Clothing hanging station leaving device

By combining the drive module and the driven gear, the problem of uneven distribution of hangers on the main rod is solved, achieving uniform placement of hangers and efficient operation of the production line, while reducing energy consumption.

CN223575411UActive Publication Date: 2025-11-21ZHEJIANG YIKEDA INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202423322089.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-21
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing garment hanging and exiting device has uneven distribution of hangers on the main rod due to the inconsistent weight of the clothes hanging below, which affects the normal operation of the production line.

Method used

A drive module is used to move the moving parts along the transport frame. Through the cooperation of the driven gear and the external main rail rack, the clothes hanger is ensured to fall evenly onto the main rod at a preset time and position. The driven gear relies on the external main rail rack for drive, which saves power and simplifies the structure.

Benefits of technology

This design achieves a uniform distribution of hangers on the main rod, preventing clothes from piling up, improving the operating efficiency of the production line, and reducing energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of clothing production lines, in particular to a clothing hanging and outbound device. The clothing hanging and outbound device comprises a transportation frame, a moving part and a driving module, the transportation frame extends towards the external main rod, the moving part is installed on the transportation frame and can move in the length direction of the transportation frame, the driving module comprises a fixing assembly, a driving part, a driven unit and a rotating unit, and the fixing assembly is connected to the upper end face of the transportation frame. The driving part is installed on the fixed assembly, connected with the driven unit and capable of driving the driven unit to be close to or far away from the external main rail rack, and the rotating unit is connected with the driven unit and configured to rotate in response to driving of the driven unit and abut against the moving part in the rotating process. The driving device has the advantages that when the driven gear makes contact with the external main rail rack, the external main rail rack can drive the driven gear to rotate, compared with a rotating motor, power consumption is reduced, the structure is simpler, and control over rotation of the rotating unit is more convenient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to clothing production line technical field, in particular to a clothing hanging outbound device. BACKGROUND

[0002] With the rapid development of clothing industry, more and more enterprises adopt the way of assembly line to produce clothes, and the clothing hanging outbound device can improve the transportation efficiency of clothes finished products, and its application is more and more widely.

[0003] The existing clothing hanging outbound device usually includes lifting module, stop module and outbound module, the lifting module lifts the hanger power to the stop module, and waits at the stop module, when the stop module releases, the hanger falls freely to the main rod through the outbound module by the gravity of the hanger and the clothes hung on the hanger, but because the clothes hung below the hanger are different in weight, the time and position of the hangers of different weights falling to the main rod are different, so there is a probability that the hangers on the main rod are unevenly distributed, some areas are dense, and some areas are sparse, which seriously affects the normal operation of the production line. SUMMARY

[0004] In view of the above technical problems, the utility model provides a clothing hanging outbound device.

[0005] A clothing hanging outbound device, comprising: a transport frame extending towards an external main rod; a moving piece installed on the transport frame and capable of moving along the length direction of the transport frame; a drive module comprising a fixed component, a drive piece, a driven unit and a rotating unit, the fixed component being connected to the upper end surface of the transport frame, the drive piece being installed on the fixed component, connected with the driven unit and capable of driving the driven unit to approach or move away from the external main rail rack, the rotating unit being connected with the driven unit and configured to rotate in response to the driving of the driven unit and abut against the moving piece when rotating.

[0006] In this way, the transport frame is used to carry the moving part and guide the movement of the moving part, the fixing assembly is used to fix the installation of the driving part, the driven unit and the rotating unit, and the driven unit can approach and contact the external main rail rack in response to the pushing of the driving part. Since the external main rail rack is provided with a push rod for pushing the clothes hanger to move on the main rod, the external main rail rack is always in constant speed movement for the movement of the push rod. Therefore, when the driven gear contacts the external main rail rack, the external main rail rack can drive the driven gear to rotate, and then the driven gear drives the rotating unit to rotate at a constant speed. Therefore, the rotating unit keeps the speed and rhythm of the moving part pushed by the moving part consistent, so that the position and time of the moving part pushed by the rotating unit falling on the main rod are more uniform, and the clothes are prevented from being stacked to affect the operation of the production line. The driven gear is driven by the external main rail rack, which saves power consumption compared with the rotating motor, has a simpler structure, and is more convenient for controlling the rotation of the rotating unit.

[0007] In one of the embodiments, the driven unit comprises a base plate connected with the driving part and capable of moving in response to the extension or retraction of the driving part, and the driven unit is installed on the base plate and moves synchronously with the base plate.

[0008] In one of the embodiments, the driven unit comprises a driven gear, a first transmission structure and a second transmission structure, the driven gear is rotationally connected to the base plate, one end of the first transmission structure is connected to the driven gear, the other end of the first transmission structure is connected to the second transmission structure, and the second transmission structure is connected to the rotating unit.

[0009] In one of the embodiments, the first transmission structure and the second transmission structure are respectively installed on both sides of the base plate, the driven unit further comprises a first rotating shaft, the first rotating shaft is arranged through the base plate, and both ends of the first rotating shaft are respectively connected to the first transmission structure and the second transmission structure.

[0010] In one of the embodiments, the first transmission structure comprises a first driving wheel, a first transmission part and a first driven wheel, the first driving wheel is coaxially connected with the driven gear, the first driving wheel is connected with the first transmission part, the first transmission part is connected with the first driven wheel, and the first driven wheel is connected with the first rotating shaft.

[0011] The second transmission structure further comprises a second driving wheel, a second transmission part and a second driven wheel, the second driving wheel is connected with the first rotating shaft, one end of the second transmission part is connected with the second driving wheel, the other end of the second transmission part is connected with the second driven wheel, and the second driven wheel is connected with the rotating unit.

[0012] In one of the embodiments, the rotating unit comprises a first connecting rod and a swing arm, the first connecting rod is connected with the driven unit, the swing arm is connected to one end of the first connecting rod away from the driven unit, and the swing arm is used to connect with the moving piece.

[0013] In one of the embodiments, the swing arm comprises a first abutting section and a second abutting section, and the first abutting section and the second abutting section are arranged at an angle.

[0014] In one of the embodiments, the rotating unit further comprises a second connecting rod, a sliding rail, a sliding block, a second rotating shaft and a bearing seat, the first connecting rod and the second connecting rod are rotationally connected, the swing arm is connected to the second connecting rod, the second connecting rod is provided with the sliding rail extending along the length direction of the second connecting rod, the sliding block is slidingly connected to the sliding rail, and the sliding block is connected with the second rotating shaft, the second rotating shaft is rotationally connected with the bearing seat, and the bearing seat is fixed to the fixed assembly.

[0015] In one of the embodiments, the fixed assembly further comprises a first fixed frame and a second fixed frame, the first fixed frame is connected with the transport frame, the second fixed frame is connected with the first fixed frame, the driving piece is connected to the second fixed frame, and the rotating unit is connected with the first fixed frame.

[0016] In one of the embodiments, the first fixed frame comprises a top plate, a side plate and a bottom plate, the top plate is connected with the side plate, the side plate is connected with the bottom plate, and the top plate, the side plate and the bottom plate cooperatively form a cavity.

[0017] A third rotating shaft is arranged in the top plate, one end of the third rotating shaft is connected with the driven unit, the other end of the third rotating shaft is connected with the first connecting rod, and the bearing seat is connected with the bottom plate.

[0018] Compared with the prior art, the moving assembly mounted with the hanger can be driven by the driving module to fall onto the main rod at a fixed time interval and in a consistent position, and the outgoing action is completed, so that multiple hangers are not transported to the same position on the main rod, and the operation of the production line is affected. The driven gear is driven by the external main rack, which saves power consumption compared with the rotating motor, has a simpler structure, and is more convenient to control the rotation of the rotating unit. BRIEF DESCRIPTION OF DRAWINGS

[0019] Fig. 1 The structure diagram of one of the embodiments of the garment hanging and outgoing device is provided.

[0020] Fig. 2Part structure schematic view of drive module of one of the embodiments of the clothing hanging outbound device provided by the utility model,

[0021] Fig. 3 Another angle structure schematic view of one of the embodiments of the clothing hanging outbound device provided by the utility model.

[0022] The symbols in the figure represent the following meanings:

[0023] 100, clothing hanging outbound device; 101, external main rack; 102, main rod; 10, transport frame; 11, upper end surface; 20, moving piece; 30, drive module; 31, fixed assembly; 311, first fixing frame; 3111, top plate; 3112, side plate; 3113, bottom plate; 3114, cavity; 3115, third rotating shaft; 3116, slot; 312, second fixing frame; 32, driving piece; 33, driven unit; 331, base plate; 332, driven gear; 333, first transmission structure; 3331, first driving wheel; 3332, first transmission piece; 3333, first driven wheel; 334, second transmission structure; 3341, second driving wheel; 3342, second transmission piece; 3343, second driven wheel; 335, first rotating shaft; 34, rotating unit; 341, first connecting rod; 342, swing arm; 3421, first abutting section; 3422, second abutting section; 343, second connecting rod; 344, slide rail; 345, sliding block; 346, second rotating shaft; 347, bearing seat. DETAILED DESCRIPTION

[0024] In order to make the above objectives, features and advantages of the present application more apparent, a detailed description of the specific embodiments of the present application will be given below with reference to the accompanying drawings. In the following description, a large number of specific details are set forth in order to fully understand the present application. However, the present application can be implemented in many different ways other than those described herein, and those skilled in the art can make similar improvements without departing from the spirit of the present application, so the present application is not limited to the specific embodiments disclosed below.

[0025] It should be noted that when an organization is referred to as "fixed to" or "provided to" another organization, it can be directly on another organization or there can be a central organization. When an organization is considered to be "connected" to another organization, it can be directly connected to another organization or there can be a central organization. The terms "vertical", "horizontal", "up", "down", "left", "right" and similar expressions used in the specification of the present application are for illustrative purposes only and are not the only implementation.

[0026] In addition, the terms "first", "second", etc. are used only for descriptive purposes and are not to be construed as indicating or implying relative importance or an ordered sequence. Thus, features referring to "first", "second" etc. can include, explicitly or implicitly, at least one of such features. In the description of the present application, the meaning of "a plurality of" is at least two, for example two, three, etc., unless otherwise explicitly and specifically limited.

[0027] In the present application, unless otherwise explicitly specified and limited, the "on", "under" of the first feature to the second feature can be that the first feature is in direct contact with the second feature, or the first feature is indirectly in contact with the second feature through an intermediate medium. Moreover, the "over", "above" and "on" of the first feature to the second feature can be that the first feature is directly above or obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The "under", "below" and "under" of the first feature to the second feature can be that the first feature is directly below or obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.

[0028] Unless otherwise defined, all technical and scientific terms used in the specification of the present application have the same meaning as commonly understood by one skilled in the art to which the present application belongs. The terms used in the specification of the present application are only for the purpose of describing the specific embodiments and are not intended to limit the present application. The term "and / or" used in the specification of the present application includes any and all combinations of one or more related listed items.

[0029] The utility model provides a kind of clothing hanging outbound device 100, mobile piece 20 is moved on transport frame 10 by drive module 30 to push, and the frequency of drive module 30 to the drive of mobile piece 20 can be controlled, so that the time and position of mobile piece 20 falling to main rod 102 are more uniform.

[0030] Please see Figs. 1-3The garment hanging outbound device 100 comprises a transport frame 10, a moving part 20 and a driving module 30. The transport frame 10 extends towards the external main rail rack 101. The moving part 20 is installed on the transport frame 10 and can move along the length direction of the transport frame 10. The driving module 30 comprises a fixing assembly 31, a driving part 32, a driven unit 33 and a rotating unit 34. The fixing assembly 31 is connected to the upper end surface 11 of the transport frame 10. The driving part 32 is installed on the fixing assembly 31, connected with the driven unit 33 and can drive the driven unit 33 to move close to or away from the external main rail rack 101. The rotating unit 34 is connected with the driven unit 33 and is configured to rotate in response to the driving of the driven unit 33 and abut against the moving part 20 when rotating. In this way, the transport frame 10 is used to carry the moving part 20 and guide the movement of the moving part 20. The fixing assembly 31 is used for the installation and fixation of the driving part 32, the driven unit 33 and the rotating unit 34. The driven unit 33 can move close to the external main rail rack 101 in response to the pushing of the driving part 32 and contact the external main rail rack 101. Since the external main rail rack 101 is provided with a push rod for pushing the hanger to move on the main rail 102, the external main rail rack 101 is always in constant speed movement for the movement of the push rod. Therefore, when the driven gear 332 contacts the external main rail rack 101, the external main rail rack 101 can drive the driven gear 332 to rotate and then drive the rotating unit to rotate at a constant speed. Therefore, the rotating unit 34 keeps consistent with the speed and rhythm of the movement of the moving part 20, so that the position and time of the moving part 20 pushed by the rotating unit 34 to the main rail 102 are more uniform, avoiding the influence of clothes accumulation on the operation of the production line. The driven gear 332 relies on the driving mode of the external main rail rack 101, which saves power consumption compared with the rotating motor, has a simpler structure and is more convenient for controlling the rotation of the rotating unit 34.

[0031] Further, the driven unit 33 comprises a base plate 331 connected with the driving part 32 and capable of moving in response to the extension or retraction of the driving part 32. The driven unit 33 is installed on the base plate 331 and moves synchronously with the base plate 331. In this way, the driving part 32 can cause the position of the driven unit 33 to move without affecting the transmission structure of the driven unit 33.

[0032] It can be understood that in other embodiments, the base plate 331 can not be provided, and the driven unit 33 and the rotating unit 34 can be directly installed on the fixing assembly 31.

[0033] Specifically, the driven unit 33 comprises a driven gear 332, a first transmission structure 333 and a second transmission structure 334, the driven gear 332 is rotationally connected to the base plate 331, one end of the first transmission structure 333 is connected to the driven gear 332, the other end is connected to the second transmission structure 334, and the second transmission structure 334 is connected to the rotating unit 34. In this way, the driven gear 332 can be connected to the external main rail rack 101, and the rotation force thereof can be transmitted to the rotating unit 34 through the first transmission structure 333 and the second transmission structure 334. The transmission path through the first transmission structure 333 and the second transmission structure 334 can be further transmitted, and other structural elements can be avoided to make the transmission effect of the driven unit 33 more stable.

[0034] The first transmission structure 333 and the second transmission structure 334 are respectively installed on the two sides of the base plate 331, and the driven unit 33 further comprises a first rotating shaft 335, the first rotating shaft 335 is arranged through the base plate 331, and the two ends of the first rotating shaft 335 are respectively connected to the first transmission structure 333 and the second transmission structure 334. In this way, the first rotating shaft 335 realizes the actuation connection between the first transmission structure 333 and the second transmission structure 334, and the first transmission structure 333 and the second transmission structure 334 are connected to the two opposite sides of the base plate 331, so that the work of the two will not interfere with each other.

[0035] It can be understood that in other embodiments, the first transmission structure 333 and the second transmission structure 334 can also be installed on the same side of the base plate 331, but need to be staggered in the thickness direction to avoid interference, or be spaced apart in the horizontal direction.

[0036] The first transmission structure 333 comprises a first driving wheel 3331, a first transmission member 3332 and a first driven wheel 3333. The first driving wheel 3331 is coaxially connected with the driven gear 332. The first driving wheel 3331 is connected with the first transmission member 3332. The first transmission member 3332 is connected with the first driven wheel 3333. The first driven wheel 3333 is connected with the first rotating shaft 335. The second transmission structure 334 further comprises a second driving wheel 3341, a second transmission member 3342 and a second driven wheel 3343. The second driving wheel 3341 is connected with the first rotating shaft 335. One end of the second transmission member 3342 is connected with the second driving wheel 3341. The other end of the second transmission member 3342 is connected with the second driven wheel 3343. The second driven wheel 3343 is connected with the rotating unit 34. In this way, the first driving wheel 3331 rotates coaxially with the driven gear 332. After the driven gear 332 rotates in response to the movement of the external main rod 102 rack, the first driving wheel 3331 is first driven. The first driving wheel 3331 drives the first driven wheel 3333 to rotate through the first transmission member 3332. The first driven wheel 3333 is connected with the second driving wheel 3341 through the first rotating shaft 335 and rotates coaxially at the same speed. The second driving wheel 3341 drives the second driven wheel 3343 through the second transmission member 3342. Finally, the second driven wheel 3343 drives the rotating unit 34.

[0037] Preferably, in the present embodiment, the transmission member is provided as a belt. In other embodiments, the transmission member can also be provided as a chain structure or the like.

[0038] Specifically, the driven gear 332 and the first driving wheel 3331 are both rotationally connected to the base plate 331. The driven gear 332 is located between the base plate 331 and the first driving wheel 3331. The diameter of the driven gear 332 is greater than that of the first driving wheel 3331, so as to ensure that when the driven gear 332 is disengaged from the external main rail rack 101, the external main rail rack 101 will not interfere with the first driving wheel 3331.

[0039] The outer periphery of the first driving wheel 3331, the first driven wheel 3333, the second driving wheel 3341 and the second driven wheel 3343 is provided with a concave-convex structure, so as to increase the contact area of the above structure with the first transmission member 3332 and the second transmission member 3342, thereby improving the connection strength. When the first transmission member 3332 and the second transmission member 3342 are provided as a chain structure, the convex structure on the outer periphery of each of the driving wheel and the driven wheel is connected with the groove formed by the chain structure in a fitting manner.

[0040] Further, the rotating unit 34 comprises a first connecting rod 341 connected with the driven unit 33 and a swing arm 342 connected with the first connecting rod 341 at an end away from the driven unit 33, and the swing arm 342 is used to connect with the moving piece 20. In this way, the rotating unit 34 drives the swing arm 342 through the first connecting rod 341, one end of the first connecting rod 341 is connected with the driven unit 33, when the driven unit 33 rotates (i.e. the second driven wheel 3343 rotates), the first connecting rod 341 rotates relative to the end connected with the second driven wheel 3343, the other end of the first connecting rod 341 is connected with the swing arm 342 and drives the swing arm 342 to move synchronously in the circumferential direction.

[0041] Preferably, the swing arm 342 comprises a first abutting section 3421 and a second abutting section 3422, and the first abutting section 3421 and the second abutting section 3422 are arranged at an angle. In this way, during the process of pushing the moving piece 20 to move forward, the second abutting section 3422 can be controlled to contact with the moving piece 20 by controlling the rotation of the driven unit 33 (since the external main rail rack 101 moves at a constant speed, only the time when the driven gear 332 is disengaged from the external main rail rack 101 needs to be controlled to control the rotation angle and rotation time of the rotating unit 34), that is, the moving piece 20 is kept between the first abutting section 3421 and the second abutting section 3422 during the movement, so the first abutting section 3421 can prevent the moving piece 20 from being forced to move forward and plays a blocking effect.

[0042] In this embodiment, the first abutting section 3421 and the second abutting section 3422 are both arranged in a straight plate structure, and in other embodiments, the first abutting section 3421 and the second abutting section 3422 can also be arranged in an arc shape.

[0043] The rotating unit 34 further comprises a second connecting rod 343, a sliding rail 344, a sliding block 345, a second rotating shaft 346 and a bearing seat 347. The first connecting rod 341 is rotatably connected with the second connecting rod 343. The swing arm 342 is connected with the second connecting rod 343. The sliding rail 344 is arranged on the second connecting rod 343 and extends along the length direction of the second connecting rod 343. The sliding block 345 is slidably connected with the sliding rail 344 and connected with the second rotating shaft 346. The second rotating shaft 346 is rotatably connected with the bearing seat 347. The bearing seat 347 is fixed on the fixing assembly 31. In this way, the swing arm 342 is used to abut against the moving piece 20. The swing arm 342 is separately processed to be more easily adapted to the moving piece 20. The sliding rail 344 is arranged on the second connecting rod 343. The sliding block 345 can move on the sliding rail 344. Therefore, the sliding block 345 can move along the length direction of the second connecting rod 343. The sliding block 345 is connected with the bearing seat 347 through the second rotating shaft 346. The bearing seat 347 is fixedly connected with the fixing assembly 31. Therefore, in the abutting unit in the embodiment, the position of the bearing seat 347 is fixed. The sliding block 345 and the second rotating shaft 346 are also fixedly connected with the bearing seat 347. Therefore, the positions of the sliding block 345 and the second rotating shaft 346 are also fixed. The sliding block 345 acts on the sliding rail 344 in the opposite direction and guides the sliding rail 344, that is, guides the second connecting rod 343. Therefore, the rotation of the swing arm 342 can also be guided and limited by the second connecting rod 343. Therefore, the abutment between the swing arm 342 and the moving piece 20 is more stable.

[0044] The fixing assembly 31 further comprises a first fixing frame 311 and a second fixing frame 312. The first fixing frame 311 is connected with the conveying frame 10. The second fixing frame 312 is connected with the first fixing frame 311. The driving piece 32 is connected with the second fixing frame 312. The rotating unit 34 is connected with the first fixing frame 311. In this way, the first fixing frame 311 and the second fixing frame 312 can share the stress with each other to enhance the overall structure of the fixing assembly 31. One end of the rotating unit 34 is connected with the driven unit 33. The other end is also connected with the first fixing frame 311. Therefore, both ends of the rotating unit 34, which is used to push the moving piece 20 to move and is frequently stressed, are limited. Therefore, the operation process of the rotating unit 34 is more stable.

[0045] Further, the first fixing frame 311 comprises a top plate 3111, a side plate 3112 and a bottom plate 3113, the top plate 3111 is connected with the side plate 3112, the side plate 3112 is connected with the bottom plate 3113, and a cavity 3114 is formed by cooperation between the top plate 3111, the side plate 3112 and the bottom plate 3113; a third rotating shaft 3115 is arranged in the top plate 3111, one end of the third rotating shaft 3115 is connected with the driven unit 33, the other end of the third rotating shaft 3115 is connected with the first connecting rod 341, and the bearing seat 347 is connected with the bottom plate 3113. In this way, the top plate 3111, the side plate 3112 and the bottom plate 3113 support each other, and each of them has an element to be supported, so that the stress can be shared, the first fixing frame 311 is more solid, and the rotating unit 34 is accommodated in the cavity 3114, so that the first fixing frame can protect the work and avoid the influence of the external environment.

[0046] Further, the side plate 3112 is further provided with a slot 3116, and the slot 3116 can avoid the swing arm 342 and allow the swing arm 342 to rotate freely. In the embodiment, one rotation of the swing arm 342 can make the moving piece 20 advance on the transportation frame 10 and finally fall on the main rod 102, and the moving piece 20 is pushed by the external main rod 102 rack on the main rod 102 to be transported, so the swing arm 342 cannot swing back to the initial position in the reverse direction, which will cause interference with the moving piece 20, so the rotating unit 34 in the embodiment is set to rotate one circle, that is, to rotate in one direction to work, and the slot 3116 ensures the free rotation of the rotating unit 34.

[0047] Compared with the prior art, the utility model discloses a drive module 30, and the moving assembly hung with the clothes hanger can ensure that the clothes hanger falls on the main rod 102 at a consistent time interval and a consistent position and completes the outbound action according to the preset fixed time, so that the same position on the main rod 102 is avoided to transport multiple clothes hangers, and the operation of the production line is affected. The driving mode of the driven gear 332 relies on the external main rail rack 101, compared with the rotating motor, the power consumption is saved, the structure is simpler, and the control of the rotation of the rotating unit 34 is more convenient.

[0048] The technical features of the above-described embodiments can be combined arbitrarily, and to make the description simple, all possible combinations of the technical features in the above-described embodiments are not described, but as long as the combinations of the technical features do not exist contradictory, they should be considered as the scope of the present application.

[0049] The above-described embodiments only express several implementation manners of the utility model, the description is more specific and detailed, but can not therefore be understood as the limitation of the utility model patent range. It should be pointed out that for ordinary skilled person in the art, without departing from the utility model concept, several modifications and improvements can be made, which belong to the protection range of the utility model. Therefore, the protection range of the utility model patent should be subject to the appended claims.

Claims

1. A garment hanging outbound device, comprising: The utility model relates to a kind of transport frame (10), extend towards outer main pole (102);Moving piece (20), is installed in the transport frame (10) and can be moved along the length direction of the transport frame (10);Drive module (30), including fixed assembly (31), drive piece (32), driven unit (33) and rotating unit (34), the fixed assembly (31) is connected to the upper end surface (11) of the transport frame (10), the drive piece (32) is installed on the fixed assembly (31), with driven unit (33) is connected, and can drive driven unit (33) close or far from outer main rail rack (101), the rotating unit (34) is connected with driven unit (33), and be configured to rotate in response to the drive of driven unit (33), and when rotating, with moving piece (20) abut. The driven unit (33) includes a base plate (331), the base plate (331) is connected with the drive piece (32), and can be moved in response to the extension or retraction of the drive piece (32), the driven unit (33) is installed on the base plate (331), and moves synchronously with the base plate (331). The driven unit (33) includes a driven gear (332), a first transmission structure (333) and a second transmission structure (334), the driven gear (332) is rotatably connected to the base plate (331), one end of the first transmission structure (333) is connected with the driven gear (332), the other end is connected with the second transmission structure (334), and the second transmission structure (334) is connected with the rotating unit (34). The first transmission structure (333) and the second transmission structure (334) are respectively installed on both sides of the base plate (331), and the driven unit (33) further includes a first rotating shaft (335), the first rotating shaft (335) penetrates the base plate (331), and both ends of the first rotating shaft (335) are respectively connected with the first transmission structure (333) and the second transmission structure (334).

2. The garment hanging outbound apparatus of claim 1, wherein, The first transmission structure (333) includes a first driving wheel (3331), a first transmission member (3332) and a first driven wheel (3333), the first driving wheel (3331) is coaxially connected with the driven gear (332), the first driving wheel (3331) and the first transmission member (3332) are connected, the first transmission member (3332) and the first driven wheel (3333) are connected, and the first driven wheel (3333) and the first rotating shaft (335) are connected.

3. The garment hanging outbound apparatus of claim 2, wherein, ​ 4. The garment hanging outbound apparatus of claim 3, wherein, ​ 5. The garment hanging outbound apparatus of claim 4, wherein, ​ The second transmission structure (334) further comprises a second driving wheel (3341), a second transmission member (3342) and a second driven wheel (3343), the second driving wheel (3341) is connected with the first rotating shaft (335), one end of the second transmission member (3342) is connected with the second driving wheel (3341), the other end of the second transmission member (3342) is connected with the second driven wheel (3343), and the second driven wheel (3343) is connected with the rotating unit (34).

6. The garment hanging outbound apparatus of claim 1, wherein, The rotating unit (34) comprises a first connecting rod (341) and a swing arm (342), the first connecting rod (341) is connected with the driven unit (33), and the swing arm (342) is connected to one end of the first connecting rod (341) away from the driven unit (33) and is used for being connected with the moving member (20).

7. The garment hanging outbound apparatus of claim 6, wherein, The swing arm (342) comprises a first abutting section (3421) and a second abutting section (3422), and the first abutting section (3421) and the second abutting section (3422) are arranged at an angle.

8. The garment hanging outbound apparatus of claim 6, wherein, The rotating unit (34) further comprises a second connecting rod (343), a sliding rail (344), a sliding block (345), a second rotating shaft (346) and a bearing seat (347), the first connecting rod (341) and the second connecting rod (343) are rotationally connected, the swing arm (342) is connected to the second connecting rod (343), the second connecting rod (343) is provided with the sliding rail (344), the sliding rail (344) extends along the length direction of the second connecting rod (343), the sliding block (345) is slidingly connected to the sliding rail (344), the sliding block (345) is connected with the second rotating shaft (346), the second rotating shaft (346) is rotationally connected with the bearing seat (347), and the bearing seat (347) is fixed to the fixed assembly (31).

9. The garment hanging outbound apparatus of claim 8, wherein, The fixed assembly (31) further comprises a first fixed frame (311) and a second fixed frame (312), the first fixed frame (311) is connected with the conveying frame (10), the second fixed frame (312) is connected with the first fixed frame (311), the driving member (32) is connected to the second fixed frame (312), and the rotating unit (34) is connected with the first fixed frame (311).

10. The garment hanging outbound apparatus of claim 9, wherein, The first fixed frame (311) comprises a top plate (3111), a side plate (3112) and a bottom plate (3113), the top plate (3111) is connected with the side plate (3112), the side plate (3112) is connected with the bottom plate (3113), and a cavity (3114) is formed by cooperation between the top plate (3111), the side plate (3112) and the bottom plate (3113); A third rotating shaft (3115) is arranged in the top plate (3111), one end of the third rotating shaft (3115) is connected with the driven unit (33), the other end of the third rotating shaft (3115) is connected with the first connecting rod (341), and the bearing seat (347) is connected with the bottom plate (3113).