Clothing hanging station leaving device
By using a drive module and the locking and clutch characteristics of a one-way bearing in the garment hanging and exiting device, the problem of uneven distribution of hangers on the main pole of the production line is solved, achieving uniform placement of hanger components and preventing hangers from shaking or falling, thus improving the operating efficiency of the garment production line.
Patent Information
- Application Number
- CN202423321208.1
- 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
In existing garment hanging and exiting devices, the position and timing of the hangers falling onto the main pole of the production line are uneven, resulting in uneven distribution of hangers on the main pole, with some areas dense and some areas sparse, affecting the normal operation of the production line. Furthermore, when the drive module returns to its original position, it is easy to collide with the hangers, causing them to shake or fall.
The drive module, including a drive unit, a transmission unit, and an abutment unit, utilizes the locking and clutch characteristics of a one-way bearing to intermittently drive the hanger assembly, making its position and time on the main rod of the production line more uniform and preventing interference with the hanger assembly during return.
This achieves a uniform distribution of hanger components on the main shaft of the production line, avoiding the problem of hanger concentration and preventing hangers from shaking or falling, thus ensuring the normal operation of the production line.
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Figure CN223575410U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to clothing production line technical field, especially a kind of 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 product, and its application is more and more widely.
[0003] The existing clothing hanging outbound device usually includes lifting module and transport frame, the lifting module lifts the hanger to the transport frame, the hanger moves along the transport frame by its own gravity, and finally freely slides to the main rod of production line, but because the clothes hung below the hanger are different in weight, and the time and position of hangers of different weights falling to the main rod are different, 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 production line.
[0004] Therefore, some clothing hanging outbound devices are provided with driving module to push the hanger to move, and the position of hanger falling to the main rod of production line is more uniform by controlling the pushing frequency of driving module, but after completing a pushing, the driving module is easy to collide with the next incoming hanger in the process of returning, causing the problem of hanger shaking or even falling. SUMMARY
[0005] In view of the above technical problems, the utility model provides a kind of clothing hanging outbound device.
[0006] The clothing hanging outbound device comprises a transport frame extending towards the main rod of production line, a hanger assembly installed on the transport frame and movable along the length direction of the transport frame, and a driving module comprising a driving unit, a transmission unit and an abutting unit. The transmission unit comprises a coaxially arranged first rotating member, a one-way bearing and a driving shaft. The driving unit is connected with the first rotating member and can drive the first rotating member to rotate by extending or retracting. The outer peripheral wall of the one-way bearing is connected with the inner peripheral wall of the first rotating member. The inner peripheral wall of the one-way bearing is connected with the outer peripheral wall of the driving shaft. The end of the driving shaft away from the first rotating member is connected with the abutting unit and drives the abutting unit to abut against the hanger assembly. The one-way bearing is configured to be in a locking state when rotating towards a first direction and drive the driving shaft to rotate towards the first direction, and in a clutching state when rotating towards a second direction without driving the driving shaft to rotate.
[0007] Thus, the hanger assembly can move along the conveying frame and the main rod of the production line extends, and through intermittent driving of the driving module, the position and time of the hanger assembly falling on the main rod of the production line are more uniform, and the problem of multiple hanger assemblies concentrating on the main rod of the production line is avoided. Moreover, when the one-way bearing rotates in the first direction, it is in a locked state, and when the one-way bearing is in the locked state, the inner ring and the outer ring are relatively fixed. Therefore, when the driving unit drives the first rotating piece to rotate, the first rotating piece can drive the driving shaft to rotate through the one-way bearing, so as to realize the rotation of the abutting unit and the abutting driving of the hanger assembly. When the driving unit drives the first rotating piece to rotate in the opposite direction, the one-way bearing rotates in the second direction and is in a clutching state. At this time, the inner ring and the outer ring of the one-way bearing can rotate relatively freely, that is, when the first rotating piece drives the outer ring of the one-way bearing to rotate, the inner ring of the one-way bearing does not rotate synchronously. Therefore, the rotation of the first rotating piece does not drive the driving shaft to rotate, so that the retraction of the driving unit does not affect the rotation of the abutting unit, preventing the abutting unit from rotating due to the return of the driving unit and interfering with the hanger assembly, causing the hanger assembly to shake or even fall off.
[0008] In one of the embodiments, the driving unit comprises a driving piece and a driving rack, the first rotating piece is provided in a gear structure, and the driving piece can drive the driving rack to extend or retract, and the driving rack is in meshing connection with the first rotating piece.
[0009] In one of the embodiments, the driving module further comprises a mounting plate, the mounting plate is connected with the conveying frame, and a guide piece is arranged on the mounting plate and abuts against the driving rack.
[0010] In one of the embodiments, a guide groove is arranged on one side of the driving rack facing the mounting plate, the guide groove is arranged along the length direction of the driving rack, and the guide piece is located in the guide groove and abuts against the groove wall of the guide groove.
[0011] In one of the embodiments, the driving module further comprises a mounting plate, and the transmission unit comprises a positioning structure, the positioning structure is connected with the mounting plate, and the inner peripheral wall of the positioning structure is connected with the driving shaft.
[0012] In one of the embodiments, the positioning structure comprises a bearing seat and a ball bearing, the bearing seat is connected with the mounting plate, and the ball bearing is arranged in interference between the inner peripheral wall of the bearing seat and the outer peripheral wall of the driving shaft.
[0013] In one of the embodiments, the ball bearing is at least two and is arranged in intervals along the axial direction of the driving shaft.
[0014] In one of the embodiments, the positioning structure further comprises a limiting member coaxially arranged with the driving shaft and sleeved on the outer circumferential side of the driving shaft and abutting against the side of the ball bearing away from the abutting unit.
[0015] In one of the embodiments, the abutting unit comprises a swing lever and a push rod, one end of the swing lever is connected with the driving shaft, the other end of the swing lever is detachably connected with the push rod, and the push rod abuts against the hanger assembly.
[0016] In one of the embodiments, the driving shaft comprises a reduced-diameter section and an enlarged-diameter section, the reduced-diameter section is connected with the first rotating member through the one-way bearing, the enlarged-diameter section is connected with the reduced-diameter section at the end away from the first rotating member and is connected with the abutting unit, and the diameter of the enlarged-diameter section is greater than that of the reduced-diameter section.
[0017] Compared with the prior art, the present application ensures that the position and time of the hanger assembly falling onto the main rod of the production line are more uniform through intermittent driving of the driving module, and avoids the problem of concentration of multiple hanger assemblies on the main rod of the production line. Moreover, the one-way locking and reverse clutch characteristics of the one-way bearing are relied on, when the one-way bearing is in the locking state, the inner ring and the outer ring are relatively fixed, therefore, the driving unit drives the first rotating member to rotate, the first rotating member can drive the driving shaft to rotate through the one-way bearing, so as to realize the rotation of the abutting unit and the abutting driving of the hanger assembly; when the driving unit drives the first rotating member to rotate reversely, the one-way bearing rotates in the second direction and is in the clutching state, at this time, the inner ring and the outer ring of the one-way bearing can relatively freely rotate, that is, when the first rotating member drives the outer ring of the one-way bearing to rotate, the inner ring of the one-way bearing does not synchronously rotate, so the rotation of the first rotating member does not drive the driving shaft to rotate, therefore, the retraction of the driving unit does not affect the rotation of the abutting unit, preventing the abutting unit from rotating due to the retraction of the driving unit and interfering with the hanger assembly, causing the hanger assembly to shake or even fall off. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The structure schematic view of one of the embodiments of the garment hanging outbound device provided by the present application;
[0019] Figure 2 The structure schematic view of another angle of one of the embodiments of the garment hanging outbound device provided by the present application;
[0020] Figure 3 The structure schematic view of the driving module of one of the embodiments of the garment hanging outbound device provided by the present application;
[0021] Figure 4Another angle structure schematic view of the driving module of one of the embodiments of the clothing hanging outbound device provided by the utility model;
[0022] Figure 5 The sectional view of the driving module of one of the embodiments of the clothing hanging outbound device provided by the utility model.
[0023] The meanings of the symbols in the drawing are as follows:
[0024] 100, clothing hanging outbound device; 101, production line main rod; 10, transport frame; 20, clothes hanger assembly; 30, driving module; 31, driving unit; 311, driving piece; 312, driving rack; 32, transmission unit; 321, first rotating piece; 322, one-way bearing; 323, driving shaft; 3231, reduced diameter section; 3232, expanded diameter section; 324, bearing seat; 325, ball bearing; 326, limiting piece; 33, abutting unit; 331, swing rod; 3311, mounting groove; 332, push rod; 34, mounting plate; 341, guide piece; 342, guide groove. DETAILED DESCRIPTION
[0025] 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 provide a sufficient understanding of 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.
[0026] It should be noted that when an apparatus is referred to as being "fixed to" or "set on" another apparatus, it can be directly on the other apparatus or there can be a mediating apparatus. When an apparatus is referred to as being "connected to" another apparatus, it can be directly connected to the other apparatus or there can be a mediating apparatus. The terms "vertical", "horizontal", "up", "down", "left", "right", and similar expressions used in the description of the present application are for illustrative purposes only and do not indicate the only implementation.
[0027] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implying the number of the indicated technical features. Therefore, the features defined as "first" and "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise specifically limited.
[0028] In the present application, unless specifically stated and limited otherwise, the first feature is "on", "under", "above", or "over" the second feature can be that the first feature is in direct contact with the second feature, or the first feature is in indirect contact with the second feature through an intermediate medium. Moreover, the first feature is "over", "above", and "on top of" the second feature can be that the first feature is directly above or obliquely above the second feature, or only means that the first feature is higher than the second feature in horizontal height. The first feature is "under", "below", and "underneath" the second feature can be that the first feature is directly below or obliquely below the second feature, or only means that the first feature is lower than the second feature in horizontal height.
[0029] 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 of ordinary skill in the art to which this application belongs. The terminology used in the specification of the present application is for the purpose of describing particular embodiments only and is not intended to be limiting of the present application. The use of the terms "and / or" in the specification of the present application encompasses any and all combinations of one or more of the associated listed items.
[0030] Please refer to Figures 1-5The garment hanging outbound device 100 comprises a transport frame 10, a hanger assembly 20 and a driving module 30, the transport frame 10 extends towards a production line main rod 101, the hanger assembly 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 driving unit 31, a transmission unit 32 and an abutting unit 33, the transmission unit 32 comprises a coaxially arranged first rotating part 321, a one-way bearing 322 and a driving shaft 323, the driving unit 31 is connected with the first rotating part 321 and can drive the first rotating part 321 to rotate by extending or retracting, the outer peripheral wall of the one-way bearing 322 is connected with the inner peripheral wall of the first rotating part 321, the inner peripheral wall of the one-way bearing 322 is connected with the outer peripheral wall of the driving shaft 323, and the end of the driving shaft 323 away from the first rotating part 321 is connected with the abutting unit 33 and drives the abutting unit 33 to abut against the hanger assembly 20; wherein the one-way bearing 322 is configured to be in a locking state when rotating towards a first direction and drive the driving shaft 323 to rotate towards the first direction, and be in a clutching state when rotating towards a second direction and not drive the driving shaft 323 to rotate. In this way, the hanger assembly 20 can move along the transport frame 10 and the production line main rod 101 extends, and through the intermittent driving of the driving module 30, it is ensured that the position and time of the hanger assembly 20 falling onto the production line main rod 101 are more uniform, avoiding the problem of concentration of multiple hanger assemblies 20 on the production line main rod 101. Moreover, since the one-way bearing 322 is in a locking state when rotating towards a first direction, when the one-way bearing 322 is in a locking state, its inner ring and outer ring are relatively fixed, therefore, when the driving unit 31 drives the first rotating part 321 to rotate, the first rotating part 321 can drive the driving shaft 323 to rotate through the one-way bearing 322, thereby realizing the rotation of the abutting unit 33 and the abutting driving of the hanger assembly 20; when the driving unit 31 drives the first rotating part 321 to rotate reversely, the one-way bearing 322 rotates in a second direction and is in a clutching state, at this time, the inner ring and outer ring of the one-way bearing 322 can relatively freely rotate, that is, when the first rotating part 321 drives the outer ring of the one-way bearing 322 to rotate, the inner ring of the one-way bearing 322 does not rotate synchronously, so the rotation of the first rotating part 321 does not drive the driving shaft 323 to rotate, therefore, the retraction of the driving unit 31 does not affect the rotation of the abutting unit 33, preventing the abutting unit 33 from rotating due to the retraction of the driving unit 31 to cause interference with the hanger assembly 20, causing the hanger assembly 20 to shake or even fall off.
[0031] It needs to be explained that in the embodiment, the abutting unit 33 is arranged in the form of rotating abutment for driving the hanger assembly 20. Since there is more than one hanger assembly 20 on the transport frame 10, when the abutting unit 33 pushes the last hanger assembly 20 to move towards the main rod 101 of the production line, the next hanger assembly 20 on the transport frame 10 will move to the position of the last hanger assembly 20. At this time, if the abutting unit 33 turns back along the original track, it will interfere with the next hanger assembly 20. Therefore, the abutting unit 33 cannot turn back along the original track following the retraction of the driving unit 31. The one-way gear can solve the above problem and prevent the abutting unit 33 from always following the driving unit 31.
[0032] In order to improve the driving efficiency of the abutting unit 33, in the embodiment, the single extension of the driving unit 31 is arranged to enable the abutting unit 33 to rotate a full circle and return to the initial position. During the retraction process of the driving unit 31, the abutting unit 33 does not rotate. After the driving unit 31 returns to the initial position, it is extended again. At this time, the one-way gear is locked and drives the abutting unit 33 to push the hanger assembly 20 forward again.
[0033] Specifically, the driving unit 31 includes a driving member 311 and a driving rack 312, and the first rotating member 321 is arranged in a gear structure. The driving member 311 can drive the driving rack 312 to extend or retract, and the driving rack 312 is connected with the first rotating member 321 in meshing. In this way, the driving member 311 pushes the driving rack 312 to extend or retract along the length direction thereof, and since the first rotating member 321 is in a gear structure, the movement of the driving rack 312 can synchronously drive the first rotating member 321 to rotate.
[0034] In the embodiment, the driving member 311 is arranged in a cylinder structure, and a telescopic rod is connected to the cylinder to reciprocate the driving rack 312 along the axis direction of the cylinder.
[0035] The driving module 30 further includes a mounting plate 34 connected with the transport frame 10, and the mounting plate 34 is provided with a guide member 341 abutting with the driving rack 312. The mounting plate 34 is used to bear the driving unit 31, the transmission unit 32 and the abutting unit 33. The driving member 311 is connected to the mounting plate 34 through a fixing plate, and the guide member 341 can guide the movement of the driving rack 312 through the cooperation with the driving rack 312.
[0036] Further, in order to facilitate the cooperation between the guide member 341 and the driving rack 312, a guide groove 342 is formed on the side of the driving rack 312 facing the mounting plate 34, the guide groove 342 is formed along the length direction of the driving rack 312, the guide member 341 is located in the guide groove 342 and abuts against the groove wall of the guide groove 342. In this way, the guide groove 342 can abut against the guide member 341 on both sides of the width direction of the driving rack 312, so that the guide effect of the guide member 341 on the driving rack 312 is better.
[0037] Preferably, the guide member 341 is provided as at least two, and the at least two guide members 341 are arranged at intervals along the moving direction of the driving rack 312, so that a plurality of guide members 341 can be embedded in the guide groove 342 of the driving rack 312, thereby further improving the stability of movement.
[0038] Please refer to Figure 5 The transmission unit 32 comprises a positioning structure, the positioning structure is connected with the mounting plate 34, and the inner circumferential wall of the positioning structure is connected with the driving shaft 323. In this way, the positioning structure can limit the position of the driving shaft 323 through the fixed connection effect with the mounting plate 34, so that the driving shaft 323 can keep stable during rotation.
[0039] In other embodiments, the mounting plate 34 can also be provided with a positioning groove, and the positioning structure is installed in the positioning groove, so that the outer circumferential wall of the positioning structure is connected with the groove wall of the positioning groove, thereby realizing the installation of the positioning structure.
[0040] Specifically, the positioning structure comprises a bearing seat 324 and a ball bearing 325, the bearing seat 324 is connected with the mounting plate 34, and the ball bearing 325 is arranged in interference between the inner circumferential wall of the bearing seat 324 and the outer circumferential wall of the driving shaft 323. In this way, the ball bearing 325 is connected in interference between the driving shaft 323 and the bearing seat 324, so that the position of the ball bearing 325 can be guaranteed to be stable, and the cooperation between the ball bearing 325 and the bearing seat 324 can keep the axial position of the driving shaft 323 stable while reducing the friction during rotation and making the rotation more smooth.
[0041] Preferably, the ball bearing 325 is at least two and is arranged at intervals along the axial direction of the driving shaft 323. In this way, the two ball bearings 325 can further improve the axial limiting effect of the positioning structure on the driving shaft 323.
[0042] The positioning structure further comprises a limiting member 326, the limiting member 326 is coaxially arranged with the driving shaft 323 and is sleeved on the outer circumferential side of the driving shaft 323, and abuts against the side of the ball bearing 325 away from the abutting unit 33. In this way, the limiting member 326 can prevent the ball bearing 325 from loosening and falling off, and prevent the bearing seat 324 from being axially displaced in the positioning groove.
[0043] The driving shaft 323 comprises a reduced diameter section 3231 and an enlarged diameter section 3232, the reduced diameter section 3231 is connected with the first rotating part 321 through the one-way bearing 322, the enlarged diameter section 3232 is connected with the abutting unit 33 at an end of the reduced diameter section 3231 away from the first rotating part 321, and the diameter of the enlarged diameter section 3232 is larger than that of the reduced diameter section 3231. In the embodiment, the enlarged diameter section 3232 is located outside the bearing seat 324 away from the bearing seat 324, and the limiting parts 326 are respectively located at two sides of the bearing seat 324, so as to ensure the connection stability of the driving shaft 323 and the bearing seat 324 from two directions of the bearing seat 324, and further prevent the ball bearing 325 from loosening and falling off. The diameter of the reduced diameter section 3231 is small, which is convenient for cooperation with various elements, and the one-way bearing 322, the first driving part 311, the ball bearing 325 and the bearing seat 324 are all arranged at the radial outer side of the reduced diameter section 3231.
[0044] The diameter of the enlarged diameter section 3232 is large, so the connection area with the abutting unit 33 is larger, and the connection strength is higher. Preferably, the abutting unit 33 comprises a swing lever 331 and a push rod 332, one end of the swing lever 331 is connected with the driving shaft 323, the other end of the swing lever 331 is detachably connected with the push rod 332, and the push rod 332 abuts against the clothes hanger assembly 20. In this way, the driving shaft 323 is connected with the swing lever 331, and the swing lever 331 can drive the push rod 332 to rotate. Since the push rod 332 abuts against the clothes hanger assembly 20 for a long time, deformation and wear are prone to occur, so after the push rod 332 and the swing lever 331 are detachably connected, the push rod 332 can be conveniently disassembled and repaired in the future.
[0045] Specifically, the swing lever 331 is provided with a mounting groove 3311, and the push rod 332 is embedded in the mounting groove 3311 to be connected with the swing lever 331.
[0046] Compared with the prior art, the utility model discloses intermittent drive of drive module 30, guarantee the position and time that clothes hanger assembly 20 fall to the line main rod 101 are more uniform, avoid the problem that multiple clothes hanger assembly 20 concentrate on the line main rod 101.And rely on the one-way locking of one-way bearing 322, the characteristic of reverse clutch, when one-way bearing 322 is in the locking state, its inner ring and outer ring are opposite fixed, therefore drive unit 31 drive first rotator 321 rotation, first rotator 321 can drive drive shaft 323 rotation through one-way bearing 322, thereby realize the rotation of abutment unit 33 and the abutment drive to clothes hanger assembly 20, when drive unit 31 drive first rotator 321 reverse rotation, one-way bearing 322 second direction rotation and be in the clutch state, one-way bearing 322's inner ring and outer ring can rotate relatively freely at this time, namely, when first rotator 321 drive one-way bearing 322's outer ring rotation, one-way bearing 322's inner ring will not follow its synchronous rotation, so the rotation of first rotator 321 will not drive drive shaft 323 rotation, therefore the retraction of drive unit 31 will not affect the rotation of abutment unit 33, prevent the interference of abutment unit 33 because of the rotation of drive unit 31 and the swing of clothes hanger assembly 20 even fall off.
[0047] The technical features of the above-described embodiments can be combined arbitrarily, and to make the description concise, not all possible combinations of the technical features in the above-described embodiments are described, however, as long as the combinations of the technical features do not exist contradictory, it should be considered that it is within the scope of the present application.
[0048] The above-described embodiments only express several implementation manners of the utility model, and the description is more specific and detailed, but it should not be understood as the limitation of the scope of the utility model patent. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the utility model, a number of modifications and improvements can be made, which all belong to the protection scope of the utility model. Therefore, the protection scope of the utility model patent should be subject to the appended claims.
Claims
1. Garment hanging outbound apparatus, characterized in that, The utility model relates to a clothes hanger conveying device, including: Transport frame (10) extends towards production line main pole (101); Clothes hanger assembly (20) is installed to transport frame (10) and can move along the length direction of transport frame (10); Driving module (30) includes drive unit (31), transmission unit (32) and abutment unit (33), transmission unit (32) includes coaxial first rotating part (321), one-way bearing (322) and drive shaft (323), drive unit (31) is connected with first rotating part (321), and first rotating part (321) is rotated by extension or retraction, the outer peripheral wall of one-way bearing (322) is connected with the inner peripheral wall of first rotating part (321), the inner peripheral wall of one-way bearing (322) is connected with the outer peripheral wall of drive shaft (323), and the one end of drive shaft (323) away from first rotating part (321) is connected with abutment unit (33), and drives abutment unit (33) and clothes hanger assembly (20) abut; Wherein, one-way bearing (322) is configured as locking state when rotating towards first direction and drives drive shaft (323) to rotate towards first direction, and is clutching state when rotating towards second direction and does not drive drive shaft (323) to rotate.
2. The garment hanging outbound apparatus of claim 1, wherein, Drive unit (31) includes driving part (311) and drive rack (312), first rotating part (321) is provided as gear structure, driving part (311) can drive drive rack (312) to extend or retract, and drive rack (312) is meshed with first rotating part (321) and is connected.
3. The garment hanging outbound apparatus of claim 2, wherein, The driving module (30) further includes a mounting plate (34), the mounting plate (34) is connected with the transport frame (10), and a guide piece (341) is arranged on the mounting plate (34). The guide piece (341) abuts against the drive rack (312).
4. The garment hanging outbound apparatus of claim 3, wherein, The drive rack (312) is provided with a guide groove (342) on one side facing the mounting plate (34). The guide groove (342) is formed along the length direction of the drive rack (312). The guide piece (341) is located in the guide groove (342) and abuts against the groove wall of the guide groove (342).
5. The garment hanging outbound apparatus of claim 1, wherein, The driving module (30) further includes a mounting plate (34), the transmission unit (32) includes a positioning structure, the positioning structure is connected with the mounting plate (34), and the inner peripheral wall of the positioning structure is connected with the drive shaft (323).
6. The garment hanging outbound apparatus of claim 5, wherein, The positioning structure includes a bearing seat (324) and a ball bearing (325). The bearing seat (324) is connected with the mounting plate (34). The ball bearing (325) is interference fitted between the inner peripheral wall of the bearing seat (324) and the outer peripheral wall of the drive shaft (323).
7. The garment hanging outbound apparatus of claim 6, wherein, The ball bearing (325) is at least two, and is arranged in the axial direction of the drive shaft (323).
8. The garment hanging outbound apparatus of claim 6, wherein, The positioning structure further comprises a limiting member (326) coaxially arranged with the driving shaft (323) and sleeved on the outer circumferential side of the driving shaft (323) and abutting against one side of the ball bearing (325) away from the abutting unit (33).
9. The garment hanging outbound apparatus of claim 1, wherein, The abutting unit (33) comprises a swing lever (331) and a push rod (332), one end of the swing lever (331) is connected with the driving shaft (323), the other end of the swing lever (331) is detachably connected with the push rod (332), and the push rod (332) abuts against the clothes hanger assembly (20).
10. The garment hanging outbound apparatus of claim 8, wherein, The driving shaft (323) comprises a reduced diameter section (3231) and an enlarged diameter section (3232), the reduced diameter section (3231) is connected with the first rotating member (321) through the one-way bearing (322), the enlarged diameter section (3232) is connected to one end of the reduced diameter section (3231) away from the first rotating member (321) and is connected with the abutting unit (33), The diameter of the enlarged diameter section (3232) is greater than that of the reduced diameter section (3231).