Cloth tension adjusting and conveying device for garment manufacturing

CN224831502UActive Publication Date: 2026-10-09TIANJIN YUANHANG IND & TRADE DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202522275340.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-28
Publication Date
2026-10-09
Estimated Expiration
2035-10-28

AI Technical Summary

Technical Problem

[0002]服装行业在生产过程中,经常需要搬动整卷的布料,并且需要将整卷的布料装到设备上,比如拖布机、染布机等,而整卷的布料重量非常重,搬运起来很费力,大大降低了布料加工的工作效率;专利号CN202321423734.1公布了一种可调节张力的布料输送机,采用卷布件正面衔接U型输送机,打卷完毕后布料从滑板传送至U型输送机,U型输送机再将卷好的布料输送至推车内,卷布和输送结合为一体的巧妙设计,使得布料输送更为方便,减少了人力操作;但是在对服装制造布料张力调节输送设备使用的过程中,需要工作人员手动调节卷轴位置的方式来对布料的张力进行调节,操作起来不够便捷

Benefits of technology

[0019]1、本申请技术方案通过滑孔、十字块、双向丝杆、蜗杆减速器和T型轴的设计,在对服装制造布料张力调节输送设备使用的过程中,能够使得机架内侧的两组蜗杆减速器分别运作,并方便带动两组滑孔中的双向丝杆进行旋转,并使得滑孔内部位于丝杆两端的两组十字块能够在螺合作用力下相互靠近或者远离,从而方便调节四组十字块之间的位置,并方便对多组T型轴之间的位置进行调节,使得布料体饶经T型轴的张力进行调节,且电动调节的方式更为便捷。

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Abstract

The utility model relates to clothing manufacturing cloth tension adjusting equipment technical field, specifically is a clothing manufacturing cloth tension adjusting conveying device, including frame, the frame outer wall surface is equipped with the sliding hole for adjusting, and sliding hole has two groups, the cross block for adjusting is slidably installed in the inboard sliding hole, and cross block has two groups, in the process of clothing manufacturing cloth tension adjusting conveying equipment use, can make the two groups of worm reducers of frame inboard respectively operate, and conveniently drive two groups of sliding hole in bidirectional screw rod and rotate, and make the two groups of cross blocks of sliding hole inside located screw rod both ends can be close to each other or away from each other under the screwing force, thereby conveniently adjust the position between four cross blocks, and conveniently adjust the position between multiple groups T type axle, make cloth body to adjust the tension of T type axle, and the electric adjustment mode is more convenient.
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Description

Technical Field

[0001] This utility model relates to the technical field of fabric tension adjustment equipment for garment manufacturing, and specifically to a fabric tension adjustment and conveying device for garment manufacturing. Background Technology

[0002] In the garment industry, the production process often requires moving entire rolls of fabric and loading them onto equipment such as fabric rollers and dyeing machines. These rolls are very heavy, making handling laborious and significantly reducing processing efficiency. Patent CN202321423734.1 discloses an adjustable tension fabric conveyor that uses a U-shaped conveyor connected to the front of the rolled fabric. After rolling, the fabric is conveyed from a sliding plate to the U-shaped conveyor, which then transports the rolled fabric to a trolley. This ingenious design, combining rolling and conveying into one unit, makes fabric transport more convenient and reduces manual labor. However, in the use of tension-adjusting conveyor equipment for garment manufacturing, workers still need to manually adjust the position of the roll to regulate the fabric tension, which is inconvenient. Therefore, we propose a tension-adjusting conveyor device for garment manufacturing. Utility Model Content

[0003] In view of the problems in the prior art, this utility model provides a fabric tension regulating and conveying device for garment manufacturing.

[0004] The technical solution adopted by this utility model to solve its technical problem is a fabric tension regulating and conveying device for garment manufacturing, including a frame. The outer wall surface of the frame is provided with sliding holes for adjustment, and there are two sets of sliding holes. A cross block for adjustment is slidably installed inside the sliding hole, and there are two sets of cross blocks. A bidirectional screw is rotatably installed inside the sliding hole and screwed to the cross block. A worm gear reducer that is driven by the bidirectional screw is assembled inside the frame by bolts, and there are two sets of worm gear reducers.

[0005] The outer wall surface of the cross block is rotatably mounted with a T-shaped shaft for support, and the outer wall surface of the frame is rotatably mounted with a guide rod for auxiliary material guiding. The outer circumference of the T-shaped shaft and the outer circumference of the guide rod are both clamped with roller sleeves for support, and the outer end surface of the T-shaped shaft and the outer end surface of the guide rod are both screwed with hexagonal disk seats for limiting. Fabric for garment manufacturing is wound around the multiple sets of guide rods and the T-shaped shaft.

[0006] By adopting the above technical solution, during the use of the fabric tension adjustment and conveying equipment for garment manufacturing, the two sets of worm gear reducers inside the frame can operate separately and easily drive the bidirectional lead screws in the two sets of sliding holes to rotate. This allows the two sets of cross blocks located at both ends of the lead screw inside the sliding hole to move closer or further apart under the screwing force, thereby facilitating the adjustment of the position between the four sets of cross blocks and the adjustment of the position between multiple sets of T-shaped shafts. This allows the tension of the fabric body around the T-shaped shafts to be adjusted, and the electric adjustment method is more convenient.

[0007] After adjusting the position of the T-shaft, multiple sets of guide rods can be used in conjunction with the T-shaft. The hexagonal plate seat on the outer periphery of the T-shaft and the guide rods facilitates the limiting and fixing of the roller sleeves that are engaged with the outer periphery of the T-shaft and the guide rods, and can subsequently limit and guide the fabric body, making the fabric body conveying more stable and convenient. In addition, the hexagonal plate seat is easy to disassemble and assemble, making it convenient to disassemble and replace the roller sleeves.

[0008] Specifically, the outer wall surface of the cross block is bolted with a support plate, and the outer wall surface of the support plate is equipped with a gear reducer that is connected to the T-shaped shaft. Both the power input end of the gear reducer and the power input end of the worm gear reducer are equipped with servo motors.

[0009] By adopting the above technical solution, the servo motor can conveniently provide power for the operation of the worm gear reducer, and the servo motor on the plate base can conveniently drive the T-shaped shaft on the outer periphery of the cross block to rotate under the operation of the gear reducer, which can facilitate the subsequent conveying of the fabric, and control the corresponding T-shaped shaft to rotate according to the needs of use.

[0010] Specifically, a protective rubber pad is bonded to one end of the hexagonal disk seat near the roller sleeve, and a protective rubber sleeve is bonded to the outer periphery of the roller sleeve.

[0011] By adopting the above technical solution, the rubber pad has good elasticity, which facilitates the improvement of the effect of the hexagonal plate seat in limiting and locking the roller sleeve, while the rubber sleeve has good elasticity, which facilitates the reduction of damage caused by rubbing when the fabric body and the roller sleeve come into contact with each other.

[0012] Specifically, both the outer end surface of the T-shaped shaft and the outer end surface of the guide rod are provided with internal hexagonal holes.

[0013] By adopting the above technical solution, the internal hexagonal hole facilitates the assembly and disassembly of the hexagonal base, making it easier to install and disassemble.

[0014] Specifically, the outer wall surface of the frame is equipped with a controller that is electrically connected to the servo motor.

[0015] By adopting the above technical solution, the controller can easily control the operation of the servo motor.

[0016] Specifically, the outer wall surface of the frame is equipped with an electrostatic eliminator corresponding to the fabric body.

[0017] By adopting the above technical solution, the static eliminator is easy to operate and can eliminate static electricity from the conveyed fabric, reducing the impact caused by static electricity generation.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] 1. The technical solution of this application, through the design of sliding holes, cross blocks, bidirectional lead screws, worm gear reducers, and T-shaped shafts, enables the two sets of worm gear reducers inside the frame to operate independently during the use of the fabric tension adjustment and conveying equipment in garment manufacturing. This facilitates the rotation of the bidirectional lead screws in the two sets of sliding holes, and allows the two sets of cross blocks located at both ends of the lead screw inside the sliding holes to move closer or further apart under the screwing force. This facilitates the adjustment of the position between the four sets of cross blocks and the position between multiple sets of T-shaped shafts, thereby adjusting the tension of the fabric body around the T-shaped shafts. Moreover, the electric adjustment method is more convenient.

[0020] 2. The technical solution of this application, through the design of guide rods, roller sleeves and hexagonal disc seats, allows multiple sets of guide rods to be used in conjunction with the T-shaped shaft after adjusting the position of the T-shaped shaft. The hexagonal disc seats on the outer periphery of the T-shaped shaft and guide rods facilitate the limiting and fixing of the roller sleeves that are engaged with the outer periphery of the T-shaped shaft and guide rods, and can subsequently limit and guide the fabric body, making the fabric body conveying more stable and convenient. In addition, the hexagonal disc seats are easy to disassemble and assemble, making it convenient to disassemble and replace the roller sleeves. Attached Figure Description

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] Figure 1 This is an isometric view of the present invention;

[0023] Figure 2 This is a schematic diagram of the connection structure between the cross block and the T-shaped shaft of this utility model;

[0024] Figure 3 This is an exploded view of the connection structure between the T-shaped shaft and the cross-shaped plate seat of this utility model;

[0025] In the diagram: 1. Frame; 2. Sliding hole; 3. Cross block; 4. Two-way lead screw; 5. Worm gear reducer; 6. T-shaft; 7. Guide rod; 8. Roller sleeve; 9. Hexagonal plate seat; 10. Rubber sleeve; 11. Plate seat; 12. Gear reducer; 13. Servo motor; 14. Rubber pad; 15. Internal hexagonal hole; 16. Fabric body; 17. Controller; 18. Static eliminator. Detailed Implementation

[0026] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0027] Please see Figure 1-3 This utility model provides a technical solution: a fabric tension regulating and conveying device for garment manufacturing, including a frame 1. The outer wall surface of the frame 1 is provided with sliding holes 2 for adjustment, and there are two sets of sliding holes 2. A cross block 3 for adjustment is slidably installed inside the sliding holes 2, and there are two sets of cross blocks 3. A bidirectional lead screw 4 is rotatably installed inside the sliding holes 2 and screwed to the cross block 3. A worm gear reducer 5 is bolted to the inner side of the frame 1 and is driven by the bidirectional lead screw 4, and there are two sets of worm gear reducers 5. A T-shaped shaft 6 for support is rotatably installed on the outer wall surface of the cross block 3, and a guide rod 7 for auxiliary material guiding is rotatably installed on the outer wall surface of the frame 1. Roller sleeves 8 for support are snapped onto the outer periphery of the T-shaped shaft 6 and the outer periphery of the guide rod 7. A hexagonal plate seat 9 for limiting is screwed onto the outer end surface of the T-shaped shaft 6 and the outer end surface of the guide rod 7. Fabric bodies 16 for garment manufacturing are wound around the multiple sets of guide rods 7 and the T-shaped shaft 6.

[0028] When in use, the tension adjustment conveying equipment for garment manufacturing fabric allows the two sets of worm gear reducers 5 inside the frame 1 to operate separately, and conveniently drive the bidirectional lead screws 4 in the two sets of sliding holes 2 to rotate. This allows the two sets of cross blocks 3 located at both ends of the lead screw inside the sliding hole 2 to move closer or further apart under the screwing force, thereby facilitating the adjustment of the position between the four sets of cross blocks 3 and the adjustment of the position between multiple sets of T-shaped shafts 6. This allows the tension of the fabric body 16 around the T-shaped shafts 6 to be adjusted, and the electric adjustment method is more convenient.

[0029] After adjusting the position of the T-shaft 6, multiple sets of guide rods 7 can be used in conjunction with the T-shaft 6. The hexagonal disc seat 9 on the outer periphery of the T-shaft 6 and the guide rod 7 can conveniently limit and fix the roller sleeve 8 that is engaged with the outer periphery of the T-shaft 6 and the guide rod 7, and can subsequently limit and guide the fabric body 16, making the fabric body 16 more stable and convenient to transport. In addition, the hexagonal disc seat 9 is easy to disassemble and assemble, making it easy to disassemble and replace the roller sleeve 8.

[0030] like Figure 1 and Figure 2 As shown, a support plate 11 is bolted to the outer wall surface of the cross block 3, and a gear reducer 12 connected to the T-shaped shaft 6 is mounted on the outer wall surface of the support plate 11. Both the power input end of the gear reducer 12 and the power input end of the worm gear reducer 5 are equipped with servo motors 13.

[0031] In use, the servo motor 13 provides power for the operation of the worm gear reducer 5, and the servo motor 13 on the plate base 11 drives the T-shaped shaft 6 on the outer periphery of the cross block 3 to rotate under the operation of the gear reducer 12, which facilitates the subsequent conveying of the fabric body 16, and controls the corresponding T-shaped shaft 6 to rotate according to the needs of use.

[0032] like Figure 1 , Figure 2 and Figure 3 As shown, a protective rubber pad 14 is bonded to one end of the hexagonal disk seat 9 near the roller sleeve 8, and a protective rubber sleeve 10 is bonded to the outer periphery of the roller sleeve 8.

[0033] When in use, the rubber pad 14 has good elasticity, which helps to improve the effect of the hexagonal plate seat 9 in limiting and locking the roller sleeve 8, while the rubber sleeve 10 has good elasticity, which helps to reduce the damage caused by rubbing when the fabric body 16 and the roller sleeve 8 come into contact with each other.

[0034] like Figure 1 , Figure 2 and Figure 3 As shown, both the outer end surface of the T-shaped shaft 6 and the outer end surface of the guide rod 7 are provided with internal hexagonal holes 15.

[0035] When in use, the internal hexagonal hole 15 facilitates the assembly and disassembly of the hexagonal base 9, making it easier to install and remove.

[0036] like Figure 1 As shown, a controller 17 electrically connected to the servo motor 13 is mounted on the outer wall surface of the frame 1.

[0037] When in use, the controller 17 facilitates the operation of the servo motor 13.

[0038] like Figure 1 As shown, the outer wall surface of the frame 1 is equipped with an electrostatic eliminator 18 corresponding to the fabric body 16.

[0039] When in use, the static eliminator 18 is easy to operate to eliminate static electricity from the conveyed fabric 16, reducing the impact caused by static electricity generation.

[0040] The working principle and usage process of this utility model are as follows: When using the fabric tension adjustment and conveying equipment for garment manufacturing, the equipment is first started by the controller 17. The two sets of worm gear reducers 5 inside the frame 1 operate under the drive of the two sets of servo motors 13, thereby driving the bidirectional lead screws 4 in the two sets of sliding holes 2 on the frame 1 to rotate. Since the cross blocks 3 and the bidirectional lead screws 4 are screwed together, when the bidirectional lead screws 4 rotate, the two sets of cross blocks 3 at both ends slide closer or further apart along the sliding holes 2 under the limiting action of the sliding holes 2, thereby adjusting the relative positions of the four sets of cross blocks 3. The change in the position of the cross blocks 3 will cause the T-shaped shafts 6 mounted on their outer walls to move synchronously, thereby changing the relative positions of multiple sets of T-shaped shafts 6. When the fabric body 16 passes around these T-shaped shafts 6, the change in the position between the T-shaped shafts 6 will cause the tension on the fabric body 16 to change accordingly, thus achieving the adjustment of the fabric tension. The tension of fabric body 16 is electrically adjusted. Simultaneously, the servo motor 13 on the plate base 11, in cooperation with the gear reducer 12, can drive the T-shaped shaft 6 on the outer periphery of the cross block 3 to rotate. Together with the guide rod 7 on the frame 1, they convey the fabric body 16. The roller sleeve 8, which is engaged with the outer periphery of the T-shaped shaft 6 and the guide rod 7, provides support and guidance for the fabric body 16. The hexagonal plate seat 9 on the outer side of the roller sleeve 8 limits and fixes the roller sleeve 8, ensuring its stability and reliability during operation. Furthermore, the static eliminator 18 operated by the controller 17 eliminates static electricity from the fabric body 16 during the conveying process, reducing the impact of static electricity on fabric processing. The rubber sleeve 10 on the outer periphery of the roller sleeve 8 and the rubber pad 14 on the hexagonal plate seat 9 respectively protect the fabric body 16 and enhance the fixing effect of the roller sleeve 8. In this way, the stable conveying of the fabric body 16 and the convenient adjustment of its tension are achieved, meeting the needs of fabric processing in the garment manufacturing process.

[0041] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A fabric tension regulating and conveying device for garment manufacturing, characterized in that, The frame (1) includes a frame (1), the outer wall surface of which is provided with sliding holes (2) for adjustment, and there are two sets of sliding holes (2). A cross block (3) for adjustment is slidably installed inside the sliding hole (2), and there are two sets of cross blocks (3). A double-acting screw (4) that is screwed into the cross block (3) is rotatably installed inside the sliding hole (2). A worm gear reducer (5) that is driven by the double-acting screw (4) is assembled inside the frame (1) by bolts, and there are two sets of worm gear reducers (5). The outer wall surface of the cross block (3) is rotatably mounted with a T-shaped shaft (6) for support, and the outer wall surface of the frame (1) is rotatably mounted with a guide rod (7) for auxiliary material guiding. The outer periphery of the T-shaped shaft (6) and the outer periphery of the guide rod (7) are both clamped with roller sleeves (8) for support, and the outer end surface of the T-shaped shaft (6) and the outer end surface of the guide rod (7) are both screwed with hexagonal disk seats (9) for limiting. The multiple sets of guide rods (7) and the T-shaped shaft (6) are all connected with fabric bodies (16) for garment manufacturing.

2. The fabric tension regulating and conveying device for garment manufacturing according to claim 1, characterized in that, The outer wall surface of the cross block (3) is fitted with a support plate (11) by bolts, and the outer wall surface of the support plate (11) is fitted with a gear reducer (12) that is connected to the T-shaped shaft (6) for transmission. The power input end of the gear reducer (12) and the power input end of the worm gear reducer (5) are both fitted with servo motors (13).

3. The fabric tension regulating and conveying device for garment manufacturing according to claim 1, characterized in that, The hexagonal plate seat (9) has a protective rubber pad (14) bonded to one end near the roller sleeve (8), and the roller sleeve (8) has a protective rubber sleeve (10) bonded to its outer periphery.

4. The fabric tension regulating and conveying device for garment manufacturing according to claim 1, characterized in that, Both the outer end surface of the T-shaped shaft (6) and the outer end surface of the guide rod (7) are provided with internal hexagonal holes (15).

5. The fabric tension regulating and conveying device for garment manufacturing according to claim 1, characterized in that, The outer wall surface of the frame (1) is equipped with a controller (17) that is electrically connected to the servo motor (13).

6. The fabric tension regulating and conveying device for garment manufacturing according to claim 1, characterized in that, The outer wall surface of the frame (1) is fitted with an electrostatic eliminator (18) corresponding to the fabric body (16).

Citation Information

Patent Citations

  • Tension-adjustable cloth conveyor

    CN220375881U