Doubling take-up machine

By designing the lead wire, parallel wire, and take-up components of the wire take-up machine, the problem that existing equipment can only take up wires of a single size has been solved, and efficient take-up of copper wires of various sizes has been achieved.

CN223779665UActive Publication Date: 2026-01-09东莞市兴元智能科技有限公司
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Patent Information

Application Number
CN202520405338.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-01-09
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

Existing copper wire take-up equipment can only take up wire of a single size, which is not very versatile and results in low take-up efficiency.

Method used

Design a wire take-up machine comprising first and second lead wire assemblies, a wire take-up assembly, and a take-up assembly, which are used for take-up of copper wires of different sizes respectively. By combining the lead wire, wire take-up and take-up mechanisms, the machine can simultaneously take up copper wires of multiple sizes.

Benefits of technology

It improves the applicability and efficiency of copper wire take-up, and can handle copper wire take-up of various sizes at the same time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a doubling and take-up machine which comprises a base, a plurality of wire leading mechanisms, a plurality of wire guiding mechanisms, a doubling mechanism and a take-up mechanism, the wire leading mechanisms and the wire guiding mechanisms are installed on the base, the doubling mechanism and the take-up mechanism are installed on the base, and the wire leading mechanisms, the wire guiding mechanisms, the doubling mechanism and the take-up mechanism are sequentially arranged according to working procedures. The wire leading mechanism comprises a first wire leading assembly installed on the base and a second wire leading assembly installed on the first wire leading assembly, the second wire leading assembly is located above the first wire leading assembly, and the wire doubling mechanism comprises a first wire doubling assembly installed on the base and a second wire doubling assembly installed on the first wire doubling assembly. The take-up mechanism comprises a first take-up assembly mounted on the base and a second take-up assembly mounted on the first take-up assembly, the first doubling assembly is arranged corresponding to the first lead assembly and the first take-up assembly, and the second doubling assembly is arranged corresponding to the second lead assembly and the second take-up assembly; the copper wire take-up device can achieve simultaneous take-up of copper wires of various sizes and is high in applicability.
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Description

TECHNICAL FIELD

[0001] The utility model relates to copper wire production technical field especially a kind of silk collecting machine. BACKGROUND

[0002] In life, practical copper wire is used as conductor wire, and has good conductivity, is used in manufacturing electric wire, cable, brush etc. in large quantities;It has good heat conductivity, and is often used to manufacture magnetism instrument, meter, such as compass, aviation meter etc. that must prevent magnetic interference;It has excellent plasticity, and is easy to hot-press and cold-press processing, copper wire needs to be collected in the process of processing, so it needs to use collecting equipment. When the copper wire is collected, only single size copper wire can be collected, and the applicability is poor, and then the efficiency of copper wire collection is greatly reduced. SUMMARY

[0003] To solve the above problems, the utility model provides a kind of silk collecting machine, and the first lead component, the first silk component and the first take-up assembly can be collected to one size copper wire, and the second lead component, the second silk component and the second take-up assembly can be collected to another size copper wire, to meet the simultaneous collection of multiple size copper wire, with strong applicability, improve the efficiency of copper wire collection.

[0004] To achieve the above object, the utility model adopts the technical scheme of providing a kind of silk collecting machine, including base, lead mechanism and wire guide mechanism installed on the base, silk mechanism and take-up mechanism installed on the base, the lead mechanism, the wire guide mechanism, the silk mechanism and the take-up mechanism are sequentially arranged according to process, the lead mechanism is multiple and is spaced apart, the lead mechanism includes first lead component installed on the base, second lead component installed on the first lead component, the second lead component is located above the first lead component, the silk mechanism includes first silk component installed on the base, second silk component installed on the first silk component, the take-up mechanism includes first take-up component installed on the base, second take-up component installed on the first take-up component, the first silk component is correspondingly arranged with the first lead component and the first take-up component, and the second silk component is correspondingly arranged with the second lead component and the second take-up component.

[0005] As a preferred solution, the first lead component comprises a first lead frame installed on the base, a first front lead bearing and a first rear lead bearing installed on the first lead frame, a first lead shaft, and a first lead wheel installed on the first lead shaft, one end of the first lead shaft is installed on the first front lead bearing, and the other end of the first lead shaft is installed on the first rear lead bearing; the first lead frame is provided with a first front lead bearing groove and a first rear lead bearing groove, the first front lead bearing is placed in the first front lead bearing groove, and the first rear lead bearing is placed in the first rear lead bearing groove.

[0006] As a preferred solution, the second lead component comprises a second lead frame installed on the base, a second front lead bearing and a second rear lead bearing installed on the second lead frame, a second lead shaft, and a second lead wheel installed on the second lead shaft, one end of the second lead shaft is installed on the second front lead bearing, and the other end of the second lead shaft is installed on the second rear lead bearing; the second lead frame is provided with a second front lead bearing groove and a second rear lead bearing groove, the first lead frame is provided with a first mounting groove, the second lead frame is provided with a first mounting column, the first mounting column is installed in the first mounting groove, the first mounting groove and the first mounting column are both multiple and are arranged at intervals, the second front lead bearing is placed in the second front lead bearing groove, and the second rear lead bearing is placed in the second rear lead bearing groove.

[0007] As a preferred solution, the lead mechanism comprises a first lead column, a second lead column, a third lead column, and a fourth lead column installed on the base, a first lower lead wheel and a first upper lead wheel rotatably installed on the first lead column, a second lower lead wheel and a second upper lead wheel rotatably installed on the second lead column, a third lower lead wheel and a third upper lead wheel rotatably installed on the third lead column, and a fourth lower lead wheel and a fourth upper lead wheel rotatably installed on the fourth lead column, the first lower lead wheel, the second lower lead wheel, the third lower lead wheel, and the fourth lower lead wheel are located on the same horizontal plane, the first upper lead wheel, the second upper lead wheel, the third upper lead wheel, and the fourth upper lead wheel are located on the same horizontal plane, the third lower lead wheel is arranged close to the fourth lower lead wheel, and the third upper lead wheel is arranged close to the fourth upper lead wheel.

[0008] As a preferred solution, the first thread assembly comprises a first thread frame mounted on the base, a first front thread bearing and a first rear thread bearing mounted on the first thread frame, a first thread shaft, a first thread wheel mounted on the first thread shaft, one end of the first thread shaft being mounted on the first front thread bearing, the other end of the first thread shaft being mounted on the first rear thread bearing; the first thread frame is provided with a first front thread bearing groove and a first rear thread bearing groove, the first front thread bearing is placed in the first front thread bearing groove, and the first rear thread bearing is placed in the first rear thread bearing groove, and the first thread wheel is arranged correspondingly with the third lower conductor wheel and the fourth lower conductor wheel.

[0009] As a preferred solution, the second thread assembly comprises a second thread frame mounted on the base, a second front thread bearing and a second rear thread bearing mounted on the second thread frame, a second thread shaft, a second thread wheel mounted on the second thread shaft, one end of the second thread shaft being mounted on the second front thread bearing, the other end of the second thread shaft being mounted on the second rear thread bearing, and the second thread wheel being arranged correspondingly with the third upper conductor wheel and the fourth upper conductor wheel; the second thread frame is provided with a second front thread bearing groove and a second rear thread bearing groove, the first thread frame is provided with a second mounting groove, the second thread frame is provided with a second mounting column, the second mounting column is mounted in the second mounting groove, the second mounting groove and the second mounting column are both provided in plurality and are arranged at intervals, the second front thread bearing is placed in the second front thread bearing groove, and the second rear thread bearing is placed in the second rear thread bearing groove.

[0010] As a preferred solution, the first thread assembly comprises a first thread frame mounted on the base, a first front thread bearing and a first rear thread bearing mounted on the first thread frame, a first thread shaft, a first thread wheel mounted on the first thread shaft, one end of the first thread shaft being mounted on the first front thread bearing, the other end of the first thread shaft being mounted on the first rear thread bearing; the first thread frame is provided with a first front thread bearing groove and a first rear thread bearing groove, the first front thread bearing is placed in the first front thread bearing groove, the first rear thread bearing is placed in the first rear thread bearing groove, the first thread wheel is arranged correspondingly with the third lower conductor wheel and the fourth lower conductor wheel.

[0011] As a preferred solution, the second take-up assembly comprises a second take-up frame and a second take-up motor mounted on the base, a second front take-up bearing and a second rear take-up bearing mounted on the second take-up frame, a second take-up roller, one end of which is mounted on the second front take-up bearing, the other end of which is mounted on the second rear take-up bearing, and a second transmission belt, one end of which is mounted on the second take-up motor, the other end of which is mounted on the second take-up roller; the second take-up frame is provided with a second front take-up bearing groove and a second rear take-up bearing groove, the first take-up frame is provided with a third mounting groove, the second take-up frame is provided with a third mounting column, the third mounting column is mounted in the third mounting groove, the third mounting groove and the third mounting column are both provided in plurality and are spaced apart, and the second front take-up bearing is placed in the second front take-up bearing groove and the second rear take-up bearing is placed in the second rear take-up bearing groove.

[0012] The beneficial effects of the utility model lie in that the first lead assembly, the first wire combining assembly and the first take-up assembly can take up copper wires of one size, the second lead assembly, the second wire combining assembly and the second take-up assembly can take up copper wires of another size, the simultaneous take-up of copper wires of multiple sizes is met, the applicability is strong, and the take-up efficiency of the copper wires is improved. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is the whole structure schematic diagram of the utility model of a kind of wire combining take-up machine.

[0014] Figure 2 For Figure 1 It is the structure schematic diagram of lead mechanism in a kind of wire combining take-up machine.

[0015] Figure 3 For Figure 2 It is the exploded structure schematic diagram of lead mechanism.

[0016] Figure 4 For Figure 1 It is the structure schematic diagram of lead mechanism in a kind of wire combining take-up machine

[0017] Figure 5 For Figure 1 It is the structure schematic diagram of wire combining mechanism in a kind of wire combining take-up machine.

[0018] Figure 6 For Figure 5 It is the exploded structure schematic diagram of wire combining mechanism.

[0019] Figure 7 For Figure 1 It is the structure schematic diagram of take-up mechanism in a kind of wire combining take-up machine.

[0020] Figure 8 ForFigure 7 Exploded view of the take-up mechanism.

[0021] Reference numerals: 100, Base; 200, Lead wire mechanism; 210, First lead wire assembly; 211, First lead wire frame; 212, First front lead wire bearing; 213, First rear lead wire bearing; 214, First lead wire shaft; 215, First lead wire wheel; 216, First front lead wire bearing groove; 217, First rear lead wire bearing groove; 218, First mounting groove; 220, Second lead wire assembly; 221, Second lead wire frame; 222, Second front lead wire bearing; 223, Second rear lead wire bearing; 224, Second lead wire shaft; 225, Second lead wire wheel; 226, Second front lead wire bearing groove 227. Second rear lead bearing groove; 228. First mounting post; 300. Lead wire mechanism; 310. First lead wire post; 311. First lower lead wire pulley; 312. First upper lead wire pulley; 320. Second lead wire post; 321. Second lower lead wire pulley; 322. Second upper lead wire pulley; 330. Third lead wire post; 331. Third lower lead wire pulley; 332. Third upper lead wire pulley; 340. Fourth lead wire post; 341. Fourth lower lead wire pulley; 342. Fourth upper lead wire pulley; 400. Twin wire mechanism; 410. First twin wire assembly; 411. First twin wire frame; 412. First front twin wire bearing ; 413, First rear parallel wire bearing; 414, First parallel wire shaft; 415, First parallel wire wheel; 416, First front parallel wire bearing groove; 417, First rear parallel wire bearing groove; 418, Second mounting groove; 420, Second parallel wire assembly; 421, Second parallel wire frame; 422, Second front parallel wire bearing; 423, Second rear parallel wire bearing; 424, Second parallel wire shaft; 425, Second parallel wire wheel; 426, Second front parallel wire bearing groove; 427, Second rear parallel wire bearing groove; 428, Second mounting post; 500, Take-up mechanism; 510, First take-up assembly; 511, First take-up frame; 5 12. First take-up motor; 513. First front take-up bearing; 514. First rear take-up bearing; 515. First take-up roller; 516. First drive belt; 517. First front take-up bearing groove; 518. First rear take-up bearing groove; 519. Third mounting groove; 520. Second take-up assembly; 521. Second take-up frame; 522. Second take-up motor; 523. Second front take-up bearing; 524. Second rear take-up bearing; 525. Second take-up roller; 526. Second drive belt; 527. Second front take-up bearing groove; 528. Second rear take-up bearing groove; 529. Third mounting post. Detailed Implementation

[0022] The technical solutions of the present application will be described clearly and completely in connection with the drawings. Obviously, the described embodiments are some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0023] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application. In addition, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.

[0024] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0025] As Figures 1 to 8The utility model provides a kind of silk collecting machine, including pedestal 100, lead mechanism 200 and wire mechanism being installed in pedestal 100 and silk collecting mechanism 500 and silk mechanism 400 being installed in pedestal 100, lead mechanism 200, wire mechanism, silk mechanism 400 and silk collecting mechanism 500 are sequentially arranged according to procedure, lead mechanism 200 is multiple and interval arrangement, lead mechanism 200 includes first lead assembly 210 being installed in pedestal 100, second lead assembly 220 being installed in first lead assembly 210, second lead assembly 220 is located above first lead assembly 210, silk mechanism 400 includes first silk assembly 410 being installed in pedestal 100, second silk assembly 420 being installed in first silk assembly 410, silk collecting mechanism 500 includes first silk collecting assembly 510 being installed in pedestal 100, second silk collecting assembly 520 being installed in first silk collecting assembly 510, first silk assembly 410 is correspondingly arranged with first lead assembly 210 and first silk collecting assembly 510, second silk assembly 420 is correspondingly arranged with second lead assembly 220 and second silk collecting assembly 520. By the first lead assembly 210, first silk assembly 410 and first silk collecting assembly 510 of being set up, the copper wire of a size can be rewound, and the copper wire of another size can be rewound by second lead assembly 220, second silk assembly 420 and second silk collecting assembly 520, to meet the rewinding of copper wire of multiple sizes simultaneously, strong applicability, improve the rewinding efficiency of copper wire.

[0026] First lead assembly 210 includes first lead frame 211 being installed in pedestal 100, first front lead bearing 212 and first rear lead bearing 213 being installed in first lead frame 211, first lead shaft 214, first lead wheel 215 being installed in first lead shaft 214, first lead shaft 214 one end is installed in first front lead bearing 212, first lead shaft 214 other end is installed in first rear lead bearing 213;First lead frame 211 is equipped with first front lead bearing groove 216 and first rear lead bearing groove 217, first front lead bearing 212 is placed in first front lead bearing groove 216, first rear lead bearing 213 is placed in first rear lead bearing groove 217.Copper wire is guided to wire mechanism 300 by first lead wheel 215, since lead mechanism 200 is three in the embodiment, so first lead assembly 210 is also three, can simultaneously guide three copper wire to wire mechanism 300.

[0027] The second lead assembly 220 comprises a second lead frame 221 mounted on the base 100, a second front lead bearing 222 and a second rear lead bearing 223 mounted on the second lead frame 221, a second lead shaft 224, a second lead wheel 225 mounted on the second lead shaft 224, one end of the second lead shaft 224 being mounted on the second front lead bearing 222, and the other end of the second lead shaft 224 being mounted on the second rear lead bearing 223; the second lead frame 221 is provided with a second front lead bearing groove 226 and a second rear lead bearing groove 227, the first lead frame 211 is provided with a first mounting groove 218, the second lead frame 221 is provided with a first mounting column 228, the first mounting column 228 is mounted on the first mounting groove 218, the first mounting groove 218 and the first mounting column 228 are both provided in multiple and are arranged at intervals, the second front lead bearing 222 is placed in the second front lead bearing groove 226, and the second rear lead bearing 223 is placed in the second rear lead bearing groove 227. In the embodiment, the first lead wheel 215 is provided with a first lead groove, the second lead wheel 225 is provided with a second lead groove, and the sizes of the first lead groove and the second lead groove are different; the copper wire is guided to the lead mechanism 300 through the second lead wheel 225. Since the lead mechanism 200 in the embodiment is three, the second lead assembly 220 is also three, which can guide three copper wires to the lead mechanism 300 at the same time, and the copper wires guided by the second lead assembly 220 and the first lead assembly 210 are of different sizes.

[0028] The wire guide mechanism comprises a first wire column 310, a second wire column 320, a third wire column 330 and a fourth wire column 340 mounted on the base 100, a first lower wire wheel 311 and a first upper wire wheel 312 rotatably mounted on the first wire column 310, a second lower wire wheel 321 and a second upper wire wheel 322 rotatably mounted on the second wire column 320, a third lower wire wheel 331 and a third upper wire wheel 332 rotatably mounted on the third wire column 330, a fourth lower wire wheel 341 and a fourth upper wire wheel 342 rotatably mounted on the fourth wire column 340, the first lower wire wheel 311, the second lower wire wheel 321, the third lower wire wheel 331 and the fourth lower wire wheel 341 are located on the same horizontal plane, the first upper wire wheel 312, the second upper wire wheel 322, the third upper wire wheel 332 and the fourth upper wire wheel 342 are located on the same horizontal plane, the third lower wire wheel 331 is arranged close to the fourth lower wire wheel 341, and the third upper wire wheel 332 is arranged close to the fourth upper wire wheel 342. When the plurality of lead mechanisms 200 lead the wires, the copper wires on the plurality of first lead assemblies 210 that are far away from each other in position can pass through the first lower wire wheel 311 and the second lower wire wheel 321 to be guided and collected to the third lower wire wheel 331 and the fourth lower wire wheel 341, and then guided to the first wire combining assembly 410 through the third lower wire wheel 331 and the fourth lower wire wheel 341; similarly, the copper wires on the plurality of second lead assemblies 220 that are far away from each other in position can pass through the first upper wire wheel 312 and the second upper wire wheel 322 to be guided and collected to the third upper wire wheel 332 and the fourth upper wire wheel 342, and then guided to the first wire combining assembly 410 through the third upper wire wheel 332 and the fourth upper wire wheel 342.

[0029] The first wire combining assembly 410 comprises a first wire combining frame 411 mounted on the base 100, a first front wire combining bearing 412 and a first rear wire combining bearing 413 mounted on the first wire combining frame 411, a first wire combining shaft 414, and a first wire combining wheel 415 mounted on the first wire combining shaft 414, one end of the first wire combining shaft 414 is mounted on the first front wire combining bearing 412, and the other end of the first wire combining shaft 414 is mounted on the first rear wire combining bearing 413; the first wire combining frame 411 is provided with a first front wire combining bearing groove 416 and a first rear wire combining bearing groove 417, the first front wire combining bearing 412 is placed in the first front wire combining bearing groove 416, the first rear wire combining bearing 413 is placed in the first rear wire combining bearing groove 417, and the first wire combining wheel 415 is arranged corresponding to the third lower wire wheel 331 and the fourth lower wire wheel 341. After the plurality of copper wires are guided to the first wire combining assembly 410 through the wire guide mechanism 300, the first wire combining wheel 415 can combine the plurality of copper wires, and then the combined copper wires are transported to the first take-up assembly 510 for take-up.

[0030] The second parallel wire assembly 420 comprises a second parallel wire frame 421 mounted on the base 100, a second front parallel wire bearing 422 and a second rear parallel wire bearing 423 mounted on the second parallel wire frame 421, a second parallel wire shaft 424, a second parallel wire wheel 425 mounted on the second parallel wire shaft 424, one end of the second parallel wire shaft 424 being mounted on the second front parallel wire bearing 422, the other end of the second parallel wire shaft 424 being mounted on the second rear parallel wire bearing 423, and the second parallel wire wheel 425 being arranged correspondingly to the third upper wire guide wheel 332 and the fourth upper wire guide wheel 342; the second parallel wire frame 421 is provided with a second front parallel wire bearing groove 426 and a second rear parallel wire bearing groove 427, the first parallel wire frame 411 is provided with a second mounting groove 418, the second parallel wire frame 421 is provided with a second mounting column 428, the second mounting column 428 is mounted on the second mounting groove 418, the second mounting groove 418 and the second mounting column 428 are both multiple and arranged at intervals, the second front parallel wire bearing 422 is placed in the second front parallel wire bearing groove 426, and the second rear parallel wire bearing 423 is placed in the second rear parallel wire bearing groove 427. After the plurality of copper wires are guided to the second parallel wire assembly 420 through the wire guide mechanism 300, the second parallel wire wheel 425 can parallel the plurality of copper wires, and the parallel copper wires are transported to the second take-up assembly 520 for take-up.

[0031] The first take-up assembly 510 comprises a first take-up frame 511 and a first take-up motor 512 mounted on the base 100, a first front take-up bearing 513 and a first rear take-up bearing 514 mounted on the first take-up frame 511, a first take-up roller 515, and a first transmission belt 516, one end of the first take-up roller 515 being mounted on the first front take-up bearing 513, the other end of the first take-up roller 515 being mounted on the first rear take-up bearing 514, one end of the first transmission belt 516 being mounted on the first take-up motor 512, and the other end of the first transmission belt 516 being mounted on the first take-up roller 515; the first take-up frame 511 is provided with a first front take-up bearing groove 517 and a first rear take-up bearing groove 518, the first front take-up bearing 513 is placed in the first front take-up bearing groove 517, the first rear take-up bearing 514 is placed in the first rear take-up bearing groove 518, and the first take-up roller 515 is arranged correspondingly to the first parallel wire wheel 415. The first take-up motor 512 works to drive the first take-up roller 515 to rotate through the first transmission belt 516, and the rotation of the first take-up roller 515 can take up the plurality of copper wires after parallelization by the first parallel wire assembly 410.

[0032] The second take-up assembly 520 comprises a second take-up frame 521 and a second take-up motor 522 mounted on the base 100, a second front take-up bearing 523 and a second rear take-up bearing 524 mounted on the second take-up frame 521, a second take-up roller 525, one end of which is mounted on the second front take-up bearing 523, and the other end of which is mounted on the second rear take-up bearing 524, and a second transmission belt 526, one end of which is mounted on the second take-up motor 522, and the other end of which is mounted on the second take-up roller 525; the second take-up frame 521 is provided with a second front take-up bearing groove 527 and a second rear take-up bearing groove 528, the first take-up frame 511 is provided with a third mounting groove 519, the second take-up frame 521 is provided with a third mounting column 529, the third mounting column 529 is mounted on the third mounting groove 519, the third mounting groove 519 and the third mounting column 529 are both provided in plurality and are spaced apart, the second front take-up bearing 523 is placed in the second front take-up bearing groove 527, and the second rear take-up bearing 524 is placed in the second rear take-up bearing groove 528; the second take-up motor 522 works to drive the second take-up roller 525 to rotate through the second transmission belt 526, and the rotation of the second take-up roller 525 can take up the plurality of copper wires after being parallelized by the second parallelizing assembly 420.

[0033] The above embodiments only describe the preferred embodiments of the present application, and do not limit the scope of the present application, and various modifications and improvements to the technical solutions of the present application made by the ordinary engineering technicians in the art without departing from the design spirit of the present application shall fall within the protection scope of the present application determined by the claims.

Claims

1. A combined thread take-up device, characterized in that The device comprises a base, a lead mechanism and a wire mechanism installed on the base, a yarn mechanism and a take-up mechanism installed on the base, the lead mechanism, the wire mechanism, the yarn mechanism and the take-up mechanism are sequentially arranged in order, the lead mechanism is multiple and is arranged at intervals, the lead mechanism comprises a first lead assembly installed on the base and a second lead assembly installed on the first lead assembly, the second lead assembly is located above the first lead assembly, the yarn mechanism comprises a first yarn assembly installed on the base and a second yarn assembly installed on the first yarn assembly, the take-up mechanism comprises a first take-up assembly installed on the base and a second take-up assembly installed on the first take-up assembly, the first yarn assembly is arranged correspondingly with the first lead assembly and the first take-up assembly, and the second yarn assembly is arranged correspondingly with the second lead assembly and the second take-up assembly.

2. A thread combining machine according to claim 1, characterized in that: The first lead assembly comprises a first lead frame installed on the base, a first front lead bearing and a first rear lead bearing installed on the first lead frame, a first lead shaft, and a first lead wheel installed on the first lead shaft, one end of the first lead shaft is installed on the first front lead bearing, and the other end of the first lead shaft is installed on the first rear lead bearing; the first lead frame is provided with a first front lead bearing groove and a first rear lead bearing groove, the first front lead bearing is placed in the first front lead bearing groove, and the first rear lead bearing is placed in the first rear lead bearing groove.

3. A thread collecting machine according to claim 2, characterized in that: The second lead assembly comprises a second lead frame installed on the base, a second front lead bearing and a second rear lead bearing installed on the second lead frame, a second lead shaft, and a second lead wheel installed on the second lead shaft, one end of the second lead shaft is installed on the second front lead bearing, and the other end of the second lead shaft is installed on the second rear lead bearing; the second lead frame is provided with a second front lead bearing groove and a second rear lead bearing groove, the first lead frame is provided with a first mounting groove, the second lead frame is provided with a first mounting column, the first mounting column is installed on the first mounting groove, the first mounting groove and the first mounting column are multiple and arranged at intervals, the second front lead bearing is placed in the second front lead bearing groove, and the second rear lead bearing is placed in the second rear lead bearing groove.

4. A thread collecting machine according to claim 3, characterized in that: The wire guide mechanism comprises a first wire guide column, a second wire guide column, a third wire guide column and a fourth wire guide column mounted on the base, a first lower wire guide wheel and a first upper wire guide wheel rotatably mounted on the first wire guide column, a second lower wire guide wheel and a second upper wire guide wheel rotatably mounted on the second wire guide column, a third lower wire guide wheel and a third upper wire guide wheel rotatably mounted on the third wire guide column, and a fourth lower wire guide wheel and a fourth upper wire guide wheel rotatably mounted on the fourth wire guide column, wherein the first lower wire guide wheel, the second lower wire guide wheel, the third lower wire guide wheel and the fourth lower wire guide wheel are located on the same horizontal plane, the first upper wire guide wheel, the second upper wire guide wheel, the third upper wire guide wheel and the fourth upper wire guide wheel are located on the same horizontal plane, the third lower wire guide wheel is arranged close to the fourth lower wire guide wheel, and the third upper wire guide wheel is arranged close to the fourth upper wire guide wheel.

5. A thread combining machine according to claim 4, characterized in that: The first yarn combining assembly comprises a first yarn combining frame mounted on the base, a first front yarn combining bearing and a first rear yarn combining bearing mounted on the first yarn combining frame, a first yarn combining shaft, and a first yarn combining wheel mounted on the first yarn combining shaft, wherein one end of the first yarn combining shaft is mounted on the first front yarn combining bearing, and the other end of the first yarn combining shaft is mounted on the first rear yarn combining bearing; the first yarn combining frame is provided with a first front yarn combining bearing slot and a first rear yarn combining bearing slot, the first front yarn combining bearing is placed in the first front yarn combining bearing slot, and the first rear yarn combining bearing is placed in the first rear yarn combining bearing slot; the first yarn combining wheel is arranged correspondingly to the third lower wire guide wheel and the fourth lower wire guide wheel.

6. A parallel thread take-up device according to claim 5, characterized in that: The second yarn combining assembly comprises a second yarn combining frame mounted on the base, a second front yarn combining bearing and a second rear yarn combining bearing mounted on the second yarn combining frame, a second yarn combining shaft, and a second yarn combining wheel mounted on the second yarn combining shaft, wherein one end of the second yarn combining shaft is mounted on the second front yarn combining bearing, and the other end of the second yarn combining shaft is mounted on the second rear yarn combining bearing; the second yarn combining wheel is arranged correspondingly to the third upper wire guide wheel and the fourth upper wire guide wheel; the second yarn combining frame is provided with a second front yarn combining bearing slot and a second rear yarn combining bearing slot, the first yarn combining frame is provided with a second mounting slot, the second yarn combining frame is provided with a second mounting column, the second mounting column is mounted on the second mounting slot, and the second mounting slot and the second mounting column are both provided in multiple and are arranged at intervals; the second front yarn combining bearing is placed in the second front yarn combining bearing slot, and the second rear yarn combining bearing is placed in the second rear yarn combining bearing slot.

7. A thread collecting machine according to claim 6, characterized in that: The first take-up assembly comprises a first take-up frame and a first take-up motor mounted on the base, a first front take-up bearing and a first rear take-up bearing mounted on the first take-up frame, a first take-up roller, and a first transmission belt, one end of the first take-up roller being mounted on the first front take-up bearing, the other end of the first take-up roller being mounted on the first rear take-up bearing, one end of the first transmission belt being mounted on the first take-up motor, the other end of the first transmission belt being mounted on the first take-up roller; the first take-up frame is provided with a first front take-up bearing groove and a first rear take-up bearing groove, the first front take-up bearing being placed in the first front take-up bearing groove, the first rear take-up bearing being placed in the first rear take-up bearing groove, the first take-up roller being arranged corresponding to the first yarn guide wheel.

8. A thread combining machine according to claim 7, characterized in that: The second take-up assembly comprises a second take-up frame and a second take-up motor mounted on the base, a second front take-up bearing and a second rear take-up bearing mounted on the second take-up frame, a second take-up roller, and a second transmission belt, one end of the second take-up roller being mounted on the second front take-up bearing, the other end of the second take-up roller being mounted on the second rear take-up bearing, one end of the second transmission belt being mounted on the second take-up motor, the other end of the second transmission belt being mounted on the second take-up roller; the second take-up frame is provided with a second front take-up bearing groove and a second rear take-up bearing groove, the first take-up frame is provided with a third mounting groove, the second take-up frame is provided with a third mounting column, the third mounting column being mounted on the third mounting groove, the third mounting groove and the third mounting column both being a plurality of and being arranged at intervals, the second front take-up bearing being placed in the second front take-up bearing groove, the second rear take-up bearing being placed in the second rear take-up bearing groove.