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EP0662567B1 - Actionneur linéaire sans tige - Google Patents

Actionneur linéaire sans tige Download PDF

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Publication number
EP0662567B1
EP0662567B1 EP94120986A EP94120986A EP0662567B1 EP 0662567 B1 EP0662567 B1 EP 0662567B1 EP 94120986 A EP94120986 A EP 94120986A EP 94120986 A EP94120986 A EP 94120986A EP 0662567 B1 EP0662567 B1 EP 0662567B1
Authority
EP
European Patent Office
Prior art keywords
profile element
linear drive
longitudinal slot
groove
flank
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Revoked
Application number
EP94120986A
Other languages
German (de)
English (en)
Other versions
EP0662567A2 (fr
EP0662567A3 (fr
Inventor
Reinhard Lipinski
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Invest Tech AG
Original Assignee
Invest Tech AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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Application filed by Invest Tech AG filed Critical Invest Tech AG
Publication of EP0662567A2 publication Critical patent/EP0662567A2/fr
Publication of EP0662567A3 publication Critical patent/EP0662567A3/fr
Application granted granted Critical
Publication of EP0662567B1 publication Critical patent/EP0662567B1/fr
Anticipated expiration legal-status Critical
Revoked legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B15/00Fluid-actuated devices for displacing a member from one position to another; Gearing associated therewith
    • F15B15/08Characterised by the construction of the motor unit
    • F15B15/082Characterised by the construction of the motor unit the motor being of the slotted cylinder type

Definitions

  • the invention relates to a rodless linear drive with the features of the preamble of the claim 1.
  • Rodless linear drives generally have Guide tube in which a piston slidably as well as sealed.
  • a pressure medium generated on the piston Force from the guide tube has a lateral one Slit on that of a web connected to the piston is reached.
  • the slot or longitudinal slot extends at least over the whole of the piston continuous path and generally across the entire Length of the guide tube. That is why it is used to train Pressure medium chambers required, the longitudinal slot in the Seal areas where the piston is straight does not stand.
  • a sealing tape is used for this, which is in contact with the longitudinal slot from the inside and also with a section sits in this. In the area of the piston the sealing tape is lifted inwards from the longitudinal slot, to clear the way for the dock that the Seals around the sealing tape.
  • To work safely such to enable pressure-actuated linear drives it is necessary that the sealing tape at the longitudinal slot is held so that it does not sag inwards or falls.
  • DE 34 29 783 A1 describes a linear drive cylinder known in which the sealing the longitudinal slot Sealing tape two spaced apart and parallel has mutually arranged ribs or lips which reach through the longitudinal slot and each end are provided with a so-called bead. Both that Sealing tape as well as the ribs are made of flexible Material. The ribs are springy outwards, i.e. in Preloaded spreading direction away from each other and reach behind with their beads the longitudinal slot around the sealing tape to fix in the longitudinal slot.
  • a linear drive cylinder in which the Has longitudinal slots with flanks provided with a longitudinal groove, into which the sealing tape with corresponding longitudinal beads intervenes.
  • a pressure medium cylinder is known from EP 0 260 344 A3 known with a longitudinally slotted guide tube, at the one from the inside on the guide tube at the longitudinal slot adjacent sealing tape with one from the outside the cover tape adjacent to the longitudinal slot interacts.
  • the sealing tape has two outwards spaced parallel and longitudinal webs slightly arched away from each other, some Limit the space between yourself. The sealing tape engages with a piece provided on this and radially inward facing rib in this space one, due to the inclination of being in contact with each other standing surfaces a clamp or snap connection arises.
  • This pressure medium cylinder is next to the sealing tape the sealing tape is also required. Both tapes must are lifted from the longitudinal slot at the web and the bridge must be led around both bands.
  • a pressure medium cylinder must in addition to the sealing tape and the masking tape the magnetic strip is lifted out of the longitudinal slot, to the passage connected to the piston grant.
  • the separate profile element arranged in the longitudinal slot forms a locking device with which in the Longitudinal slot engaging section of the sealing tape can be locked.
  • the locking action can be done by suitable Design and dimensioning of the profile element largely regardless of the specific execution of the Sealing tape can be adjusted.
  • the Sealing tape is primarily for sealing the Guide tube responsible and can in terms of Material selection can be optimized for this function.
  • the separately provided profile element both in terms of its material selection as well as in terms of its geometric design can be interpreted so that the sealing tape is optimally held in the longitudinal slot is.
  • the sealing tape can wear can be reduced because of this when importing and executing in or from the longitudinal slot only a small one Deformation is subject.
  • the profile element in the Longitudinal slot non-positive, i.e. for example by Clamp or cohesively, for example by means of Be secured. It is also possible the profile element only cohesively, e.g. E.g. to be fixed in the longitudinal slot by means of adhesive. However the positive fixation is a simple and cheap solution through which the profile element is permanent and is kept reliable.
  • the holding element in the Longitudinal slot can at least on its flank be provided a groove in which the profile element with a Section sits.
  • the assembly of the profile element on the The guide tube is made simply by inserting the profile element in the groove.
  • the groove can be both rectangular and triangular or be shaped otherwise. It is crucial in everyone Case that the profile element related to the radial direction of the guide tube is held securely.
  • Sealing tape on at least one of the flanks of the longitudinal slot facing side have a longitudinal recess, which extends over the entire length of the sealing tape extends.
  • This longitudinal recess is on the profile element provided latching section assigned to the the flank of the longitudinal slot protrudes. If this rest section is held too resilient towards the groove, he snaps into the longitudinal recess of the sealing tape if this is in the longitudinal slot. Will the sealing tape pulled out from the longitudinal slot, deflects the locking section of the profile element and gives the sealing tape is free. This is not subject to any significant Deformation in the area of its longitudinal recess.
  • the profile element has a oval cross-section and lies in a rectangular Groove.
  • the profile element lies with its flat sides on two mutually parallel side walls of the groove on and protrudes with its round latching section into the longitudinal slot.
  • This profile element is in during the rest process its cross section deformed.
  • the semicircular or circular section The rest section becomes more or less flat pressed and the profile element is at least something in depressed the groove. Such a deformation is, for example allows if the profile element made of foam rubber is.
  • the profile element from one less flexible plastic or metal. So the profile element in the groove with respect to one direction be resiliently mounted away from the sealing tape. A Possibility to do this arises when the seated in the groove Section of the profile element spring means provided are. These spring means can be both a variety of spaced apart from one another over the length of the profile element, individual springs in the groove, such as knobs or the like. However, it is advantageous if the Spring means supported on the groove, on the profile element provided legs are. Form these legs lips running the entire length of the profile element, the feathers can.
  • the profile element can be used as a resilient tongue or lip formed locking section, the is arranged between the flank and the sealing tape and connected to the portion seated in the groove is.
  • the spring action required for locking is in mainly caused by a deformation of the tongue.
  • the tongue has contact surfaces that with corresponding wedge surfaces provided on the sealing strip to be in contact.
  • the inclination of touch and Wedge surfaces in relation to the flank of the longitudinal slot determines the for the snap in and out of the sealing tape required force.
  • Two grooves can also be used to fasten the profile element be provided, which run parallel to each other and in which the profile element with corresponding sections sits.
  • the grooves can be either triangular or rectangular be, as well as open edge grooves on the edges of the Flank of the longitudinal slot may be provided. In any case results the possibility of a secure, form-fitting Fixing the profile element in the longitudinal slot.
  • the profile element Flanks completely covered. In this case, these are through the Profile element protected.
  • the Web when it is pressed by lateral pressure on the profile element the flanks are not pressed.
  • the profile element forms thus a tarnish protection for the flanks.
  • This tarnish protection can already be ensured that the profile element at least one stationary on the Has flank adjacent section, based on the remaining edge is raised.
  • Even if the flank is not quite is covered, but provides the provided on the profile element Section ensure that the footbridge is not covered Parts of the flank cannot touch. That makes reliable tarnish protection.
  • the linear drive module shown in Fig. 1 is a rodless linear drive 1, which is a guide tube 2 has, in which a sealed against its wall 3 Piston 4 is slidably mounted.
  • the guide tube 2 is closed at the ends with covers 5, 6, so that the piston 4 with its end faces 7, 8, the Wall 3 and the covers 5 two chambers 9, 10 limited, which can be acted upon with pressure medium, such as compressed air are.
  • the guide tube 2 is parallel to one another Longitudinal axis 11 extending through the wall 3 Long slot 12 provided by two each other opposing ones running parallel to each other at a distance Flanks 13, 14 is limited, in particular from 2 and the following figures.
  • the longitudinal slot 12 is at the end of the covers 5, 6 held sealing tape 16 closed by means of one lying against the wall 3 of the guide tube 2 Sealing lip 17, the chambers 9, 10 in the longitudinal slot 12 seals.
  • the curvature of the sealing lip 17 is correct inside with the curvature of the wall 3 so that the piston 4 on the sealing lip 17 as on the rest of the wall 3 sits sealed.
  • a middle area of the Piston 4 is the sealing tape 16 from a guide device 18 pulled from the longitudinal slot 12 inwards. As can be seen from Fig. 2, is in this area forked web 19 is provided, the piston 4 with a connects external output 20 and through its fork Sealing tape 16 is performed.
  • Fig. 3 are two possible and in terms of training of the longitudinal slot 12 and the sealing tape 16 different Embodiments of the linear drive 1 in Cutout shown. 3, as in the rest of the following figures the left half of the Fig. An embodiment and in the another embodiment is shown on the right half of the figure. All embodiments have in common that in each flank 13, 14 a groove 22 is provided, in which a Profile element 24 is held. In all embodiments is the cross section of those provided in the flank 13 Groove 22 with the cross section in the opposite Flank 14 provided groove 22 match.
  • left Linear drive 1 is the groove provided in the flank 13 22 rectangular. It has two parallel ones Side walls 23, between which the cross section oval profile element 24 is held.
  • the profile element 24 is made of a flexible foam rubber and has a locking section projecting into the longitudinal slot 12 25 on, in cross-section essentially in the form of a circular section is.
  • the profile element 24 provides a certain Side tarnish protection.
  • the locking section 25 thus acts at the same time as a start-up section 30, which prevents the web from to slide along the flank 13 and damage it.
  • the protective effect is at least one consistently flat web rather low and dependent on the spring action of the profile element 24.
  • the web 19 can be reinforced with the side tarnish protection one lying at the same height as the profile element 24 Be provided projection, which is on the locking portion 25th the profile element 24 supports.
  • the groove 22 is nearby their mouth 31 formed with parallel flanks, being following the parallel flanked section of the mouth 31 initially widened away and then narrowed again. Portions of the side walls 23 thus form one another opposite contact surfaces 32, 33, which have a pointed, opening towards the mouth 31 with each other lock in.
  • the profile element 24 is inserted, the Locking section 25 is trapezoidal here.
  • the Locking section 25 is trapezoidal here.
  • two enclosing an acute angle Legs 36, 37 are provided, which are resilient and on the corresponding contact surfaces 32, 33 of the groove 22 issue.
  • the profile element 24 is made of a resilient plastic made so that the legs 36, 37 when inserted spring the profile element 24 into the groove 22, and that Profile element 24 to its rest position shown in Fig. 3 preload too springy.
  • the longitudinal recess provided in the sealing band 16 28 in this embodiment of the profile element in Correspondence with the trapezoidal locking section 25 also trapezoidal.
  • the Snap action between the guide tube 2 and the sealing tape 16 also by the action of the profile element 24 ensured.
  • serving as a locking member Profile element 24 is that serving as a locking member Profile element 24, however, not in the latching process whole, but essentially only in his Legs 36, 37 deformed. The extent of the deformation is also less, so that a plastic with less Compliance can be used.
  • this profile element 24 also offers side tarnish protection. This is especially the case if the web is with a lateral, which is supported on the profile element 24 Longitudinal rib is provided. At the latest when that Profile element 24 is pressed completely into the groove 22, so that the legs 36, 37 rest on the bottom, that is Profile element 24 a fixed abutment for the web 19th
  • the separate start-up section 30 lies on a somewhat recessed Area of edge 13 and is in the Longitudinal slot 12 in front. It is dimensioned so that it is the section 26 of the sealing tape 16 is present.
  • the profile element 24 a particularly good tarnish protection is ensured.
  • the jetty 19 lies down when it is subjected to a lateral force at the start-up section 30 or more precisely its contact surface 42, which is substantially parallel to the flank 13 is arranged. Because the contact surface 42, based on the flank 13, and the profile element 24 overall, but in particular in the start section 30 is made of relatively stiff material, the on the contact surface 42 adjacent web 19 do not touch the flank 13. This is effectively protected against damage.
  • the sealing tape 16 is on the piston 4 facing Inside straight, i.e. plan trained. That is why it from the piston passing under the sealing band 16 slightly deformed, i.e. pushed outwards.
  • the inside of the sealing tape 16 takes on the curvature of the piston 4. A corresponding freedom of movement ensure the longitudinal recess 28 is relatively large dimensioned.
  • Linear drive 1 largely corresponds to that on the left in FIG. 3 shown.
  • the difference is that the profile element 24 a substantially round cross section and the groove 22 has a square cross section.
  • the recess 28 is much larger, so that the sealing tape 16 only at rest with one Edge 43 abuts the profile element 24.
  • the Sealing tape 16 is also here, as in the above described embodiment, on its inside evenly, so that it is slightly behind by the passing piston 4 is pressed outside.
  • the longitudinal recess 28 grants a corresponding freedom of movement of the sealing tape 16.
  • a side protection albeit a less pronounced one, is also ensured in this embodiment, if on the web 19 one with the profile element 24 interacting, i.e. provided on this rib is.
  • a profile element 24 used which both have a good locking effect as well as ensuring good tarnish protection.
  • the section 26 lying in the groove 22 is in the direction the surface normal of the flank 13 is slidably mounted.
  • the latching section 25 is in the form of a circular section and lies in the correspondingly shaped longitudinal recess 28. From the Locking section 25 extends from the resiliently formed Starting section 30 from the groove 22 via the to the groove 22 adjacent section of the flank 13 and covers this from.
  • the one standing obliquely away from section 26 in the rest position Starting section 30 is supported on the flank 13 from and presses the locking portion 25 in the direction of Sealing tape 16, so that the locking section 25 firmly in the longitudinal recess 28 is.
  • the sealing tape 16 is engaged and disengaged in similar to that of the above-described embodiments. It is also through the startup section 30 protection of the flank 13 against damage by the Web 19 ensured when this towards the edge 13 is pressed. This is especially the case if that Profile element made of a tough and wear-resistant plastic is made.
  • the groove 22 is provided with undercuts.
  • the groove 22 has two parallel at a relatively large distance mutually extending side walls, in which again mutually opposite grooves 22a, 22b each with rectangular cross-section are introduced.
  • the grooves 22a, 22b form a roof-like floor with their side surfaces 44 of the groove 22.
  • the bottom 44 has two sections on that blunt in an opening opening away from the groove 22 Angle to each other.
  • the profile element 24 which is in the idle state is a U-shaped strip. This lies with his legs in the grooves 22a, 22b, causing him to spread is.
  • the profile element 24 consists of a flexible Material such as plastic or a resilient metal strip. Because of its spring action the profile element 24 is somewhat from the mouth 31 of the groove 22 pushed out so that it with its locking portion 25th protrudes from this.
  • FIG. 6 shows further exemplary embodiments, being in the embodiment shown on the left in addition to the groove 22, a second groove 45 open to the edge is provided on the opposite of the groove 22 Side of the edge 13 is arranged.
  • the profile element 24 has two sections 26, 46 lying in the grooves 22, 45 on through the startup section 30 with each other are elastically connected.
  • the startup section 30 covers the entire flank 13. In the idle state, the Section 26 with the starting section 30 a blunt and the section 46 lying in the edge-open groove 45 with the starting section 30 with each other an acute angle on.
  • the run-up section 30 is at the edge-open Groove 45 in the direction of the sealing tape 16 elastically in front, at the same time forming the latching section 25.
  • the side 27 of the sealing tape 16 is against the flank 13 inclined and goes along with the run-up section 30 a step 47 to a larger width.
  • the inclined Page 27 and step 47 together limit the longitudinal recess 28, in which the start-up section 30 lies.
  • a longitudinal, in cross section semicircular rib 48 may be provided in a corresponding, provided in the side 27 of the sealing tape 16 Longitudinal groove 49 lies.
  • the embodiment shown on the right in FIG. 6 is correct largely corresponds to the one shown on the left, whereby the Page 27 of the sealing tape 16, however, parallel to the Flank 13 of the longitudinal slot 12 runs. Outwardly closes the sealing tape 16 smoothly with the guide tube 2 and the section 46 lying in the edge-open groove 45 of the profile element 24.
  • the locking effect is here in essentially by the interaction of the rib 48 with the Longitudinal groove 49 caused.
  • the linear drive 1 shown on the left in FIG. 7 is included 5 largely identical in construction to that shown in FIG. 5, wherein the start-up section 30 lies flat against the flank 13.
  • the otherwise defining an angle profile in cross section Profile element 24 is in the rectangular groove 22 held in a form-fitting manner and with respect to the guide tube 2 essentially stationary.
  • the locking effect is due to the here very short trained locking lip 42, which with a locking lug 50 in the in the sealing tape 16th provided longitudinal groove 49 is.
  • Fig. 8 Others, both a tarnish protection and a locking function ensuring embodiments of the linear drive 1 are shown in Fig. 8.
  • the profile element 24 lies in the groove 22 which is triangular in cross section here in which the also triangular section 26 sits. This can, as shown, fully trained, as well be provided with a longitudinal groove that the elasticity of the Section 26 increased.
  • the start-up section 30 and the lip 41 are here on opposite sides of the Section 26 arranged.
  • the lip 41 can also, as is right in FIG. 8 is shown, directly with the starting section 30 be elastically connected.
  • FIG. 9 Another embodiment is in the left half of the Fig. 9 shown.
  • the edge-open groove 45 on hers to the flank 13 bordering side with a longitudinal Provide projection 53 so that, from the Seen longitudinal slot 12 forth, an undercut in the groove 45 results.
  • the profile element 24 lies in both Grooves 22, 45 and aligned with both the outside of the Guide tube 2 as well as with the outer side of the sealing tape 16. From the stationary through the grooves 22, 45 held section of the profile element extends the Lip or tongue 41 in the direction of the piston 4 in approximately radial direction. The lip 41 is not in contact the flank 13, but stands by this in the longitudinal slot 12th
  • the lip 41 is on the end with the entire Length extending latch 50 provided in the here groove-shaped longitudinal recess 28 is located, whereby the Sealing tape 16 is locked to the guide tube 2.
  • the Tarnish protection is here by the between the grooves 22, 45 extending start section 30 ensured.
  • the linear drive 1 shown on the right in FIG. 9 is correct largely corresponds to the one shown on the left, whereby on the undercut in the open groove 45 is dispensed with has been.
  • the flexible lip 41 is curved trained so that they are with their free end on the Edge 13 supports. It is arched into the longitudinal slot 12, this above section being about circular section-shaped locking section 25 forms.
  • the Linear drive 1 is by an undercut in the edge-open groove 45 a particularly secure attachment of the Profile element 24 ensured.
  • the groove 22 also as an open edge groove educated.
  • Profile element 24 extends the resiliently formed Run-up section 30 in the direction of the groove 22 which is open at the edge, in which he engages with a short section.
  • the startup section 30 is resiliently biased away from the flank 13, so that for the trapezoidal, in the longitudinal slot section of the sealing tape 16 results in a locking effect. It also provides good tarnish protection reached.
  • the linear drive 1 shown on the right in FIG. 10 has the profile element 24 on the lying in the groove 45 Section 46 a sealing groove 60 open to the outside on.
  • the sealing groove 60 forms with a on a masking tape 61 or a slide provided a labyrinth seal. This will be an additional improvement Sealing of the linear drive 1 reached.
  • the profile element 24 can be in any of its embodiments as an anti-louse element both on pressure fluid operated Linear drives 1 and on such linear drives can be used via traction mechanism, screw spindle gear or racks are driven.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Actuator (AREA)
  • Fluid-Damping Devices (AREA)
  • Vehicle Body Suspensions (AREA)
  • Surgical Instruments (AREA)

Claims (21)

  1. Actionneur linéaire comprenant un tube de guidage (2), pourvu d'une fente longitudinale (12) dans sa paroi et dans lequel un piston (4) est monté coulissant dans la direction longitudinale, au moins un dispositif de fermeture (5, 6) qui ferme le tube de guidage (2) côté extrémité, un pont de transfert (19) qui forme une prise d'entraínement (20), est lié au piston (4) et s'étend à travers la fente longitudinale (12), une bande d'étanchéité (16) qui ferme de manière étanche la fente longitudinale (12) au moins dans les zones sous pression (3, 10), est montée stationnaire par rapport au tube de guidage (2), côté extrémité, et comporte au moins une partie qui est insérée dans la fente longitudinale (12), caractérisé par le fait qu'il est prévu au moins un élément profilé (24) séparé qui est disposé dans la fente longitudinale (12), s'étend essentiellement le long d'au moins un flanc (13) de la fente longitudinale (12), dans le sens de la longueur de celui-ci, et est lié par complémentarité de formes à la bande d'étanchéité (16) de manière à former une liaison par encliquetage entre la bande d'étanchéité (16) et le tube de guidage (2).
  2. Actionneur linéaire selon la revendication 1, caractérisé par le fait que l'élément profilé (24) est tenu par complémentarité de formes dans la fente longitudinale (12).
  3. Actionneur linéaire selon la revendication 1, caractérisé par le fait que la fente longitudinale (12), pour la fixation de l'élément profilé (24), comporte dans son flanc (13) au moins une rainure (22) dans laquelle l'élément profilé (24) est monté par une partie (26).
  4. Actionneur linéaire selon la revendication 1, caractérisé par le fait qu'il est prévu dans au moins un côté (27) de la bande d'étanchéité (16) tourné vers le flanc (13) de la fente longitudinale (12) un évidement longitudinal (28) qui s'étend sur toute la longueur de la bande d'étanchéité (16).
  5. Actionneur linéaire selon la revendication 4, caractérisé par le fait que l'élément profilé (24) comporte une partie d'encliquetage (25) qui s'étend dans l'évidement longitudinal (28).
  6. Actionneur linéaire selon la revendication 4, caractérisé par le fait que la partie d'encliquetage (25) est tenue par une force élastique agissant en direction du flanc (13).
  7. Actionneur linéaire selon la revendication 1, caractérisé par le fait que l'élément profilé (24) présente une section transversale ovale.
  8. Actionneur linéaire selon la revendication 3, caractérisé par le fait que la rainure (22) présente une section transversale rectangulaire.
  9. Actionneur linéaire selon les revendications 7 et 8, caractérisé par le fait que l'élément profilé (24) est en contact par ses faces planes avec les parois latérales (23) mutuellement parallèles de la rainure (22) et fait saillie dans le fente longitudinale (12) avec sa partie d'encliquetage (25) arrondie.
  10. Actionneur linéaire selon la revendication 1, caractérisé par le fait que l'élément profilé (24) est en caoutchouc mousse.
  11. Actionneur linéaire selon la revendication 1, caractérisé par le fait que l'élément profilé (24) est un tube souple en matière plastique à paroi de faible épaisseur.
  12. Actionneur linéaire selon la revendication 1, caractérisé par le fait que l'élément profilé (24) est fixé par matière au flanc (13).
  13. Actionneur linéaire selon la revendication 3, caractérisé par le fait que l'élément profilé (24) est monté élastiquement dans la rainure (22) dans une direction opposée à la bande d'étanchéité (16).
  14. Actionneur linéaire selon la revendication 3, caractérisé par le fait que des moyens élastiques (36, 37) sont prévus sur la partie (26) de l'élément profilé (24) montée dans la rainure (22).
  15. Actionneur linéaire selon la revendication 14, caractérisé par le fait que les moyens élastiques (36, 37) sont des bras (36, 37) prévus sur l'élément profilé (24) qui prennent appui dans la rainure (22).
  16. Actionneur linéaire selon la revendication 15, caractérisé par le fait que les bras (36, 37) s'étendent sur toute la longueur de l'élément profilé (24).
  17. Actionneur linéaire selon la revendication 15, caractérisé par le fait que les bras (36, 37) sont en appui sur des surfaces d'appui (32, 33) aménagées dans la rainure (22), qui forment un angle ouvert en direction du flanc (13), les bras (36, 37) étant précontraints élastiquement dans la direction d'expansion.
  18. Actionneur linéaire selon la revendication 3, caractérisé par le fait que l'élément profilé (24) présente une partie d'encliquetage (25) conformée en languette ou en lèvre (41) élastique, qui est disposée entre le flanc (13) et la bande d'étanchéité (16) et est liée à la partie (26) montée dans la rainure (22).
  19. Actionneur linéaire selon la revendication 1, caractérisé par le fait qu'il est prévu pour l'élément profilé (24), deux rainures (22) dans lesquelles l'élément profilé (24) est monté par des parties correspondantes (26, 46).
  20. Actionneur linéaire selon la revendication 1, caractérisé par le fait que l'élément profilé (24) couvre complètement le flanc (13).
  21. Actionneur linéaire selon la revendication 1, caractérisé par le fait que l'élément profilé (24) présente au moins une partie en appui stationnaire sur le flanc (13) qui est surélevée par rapport au flanc (13).
EP94120986A 1994-01-11 1994-12-31 Actionneur linéaire sans tige Revoked EP0662567B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE4400454A DE4400454C2 (de) 1994-01-11 1994-01-11 Kolbenstangenloser Linearantrieb
DE4400454 1994-01-11

Publications (3)

Publication Number Publication Date
EP0662567A2 EP0662567A2 (fr) 1995-07-12
EP0662567A3 EP0662567A3 (fr) 1997-07-09
EP0662567B1 true EP0662567B1 (fr) 2000-09-20

Family

ID=6507643

Family Applications (1)

Application Number Title Priority Date Filing Date
EP94120986A Revoked EP0662567B1 (fr) 1994-01-11 1994-12-31 Actionneur linéaire sans tige

Country Status (4)

Country Link
US (1) US5467686A (fr)
EP (1) EP0662567B1 (fr)
AT (1) ATE196531T1 (fr)
DE (2) DE4400454C2 (fr)

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE9410393U1 (de) * 1994-06-28 1994-08-18 Festo Kg, 73734 Esslingen Linearantrieb
WO1997040279A1 (fr) * 1996-04-22 1997-10-30 Tol-O-Matic, Inc. Palier a fente
US6257123B1 (en) 1997-10-24 2001-07-10 Phd, Inc. Rodless slides
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Publication number Publication date
US5467686A (en) 1995-11-21
DE4400454A1 (de) 1995-07-20
EP0662567A2 (fr) 1995-07-12
EP0662567A3 (fr) 1997-07-09
DE4400454C2 (de) 1996-11-07
ATE196531T1 (de) 2000-10-15
DE59409532D1 (de) 2000-10-26

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