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CN217626809U - Wool yarn doubling device - Google Patents

Wool yarn doubling device Download PDF

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Publication number
CN217626809U
CN217626809U CN202221304138.7U CN202221304138U CN217626809U CN 217626809 U CN217626809 U CN 217626809U CN 202221304138 U CN202221304138 U CN 202221304138U CN 217626809 U CN217626809 U CN 217626809U
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China
Prior art keywords
yarn
doubling
power
reciprocating motion
groove
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CN202221304138.7U
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Chinese (zh)
Inventor
冯子明
冯兵
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Hongye Cashmere Co ltd
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Hongye Cashmere Co ltd
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Priority to CN202221304138.7U priority Critical patent/CN217626809U/en
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Abstract

The utility model discloses a wool yarn doubling device, twist the device soon for power mobile device and multiunit yarn including reciprocating motion formula doubling wind, yarn multicomponent. The utility model belongs to the technical field of yarn doubling equipment, in particular to a wool yarn doubling device, which can ensure that the yarn can be wound in a winding working mode of reciprocating motion on a winding shaft by the working mode of reciprocating motion of a crank block, and can reduce the horizontal pulling force of the yarn during winding by matching with a clamping structure on the height, thereby avoiding the yarn from being pulled and broken; through the yarn screwing equipment capable of adapting to different calibers, the yarn with different radiuses can still be screwed in a contact manner without replacing the screwing equipment.

Description

Wool yarn doubling device
Technical Field
The utility model belongs to the technical field of yarn doubling equipment, specifically indicate a wool yarn doubling device.
Background
Traditional wool yarn is carrying out the in-process of doubling, the direction and the position of yarn rolling need constantly manual adjustment, otherwise can appear the yarn and gather the condition at spool same position, and current doubling equipment needs to send the size of line mouth according to the change of doubling quantity of difference when carrying out the doubling processing, guarantees that the yarn can receive the effort of revolving soon, changes the yarn rotating equipment that is fit for and then needs extra time.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model provides a wool yarn doubling device, which can reduce the horizontal tension of the yarn during winding by matching with a high clamping structure through the reciprocating motion working mode of a crank block, so that the yarn can be wound in a winding working mode of reciprocating motion on a winding shaft, and the yarn is prevented from being pulled and broken; through the yarn screwing equipment capable of adapting to different calibers, the yarn with different radiuses can still be screwed in a contact manner without replacing the screwing equipment.
The utility model adopts the following technical scheme: the utility model relates to a wool yarn doubling device, which comprises a reciprocating type doubling and winding device, a yarn multi-component power supply moving device and a plurality of groups of yarn screwing devices, wherein the yarn multi-component power supply moving device is connected with the reciprocating type doubling and winding device, and the plurality of groups of yarn screwing devices are arranged on the yarn multi-component power supply moving device; the reciprocating type doubling and winding device comprises a yarn winding box, a yarn winding shaft, a yarn winding power motor, a reciprocating working bottom plate clamping groove, a reciprocating working bottom plate clamping protrusion, a crank power motor, a reciprocating sliding block clamping groove, a reciprocating main power support, a movable connecting crank, a crank connecting sliding block, a sliding block upper end winding ring and a yarn direction turning adjusting ring, wherein the yarn winding box is connected with the yarn multi-component power moving device, the yarn winding shaft is clamped and rotatably arranged on the yarn winding box, the yarn winding power motor is connected with the yarn winding shaft, the reciprocating working bottom plate clamping protrusion is arranged on the yarn winding box, and the reciprocating working bottom plate is clamped and connected with the reciprocating working bottom plate clamping protrusion in a contact manner, the reciprocating working bottom plate clamping groove is formed in the reciprocating working bottom plate, the reciprocating working bottom plate is clamped and slidably arranged on the reciprocating working bottom plate clamping protrusion, the crank power motor is arranged on the reciprocating working bottom plate, the reciprocating sliding block clamping groove is formed in the reciprocating working bottom plate, the reciprocating main power support is hinged to the crank power motor, the movable connecting crank is hinged to the reciprocating main power support, the crank connecting sliding block is clamped and slidably arranged on the reciprocating sliding block clamping groove, the crank connecting sliding block is hinged to the movable connecting crank, the winding ring at the upper end of the sliding block is arranged on the crank connecting sliding block, and the yarn direction turning adjusting ring is arranged on the reciprocating working bottom plate.
The yarn multi-component feeding power moving device comprises a yarn doubling connecting support, a doubling working circular plate, a feeding hole, a discharging hole, a multi-directional yarn centralized collecting working groove, a yarn moving feeding power motor, a yarn feeding power main clamping gear, a main power yarn feeding roller, a driven clamping gear and a driven power yarn feeding roller, wherein the yarn doubling connecting support is connected with a yarn winding box, the doubling working circular plate is arranged on the yarn doubling connecting support, the feeding hole is arranged on the doubling working circular plate, the discharging hole is arranged on the doubling working circular plate, the multi-directional yarn centralized collecting working groove is connected with the feeding hole, the yarn moving feeding power motor is arranged on the doubling working circular plate, the yarn clamping power main clamping gear is arranged on the multi-directional yarn centralized collecting working groove, the yarn moving feeding motor is connected with the yarn feeding power main clamping gear, the main clamping gear is arranged on the driven power feeding roller, and the driven power feeding power motor is arranged on the driven clamping gear.
Further, the device is twisted soon to multiunit yarn is including twisting the work groove soon, twisting power motor soon, twisting power gear soon, twisting the cavity block gear soon, the yarn twists splint, splint block groove and splint coupling spring, it locates on the doubling work circular plate to twist the work groove soon, it locates on the doubling work circular plate to twist power motor soon, it links to each other with twisting power motor soon to twist power gear soon, it rotates to twist cavity block gear block and locates to twist on the work groove soon, splint block groove locates to twist on the cavity block gear soon, splint coupling spring locates on the splint block groove soon, the yarn is twisted splint soon and is articulated with splint block groove, splint coupling spring twists splint link to each other with the yarn soon splint.
Further, the screwing working groove is connected with the multidirectional yarn centralized collection working groove, and the screwing working groove is connected with the discharge hole.
Furthermore, the driven clamping gear is in meshed connection with the yarn feeding power main clamping gear, and the screwing power gear is in meshed connection with the screwing hollow clamping gear.
Further, the reciprocating working bottom plate clamping groove is in interference fit with the reciprocating working bottom plate clamping protrusion.
Adopt above-mentioned structure the utility model discloses the beneficial effect who gains as follows: the scheme provides a wool yarn doubling device, which can reduce the horizontal pulling force of the yarn during winding by matching with a clamping structure on the height and avoiding the yarn from being pulled and broken through the working mode of reciprocating movement of a crank slider, so that the yarn can be wound on a winding shaft in a reciprocating movement mode; through the yarn screwing equipment capable of adapting to different calibers, the yarn with different radiuses can still be screwed in a contact manner without replacing the screwing equipment.
Drawings
Fig. 1 is a top view of a wool yarn doubling device according to the present invention;
FIG. 2 is a front view of the crank attachment block;
FIG. 3 is a perspective view of a yarn direction turning adjustment ring;
FIG. 4 is a front cross-sectional view of a multi-yarn winding device;
FIG. 5 is a top cross-sectional view of a doubling work circular plate;
FIG. 6 is a front cross-sectional view of a doubling work circular plate;
FIG. 7 is a perspective view of a doubling work circular plate;
fig. 8 is a partially enlarged view of a portion a in fig. 1.
The yarn winding device comprises a reciprocating type doubling and winding device, a yarn multi-component feeding power moving device, a yarn multi-component twisting device, a yarn winding box, a yarn winding shaft, a yarn winding power motor, a yarn 7, a reciprocating working bottom plate clamping groove, a reciprocating working bottom plate clamping protrusion, a crank power motor, a reciprocating sliding block clamping groove, a reciprocating driving power support, a reciprocating connecting crank, a crank connecting sliding block, a sliding block upper end winding circular ring, a yarn direction turning adjusting circular ring, a yarn doubling connecting support, a yarn doubling working circular plate, a yarn feeding port, a yarn discharging port, a multi-directional yarn collecting working groove, a yarn moving feeding power motor, a yarn feeding main clamping gear, a driving power feeding roller 24, a driving power feeding roller 25, a driven gear hollow, a driven power feeding clamping gear 26, a driven power feeding wire, a driving wire 27, a working groove, a power feeding motor, a yarn clamping gear 29, a power clamping gear 30, a yarn clamping plate, a clamping plate 31, a twisting spring, a clamping plate 33 and a twisting spring connecting groove.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the invention and not to limit the invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments; based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
As shown in fig. 1, fig. 2, fig. 3, and fig. 8, the wool yarn doubling device of the present invention includes a reciprocating type doubling winding device 1, a multi-component yarn feeding power moving device 2, and a plurality of sets of yarn twisting devices 3, wherein the multi-component yarn feeding power moving device 2 is connected to the reciprocating type doubling winding device 1, and the multi-component yarn twisting devices 3 are disposed on the multi-component yarn feeding power moving device 2; reciprocating motion formula doubling wind 1 includes yarn coiling case 4, yarn rolling axle 5, yarn rolling power motor 6, reciprocating motion work bottom plate 7, reciprocating motion bottom plate block groove 8, reciprocating motion bottom plate block arch 9, crank power motor 10, reciprocating motion slider block groove 11, reciprocating motion main power support 12, removal connecting crank 13, crank connecting slide 14, slider upper end receipts line ring 15 and yarn direction turn regulation ring 16, yarn coiling case 4 links to each other for power mobile device 2 with the yarn multicomponent, yarn rolling axle 5 block rotates and locates on yarn coiling case 4, yarn rolling power motor 6 links to each other with yarn rolling axle 5, reciprocating motion bottom plate block arch 9 locates on yarn coiling case 4, reciprocating motion work bottom plate 7 is connected with reciprocating motion bottom plate block arch 9 contact, reciprocating motion bottom plate block groove 8 locates on reciprocating motion work bottom plate 7, reciprocating motion work bottom plate 7 block slides and locates on reciprocating motion bottom plate block arch 9, crank power motor 10 locates on crank motion work bottom plate 7, slider block 11 locates on reciprocating motion slider block groove 11 reciprocating motion slider 12 connects on the reciprocating motion crank power slide connecting slide 14 and the slider block 12, reciprocating motion slider connects on the crank moving slide connecting crank 14 and the slider 12.
As shown in fig. 1, 5, 6 and 7, the yarn multicomponent feeding power moving device 2 includes a yarn doubling connecting support 17, a doubling work circular plate 18, a feed port 19, a discharge port 20, a multidirectional yarn centralized collection work groove 21, a yarn moving feeding power motor 22, a yarn feeding power main engaging gear 23, a main power yarn feeding roller 24, a driven engaging gear 25 and a driven power yarn feeding roller 26, the yarn doubling connecting support 17 is connected to the yarn take-up box 4, the doubling work circular plate 18 is disposed on the yarn doubling connecting support 17, the feed port 19 is disposed on the doubling work circular plate 18, the discharge port 20 is disposed on the doubling work circular plate 18, the multidirectional yarn centralized collection work groove 21 is connected to the feed port 19, the yarn moving feeding power motor 22 is disposed on the doubling work circular plate 18, the yarn feeding power engaging gear 23 is rotatably disposed on the multidirectional yarn centralized collection work groove 21, the yarn moving feeding power motor 23 is connected to the yarn feeding power motor 24, and the driven power yarn centralized collection gear 23 is disposed on the driven power yarn centralized collection work circular plate 18, and the yarn feeding power engaging gear 23 is connected to the driven power yarn centralized collection work groove 26.
As shown in fig. 4 and 5, the multiple sets of yarn twisting devices 3 include a twisting working groove 27, a twisting power motor 28, a twisting power gear 29, a twisting hollow engaging gear 30, a yarn twisting clamping plate 31, a clamping plate engaging groove 32 and a clamping plate connecting spring 33, the twisting working groove 27 is disposed on the doubling working circular plate 18, the twisting power motor 28 is disposed on the doubling working circular plate 18, the twisting power gear 29 is connected to the twisting power motor 28, the twisting hollow engaging gear 30 is engaged and rotated on the twisting working groove 27, the clamping plate engaging groove 32 is disposed on the twisting hollow engaging gear 30, the clamping plate connecting spring 33 is disposed on the clamping plate engaging groove 32, the yarn twisting clamping plate 31 is hinged to the clamping plate engaging groove 32, and the clamping plate connecting spring 33 is connected to the yarn twisting clamping plate 31.
As shown in fig. 5, the screwing work tank 27 is connected to the multi-directional yarn collecting work tank 21, and the screwing work tank 27 is connected to the discharge port 20.
As shown in fig. 5 and 6, the driven engaging gear 25 is engaged with the yarn feeding power main engaging gear 23, and the screwing power gear 29 is engaged with the screwing hollow engaging gear 30.
As shown in fig. 8, the reciprocating base plate engaging groove 8 is interference-fitted with the reciprocating base plate engaging protrusion 9.
When the twisting device is used specifically, yarns are fed from the plurality of feed inlets 19 on the doubling working circular plate 18, the yarns move to the power motor 22 to work, the yarns rotate to the power main clamping gear 23 to drive the driven clamping gear 25 to rotate reversely, so that the multi-strand yarns are fed from one end to the other end by the driven wire feeding roller 26 and the main power wire feeding roller 24, when the yarns pass through the twisting hollow clamping gear 30, the twisting power motor 28 works, the twisting power gear 29 drives the twisting hollow clamping gear 30 to rotate, the clamping plate connecting spring 33 always plays a supporting role on the yarn twisting clamping plate 31 to fix and twist the yarns, and after the twisted yarns are fed out from the discharge outlet 20, the yarns pass through the yarn direction turning adjusting circular ring 16 and continue to pass through the take-up circular ring 15 at the upper end of the sliding block to be connected with the yarn take-up shaft 5; in order to horizontally wind the twisted yarn on the yarn winding shaft 5 and prevent the yarn from being broken due to oblique winding, the reciprocating working base plate 7 needs to slide along the reciprocating working base plate clamping groove 8, and then the reciprocating main power bracket 12 rotates and drives the movable connecting crank 13 to move through the rotation of the crank power motor 10, so that the crank connecting slider 14 slides along the reciprocating slider clamping groove 11, and the yarn is driven by the winding ring 15 at the upper end of the slider to reciprocate along the horizontal direction of the yarn winding shaft 5; the yarn winding power motor 6 works to enable the yarn winding shaft 5 to wind the yarn, and the design function that the twisted yarn is wound is achieved.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
The present invention and the embodiments thereof have been described above, but the description is not limited thereto, and the embodiment shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should understand that they should not be limited to the embodiments described above, and that they can design the similar structure and embodiments without departing from the spirit of the invention.

Claims (6)

1. The utility model provides a wool yarn doubling device which characterized in that: the multi-component yarn twisting device comprises a reciprocating type doubling and winding device (1), a multi-component yarn power supply moving device (2) and a plurality of groups of yarn twisting devices (3), wherein the multi-component yarn power supply moving device (2) is connected with the reciprocating type doubling and winding device (1), and the plurality of groups of yarn twisting devices (3) are arranged on the multi-component yarn power supply moving device (2); the reciprocating motion type doubling and winding device (1) comprises a yarn winding box (4), a yarn winding shaft (5), a yarn winding power motor (6), a reciprocating motion working bottom plate (7), a reciprocating motion bottom plate clamping groove (8), a reciprocating motion bottom plate clamping bulge (9), a crank power motor (10), a reciprocating motion sliding block clamping groove (11), a reciprocating motion main power support (12), a mobile connecting crank (13), a crank connecting slider (14), a slider upper end take-up ring (15) and a yarn direction turning adjusting ring (16), wherein the yarn winding box (4) is connected with the yarn multi-component power moving device (2), the yarn winding shaft (5) is rotatably arranged on the yarn winding box (4), the yarn power motor (6) is connected with the yarn winding shaft (5), the reciprocating motion bottom plate clamping bulge (9) is arranged on the yarn winding box (4), the reciprocating motion working bottom plate (7) is in contact with the reciprocating motion bottom plate clamping bulge (9) and is connected with the reciprocating motion working bottom plate clamping bulge (7), the reciprocating motion working bottom plate clamping bulge (7) is arranged on the reciprocating motion working bottom plate (7), reciprocating motion slider block groove (11) is located on reciprocating motion work bottom plate (7), reciprocating motion main power support (12) are articulated with crank power motor (10), it is articulated with reciprocating motion main power support (12) to move joint crank (13), crank link block (14) block is slided and is located on reciprocating motion slider block groove (11), crank link block (14) are articulated with move joint crank (13), slider upper end is received line ring (15) and is located on crank link block (14), yarn direction turn is adjusted ring (16) and is located on reciprocating motion work bottom plate (7).
2. A wool yarn doubling device according to claim 1, wherein: the multi-component yarn feeding power moving device (2) comprises a yarn doubling connecting support (17), a doubling working circular plate (18), a feeding hole (19), a discharging hole (20), a multi-directional yarn centralized collection working groove (21), a yarn moving power feeding motor (22), a yarn feeding power main clamping gear (23), a driving power feeding roller (24), a driven clamping gear (25) and a driven power feeding roller (26), wherein the yarn doubling connecting support (17) is connected with a yarn winding box (4), the doubling working circular plate (18) is arranged on the yarn doubling connecting support (17), the feeding hole (19) is arranged on the doubling working circular plate (18), the discharging hole (20) is arranged on the doubling working circular plate (18), the multi-directional yarn centralized collection working groove (21) is connected with the feeding hole (19), the yarn moving power feeding motor (22) is arranged on the doubling working circular plate (18), the yarn moving power feeding gear (23) is connected with the yarn feeding power feeding motor (23), the driven clamping gear (25) is clamped and rotatably arranged on the multidirectional yarn centralized collecting working groove (21), and the driven wire feeding roller (26) is arranged on the driven clamping gear (25).
3. A wool yarn doubling apparatus according to claim 2, wherein: device (3) is twisted soon to multiunit yarn is including twisting work groove (27), twisting power motor (28), twisting power gear (29), twisting cavity block gear (30), yarn and twisting splint (31), splint block groove (32) and splint coupling spring (33) soon, twist on twist work groove (27) and locate doubling work circular plate (18), twist on power motor (28) and locate doubling work circular plate (18), twist power gear (29) and twist power motor (28) and link to each other soon, twist cavity block gear (30) block and rotate and locate and twist on twisting work groove (27), splint block groove (32) are located and are twisted on cavity block gear (30) soon, splint coupling spring (33) are located on splint block groove (32), it is articulated with splint block groove (32) that twist to twist splint (31) for the yarn, splint coupling spring (33) are twisted splint (31) with the yarn and are twisted splint (31) and link to each other.
4. A wool yarn doubling device according to claim 3, wherein: the screwing working groove (27) is connected with the multidirectional yarn centralized collection working groove (21), and the screwing working groove (27) is connected with the discharge hole (20).
5. A wool yarn doubling apparatus according to claim 4, wherein: the driven clamping gear (25) is meshed with the yarn feeding power main clamping gear (23), and the screwing power gear (29) is meshed with the screwing hollow clamping gear (30).
6. A wool yarn doubling device according to claim 5, wherein: the reciprocating working bottom plate clamping groove (8) is in interference fit with the reciprocating working bottom plate clamping bulge (9).
CN202221304138.7U 2022-05-27 2022-05-27 Wool yarn doubling device Active CN217626809U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221304138.7U CN217626809U (en) 2022-05-27 2022-05-27 Wool yarn doubling device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221304138.7U CN217626809U (en) 2022-05-27 2022-05-27 Wool yarn doubling device

Publications (1)

Publication Number Publication Date
CN217626809U true CN217626809U (en) 2022-10-21

Family

ID=83657465

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221304138.7U Active CN217626809U (en) 2022-05-27 2022-05-27 Wool yarn doubling device

Country Status (1)

Country Link
CN (1) CN217626809U (en)

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