Garment detection suspension device
By designing a garment inspection suspension device, a swing shaft, a rotary motor, and a clutch-type coupling are used to enable automatic or manual rotation display of garments at multiple angles, solving the problem of insufficient flexibility of traditional suspension brackets and improving inspection efficiency and accuracy.
Patent Information
- Application Number
- CN202520130455.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2035-01-20
AI Technical Summary
Traditional hanging brackets lack flexibility, making the garment inspection process complex and increasing the risk of defects, making it difficult to achieve comprehensive inspection.
Design a garment inspection hanging device that uses a swing shaft, a rotary motor and a clutch coupling. The garment hanger is fixed by a hook structure, the rotary motor controls the rotation of the swing shaft, and the clutch coupling enables multi-angle display and manual adjustment of the garment.
It enables automatic or manual rotation display of clothing from multiple angles, simplifies the inspection process, reduces the risk of introducing defects, and improves inspection efficiency and accuracy.
Smart Images

Figure CN223585670U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of clothes hanging device, especially a garment detection hanging device. BACKGROUND
[0002] In the garment industry, ensuring the quality of finished garments is a crucial step. Traditional quality detection processes involve hanging processed garments on specific supports so that operators can meticulously check the garments for defects such as incomplete stitching, damaged zippers, etc. This process is crucial to ensure that only flawless garments enter the market.
[0003] However, the hanging supports in the prior art are often quite simple in design, lacking sufficient flexibility to support efficient quality detection work. This structural limitation makes it difficult for operators to smoothly turn the garments for all-around detection during the inspection process. For example, when different angles of observation of the garments are required, operators usually have to take the garments off the supports, manually turn them over, and then re-hang them, which not only increases the complexity and time cost of the work, but also may introduce new defect risks due to the additional handling steps.
[0004] In view of this, the present inventors have specially designed a garment detection hanging device, which has thus been developed. SUMMARY
[0005] To solve the above problems, the technical solution of the utility model is as follows:
[0006] A garment detection hanging device, comprising a base, a support rod vertically arranged on the base, a workbox arranged at the top of the support rod, and a detection lamp arranged on one side of the workbox for auxiliary lighting, further comprising:
[0007] A swing shaft rotatably connected to the bottom of the workbox;
[0008] A hook structure arranged at the bottom of the swing shaft, having a hook area for embedding a clothes hanger hook, for limiting the clothes hanger and the garment in a fixed posture;
[0009] A rotary motor drivingly connected to the swing shaft for controlling the rotation of the swing shaft;
[0010] A clutch type coupling arranged between the rotary motor and the swing shaft for controlling the clutching state of the transmission relationship between the rotary motor and the swing shaft.
[0011] Preferably, the workbox is provided with a hollow mounting cavity, the bottom of the mounting cavity is provided with a mounting hole, the mounting hole is provided with a bearing, the swing shaft penetrates into the inner cavity of the bearing on the inner side of the bearing along the lower end of the mounting hole, and the end of the swing shaft continues to penetrate into the mounting cavity and is fixed with a driven gear.
[0012] Preferably, the rotating motor is fixed to the bottom of the installation cavity, and the output shaft of the rotating motor is located at one side of the installation hole, the output shaft of the rotating motor is drivingly connected to the input end of the clutch type coupling, and the output end of the clutch type coupling is drivingly connected to the driving gear, and the driving gear is meshingly connected with the driven gear.
[0013] Preferably, a guide piece is arranged on the lower end face of the working box and located at the position of the installation hole, and a guide hole is arranged in the middle of the guide piece and penetrates through the guide piece, the guide hole is coaxial with the installation hole and gap-fittingly matches with the swing shaft.
[0014] Preferably, the hook structure comprises a disc-shaped bottom disc, a connecting plate vertically arranged at the lower end of the bottom disc, and a hook portion protruding from one side of the connecting plate, and a hook region for embedding the clothes hanger hook is formed between the upper end of the hook portion and the lower end face of the bottom disc.
[0015] Preferably, a stop piece is rotationally connected to the side of the hook portion away from the connecting plate and located at a position close to the upper end of the hook portion, and when the stop piece rotates to the side close to the bottom face of the bottom disc, the stop piece is used for stopping the hook of the clothes hanger from separating from the hook region.
[0016] Preferably, a protruding actuating portion is arranged on the side of the stop piece away from the hook portion and located on the side away from the rotation axis of the stop piece, and the actuating portion is used for being operated by the hand of a user.
[0017] Preferably, the cross section of the hook portion is in the shape of a waist as a whole, and a hook groove for embedding the clothes hanger hook is formed by recessing inwardly around the circumferential side of the hook portion.
[0018] Preferably, a disc-shaped fixed bottom piece is fixed to the bottom of the swing shaft, and the fixed bottom piece is locked and fixed to the center position of the upper end face of the bottom disc.
[0019] Preferably, a controller is further arranged, the controller is electrically connected to the rotating motor and the clutch type coupling through a connecting line, and the controller is used for controlling the clutching state of the clutch type coupling and the forward and reverse rotation of the rotating motor.
[0020] The beneficial effects of the utility model are as follows:
[0021] The hook structure is used for limiting the clothes hanger and the garment in a fixed posture, the rotating motor is used for controlling the rotation of the swing shaft to realize the rotation control of the clothes hanger and the garment, so that the clothes hanger and the garment can be conveniently rotated and displayed at various angles, and workers can conveniently detect and check; meanwhile, the clutch type coupling is used for controlling the clutching state of the transmission relationship between the rotating motor and the swing shaft, so as to conveniently switch the manual adjustment mode, and after the angle adjustment is completed, the swing shaft and the motor can be reconnected, the swing shaft is locked by using the self-locking of the motor, and thus the fixing of the garment checking angle is realized. BRIEF DESCRIPTION OF DRAWINGS
[0022] The drawings described herein are used to provide further understanding of the present application, and form a part of the present application. The illustrative embodiments of the present application and their description serve to explain the present application. They do not constitute an improper limitation on the present application.
[0023] Wherein:
[0024] Figure 1 is a schematic diagram of the overall structure of the embodiment one of the present application;
[0025] Figure 2 is a schematic diagram of the partial cross-sectional structure of the working box in the embodiment one of the present application;
[0026] Figure 3 is a schematic diagram of the partial three-dimensional structure of the hook structure in the embodiment one of the present application;
[0027] Figure 4 is a schematic diagram of the partial cross-sectional structure of the hook structure in the embodiment one of the present application;
[0028] Figure 5 is a schematic diagram of the state of the clothes hanger hanging process in the embodiment one of the present application;
[0029] Figure 6 is a schematic diagram of the connection principle block diagram in the embodiment one of the present application;
[0030] Figure 7 is a schematic diagram of the overall structure of the embodiment two of the present application.
[0031] Label explanation:
[0032] 10, base; 20, support rod; 30, working box; 31, mounting cavity; 32, mounting hole; 33, bearing; 40, detection lamp; 50, swing shaft; 51, driven gear; 52, fixed bottom sheet; 60, hook structure; 61, base plate; 62, connecting plate; 63, hook part; 631, hook groove; 64, hook area; 65, stop sheet; 651, rotation center; 652, pushing part; 70, rotary motor; 71, output shaft; 80, clutch type shaft coupling; 81, connecting shaft; 82, driving gear; 90, guide; 91, guide hole; 92, connecting edge; 100, controller; 110, connecting part. DETAILED DESCRIPTION
[0033] In order to make the technical problems, technical solutions and beneficial effects of the present application more clear, the present application will be further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application, and do not limit the present application. EMBODIMENT
[0034] Please refer to Figures 1 to 6 , it is a kind of clothing detection hanging device as the best embodiment of the utility model, including base 10, vertical support rod 20 set on base 10, work tank 30 set on the top of support rod 20 and detection lamp 40 set on one side of work tank 30 and used for auxiliary lighting, still include:
[0035] Swing shaft 50, long rod shape, rotationally connected to the bottom of work tank 30;
[0036] Hook structure 60, set on the bottom of swing shaft 50, have a hook area 64 with hanger hook fitting, for limiting hanger and clothing in fixed posture;
[0037] Rotary motor 70, transmission swing shaft 50, for controlling swing shaft 50 rotation;
[0038] Clutch type coupling 80, set between rotary motor 70 and swing shaft 50, for controlling the clutch state of transmission relationship between rotary motor 70 and swing shaft 50.
[0039] In the embodiment, detection lamp 40 is connected on the top of work tank 30 by a metal shaped hose, and two detection lamps 40 are symmetrically arranged on the two sides of work tank 30, also forming two symmetric detection stations on the two sides of support rod 20, detection lamp 40 can be adjusted at will, so that the clothing is better illuminated, and the worker can find the clothing defects.
[0040] Preferably, as shown in Figure 1 、 2 , work tank 30 is provided with hollow installation cavity 31, installation cavity 31 bottom is provided with mounting hole 32, mounting hole 32 is provided with bearing 33, swing shaft 50 is inserted into the inner cavity of bearing 33 inside along the lower end of mounting hole 32 and fixed, the end of swing shaft 50 continues to penetrate installation cavity 31 and is fixed with driven gear 51.
[0041] Installation cavity 31 is also used to accommodate the corresponding circuit to realize the power supply and wiring of detection lamp 40, rotary motor 70 and clutch type coupling 80.
[0042] Among them, bearing 33 is fixed on mounting hole 32, which provides stable rotary connection basis for vertical rotation of swing shaft 50, so that it can smoothly realize rotation and drive hanger and clothing to adjust angle.
[0043] Preferably, as shown in Figure 2As shown, the rotary motor 70 is fixed to the bottom of the mounting cavity 31 and its output shaft 71 is located on one side of the mounting hole 32. The output shaft 71 of the rotary motor 70 is drivingly connected to the input end of the clutch type coupling 80. The output end of the clutch type coupling 80 is drivingly connected to the driving gear 82. The driving gear 82 is meshingly connected to the driven gear 51. The driving gear 82 and the driven gear 51 constitute a gear set.
[0044] In this embodiment, the rotary motor 70 is installed upside down in the mounting cavity 31 so that its output shaft 71 faces downward. The clutch type coupling 80 is installed and fixed directly below the rotary motor 70. The output shaft 71 of the rotary motor 70 penetrates into the clutch type coupling 80. The output end of the clutch type coupling 80 is fixed with the driving gear 82 through another connecting shaft 81. The driving gear 82 is meshingly and drivingly connected to the driven gear 51 at the end of the swing shaft 50. Thus, when the clutch type coupling 80 works, the output shaft 71 of the rotary motor 70 is drivingly connected to the driving gear 82. The rotary motor 70 can drive the swing shaft 50 to rotate forward or reversely by its forward or reverse rotation. This facilitates the forward or reverse rotation of the clothes hanger and the clothes for multi-angle inspection. At the same time, when the clutch type coupling 80 removes the driving connection between the output shaft 71 and the driving gear 82, the swing shaft 50 can be manually rotated. This facilitates the manual control of the workers to adjust to the required display angle for inspection.
[0045] Due to the self-locking function of the rotary motor 70, it cannot rotate in the non-working state. Therefore, when the clutch type coupling 80 works and the swing shaft 50 is drivingly connected to the output shaft 71, the swing shaft 50 cannot rotate. This feature can realize the angle locking after manual angle adjustment, so that the clothes can be displayed at a stable angle and the angle deviation can be avoided.
[0046] Preferably, as shown in Figure 1 , 2 As shown, the lower end surface of the working box 30 and the position of the mounting hole 32 are provided with a guide 90. The middle part of the guide 90 is provided with a guide hole 91 coaxial with the mounting hole 32 and in clearance fit with the swing shaft 50.
[0047] In this embodiment, the guide 90 is a cylindrical structure. The circumferential side is provided with a connecting edge 92. The connecting edge 92 is locked and fixed between the bottom wall of the working box 30. The guide hole 91 is a cylindrical hole penetrating along the axial direction of the guide 90. The hole diameter is limited to the clearance fit of the swing shaft 50. Thus, under the limiting guidance of the guide 90, the swing shaft 50 can stably rotate along its rotation axis to avoid deviation.
[0048] In this embodiment, the extension length of the guide hole 91 in the guide 90 is 1 / 3 of the height of the mounting cavity 31.
[0049] Preferably, as shown inFigure 3 、 4 As shown in FIG. 1, the hook structure 60 comprises a disc-shaped base plate 61, a connecting plate 62 vertically arranged at the lower end of the base plate 61, and a hook portion 63 protruding from one side of the connecting plate 62, and a hooking area 64 is formed between the upper end of the hook portion 63 and the lower end surface of the base plate 61, which is suitable for the inner side of the hanger hook.
[0050] In this embodiment, the bottom of the connecting plate 62 is arc-shaped, the base plate 61, the connecting plate 62 and the hook portion 63 are integrally formed, the cross section of the hook portion 63 is in the shape of a waist, and the arc-shaped area at the upper end of the hook portion 63 is suitable for the inner side of the hanger hook, so as to form the hooking area 64 for the hanger hook to hook, and when the hook of the hanger is hooked in the hooking area 64, the side wall of the hook is in contact with the side wall of the connecting plate 62, so that the hanger is stably kept in a certain direction.
[0051] Preferably, as shown in FIG. 1, the hook portion 63 is rotatably connected with a stop piece 65 at a position close to the upper end of the hook portion 63 and away from the connecting plate 62, and the stop piece 65 is used to stop the hanger hook from being separated from the hooking area 64 when the stop piece 65 is rotated to the side close to the bottom surface of the base plate 61. Figure 3 4 As shown in FIG. 1, the hook portion 63 is rotatably connected with a stop piece 65 at a position close to the upper end of the hook portion 63 and away from the connecting plate 62, and the stop piece 65 is used to stop the hanger hook from being separated from the hooking area 64 when the stop piece 65 is rotated to the side close to the bottom surface of the base plate 61.
[0052] In this embodiment, the overall shape of the stop piece 65 is similar to that of the hook portion 63, and the center of the arc surface at the upper end of the stop piece 65 is rotatably connected with the center of the arc surface at the upper end of the hook portion 63, and when the stop piece 65 is rotated upward to the highest position around the rotation center 651, the upper end of the stop piece 65 is in contact with the lower end surface of the base plate 61, so that when the stop piece 65 is rotated to the lowest position, the hooking area 64 is opened, the hook of the hanger can be normally hooked into the hook portion 63 and in contact with the arc surface at the upper end of the hook portion 63, at this time, the stop piece 65 is rotated to the highest position to block the hooking area 64, further limiting the hook of the hanger to avoid it from being separated from the hooking area 64.
[0053] In addition, in order to enhance the limiting effect of the limiting piece, a rubber sheet or a silica gel sheet (not shown in the figure) for enhancing friction is arranged on the side of the hook portion 63, so that a damping rotation structure is formed between the limiting piece and the hook portion 63 to avoid the automatic falling of the limiting piece.
[0054] Preferably, as shown in FIG. 1, the side of the stop piece 65 away from the hook portion 63 and away from the rotation axis is provided with a protruding actuating portion 652 for the user to operate with the hand. Figure 3 4 In this embodiment, the actuating portion 652 is in the shape of an arc-shaped long strip and protrudes from the end surface of the limiting piece, so as to be contacted by the hand of the user to realize the control of the limiting piece.
[0055] In this embodiment, the actuating portion 652 is in the shape of an arc-shaped long strip and protrudes from the end surface of the limiting piece, so as to be contacted by the hand of the user to realize the control of the limiting piece.
[0056] Preferably, as shown in Figure 4 The hook portion 63 is recessed inward around its periphery to form a hook groove 631 for engaging the hanger hook, and in this embodiment, the hook groove 631 is an arc-shaped groove with an arc-shaped cross section, so that the hanger hook can be further stably connected and fixed to the hook portion 63 after being engaged.
[0057] Preferably, as shown in Figure 3 , 4 The bottom of the swing shaft 50 is fixed with a circular fixed bottom sheet 52, and the fixed bottom sheet 52 is locked and fixed to the center of the upper end surface of the base plate 61.
[0058] Preferably, as shown in Figure 1 , 6 The controller 100 is electrically connected to the rotary motor 70 and the clutch-type coupling 80 through a connecting line, and the controller 100 is used to control the clutching state of the clutch-type coupling 80 and the forward and reverse rotation of the rotary motor 70.
[0059] In this embodiment, the controller 100 extends downward along the middle part of the working box 30 to the support rod 20 through the connecting line, and the upper end of the support rod 20 is provided with a magnetic suction base 10 for magnetic suction cooperation with the controller 100. The design height of the magnetic suction base 10 is determined according to the convenience of the user to take, and two magnetic suction bases 10 are symmetrically arranged on the two sides of the support rod 20 to fix the controllers 100 on the two sides.
[0060] In addition, the controller 100 is built-in with a circuit board, and the surface of the controller 100 is provided with a clutch control button, a motor forward rotation button and a motor reverse rotation button (not shown in the figure) electrically connected with the circuit board. The circuit board is electrically connected with the rotary motor 70 and the clutch-type coupling 80. When the clutch control button is pressed once, the clutching state of the clutch-type coupling 80 is switched between connection and disconnection. When the motor forward rotation button and the motor reverse rotation button are pressed, the rotary motor 70 rotates forward or reversely, and after the motor forward rotation button and the motor reverse rotation button are released, the rotary motor 70 stops rotating. Embodiment
[0061] Please refer to Figure 7 It is a garment detection hanging device according to the second embodiment of the utility model, which is different from the first embodiment in that the base 10 is in the form of a long plate, and a plurality of support rods 20 are vertically arranged along the length direction of the base 10. The upper ends of the plurality of support rods 20 are respectively provided with a plurality of working boxes 30, and the working boxes 30 are connected through a connecting portion 110, so as to form a plurality of left-right symmetrical detection stations.
[0062] The working process and beneficial effects of the utility model are as follows:
[0063] Firstly, asFigure 5 As shown, the hanger of the clothes hanger is placed in the hanger area 64 on the upper side of the hanger part 63, and is clamped downward into the hanger groove 631 on the side of the hanger part 63, and then the stop piece 65 is rotated to the highest position by operating the knob part 652, and the hanger is disengaged. When manually adjusting the angle of the clothes, the clutch state of the clutch type coupling 80 is released by the controller 100, at which time the swing shaft 50 can be freely rotated, and the clothes are manually rotated to the desired angle by the swing shaft 50, and then the button on the controller 100 is pressed again to re-engage the clutch type coupling 80, and the rotation of the swing shaft 50 is limited by the self-locking of the rotating motor 70, thereby achieving the adjustment of the angle of the clothes; when the angle of the clothes needs to be controlled electrically, the forward and reverse rotation of the rotating motor 70 can be controlled by the controller 100.
[0064] The utility model discloses a hanger structure 60 is used to limit the clothes hanger and clothes in fixed posture, and the rotation of the swing shaft 50 is controlled by the rotating motor 70 to realize the rotation control of the clothes hanger and clothes, which can conveniently realize the rotation display of various angles and facilitate the detection of workers. At the same time, the clutch type coupling 80 controls the clutch state of the transmission relationship between the rotating motor 70 and the swing shaft 50, so as to facilitate the switching of the manual adjustment mode, and after completing the angle adjustment, the swing shaft 50 and the motor can be reconnected, and the swing shaft 50 is locked by the self-locking of the motor, thereby realizing the fixation of the detection angle of the clothes.
[0065] The utility model has been described above in conjunction with the drawings, and obviously the specific implementation of the utility model is not limited by the above-mentioned mode, as long as various non-essential improvements are made by adopting the method concept and technical scheme of the utility model, or the concept and technical scheme of the utility model are directly applied to other occasions without improvement, all of which are within the protection scope of the utility model.
Claims
1. A garment inspection hanging device, comprising: The utility model provides a clothes hanger rotating device, including base (10), vertical support rod (20) of base (10) on, work box (30) are located at the top of support rod (20) and are used for auxiliary lighting detection lamp (40) of one side of work box (30) arrangement, still include: Swing shaft (50), rotation is connected in work box (30) bottom; Hook structure (60), be located at swing shaft (50) bottom, have with clothes hanger hook embed the hook area (64) of a, for with fixed posture limit clothes hanger and ready-made clothes; Rotary motor (70), transmission connects swing shaft (50), for control swing shaft (50) rotation; Clutch type coupling (80), be located between rotary motor (70) and swing shaft (50), for control rotary motor (70) and swing shaft (50) between transmission relationship's clutch state.
2. The garment inspection hanger of claim 1, wherein, The hollow installation cavity (31) is arranged in the work box (30), the installation hole (32) is arranged in the bottom of the installation cavity (31), the bearing (33) is arranged in the installation hole (32), the swing shaft (50) is inserted into the inner cavity of the bearing (33) along the lower end of the installation hole (32), and the end of the swing shaft (50) is continuously inserted into the installation cavity (31) and fixed with the driven gear (51).
3. The garment inspection hanger of claim 2, wherein, The rotary motor (70) is fixed to the inner bottom of the installation cavity (31), and the output shaft (71) of the rotary motor (70) is located on one side of the installation hole (32). The output shaft (71) of the rotary motor (70) is connected to the input end of the clutch type coupling (80). The output end of the clutch type coupling (80) is connected to the driving gear (82). The driving gear (82) is connected to the driven gear (51).
4. The garment inspection hanger of claim 2, wherein, The guide (90) is arranged on the lower end surface of the work box (30) and located at the position of the installation hole (32). The guide hole (91) is arranged in the middle of the guide (90) and coaxial with the installation hole (32) and gap matched with the swing shaft (50).
5. The garment inspection hanger of claim 1, wherein, The hook structure (60) includes a disc-shaped bottom disc (61), a connecting plate (62) vertically arranged at the lower end of the bottom disc (61), and a hook portion (63) protruding from one side of the connecting plate (62). The upper end of the hook portion (63) and the lower end surface of the bottom disc (61) form the hook area (64) embedded with the clothes hanger hook.
6. The garment inspection hanger of claim 5, wherein, The hook portion (63) is rotatably connected to the side away from the connecting plate (62) and located near the upper end. When the stop piece (65) rotates to the side close to the bottom surface of the bottom disc (61), it is used to stop the hook of the clothes hanger from being separated from the hook area (64).
7. The garment inspection hanger of claim 6, wherein, The side away from the hook portion (63) of the stop piece (65) is provided with a protruding actuating portion (652) away from the rotation axis, which is used for user hand operation.
8. The garment inspection hanger of claim 5, wherein, The cross section of the hook portion (63) is generally waist-shaped, and the hook portion (63) is recessed inward around the circumferential side to form a hook groove (631) embedded with the clothes hanger hook.
9. The garment inspection hanger of claim 5, wherein, The bottom of the swing shaft (50) is fixed with a circular sheet-shaped fixed bottom sheet (52), and the fixed bottom sheet (52) is locked and fixed at the center position of the upper end surface of the bottom disc (61).
10. The garment inspection hanger of claim 1, wherein, Also included is a controller (100) electrically connected to the rotary motor (70) and the clutch-type coupling (80) through a connection line, the controller (100) being configured to control the on-off state of the clutch-type coupling (80) and the forward-reverse rotation of the rotary motor (70).