Clothes hanger rail changing device for hanging system

By designing a limiting mechanism and a guide slide assembly, the instability problem of the hanger changing track device in the hanging system was solved, achieving stable and accurate transmission of the hanger during the changing track process, thus improving production efficiency and safety.

CN224278653UActive Publication Date: 2026-05-26SHANDONG DAINUOWEI INFORMATION TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG DAINUOWEI INFORMATION TECHNOLOGY CO LTD
Filing Date
2025-06-10
Publication Date
2026-05-26

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Abstract

The utility model belongs to the technical field of hanger rail transfer, and particularly relates to a hanger rail transfer device for a hanging system, which comprises two rails I and a rail II, I-shaped pads are fixedly welded on the surfaces of the lower ends of the two rails I, I-shaped plates are fixedly welded on the side edges of the I-shaped pads, a transverse moving structure is connected between the rail II and the I-shaped plates, and the transverse moving structure is connected with the rail II. The second rail is in butt joint with the two first rails in a switching mode. The transverse moving structure comprises a first guide sliding groove and a second guide sliding groove which are formed in the surface of the I-shaped plate, a guide sliding block is fixedly welded to the surface of the lower end of the second rail, and accurate limiting and stable rail changing are achieved through ingenious matching of the limiting mechanism and the rail structure. Specifically, the limiting insertion rod is matched with the limiting insertion hole, when the second rail slides to the designated position where the second rail is in butt joint with the first rail, the limiting insertion rod can be accurately inserted into the limiting insertion hole, and the accurate matching effectively prevents the second rail from shaking or displacing in the working process.
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Description

Technical Field

[0001] This utility model relates to the field of clothes hanger track changing technology, and in particular to a clothes hanger track changing device for a hanging system. Background Technology

[0002] In modern manufacturing, especially in the garment and textile industries, hanging systems are widely used as efficient and automated material handling and processing auxiliary equipment. Through the coordination of tracks and hangers, hanging systems enable rapid and accurate material transfer between different processes, significantly improving production efficiency. However, in the actual operation of hanging systems, the stability and precision of the hanger track-changing mechanism have always been key issues restricting performance improvement.

[0003] Currently, existing hanging hanger track-changing devices on the market have several shortcomings in terms of track alignment and limiting. On one hand, the limiting mechanisms of some track-changing devices are not precisely designed, with large gaps between the limiting components, causing the track to wobble or shift during alignment. When the hanger is changing tracks, the instability of the track can cause it to jam or fall, affecting production efficiency and potentially leading to hanger damage or material loss, thus increasing production costs.

[0004] On the other hand, existing limiting methods often lack effective stability assurance measures. In some track-changing devices, although a simple pin-type limiting structure is used, the pin and hole dimensions are not well matched, or the pin fixing method is not secure enough. During equipment operation, the pin is prone to loosening or falling off, causing the track to lose its limiting function and further exacerbating track instability. This unstable track-changing process not only fails to meet the requirements of modern production for high efficiency and precision but may also cause safety accidents, threatening the personal safety of operators. Therefore, we provide a clothes hanger track-changing device for hanging systems. Utility Model Content

[0005] To address the aforementioned problems, this utility model proposes a clothes hanger track-changing device for a hanging system, which more accurately solves the problems mentioned in the background art.

[0006] This utility model is achieved through the following technical solution:

[0007] The utility model proposes a clothes hanger track changing device for a hanging system, including two track 1 and one track 2. I-shaped pads are fixedly welded to the lower end surfaces of the two track 1s, and I-shaped plates are fixedly welded to the sides of the I-shaped pads. A transverse sliding structure is connected between the track 2 and the I-shaped plate for the track 2 to switch and connect with the two track 1s.

[0008] The transverse sliding structure includes a first guide groove and a second guide groove formed on the surface of the I-shaped plate. A guide block is fixedly welded to the lower end surface of the second guide groove and is slidably connected to the inner wall of the first guide groove. A limit mechanism is connected between the I-shaped plate and the guide block.

[0009] A guide slide assembly connects the second track and the I-shaped plate.

[0010] Furthermore, the limiting mechanism includes a limiting insertion hole formed on the lower end surface of the I-shaped plate and a rectangular groove formed on the lower end surface of the guide slider. An overlapping plate is slidably connected to the inner wall of the rectangular groove. A connecting rod is fixedly installed on the lower end surface of the overlapping plate. A fixing plate is fixedly connected to the end of the connecting rod. A limiting insertion rod is fixedly connected to the fixing plate relative to the surface of the I-shaped plate. A reset component is connected between the rectangular groove and the overlapping plate.

[0011] Furthermore, the guide slide assembly includes a T-shaped slider that is slidably connected to the inner wall of the guide slide groove two. The lower end surface of the track two is provided with a threaded hole, and the lower end surface of the T-shaped slider is threaded with a torque screw, and the threaded section of the torque screw is threaded to the inner wall of the threaded hole.

[0012] Furthermore, the resetting component includes a rectangular placement groove formed on the inner sidewall of the rectangular groove. A fixing rod is fixedly connected between the two end walls of the rectangular placement groove. A spring is sleeved around the fixing rod. A movable sleeve block is slidably sleeved around the fixing rod. The movable sleeve block is slidably connected to the inner wall of the rectangular placement groove, and the opposing surfaces of the two movable sleeve blocks are fixedly connected to the two end surfaces of one of the overlapping plates.

[0013] Furthermore, the upper end of the limiting rod is inserted into the inner wall of the limiting hole, and the inner diameter of the limiting hole is adapted to the outer diameter of the limiting rod.

[0014] Furthermore, one end of the spring is fixedly connected to the end wall of the rectangular mounting groove, and the other end of the spring is fixedly connected to one end surface of the movable sleeve.

[0015] The beneficial effects of this utility model are:

[0016] This invention achieves precise positioning and stable track changing through the ingenious cooperation between the limiting mechanism and the track structure. Specifically, the limiting rod and the limiting hole are mutually compatible. When track two slides to the designated position to align with track one, the limiting rod can be precisely inserted into the limiting hole. This precise cooperation effectively prevents track two from shaking or shifting during operation. Simultaneously, the inner diameter of the limiting hole and the outer diameter of the limiting rod are mutually compatible, further ensuring a tight connection between the two and enhancing the stability of the positioning.

[0017] This invention utilizes a T-shaped slider in the guide slide assembly to slide stably within the guide groove, providing guidance and support for the sliding of the second track, ensuring that the second track can slide smoothly along a predetermined trajectory. This precise limiting and stable track-changing design allows the hanger to smoothly and accurately transfer from one track to another during track-changing, avoiding problems such as hanger jamming or falling due to track swaying or displacement. This significantly improves the operating efficiency and stability of the hanging system, reduces the probability of malfunctions, and minimizes production delays and cost losses caused by malfunctions. Attached Figure Description

[0018] Figure 1 This is a three-dimensional first view of one embodiment of the present utility model;

[0019] Figure 2 This is a partial three-dimensional second view of one embodiment of the present invention;

[0020] Figure 3 This is a structural disassembly diagram of track two and I-shaped plate in one embodiment of the present invention;

[0021] Figure 4 This is a cross-sectional view of the guide slider in one embodiment of the present invention.

[0022] In the diagram: 1. Track 1; 2. Track 2; 3. I-shaped pad; 4. I-shaped plate; 5. Guide groove 1; 6. Guide groove 2; 7. T-shaped slider; 8. Guide slider; 9. Limiting insertion hole; 10. Rectangular groove; 11. Rectangular placement groove; 12. Fixing rod; 13. Spring; 14. Moving sleeve; 15. Overlap plate; 16. Connecting rod; 17. Fixing plate; 18. Limiting insertion rod; 19. Threaded hole; 20. Tightening screw. Detailed Implementation

[0023] To more clearly and completely illustrate the technical solution of this utility model, the following description, in conjunction with the accompanying drawings, will further explain this utility model. Example

[0024] like Figures 1-4As shown in the figure, an embodiment of this utility model discloses a clothes hanger track-changing device for a hanging system. This device mainly consists of two tracks (1) and one track (2). A welding process is used to fix a welded I-shaped pad (3) to the lower surface of the two tracks (1), ensuring a firm connection between the I-shaped pad (3) and the tracks (1). A welding process is also used to fix a welded I-shaped plate (4) to the side of the I-shaped pad (3), making the I-shaped plate (4) and the I-shaped pad (3) a single unit. A transverse sliding structure connects the track (2) and the I-shaped plate (4), which is used to allow the track (2) to switch between the two tracks (1). Specifically, guide grooves (5) and (6) are formed on the surface of the I-shaped plate (4), the dimensions and shapes of which are determined according to actual design requirements. A welded guide slider (8) is fixed to the lower surface of the track (2) and slidably connected to the inner wall of the guide groove (5), allowing the track (2) to slide within the guide groove (5) via the guide slider (8). Meanwhile, a limiting mechanism is connected between the I-shaped plate 4 and the guide slider 8 to restrict the position of track 2 and prevent it from deviating during sliding. In addition, a guide assembly is also connected between track 2 and the I-shaped plate 4 to further ensure the stability and smoothness of track 2's sliding.

[0025] Furthermore, a limiting hole 9 is made on the lower surface of the I-beam 4. The position and size of the limiting hole 9 are determined according to the sliding position and limiting requirements of the track 2. A rectangular groove 10 is made on the lower surface of the guide slider 8. The size of the rectangular groove 10 should be able to accommodate the installation and movement of related components. An overlapping plate 15 is slidably connected to the inner wall of the rectangular groove 10 by means of a slide rail or slide groove, so that the overlapping plate 15 can slide up and down within the rectangular groove 10. A connecting rod 16 is fixedly installed on the lower surface of the overlapping plate 15 by means of welding or bolting. The length and diameter of the connecting rod 16 are determined according to design requirements. A fixing plate 17 is fixedly connected to the end of the connecting rod 16 by means of welding or threaded connection. The shape and size of the fixing plate 17 should facilitate the installation of the limiting rod 18. The limiting rod 18 is fixedly connected to the surface of the fixing plate 17 opposite to the I-beam 4 by means of welding or threaded connection. The diameter and length of the limiting rod 18 should be compatible with the limiting hole 9. Meanwhile, a reset component is connected between the rectangular groove 10 and the overlapping plate 15 to automatically reset the overlapping plate 15 after the limit is released.

[0026] Furthermore, a T-shaped slider 7 is slidably connected to the inner wall of the guide groove 2 6 via a slide rail or groove, allowing the T-shaped slider 7 to slide within the guide groove 2 6. A threaded hole 19 is formed on the lower end surface of the track 2 2. The position and size of the threaded hole 19 should match the installation position of the T-shaped slider 7 and the specifications of the torque screw 20. A threaded hole matching the torque screw 20 is formed on the lower end surface of the T-shaped slider 7. The threaded section of the torque screw 20 is threaded into the threaded hole on the lower end surface of the T-shaped slider 7, and the threaded section of the torque screw 20 continues to be threaded into the inner wall of the threaded hole 19 on the lower end surface of the track 2 2. By tightening the torque screw 20, the T-shaped slider 7 and the track 2 2 can be fixedly connected together, allowing the track 2 2 to slide stably within the guide groove 2 6 via the T-shaped slider 7 during sliding.

[0027] Furthermore, a rectangular mounting groove 11 is formed on the inner wall of the rectangular groove 10. The size and shape of the rectangular mounting groove 11 should be able to accommodate the installation and movement of the fixed rod 12, the spring 13, and the movable sleeve block 14. The fixed rod 12 is fixedly connected between the two end walls of the rectangular mounting groove 11 by welding or threaded connection. The diameter and length of the fixed rod 12 are determined according to design requirements. The spring 13 is sleeved around the fixed rod 12, and its specifications should provide sufficient restoring force. The movable sleeve block 14 is slidably fitted around the fixed rod 12. The size of the movable sleeve block 14 should be adapted to the fixed rod 12 and the rectangular mounting groove 11, and the movable sleeve block 14 should be able to slide on the inner wall of the rectangular mounting groove 11. The opposing surfaces of the two movable sleeve blocks 14 are fixedly connected to the two end surfaces of an overlapping plate 15 by welding or bolting, so that when the overlapping plate 15 slides up and down, it can drive the movable sleeve blocks 14 to slide on the fixed rod 12, thereby compressing or stretching the spring 13.

[0028] Furthermore, it is ensured that the upper end of the limiting rod 18 can be inserted into the inner wall of the limiting hole 9, and that the inner diameter of the limiting hole 9 is compatible with the designed outer diameter of the limiting rod 18. In actual processing, precise measurement and machining processes ensure the dimensional accuracy of the limiting hole 9 and the limiting rod 18, allowing the limiting rod 18 to be smoothly inserted into the limiting hole 9 and to fit tightly after insertion, preventing the track 2 from shaking or shifting during operation.

[0029] Furthermore, one end of the spring 13 is fixedly connected to the end wall of the rectangular mounting groove 11 by welding or snap-fitting, and the other end of the spring 13 is fixedly connected to one end surface of the movable sleeve block 14 by welding or snap-fitting. When the overlapping plate 15 is pulled down, the movable sleeve block 14 slides on the fixed rod 12, compressing the spring 13 and storing elastic potential energy in the spring 13; when the tension on the overlapping plate 15 is released, the spring 13 releases its elastic potential energy, pushing the movable sleeve block 14 to slide back to its original position on the fixed rod 12, thereby causing the overlapping plate 15 to return to its original position.

[0030] Finally, it should be noted that the basic concepts have been described above. Obviously, for those skilled in the art, the detailed disclosure above is merely illustrative and does not constitute a limitation of this specification. Although not explicitly stated herein, those skilled in the art may make various modifications, improvements, and corrections to this specification. Such modifications, improvements, and corrections are suggested in this specification, and therefore remain within the spirit and scope of the exemplary embodiments of this specification. Furthermore, this specification uses specific terms to describe embodiments of this specification. For example, "an embodiment," "one embodiment," and / or "some embodiments" refer to a feature, structure, or characteristic associated with at least one embodiment of this specification. Therefore, it should be emphasized and noted that "an embodiment," "one embodiment," or "an alternative embodiment" mentioned twice or more in different locations in this specification do not necessarily refer to the same embodiment. In addition, certain features, structures, or characteristics in one or more embodiments of this specification can be appropriately combined. Moreover, unless expressly stated in the claims, the order of processing elements and sequences, the use of numbers and letters, or other names described in this specification are not intended to limit the order of the processes and methods of this specification.

[0031] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A clothes hanger track-changing device for a hanging system, comprising two tracks (1) and one track (2), characterized in that, I-shaped pads (3) are fixedly welded to the lower end surfaces of the two track 1 (1), and I-shaped plates (4) are fixedly welded to the sides of the I-shaped pads (3). A transverse sliding structure is connected between the track 2 (2) and the I-shaped plate (4) for the track 2 (2) to switch and connect with the two track 1 (1). The transverse structure includes a guide groove one (5) and a guide groove two (6) formed on the surface of the I-shaped plate (4). The lower end surface of the track two (2) is fixedly welded with a guide block (8) and slidably connected to the inner wall of the guide groove one (5). A limit mechanism is connected between the I-shaped plate (4) and the guide block (8). A guide slide assembly is connected between the second track (2) and the I-shaped plate (4).

2. The clothes hanger track-changing device for a hanging system according to claim 1, characterized in that, The limiting mechanism includes a limiting insertion hole (9) on the lower surface of the I-shaped plate (4) and a rectangular groove (10) on the lower surface of the guide slider (8). A lap plate (15) is slidably connected to the inner wall of the rectangular groove (10). A connecting rod (16) is fixedly installed on the lower surface of the lap plate (15). A fixing plate (17) is fixedly connected to the end of the connecting rod (16). A limiting insertion rod (18) is fixedly connected to the fixing plate (17) relative to the surface of the I-shaped plate (4). A reset component is connected between the rectangular groove (10) and the lap plate (15).

3. The clothes hanger track-changing device for a hanging system according to claim 1, characterized in that, The guide slide assembly includes a T-shaped slider (7) that is slidably connected to the inner wall of the guide slide groove (6). The lower end surface of the track (2) is provided with a threaded hole (19). The lower end surface of the T-shaped slider (7) is threaded with a torsion screw (20), and the threaded section of the torsion screw (20) is threaded to the inner wall of the threaded hole (19).

4. A clothes hanger track-changing device for a hanging system according to claim 2, characterized in that, The reset component includes a rectangular placement groove (11) formed on the inner side wall of a rectangular groove (10). A fixing rod (12) is fixedly connected between the two end walls of the rectangular placement groove (11). A spring (13) is sleeved around the fixing rod (12). A movable sleeve block (14) is slidably sleeved around the fixing rod (12). The movable sleeve block (14) is slidably connected to the inner wall of the rectangular placement groove (11), and the opposite surfaces of the two movable sleeve blocks (14) are fixedly connected to the two end surfaces of a lap plate (15).

5. A clothes hanger track-changing device for a hanging system according to claim 2, characterized in that, The upper end of the limiting rod (18) is inserted into the inner wall of the limiting hole (9), and the inner diameter of the limiting hole (9) is adapted to the outer diameter of the limiting rod (18).

6. A clothes hanger track-changing device for a hanging system according to claim 4, characterized in that, One end of the spring (13) is fixedly connected to the end wall of the rectangular mounting groove (11), and the other end of the spring (13) is fixedly connected to one end surface of the movable sleeve (14).