A quick line applied to the suspension of clothing production

CN122809136APending Publication Date: 2026-09-25HANGZHOU MADE INTELLIGENT TECH
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Patent Information

Application Number
CN202611280411.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-08-22
Publication Date
2026-09-25

AI Technical Summary

Technical Problem

[0003]而在目前的服装运输生产线中,在衣架从主轨进入站点支轨或衣架从站点进入主轨时通常会使用较长的过渡轨道供衣架移动,使衣架能够在摆头与轨道对接后再通过摆头从当前轨道进入另一轨道上,由于过渡轨道较长,尤其在出站时衣架通常通过自身重力导向作用进行较缓的移动,从而导致衣架进出站速度与效率较低

Benefits of technology

1.通过设置主线轨道、支线轨道以及相应的进站机构和出站机构,实现了衣架进站路径的快速切换,以及衣架出站由传送机构的传送动力联动带动,提高衣架出站速度,从而实现了衣架在服装生产过程中的快速、准确转移、减少了传统服装运输生产线中过长的过渡轨道,提高了衣架进出站的速度与效率;

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Abstract

The application relates to the technical field of garment production equipment and discloses a quick line applied to suspension in garment production, which comprises a main line frame, a main line track, a branch line frame, a branch line track, a conveying mechanism, an entry mechanism and an exit mechanism; the main line track is connected to the main line frame, the branch line track is connected to the branch line frame, and the main line track and the branch line track are used for moving clothes racks; the conveying mechanism is conveyed on the main line frame and is used for pushing the clothes racks to move on the main line track; the branch line track has an entry section and an exit section opposite to the main line track, the entry mechanism is arranged between the entry section and the main line track, and the exit mechanism is arranged between the exit section and the main line track. The application can improve the moving efficiency of the clothes racks.
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Description

Technical Field

[0001] This application relates to the technical field of garment production equipment, and in particular to a high-speed line for suspension used in garment production. Background Technology

[0002] Garment hanging systems are primarily used for garment production and material distribution. During garment manufacturing, the hanging system automatically delivers materials to the next worker's station based on pre-input processing steps and sections. This reduces wrinkles, stains, and mis-numbering during transport, thus improving garment quality.

[0003] In current garment transport production lines, a long transition track is usually used when the hanger moves from the main track to the station branch track or from the station to the main track. This allows the hanger to connect with the track and then move from the current track to another track. Because the transition track is long, especially when leaving the station, the hanger usually moves slowly by its own gravity, resulting in low speed and efficiency for the hanger entering and leaving the station. Summary of the Invention

[0004] To improve the efficiency of clothes hanger movement, this application provides a high-speed hanging line for use in garment production.

[0005] This application provides a high-speed hanging line for use in garment production, employing the following technical solution: A high-speed hanging conveyor used in garment production includes a main frame, a main track, a branch frame, a branch track, a conveying mechanism, an inbound mechanism, and an outbound mechanism. The main track is connected to the main frame, and the branch track is connected to the branch frame; both the main track and the branch track are used for moving garment hangers. The conveying mechanism is mounted on the main frame and used to push the garment hangers along the main track. The branch track has an inbound section and an outbound section opposite to the main track. The inbound mechanism is located between the inbound section and the main track, and the outbound mechanism is located between the outbound section and the main track. The main track has a break opposite to the station entry section. The station entry mechanism includes a station entry swing head that moves at the break under the control of a drive component. The station entry swing head switches between its corresponding first state and second state. The first state indicates that the station entry swing head is connected between the main track at both ends of the break. The second state indicates that the station entry swing head is connected between the main track and the branch track. The exit mechanism includes an exit swing head, a blocking component, a rotating disk, and a pushing component; The exit swing head is controlled by a power source to swing at one end of the exit section near the main track, so as to switch between its corresponding overlapping state and disconnected state; the overlapping state is characterized by the exit swing head overlapping between the exit section and the main track; the disconnected state is characterized by the exit swing head disconnecting from the main track. The blocking component is installed on the branch frame and switches between its corresponding blocking state and release state. The blocking state indicates that the blocking component moves closer to the exit section to stop the clothes hanger at the exit section. The release state indicates that a moving space is formed between the blocking component and the exit section for the clothes hanger to pass through. The rotating disk is rotatably connected to the branch frame about its own axis, and the rotating disk is linked to the conveying mechanism, which drives the rotating disk to rotate during conveying; and The pushing component is installed around the rotating disk, and at least one set is arranged along the circumference of the rotating disk; when the rotating disk drives the pushing component past the blocking component, it pushes the blocking component from the blocking state to the releasing state, and at the same time pushes the clothes hanger to slide away from the exit section and the exit swing head in sequence; Wherein, after the pushing component drives the clothes hanger away from the blocking component, the blocking component returns to the blocking state.

[0006] By adopting the above technical solution, the inbound swivel head switch between a first state and a second state. This allows it to continue along the main track when hangers do not need to enter the station, and quickly switch to connect the main track and branch track when hangers need to enter, thus enabling hangers to enter the station. Furthermore, the outbound mechanism, through the cooperation of a rotating disk and a conveyor mechanism, moves a pushing component to the outbound section. This pushing component unlocks the blocking component, simultaneously propelling the hanger out of the station. This utilizes the power of the conveyor mechanism to drive the hanger out, thereby increasing the hanger's exit speed. The combination of the inbound and outbound mechanisms improves the efficiency and order of hanger entry and exit.

[0007] Optionally, the conveying mechanism includes a toothed chain that conveys onto the main frame, and the rotating disk is provided with teeth evenly spaced around its circumference, the rotating disk engaging with the toothed chain through the teeth.

[0008] By adopting the above technical solution, the toothed chain in the transmission mechanism meshes with the teeth of the rotating disk that are evenly spaced around the circumference, thereby achieving precise driving of the rotating disk by the transmission mechanism, enabling the pushing component to push the clothes hanger according to a predetermined time and position.

[0009] Optionally, the rotating disk includes a rotating ring, clamping plates, and fasteners; the rotating ring includes multiple arc-shaped splicing segments, the teeth are disposed on the splicing segments, and the multiple splicing segments are spliced ​​sequentially to form the annular rotating ring; the number of clamping plates is two, the two clamping plates coaxially clamp the rotating ring together, and the fasteners simultaneously fasten the two clamping plates and the splicing segments.

[0010] By adopting the above technical solution, the rotating disk uses a combination structure of a rotating ring, clamping plates and fasteners, which makes the production, assembly and disassembly of the rotating disk more convenient and faster, while improving the stability and durability of the rotating disk.

[0011] Optionally, the blocking component includes Support, installed on the branch frame; An obstruction seat is rotatably connected to the support and has a pressure-receiving part for being pushed by the pushing assembly. The obstruction seat rotates to switch the obstruction assembly between the obstruction state and the release state. A reset element is connected between the support and the blocking seat, providing the blocking seat with a spring force to maintain the blocking state; When the pushing component passes the blocking seat, the pushing component resists the elastic force of the reset member and pushes the pressure-receiving part to drive the blocking seat to rotate, so that the blocking seat rotates from the blocking state to the releasing state.

[0012] By adopting the above technical solution, the cooperation between the blocking seat and the resetting component enables the clothes hanger to be effectively blocked and released during the exit process, making it less likely for the clothes hanger to become congested or misaligned during the exit process, thus improving the orderliness of the clothes hanger exit.

[0013] Optionally, the pushing component includes A mounting base, mounted on the rotating disk, has a pushing part; and A boss is installed on the side of the rotating disk facing the pressure-receiving part and extends circumferentially along the rotating disk; During the process of the pushing component passing through the blocking seat, the boss first abuts against and pushes the pressure-receiving part, causing the blocking seat to rotate to the released state, and then the pushing part pushes the clothes hanger through the moving space.

[0014] By adopting the above technical solution, the boss first abuts against and pushes the pressure-bearing part, causing the blocking seat to rotate to the release state. Then, the pushing part pushes the hanger through the moving space, realizing the automation and intelligence of the hanger exit process.

[0015] Optionally, the pushing component also includes Anti-impact seat, hinged to the mounting base; and An elastic element is connected between the anti-impact seat and the mounting seat, such that a snap-fit ​​cavity for enclosing the clothes hanger rod is formed between the end of the anti-impact seat away from its own hinge point and the pushing part. When the mounting base passes the hanger, the hanger rod must first resist the elastic force of the elastic element to push the anti-impact seat to rotate closer to the mounting base, and then separate from the anti-impact seat and enter the buckle cavity.

[0016] By adopting the above technical solution, through the cooperation of the anti-impact seat and the elastic element, the hanger is blocked by the anti-impact seat and the pusher after entering the buckle cavity, so as to limit the hanger from leaving the buckle cavity. This ensures that the hanger moves on the mounting seat during the exit section and the exit swing head, thus making it less likely for the hanger to move too fast and run off the track due to the pusher.

[0017] Optionally, the pressure-receiving part is rotatably connected to a roller for the boss to abut against, and the boss drives the roller to rotate when it passes the pressure-receiving part.

[0018] By adopting the above technical solution, the rotation of the roller driven by the boss can reduce the friction between the boss and the pressure-bearing part, thereby improving the smoothness of the operation of the exit mechanism.

[0019] Optionally, when the exit swing head is in the overlapping state, both the exit swing head and the exit section are in an arc shape coaxial with the rotating disk.

[0020] By adopting the above technical solution, since the pushing component is driven to move by the rotation of the rotating disk, the exit swing head and the exit section are both in the shape of an arc coaxial with the rotating disk, which can improve the stability of the pushing component in moving the clothes hanger.

[0021] Optionally, the station entry swing head includes a main line cantilever and a branch line cantilever, and the drive unit controls the main line cantilever and the branch line cantilever simultaneously; When the station entrance swing head is in the first state, the main line cantilever continues between the main line tracks on both sides of the break, and the branch line cantilever is housed under the main line cantilever. At the same time, a clearance channel for the clothes rack to pass is formed between the branch line cantilever and the station entrance section. When the station entrance swing head is in the second state, the main line cantilever leaves the break, and the branch line cantilever continues between the main line track and the branch line track.

[0022] By adopting the above technical solution, the drive unit simultaneously controls the movement of the main line cantilever and the branch line cantilever, so that only one of the cantilevers can be connected to the track, thereby enabling the rapid switching of the clothes hanger's movement path according to the needs of the clothes hanger.

[0023] Optionally, the main frame is connected to a base frame opposite to the break, the base frame having a first connector for adjusting the vertical height of the main cantilever, and the base frame having a second connector for adjusting the branch cantilever.

[0024] By adopting the above technical solution, the distance between the main line cantilever and the branch line cantilever can be adjusted through the first connector and the second connector, so that the main line cantilever and the branch line cantilever can maintain a vertical installation distance and are less likely to collide and be damaged.

[0025] In summary, this application includes at least one of the following beneficial effects: 1. By setting up main track, branch track, and corresponding entry and exit mechanisms, the rapid switching of the hanger entry path is realized, and the hanger exit is driven by the transmission power of the conveyor mechanism, which improves the hanger exit speed. This enables the hanger to be transferred quickly and accurately in the garment production process, reduces the excessively long transition track in the traditional garment transportation production line, and improves the speed and efficiency of hanger entry and exit. 2. In the exit mechanism, the clothes hanger is stopped by the blocking component, so that when the rotating disk drives the pushing component to rotate, the pushing component can accurately unlock the blocking component at the stopping position and cooperate with the clothes hanger, thereby improving the accuracy and orderliness of the exit mechanism's operation.

[0026] 3. The main line cantilever and the branch line cantilever work together in the station entry mechanism to enable the clothes hanger to slide into the designated track more accurately, thereby improving work efficiency. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the structure of the entry mechanism when the entry swing head is in the second state in the embodiments of this application; Figure 2 This is a schematic diagram of the outbound mechanism when the outbound swing head is in the overlapping state in the embodiments of this application; Figure 3 This is a schematic diagram of the structure of the inlet / outlet mechanism and the clothes hanger in the embodiment of this application; Figure 4 This is a schematic diagram of the structure of the drive component and the station entry swing head in the embodiments of this application; Figure 5 This is a schematic diagram of the structure of the entry mechanism when the entry swing head is in the first state in this embodiment of the application; Figure 6 This is a schematic diagram of the structure when the outbound swing head is in the disconnected state in the embodiment of this application; Figure 7 This is a schematic diagram of the structure of the power source and the exit swing head in the embodiment of this application; Figure 8 yes Figure 6 Enlarged structural diagram at point A; Figure 9 This is a schematic diagram of the bottom structure of the rotating disk in an embodiment of this application; Figure 10 This is a schematic diagram of the structure of the rotating disk and the pushing component in an embodiment of this application; Figure 11 This is a schematic diagram of the structure of the rotating disk and the connecting frame in an embodiment of this application.

[0028] Explanation of reference numerals in the attached drawings: 1. Main line frame; 2. Main line track; 3. Branch line frame; 4. Branch line track; 5. Conveying mechanism; 51. Toothed chain; 52. Pushing component; 6. Clothes hanger; 7. Entering section; 8. Leaving section; 9. Break; 10. Driving component; 11. Entering swing head; 111. Main line cantilever; 112. Branch line cantilever; 12. Leaving swing head; 13. Anchoring assembly; 131. Support; 132. Anchoring seat; 133. Reset component; 14. Rotating disk; 141. Rotary ring; 1411. Splicing section; 142. Clamping piece; 15. Pushing assembly; 151. Mounting base; 152. Boss; 153. Anti-impact seat; 16. Power source; 18. Pressure-bearing part; 19. Pushing part; 20. Snap-fit ​​cavity; 21. Roller; 22. Clearance channel; 23. Base frame; 24. First connecting piece; 25. Second connecting piece; 26. Main line connecting rod; 27. Branch line connecting rod; 28. Main line hinge seat; 29. ​​Branch line hinge seat; 30. First hinge part; 31. Second hinge part; 32. Third hinge part; 33. Fourth hinge part; 34. Station exit connecting rod; 35. First connecting piece; 36. Pressing surface; 37. Guide surface; 38. Height limit part; 39. Connecting frame; 40. Second connecting piece; 41. Rotating shaft. Detailed Implementation

[0029] The following is in conjunction with the appendix Figure 1-11 This application will be described in further detail.

[0030] This application discloses a high-speed hanging line used in garment production. (See also...) Figure 1 and Figure 2 The high-speed conveyor system used in garment production includes a main frame 1, a main track 2, a branch frame 3, a branch track 4, a conveying mechanism 5, an inbound mechanism, and an outbound mechanism.

[0031] The main frame 1 connects to the main track 2, and the conveying mechanism 5 conveys along the extension direction of the main track 2 onto the main frame 1. The branch frame 3 is supported by the main frame 1 and connects to the branch track 4. Both the main track 2 and the branch track 4 are slide rails for the top of the hanger 6 to slide. When the top of the hanger 6 slides on the main track 2 and the branch track 4, the hanger 6 rod connecting the top and bottom hanging areas is opposite to the side of the track.

[0032] The branch track 4 has an entrance section 7 at one end and an exit section 8 at the other. An entrance mechanism is located between the entrance section 7 and the main track 2, assisting the clothes hanger 6 in sliding from the main track 2 into the branch track 4. Similarly, an exit mechanism is located between the exit section 8 and the main track 2, also assisting the clothes hanger 6 in sliding from the branch track 4 into the main track 2. It should be noted that in this embodiment, the main track 2 near both the entrance section 7 and the exit section 8 extends in a horizontal straight line.

[0033] Reference Figure 1 and Figure 2 The conveying mechanism 5 includes a toothed chain 51 and pushers 52. The toothed chain 51 is located directly above the main track 2 and conveys the clothes hangers 6 along the extension direction of the main track 2 onto the main frame 1. The pushers 52 are evenly spaced along the length of the toothed chain 51. When the toothed chain 51 is conveying, the pushers 52 can contact the clothes hangers 6 on the main track 2 to push the clothes hangers 6 to slide on the main track 2. The pushers 52 and the clothes hangers 6 on the main track 2 can be push rods or hooks. In this embodiment, the pushers 52 are hooks.

[0034] Reference Figure 1 and Figure 3 For the station entry mechanism, a break 9 is formed on the main track 2 to cut off the extension path of the main track 2. The break 9 is located opposite the main track 2 and the station entry section 7, and the main frame 1 is fixed with a base frame 23 extending to the break 9. The base frame 23 has a portion extending to the main track 2 and below the break 9.

[0035] Reference Figure 3 and Figure 4 The station-entry mechanism includes a drive unit 10 and a station-entry swing head 11. The drive unit 10 is mounted on the frame and located below the main track 2. The station-entry swing head 11 moves at the break point 9. The drive unit 10 is a telescopic power component. In this embodiment, the drive unit 10 is a cylinder; in other embodiments, the drive unit 10 can also be an electric telescopic rod. The base of the drive unit 10 is mounted on the base frame 23, and the telescopic end of the drive unit 10 extends and retracts along the extension direction of the main track 2.

[0036] The station entry swing head 11 includes a main line cantilever 111 and a branch line cantilever 112, which are controlled together by the drive unit 10. Specifically, the telescopic end of the drive unit 10 is coaxially hinged with a main line connecting rod 26 and a branch line connecting rod 27. The main line track 2 has a main line hinge seat 28 and a branch line hinge seat 29 connected to both ends of the break 9, and the branch line hinge seat 29 and the main line hinge seat 28 are distributed sequentially along the conveying direction of the main line track 2.

[0037] Reference Figure 3 and Figure 4The main line cantilever 111 has a first hinge portion 30 and a second hinge portion 31 that are offset from each other. The first hinge portion 30 is hinged to the main line hinge seat 28 via a bearing, and the second hinge portion 31 is hinged to the end of the main line connecting rod 26 away from the drive member 10 via a pin. The branch line cantilever 112 has a third hinge portion 32 and a fourth hinge portion 33 that are offset from each other. The third hinge portion 32 is hinged to the branch line hinge seat 29 via a bearing, and the fourth hinge portion 33 is hinged to the end of the branch line connecting rod 27 away from the drive member 10 via a pin. The hinge axes of the first hinge portion 30, the second hinge portion 31, the third hinge portion 32, and the fourth hinge portion 33 are all parallel to the hinge axis of the telescopic end of the drive member 10 and all extend vertically.

[0038] Reference Figure 3 and Figure 4 When the drive unit 10 extends or retracts, it can drive the entry swing head 11 to switch between the first state and the second state. When the extension end of the drive unit 10 is extended, the entry swing head 11 is in the first state. At this time, the drive unit 10 drives the main line cantilever 111 to rotate around the first hinge part 30 to connect between the main line tracks 2 at opposite ends of the break 9. The branch line cantilever 112 rotates around the third hinge part 32 to be stored under the main line cantilever 111. A clearance channel 22 for the clothes hanger 6 to pass through is formed between the branch line cantilever 112 and the entry section 7. At this time, when the clothes hanger 6 passes through the break 9, it is guided by the main line cantilever 111 to the main line track 2 without entering the station.

[0039] meal Figure 3 , Figure 4 and Figure 5 When the extension end of the drive unit 10 is retracted, the entry swing head 11 is in the second state. At this time, the drive unit 10 drives the main line cantilever 111 to rotate around the first hinge part 30 until the free end of the main line cantilever 111 moves away from the break 9 in the direction away from the entry section 7. Meanwhile, the branch line cantilever 112 rotates around the third hinge part 32 until the free end of the branch line cantilever 112 abuts against the entry section 7. Thus, the branch line cantilever 112 is connected between the main line track 2 and the entry section 7. At this time, when the clothes hanger 6 passes through the break 9, it is guided by the branch line cantilever 112 to the entry section 7 to realize the entry.

[0040] Reference Figure 4 and Figure 5In order to move the hanger 6 on the main line cantilever 111, the main line cantilever 111 is parallel to the main line track 2 when it is connected to the main line track 2, and both ends of the main line cantilever 111 that are far apart have gentle slopes to guide the hanger 6. The hanger 6 is pushed by the pusher 52 to slide onto the main line cantilever 111 and moves on the main line cantilever 111. The height at which the hanger 6 moves on the main line track 2 is similar to the height at which the hanger 6 moves on the main line cantilever 111. In order to move the hanger 6 on the branch line cantilever 112, the height of the station entry section 7 is lower than the height of the main line track 2, and the height of the station entry section 7 gradually decreases in the direction away from the main line track 2. The height of the branch line cantilever 112 also gradually decreases in the direction away from the branch line hinge seat 29. When the hanger 6 enters the branch line cantilever 112, it is driven by its own gravity to slide into the station entry section 7.

[0041] Reference Figure 3 and Figure 4 Furthermore, a first connector 24 and a second connector 25 are installed on the base frame 23. The first connector 24 is used to support the main line articulation seat 28 and make minor height adjustments, while the second connector 25 is used to support the branch line articulation seat 29 and make minor height adjustments. Specifically, the first connector 24 includes a support column and a nut. The support column is locked onto the main line articulation seat 28 and extends vertically, while the support column passes downward through the base plate of the base frame 23. There are two nuts, both of which are vertically threaded onto the support column, and the two nuts abut against the upper and lower sides of the base plate respectively. By adjusting the position of the nuts relative to the support column, the position of the main line articulation seat 28 and the main line cantilever 111 can be finely adjusted vertically.

[0042] The structure of the second connector 25 is the same as that of the first connector 24, and will not be described in detail here. By fine-tuning the height of the main line cantilever 111 with the first connector 24 and fine-tuning the height of the linear swing head with the second connector 25, a gap can be made between the main line cantilever 111 and the branch line cantilever 112, so that the main line cantilever 111 and the branch line cantilever 112 are less likely to interfere with each other during swing and cause wear.

[0043] Reference Figure 2 and Figure 6The exit mechanism includes an exit swing head 12, a blocking component 13, a rotating disk 14, and a pushing component 15. The exit swing head 12 is hinged to the exit section 8, serving as a transition track for the clothes hanger 6 to move from the exit section 8 to the main track 2. The blocking component 13 is mounted on the branch frame 3 and faces the exit section 8, temporarily blocking the clothes hanger 6 on the exit section 8. The rotating disk 14 is rotatably connected to the branch frame 3, with its axis perpendicular to the main track 2. The pushing component 15 has multiple sets evenly spaced around the rotating disk 14. When the rotating disk 14 rotates, it can drive the pushing component 15 to cooperate with the blocking component 13, thereby releasing the blocking component 13 from blocking the clothes hanger 6 and simultaneously pushing the clothes hanger 6 towards the main track 2.

[0044] Reference Figure 2 and Figure 6 Specifically, the exit section 8 is an arc shape coaxial with the rotating disk 14, and the exit swing head 12 is also an arc shape, with the radius of the exit section 8 being the same as the radius of the exit swing head 12. One end of the exit swing head 12 is hinged to the end of the exit section 8 near the main track 2 by a pin, and the axis of this pin is parallel to the axis of the rotating disk 14.

[0045] A power source 16 is rotatably mounted on the branch frame 3, located below the exit section 8. The power source 16 controls the exit swing head 12. In this embodiment, the power source 16 is a cylinder; in other embodiments, the power source 16 can also be an electric telescopic rod. An exit connecting rod 34 is located between the telescopic end of the power source 16 and the exit swing head 12. The exit connecting rod 34 is bent, and its bend point is hinged to the exit section 8. The hinge point between the exit connecting rod 34 and the exit section 8 is coaxial and coincides with the hinge point between the exit swing head 12 and the exit section 8. Simultaneously, one end of the exit connecting rod 34 is hinged to the telescopic end of the power source 16 via a pin, and the opposite end of the exit connecting rod 34 is hinged to the exit swing head 12 via a pin. The axes of the three hinge points on the exit connecting rod 34 are parallel to each other.

[0046] Reference Figure 6 and Figure 7 When the telescopic end of the power source 16 extends, it drives the exit swing head 12 to rotate to the overlapping state. At this time, the exit connecting rod 34 drives the exit swing head 12 to swing until the exit swing head 12 is coaxial with the exit section 8. The end of the exit swing head 12 closer to the exit section 8 continues to the exit section 8, and the end of the exit swing head 12 away from the exit section 8 overlaps with the upper surface of the main track 2. The clothes hanger 6 on the branch track 4 can slide onto the main track 2 in sequence through the exit section 8 and the exit swing head 12. In order to improve the stability of the clothes hanger 6, the upper surface of the end of the exit swing head 12 that overlaps with the main track 2 has a gradually downward-extending slope to guide the clothes hanger 6 from the exit swing head 12 to the main track 2.

[0047] When the telescopic end of the power source 16 is retracted, it drives the exit swing head 12 to rotate to the disconnected state. At this time, the end of the exit swing head 12 away from the exit section 8 is separated from the main track 2, and a space for the clothes rack 6 to pass through is formed between the exit swing head 12 and the main track 2, so that the clothes rack 6 on the main track 2 can move normally.

[0048] Reference Figure 6 and Figure 8 The blocking assembly 13 includes a support 131, a blocking seat 132, and a reset member 133. The support 131 is mounted on the branch frame 3 and is located above the exit section 8. The blocking seat 132 is rod-shaped and is rotatably connected to the support 131 via a bearing near its center. The rotation axis of the blocking seat 132 is parallel to the length extension direction of the main track 2. The end of the blocking seat 132 near the main track 2 has a pressure-bearing portion 18, which is columnar and extends parallel to the rotation axis of the blocking seat 132. The end of the pressure-bearing portion 18 away from the main body of the blocking seat 132 is rotatably connected to a roller 21 via a bearing. The rotation axis of the roller 21 is parallel to the rotation axis of the blocking seat 132. The reset member 133 is a part with a telescopic elastic force. One end of the reset member 133 is connected to the support 131, and the other end of the reset member 133 is connected to the blocking seat 132. The connection point between the reset member 133 and the blocking seat 132 is close to the pressure-receiving part 18. In this embodiment, the reset member 133 is a tension spring.

[0049] When in use, the blocking assembly 13 switches between a blocking state and a releasing state by rotating the blocking seat 132. When the blocking assembly 13 is in the blocking state, the blocking seat 132 rotates to a position away from the pressure-bearing part 18 and close to the exit section 8, thus blocking the path of the hanger 6 through the exit section 8. In the blocking state, the hanger 6 stops moving when it slides from the branch track 4 to the exit section 8, blocked by the blocking seat 132. It should be noted that the spring force of the reset member 133 is used to maintain the blocking seat 132 in the blocking state.

[0050] When the blocking component 13 is in the released state, the pressure part 18 is pushed down by the force of the pushing component 15 and moves downward against the elastic force of the reset component 133, so as to drive the end of the blocking seat 132 away from the pressure part 18 to rotate upward. A moving space is formed between the blocking seat 132 and the exit section 8, and the clothes hanger 6 can pass through the moving space.

[0051] Reference Figure 6 and Figure 9The rotating disk 14 is disc-shaped, and multiple teeth are evenly spaced along its outer circumference. The rotating disk 14 engages with the toothed chain 51 through the teeth, so that the toothed chain 51 drives the rotating disk 14 to rotate synchronously when it transmits. A pushing assembly 15 is installed on the periphery of the bottom surface of the rotating disk 14, and at least one set of the pushing assembly 15 is installed along the circumference of the rotating disk 14. In this embodiment, three sets of pushing assemblies 15 are evenly spaced along the circumference of the rotating disk 14; in other embodiments, six sets of pushing assemblies 15 may be provided.

[0052] Reference Figure 9 and Figure 10 Each push assembly 15 includes a mounting base 151, a boss 152, an anti-impact seat 153, and an elastic element. A first connecting piece 35, L-shaped, is bolted to the bottom surface of the rotating disk 14. The mounting base 151 is locked to the first connecting piece 35 by bolts, and the first connecting piece 35 has an oblong hole for adjusting the position of the mounting base 151 vertically. The mounting base 151 is recessed inward on one circumferential side of the rotating disk 14 to allow space for the hanger 6, while a push portion 19 for contacting the hanger 6 is formed on the other circumferential side of the mounting base 151. The anti-impact seat 153 is rod-shaped, with one end hinged to the recessed side of the mounting base 151 by a pin. The elastic element (not shown in the figure) is a part with tensile elasticity. The elastic element is connected between the anti-impact seat 153 and the mounting seat 151, so that a snap-fit ​​cavity 20 is formed between the end of the anti-impact seat 153 away from its own hinge point and the push part 19. The snap-fit ​​cavity 20 is used for the clothes hanger 6 rod to enter and surround the clothes hanger 6 rod. In this embodiment, the elastic element is a spring.

[0053] The boss 152 corresponds one-to-one with the mounting base 151. The boss 152 is bolted to the bottom surface of the rotating disk 14 and extends circumferentially along the rotating disk 14 to form a pressing surface 36 and a guide surface 37 protruding from the bottom surface of the rotating disk 14. The pressing surface 36 and the guide surface 37 are located on the bottom surface of the boss 152 and distributed circumferentially along the rotating disk 14. The pressing surface 36 is parallel to the horizontal plane. There are two guide surfaces 37, which are respectively connected to the two ends of the pressing surface 36 that are far apart from each other along the circumference of the rotating disk 14. Both guide surfaces 37 are inclined towards the bottom surface of the rotating disk 14 in the direction away from the pressing surface 36, so as to connect between the bottom surface of the rotating disk 14 and the pressing surface 36.

[0054] Reference Figure 8 and Figure 10When the pushing component 15 has not passed the blocking seat 132, the blocking seat 132 is pulled by the reset component 133, causing the roller 21 to abut against the lower surface of the rotating disk 14. When the rotating disk 14 drives the pushing component 15 past the blocking seat 132, the boss 152 guides the roller 21 from the lower surface of the rotating disk 14 to abut against the pressing surface 36 by the guide surface 37, so as to press down the pressed part 18 and rotate the blocking seat 132 to the released state. As the boss 152 presses down the roller 21 through the pressing surface 36 and rotates with the rotating disk 14, the hanger 6 enters the buckle cavity 20, and the mounting seat 151 drives the hanger 6 to leave the blocking seat 132 through the moving space. After the mounting base 151 drives the clothes hanger 6 away from the blocking base 132, the boss 152 guides the roller 21 to another guide surface 37 by the pressing surface 36, and the other guide surface 37 guides the roller 21 to be opposite to the bottom surface of the rotating disk 14, so that the blocking base 132 is reset to the blocking state by the pulling force of the reset member 133.

[0055] After the mounting base 151 removes the hanger 6 from the blocking seat 132, the power source 16 receives a signal to control the exit swing head 12 to rotate to the overlapping state. Then, as the mounting base 151 moves with the rotating seat, it pushes the hanger 6 sequentially away from the exit section 8 and the exit swing head 12 via the pushing part 19, entering the main track 2. It should be noted that both the mounting base 151 and the anti-impact seat 153 are higher than the main track 2. When the hanger 6 descends from the exit swing head 12 into the main track 2, it simultaneously leaves the buckle cavity 20 and separates from the mounting base 151 and the anti-impact seat 153. The mounting base 151 and the anti-impact seat 153 are then brought back by the turntable to engage with the hanger 6 on the exit section 8.

[0056] It should also be noted that when the anti-impact seat 153 is only subjected to the tension of the elastic element and not to other tensions, the distance from the outer side of the anti-impact seat 153 to the axis of the rotating disk 14 gradually increases along the direction closer to the push part 19. When the rotating disk 14 rotates and drives the end of the anti-impact seat 153 away from the push part 19 to face the hanger 6 rod, there is still a gap between the outer side of the anti-impact seat 153 and the hanger 6 rod. The rotating disk 14 continues to rotate, causing the hanger 6 rod to abut against the outer side of the anti-impact seat 153 and gradually squeeze the elastic element. Afterwards, the hanger 6 rod leaves the anti-impact seat 153 near the pusher 19 and enters the buckle cavity 20. At the same time, after the anti-impact seat 153 is released from the pressure of the hanger 6, the elastic element drives the anti-impact seat 153 to rotate outward and reset, so that the opposite sides of the hanger 6 rod are limited by the pusher 19 and the anti-impact seat 153 respectively. The hanger 6 can move at the same or similar speed as the mounting base 151, which makes it easier to control the moving speed of the hanger 6 and prevents the hanger 6 from leaving the pusher 19 and moving at too fast, causing derailment.

[0057] Reference Figure 10In addition, in some embodiments, the mounting base 151 has a height limiting part 38, which limits the height of the top of the buckle cavity 20. When the hanger 6 rod enters the buckle cavity 20, the height limiting part 38 is opposite to the top of the hanger 6 rod, restricting the hanger 6 from moving upward away from the exit section 8 and the exit swing head 12.

[0058] Furthermore, to facilitate the processing and forming of the rotating disk 14, the rotating disk 14 includes a rotating ring 141, a clamping piece 142, and fasteners. The rotating ring 141 includes multiple splicing segments 1411, each splicing segment 1411 being arc-shaped with teeth formed on its outer periphery. The rotating ring 141 is formed by sequentially splicing multiple splicing segments 1411. Specifically, the two ends of the splicing segments 1411 that are far apart from each other have a locking key and a locking groove, respectively. Adjacent splicing segments 1411 are connected by locking the locking key of one splicing segment 1411 into the locking groove of another splicing segment 1411.

[0059] The clamping plate 142 consists of two circular pieces. The outer diameter of each clamping plate 142 is smaller than the outer diameter of the rotating ring 141 but larger than its inner diameter. The two clamping plates 142 coaxially abut against the upper and lower sides of the rotating ring 141. In this embodiment, the fastener (not shown in the figure) is a bolt and nut assembly. The bolt passes through both clamping plates 142 and the splicing section 1411, and is then tightened with a nut to form the rotating disk 14. In other embodiments, the fastener can also be adhesive material bonded between the clamping plates 142 and the splicing section 1411. The boss 152 is bolted to the splicing section 1411, and the first connecting piece 35 is bolted to the clamping plate 142.

[0060] Reference Figure 10 and Figure 11 Furthermore, the rotating disk 14 is mounted to the branch frame 3 via the connecting bracket 39 and the second connecting piece 40. Specifically, the second connecting piece 40 is L-shaped and is locked to the branch frame 3 by bolts and nuts. The second connecting piece 40 can be adjusted in position on the branch frame 3 along the direction parallel to the main track 2. The connecting bracket 39 is linear. One end of the connecting bracket 39 is locked to the main frame 1 by bolts and nuts, and the connecting bracket 39 can be adjusted in position on the main frame 1 along the direction parallel to the main track 2. The end of the connecting bracket 39 away from the main frame 1 is locked to the second connecting piece 40 by bolts and nuts. The holes for bolts on the connecting bracket 39, both opposite to the second connecting piece 40 and opposite to the main frame 1, are oblong holes extending perpendicular to the main track 2. Thus, the connection between the connecting frame 39, the second connecting piece 40, the branch frame 3 and the main frame 1 can adjust the connecting frame 39 in the horizontal direction along a cross shape.

[0061] A rotating shaft 41 is vertically mounted on the connecting frame 39. The middle part of the clamping plate 142 is rotatably sleeved on the rotating shaft 41 through a bearing so that it can rotate. When the connecting frame 39 is adjusted in the horizontal direction, it drives the rotating disk 14 to move together, so as to adjust the position of the rotating disk 14 and improve the accuracy of the position of the rotating disk 14.

[0062] The implementation principle of a high-speed hanging line applied in garment production according to an embodiment of this application is as follows: when the hanger 6 needs to enter the station, the entry swing head 11 is adjusted to the second state, so that the branch line cantilever 112 is connected between the main line track 2 and the branch line track 4, so that the hanger 6 enters the workstation through the branch line cantilever 112.

[0063] When hanger 6 needs to leave the station, it first slides onto the exit section 8 and is blocked and restricted by the stop seat 132. During the rotation of the rotating disk 14, the boss 152 and the mounting seat 151 pass through the stop seat 132 in sequence. The boss 152 pushes the stop seat 132 to the released state. When the stop seat 132 is in the released state, the mounting seat 151 locks the hanger 6 and pushes the hanger 6 away from the stop seat 132. At the same time, the exit swing head 12 is pushed into the overlapping state. After the hanger 6 leaves the stop seat 132, the boss 152 also leaves the stop seat 132. The stop seat 132 returns to the blocking state, while the hanger 6 continues to be pushed by the mounting seat 151 to pass through the exit section 8 and the exit swing head 12 in sequence. Then the hanger 6 falls from the exit swing head 12 onto the main track 2. At the same time, the hanger 6 moves downward away from the mounting seat 151, completing the exit of the hanger 6. After the clothes hanger 6 leaves the station, the exit swing head 12 returns to the disconnected state.

[0064] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A high-speed hanging line used in garment production, characterized in that: The system includes a main frame (1), a main track (2), a branch frame (3), a branch track (4), a conveying mechanism (5), an entry mechanism, and an exit mechanism. The main track (2) is connected to the main frame (1), and the branch track (4) is connected to the branch frame (3). Both the main track (2) and the branch track (4) are used to move the clothes hanger (6). The conveying mechanism (5) is connected to the main frame (1) and is used to push the clothes hanger (6) to move on the main track (2). The branch track (4) has an entry section (7) and an exit section (8) opposite to the main track (2). The entry mechanism is located between the entry section (7) and the main track (2), and the exit mechanism is located between the exit section (8) and the main track (2). The main track (2) has a break (9) opposite to the station entry section (7). The station entry mechanism includes a station entry swing head (11) controlled by a drive member (10) to move at the break (9). The station entry swing head (11) switches between its corresponding first state and second state. The first state is characterized by the station entry swing head (11) being connected between the main track (2) at both ends of the break (9). The second state is characterized by the station entry swing head (11) being connected between the main track (2) and the branch track (4). The exit mechanism includes an exit swing head (12), a blocking component (13), a rotating disk (14), and a pushing component (15). The exit swing head (12) is controlled by the power source (16) to swing at one end of the exit section (8) near the main track (2), so that it can switch between its corresponding overlapping state and disconnected state; the overlapping state is characterized by the exit swing head (12) overlapping between the exit section (8) and the main track (2); the disconnected state is characterized by the exit swing head (12) being disconnected from the main track (2); The blocking component (13) is installed on the branch frame (3) and switches between its corresponding blocking state and release state. The blocking state is characterized by the blocking component (13) approaching the exit section (8) to stop the clothes hanger (6) at the exit section (8). The release state is characterized by the formation of a moving space between the blocking component (13) and the exit section (8) for the clothes hanger (6) to pass through. The rotating disk (14) is rotatably connected to the branch frame (3) around its own axis, and the rotating disk (14) is linked with the conveying mechanism (5). When the conveying mechanism (5) conveys, it drives the rotating disk (14) to rotate; and The pushing component (15) is installed around the rotating disk (14), and at least one set is arranged around the rotating disk (14); when the rotating disk (14) drives the pushing component (15) past the blocking component (13), it pushes the blocking component (13) from the blocking state to the releasing state, and at the same time pushes the clothes hanger (6) to slide away from the exit section (8) and the exit swing head (12) in sequence. Wherein, after the pushing component (15) drives the clothes hanger (6) away from the blocking component (13), the blocking component (13) returns to the blocking state.

2. The high-speed hanging line used in garment production according to claim 1, characterized in that: The conveying mechanism (5) includes a toothed chain (51) that is conveyed on the main frame (1). The rotating disk (14) is provided with teeth evenly spaced around its circumference. The rotating disk (14) meshes with the toothed chain (51) through the teeth.

3. A high-speed hanging line for garment production according to claim 2, characterized in that: The rotating disk (14) includes a rotating ring (141), clamping pieces (142), and fasteners; the rotating ring (141) includes multiple arc-shaped splicing sections (1411), the teeth are provided on the splicing sections (1411), and the multiple splicing sections (1411) are spliced ​​together in sequence to form the annular rotating ring (141); there are two clamping pieces (142), and the two clamping pieces (142) coaxially clamp the rotating ring (141), and the fasteners simultaneously fasten the two clamping pieces (142) and the splicing sections (1411).

4. A high-speed hanging line for garment production according to claim 1, characterized in that: The blocking component (13) includes Support (131) is installed on the branch frame (3); The blocking seat (132) is rotatably connected to the support (131) and has a pressure-receiving part (18) for being pushed by the pushing assembly (15). The blocking seat (132) rotates to realize the switching of the blocking assembly (13) between the blocking state and the releasing state. The reset member (133) is connected between the support (131) and the blocking seat (132) to provide the blocking seat (132) with an elastic force to maintain the blocking state; When the pushing component (15) passes the blocking seat (132), the pushing component (15) pushes the pressure part (18) against the elastic force of the reset member (133) to drive the blocking seat (132) to rotate, so that the blocking seat (132) rotates from the blocking state to the releasing state.

5. A high-speed hanging line for garment production according to claim 4, characterized in that: The actuation component (15) includes Mounting base (151), mounted on the rotating disk (14), having a pushing part (19); and A boss (152) is installed on the side of the rotating disk (14) facing the pressure part (18) and extends circumferentially along the rotating disk (14); During the process of the pushing component (15) passing through the blocking seat (132), the boss (152) first abuts against and pushes the pressure part (18), causing the blocking seat (132) to turn to the release state, and then the pushing part (19) pushes the clothes hanger (6) through the moving space.

6. A high-speed hanging line for garment production according to claim 5, characterized in that: The actuation component (15) also includes Anti-impact seat (153), hinged to the mounting base (151); and An elastic element is connected between the anti-impact seat (153) and the mounting seat (151), so that the end of the anti-impact seat (153) away from its own hinge point forms a buckle cavity (20) for enclosing the rod of the hanger (6) between the push part (19). When the mounting base (151) passes the hanger (6), the hanger (6) rod needs to resist the elastic force of the elastic element to push the anti-impact seat (153) to rotate closer to the mounting base (151) and then separate from the anti-impact seat (153) and enter the buckle cavity (20).

7. A high-speed hanging line for garment production according to claim 5, characterized in that: The pressure-bearing part (18) is rotatably connected to a roller (21) for the boss (152) to abut. When the boss (152) passes the pressure-bearing part (18), it drives the roller (21) to rotate.

8. A high-speed hanging line for garment production according to claim 1, characterized in that: When the exit swing head (12) is in the overlapping state, both the exit swing head (12) and the exit section (8) are in an arc shape coaxial with the rotating disk (14).

9. A high-speed hanging line for garment production according to claim 1, characterized in that: The station entry swing head (11) includes a main line cantilever (111) and a branch line cantilever (112), and the drive unit (10) controls the main line cantilever (111) and the branch line cantilever (112) simultaneously. When the station entry swing head (11) is in the first state, the main line cantilever (111) is connected between the main line rails (2) on both sides of the break (9), and the branch line cantilever (112) is housed under the main line cantilever (111). At the same time, the branch line cantilever (112) and the station entry section (7) form a clearance channel (22) for the clothes rack (6) to pass through. When the station entry swing head (11) is in the second state, the main line cantilever (111) leaves the break (9), and the branch line cantilever (112) is connected between the main line rail (2) and the branch line rail (4).

10. A high-speed hanging line for garment production according to claim 9, characterized in that: The main frame (1) is connected to a base frame (23) opposite to the break (9). The base frame (23) has a first connector (24) for adjusting the vertical height of the main cantilever (111) and a second connector (25) for adjusting the branch cantilever (112).