Clothing sorting structure

By using RFID chip detection and automated material sorting components in the hanging system, the problem of disordered order of tops and trousers was solved, automated sorting was achieved, and production efficiency was improved.

CN223547147UActive Publication Date: 2025-11-14HANGZHOU MADE INTELLIGENT TECH
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Patent Information

Application Number
CN202423256419.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-14
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

In the hanging system, the order of the shirts and pants on the transport track is disordered, requiring manual adjustment later, which wastes time and affects production efficiency.

Method used

It employs components such as mounting brackets, feeding components, connecting rods, discharging rods, storage rods, and controllers, and uses RFID chip detection and automated material sorting components to achieve automated screening and sorting of tops and pants.

Benefits of technology

It has enabled automated screening of shirts and pants, improved production efficiency, reduced manual adjustment time, and ensured the correct order.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a clothing sorting structure, and relates to the technical field of clothing sorting structures, the clothing sorting structure comprises a mounting rack, the mounting rack is connected with a feeding assembly, a connecting rod, a discharging rod, a storage rod and a controller, the feeding assembly is used for moving a clothes hanger to the connecting rod, the connecting rod is connected with a first detector, the connecting rod is arranged in an inclined manner, and the controller is connected with the discharging rod. The feeding end of the connecting rod is higher than the discharging end of the connecting rod, the discharging end of the connecting rod is connected with a material distributing assembly, the material distributing assembly is used for moving clothes hangers to the discharging rod or the material storage rod, the material storage rod is connected with a lifting assembly, and the lifting assembly is used for lifting the clothes hangers. The lifting assembly is used for moving the clothes hangers from the storage rod to the feeding end of the connecting rod, and the first detector, the distributing assembly and the lifting assembly are all electrically connected with the controller. Automatic screening is adopted, and the sequence of the upper garment and the trousers is convenient to adjust.
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Description

Technical Field

[0001] This application relates to the technical field of clothing sorting structures, and in particular to a clothing sorting structure. Background Technology

[0002] In practical applications of hanging systems, to improve the production efficiency of hanging production lines, sometimes a single line will produce a complete set of clothing simultaneously. A set of clothing includes a top and pants, which are hung separately on hangers, each equipped with an RFID chip. For easy pairing, the tops and pants are placed adjacent to each other. However, because the tops and pants are produced in two different processes, their arrival times on the transport track differ, resulting in a disordered order on the track. This necessitates manual sorting and adjustment later, wasting time and requiring improvement. Utility Model Content

[0003] The purpose of this application is to provide a clothing sorting structure to facilitate the adjustment of the order of tops and trousers.

[0004] The garment sorting structure provided in this application adopts the following technical solution:

[0005] The device includes a mounting frame, which is connected to a feeding assembly, a connecting rod, a discharging rod, a storage rod, and a controller. The feeding assembly moves the hanger to the connecting rod, which is connected to a first detector. The connecting rod is inclined, with its feeding end higher than its discharging end. The discharging end of the connecting rod is connected to a distributing assembly, which moves the hanger to either the discharging rod or the storage rod. The storage rod is connected to a lifting assembly, which moves the hanger from the storage rod to the feeding end of the connecting rod. The first detector, the distributing assembly, and the lifting assembly are all electrically connected to the controller.

[0006] By adopting the above technical solution, the hanger moves to the connecting rod via the feeding component. Under the influence of gravity, the hanger moves along the length of the connecting rod. During this movement, the hanger passes through a first detector, which detects the RFID chip on the hanger to identify whether it is a top or pants on it. The first detector outputs a signal to the controller, which receives the signal and outputs a signal to the dispensing component. The dispensing component then moves the hanger to the discharge rod or storage rod. When both the discharge rod and the connecting rod are tops, the dispensing component moves the tops on the connecting rod to the storage rod. When pants move to the connecting rod, the dispensing component moves the pants to the discharge rod. Subsequently, the lifting component moves the tops on the storage rod to the feeding end of the connecting rod, where the dispensing component moves the tops to the discharge rod, thus achieving sequential movement of tops and pants to the discharge rod. Automated sorting facilitates adjusting the order of tops and pants.

[0007] Optionally, the material distribution assembly includes a material distribution rod rotatably connected to the connecting rod and a first driving member for driving the material distribution rod to rotate. The first driving member is connected to the connecting rod. Both the discharge rod and the storage rod can abut against the material distribution rod. The inlet end of the discharge rod and the inlet end of the storage rod are both lower than the outlet end of the connecting rod.

[0008] By adopting the above technical solution, the first detector outputs a signal to the controller, the controller receives the signal and outputs a signal to the first driving component, the first driving component drives the material separating rod to rotate, so that the material separating rod abuts against the discharge rod or storage rod. The clothes hanger on the material separating rod moves to abut against the discharge rod or storage rod under the influence of gravity, thereby completing the separation of tops and pants.

[0009] Optionally, the dispensing rod is provided with a positioning block, and the discharging rod is provided with a positioning groove for cooperating with the positioning block. When the positioning block is engaged in the positioning groove, the tilt angle of the dispensing rod is the same as the tilt angle of the discharging rod.

[0010] By adopting the above technical solution, during the rotation of the material distribution rod, the positioning block engages with the positioning groove. The inner wall of the positioning groove restricts the rotation of the positioning block, thereby restricting the rotation of the material distribution rod and ensuring that the material distribution rod rotates precisely to the corresponding position. The tilt angle of the material distribution rod is the same as the tilt angle of the discharge rod, improving the stability of the hanger sliding from the material distribution rod to the discharge rod.

[0011] Optionally, the mounting bracket is connected to a first sequential feeding assembly, which corresponds to the connecting rod and is located between the first detector and the dispensing assembly.

[0012] By adopting the above technical solution, when the hanger passes the first detector, the first sequential feeding assembly restricts the movement of the garment and provides time for the rotation of the distribution bar. The first sequential feeding assembly ensures that the hangers are fed sequentially, preventing other hangers from affecting the movement of the hanger when it passes the distribution bar, and facilitating the movement of the hanger to the discharge bar or storage bar.

[0013] Optionally, the first sequential feeding assembly includes a connecting shaft connected to the mounting frame, a sequential feeding plate rotatably connected to the connecting shaft, and a second driving member for driving the sequential feeding plate to rotate. The second driving member is connected to the mounting frame. The sequential feeding plate is provided with an abutting end and a blocking end. The connecting shaft is located between the abutting end and the blocking end. A receiving groove is formed between the abutting end and the blocking end. The second driving member is electrically connected to the controller.

[0014] By employing the above technical solution, several hangers slide along the connecting rod until the hanger closest to the sequential feed plate abuts against the blocking end, i.e., the hanger is inserted into the receiving groove. The second driving component drives the sequential feed plate to rotate around the axis of the connecting shaft, causing the receiving groove to face the distributing rod. During the rotation of the sequential feed plate, the abutting end abuts against the second hanger closest to the sequential feed plate, separating the second hanger closest to the sequential feed plate from the hangers located in the receiving groove. The blocking end separates from the hangers located in the receiving groove, and the hangers located in the receiving groove move towards the distributing rod under the influence of gravity, thereby realizing the sequential falling of the hangers.

[0015] Optionally, the mounting frame is connected to a lifting rod, one end of which is connected to the discharge end of the storage rod, and the other end is connected to the feed end of the connecting rod. The storage rod is inclined, with the feed end of the storage rod higher than the discharge end. The mounting frame is connected to a second detector corresponding to the storage rod, and a second sequential feeding assembly is connected to the mounting frame. The second sequential feeding assembly is located between the second detector and the lifting rod. Both the second detector and the second sequential feeding assembly are electrically connected to the controller.

[0016] By adopting the above technical solution, after the hanger moves to the storage rod, it passes through the second detector and comes into contact with the second sequential feeding component. The second detector detects the RFID chip on the hanger. When a shirt or trousers is needed on the storage rod, the second sequential feeding component moves the hanger to the lifting component. The second sequential feeding component is used to prevent other hangers from interfering with the operation of the lifting component. The lifting component moves the hanger on the storage rod to the connecting rod, where it is screened again by the first detector and the separating rod, facilitating the adjustment of the order of shirts and trousers.

[0017] Optionally, the lifting assembly includes a lifting plate slidably connected to the mounting frame and a driving structure for driving the lifting plate to slide towards or away from the storage rod. The driving structure is connected to the mounting frame. The lifting plate is inclined. When the lifting plate lifts the clothes hanger, the end of the lifting plate away from the lifting rod is higher than the end of the lifting plate near the lifting rod.

[0018] By adopting the above technical solution, when the hanger moves to the feeding end of the lifting rod, the drive structure drives the lifting plate to slide towards the connecting rod. During the movement, the lifting plate abuts against the hanger and drives the hanger to slide along the lifting rod. During the sliding process, the hanger abuts against the lifting rod, and the lifting rod guides and limits the sliding of the hanger, improving the stability of the hanger's sliding. When the hanger separates from the lifting rod, the hanger moves along the lifting plate to the connecting rod under the influence of gravity, thus realizing the movement of the hanger from the storage rod to the connecting rod.

[0019] Optionally, the drive structure includes a conveyor belt, two rotating disks rotatably connected to the mounting frame, and a third drive member for driving one of the rotating disks to rotate. The conveyor belt is sleeved on the two rotating disks, the lifting plate is connected to the conveyor belt, the third drive member is connected to the mounting frame, and the third drive member is electrically connected to the controller.

[0020] By adopting the above technical solution, the third driving component drives one of the rotating disks to rotate, which in turn drives the conveyor belt and the other rotating disk to rotate. The lifting plate moves with the rotation of the conveyor belt, thereby enabling the lifting plate to slide towards or away from the connecting plate.

[0021] Optionally, the rotating disk is provided with a rotating groove for rotating in conjunction with the conveyor belt.

[0022] By adopting the above technical solution, when the conveyor belt rotates, the rotational cooperation between the conveyor belt and the rotating groove plays a guiding and limiting role in the rotation of the conveyor belt, thereby improving the stability of the conveyor belt rotation, that is, improving the stability of the lifting plate movement.

[0023] Optionally, the feeding assembly includes a feeding rod connected to the mounting frame, a transfer rod rotatably connected to the feeding rod, and a fourth driving member for driving the transfer rod to rotate. The fourth driving member is connected to the mounting frame. The end of the transfer rod away from the feeding rod can abut against the connecting rod. The feeding rod is inclined, and the feeding end of the feeding rod is higher than the discharging end of the feeding rod. The fourth driving member is electrically connected to the controller.

[0024] By adopting the above technical solution, the fourth driving component drives the transfer rod to rotate, so that one end of the transfer rod abuts against the connecting rod, facilitating the movement of the hanger on the feed rod along the transfer rod to the connecting rod. When the lifting assembly moves the garment on the storage rod to the connecting rod, the fourth driving component drives the transfer rod to rotate in the opposite direction, causing the transfer rod to separate from the connecting rod and preventing the transfer rod from interfering with the sliding of the hanger along the connecting rod.

[0025] In summary, this application includes at least one of the following beneficial technical effects:

[0026] 1. When both the discharge rod and the connecting rod are filled with tops, the material separating component moves the tops from the connecting rod to the storage rod. When the pants move to the connecting rod, the material separating component moves the pants to the discharge rod. Subsequently, the lifting component moves the tops from the storage rod to the feed end of the connecting rod. The tops are then moved to the connecting rod by the material separating component, thus ensuring that tops are adjacent to pants, and pants are adjacent to tops. Automated sorting facilitates adjusting the order of tops and pants.

[0027] 2. The first detector outputs a signal to the controller. The controller receives the signal and outputs a signal to the first drive unit. The first drive unit drives the material distribution rod to rotate, causing the material distribution rod to come into contact with the discharge rod or storage rod. The hangers on the material distribution rod move under the influence of gravity to come into contact with the discharge rod or storage rod, thereby completing the material distribution of shirts and pants. Attached Figure Description

[0028] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application.

[0029] Figure 2 This is one of the omitted figures in the embodiments of this application, showing the first sequential feeding component.

[0030] Figure 3 yes Figure 2 An enlarged view of region A.

[0031] Figure 4 This is the second omitted figure of the embodiments of this application, showing the second sequential feeding component.

[0032] Figure 5 This is a partial structural schematic diagram of an embodiment of this application.

[0033] Figure 6 yes Figure 5 A magnified view of region B.

[0034] Explanation of reference numerals in the attached drawings: 1. Mounting frame; 11. First detector; 12. Third sequential feeding assembly; 13. Second detector; 14. Second sequential feeding assembly; 2. Connecting rod; 3. Discharge rod; 31. Positioning groove; 4. Storage rod; 5. Lifting rod; 6. Distributing assembly; 61. Distributing rod; 611. Positioning block; 62. First driving component; 7. First sequential feeding assembly; 71. Connecting shaft; 72. Sequential feeding plate; 721. Abutment end; 722. Blocking end; 723. Receiving groove; 73. Second driving component; 8. Feeding assembly; 81. Feeding rod; 82. Transfer rod; 9. Lifting assembly; 91. Lifting plate; 92. Drive structure; 921. Conveyor belt; 922. Rotating disk; 9221. Rotating groove; 923. Third driving component. Detailed Implementation

[0035] The following is in conjunction with the appendix Figure 1 - Appendix Figure 6 This application will be described in further detail.

[0036] This application discloses a clothing sorting structure.

[0037] like Figure 1As shown, the system includes a mounting frame 1, which is fixedly connected to a connecting rod 2, a discharge rod 3, a storage rod 4, a lifting rod 5, and a controller (not shown in the attached diagram). The connecting rod 2, the storage rod 4, and the lifting rod 5 form a ring. All the connecting rods are inclined, with the feed end of the connecting rod 2 higher than its discharge end, the feed end of the discharge rod 3 higher than its discharge end, the feed end of the storage rod 4 higher than its discharge end, and the discharge end of the lifting rod 5 higher than its feed end. The feed end of the connecting rod 2 is fixedly connected to the discharge end of the lifting rod 5, and the discharge end of the storage rod 4 is fixedly connected to the feed end of the lifting rod 5.

[0038] Combination Figure 2 and Figure 3 As shown, the feeding ends of the discharge rod 3 and the storage rod 4 are both lower than the discharge end of the connecting rod 2. The feeding end of the discharge rod 3 is located between the feeding end of the storage rod 4 and the discharge end of the connecting rod 2. The discharge end of the connecting rod 2 is connected to a material distribution assembly 6. The material distribution assembly 6 includes a material distribution rod 61 rotatably connected to the connecting rod 2 and a first driving member 62 for driving the material distribution rod 61 to rotate. The first driving member 62 is rotatably connected to the connecting rod 2 and is a cylinder. The signal output terminal of the controller is connected to the signal input terminal of the first driving member 62, and the output terminal of the first driving member 62 is rotatably connected to the material distribution rod 61. A positioning block 611 is provided at the end of the material distribution rod 61 away from the connecting rod 2. The positioning block 611 is integrally formed with the material distribution rod 61. The discharge rod 3 has a positioning groove 31 for cooperating with the positioning block 611. When the positioning block 611 is inserted into the positioning groove 31, the tilt angle of the material distribution rod 61 is the same as the tilt angle of the discharge rod 3. The mounting bracket 1 is connected to a first detector 11 and a first sequential feeding assembly 7. The first detector 11 can identify the RFID chip on the hanger. Both the first detector 11 and the first sequential feeding assembly 7 correspond to the connecting rod 2. The first sequential feeding assembly 7 is located between the first detector 11 and the dispensing rod 61. The first detector 11 is electrically connected to the controller.

[0039] Combination Figure 2 and Figure 3As shown, the first sequential feeding assembly 7 includes a connecting shaft 71 fixedly connected to the mounting frame 1, a sequential feeding plate 72 rotatably connected to the connecting shaft 71, and a second driving member 73 for driving the sequential feeding plate 72 to rotate. The second driving member 73 is a cylinder. The signal output terminal of the controller is connected to the signal input terminal of the second driving member 73. The second driving member 73 is rotatably connected to the mounting frame 1, and the output terminal of the second driving member 73 is rotatably connected to the sequential feeding plate 72. The sequential feeding plate 72 is provided with an abutment end 721 and a blocking end 722, both of which are integrally formed with the sequential feeding plate 72. The connecting shaft 71 is located between the abutment end 721 and the blocking end 722. The abutment end 721 is located between the first detector 11 and the blocking end 722. A receiving groove 723 is formed between the abutment end 721 and the blocking end 722.

[0040] Combination Figure 2 and Figure 3 As shown, the mounting frame 1 is connected to a feeding assembly 8. The feeding assembly 8 includes a feeding rod 81 fixedly connected to the mounting frame 1, a transfer rod 82 rotatably connected to one end of the feeding rod 81, and a fourth driving component (not shown in the attached figure) for driving the transfer rod 82 to rotate. The fourth driving component is a cylinder. The signal output terminal of the controller is connected to the signal input terminal of the fourth driving component. The fourth driving component is rotatably connected to the feeding rod 81, and the output terminal of the fourth driving component is rotatably connected to the transfer rod 82. The feeding rod 81 is inclined, with the feeding end of the feeding rod 81 higher than the discharging end of the feeding rod 81. The mounting frame 1 is connected to a third sequential feeding assembly 12, which corresponds to the feeding rod 81 and is located between the feeding end of the feeding rod 81 and the transfer rod 82. The structure of the third sequential feeding assembly 12 is the same as that of the first sequential feeding assembly 7, except that the installation position is different, and will not be described again.

[0041] Combination Figure 4 , Figure 5 and Figure 6As shown, the mounting frame 1 is connected to a second detector 13, a second sequential feeding assembly 14, and a lifting assembly 9. Both the second detector 13 and the second sequential feeding assembly 14 correspond to the storage rod 4. The structure of the second sequential feeding assembly 14 is the same as that of the first sequential feeding assembly 7, only the installation position is different, and will not be described again. The second sequential feeding assembly 14 is located between the second detector 13 and the lifting assembly 9, and the clothes hanger passes sequentially through the second detector 13, the second sequential feeding assembly 14, and the lifting assembly 9. The lifting assembly 9 includes two lifting plates 91 slidably connected to the mounting frame 1 and a drive structure 92 for driving the lifting plates 91 to slide towards or away from the storage rod 4. The drive structure 92 includes a conveyor belt 921, two rotating disks 922 rotatably connected to the mounting frame 1, and a third drive member 923 for driving one of the rotating disks 922 to rotate. The third drive member 923 is a motor and is fixedly connected to the mounting frame 1. The signal output terminal of the controller is connected to the signal input terminal of the third drive member 923. The side of one of the rotating disks 922 closest to the third drive member 923 is fixedly connected to the output terminal of the third drive member 923. The conveyor belt 921 is sleeved on the two rotating disks 922. The outer circumferential surface of the two rotating disks 922 is provided with a rotating groove 9221 for rotating with the conveyor belt 921. Both lifting plates 91 are fixedly connected to the conveyor belt 921. The lifting plates 91 are set at an angle. When the lifting plates 91 lift the clothes hanger, the end of the lifting plate 91 away from the lifting rod 5 is higher than the end of the lifting plate 91 close to the lifting rod 5.

[0042] The implementation principle of a garment sorting structure in this application embodiment is as follows: A top and trousers are placed on a hanger. After processing, the top and trousers move to the feeding rod 81. The third sequential feeding assembly 12 restricts the movement of the hanger. A fourth driving component drives the transfer rod 82 to rotate, causing the end of the transfer rod 82 away from the feeding rod 81 to abut against the connecting rod 2. The third sequential feeding assembly 12 causes the hangers to be fed sequentially. The hangers move to the connecting rod 2 via the transfer rod 82. Under the influence of gravity, the hangers move along the length of the connecting rod 2. During the movement, the hangers pass the first detector 11 and abut against the blocking end 722. The first detector 11 identifies whether the hanger contains a top or trousers. The first detector 11 outputs a signal to the controller. The controller receives the signal and outputs a signal to the first driving component 62. The first driving component 62 drives the distributing rod 61 to rotate, causing the end of the distributing rod 61 away from the connecting rod 2 to abut against the discharge rod 3 or the storage rod 4. The second driving component 73 drives the sequential feeding plate 72 to rotate around the axis of the connecting shaft 71, causing the receiving groove 723 to face the distributing rod 61. During the rotation, the abutting end 721 of the sequential feeding plate 72 abuts against the second hanger near the sequential feeding plate 72, separating the second hanger near the sequential feeding plate 72 from the hanger located in the receiving groove 723. The blocking end 722 separates from the hanger located in the receiving groove 723, and the hanger located in the receiving groove 723 moves towards the distributing rod 61 under the influence of gravity, thereby realizing the sequential falling of the garments.

[0043] When a shirt is hanging on the hanger on the discharge rod 3, the trousers need to be moved to the discharge rod 3. If trousers are hanging on the hanger on the connecting rod 2, the separating rod 61 abuts against the discharge rod 3, causing the hanger to move to the discharge rod 3. If a shirt is hanging on the hanger on the connecting rod 2, the separating rod 61 abuts against the storage rod 4, causing the hanger to move to the storage rod 4. Subsequently, when a pair of trousers moves to the discharge rod 3, the lifting assembly 9 moves the shirt on the storage rod 4 to the connecting rod 2, causing the shirt to move to the discharge rod 3. Automated sorting facilitates adjusting the order of shirts and trousers.

[0044] 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 garment sorting structure, characterized in that: The device includes a mounting frame (1), which is connected to a feeding assembly (8), a connecting rod (2), a discharging rod (3), a storage rod (4), and a controller. The feeding assembly (8) is used to move the hanger to the connecting rod (2). The connecting rod (2) is connected to a first detector (11). The connecting rod (2) is inclined, with the feeding end of the connecting rod (2) higher than the discharging end. The discharging end of the connecting rod (2) is connected to a distributing assembly (6), which is used to move the hanger to the discharging rod (3) or the storage rod (4). The storage rod (4) is connected to a lifting assembly (9), which is used to move the hanger from the storage rod (4) to the feeding end of the connecting rod (2). The first detector (11), the distributing assembly (6), and the lifting assembly (9) are all electrically connected to the controller.

2. The garment sorting structure according to claim 1, characterized in that: The material distribution assembly (6) includes a material distribution rod (61) rotatably connected to the connecting rod (2) and a first driving member (62) for driving the material distribution rod (61) to rotate. The first driving member (62) is connected to the connecting rod (2). The discharge rod (3) and the storage rod (4) can both abut against the material distribution rod (61). The feed end of the discharge rod (3) and the feed end of the storage rod (4) are both lower than the discharge end of the connecting rod (2).

3. The garment sorting structure according to claim 2, characterized in that: The material distribution rod (61) is provided with a positioning block (611), and the material discharge rod (3) is provided with a positioning groove (31) for cooperating with the positioning block (611). When the positioning block (611) is inserted into the positioning groove (31), the tilt angle of the material distribution rod (61) is the same as the tilt angle of the material discharge rod (3).

4. The garment sorting structure according to claim 1, characterized in that: The mounting bracket (1) is connected to a first sequential feeding assembly (7), which corresponds to the connecting rod (2). The first sequential feeding assembly (7) is located between the first detector (11) and the dispensing assembly (6).

5. The garment sorting structure according to claim 4, characterized in that: The first sequential feeding assembly (7) includes a connecting shaft (71) connected to the mounting frame (1), a sequential feeding plate (72) rotatably connected to the connecting shaft (71), and a second driving member (73) for driving the sequential feeding plate (72) to rotate. The second driving member (73) is connected to the mounting frame (1). The sequential feeding plate (72) is provided with an abutting end (721) and a blocking end (722). The connecting shaft (71) is located between the abutting end (721) and the blocking end (722). A receiving groove (723) is formed between the abutting end (721) and the blocking end (722). The second driving member (73) is electrically connected to the controller.

6. The garment sorting structure according to claim 1, characterized in that: The mounting frame (1) is connected to a lifting rod (5). One end of the lifting rod (5) is connected to the discharge end of the storage rod (4), and the other end is connected to the feed end of the connecting rod (2). The storage rod (4) is inclined, and the feed end of the storage rod (4) is higher than the discharge end of the storage rod (4). The mounting frame (1) is connected to a second detector (13) corresponding to the storage rod (4), and the mounting frame (1) is connected to a second sequential feeding assembly (14). The second sequential feeding assembly (14) is located between the second detector (13) and the lifting rod (5). The second detector (13) and the second sequential feeding assembly (14) are both electrically connected to the controller.

7. The garment sorting structure according to claim 6, characterized in that: The lifting assembly (9) includes a lifting plate (91) slidably connected to the mounting frame (1) and a drive structure (92) for driving the lifting plate (91) to slide toward or away from the storage rod (4). The drive structure (92) is connected to the mounting frame (1). The lifting plate (91) is inclined. When the lifting plate (91) lifts the clothes hanger, the end of the lifting plate (91) away from the lifting rod (5) is higher than the end of the lifting plate (91) near the lifting rod (5).

8. The garment sorting structure according to claim 7, characterized in that: The drive structure (92) includes a conveyor belt (921), two rotating disks (922) rotatably connected to the mounting frame (1), and a third drive member (923) for driving one of the rotating disks (922) to rotate. The conveyor belt (921) is sleeved on the two rotating disks (922). The lifting plate (91) is connected to the conveyor belt (921). The third drive member (923) is connected to the mounting frame (1) and is electrically connected to the controller.

9. The garment sorting structure according to claim 8, characterized in that: The rotating disk (922) is provided with a rotating groove (9221) for rotating with the conveyor belt (921).

10. The garment sorting structure according to claim 1, characterized in that: The feeding assembly (8) includes a feeding rod (81) connected to the mounting frame (1), a transfer rod (82) rotatably connected to the feeding rod (81), and a fourth driving member for driving the transfer rod (82) to rotate. The fourth driving member is connected to the mounting frame (1). The end of the transfer rod (82) away from the feeding rod (81) can abut against the connecting rod (2). The feeding rod (81) is inclined. The feeding end of the feeding rod (81) is higher than the discharging end of the feeding rod (81). The fourth driving member is electrically connected to the controller.