Intelligent feeding and hanging work production line

CN224783024UActive Publication Date: 2026-09-22QUANZHOU DINGSHENGSHIJIA INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522458213.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-20
Publication Date
2026-09-22
Estimated Expiration
2035-11-20

AI Technical Summary

Technical Problem

[0005]因此,本实用新型目的是提供一种服料智能吊挂工作生产线,能够解决现有的铆焊件服装智能制造在进行加热时,不易将金属材料卸下,同时炉内会存在金属废渣,这些金属废渣可以重新回收利用,因此需要从炉内进行取出的问题

Benefits of technology

综上所述,本实用新型包括以下至少一种有益效果:1、通过安装由大臂构件、小臂构件、气动驱动缸及橡胶滚轮构成的反钩单元,且橡胶滚轮采用天然橡胶注塑成型并设置防滑凸棱,达到了稳固夹持服料的目的,在气动驱动缸的控制下,反钩单元可自动完成夹持动作,天然橡胶材质与防滑凸棱既能避免划伤名贵面料,又能防止服料滑落,实现了保护服料与确保输送稳定的效果。

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Abstract

The utility model discloses a kind of clothing material intelligent hanging work production lines in the technical field of clothing intelligent manufacturing, including slide rail base, the slide rail base left side wall is equipped with guide slide rail, sliding assembly is equipped with suspension conveying mechanism in the guide slide rail, the suspension conveying mechanism includes pulley, suspension connecting rod, clothes hanger carrier, the clothes hanger carrier bottom is equipped with multiple avoidance grooves, each the avoidance groove is sequentially arranged and installed with intelligent hook clothes device, the intelligent hook clothes device includes reverse hook unit and stopper unit, by the reverse hook unit of installation by large arm component, small arm component, pneumatic drive cylinder and rubber roller is constituted, and rubber roller uses natural rubber injection molding and is provided with antiskid convex rib, reaches the purpose of firm clamping clothing material, under the control of pneumatic drive cylinder, reverse hook unit can automatically complete clamping action, natural rubber material and antiskid convex rib can avoid scratching precious fabric, and clothing material can also be prevented from sliding, realize the effect of protection clothing material and ensure conveying stability.
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Description

Technical Field

[0001] This utility model relates to the field of intelligent manufacturing technology for clothing, and in particular to an intelligent hanging production line for clothing. Background Technology

[0002] In the field of modern intelligent garment manufacturing, intelligent fabric hanging production lines have become key equipment for improving production efficiency and management level. This production line realizes the orderly flow of fabrics between various processing stations through a suspended conveyor system. The clamp part, as the core component connecting the fabric and the conveyor system, directly affects the stability of fabric conveying and processing quality. With the continuous improvement of the requirements for accessory protection and automated operation in high-end garment production, the development of more intelligent and reliable clamp structures has become an important direction for optimizing the performance of intelligent fabric hanging production lines.

[0003] Existing intelligent garment hanging production lines typically use rigid materials for their clamping structures. When clamping expensive accessories or delicate fabrics, friction or pressure can easily cause scratches and abrasions on the fabric surface, affecting garment quality. Furthermore, traditional clamps rely heavily on manual operation, resulting in low automation during garment handling and making it difficult to control clamping force and position, increasing labor costs and the risk of operational errors. Therefore, we propose an intelligent garment hanging production line to address these issues. Utility Model Content

[0004] The purpose of this section is to outline some aspects of embodiments of the present invention and to briefly describe some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of the present invention, to avoid obscuring the purpose of these documents, and such simplifications or omissions should not be construed as limiting the scope of the present invention.

[0005] Therefore, the purpose of this utility model is to provide an intelligent hanging production line for clothing materials, which can solve the problem that in the existing intelligent manufacturing of riveted and welded clothing, it is not easy to remove metal materials during heating, and at the same time, there will be metal waste in the furnace. This metal waste can be recycled and reused, so it needs to be removed from the furnace.

[0006] To solve the above-mentioned technical problems, this utility model provides an intelligent garment hanging production line, which adopts the following technical solution: it includes a slide rail base, a guide slide rail is provided on the left side wall of the slide rail base, a suspension conveying mechanism is slidably assembled in the guide slide rail, the suspension conveying mechanism includes pulleys, suspension connecting rods, and a garment hanger carrier, a plurality of clearance grooves are provided at the bottom of the garment hanger carrier, and an intelligent garment hook device is arranged and installed in each clearance groove in sequence, the intelligent garment hook device includes a reverse hook unit and a stop block unit.

[0007] Optionally, the pulley is embedded in the guide groove on the left side wall of the slide rail base, and one end of the suspension link is fixedly assembled to the rotating shaft of the pulley by a key connection, while the other end is fastened to the top of the clothes hanger carrier by a bolt group.

[0008] Optionally, the anti-hook unit includes a main boom component, a secondary boom component, a pneumatic drive cylinder, and a rubber roller. The main boom component is hinged to the rear side wall of the clearance groove at the bottom of the clothes hanger carrier via a rotating joint. The secondary boom component is rotatably connected to the front end of the main boom component via a rotating shaft. The rubber roller is coaxially fixedly installed at the front end of the secondary boom component.

[0009] Optionally, the outer circumferential surface of the rubber roller is integrally formed with multiple sets of anti-slip protrusions arranged in a ring array, and the rubber roller is injection molded from natural rubber.

[0010] Optionally, a transmission wing plate extends from the middle of the top surface of the forearm component, a transmission guide groove is provided on the rear side wall of the clearance groove, the pneumatic drive cylinder is hinged in the transmission guide groove through a bearing seat, and the piston rod end of the pneumatic drive cylinder is hinged to the transmission wing plate.

[0011] Optionally, the front side wall of the clearance groove is provided with a sensing mounting groove, and a stop block unit is provided in the sensing mounting groove. The stop block unit includes a sensing block and a pressure sensing element. The sensing block is hinged in the sensing mounting groove by a pin, and the pressure sensing element is fixedly embedded in the front end face of the sensing block. The sensing block is made of elastic rubber material of the same type as the rubber roller. In summary, this utility model has at least one of the following beneficial effects: 1. By installing a reverse hook unit consisting of a large arm component, a small arm component, a pneumatic drive cylinder, and rubber rollers, and the rubber rollers being made of natural rubber injection molding and equipped with anti-slip ridges, the purpose of firmly clamping the garment is achieved. Under the control of the pneumatic drive cylinder, the reverse hook unit can automatically complete the clamping action. The natural rubber material and anti-slip ridges can not only avoid scratching the precious fabric, but also prevent the garment from slipping, thus achieving the effect of protecting the garment and ensuring stable conveying.

[0012] 2. By setting a stop block unit consisting of an induction block and a pressure sensing element on the front side wall of the clearance groove, and cooperating with the anti-hook unit to form an intelligent induction clamping system, the purpose of automatically sensing and clamping the material is achieved. When the material is placed, the induction block is triggered. After the pressure sensing element detects the pressure change, it can immediately drive the anti-hook unit to move, realizing the intelligent and efficient handling of material picking and placing, and improving the automation level of the production line. Attached Figure Description

[0013] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the state change structure of this utility model; Figure 3 This is a partial structural schematic diagram of the present invention; Figure 4 This is a schematic diagram of the overall right front of this utility model.

[0015] Explanation of reference numerals in the attached figures: 1. Slide rail base; 12. Guide slide rail; 2. Suspended conveyor mechanism; 21. Pulley; 22. Suspension link; 23. Clothes hanger carrier; 231. Clearance groove; 232. Transmission guide groove; 233. Sensor mounting groove; 24. Intelligent clothes hook device; 25. Anti-hook unit; 251. Main arm component; 252. Small arm component; 2521. Transmission wing plate; 253. Pneumatic drive cylinder; 254. Rubber roller; 2541. Anti-slip ridge; 3. Stop block unit; 31. Sensing block; 32. Pressure sensing element. Detailed Implementation

[0016] The following is in conjunction with the appendix Figure 1-4 The present invention will be described in further detail below.

[0017] Example 1, refer to Figure 1-4 In this embodiment, to address the problem that existing intelligent manufacturing processes for riveted and welded garments often struggle to remove metal materials during heating, and that metal slag remains inside the furnace (which can be recycled), this invention discloses an intelligent garment hanging production line. The system includes a slide rail base 1, with a guide slide rail 12 on the left side wall. A suspension conveying mechanism 2 is slidably mounted inside the guide slide rail 12. The suspension conveying mechanism 2 includes a pulley 21, a suspension link 22, and a hanger carrier 23. The hanger carrier 23 has multiple clearance grooves 231 at its bottom. Each clearance groove 231 has an intelligent hook device 24 arranged in sequence. The intelligent hook device 24 includes a reverse hook unit 25 and a stop block unit 3. By cooperating with the guide slide rail 12 and the suspension conveying mechanism 2, the system achieves the purpose of stable conveying of clothing along a preset path, ensuring the smooth flow of clothing on the production line. The clearance grooves 231 at the bottom of the hanger carrier 23 and the intelligent hook device 24 can clamp the clothing. The reverse hook unit 25 and the stop block unit 3 work together to avoid damage to the fabric during clamping.

[0018] The pulley 21 is embedded in the guide groove on the left side wall of the slide rail base 1. One end of the suspension rod 22 is fixedly mounted to the rotating shaft of the pulley 21 by a key connection, and the other end is fastened to the top of the hanger carrier 23 by a bolt group. By embedding the pulley 21 in the guide groove on the left side wall of the slide rail base 1, and fixing the suspension rod 22 to the rotating shaft of the pulley 21 by a key connection, and fastening the other end to the top of the hanger carrier 23 by a bolt group, the hanging conveyor mechanism 2 achieves a stable and flexible sliding function on the guide slide rail 12, ensuring that the hanger carrier 23 can move smoothly and along the preset track.

[0019] The anti-hook unit 25 includes a large arm component 251, a small arm component 252, a pneumatic drive cylinder 253, and a rubber roller 254. The large arm component 251 is hinged to the rear wall of the bottom clearance groove 231 of the clothes hanger carrier 23 via a revolute joint. The small arm component 252 is rotatably connected to the front end of the large arm component 251 via a rotating shaft. The rubber roller 254 is coaxially fixed to the front end of the small arm component 252. The large arm component 251 is hinged to the bottom clearance groove 231 of the clothes hanger carrier 23 via a revolute joint. The rear side wall of 31 is connected to the front end of the upper arm component 251 via a rotating shaft to the forearm component 252. The rubber roller 254 is then fixedly mounted on the front end of the forearm component 252 and equipped with a pneumatic drive cylinder 253. This enables the flexible opening and closing control and gentle clamping function of the anti-hook unit 25. Under the action of the pneumatic drive cylinder 253, the clamping force of the anti-hook unit 25 can be adjusted. The flexible material and surface convex design of the rubber roller 254 prevent scratches and wear on the precious fabric.

[0020] The outer circumference of the rubber roller 254 is integrally formed with multiple sets of anti-slip protrusions 2541 arranged in a ring array. The rubber roller 254 is injection molded from natural rubber. By integrally forming multiple sets of anti-slip protrusions 2541 arranged in a ring array on the outer circumference of the rubber roller 254 and using natural rubber injection molding, the purpose of stable clamping of the clothing is achieved. The flexible nature of natural rubber avoids scratches and wear on the surface of the clothing, while the anti-slip protrusions 2541 enhance the friction and prevent the clothing from slipping or shifting during the conveying process.

[0021] A transmission wing plate 2521 extends from the middle of the top surface of the forearm component 252, and a transmission guide groove 232 is opened on the rear side wall of the clearance groove 231. The pneumatic drive cylinder 253 is hingedly installed in the transmission guide groove 232 through a bearing seat. The piston rod end of the pneumatic drive cylinder 253 is hingedly connected to the transmission wing plate 2521. By extending the transmission wing plate 2521 from the middle of the top surface of the forearm component 252, opening the transmission guide groove 232 on the rear side wall of the clearance groove 231, and hingedly installing the pneumatic drive cylinder 253 in the transmission guide groove 232 through a bearing seat, the piston rod end of the pneumatic drive cylinder 253 is hingedly connected to the transmission wing plate 2521, thus realizing the purpose of converting the extension and retraction motion of the pneumatic drive cylinder 253 into the opening and closing motion of the forearm component 252.

[0022] A sensing mounting groove 233 is provided on the front wall of the clearance groove 231. A stop unit 3 is provided in the sensing mounting groove 233. The stop unit 3 includes a sensing block 31 and a pressure sensing element 32. The sensing block 31 is hinged in the sensing mounting groove 233 by a pin. The pressure sensing element 32 is fixedly embedded in the front end face of the sensing block 31. The sensing block 31 is made of elastic rubber material of the same type as the rubber roller 254. By providing a sensing mounting groove 233 on the front wall of the clearance groove 231 and providing a stop unit 3 consisting of a sensing block 31 and a pressure sensing element 32 in the groove, the sensing block 31 is hinged in the groove by a pin. The device is hinged to the shaft, and the pressure sensing element 32 is fixedly embedded in its front end face. The sensing block 31 is made of the same elastic rubber material as the rubber roller 254, which realizes the purpose of intelligent sensing and feedback of the placement status of the garment. When the garment is placed in place and the sensing block 31 is pressed down, the pressure sensing element 32 can quickly detect the pressure change and trigger the pneumatic drive cylinder 253 to work, so that the anti-hook unit 25 completes the clamping action, avoiding manual intervention and achieving the effect of automated intelligent clamping of garments and improving production efficiency. At the same time, the elastic rubber material of the sensing block 31 also ensures that the garment is not damaged during the detection process.

[0023] Operating control principle: The suspended conveyor mechanism 2 slides within the guide rail 12 of the slide rail base 1 via pulley 21, driving the hanger carrier 23 to move along the production line. When it is necessary to clamp the garment, the garment is placed in the clearance groove 231 at the bottom of the hanger carrier 23. The garment presses down on the sensing block 31 in the sensing mounting groove 233. After the pressure sensing element 32 detects that the pressure has reached the threshold, it sends a signal to the pneumatic drive cylinder 253 to inflate it. The piston rod of the pneumatic drive cylinder 253 extends, pushing the transmission wing plate 2521 on the top surface of the forearm component 252, causing the forearm component 252 to rotate and unfold around the front rotation axis of the upper arm component 251. This causes the rubber roller 254 at the front end to contact the garment. The anti-slip ridges 2541 and flexible material on the outer circumference of the rubber roller 254 ensure that the garment is firmly clamped while avoiding scratches. When the garment is conveyed to the designated work station, the pneumatic drive cylinder 253 deflates and retracts, the forearm component 252 retracts, and the garment is released.

[0024] The specific working principle is as follows: By installing a reverse hook unit 25 consisting of a large arm component 251, a small arm component 252, a pneumatic drive cylinder 253, and rubber rollers 254, and the rubber rollers 254 being made of natural rubber injection molding and equipped with anti-slip ridges 2541, the purpose of firmly clamping the garment is achieved. Under the control of the pneumatic drive cylinder 253, the reverse hook unit 25 can automatically complete the clamping action. The natural rubber material and the anti-slip ridges 2541 can not only avoid scratching the precious fabric, but also prevent the garment from slipping, thus achieving the effect of protecting the garment and ensuring stable conveying. By setting a stop block unit 3 consisting of a sensing block 31 and a pressure sensing element 32 on the front side wall of the clearance groove 231, a smart sensing clamping system is formed in conjunction with the reverse hook unit 25, achieving the purpose of automatically sensing the garment and completing the clamping. When the garment is placed, the sensing block 31 is triggered, and the pressure sensing element 32 detects the pressure change and immediately drives the reverse hook unit 25 to move, realizing the intelligent and efficient handling of garment picking and placing, and improving the automation level of the production line.

[0025] The wiring diagram of the pneumatic drive cylinder 253 in this utility model is common knowledge in the field. Its working principle is a well-known technology. The appropriate model is selected according to actual use. Therefore, the control method and wiring layout of the pneumatic drive cylinder 253 will not be explained in detail.

[0026] The above are all preferred embodiments of this utility model, and are not intended to limit the scope of protection of this utility model. Therefore, all equivalent changes made to the structure, shape and principle of this utility model should be covered within the scope of protection of this utility model.

Claims

1. A smart hanging production line for clothing, comprising a slide rail base (1), characterized in that: The left side wall of the slide rail base (1) is provided with a guide slide rail (12), and a suspension conveying mechanism (2) is slidably assembled in the guide slide rail (12). The suspension conveying mechanism (2) includes a pulley (21), a suspension link (22), and a clothes hanger carrier (23). The bottom of the clothes hanger carrier (23) is provided with multiple clearance grooves (231). Each clearance groove (231) is provided with an intelligent clothes hook device (24) arranged in sequence. The intelligent clothes hook device (24) includes a reverse hook unit (25) and a stop block unit (3).

2. The intelligent hanging production line for clothing according to claim 1, characterized in that: The pulley (21) is embedded in the guide groove on the left side wall of the slide rail base (1). One end of the suspension link (22) is fixedly assembled to the rotating shaft of the pulley (21) by a key connection, and the other end is fastened to the top of the clothes hanger carrier (23) by a bolt group.

3. The intelligent hanging production line for clothing according to claim 1, characterized in that: The anti-hook unit (25) includes a large arm component (251), a small arm component (252), a pneumatic drive cylinder (253), and a rubber roller (254). The large arm component (251) is hinged to the rear side wall of the bottom clearance groove (231) of the clothes hanger carrier (23) via a rotating joint. The small arm component (252) is rotatably connected to the front end of the large arm component (251) via a rotating shaft. The rubber roller (254) is coaxially fixedly installed at the front end of the small arm component (252).

4. The intelligent hanging production line for clothing according to claim 3, characterized in that: The outer circumference of the rubber roller (254) is integrally formed with multiple sets of anti-slip protrusions (2541) arranged in a ring array. The rubber roller (254) is injection molded from natural rubber.

5. The intelligent hanging production line for clothing according to claim 4, characterized in that: A transmission wing plate (2521) extends from the middle of the top surface of the forearm component (252), and a transmission guide groove (232) is provided on the rear side wall of the clearance groove (231). The pneumatic drive cylinder (253) is hinged in the transmission guide groove (232) through a bearing seat, and the piston rod end of the pneumatic drive cylinder (253) is hinged to the transmission wing plate (2521).

6. The intelligent hanging production line for clothing according to claim 1, characterized in that: The clearance groove (231) has a sensing mounting groove (233) on the front side wall. A stop block unit (3) is provided in the sensing mounting groove (233). The stop block unit (3) includes a sensing pressure block (31) and a pressure sensing element (32). The sensing pressure block (31) is hinged in the sensing mounting groove (233) by a pin. The pressure sensing element (32) is fixedly embedded in the front end face of the sensing pressure block (31). The sensing pressure block (31) is made of elastic rubber material of the same type as the rubber roller (254).