Hanging device

By designing an adjustable hanging device, a lifting arm assembly and a driving assembly to realize the up and down movement of the conveyor belt and the lifting tube, the problem that the hanging device cannot adapt to the low sewing efficiency of short pieces is solved, and the processing efficiency and operation stability are improved.

CN223371965UActive Publication Date: 2025-09-23ZHEJIANG YIKEDA INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422902913.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-09-23
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

The existing hanging device cannot adjust the sewing point position, resulting in low sewing efficiency of shorter garment pieces and the need for frequent loading and unloading.

Method used

A hanging device is designed, which realizes the up and down movement of the conveyor belt and the lifting tube through the lifting arm assembly and the first drive assembly to adapt to different lengths of the clothing pieces. The inlet assembly and the outlet assembly can be flexibly adjusted to maintain overlap, and the second end of the lifting tube can be telescopically connected to ensure smooth transportation of the clothing pieces.

Benefits of technology

It improves the processing efficiency of shorter garment pieces, reduces the number of loading and unloading times, and ensures the stability and continuity of operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hanging device. The hanging device comprises a bracket; the lifting arm assembly comprises a shell connected to the support, a conveying belt rotationally arranged on the shell and a lifting pipe arranged on one side of the shell, and a lifting area of the garment cutting piece assembly is formed between the lifting pipe and the shell; the first driving assembly is connected to the support and used for driving the conveying belt and the lifting pipe to move up and down relative to the shell. The in-station assembly is arranged on one side of the lifting arm assembly and used for in-station conveying of the garment cutting piece assembly, and the in-station assembly can move to be close to and in lap joint with the first end of the lifting pipe or away from the first end of the lifting pipe; the outbound assembly is connected with the second end of the lifting pipe and used for outbound conveying of the garment cutting piece assembly, and when the conveying belt and the lifting pipe move up and down, the second end of the lifting pipe can stretch out and draw back relative to the outbound assembly. The hanging device can be flexibly adjusted according to the actual length condition of the garment cut-parts, the short garment cut-parts do not need to be put down from the rack and then put on the rack, and the processing efficiency of the garment cut-parts is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of clothing assembly line production, and more specifically, to a hanging device. Background Art

[0002] In garment assembly line production, the hanging device is a complete production delivery and management model that combines hardware and software. It uses the corresponding hardware system to directly transport semi-finished pieces to each processing machine for operators to perform sewing operations at the processing machine.

[0003] In the prior art, the height of the sewing point of the hanging line is fixed from the ground and cannot be adjusted. For shorter garment pieces, the height of the sewing point when hanging the garment piece is high from the ground. Sewing requires first removing the garment piece from the sewing point, sewing it, and then re-hanging the garment piece back to the sewing point. This process is cumbersome and inefficient.

[0004] In summary, how to provide a hanging device that is applicable to shorter garment panels is a problem that needs to be solved urgently by those skilled in the art. Utility Model Content

[0005] In view of this, the purpose of the present invention is to provide a hanging device, in which a lifting tube can be moved up and down so as to be suitable for processing shorter garment pieces, thereby increasing operational flexibility and improving operational efficiency.

[0006] In order to achieve the above purpose, the present invention provides the following technical solutions:

[0007] A hanging device, comprising:

[0008] Bracket;

[0009] A lifting arm assembly includes a housing connected to the bracket, a conveyor belt rotatably mounted on the housing, and a lifting tube mounted on one side of the housing, wherein a lifting area for the garment panel assembly is formed between the lifting tube and the housing;

[0010] a first drive assembly connected to the bracket, for driving the conveyor belt and the lifting tube to move up and down relative to the housing;

[0011] an inlet assembly, disposed on one side of the lifting arm assembly and used for inlet conveying the garment panel assembly, wherein the inlet assembly can be moved to approach and overlap the first end of the lifting tube or away from the first end of the lifting tube;

[0012] An outbound assembly is connected to the second end of the lifting pipe and is used for outbound transportation of the garment piece assembly. When the conveyor belt and the lifting pipe move up and down, the second end of the lifting pipe can be extended and retracted relative to the outbound assembly.

[0013] Preferably, both ends of the conveyor belt are connected to a driving wheel and a driven wheel respectively, the driving wheel is connected to a driving member, and the driving member is provided on the housing and is used to drive the driving wheel;

[0014] The fixed end of the first driving assembly is connected to the housing, the movable end of the first driving assembly is provided with an adapter, the driven wheel is rotatably connected to the adapter, and the first end of the lifting tube is connected to the adapter.

[0015] Preferably, the first driving assembly includes:

[0016] a motor connected to the housing;

[0017] a screw assembly, connecting the output end of the motor and the adapter;

[0018] a track seat, provided on at least one side of the lead screw assembly;

[0019] A guide rod is provided through the lead screw assembly and the track seat, and is used to provide guidance for the movement of the lead screw assembly.

[0020] Preferably, the riser comprises:

[0021] a first riser;

[0022] a second riser, wherein a first end of the first riser is connected to the outbound assembly, and a second end of the first riser is telescopically connected to the second riser;

[0023] The first driving assembly is connected to the second lifting tube to drive the second lifting tube to extend and retract relative to the first lifting tube.

[0024] Preferably, it also includes a second drive component, which is arranged on the bracket and connected to a tensioning wheel, and the tensioning wheel is connected to the conveyor belt. The second drive component can move to drive the tensioning wheel to move to maintain the tension of the conveyor belt.

[0025] Preferably, the second driving assembly includes:

[0026] a mounting frame connected to the bracket;

[0027] A moving part, the moving part is arranged through the mounting frame;

[0028] An adapter frame, the adapter frame is connected to the moving member, and the moving member can drive the adapter frame to move;

[0029] At least one of the tensioning wheels is rotatably connected to the adapter frame and can move with the adapter frame to maintain tension on the conveyor belt.

[0030] Preferably, either the mounting frame or the adapter frame is provided with a slide rail, and the other is provided with a slider, and the slide rail and the slider are slidably connected;

[0031] One of the mounting frame and the adapter frame on which the slide rail is provided is provided with a limiting portion, and the limiting portion is used to limit the sliding distance of the slider.

[0032] Preferably, the station entry component includes:

[0033] An inbound track assembly, used for conveying the garment panel assembly into the station;

[0034] A lowering stop point assembly is provided on the entry track assembly and is used to block or pass the garment panel assembly;

[0035] An outbound bend pipe assembly, one end of which is rotatably connected to the inbound track assembly or the lowering block point assembly, and the other end of which is used to approach and overlap the first end of the lifting pipe or to move away from the first end of the lifting pipe.

[0036] Preferably, the outbound elbow assembly comprises:

[0037] The outbound elbow is rotatably connected to the lowering block point assembly;

[0038] A guide head is connected to the outlet bend pipe, and a guide groove and a guide slide are provided on the side of the guide head away from the outlet bend pipe. The guide groove is located on the lower side of the guide slide, and the guide groove is used to fit the first end of the lifting pipe to achieve overlap, and the guide slide is used to guide the sliding of the garment panel assembly.

[0039] The hanging device provided by the utility model includes a bracket, a lifting arm assembly, a first driving assembly, an entry assembly, and an exit assembly, wherein the lifting arm assembly includes an outer shell, a conveyor belt and a lifting tube, the outer shell is connected to the bracket, and a lifting area of ​​a clothing piece assembly is provided between the conveyor belt and the lifting tube. When the first end of the entry assembly and the lifting tube are overlapped, the clothing piece assembly of the entry assembly is sent to the first end of the lifting tube and is processed, and then can be sent to the exit assembly through the lifting area; when the height of the lifting tube does not meet the operation requirements, the conveyor belt and the lifting tube are driven by the first driving assembly, so that the conveyor belt and the lifting tube can move up and down relative to the outer shell. During this process, the second end of the lifting tube can be extended and retracted relative to the exit assembly to adapt to changes, thereby maintaining the connection between the lifting tube and the exit assembly, and the entry assembly can be moved in a direction close to the first end of the lifting tube, so that the entry assembly can be adaptively adjusted according to the distance the lifting tube moves up and down, so that the entry assembly maintains the overlapping clothing piece assembly with the lifting tube.

[0040] The beneficial effects of the present invention are as follows: the first driving assembly drives the conveyor belt and the lifting tube to move up and down so that the lifting tube can be flexibly adjusted according to the actual length of the clothing pieces, and there is no need to take shorter clothing pieces off the shelf and then put them on the shelf, thereby improving the processing efficiency of the clothing pieces; in addition, when the lifting tube moves up and down, the inlet assembly can adaptively move to maintain overlap with the first end of the lifting tube, and the second end of the lifting tube can be telescopically connected to the outlet assembly, that is, the outlet assembly can maintain overlap with the second end of the lifting tube, thereby ensuring smooth transportation of the clothing piece assembly between the inlet assembly, the lifting arm assembly, and the outlet assembly, and ensuring stable and reliable operation of the hanging device. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are merely embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without paying any creative work.

[0042] Figure 1 This is a schematic diagram of the structure of the hanging device provided by the utility model;

[0043] Figure 2 for Figure 1 A partial enlarged view of

[0044] Figure 3 A schematic diagram of adjusting the tensioning wheel provided by the utility model;

[0045] Figure 4 A schematic diagram of the connection between the first drive assembly and the second drive assembly provided by the present invention;

[0046] Figure 5 A schematic structural diagram of the first drive assembly provided by the present utility model;

[0047] Figure 6 A schematic structural diagram of the second drive assembly provided by the present invention;

[0048] Figure 7 This is a schematic structural diagram of the outlet elbow assembly provided by the utility model.

[0049] Figure 1-Figure 7 , the reference numerals include:

[0050] 1-bracket; 2-entry track assembly; 3-lowering block assembly; 4-garment cutting piece assembly; 5-exit elbow assembly; 6-lifting arm assembly; 7-exit assembly; 8-first drive assembly; 9-second drive assembly; 10-adapter; 11-tensioning pulley; 51-exit elbow; 52-guide head; 521-guide slide; 522-guide groove; 61-housing; 62-lifting tube; 63-conveyor belt; 64-driving element; 65-driving wheel; 66-driven wheel; 621-first lifting tube; 622-second lifting tube; 81-motor; 82-screw assembly; 83-track seat; 84-guide rod; 91-mounting frame; 92-moving element; 93-adapter frame; 94-slide rail; 95-slider; 96-rotating shaft. DETAILED DESCRIPTION

[0051] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0052] The core of the utility model is to provide a hanging device, wherein the lifting arm assembly can be moved up and down to be suitable for processing clothing pieces of different lengths, thereby improving the flexibility and efficiency of the operation.

[0053] The hanging device provided by the present invention includes a bracket 1, a lifting arm assembly 6, a first driving assembly 8, an inbound assembly and an outbound assembly 7, please refer to Figure 1 .

[0054] Among them, the lifting arm assembly 6 includes a shell 61, a conveyor belt 63, and a lifting tube 62. Please refer to the figure. The shell 61 is fixed on the bracket 1, the conveyor belt 63 is rotatably provided on the shell 61, and the lifting tube 62 is provided on one side of the shell 61 and a lifting area of ​​the garment panel assembly 4 is formed between the two.

[0055] The garment piece assembly 4 may be clothing, shoes, hats, socks, etc.

[0056] The conveyor belt 63 is rotatably mounted on the housing 61 . The conveyor belt 63 can rotate relative to the housing 61 . The rotation of the conveyor belt 63 can be facilitated by a power component, such as a motor, a linear module, and the like.

[0057] The lifting pipe 62 is a slideway for lifting the garment piece assembly 4. The garment piece assembly 4 is transported from the inlet assembly to the first end of the lifting pipe 62 for sewing or other processing operations. After the garment piece assembly 4 at the first end of the lifting pipe 62 is processed, the garment piece assembly 4 is lifted to the outlet assembly 7 in the lifting area through the conveying action of the conveyor belt 63. The garment piece assembly 4 exits the outlet assembly 7 and enters the next processing step.

[0058] The first drive assembly 8 is connected to the bracket 1 and is used to drive the conveyor belt 63 and the lifting tube 62 so that they can move up and down relative to the housing 61. The movement of the conveyor belt 63 and the lifting tube 62 herein can be driven to move the entire conveyor belt 63 and the lifting tube 62 as a whole, or to drive one end of the conveyor belt 63 and the lifting tube 62 as a whole.

[0059] In one implementation, considering that the conveyor belt 63 has a certain pre-tightening force, within a certain range, one end of the conveyor belt 63 is fixed, and the other end is driven by the first drive assembly 8 to move up and down appropriately without affecting the transmission of the conveyor belt 63.

[0060] In another embodiment, the conveyor belt 63 may be provided with a tensioning wheel. When height adjustment is required, if the conveyor belt 63 moves and is stretched, the tensioning wheel may move adaptively to avoid damage to the conveyor belt 63 or problems in conveying the processed garment panel assembly 4.

[0061] It should be noted that the movement of one or both ends of the conveyor belt 63 described in the above process relies on the indirect connection between the first drive assembly 8 and the conveyor belt 63, rather than the direct connection of the first drive assembly 8 to the conveyor belt 63. For example, the first drive assembly 8 is connected to the conveyor belt 63 via a drive wheel, and the movement of the drive wheel drives the movement of the conveyor belt 63.

[0062] In addition, the first driving component 8 can be a cylinder, an oil cylinder, a ball screw motor, a trapezoidal screw motor, a gear rack structure, etc., which can realize the linear motion of the conveyor belt 63 and the lifting tube 62.

[0063] The inlet assembly is arranged on one side of the lifting arm assembly 6, and can supply the clothing piece assembly 4 to the first end of the lifting tube 62. The supply here means that after the sewing of the clothing piece at the first end of the lifting tube 62 is completed, it is conveyed to the outlet assembly 7 through the conveyor belt 63. At this time, the inlet assembly can provide unsewn clothing pieces to the first end of the lifting tube 62 to ensure that the clothing piece assembly line operation is carried out continuously and uninterruptedly.

[0064] The inlet assembly can move closer to and overlap the first end of the lifting tube 62, or further away from the first end of the lifting tube 62. If the inlet assembly remains in place as the lifting tube 62 moves up and down, a height difference will occur between the inlet assembly and the lifting tube 62, making it impossible to continue the subsequent conveying of garment pieces. Therefore, the inlet assembly needs to adapt to the movement of the lifting tube 62.

[0065] For example, in one embodiment, if the lifting tube 62 and conveyor belt 63 need to move upward, the inlet assembly must first be moved upward a certain distance to move away from the first end of the lifting tube 62 and release the overlap with the first end of the lifting tube 62. The lifting tube 62 and conveyor belt 63 are then moved upward a certain distance to restore the overlap between the inlet assembly and the first end of the lifting tube 62. In this embodiment, the two distances required are equal, ensuring a secure overlap between the lifting tube 62 and the inlet assembly. This embodiment is particularly useful for longer garment pieces, where their height can be appropriately raised for easier sewing.

[0066] Taking another embodiment as an example, if the lifting tube 62 and the conveyor belt 63 need to be moved downward, the lifting tube 62 and the conveyor belt 63 are first moved downward. After they are in place, the inlet assembly is moved downward a certain distance and overlapped on the lifting tube 62. This embodiment is particularly suitable for shorter garment pieces that need to be lowered for easier sewing.

[0067] It should be noted that in the two aforementioned embodiments, the movement of the lifting tube 62 and conveyor belt 63 is asynchronous with the movement of the inbound assembly. However, this does not necessarily require that one movement be completed before the other begins. For example, the inbound assembly can begin downward movement after the lifting tube 62 and conveyor belt 63 begin downward movement, thereby improving the efficiency of height adjustment of the lifting tube 62.

[0068] It should be noted that in the two aforementioned embodiments, the movement of the entry assembly, the lifting tube 62, and the conveyor belt 63 can all be started and stopped by control elements, and the components can be promptly stopped after they are in position. Specifically, the movement into position can be detected by a height detection element, and the movement distance can be set according to user requirements and further monitored by the height detection element. Once in position, the control elements can promptly control the start and stop of the components, achieving precise control of up and down movement.

[0069] The outbound assembly 7 is connected to the second end of the lifting pipe 62 and is used to transport the sewn garment panel assembly 4 lifted up by the conveyor belt 63 through the lifting area to the next processing step.

[0070] As the conveyor belt 63 and the lifting tube 62 move up and down, the second end of the lifting tube 62 can extend and retract relative to the outlet assembly 7. In one embodiment, the outlet assembly 7 includes an outlet pipeline connected to the lifting tube 62. The lifting tube 62 is located inside or outside the outlet pipeline. As the lifting tube 62 moves up and down, the lifting tube 62 can extend and retract relative to the outlet pipeline. During this extension and retraction process, the lifting tube 62 and the outlet pipeline remain connected, ensuring that the garment panel assembly 4 on the lifting tube 62 can be smoothly and reliably transferred to the outlet assembly 7.

[0071] The above-mentioned hanging device drives the conveyor belt 63 and the lifting tube 62 to move up and down through the first driving component 8 so that the lifting tube 62 can be flexibly adjusted according to the actual length of the clothing pieces. For shorter clothing pieces, there is no need to take them off the shelf and then put them on the shelf, thereby improving the processing efficiency of the clothing pieces. In addition, when the lifting tube 62 moves up and down, the inlet component can be adaptively moved to maintain overlap with the first end of the lifting tube 62, and the second end of the lifting tube 62 can be telescopically connected to the outlet component 7, that is, the outlet component 7 can maintain overlap with the second end of the lifting tube 62, ensuring smooth transportation of the clothing piece component 4 between the inlet component, the lifting arm component 6, and the outlet component 7, and ensuring stable and reliable operation of the hanging device.

[0072] Based on the above embodiment, the two ends of the conveyor belt 63 are respectively connected to the driving wheel 65 and the driven wheel 66. Specifically, the driving member 64 drives the driving wheel 65 to drive the conveyor belt 63 to rotate, so that the rotation of the conveyor belt 63 drives the garment panel assembly 4 at the first end of the lifting tube 62 to move to the position of the exit assembly 7.

[0073] The driving member 64 is connected to the housing 61 and can also be further fixed to the bracket 1 to ensure reliable stability of the operation. The driving member 64 can be a motor, which rotates to drive the driving wheel 65 to rotate, thereby achieving the effect of driving the conveyor belt 63 to rotate.

[0074] The fixed end of the first drive assembly 8 is connected to the housing 61. The movable end of the first drive assembly 8 is provided with an adapter 10. The driven wheel 66 is rotatably connected to the adapter 10, and the first end of the lifting tube 62 is connected to the adapter 10. The first drive assembly 8 is connected to both the driven wheel 66 and the first end of the lifting tube 62 via the adapter 10. The specific structure and shape of the adapter 10 can be flexibly configured based on the positional relationship and size of the driven wheel 66 and the lifting tube 62, and can be in the form of a plate, a block, etc., without limitation.

[0075] The moving end of the first drive assembly 8 can be moved through the adapter 10 to drive the driven wheel 66 and the moving end of the lifting tube 62. By moving the first drive assembly 8 up and down to drive the adapter 10 to move, the driven wheel 66 and the lifting tube 62 can be driven to move, that is, the up and down movement of the conveyor belt 63 is realized, so that the height of the garment panel assembly 4 at the first end of the lifting tube 62 can be adaptively adjusted according to the actual needs of the operator, without the need to frequently put garment panels on and off the shelves, thereby improving the efficiency of sewing.

[0076] In this embodiment, the first drive assembly 8 drives the movement of the driven wheel 66, which can realize the movement of one end of the conveyor belt 63 at the corresponding position of the driven wheel 66, and can also realize the movement of both ends of the conveyor belt 63 (if there is a connection between the driven wheel 66 and the driving wheel 65, the movement of the driving wheel 65 can be synchronously realized by the movement of the driven wheel 66).

[0077] On the basis of any of the above embodiments, the first driving assembly 8 includes: a motor 81, a screw assembly 82, a track seat 83, and a guide rod 84. Figure 4 、 Figure 5 .

[0078] The motor 81 is connected to the housing 61 to form a fixed support. The output end of the motor 81 is connected to the screw assembly 82, and the screw assembly 82 is connected to the adapter 10. The motor 81 converts the rotation into linear motion through the connection with the screw assembly 82 to drive the adapter 10 to move up and down, and further realizes the up and down movement of the driven wheel 66 and the lifting tube 62 connected to the adapter 10, so as to realize the height adjustment of the garment panel assembly 4 on the lifting tube 62.

[0079] The track seat 83 is arranged on at least one side of the screw assembly 82, and the guide rod 84 is passed through the screw assembly 82 and the track seat 83. After being driven by the motor 81, the screw assembly 82 can slide along the length direction of the guide rod 84, so as to provide a guide for the movement of the screw assembly 82 through the guide rod 84, thereby avoiding position deviation caused by slight vibration of the fuselage or other situations, and ensuring the accuracy of the up and down movement route of the lifting tube 62.

[0080] In this embodiment, the track seat 83 is arranged on at least one side of the screw assembly 82, which means that it can be set to one side or two sides. Two track seats 83 can be set on each side, one corresponding to the uppermost limit position of movement, and the other corresponding to the lowermost limit position of movement.

[0081] Based on any of the above embodiments, the riser 62 includes a first riser 621 and a second riser 622. Figure 2 .

[0082] The first end of the first riser 621 is connected to the exit assembly, and the second end of the first riser 621 is telescopically connected to the second riser 622. The second riser 622 is curved to facilitate the sliding of the garment panel assembly 4 from the entry assembly, and the second riser 622 has a lowest point, which is the sewing point for sewing operations. The second end of the first riser 621 maintains a telescopic connection with the second riser 622. When the first drive assembly 8 drives the second riser 622 to move, the second riser 622 extends and contracts relative to the first riser 621 to adjust the overall height of the riser 62.

[0083] Specifically, the first lifting tube 621 is disposed inside the second lifting tube 622 , or the first lifting tube 621 is disposed outside the second lifting tube 622 without limitation, as long as a telescopic connection between the two is achieved.

[0084] Based on any of the above embodiments, a second drive component 9 is further included. The second drive component 9 is arranged on the bracket 1 and is connected to the tensioning wheel 11. The tensioning wheel 11 is connected to the conveyor belt 63. The second drive component 9 can move to drive the tensioning wheel 11 to move to maintain the tension of the conveyor belt 63.

[0085] Please refer to Figure 2 、 Figure 3 、 Figure 1 In this embodiment, the driving wheel 65 is rotatably mounted in the housing 61, and the driven wheel 66 is rotatably mounted on the adapter 10. When the driven wheel 66 moves, the driving wheel 65 does not move. In order to maintain the tension of the conveyor belt 63,

[0086] While the first drive assembly 8 drives the lifting tube 62 up and down via the motor 81 to adjust the height of the sewing point, the second drive assembly 9 simultaneously drives the tensioning pulley 11 to move linearly, ensuring that the conveyor belt 63 is in a properly tensioned position. During this process, the vertical position of the lifting tube 62 is adjusted by adjusting the center distance between the driven pulley 66 and the driving pulley 65. By providing the tensioning pulley 11, the total length of the conveyor belt 63 remains constant regardless of how the center distance between the upper and lower driven pulleys 66 and the driving pulley 65 changes, maintaining a reliable tension effect and ensuring reliable transportation of the sewn garment panel assemblies 4.

[0087] For details, please refer to Figure 3 When the lifting tube 62 moves downward, the second driving assembly 9 drives the tensioning wheel 11 to move in the direction of loosening the conveyor belt 63; when the lifting tube 62 moves upward, the second driving assembly 9 drives the tensioning wheel 11 to move in the direction of tightening the conveyor belt 63.

[0088] On the basis of any of the above embodiments, the second driving assembly 9 includes: a mounting frame 91, a moving member 92, and an adapter frame 93. Figure 6 .

[0089] The mounting frame 91 is connected to the bracket 1 ; the movable member 92 is disposed through the mounting frame 91 , where “disposed through” means that it can move relative to the mounting frame 91 .

[0090] The adapter frame 93 is connected to the moving part 92, and the moving part 92 can drive the adapter frame 93 to move. The movement of the adapter frame 93 drives the tensioning wheel 11 to move, so as to achieve adaptive movement according to the movement of the lifting tube 62 to maintain the tension of the conveyor belt 63.

[0091] At least one tensioning pulley 11 is rotatably connected to the adapter frame 93. The specific number of tensioning pulleys 11 provided can be determined based on the actual operating parameters and structural parameters of the conveyor belt 63, and can be one, two, etc. When the movable member 92 drives the adapter frame 93 to move, the tensioning pulley 11 rotatably connected to the adapter frame 93 can move synchronously to maintain reliable tension on the conveyor belt 63.

[0092] In this embodiment, the tensioning wheel 11 can be rotatably connected to the adapter frame 93 by a rotating shaft. The rotating shaft 96 is fixed to the adapter frame 93 , and the tensioning wheel 11 can be rotatably connected to the rotating shaft 96 .

[0093] On the basis of any of the above embodiments, either the mounting frame 91 or the adapter frame 93 is provided with a slide rail 94 , and the other is provided with a slider 95 , and the slide rail 94 and the slider 95 are slidably connected.

[0094] Please refer to Figure 6 By setting up a sliding connection between the slide rail 94 and the slider 95, the accuracy of the route of the adapter frame 93 when it slides relative to the mounting frame 91 is ensured, the reliability and accuracy of the moving route of the tensioning wheel 11 is ensured, and the reliable tensioning of the conveyor belt 63 is ensured.

[0095] like Figure 6 As shown, taking the installation of the slide rail 94 on the mounting frame 91 as an example, the adapter frame 93 is an F-type structure, and the slider 95 is arranged in the U-shaped opening at the upper end of the F-type structure. The slide rail 94 and the slider 95 are slidably connected to limit the moving part 92 to drive the moving route of the tensioning wheel 11 to ensure accuracy and reliability.

[0096] One of the mounting frame 91 and the adapter frame 93 on which the slide rail 94 is provided is provided with a limit portion, which is used to limit the sliding distance of the slider 95 to avoid accidents caused by the slider 95 slipping and ensure the overall operational safety of the hanging device.

[0097] For example, the mounting frame 91 may be formed into a square groove, and the slider 95 slides on the slide rail 94 in the groove to limit the sliding distance of the slider 95 from exceeding the range of the square groove of the mounting frame 91, thereby ensuring the safety of the operation.

[0098] For example, raised limit blocks may be provided at both ends of the slide rail 94 to limit the sliding limit position of the slider 95 .

[0099] On the basis of any of the above embodiments, the station entry assembly includes: station entry track assembly 2, lowering block point assembly 3, and station exit bend assembly 5. Please refer to Figure 1 .

[0100] The entry track assembly 2 is used to transport the garment piece assembly 4 entering the station, and the lowering stop point assembly 3 is provided on the entry track assembly 2, and is used to block or pass the garment piece assembly 4, specifically, to block the garment piece assembly 4 from passing to the lifting arm assembly 6 or to allow the garment piece assembly 4 to pass to be transferred to the lifting arm assembly 6. The lowering stop point assembly 3 can be specifically provided with a claw, which can be rotated to a position to block the garment piece assembly 4, and can also be rotated to remove the obstruction to the garment piece assembly 4. This structure is not described in detail here.

[0101] One end of the outbound elbow assembly 5 is rotatably connected to the inbound track assembly 2 or the lowering stop point assembly 3. The rotatable connection here can be achieved by a rotating shaft connection, a hinged ball, etc. If the lowering stop point assembly 3 is connected to the end of the conveying path of the inbound track assembly 2, the outbound elbow assembly 5 and the lowering stop point assembly 3 can be directly rotatably connected. If the lowering stop point assembly 3 is located at another position of the inbound track assembly 2, the outbound elbow assembly 5 and the end of the conveying path of the inbound track assembly 2 can be rotatably connected.

[0102] One end of the outbound elbow assembly 5 can rotate relative to the inbound track assembly 2 and the lowering stop point assembly 3, so that the other end of the outbound elbow assembly 5 can approach and overlap the first end of the lifting pipe 62 or move away from the first end of the lifting pipe 62. The rotation of the outbound elbow assembly 5 can be assisted by a power member, such as a stepping motor.

[0103] On the basis of any of the above embodiments, the outbound elbow assembly 5 includes: an outbound elbow 51, a guide head 52, please refer to Figure 7 .

[0104] Please refer to Figure 1 The outbound bend pipe 51 is rotated to connect to the lowering block point assembly 3, and the guide head 52 is connected to the outbound bend pipe 51. The outbound bend pipe 51 and the guide head 52 can rotate together relative to the lowering block point assembly 3 so that the guide head 52 approaches and overlaps the first end of the lifting pipe 62 or moves away from the first end of the lifting pipe 62.

[0105] A guide groove 522 and a guide slide 521 are provided on the side of the guide head 52 away from the outbound elbow 51. The guide groove 522 is located below the guide slide 521. The structure of the guide groove 522 is adaptively configured to the shape of the surface of the first end of the lifting tube 62. When the guide groove 522 moves to approach the first end of the lifting tube 62, the guide groove 522 can gradually fit the first end of the lifting tube 62 to achieve a reliable overlap, ensuring that the garment panel assembly 4 can be smoothly transferred from the outbound elbow assembly 5 to the lifting arm assembly 6.

[0106] The guide slide 521 is used to guide the sliding of the garment piece assembly 4, ensuring that the garment piece assembly 4 can slide smoothly through the guide slide 521 to the sewing point position of the first end of the lifting tube 62, thereby ensuring the smooth transmission of the garment piece assembly 4.

[0107] Next, the control method of the hanging device will be described. During actual use, the operator can determine in advance whether the lifting tube 62 needs to be moved up or down. This process is determined based on the height of the garment panel assembly 4. If up or down movement is required for adjustment, the control element controls the operation of the first drive assembly 8 to move the conveyor belt 63 and the lifting tube 62 up and down relative to the housing 61 until they are adjusted to the appropriate position.

[0108] After the first drive assembly 8 starts operating or the adjustment operation is completed, the station entry assembly is controlled to move so that the station entry assembly moves close to and overlaps the first end of the lifting pipe 62, so that the station entry assembly and the first end of the lifting pipe 62 maintain a reliable overlapping relationship.

[0109] The various embodiments in this specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other.

[0110] The above is a detailed introduction to the hanging device provided by the present invention. This article uses specific examples to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only intended to help understand the method and core concept of the present invention. It should be pointed out that for ordinary technicians in this technical field, without departing from the principles of the present invention, various improvements and modifications can be made to the present invention, and these improvements and modifications also fall within the scope of protection of the claims of the present invention.

Claims

1. A hanging device, characterized in that: include: Bracket (1); A lifting arm assembly (6) comprising a housing (61) connected to the bracket (1), a conveyor belt (63) rotatably arranged on the housing (61), and a lifting tube (62) arranged on one side of the housing (61), wherein a lifting area for the garment panel assembly (4) is formed between the lifting tube (62) and the housing (61); a first drive assembly (8) connected to the bracket (1) and configured to drive the conveyor belt (63) and the lifting tube (62) to move up and down relative to the housing (61); an inlet assembly, arranged on one side of the lifting arm assembly (6) and used for inlet conveyance of the garment piece assembly (4), the inlet assembly being movable to approach and overlap the first end of the lifting tube (62) or to move away from the first end of the lifting tube (62); An outbound assembly (7) is connected to the second end of the lifting pipe (62) and is used for outbound transportation of the garment piece assembly (4); when the conveyor belt (63) and the lifting pipe (62) move up and down, the second end of the lifting pipe (62) can be extended and retracted relative to the outbound assembly (7).

2. The hanging device according to claim 1, characterized in that: The two ends of the conveyor belt (63) are respectively connected to a driving wheel (65) and a driven wheel (66); the driving wheel (65) is connected to a driving member (64); the driving member (64) is provided on the housing (61) and is used to drive the driving wheel (65); The fixed end of the first drive assembly (8) is connected to the housing (61), the movable end of the first drive assembly (8) is provided with an adapter (10), the driven wheel (66) is rotatably connected to the adapter (10), and the first end of the lifting tube (62) is connected to the adapter (10).

3. The hanging device according to claim 2, characterized in that: The first drive assembly (8) comprises: A motor (81) connected to the housing (61); a screw assembly (82) connecting the output end of the motor (81) and the adapter (10); A track seat (83) is provided on at least one side of the lead screw assembly (82); A guide rod (84) is provided through the lead screw assembly (82) and the track seat (83) and is used to provide guidance for the movement of the lead screw assembly (82).

4. The hanging device according to any one of claims 1 to 3, characterized in that: The riser (62) comprises: a first riser (621); a second riser (622), wherein a first end of the first riser (621) is connected to the outbound assembly, and a second end of the first riser (621) is telescopically connected to the second riser (622); The first driving assembly (8) is connected to the second lifting tube (622) to drive the second lifting tube (622) to extend and retract relative to the first lifting tube (621).

5. The hanging device according to claim 4, characterized in that: The second drive assembly (9) is provided on the bracket (1) and is connected to a tensioning wheel (11). The tensioning wheel (11) is connected to the conveyor belt (63). The second drive assembly (9) is movable to drive the tensioning wheel (11) to move, so as to maintain the tension of the conveyor belt (63).

6. The hanging device according to claim 5, characterized in that: The second driving assembly (9) comprises: A mounting frame (91) connected to the bracket (1); A moving member (92), the moving member (92) being passed through the mounting frame (91); An adapter frame (93), the adapter frame (93) is connected to the moving member (92), and the moving member (92) can drive the adapter frame (93) to move; At least one of the tensioning wheels (11) is rotatably connected to the adapter frame (93) and can move with the adapter frame (93) to maintain tension on the conveyor belt (63).

7. The hanging device according to claim 6, characterized in that: Either the mounting frame (91) or the adapter frame (93) is provided with a slide rail (94), and the other is provided with a slider (95), and the slide rail (94) and the slider (95) are slidably connected; One of the mounting frame (91) and the adapter frame (93) on which the slide rail (94) is provided is provided with a limiting portion, and the limiting portion is used to limit the sliding distance of the slider (95).

8. The hanging device according to claim 1, characterized in that: The inbound component includes: An inbound track assembly (2) for conveying the garment panel assembly (4) into the station; A lowering stop point assembly (3) is provided on the station entry track assembly (2) and is used to block or pass the garment cutting piece assembly (4); An outbound bend pipe assembly (5), one end of which is rotatably connected to the inbound track assembly (2) or the lowering stop point assembly (3), and the other end of which is used to approach and overlap the first end of the lifting pipe (62) or to be away from the first end of the lifting pipe (62).

9. The hanging device according to claim 8, characterized in that: The outbound elbow assembly (5) comprises: An outbound elbow (51) is rotatably connected to the lowering stop point assembly (3); A guide head (52) is connected to the outlet bend (51), and a guide groove (522) and a guide slide (521) are provided on a side of the guide head (52) away from the outlet bend (51), wherein the guide groove (522) is located below the guide slide (521), and the guide groove (522) is used to fit the first end of the lifting tube (62) to achieve overlapping, and the guide slide (521) is used to guide the sliding of the garment panel assembly (4).