOR STRETCHABLE SHEET MATERIAL
- My invention relates to length measuring or other apparatus for handling of stretchable web, sheet or tape material, particularly textile fabrics.
- the invention concerns a tension-relieving device for stretchable material, particularly knitted textile fabrics, which is equipped with at least one driven feed roller whose effective feeding speed is regulated in response to the amount of sag occurring in an upwardly and downwardly limited shallow sagging portion of the travelling material.
- Tension-relieving devices of this general type are required in conjunction with measuring machines by the German calibrating standards issued Apr. 14, 1965, which in Section 77, paragraph 2, second sentence, 77The measuring Zmust be provided with a device (tension-relieving device) which takes care of having the material to be measured supplied to the measuring mechanism in a substantially relaxed condition.”
- This known device is not suitable for use with stretchable material, especially knitted fabrics, because the contact engagement of the feeler contact with the travelling material imposes mechanical stress upon the material, and the regulation of the slip retards the feeding travel of the material.
- tension-relieving device operating without the necessity of making contact with the material.
- the feeding speed of the material being measured is regulated by permitting the formation of a long and deep sagging portion which cooperates with two photoelectrical devices whose respective optical paths extend in the longitudinal direction of the travelling sheet of fabric.
- a device of the latter type cannot be used for sensitive material on account of the great amount of sag required by the minimum spacing needed between the two photoelectrical systems. Such a large amplitude of sag may cause lateral deflection of the travelling sheet of material as well as the formation of folds, aside from the fact that the volumetric weight of the sagging portion causes the material to be lengthened by its own gravity.
- a tension-relieving device which secures feeding a material sensitive in the above-mentioned respect, such as knitted fabrics, to a length-measuring unit without encountering mechanical stress, lateral departure from the desired path of travel, formation of holes, or lengthening of the material being measured.
- l regulate the feeding and travel speed of the stretchable material entering into the operating range of the measuring device, by varying the rotating speed of the feed roller, and for this purpose have the magnitude of the above-mentioned sag determined between an upper and a lower limit value by proximity-res onsi 'e sensor means which thus operate without contacting the travelling material and respond at least to one of the two limits of sag, preferably at least to the upper limit value.
- the response of the proximity sensor means is applied to a control system which affects the driving speed of the feed roller, thus regulating the feeding travel in the sense required to maintain the material at the length-measuring locality free of appreciable tension.
- the drive for the feed roller according to the invention is preferably provided with clutch or coupling means through which the sensing device, when responding to the upper limit value of sag, is effective to control the feed roller to increase the feeding speed, while switching the feed roller back to lagging speed when the lower limit value is reached.
- the switching of the feed roller to lagging speed is preferably also effected under control by the proximity sensor means. However, such switching of the feed roller to lagging speed may also be controlled by a presettable timing mechanism.
- the sensor device is constituted by a distance regulator for maintaining the surface of the sagging portion of material between a given maximum and a given minimum spacing.
- a distance regulator may consist of a known and commercially available device operating on a photoelectrical principle. Also available are ultrasonic devices and other proximity-type sensors capable of performing the desired regulation of spacing without contact engagement with the travelling material.
- the measuring device is built into a display-type measuring machine with a forward and reverse drive, a driven pulloff or withdrawal roller being provided downstream of the measuring device seen in the forward travel direction of the web material.
- the rotating speed of the withdrawal roller is controlled by second sensor means which respond to a second shallow sagging portion of the material.
- the withdrawal roller is connected with its drive through transmission means which are under control by the second sensor so that when this sensor responds to the upper or lower limit value of sag, it will switch the withdrawal roller to leading or lagging speed.
- a satisfactory tension relief in both travel directions of the web material is secured by changing the switching point at which the sensor system changes between leading and lagging speeds, this change in setting being controlled by a switching device coupled with the drive controls that selectively set the machine for forward and reverse run of the web material.
- the point of response of each sensing system is automatically 7 reset for reverse travel of the web material so as to differ from the critical triggering point obtaining during forward travel.
- apparatus according to the invention may exhibit an undesirably high switching frequency.
- 1 provide the system with means which, during forward travel of the web material, delay the moment at which the feed roller is
- FIG. 1 shows schematically a lateral elevation of the machine and FIG. 2 is a schematic diagram of the appertaining drive controls.
- the illustrated machine is equipped with a measuring roller 1 and a conventional measuring head 1A having a measuring wheel 1a (FIG. 2), a printing band of rubber, and a counting mechanism lb (FIG. 2).
- the web material is taken from a supply roll SR and, after passing through the measuring means of the machine, is rolled up on a takeup roll TR.
- the travel movement of the web material from the supply SR to the takeup TR is effected with the aid of a feed roller 2 and a pulloff or withdrawal roller 3, both driven from the measuring roller 1 through controllable transmissions.
- the path of the web material through the machine is further determined by auxiliary guide rollers which freely rotate about their respective axes due to their engagement with the travelling web material.
- rollers 12 Some of the guide rollers are denoted in FIG, 1 by 7, 8, 9, l2 and 13.
- the roller 12 isjournaled on a slider 14 which can be shifted upwardly or downwardly, such as to the psitlon of roller 12 shown by broken lines at 12'.
- the material 6 is visible from the right of the machine as shown in H6. 1, thus displaying the material as it is being measured and is imprinted along its edge with lndlcla oilength.
- a sensing device 4 is located between the feed roller 2 and the measuring roller l, and another sensin device 5 is located between the measuring roller 1 and the withdrawal roller 3. Ea h of the two sensing devices 4 and 5 is mounted above the web mat rial 6 be ng measured. Both sensing devices 4 and 5 are of the proximity type; that is, they operate without bodily engaging the material 6 and may be constituted by conventional optical measuring devi es based on photoelectronlc or ultrasonic principles However, other measuring or sensing devices that operate without conta t can also be used for the purpos of this invention.
- the rate of travel or the material 6 is primarily determined by the rotary speed of the measuring roller 1. Between the feed roller 2 and a subsequent guide roller 7 h tr v lling material forms a shallow sagg ng portion bel w the sensing device t.
- shallow sag occurs bel w h s n i g device 5 between the two guide rollers t3 and 9 preceding the withdrawal roller- 3-
- shallow agging portion is meant a loo wherein the spacing of the lowest po n fr m a plan ang ntial to both of the two rollers b tween wh h the l p is suspended, varies between about 5 mm and about 80 mm, the amount of sag being dependent upon the m t al pa ing of the two rollers between which the loop is s p n ed, a well as upon the properties o the ma erial 6, s ch as i s st ength and volumetric wcighb
- Each of the two sensing devices 4 and 5 has an upper and a lower switching or trigger point corre ponding respec iv ly to a minimum and maximum spa ing rom the surface f t e material a being measured, and hence to respe
- th feed roller is driven from the measuring rol 1 and tha the transmission between these two rollers contains a coupling or similar control means which permits swit hing t e fee roller to a leading or lagging sa es relati e to he ate web tra el speed that corresponds to the peripheral spee of he measuring roller 1.
- the transmission between rollers 1 and 2 includes a suitable speed change mechanism that permits to selectively drive the feed roller 2 at a slightly faster speed and at a slightly lower speed respectively than'corresponds to the accurate web travel speed desired.
- FIG. 2 shows the feed roller 2 driven from a sheave 1c on the shaft of the measuring roller 1 which receives its driving power from an electric motor M.
- the sheave 1c is connected with a belt sheave 21 by an endless belt or chain 20.
- the sheave 21 is mounted on the input shaft of a speed change mechanism 22 whose speed control member is diagrammatically represented by a lever that can be tilted to the fast or slow position with the aid of respective electromagnet coils F2 and S2.
- the coils F2 and S2 are energized from a suitable current source 24 under control by respective time delay relays 25 which in turn are energized by switching pulses through respective amplifiers 26 from the outputs of a flip-flop circuit 27.
- the flip-flop circuit 27 is controlled by the output of a controllable amplifier stage 28 whose input circuit is connected to the sensor 4.
- the control of the amplifier 28 is offectcd by means of a control circuit 29 for the purpose of selectively setting the point of response at which the sensor will trigger the flip-flop 27 to issue an energizing pulse to the proper relay 25 which then supplies a switching pulse to the coil F2 or S2 in order to shift the speed change mechanism 22 from its previously obtaining state to the other state, i.e. from faster to slower or conversely from slower to faster rotation of the feed roller 2.
- the withdrawal roller is driven from the sheave 10 on the shaft of the measuring roller 1, or from a corresponding second sheave on the same shaft, through an endless belt 30 which engages a sheave 31 on the input shaft of a second speed change coupling or mechanism 32 whose output shaft drives the withdrawal roller 3.
- the control member 33 is positlonally controlled by two elcctromagnet coils F3 and S3.
- Coil F3 is connected to a current source 34 under control by a time delay relay 35 which receives energizing pulses from an amplifier 36.
- This amplifier is shown connected to only one of the two outputs of a flip-flop 37 which receives controlling signals from a controllable amplifier stage 38 whose input circuit is connected to the second sensor 5 and which has a control circuit 39 for selectively setting the point of response.
- the second control coil 53 of the speed change transmission for the withdrawal roller 3 may be designed in the same manner as the one described above with reference to the coil 52, the example shown in FlG. 2 has the coil S3 energized from a current source 40 under control by a timer 4!, This will be explained hereinafter.
- the above-described setting of the amplifier stage 28 is controlled by having its control circuit 29 energized from a source 50 of adjustable voltage under control by an auxiliary contact d2 of a contactor or switch l C whose main contacts 43 and 44, when closed, connect the drive motor M of the measuring roller 1 to the current supply with the polarity required for forward travel of the web materiel.
- the control circuit 39 of the amplifier 35% is energized from the source 50 of adjustable voltage through an auxiliary contact 45 of a contactor or switch RC whose main contacts 46 and 47 are closed when the motor M is to run the machinery in the reverse direction.
- the degree of sag in the slightly sagging portion of the web material continually varies between the upper and lower limit values thus causing the sow sor i to switch the feed roller 2 alternately t leading and lagging speed
- the feed roller g is switched by the controllable transmission means to run at th faster speed. Consequently, the web surface now moves away from the, upper limit value so that the degree of 5 1; insrbssesi
- the sensor it switches the driving transmission of feed roller 2 to the lagging speed so that the web surface again commences to approach the upper limit value.
- the sensor 5, operating in the same manner as the sensor 4, is not necessarily required for calibratable measuring operation during forward travel of the web material, but offers the advantage of winding the measured materialupon the takeup roller TR with a regulated tension.
- the control system which connects the sensor 5 with the two-speed transmission between the measuring roller 1 and the withdrawal roller 3 has the effect that the withdrawal roller 3 is switched to'lagging speed when the upper limit value of sag is reached and is switched to leading speed when the lower limit value is reached.
- the occurring frequency of switching between faster and slower speeds may be found excessive in which case it is desirable to provide means for delaying the switching of the feed roller 2 from the faster to the slower speed.
- the switching of the withdrawal roller toward leading (faster) speed can be delayed.
- Applicable for the purpose of such delay are timedelay relays or any other suitable timing circuits or mechanisms.
- the relays 25 and 35 are preferably of the time-delay type.
- a corresponding time delay is embodied in the timer ll.
- control operation relates to the forward travel of the web material 6 to be measured.
- display-type machines which permit reversing the rotational direction of all driven rollers, it is necessary to provide for reverse travel of the web material.
- the second sensor 5 is a prerequisite for achieving a sufficient relief of tension in the web material during reverse travel.
- the sensor 5 is now active to act as the tension-relieving device which precedes the measuring roller l in the travel direction, whereas the roller 2 now operates as the withdrawal roller and the sensor 4 takes care of regulating the tension in the material behind the measuring roller 1 as it iswound onto the takeup roll now constituted by the roller SR.
- the switching of the feed roller 2 from leading to lagging speed is primarily controlled by the sensor 4.
- control may also be effected with the aid of a presettable timing mechanism in which case the sensing system exhibits only one switching point and responds only, to the upper limit value of sag.
- the timing mechanism is to be preset in dependence upon the travel speed of the web material in such a manner that the surface of the web material has at least approximately attained the lower limit value within the duration of the faster, leading speed and hence before the timing mechanism switches the feed roller 2 to the lower, lagging speed.
- An analogous modification is also applicable to the second tension-relieving device located downstream of the measuring roller 1 and related to the withdrawal roller and the sensor 5.
- timer 41 in FIG. 2 which is assumed to be set manually in accordance with the web travel speed observed on a speed indicator, although it will be understood that an automatic setting of the timer in response to the travel speed or changes thereof is likewise applicable. It should also be understood that it is preferred to employ the same type of control system for both sensors 4 and 5, the one shown for sensor 4 being considered more advantageous in most cases.
- apparatus according to the invention afford the possibility of applying a tension relief to stretchable material, particularly to knitted textile fabrics, to an extent heretofore not attained and in a particularly uniform and satisfactory manner.
- apparatus for advancing a knitted fabric or other stretchable web material comprising a roller drivingly engageable with the material for imparting advancing travel to the material, material guide means spaced from said roller in the travel direction and arrangedto cause formation of a shallow sagging portion of the travelling material, the combination of means for relieving tension in said travelling material comprising controllable drive means connected to'said roller, speed control means connected to said drive means and having a proximity sensor arranged for out-of-contact response to said sagging portion of material and responsive to at least one of given lower and upper limits of said respectively, said drive means being speed controlled by said sensor response to regulate thespeed of said roller for substantially tension-free advance of the material, said drive means comprising a speed change transmission drivingly connected with said roller and having two selective speeds above and below respectively the desired travel speed of the material, said speed change transmission being set by said speed control means to the leading speed when said sensor responds to said upper limit of sag and being set to the lagging speed when said lower limit of sag is reached, said
- said speed change transmission having two speed-setting means which are both in connection with said sensor so that said setting to lagging speed is also controlled by response of said sensor.
- said proximity sensor being responsive to given respective maximum and minimum distances from the surface of the web material in said sagging portion, whereby said speed control means operate substantially as a distance regulator.
- a feed roller drivingly engageable with the material for passing the material to said measuring means, and material guide means arranged to cause formation of a shallow sagging portion of the travelling material
- means for relieving tension in said travelling material comprising controllable drive means connected to said feed roller, speed control means connected to said drive means and having a proximity sensor arranged for out-of-contact response to said sagging portion of material and being responsive to at least one of given lower and upper limits of sag respectively, said drive control means being intermittently controllable by said sensor response to vary the speed of said roller between leading and lagging speed magnitudes for substantially tensionfree advance of the material to said measuring means
- said measuring means comprising a measuring roller engageable with the web material downstream of said feed roller and having a main drive, said drive means for said feed roller being connected with said main drive, and said drive control means being connected to said feed roller drive so as to vary the feed roller peripheral speed between respective values above and below the peripheral speed of said
- said speed control means comprising time delay means for delaying the switching of said feed roller to the lagging speed and the switching of said withdrawal roller to the leading speed during forward travel of the web material.
- said main drive comprising selective reversing means for causing the web material to travel in the forward and reverse direction respectively, and switching means connected to said speed control means for shifting the points of response of said sensors at which said rollers switch between leading and lagging speeds, said switching means being coupled with said reversing means so as to be effective when said main drive is switched to reverse travel of the web material.
- Apparatus according to claim 4 comprising two blow devices mounted at respective localities beneath said two sagging portions of the web material for partially compensating the weight of said web portions.
- apparatus for advancing a knitted fabric or other stretchable web material comprising a roller drivingly engageable with the material for imparting advancing travel to the material, material guide means spaced from said roller in the travel direction and arranged to cause formation of a shallow sagging portion of the travelling material, the combination of means for relieving tension in said travelling material comprising controllable drive means connected to said roller, speed control means connected to said drive means and having a proximity sensor arranged for out-of-contact response to said sagging portion of material and responsive to at least one of given lower and upper limits of sag respectively, said drive means being speed controlled by said sensor response to regulate the speed of said roller for substantially tension-free advance of the material, and a blow device mounted beneath the sagging portion of the web material for partially compensating the weight of said web portion.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Materials Engineering (AREA)
- Textile Engineering (AREA)
- Controlling Rewinding, Feeding, Winding, Or Abnormalities Of Webs (AREA)
- Treatment Of Fiber Materials (AREA)
Abstract
In apparatus for advancing a knitted fabric or other stretchable web material, preferably toward a length-measuring device, a feed roller is drivingly engageable with the material and there are material guide means so arranged as to cause the travelling material to form a shallow sagging portion. The feed roller is driven by speed-controllable drive means whose speed control is subject to response of a proximity sensor disposed near to but out of contact with the sagging portion of material and responsive to at least one of given lower and upper limits of sag respectively. The speed control operates intermittently to vary the speed of the feed roller between leading and lagging speed magnitudes for substantially tension-free advance of the material.
Description
United States Patent 72] Inventor Erich Kamphausen Rbeydl, Germany [21] Appl. No. 792,254 [22] Filed Jan.2l, 1969 [45] Patented June 29, 1971 [73] Assignee A. Moniorts Monchengladbach, Germany [32] Priority Jan. 20, 1968 {33] Germany [31] P 16 38 082.8
[54] TENSION-RELIEVING DEVICE FOR S'I'RETCHABLE SHEET MATERIAL 8 Claims, 2 Drawing Figs.
[52] US. Cl ,[50] Field of Search [56] References Cited UNITED STATES PATENTS 2,115,737 5/1938 Menschner iililr,
2,707,254 4/1955 Newman 226/30 X 2,877,397 3/1959 Poschner.... 226/42 X 3,240,411 3/1966 Zarleng 226/42 Primary Examiner-Richard A. Schacher An0meys-Cuit M. Avery, Arthur E. Wilfond, Herbert L.
Lerner and Daniel J. Tick ABSTRACT: In apparatus for advancing a knitted fabric or other stretchable web material, preferably toward a lengthmeasuring device, a feed roller is drivingly engageable with the material and there are material guide means so arranged as to cause the travelling material to form a shallow sagging portion. The feed roller is driven by speed-controllable drive COUNTER TENSlON-RELIEYING DEVICE FOR STRETCHABLE SHEET MATERIAL My invention relates to length measuring or other apparatus for handling of stretchable web, sheet or tape material, particularly textile fabrics. In a more particular aspect, the invention concerns a tension-relieving device for stretchable material, particularly knitted textile fabrics, which is equipped with at least one driven feed roller whose effective feeding speed is regulated in response to the amount of sag occurring in an upwardly and downwardly limited shallow sagging portion of the travelling material.
Tension-relieving devices of this general type are required in conjunction with measuring machines by the German calibrating standards issued Apr. 14, 1965, which in Section 77, paragraph 2, second sentence, 77The measuring Zmust be provided with a device (tension-relieving device) which takes care of having the material to be measured supplied to the measuring mechanism in a substantially relaxed condition."
It is known to provide a device for longitudinally measuring the length of textile sheet material in an elongation-free condition, with a pulloff (withdrawal) roller and a pair of feed rollers. In this device, the feeding speed of the material is controlled by regulating the amount of slip between feed roller and the fabric, the regulation being controlled with the aid of an electric contact arranged closely beneath the tangential plane common to the rollers (German Pat. No. 672,479).
This known device is not suitable for use with stretchable material, especially knitted fabrics, because the contact engagement of the feeler contact with the travelling material imposes mechanical stress upon the material, and the regulation of the slip retards the feeding travel of the material.
Further known is a tension-relieving device operating without the necessity of making contact with the material. In this device the feeding speed of the material being measured is regulated by permitting the formation of a long and deep sagging portion which cooperates with two photoelectrical devices whose respective optical paths extend in the longitudinal direction of the travelling sheet of fabric.
A device of the latter type cannot be used for sensitive material on account of the great amount of sag required by the minimum spacing needed between the two photoelectrical systems. Such a large amplitude of sag may cause lateral deflection of the travelling sheet of material as well as the formation of folds, aside from the fact that the volumetric weight of the sagging portion causes the material to be lengthened by its own gravity.
None of the tension-relieving devices known for purposes of the above-described kind affords a satisfactory tension relief without undue trouble in cases where it is desired to apply a length-measuring operation to lightweight and stretchable knitted fabrics sensitive to mechanical stresses, as are increasingly produced in modern textile industries.
It is an object of my invention to afford a satisfactory measuring or similar handling of stretchable material which not only satisfies the exacting requirements of the above-mentioned standards but also minimizes or obviates the abovementioned difficulties and shortcomings encountered with the tension-relieving devices heretofore available.
More specifically, it is an object of my invention to devise a tension-relieving device which secures feeding a material sensitive in the above-mentioned respect, such as knitted fabrics, to a length-measuring unit without encountering mechanical stress, lateral departure from the desired path of travel, formation of holes, or lengthening of the material being measured.
To this end, and in accordance with a feature of my invention, l regulate the feeding and travel speed of the stretchable material entering into the operating range of the measuring device, by varying the rotating speed of the feed roller, and for this purpose have the magnitude of the above-mentioned sag determined between an upper and a lower limit value by proximity-res onsi 'e sensor means which thus operate without contacting the travelling material and respond at least to one of the two limits of sag, preferably at least to the upper limit value. The response of the proximity sensor means is applied to a control system which affects the driving speed of the feed roller, thus regulating the feeding travel in the sense required to maintain the material at the length-measuring locality free of appreciable tension.
By such avoidance of tension due to speed regulation of the feed roller, the occurrence of slippage between feed roller and work material and hence a corresponding retardation in travel is avoided; due to the slight weight of the web portion which forms the shallow sagging loop, any lengthening of the web due to gravity in the sagging portion remains insignificant, and a lateral departure from the desired path is obviated; since further the sensing is effected without contact engagement between sensor and material, no mechanical stress is imposed by the sensing device upon the travelling material.
In order to secure a satisfactory regulation of the feeding speed, the drive for the feed roller according to the invention is preferably provided with clutch or coupling means through which the sensing device, when responding to the upper limit value of sag, is effective to control the feed roller to increase the feeding speed, while switching the feed roller back to lagging speed when the lower limit value is reached.
The switching of the feed roller to lagging speed is preferably also effected under control by the proximity sensor means. However, such switching of the feed roller to lagging speed may also be controlled by a presettable timing mechanism.
According to another feature of the invention, the sensor device is constituted by a distance regulator for maintaining the surface of the sagging portion of material between a given maximum and a given minimum spacing. Such a distance regulator may consist of a known and commercially available device operating on a photoelectrical principle. Also available are ultrasonic devices and other proximity-type sensors capable of performing the desired regulation of spacing without contact engagement with the travelling material.
According to a particularly favorable embodiment of the invention, the measuring device is built into a display-type measuring machine with a forward and reverse drive, a driven pulloff or withdrawal roller being provided downstream of the measuring device seen in the forward travel direction of the web material. According to the invention, the rotating speed of the withdrawal roller is controlled by second sensor means which respond to a second shallow sagging portion of the material. The withdrawal roller is connected with its drive through transmission means which are under control by the second sensor so that when this sensor responds to the upper or lower limit value of sag, it will switch the withdrawal roller to leading or lagging speed.
According to a further feature of the invention, a satisfactory tension relief in both travel directions of the web material is secured by changing the switching point at which the sensor system changes between leading and lagging speeds, this change in setting being controlled by a switching device coupled with the drive controls that selectively set the machine for forward and reverse run of the web material. As a result, the point of response of each sensing system is automatically 7 reset for reverse travel of the web material so as to differ from the critical triggering point obtaining during forward travel.
In some cases apparatus according to the invention may exhibit an undesirably high switching frequency. To avoid this, and in accordance with still another feature of the invention, 1 provide the system with means which, during forward travel of the web material, delay the moment at which the feed roller is The above-mentioned objects, advantages and features of my invention, said features being set forth with particularity in the claims annexed hereto, will be apparent from, and will be described in, the following with reference to an embodiment of a display-type measuring machine for textile web material illustrated by way of example on the accompanying drawing in which:
PK]. 1 shows schematically a lateral elevation of the machine and FIG. 2 is a schematic diagram of the appertaining drive controls.
The illustrated machine is equipped with a measuring roller 1 and a conventional measuring head 1A having a measuring wheel 1a (FIG. 2), a printing band of rubber, and a counting mechanism lb (FIG. 2). The web material is taken from a supply roll SR and, after passing through the measuring means of the machine, is rolled up on a takeup roll TR. The travel movement of the web material from the supply SR to the takeup TR is effected with the aid of a feed roller 2 and a pulloff or withdrawal roller 3, both driven from the measuring roller 1 through controllable transmissions. The path of the web material through the machine is further determined by auxiliary guide rollers which freely rotate about their respective axes due to their engagement with the travelling web material. Some of the guide rollers are denoted in FIG, 1 by 7, 8, 9, l2 and 13. The roller 12 isjournaled on a slider 14 which can be shifted upwardly or downwardly, such as to the psitlon of roller 12 shown by broken lines at 12'. Between rollers 12 and 13 the material 6 is visible from the right of the machine as shown in H6. 1, thus displaying the material as it is being measured and is imprinted along its edge with lndlcla oilength.
A sensing device 4 is located between the feed roller 2 and the measuring roller l, and another sensin device 5 is located between the measuring roller 1 and the withdrawal roller 3. Ea h of the two sensing devices 4 and 5 is mounted above the web mat rial 6 be ng measured. Both sensing devices 4 and 5 are of the proximity type; that is, they operate without bodily engaging the material 6 and may be constituted by conventional optical measuring devi es based on photoelectronlc or ultrasonic principles However, other measuring or sensing devices that operate without conta t can also be used for the purpos of this invention.
The rate of travel or the material 6 is primarily determined by the rotary speed of the measuring roller 1. Between the feed roller 2 and a subsequent guide roller 7 h tr v lling material forms a shallow sagg ng portion bel w the sensing device t. An ther shallow sag occurs bel w h s n i g device 5 between the two guide rollers t3 and 9 preceding the withdrawal roller- 3- By shallow agging portion is meant a loo wherein the spacing of the lowest po n fr m a plan ang ntial to both of the two rollers b tween wh h the l p is suspended, varies between about 5 mm and about 80 mm, the amount of sag being dependent upon the m t al pa ing of the two rollers between which the loop is s p n ed, a well as upon the properties o the ma erial 6, s ch as i s st ength and volumetric wcighb Each of the two sensing devices 4 and 5 has an upper and a lower switching or trigger point corre ponding respec iv ly to a minimum and maximum spa ing rom the surface f t e material a being measured, and hence to respe tive maxim m and minimum limits of in p actice, the s it h g d stance distance between the upper and the lower swi ching points corresponds to a spacing difference of about l5 from the surface cfthe material 6.
Referring now to the schematic diagram or the dri controls shown for esplanatory purposes and by way of example in l lfiit 2 of the drawing, it will be remcmb that th feed roller is driven from the measuring rol 1 and tha the transmission between these two rollers contains a coupling or similar control means which permits swit hing t e fee roller to a leading or lagging sa es relati e to he ate web tra el speed that corresponds to the peripheral spee of he measuring roller 1. In other words, the transmission between rollers 1 and 2 includes a suitable speed change mechanism that permits to selectively drive the feed roller 2 at a slightly faster speed and at a slightly lower speed respectively than'corresponds to the accurate web travel speed desired. Accordingly, FIG. 2 shows the feed roller 2 driven from a sheave 1c on the shaft of the measuring roller 1 which receives its driving power from an electric motor M. The sheave 1c is connected with a belt sheave 21 by an endless belt or chain 20. The sheave 21 is mounted on the input shaft of a speed change mechanism 22 whose speed control member is diagrammatically represented by a lever that can be tilted to the fast or slow position with the aid of respective electromagnet coils F2 and S2. The coils F2 and S2 are energized from a suitable current source 24 under control by respective time delay relays 25 which in turn are energized by switching pulses through respective amplifiers 26 from the outputs of a flip-flop circuit 27. The flip-flop circuit 27 is controlled by the output of a controllable amplifier stage 28 whose input circuit is connected to the sensor 4. The control of the amplifier 28 is offectcd by means of a control circuit 29 for the purpose of selectively setting the point of response at which the sensor will trigger the flip-flop 27 to issue an energizing pulse to the proper relay 25 which then supplies a switching pulse to the coil F2 or S2 in order to shift the speed change mechanism 22 from its previously obtaining state to the other state, i.e. from faster to slower or conversely from slower to faster rotation of the feed roller 2.
Analogously, the withdrawal roller is driven from the sheave 10 on the shaft of the measuring roller 1, or from a corresponding second sheave on the same shaft, through an endless belt 30 which engages a sheave 31 on the input shaft of a second speed change coupling or mechanism 32 whose output shaft drives the withdrawal roller 3. The control member 33 is positlonally controlled by two elcctromagnet coils F3 and S3. Coil F3 is connected to a current source 34 under control by a time delay relay 35 which receives energizing pulses from an amplifier 36. This amplifier is shown connected to only one of the two outputs of a flip-flop 37 which receives controlling signals from a controllable amplifier stage 38 whose input circuit is connected to the second sensor 5 and which has a control circuit 39 for selectively setting the point of response. While the second control coil 53 of the speed change transmission for the withdrawal roller 3 may be designed in the same manner as the one described above with reference to the coil 52, the example shown in FlG. 2 has the coil S3 energized from a current source 40 under control by a timer 4!, This will be explained hereinafter.
The above-described setting of the amplifier stage 28 is controlled by having its control circuit 29 energized from a source 50 of adjustable voltage under control by an auxiliary contact d2 of a contactor or switch l C whose main contacts 43 and 44, when closed, connect the drive motor M of the measuring roller 1 to the current supply with the polarity required for forward travel of the web materiel. Analogously, the control circuit 39 of the amplifier 35% is energized from the source 50 of adjustable voltage through an auxiliary contact 45 of a contactor or switch RC whose main contacts 46 and 47 are closed when the motor M is to run the machinery in the reverse direction.
when the machine is in operation, the degree of sag in the slightly sagging portion of the web material continually varies between the upper and lower limit values thus causing the sow sor i to switch the feed roller 2 alternately t leading and lagging speed, When the surface of the web material approaches the sensor 4 up to the upper limit value, the feed roller g is switched by the controllable transmission means to run at th faster speed. Consequently, the web surface now moves away from the, upper limit value so that the degree of 5 1; insrbssesi When me the lower limit value is reached, the sensor it switches the driving transmission of feed roller 2 to the lagging speed so that the web surface again commences to approach the upper limit value. By virtue of this intermittent control of the feeding speed between two limit values, the loop of material between the rollers 2 and 7 is kept within the desired narrow limits of sag.
The sensor 5, operating in the same manner as the sensor 4, is not necessarily required for calibratable measuring operation during forward travel of the web material, but offers the advantage of winding the measured materialupon the takeup roller TR with a regulated tension. The control system which connects the sensor 5 with the two-speed transmission between the measuring roller 1 and the withdrawal roller 3 has the effect that the withdrawal roller 3 is switched to'lagging speed when the upper limit value of sag is reached and is switched to leading speed when the lower limit value is reached.
As mentioned above, the occurring frequency of switching between faster and slower speeds may be found excessive in which case it is desirable to provide means for delaying the switching of the feed roller 2 from the faster to the slower speed. In an analogous manner, the switching of the withdrawal roller toward leading (faster) speed can be delayed. Applicable for the purpose of such delay are timedelay relays or any other suitable timing circuits or mechanisms. In FIG. 2, therefore, the relays 25 and 35 are preferably of the time-delay type. A corresponding time delay is embodied in the timer ll.
The foregoing description of the control operation relates to the forward travel of the web material 6 to be measured. In display-type machines which permit reversing the rotational direction of all driven rollers, it is necessary to provide for reverse travel of the web material. For such purposes the second sensor 5 is a prerequisite for achieving a sufficient relief of tension in the web material during reverse travel.
However, simply providing twotension-relieving devices upstream and downstream of the measuring roller 1 with respect to the web travel does not yet satisfy the requirement for calibratable measuring performance during reverse travel. For that reason, the switching points of the sensing devices 4 and 5 for leading and lagging speed are changed in order to adapt these points to forward and reverse travel respectively. This change in adjustment is effected by switching means that are coupled with the control device for reverse travel of the material. As described, the travel direction depends upon the running direction of the motor M which is changeable by actuating one or the other of the contactors FC and RC, and such actuation also effects a proper setting of the amplifying stages 28 and 38 in the two sensing and drive control systems for the feed roller '2 and the withdrawal roller 3. During reverse travel of the web material 6, therefore, the sensor 5 is now active to act as the tension-relieving device which precedes the measuring roller l in the travel direction, whereas the roller 2 now operates as the withdrawal roller and the sensor 4 takes care of regulating the tension in the material behind the measuring roller 1 as it iswound onto the takeup roll now constituted by the roller SR.
The switching points of the sensing systems controlled by the sensors 4 and 5, as far as the respective upper limit values are concerned, must be responded to at a moment prior to the one at which the web material would form a straight tangent between the rollers 2 and 7 or 8 and 9, so that the occurrence of longitudinal stress and consequently elongation of the web material 6 is prevented.
In the above-described embodiment, the switching of the feed roller 2 from leading to lagging speed is primarily controlled by the sensor 4. However, such control may also be effected with the aid of a presettable timing mechanism in which case the sensing system exhibits only one switching point and responds only, to the upper limit value of sag. The timing mechanism is to be preset in dependence upon the travel speed of the web material in such a manner that the surface of the web material has at least approximately attained the lower limit value within the duration of the faster, leading speed and hence before the timing mechanism switches the feed roller 2 to the lower, lagging speed. An analogous modification is also applicable to the second tension-relieving device located downstream of the measuring roller 1 and related to the withdrawal roller and the sensor 5. The latter modification is exemplified by the timer 41 in FIG. 2 which is assumed to be set manually in accordance with the web travel speed observed on a speed indicator, although it will be understood that an automatic setting of the timer in response to the travel speed or changes thereof is likewise applicable. It should also be understood that it is preferred to employ the same type of control system for both sensors 4 and 5, the one shown for sensor 4 being considered more advantageous in most cases.
The effect of gravity or inherent weight upon the sagging portion of the web material is negligible, on account of the shallowness of the sag in devices according to the invention. However, with certain types of material an appreciable gravity effect is observed. Such effect can partially and satisfactorily be compensated by applying a controllable jet or flow of air to the bottom side of the travelling web with the aid of air nozzles 10 and 11 mounted beneath the path of the web material 6 in the vicinity of each sagging portion. A complete weight compensation of the material in the sagging portion, however, must not take place because the formation of a sag required for regulating purposes according to the invention is predicated upon a minimum of loop weight.
For the reasons explained, apparatus according to the invention afford the possibility of applying a tension relief to stretchable material, particularly to knitted textile fabrics, to an extent heretofore not attained and in a particularly uniform and satisfactory manner.
It will be understood that the supply and takeup devices such as the rolls SR and TR with the appertaining supports are conventional and may be substituted by any other suitable supply and takeup means respectively. To those skilled in the art it will further be obvious upon a study of this disclosure that my invention permits of various other modifications and hence may be given embodiments other than illustrated and described herein, without departing from the essential features of my invention and within the scope of the claims annexed hereto.
1 claim:
1. With apparatus for advancing a knitted fabric or other stretchable web material, comprising a roller drivingly engageable with the material for imparting advancing travel to the material, material guide means spaced from said roller in the travel direction and arrangedto cause formation of a shallow sagging portion of the travelling material, the combination of means for relieving tension in said travelling material comprising controllable drive means connected to'said roller, speed control means connected to said drive means and having a proximity sensor arranged for out-of-contact response to said sagging portion of material and responsive to at least one of given lower and upper limits of said respectively, said drive means being speed controlled by said sensor response to regulate thespeed of said roller for substantially tension-free advance of the material, said drive means comprising a speed change transmission drivingly connected with said roller and having two selective speeds above and below respectively the desired travel speed of the material, said speed change transmission being set by said speed control means to the leading speed when said sensor responds to said upper limit of sag and being set to the lagging speed when said lower limit of sag is reached, said speed control means comprising a presettable timer which is connected to said speed change transmission for setting it to said lagging speed.
2. ln apparatus according to claim 1, said speed change transmission having two speed-setting means which are both in connection with said sensor so that said setting to lagging speed is also controlled by response of said sensor.
3. in apparatus according to claim 1, said proximity sensor being responsive to given respective maximum and minimum distances from the surface of the web material in said sagging portion, whereby said speed control means operate substantially as a distance regulator.
4. With apparatusfor measuring the length of knitted fabric or other stretchable web material having measuring means, a feed roller drivingly engageable with the material for passing the material to said measuring means, and material guide means arranged to cause formation of a shallow sagging portion of the travelling material, the combination of means for relieving tension in said travelling material comprising controllable drive means connected to said feed roller, speed control means connected to said drive means and having a proximity sensor arranged for out-of-contact response to said sagging portion of material and being responsive to at least one of given lower and upper limits of sag respectively, said drive control means being intermittently controllable by said sensor response to vary the speed of said roller between leading and lagging speed magnitudes for substantially tensionfree advance of the material to said measuring means, said measuring means comprising a measuring roller engageable with the web material downstream of said feed roller and having a main drive, said drive means for said feed roller being connected with said main drive, and said drive control means being connected to said feed roller drive so as to vary the feed roller peripheral speed between respective values above and below the peripheral speed of said measuring roller, and further including a withdrawal roller engageable with the web material and arranged downstream of said measuring roller, further drive means connecting said main drive with said withdrawal roller, and further speed control means for varying the peripheral speed of said withdrawal roller between respective values above and below the peripheral speed of said measuring roller, means for forming a second shallow sagging portion of the web material between said measuring roller and said withdrawal roller, said further speed control means having a proximity sensor responsive to the sag of said web portion.
5. In apparatus according to claim 4, said speed control means comprising time delay means for delaying the switching of said feed roller to the lagging speed and the switching of said withdrawal roller to the leading speed during forward travel of the web material.
6. ln apparatus according to claim 4, said main drive comprising selective reversing means for causing the web material to travel in the forward and reverse direction respectively, and switching means connected to said speed control means for shifting the points of response of said sensors at which said rollers switch between leading and lagging speeds, said switching means being coupled with said reversing means so as to be effective when said main drive is switched to reverse travel of the web material.
7. Apparatus according to claim 4, comprising two blow devices mounted at respective localities beneath said two sagging portions of the web material for partially compensating the weight of said web portions.
8. With apparatus for advancing a knitted fabric or other stretchable web material, comprising a roller drivingly engageable with the material for imparting advancing travel to the material, material guide means spaced from said roller in the travel direction and arranged to cause formation of a shallow sagging portion of the travelling material, the combination of means for relieving tension in said travelling material comprising controllable drive means connected to said roller, speed control means connected to said drive means and having a proximity sensor arranged for out-of-contact response to said sagging portion of material and responsive to at least one of given lower and upper limits of sag respectively, said drive means being speed controlled by said sensor response to regulate the speed of said roller for substantially tension-free advance of the material, and a blow device mounted beneath the sagging portion of the web material for partially compensating the weight of said web portion.
Claims (8)
1. With apparatus for advancing a knitted fabric or other stretchable web material, comprising a roller drivingly engageable with the material for imparting advancing travel to the material, material guide means spaced from said roller in the travel direction and arranged to cause formation of a shallow sagging portion of the travelling material, the combination of means for relieving tension in said travelling material comprising controllable drive means connected to said roller, speed control means connected to said drive means and having a proximity sensor arranged for out-of-contact response to said sagging portion of material and responsive to at least one of given lower and upper limits of said respectively, said drive means being speed controlled by said sensor response to regulate the speed of said roller for substantially tension-free advance of the material, said drive means comprising a speed change transmission drivingly connected with said roller and having two selective speeds above and below respectively the desired travel speed of the material, said speed change transmission being set by said speed control means to the leading speed when said sensor responds to said upper limit of sag and being set to the lagging speed when said lower limit of sag is reached, said speed control means comprising a presettable timer which is connected to said speed change transmission for setting it to said lagging speed.
2. In apparatus according to claim 1, said speed change transmission having two speed-setting means which are both in connection with said sensor so that said setting to lagging speed is also controlled by response of said sensor.
3. In apparatus according to claim 1, said proximity sensor being responsive to given respective maximum and minimum distances from the surface of the web material in said sagging portion, whereby said speed control means operate substantially as a distance regulator.
4. With apparatus for measuring the length of knitted fabric or other stretchable web material having measuring means, a feed roller drivingly engageable with the material for passing the material to said measuring means, and material guide means arranged to cause formation of a shallow sagging portion of the travelling material, the combination of means for relieving tension in said travelling material comprising controllable drive means connected to said feed roller, speed control means connected to said drive means and having a proximity sensor arranged for out-of-contact response to said sagging portion of material and being responsive to at least one of given lower and upper limits of sag respectively, said drive control means being intermittently controllable by said sensor response to vary the speed of said roller between leading and lagging speed magnitudes for substantially tension-free advance of the material to said measuring means, said measuring means comprising a measuring roller engageable with the web material downstream of said feed roller and having a main drive, said drive means for said feed roller being connected with said main drive, and said drive control means being connected to said feed roller drive So as to vary the feed roller peripheral speed between respective values above and below the peripheral speed of said measuring roller, and further including a withdrawal roller engageable with the web material and arranged downstream of said measuring roller, further drive means connecting said main drive with said withdrawal roller, and further speed control means for varying the peripheral speed of said withdrawal roller between respective values above and below the peripheral speed of said measuring roller, means for forming a second shallow sagging portion of the web material between said measuring roller and said withdrawal roller, said further speed control means having a proximity sensor responsive to the sag of said web portion.
5. In apparatus according to claim 4, said speed control means comprising time delay means for delaying the switching of said feed roller to the lagging speed and the switching of said withdrawal roller to the leading speed during forward travel of the web material.
6. In apparatus according to claim 4, said main drive comprising selective reversing means for causing the web material to travel in the forward and reverse direction respectively, and switching means connected to said speed control means for shifting the points of response of said sensors at which said rollers switch between leading and lagging speeds, said switching means being coupled with said reversing means so as to be effective when said main drive is switched to reverse travel of the web material.
7. Apparatus according to claim 4, comprising two blow devices mounted at respective localities beneath said two sagging portions of the web material for partially compensating the weight of said web portions.
8. With apparatus for advancing a knitted fabric or other stretchable web material, comprising a roller drivingly engageable with the material for imparting advancing travel to the material, material guide means spaced from said roller in the travel direction and arranged to cause formation of a shallow sagging portion of the travelling material, the combination of means for relieving tension in said travelling material comprising controllable drive means connected to said roller, speed control means connected to said drive means and having a proximity sensor arranged for out-of-contact response to said sagging portion of material and responsive to at least one of given lower and upper limits of sag respectively, said drive means being speed controlled by said sensor response to regulate the speed of said roller for substantially tension-free advance of the material, and a blow device mounted beneath the sagging portion of the web material for partially compensating the weight of said web portion.
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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DE1638082A DE1638082C3 (en) | 1968-01-20 | 1968-01-20 | Method for relaxing a stretchable material web guided for length measurement |
Publications (1)
Publication Number | Publication Date |
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US3589578A true US3589578A (en) | 1971-06-29 |
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Application Number | Title | Priority Date | Filing Date |
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US792254*A Expired - Lifetime US3589578A (en) | 1968-01-20 | 1969-01-21 | Tension-relieving device for stretchable sheet material |
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US (1) | US3589578A (en) |
CH (1) | CH491807A (en) |
DE (1) | DE1638082C3 (en) |
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DE2237049C2 (en) * | 1972-07-28 | 1984-06-20 | A. Monforts GmbH & Co, 4050 Mönchengladbach | Device for measuring the length of a length of fabric |
DE2622550C2 (en) * | 1976-05-20 | 1985-04-25 | A. Monforts GmbH & Co, 4050 Mönchengladbach | Device for measuring the length of a textile web of material |
EP0095848A3 (en) * | 1982-06-01 | 1984-05-16 | Imperial Chemical Industries Plc | Ethylene copolymerisation process |
CN118345625B (en) * | 2024-06-18 | 2024-10-18 | 张家港市多友纱线制造有限公司 | Tensioning-adjustable slitting machine and application thereof in production of non-wool fiber cloth |
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US3927844A (en) * | 1973-02-13 | 1975-12-23 | Bond Transmission & Controls I | Cloth inspection device |
US4422223A (en) * | 1980-08-01 | 1983-12-27 | Haines Robert L | Fixed cloth speed inspection machine |
US4856690A (en) * | 1986-07-17 | 1989-08-15 | Rolt Richard C | Transmission of rotary power, particularly in printing machines |
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FR3113246A1 (en) | 2020-08-03 | 2022-02-11 | L'oréal | Cosmetic composition comprising anionic and amphoteric surfactants, a cationic polymer, at least 2% solid fatty alcohol and a particular amino silicone; and process |
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WO2022117859A1 (en) | 2020-12-03 | 2022-06-09 | L'oreal | Solid composition comprising a combination of particular anionic surfactants and at least one cationic polysaccharide |
WO2022117858A1 (en) | 2020-12-03 | 2022-06-09 | L'oreal | Solid composition comprising the particular combination of a sulfate-based surfactant and an amphoteric surfactant |
WO2022117855A1 (en) | 2020-12-03 | 2022-06-09 | L'oreal | Anhydrous solid composition comprising an anionic surfactant and a mixture of citric acid and bicarbonate |
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WO2022117854A1 (en) | 2020-12-03 | 2022-06-09 | L'oreal | Anhydrous solid composition comprising a combination of anionic and amphoteric or zwitterionic surfactants and a metal carbonate |
WO2022117860A1 (en) | 2020-12-03 | 2022-06-09 | L'oreal | Solid composition comprising a combination of anionic surfactants of sulfonate and carboxylate types |
WO2022117851A1 (en) | 2020-12-03 | 2022-06-09 | L'oreal | Anhydrous solid shampoo based on surfactants and on a cationic polymer, its method of preparation and a kit |
WO2022117856A1 (en) | 2020-12-03 | 2022-06-09 | L'oreal | Anhydrous solid composition comprising a combination of carboxylate and sulfonate anionic surfactants, cationic surfactants and optionally amphoteric or zwitterionic surfactants |
WO2022117852A1 (en) | 2020-12-03 | 2022-06-09 | L'oreal | Process for preparing a shampoo from an anhydrous solid surfactant composition |
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WO2022117853A1 (en) | 2020-12-03 | 2022-06-09 | L'oreal | Anhydrous solid composition comprising a combination of carboxylate and amphoteric or zwitterionic surfactants and silicones |
FR3117030A1 (en) | 2020-12-03 | 2022-06-10 | L'oreal | Anhydrous solid composition comprising a combination of particular anionic surfactants and at least one polymeric organic filler |
FR3117018A1 (en) | 2020-12-03 | 2022-06-10 | L'oreal | METHOD FOR PREPARING A SHAMPOO FROM AN ANHYDROUS SOLID COMPOSITION OF SURFACTANTS |
FR3117027A1 (en) | 2020-12-03 | 2022-06-10 | L'oreal | Anhydrous solid composition comprising a combination of anionic surfactants of sulfonate and carboxylate type |
FR3117025A1 (en) | 2020-12-03 | 2022-06-10 | L'oreal | Anhydrous solid composition comprising a combination of anionic and amphoteric or zwitterionic surfactants and a metal carbonate |
FR3117029A1 (en) | 2020-12-03 | 2022-06-10 | L'oreal | ANHYDROUS SOLID SHAMPOO BASED ON SURFACTANTS AND A FATTY ACID SALT, METHOD FOR PREPARATION AND A KIT |
FR3117019A1 (en) | 2020-12-03 | 2022-06-10 | L'oreal | Anhydrous solid composition comprising a combination of carboxylate and sulfonate anionic surfactants, cationic surfactants and optionally amphoteric or zwitterionic surfactants |
FR3117023A1 (en) | 2020-12-03 | 2022-06-10 | L'oreal | Anhydrous solid composition comprising the particular combination of a sulphated surfactant and an amphoteric surfactant |
FR3117021A1 (en) | 2020-12-03 | 2022-06-10 | L'oreal | Anhydrous solid composition comprising an anionic surfactant and a mixture of citric acid and bicarbonate |
FR3117024A1 (en) | 2020-12-03 | 2022-06-10 | L'oreal | Anhydrous solid composition comprising a combination of particular anionic surfactants and at least one cationic polysaccharide |
FR3117020A1 (en) | 2020-12-03 | 2022-06-10 | L'oreal | Anhydrous solid composition comprising carboxylate and amphoteric or zwitterionic surfactants and silicones |
WO2022131351A1 (en) | 2020-12-14 | 2022-06-23 | L'oreal | Composition comprising polyion complex particle and filler |
FR3117841A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising two particular oxidation coloring precursors, and a particular carboxylic acid |
FR3117839A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising the combination of two specific oxidation coloring precursors and a specific carboxylic acid |
WO2022129385A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising the combination of two particular oxidation dye precursors, an alkyl(poly)glycoside and a sulfated anionic surfactant |
WO2022129379A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising two particular oxidation dye precursors, and a particular carboxylic acid |
WO2022129394A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising a particular oxidation dyeing base and at least two particular couplers |
WO2022129389A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising a particular oxidation dyeing base, at least one particular coupler and at least one fatty substance |
WO2022129384A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising the combination of at least one fatty substance, a particular carboxylic acid and an oxidation dye and/or an alkaline agent |
WO2022129388A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising the combination of two particular oxidation dye precursors and an alkyl(poly)glycoside |
WO2022129372A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising the combination of two particular oxidation dye precursors and an alkyl(poly)glycoside |
WO2022129380A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising a particular oxidation dye precursor and a particular carboxylic acid |
WO2022129383A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Process for dyeing keratin fibres with a composition comprising a particular oxidation dye precursor, a particular carboxylic acid and a chemical oxidizing agent |
WO2022129373A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising the combination of two particular oxidation dye precursors and a particular oxyethylenated fatty acid ester of sorbitan |
WO2022129364A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising the combination of three particular oxidation dye precursors |
WO2022129369A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising two particular oxidation dye precursors, an oxyethylenated fatty acid ester of sorbitan and a fatty acid |
WO2022129391A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising the combination of two particular oxidation dye precursors and an alkyl(poly)glycoside |
FR3117836A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising the combination of two particular oxidation coloring precursors and an alkyl(poly)glycoside. |
FR3117835A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising the combination of two particular oxidation coloring precursors and an alkyl(poly)glycoside. |
FR3117826A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising the combination of two particular oxidation coloring precursors and an alkyl(poly)glycoside. |
FR3117827A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising a particular oxidation coloring precursor and a particular carboxylic acid |
FR3117828A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising the combination of three particular oxidation coloring precursors. |
FR3117837A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising a particular oxidation coloring precursor and a particular carboxylic acid |
FR3117816A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising a particular oxidation coloring base and at least two particular couplers. |
FR3117814A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising a particular oxidation coloring base, at least one guar gum and at least one fatty substance. |
FR3117838A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising the combination of two particular oxidation coloring precursors and a particular fatty acid and oxyethylenated sorbitan ester. |
FR3117829A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising the combination of two particular oxidation coloring precursors and an alkyl(poly)glycoside. |
FR3117813A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising the combination of at least one fatty substance, a particular carboxylic acid and an oxidation dye and/or an alkaline agent |
FR3117840A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising two particular oxidation coloring precursors, an ester of fatty acid and oxyethylenated sorbitan and a fatty acid |
WO2022129377A1 (en) | 2020-12-17 | 2022-06-23 | L'oreal | Composition comprising the combination of two particular oxidation dye precursors and a particular carboxylic acid |
FR3117830A1 (en) | 2020-12-17 | 2022-06-24 | L'oreal | Composition comprising a particular oxidation coloring base, at least one particular coupler and at least one fatty substance. |
WO2022136095A1 (en) | 2020-12-21 | 2022-06-30 | L'oreal | Composition comprising a silicone emulsion, a particular (meth)acrylamide polymer, a cationic polysaccharide and an alkyldiallylamine or dialkyldiallylammonium polymer |
FR3118700A1 (en) | 2021-01-13 | 2022-07-15 | L'oreal | COMPOSITION COMPRISING A POLYION COMPLEX PARTICLE AND A CHARGER |
FR3122088A1 (en) | 2021-04-21 | 2022-10-28 | L'oreal | COLOR CHANGING COMPOSITION IN AQUEOUS GEL FORM |
WO2022238547A2 (en) | 2021-05-12 | 2022-11-17 | L'oreal | Cosmetic composition comprising at least one anionic surfactant, one amphoteric or zwitterionic surfactant, one oil-in-water emulsion and one particular agent |
FR3122834A1 (en) | 2021-05-12 | 2022-11-18 | L'oreal | Cosmetic composition comprising at least one anionic surfactant, an amphoteric or zwitterionic surfactant, an oil-in-water emulsion and a particular |
WO2022251528A1 (en) | 2021-05-27 | 2022-12-01 | L'oreal | Compositions and methods for keratin fibers |
WO2022263603A1 (en) | 2021-06-16 | 2022-12-22 | L'oreal | Composition comprising an oily dispersion of polymer particles, a cationic polymer and an anionic polymer |
FR3124079A1 (en) | 2021-06-16 | 2022-12-23 | L'oreal | Composition comprising an oily dispersion of polymer particles, a cationic polymer and an anionic polymer |
FR3124385A1 (en) | 2021-06-28 | 2022-12-30 | L'oreal | Composition comprising AHAs and/or BHAs stabilized by a combination of mono or dialkylisosorbide, polyethylene glycol and polypropylene glycol ether and two polyoxyethylenated, hydrogenated or non-hydrogenated vegetable oils |
FR3124388A1 (en) | 2021-06-28 | 2022-12-30 | L'oreal | Transparent cosmetic composition with ascorbic acid and specific cationic polymer |
FR3124389A1 (en) | 2021-06-28 | 2022-12-30 | L'oreal | Transparent cosmetic composition with ascorbic acid and water-soluble UV filter |
WO2023274965A1 (en) | 2021-06-28 | 2023-01-05 | L'oreal | Composition comprising ahas and/or bhas which is stabilized by a combination of monoalkyl or dialkyl isosorbide, polyethylene glycol-polypropylene glycol ether and two hydrogenated or non-hydrogenated polyoxyethylenated plant oils |
WO2023275083A1 (en) | 2021-06-28 | 2023-01-05 | L'oreal | Transparent cosmetic composition with ascorbic acid and water-soluble uv screening agent |
WO2023275073A1 (en) | 2021-06-28 | 2023-01-05 | L'oreal | Transparent cosmetic composition with ascorbic acid and a specific cationic polymer |
WO2023277194A1 (en) | 2021-06-30 | 2023-01-05 | L'oreal | Sunscreen w/o emulsion |
WO2023275282A1 (en) | 2021-06-30 | 2023-01-05 | L'oreal | Composition of single-phase appearance comprising a nonionic surfactant and an amphoteric surfactant |
WO2023275286A1 (en) | 2021-06-30 | 2023-01-05 | L'oreal | Composition in emulsion form comprising a particular nonionic surfactant |
WO2023275283A1 (en) | 2021-06-30 | 2023-01-05 | L'oreal | Composition of single-phase appearance comprising an anionic surfactant and an amphoteric surfactant |
WO2023275284A1 (en) | 2021-06-30 | 2023-01-05 | L'oreal | Composition in emulsion form comprising an amphoteric surfactant, a fatty substance and a propellant |
FR3125225A1 (en) | 2021-07-19 | 2023-01-20 | L'oreal | Composition comprising a particular combination of surfactants and a cationic polymer |
WO2023001841A1 (en) | 2021-07-19 | 2023-01-26 | L'oreal | Composition comprising a specific combination of surfactants and a cationic polymer |
FR3125707A1 (en) | 2021-07-27 | 2023-02-03 | L'oreal | W/O EMULSION COMPOSITION |
FR3125713A1 (en) | 2021-07-29 | 2023-02-03 | L'oreal | SKIN CARE COMPOSITION |
FR3127128A1 (en) | 2021-09-20 | 2023-03-24 | L'oreal | Compositions and methods for keratinous fibers |
WO2023106217A1 (en) | 2021-12-08 | 2023-06-15 | L'oreal | Composition comprising polyion complex particle |
WO2023105025A1 (en) | 2021-12-10 | 2023-06-15 | L'oreal | Composition comprising a particular oxidation dye precursor, a particular amino silicone and a polyol |
WO2023105022A1 (en) | 2021-12-10 | 2023-06-15 | L'oreal | Composition comprising two particular oxidation dye precursors and a particular amino silicone |
WO2023105021A1 (en) | 2021-12-10 | 2023-06-15 | L'oreal | Composition comprising a particular oxidation dye precursor and a particular amino silicone |
WO2023105019A1 (en) | 2021-12-10 | 2023-06-15 | L'oreal | Composition comprising a particular oxidation dye precursor and a particular amino silicone |
FR3130144A1 (en) | 2021-12-10 | 2023-06-16 | L'oreal | Composition comprising a particular oxidation coloring precursor, a particular amino silicone and a polyol |
FR3130150A1 (en) | 2021-12-10 | 2023-06-16 | L'oreal | Composition comprising a particular oxidation coloring precursor and a particular amino silicone |
FR3130143A1 (en) | 2021-12-10 | 2023-06-16 | L'oreal | Composition comprising a particular oxidation coloring precursor and a particular amino silicone |
FR3130142A1 (en) | 2021-12-10 | 2023-06-16 | L'oreal | Composition comprising two particular oxidation coloring precursors and a particular amino silicone |
FR3130154A1 (en) | 2021-12-14 | 2023-06-16 | L'oreal | Cosmetic composition comprising an amino silicone, a bis-amino silicone and an associative polymer |
FR3130155A1 (en) | 2021-12-14 | 2023-06-16 | L'oreal | Cosmetic composition comprising a bis-amino silicone, an associative polymer and a cationic polymer |
WO2023110367A1 (en) | 2021-12-14 | 2023-06-22 | L'oreal | Cosmetic composition comprising a bis-amino silicone, an associative polymer and a cationic polymer |
WO2023112867A1 (en) | 2021-12-17 | 2023-06-22 | L'oreal | Composition comprising hyaluronic acid-based polyion complex particle and surfactant |
WO2023120389A1 (en) | 2021-12-20 | 2023-06-29 | L'oreal | Composition comprising hydrophobicized cationic polymer |
WO2023120388A1 (en) | 2021-12-20 | 2023-06-29 | L'oreal | Composition comprising hydrophobicized polyion complex particle |
FR3130582A1 (en) | 2021-12-22 | 2023-06-23 | L'oreal | Process for dyeing keratin fibers using a cosmetic composition comprising propane-1,3-diol and a coloring composition |
FR3130580A1 (en) | 2021-12-22 | 2023-06-23 | L'oreal | Cosmetic composition comprising propane-1,3-diol, one or more alkaline agents, one or more associative cellulosic polymers and one or more colorants |
FR3130575A1 (en) | 2021-12-22 | 2023-06-23 | L'oreal | Cosmetic composition comprising propane-1,3-diol, one or more alkaline agents, one or more nonionic surfactants, one or more non-associative anionic acrylic polymers and one or more colorants |
WO2023118333A1 (en) | 2021-12-22 | 2023-06-29 | L'oreal | Process for dyeing keratin fibres using a cosmetic composition comprising propane-1,3-diol and a dyeing composition |
WO2023126284A1 (en) | 2021-12-30 | 2023-07-06 | L'oreal | Cosmetic packaging article comprising a solid composition |
FR3131528A1 (en) | 2021-12-30 | 2023-07-07 | L'oreal | Cosmetic packaging article comprising a solid composition |
FR3131842A1 (en) | 2022-01-20 | 2023-07-21 | L'oreal | Composition comprising polyionic complex particles based on hyaluronic acid and a surfactant |
WO2023228870A1 (en) | 2022-05-25 | 2023-11-30 | L'oreal | Composition for coloring keratin fibers |
WO2023232840A1 (en) | 2022-06-01 | 2023-12-07 | L'oreal | Cosmetic composition comprising amino acids, hydroxylated (poly)carboxylic acids and silicones, processes and use |
FR3136159A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Cosmetic composition one or more amino acids, one or more (poly) hydroxylated C2-C8 carboxylic acids and one or more salts of (poly) hydroxylated C2-C8 carboxylic acids, and cosmetic treatment method |
WO2023232842A1 (en) | 2022-06-01 | 2023-12-07 | L'oreal | Cosmetic composition comprising amino acids, hydroxylated (poly)carboxylic acids and associative polymers, and cosmetic treatment processes and use |
WO2023232788A1 (en) | 2022-06-01 | 2023-12-07 | L'oreal | Cosmetic hair treatment process, comprising a multi-application of a composition comprising amino acids and specific hydroxy carboxylic acids |
WO2023232768A1 (en) | 2022-06-01 | 2023-12-07 | L'oreal | Hair treatment method comprising the application of a composition comprising amino acids and hydroxylated (poly)carboxylic acids, followed by washing the hair, and use as a pre-shampoo |
WO2023232845A1 (en) | 2022-06-01 | 2023-12-07 | L'oreal | Cosmetic composition comprising amino acids, hydroxylated (poly)carboxylic acids and cationic surfactants, processes and use |
WO2023232894A1 (en) | 2022-06-01 | 2023-12-07 | L'oreal | Aqueous cosmetic composition comprising 1-8% of amino acids and at least 3% of hydroxylated polycarboxylic acids, and cosmetic treatment process |
WO2023232773A1 (en) | 2022-06-01 | 2023-12-07 | L'oreal | Cosmetic hair treatment process, comprising a washing step, a step of applying a cosmetic composition comprising amino acids and hydroxylated (poly)carboxylic acids, and then a conditioning step |
WO2023232890A1 (en) | 2022-06-01 | 2023-12-07 | L'oreal | Cosmetic composition comprising amino acids, hydroxylated (poly)carboxylic acids and polysaccharides, processes and use |
FR3136164A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Cosmetic composition comprising amino acids, hydroxylated (poly)carboxylic acids and cationic surfactants, and cosmetic treatment method |
FR3136171A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Process for cosmetic treatment of hair, comprising a washing step, a step of applying a cosmetic composition comprising amino acids and hydroxylated (poly) carboxylic acids, then a conditioning step. |
FR3136162A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Hair treatment process comprising the application of a composition comprising amino acids and hydroxylated (poly)carboxylic acids, followed by washing the hair, and use as a pre-shampoo |
FR3136170A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Cosmetic composition comprising amino acids, hydroxylated (poly)carboxylic acids and associative polymers, and cosmetic treatment method |
FR3136158A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Cosmetic composition comprising amino acids, hydroxylated (poly)carboxylic acids and amphoteric surfactants, and cosmetic treatment method |
FR3136167A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Hair treatment process to limit the calcium content of hair |
FR3136169A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Hair treatment process to limit hair loss of shine |
FR3136160A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Cosmetic composition comprising amino acids, hydroxylated (poly)carboxylic acids and polysaccharides, and cosmetic treatment method |
WO2023232770A1 (en) | 2022-06-01 | 2023-12-07 | L'oreal | Hair treatment method for limiting the calcium content of the hair |
FR3136163A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Cosmetic composition comprising at least 1% amino acids and at least 3% hydroxylated (poly)carboxylic acids, and cosmetic treatment method |
FR3136161A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Cosmetic composition comprising amino acids, hydroxylated (poly)carboxylic acids and silicones, and cosmetic treatment method |
FR3136166A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Process for cosmetic treatment of hair, comprising multiple application of a composition comprising particular amino acids and hydroxy carboxylic acids |
FR3136168A1 (en) | 2022-06-01 | 2023-12-08 | L'oreal | Hair treatment process for strengthening sensitized, weakened and/or damaged hair |
WO2023237762A1 (en) | 2022-06-09 | 2023-12-14 | L'oreal | Composition comprising nonionic surfactant(s) of alkylpolyglycoside type, polyol(s), c8-c30 fatty acid ester(s) of sorbitan and cationic polymer(s) |
WO2023247688A1 (en) | 2022-06-22 | 2023-12-28 | L'oreal | Washing composition for keratin fibres comprising at least one anionic surfactant, at least one amphoteric or zwitterionic surfactant, at least one glucamide compound and at least one cationic galactomannan gum |
FR3136977A1 (en) | 2022-06-22 | 2023-12-29 | L'oreal | WASHING COMPOSITION FOR KERATIN FIBERS COMPRISING AT LEAST ONE ANIONIC SURFACTANT, AT LEAST ONE AMPHOTERIC OR ZWITTERIONIC SURFACTANT AND AT LEAST ONE GLUCAMIDE COMPOUND |
FR3136978A1 (en) | 2022-06-22 | 2023-12-29 | L'oreal | WASHING COMPOSITION FOR KERATIN FIBERS COMPRISING AT LEAST ONE GLUCAMIDE, A (POLY)GLYCEROL ESTER AND AN ALKYL(POLY)GLYCOSIDE |
FR3136970A1 (en) | 2022-06-22 | 2023-12-29 | L'oreal | Keratin fiber treatment process |
WO2024003182A1 (en) | 2022-06-29 | 2024-01-04 | L'oreal | Composition comprising a peroxygenated salt, a fatty substance in a particular content, a compound of amino acid type and a specific (poly)carboxylic acid |
WO2024002647A1 (en) | 2022-06-30 | 2024-01-04 | Unilever Ip Holdings B.V. | Stable wash composition with unsaturated zwitterionic surfactant |
FR3137835A1 (en) | 2022-07-15 | 2024-01-19 | L'oreal | Composition for coloring keratinous fibers |
FR3138311A1 (en) | 2022-07-28 | 2024-02-02 | L'oreal | Composition comprising a nonionic surfactant(s) of the alkylpolyglycoside type, a polyol(s), a C8-C30 fatty acid ester(s) of sorbitan and a polymer(s) s) cationic(s) |
WO2024068056A1 (en) | 2022-09-27 | 2024-04-04 | Unilever Ip Holdings B.V. | Mild wash composition with biodegradable thickener and enhanced microbiota impact |
WO2024070749A1 (en) | 2022-09-27 | 2024-04-04 | L'oreal | Composition comprising hyaluronic acid-based polyion complex and superabsorbent polymer |
FR3140269A1 (en) | 2022-09-29 | 2024-04-05 | L'oreal | Cosmetic composition comprising a particular silicone emulsion, a particular cationic polymer, a particular anionic surfactant and an amphoteric surfactant |
FR3140276A1 (en) | 2022-09-30 | 2024-04-05 | L'oreal | Cosmetic hair care composition comprising particular anionic surfactants and particular amino silicones, and method for cosmetic treatment of hair. |
FR3140277A1 (en) | 2022-09-30 | 2024-04-05 | L'oreal | Cosmetic hair care composition comprising at least one particular amino silicone and at least one associative polymer, and cosmetic hair treatment method |
WO2024068941A1 (en) | 2022-09-30 | 2024-04-04 | L'oreal | Cosmetic hair care composition comprising particular anionic surfactants and particular amino silicones, and cosmetic hair treatment process. |
WO2024068929A1 (en) | 2022-09-30 | 2024-04-04 | L'oreal | Cosmetic hair care composition comprising at least one particular amino silicone and at least one colouring agent and/or an optical brightener, and cosmetic hair treatment process |
WO2024068939A1 (en) | 2022-09-30 | 2024-04-04 | L'oreal | Cosmetic hair care composition comprising at least one particular amino silicone and at least one polyol, and cosmetic treatment process |
WO2024068935A1 (en) | 2022-09-30 | 2024-04-04 | L'oreal | Cosmetic hair care composition comprising anionic and/or amphoteric surfactants and particular amino silicones, and cosmetic hair treatment process |
WO2024068930A1 (en) | 2022-09-30 | 2024-04-04 | L'oreal | Process for the cosmetic treatment of hair with a cosmetic composition comprising particular amino silicones |
FR3140271A1 (en) | 2022-09-30 | 2024-04-05 | L'oreal | Cosmetic hair care composition comprising anionic and/or amphoteric surfactants, and specific amino silicones, and cosmetic hair treatment method. |
WO2024068931A1 (en) | 2022-09-30 | 2024-04-04 | L'oreal | Cosmetic hair care composition comprising at least one particular amino silicone and at least one non-silicone fatty substance, and cosmetic hair treatment process |
FR3140280A1 (en) | 2022-09-30 | 2024-04-05 | L'oreal | Cosmetic hair care composition comprising at least one particular amino silicone and at least one polyol, and cosmetic treatment method |
FR3140279A1 (en) | 2022-09-30 | 2024-04-05 | L'oreal | Cosmetic hair care composition comprising at least one particular amino silicone and at least one non-silicone fatty substance, and method for cosmetic treatment of hair |
WO2024068928A1 (en) | 2022-09-30 | 2024-04-04 | L'oreal | Cosmetic hair care composition comprising cationic polymers and particular amino silicones, and cosmetic hair treatment process |
FR3140274A1 (en) | 2022-09-30 | 2024-04-05 | L'oreal | Cosmetic hair care composition comprising at least one particular amino silicone and at least one thickening agent |
WO2024068937A1 (en) | 2022-09-30 | 2024-04-04 | L'oreal | Cosmetic hair care composition comprising at least one particular amino silicone and at least one thickener |
FR3140273A1 (en) | 2022-09-30 | 2024-04-05 | L'oreal | Cosmetic hair care composition comprising at least one particular amino silicone and at least one coloring agent and/or an optical brightener, and method for cosmetic treatment of hair |
FR3140283A1 (en) | 2022-09-30 | 2024-04-05 | L'oreal | Cosmetic hair care composition comprising anionic and amphoteric surfactants in a particular weight ratio and particular amino silicones, and method for cosmetic treatment of hair. |
FR3140282A1 (en) | 2022-09-30 | 2024-04-05 | L'oreal | Cosmetic hair care composition comprising cationic polymers and specific amino silicones, and method for cosmetic treatment of hair. |
FR3140281A1 (en) | 2022-09-30 | 2024-04-05 | L'oreal | Method for cosmetic treatment of hair with a cosmetic composition comprising particular amino silicones |
WO2024075555A1 (en) | 2022-10-04 | 2024-04-11 | L'oreal | Composition comprising large amount of polyol |
FR3140544A1 (en) | 2022-10-10 | 2024-04-12 | L'oreal | DETERGENT AND EXFOLIATING HAIR COSMETIC COMPOSITION COMPRISING SALICYLIC ACID AND SUSPENDED PARTICLES |
WO2024078936A1 (en) | 2022-10-10 | 2024-04-18 | L'oreal | Detergent and exfoliating cosmetic hair composition comprising salicylic acid and particles in suspension |
FR3140541A1 (en) | 2022-10-11 | 2024-04-12 | L'oreal | Composition comprising an oxidation dye, an alkaline agent, a cationic galactomannan gum, a particular solid fatty acid and an anionic acrylic polymer |
FR3140542A1 (en) | 2022-10-11 | 2024-04-12 | L'oreal | Composition comprising an oxidation dye, an alkaline agent, a cationic galactomannan gum and a particular fatty acid |
FR3141339A1 (en) | 2022-10-26 | 2024-05-03 | L'oreal | SOLID COMPOSITION COMPRISING A CATIONIC SURFACTANT, TWO STARCHES, A LIQUID FAT AND A SPECIFIC QUANTITY OF WATER |
WO2024089165A1 (en) | 2022-10-26 | 2024-05-02 | L'oreal | Solid composition comprising a cationic surfactant, a starch, an amphoteric surfactant and a fatty substance |
WO2024089163A1 (en) | 2022-10-26 | 2024-05-02 | L'oreal | Solid composition comprising a cationic surfactant, two starches, a liquid fatty substance and a specific amount of water |
FR3141335A1 (en) | 2022-10-26 | 2024-05-03 | L'oreal | Solid composition comprising a cationic surfactant, a starch, a polyol and a cationic polymer |
FR3141333A1 (en) | 2022-10-26 | 2024-05-03 | L'oreal | Cosmetic packaging article comprising a solid composition comprising a phosphated starch |
FR3141337A1 (en) | 2022-10-26 | 2024-05-03 | L'oreal | SOLID COMPOSITION COMPRISING A CATIONIC SURFACTANT, A STARCH, AN AMPHOTERIC SURFACTANT AND A FAT |
WO2024089164A1 (en) | 2022-10-26 | 2024-05-02 | L'oreal | Cosmetic packaging article comprising a solid composition comprising a starch phosphate |
FR3141338A1 (en) | 2022-10-26 | 2024-05-03 | L'oreal | Solid composition comprising a cationic surfactant, a starch, a silicone and a non-silicone fatty substance |
FR3141336A1 (en) | 2022-10-26 | 2024-05-03 | L'oreal | SOLID COMPOSITION COMPRISING A CATIONIC SURFACTANT, A STARCH AND A SPECIFIC QUANTITY OF C1-6 CARBOXYLIC ACID |
FR3141342A1 (en) | 2022-10-28 | 2024-05-03 | L'oreal | COMPOSITION COMPRISING A POLYIONIC COMPLEX BASED ON HYALURONIC ACID AND A SUPERABSORBENT POLYMER |
WO2024097256A1 (en) | 2022-10-31 | 2024-05-10 | L'oreal | Systems and methods for stabilizing compositions, and compositions comprising the systems |
WO2024094537A1 (en) | 2022-11-03 | 2024-05-10 | L'oreal | Composition comprising a particular silicone, a particular silicone emulsion, a particular vinylic polymer and surfactants |
FR3142086A1 (en) | 2022-11-17 | 2024-05-24 | L'oreal | COMPOSITION COMPRISING A LARGE QUANTITY OF POLYOL |
FR3142355A1 (en) | 2022-11-24 | 2024-05-31 | L'oreal | COMPOSITION COMPRISING IONICALLY CROSS-LINKED POLYMER AND NON-VOLATILE NON-SILICONE OIL AND NON-VOLATILE SILICONE |
FR3142347A1 (en) | 2022-11-24 | 2024-05-31 | L'oreal | COMPOSITION COMPRISING AN IONICALLY CROSS-LINKED POLYMER AND AT LEAST TWO HIGH AND LOW VISCOSITY SILICONES |
FR3142890A1 (en) | 2022-12-08 | 2024-06-14 | L'oreal | NEW STYLING COMPOSITION TO OFFER DIFFERENT ADVANTAGEOUS PROPERTIES TO HAIR |
FR3142896A1 (en) | 2022-12-09 | 2024-06-14 | L'oreal | SYSTEMS AND METHODS FOR STABILIZING COMPOSITIONS, AND COMPOSITIONS INCLUDING THE SYSTEMS |
FR3143359A1 (en) | 2022-12-15 | 2024-06-21 | L'oreal | TRANSPARENT COSMETIC COMPOSITION COMPRISING A CATIONIC SURFACTANT, A CATIONIC POLYMER, A NON-IONIC POLYSACCHARIDE, A POLYOXYALKYLENE FATTY ALCOHOL AND AN ASSOCIATIVE POLYURETHANE |
WO2024128168A1 (en) | 2022-12-15 | 2024-06-20 | L'oreal | Composition comprising electrolyte and combination of polysaccharides |
FR3143360A1 (en) | 2022-12-15 | 2024-06-21 | L'oreal | TRANSPARENT COSMETIC COMPOSITION COMPRISING A CATIONIC SURFACTANT, A CATIONIC POLYMER, A NON-IONIC POLYSACCHARIDE, A POLYOXYALKYLENE FATTY ALCOHOL AND A POLYOL ESTER |
FR3143353A1 (en) | 2022-12-19 | 2024-06-21 | L'oreal | Transparent cosmetic composition with ascorbic acid, a specific cationic polymer, and at least polyoxyethylenated alkylether dimethylsilane compound |
FR3143346A1 (en) | 2022-12-19 | 2024-06-21 | L'oreal | Cosmetic composition with ascorbic acid, a specific cationic polymer, and at least one particular oxyalkylenated derivative |
FR3143349A1 (en) | 2022-12-19 | 2024-06-21 | L'oreal | Transparent cosmetic composition with ascorbic acid, a specific cationic polymer, and at least one heterogeneous polyholoside comprising at least one fucose unit |
FR3143352A1 (en) | 2022-12-19 | 2024-06-21 | L'oreal | Transparent cosmetic composition with ascorbic acid, a specific cationic polymer, and at least hydrophobic silica airgel particles |
FR3143351A1 (en) | 2022-12-19 | 2024-06-21 | L'oreal | Transparent cosmetic composition with ascorbic acid, a specific cationic polymer, and at least one crosslinked sodium polyacrylate |
FR3143364A1 (en) | 2022-12-19 | 2024-06-21 | L'oreal | COMPOSITION COMPRISING A PARTICULAR SILICONE, A PARTICULAR SILICONE EMULSION, A PARTICULAR VINYL POLYMER AND SURFACTANTS |
WO2024133115A1 (en) | 2022-12-19 | 2024-06-27 | L'oreal | Cosmetic composition with ascorbic acid, a specific cationic polymer, and at least one oxyalkylenated derivative |
WO2024133219A1 (en) | 2022-12-19 | 2024-06-27 | L'oreal | Transparent cosmetic composition with ascorbic acid, a specific cationic polymer, and at least one polyoxylenated alkylether dimethylsilane compound |
WO2024135301A1 (en) | 2022-12-19 | 2024-06-27 | L'oreal | Composition comprising hyaluronic acid-including hydrophobicized nanoparticles |
WO2024135424A1 (en) | 2022-12-20 | 2024-06-27 | L'oreal | Composition comprising hyaluronic acid-based polyion complex and hydrophilic or lipophilic antioxidant |
WO2024135577A1 (en) | 2022-12-23 | 2024-06-27 | L'oreal | Stable dispersion composition comprising retinoid |
WO2024141614A1 (en) | 2022-12-29 | 2024-07-04 | L'oreal | Composition comprising at least n,n-dicarboxymethylglutamic acid, at least one direct dye, at least one cationic polysaccharide, and at least one non-cationic polysaccharide |
WO2024141615A1 (en) | 2022-12-29 | 2024-07-04 | L'oreal | Composition comprising at least n,n-dicarboxymethylglutamic acid, at least one colouring agent and at least one fatty amine |
FR3144512A1 (en) | 2022-12-29 | 2024-07-05 | L'oreal | Composition comprising at least N,N-dicarboxymethyl glutamic acid, at least one coloring agent, and at least one fatty amine |
FR3144511A1 (en) | 2022-12-29 | 2024-07-05 | L'oreal | Composition comprising at least one direct dye, at least N,N-dicarboxymethyl glutamic acid, at least one cationic surfactant and at least one non-silicone fatty substance in a particular content |
FR3144510A1 (en) | 2022-12-29 | 2024-07-05 | L'oreal | Composition comprising at least N,N-dicarboxymethyl glutamic acid, at least one direct dye, at least one cationic polysaccharide, and at least one non-cationic polysaccharide |
FR3145092A1 (en) | 2023-01-19 | 2024-07-26 | L'oreal | METHOD FOR TREATMENT OF KERATINOUS FIBERS COMPRISING THE APPLICATION OF GUANIDINE CARBONATE, ALKALINE AND/OR ALKALINE EARTH METAL HYDROXIDE AND FATTY ACID TRIGLYCERIDE (C6-C16) |
FR3145280A1 (en) | 2023-01-27 | 2024-08-02 | L'oreal | COMPOSITION COMPRISING AN ELECTROLYTE AND A COMBINATION OF POLYSACCHARIDES |
FR3145281A1 (en) | 2023-01-27 | 2024-08-02 | L'oreal | COMPOSITION COMPRISING A POLYIONIC COMPLEX BASED ON HYALURONIC ACID AND A HYDROPHILIC ANTIOXIDANT |
FR3145282A1 (en) | 2023-01-30 | 2024-08-02 | L'oreal | COMPOSITION COMPRISING HYALURONIC ACID, INCLUDING HYDROPHOBIC NANO PARTICLES |
FR3145278A1 (en) | 2023-01-30 | 2024-08-02 | L'oreal | STABLE DISPERSION COMPOSITION COMPRISING A RETINOID |
FR3145279A1 (en) | 2023-01-30 | 2024-08-02 | L'oreal | COMPOSITION COMPRISING A POLYIONIC COMPLEX BASED ON HYALURONIC ACID AND A LIPOPHILIC ANTIOXIDANT |
WO2024161004A1 (en) | 2023-02-02 | 2024-08-08 | L'oreal | Composition comprising an alkali metal carbonate, calcium hydroxide and sodium or potassium metasilicate, in particular amounts |
FR3145483A1 (en) | 2023-02-08 | 2024-08-09 | L'oreal | Composition comprising at least one amino acid, at least one associative polyurethane, at least one particular polysaccharide and at least one amino silicone. |
WO2024165675A1 (en) | 2023-02-08 | 2024-08-15 | L'oreal | Composition comprising at least one amino acid, at least one associative polyurethane, at least one particular polysaccharide and at least one amino silicone |
FR3145688A1 (en) | 2023-02-15 | 2024-08-16 | L'oreal | COMPOSITION COMPRISING A PARTICULAR SILICONE EMULSION, AN AMPHOTERIC OR CATIONIC VINYL POLYMER, SURFACTANTS AND AN ACRYLIC COPOLYMER |
FR3145689A1 (en) | 2023-02-15 | 2024-08-16 | L'oreal | COSMETIC COMPOSITION COMPRISING A CATIONIC AND/OR AMPHOTERIC POLYMER, A PARTICULAR SILICONE AND A POLYESTERAMINE |
FR3146592A1 (en) | 2023-03-14 | 2024-09-20 | L'oreal | COMPOSITION COMPRISING AN ALKALI METAL CARBONATE, CALCIUM HYDROXIDE AND SODIUM OR POTASSIUM METASILICATE IN SPECIFIC QUANTITIES |
FR3148912A1 (en) | 2023-05-24 | 2024-11-29 | L'oreal | COMPOSITION COMPRISING CATIONIC AND ANIONIC POLYMERS |
FR3149780A1 (en) | 2023-06-16 | 2024-12-20 | L'oreal | Composition comprising at least 1% by weight of ascorbic acid, a water-soluble organic UV filter and additional UV filters |
WO2024262654A1 (en) | 2023-06-20 | 2024-12-26 | L'oreal | Composition comprising hydrophobicized cationic polymer |
WO2024262655A1 (en) | 2023-06-20 | 2024-12-26 | L'oreal | Composition comprising cationic polymer and at least two fatty acids |
WO2024262651A1 (en) | 2023-06-20 | 2024-12-26 | L'oreal | Composition comprising cationic polymer and basic amino acid |
WO2024262652A1 (en) | 2023-06-20 | 2024-12-26 | L'oreal | Composition comprising hydrophobicized cationic polymer and water-insoluble particle |
FR3150116A3 (en) | 2023-06-20 | 2024-12-27 | L'oreal | COMPOSITION COMPRISING A HYDROPHOBIZED CATIONIC POLYMER AND A WATER-INSOLUBLE PARTICLE |
FR3151211A3 (en) | 2023-07-21 | 2025-01-24 | L'oreal | COMPOSITION COMPRISING A HYDROPHOBILIZED CATIONIC POLYMER AND A ZWITTERIONIC COMPOUND |
FR3151213A3 (en) | 2023-07-21 | 2025-01-24 | L'oreal | COMPOSITION COMPRISING CATIONIC POLYMER AND BASIC AMINO ACID |
FR3151490A3 (en) | 2023-07-24 | 2025-01-31 | L'oreal | COMPOSITION COMPRISING A HYDROPHOBIZED CATIONIC POLYMER |
Also Published As
Publication number | Publication date |
---|---|
DE1638082B2 (en) | 1973-08-09 |
FR1601587A (en) | 1970-08-31 |
DE1638082C3 (en) | 1974-03-21 |
DE1638082A1 (en) | 1971-11-04 |
GB1246405A (en) | 1971-09-15 |
CH491807A (en) | 1970-06-15 |
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