A yarn guide structure for a textile machine

By setting an adjustable guide structure and sliding components on the textile machine, the problem of difficult adjustment of the guide structure of the traditional textile machine is solved, and high efficiency and stability of yarn processing are achieved to meet the requirements of complex processes.

CN224530312UActive Publication Date: 2026-07-21YANCHENG GANGYANG TEXTILE CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YANCHENG GANGYANG TEXTILE CO LTD
Filing Date
2025-08-14
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Traditional textile machines have difficult and inflexible yarn guiding structures, making them unable to adapt to different yarn tensions and process requirements. This leads to yarn wear and breakage, affecting production efficiency and product quality.

Method used

An adjustable guide structure is adopted, which can be flexibly adjusted by a sliding component at the bottom of the support assembly. Combined with elastic limit plates and smooth materials, stability and movement speed are improved. The hollow groove design allows for arbitrary layout of the guide components.

Benefits of technology

It improves the efficiency and stability of yarn processing, meets the personalized needs of complex textile processes, reduces yarn wear and breakage, and increases production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a structure discloses a kind of yarn guiding structure for textile machine, including textile machine body, supporting assembly and guiding structure, guiding structure is set on supporting assembly, supporting assembly and guiding structure are commonly set on textile machine body, adjusting chassis is provided on supporting assembly, adjusting chassis is provided with the slot component that guiding structure is accommodated on its movement, guiding structure moves by the sliding component of supporting assembly bottom, when supporting assembly drives guiding structure to move, sliding component is set in the slot component inside, by the utility model, guiding structure moves by the sliding component of supporting assembly bottom, the purpose that flexible adjustment guiding structure is realized, and the efficiency of yarn processing is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of textile equipment, and specifically relates to a yarn guiding structure for textile machines. Background Technology

[0002] In the field of textile machinery, yarn guiding structures are key components that ensure smooth yarn transport and reduce friction and yarn breakage. Traditional textile machines typically employ fixed designs for their guiding structures, directly mounted to the frame via bolts or welding, resulting in difficult position adjustments and poor flexibility. This rigid installation method struggles to adapt to variations in yarn tension, type, or process routes. Especially when handling high-count or specialty yarns, mismatched guiding positions can easily lead to yarn wear and even breakage, severely impacting production efficiency and product quality. While adjustable guiding devices exist in existing technologies, they mostly rely on manual adjustment using threaded rods, which is cumbersome and limits accuracy. Some sliding structures lack effective positioning mechanisms, making them prone to displacement during high-speed operation, causing yarn trajectory deviations. Furthermore, conventional straight groove designs limit the diversity of guiding unit layouts, failing to meet the personalized yarn path requirements of complex textile processes. Utility Model Content

[0003] To achieve the above objectives, the technical solution of this utility model is as follows: A yarn guiding structure for a textile machine, the structure including a textile machine body, a support component, and a guiding structure, the guiding structure being disposed on the support component, the support component and the guiding structure being disposed together on the textile machine body, the support component being provided with an adjusting base, the adjusting base being provided with a groove component for accommodating the movement of the guiding structure thereon, the guiding structure moving through a sliding component at the bottom of the support component, the sliding component being disposed inside the groove component when the support component drives the guiding structure to move.

[0004] Based on the above technical features, this utility model allows the guide structure to move via a sliding component at the bottom of the support assembly, thereby achieving flexible adjustment of the guide structure and improving the efficiency of yarn processing.

[0005] Preferably, the groove assembly includes a hollow groove disposed inside the adjusting chassis, and the sliding assembly includes a sliding wheel, with elastic limiting plates disposed on both sides above the sliding wheel, and an adjusting rod disposed on the elastic limiting plates.

[0006] Based on the above technical features, the guide structure is set to move within the hollow groove. Firstly, this can improve the stability of the guide structure, and secondly, it facilitates the movement of the guide structure. Furthermore, a smooth material with low friction can be provided on the upper edges of both sides of the hollow groove to increase the moving speed of the guide structure within the groove. Of course, even without this smooth material, the guide structure can still move within it.

[0007] Preferably, the elastic limiting plate includes metal plates symmetrically arranged on both sides of the sliding wheel. One end of the metal plate is fixed to a shaft above the sliding wheel, and the other end of the metal plate is suspended. A spring is provided between the inner side of the metal plate and the shaft. An adjusting rod is provided on the side end of the metal plate and has an upwardly extending section. The distance between the metal plates is adjusted by pressing the adjusting rod. When the distance between the metal plates decreases, the metal plates are closer to the shaft side. At this time, the sliding wheel is movably set in the hollow groove. When the adjusting rod is released, the distance between the metal plates increases, and the metal plates are stuck on the top walls at both ends of the hollow groove. The sliding wheel is fixed in the hollow groove by the resistance of the metal plates on both sides of the hollow groove.

[0008] Based on the above technical features, it should be noted in this solution that the size of the metal sheet needs to be set so that it does not contact the sliding wheel when it moves inward, so as not to affect the movement of the sliding wheel.

[0009] Preferably, the hollow groove forms a long strip structure on the adjusting chassis.

[0010] Based on the above technical features, in conventional solutions, the adjustable chassis is set in a long strip structure, which can be equipped with multiple guide components, and the distance between each guide component can be set arbitrarily.

[0011] Preferably, the hollow groove forms an S-shaped structure on the adjusting chassis.

[0012] Based on the above technical features, the advantage of the S-shaped structure is that the guide structure can be set at any position on the adjustable chassis, which improves the operability of the equipment.

[0013] Preferably, the hollow groove is provided with guide protrusions for limiting the sliding component, the guide protrusions are symmetrically and equidistantly arranged, and the sliding component is provided with an annular groove that cooperates with the guide protrusions.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: The structure of this utility model includes a textile machine body, a support component, and a guide structure. The guide structure is disposed on the support component, and the support component and the guide structure are jointly disposed on the textile machine body. An adjusting base is disposed on the support component, and a groove component is disposed on the adjusting base to accommodate the movement of the guide structure thereon. The guide structure moves through a sliding component at the bottom of the support component. When the support component drives the guide structure to move, the sliding component is disposed inside the groove component. Through this utility model, the guide structure moves through the sliding component at the bottom of the support component, thereby achieving the purpose of flexibly adjusting the guide structure and improving the efficiency of yarn processing. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the yarn guiding structure described in this utility model;

[0016] Figure 2 This is a schematic diagram of the guide structure and adjusting chassis installation in this utility model;

[0017] Figure 3 In this utility model Figure 2 Enlarged view of point A in the middle;

[0018] Figure 4 This is a schematic diagram of the hollow groove with a long strip structure in this utility model;

[0019] Figure 5 This is a schematic diagram of the hollow S-shaped groove in this utility model.

[0020] List of identifiers in attached diagrams:

[0021] 1-Textile machine body, 2-Support assembly, 21-Adjusting chassis, 211-Hollow groove, 22-Sliding wheel, 23-Metal sheet, 24-Adjusting rod, 25-Spring component, 26-Shaft, 3-Guide structure, 4-Long strip structure, 5-S-shaped strip structure, 6-Guide convex strip, 7-Annular groove, 8-Rubber layer. Detailed Implementation

[0022] The present invention will be further explained below with reference to the accompanying drawings and specific embodiments. It should be understood that the following specific embodiments are only used to illustrate the present invention and are not intended to limit the scope of the present invention.

[0023] Example: Figures 1 to 5 As shown, a yarn guiding structure 3 for a textile machine includes a textile machine body 1, a support component 2, and a guiding structure 3. The guiding structure 3 is mounted on the support component 2, and the support component 2 and the guiding structure 3 are both mounted on the textile machine body 1. An adjusting base 21 is mounted on the support component 2, and a groove component is mounted on the adjusting base 21 to accommodate the movement of the guiding structure 3. The guiding structure 3 moves via a sliding component at the bottom of the support component 2. When the support component 2 drives the guiding structure 3 to move, the sliding component is located inside the groove component.

[0024] Through this invention, the guide structure 3 moves via the sliding component at the bottom of the support component 2, thereby achieving the purpose of flexibly adjusting the guide structure 3 and improving the efficiency of yarn processing.

[0025] Furthermore, the groove assembly includes a hollow groove 211 disposed inside the adjusting base 21, and the sliding assembly includes a sliding wheel 22. Elastic limiting plates are disposed on both sides above the sliding wheel 22, and adjusting rods 24 are disposed on the elastic limiting plates. The guide structure 3 moves within the hollow groove 211, which firstly improves the stability of the guide structure 3 and secondly facilitates its movement. Furthermore, a smooth material with low friction can be disposed on the upper edges of both sides of the hollow groove 211 to increase the moving speed of the guide structure 3 within the groove. Of course, even without this smooth material, the guide structure 3 can still move within it.

[0026] Furthermore, the elastic limiting plate includes metal plates 23 symmetrically arranged on both sides of the sliding wheel 22. One end of the metal plate 23 is fixed to the shaft 26 above the sliding wheel 22, and the other end of the metal plate 23 is suspended. A spring 25 is provided between the inner side of the metal plate 23 and the shaft 26. An adjusting rod 24 is provided on the side end of the metal plate 23 and has an upwardly extending section. By pressing the adjusting rod 24, the distance between the metal plates 23 is adjusted. When the distance between the metal plates 23 decreases, the metal plates 23 move closer to the shaft 26. At this time, the sliding wheel 22 is movably disposed in the hollow groove 211. When the adjusting rod 24 is released, the distance between the metal plates 23 increases, and the metal plates 23 are stuck on the top walls of both ends of the hollow groove 211. The sliding wheel 22 is fixed in the hollow groove 211 by the resistance of the metal plates 23 on both sides of the hollow groove 211. It should be noted in this scheme that the size of the metal plate 23 needs to be set so that it does not contact the sliding wheel 22 when the metal plate 23 moves inward, so as not to affect the movement of the sliding wheel 22. One end of the metal sheet 23 can be mounted on the shaft 26 using bolts or other components. In this case, the metal sheet 23 can deform under external force, and with the action of the inner spring, the deformed metal sheet 23 can be reset. A rubber layer 8 can also be laid on the upper side of the metal sheet 23 to increase frictional resistance and facilitate better confinement of the guide structure 3 within the hollow groove 211.

[0027] Furthermore, the hollow groove 211 forms an elongated structure 4 on the adjusting base 21. In conventional designs, the adjusting base 21 is positioned on the elongated structure 4, allowing for the installation of multiple guide components, and the distance between each guide component can be arbitrarily set.

[0028] Furthermore, the hollow trough 211 forms an S-shaped structure 5 on the adjusting chassis 21. The advantage of the S-shaped structure 5 is that the guide structure 3 can be set at any position on the adjusting chassis 21, improving the operability of the equipment.

[0029] Furthermore, the hollow groove 211 is provided with guide protrusions 6 for limiting the sliding assembly. The guide protrusions 6 are symmetrically and equidistantly arranged, and the sliding assembly is provided with an annular groove 7 that cooperates with the guide protrusions 6.

[0030] It should be noted that the above content merely illustrates the technical concept of this utility model and cannot be used to limit the scope of protection of this utility model. For those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and all such improvements and modifications fall within the scope of protection of the claims of this utility model.

Claims

1. A yarn guiding structure for a textile machine, characterized in that, The structure includes a textile machine body (1), a support assembly (2), and a guide structure (3). The guide structure (3) is set on the support assembly (2). The support assembly (2) and the guide structure (3) are both set on the textile machine body (1). An adjustment base (21) is set on the support assembly (2). A groove assembly is set on the adjustment base (21) to accommodate the guide structure (3) moving on it. The guide structure (3) moves through a sliding assembly at the bottom of the support assembly (2). When the support assembly (2) drives the guide structure (3) to move, the sliding assembly is set inside the groove assembly.

2. The yarn guiding structure for a textile machine according to claim 1, characterized in that, The groove assembly includes a hollow groove (211) disposed inside the adjusting chassis (21), and the sliding assembly includes a sliding wheel (22). Elastic limiting plates are provided on both sides above the sliding wheel (22), and an adjusting rod (24) is provided on the elastic limiting plate.

3. The yarn guiding structure for a textile machine according to claim 2, characterized in that, The elastic limiting plate includes metal plates (23) symmetrically arranged on both sides of the sliding wheel (22). One end of the metal plate (23) is fixed on the shaft (26) above the sliding wheel (22), and the other end of the metal plate (23) is suspended. A spring (25) is provided between the inner side of the metal plate (23) and the shaft (26). An adjusting rod (24) is provided on the side end of the metal plate (23) and has an upward extension. The distance between the metal plates (23) is adjusted by pressing the adjusting rod (24). When the distance between the metal plates (23) decreases, the metal plate (23) moves closer to the shaft (26). At this time, the sliding wheel (22) is movably arranged in the hollow groove (211). When the adjusting rod (24) is released, the distance between the metal plates (23) increases. The sliding wheel (22) is fixed in the hollow groove (211) by the resistance of the metal plates (23) on both sides of the hollow groove (211).

4. The yarn guiding structure for a textile machine according to claim 1, characterized in that, The hollow groove (211) forms a long strip structure (4) on the adjusting chassis (21).

5. The yarn guiding structure for a textile machine according to claim 1, characterized in that, The hollow groove (211) forms an S-shaped structure (5) on the adjusting chassis (21).

6. The yarn guiding structure for a textile machine according to claim 1, characterized in that, The hollow groove (211) is provided with a guide protrusion (6) for limiting the sliding component. The guide protrusions (6) are symmetrically and equidistantly arranged. The sliding component is provided with an annular groove (7) that cooperates with the guide protrusions (6).