Low-friction ceramic part structure for spinning

By using a ceramic component design with a half-body structure and fasteners, the problems of easy wear and poor adaptability of ceramic spinning wheels are solved, achieving low friction, long life and multi-filament adaptability, thus improving the intelligence level of textile equipment.

CN224133275UActive Publication Date: 2026-04-17DONGTAI SMILE NEW MATERIAL TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing ceramic spinning wheels are easily damaged and difficult to adapt to different types of spinning, affecting spinning efficiency and the level of intelligence of the equipment.

Method used

The ceramic component features a semi-integrated structure design, combined with fastener connections, a wire guide disc, and multi-aperture settings to accommodate various types of wires. Furthermore, the semi-integrated structure can be replaced individually if damaged.

Benefits of technology

It reduces frictional loss, extends service life, improves equipment flexibility and maintenance efficiency, and adapts to various thread processing methods.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a low-friction textile ceramic piece structure which comprises a textile ceramic piece body, a ceramic piece column body is arranged outside the textile ceramic piece body, a ceramic piece outer lining block is arranged in the middle of the outer side of the ceramic piece column body, and a ceramic piece outer lining block is arranged in the middle of the outer side of the ceramic piece column body. A thread inlet is formed in the top of the ceramic part column body, a thread outlet hole is formed in the outer side of the ceramic part outer lining block, a cavity is formed in the textile ceramic part body, the thread inlet and the thread outlet hole are communicated through the cavity, and a hole is formed in the portion, located in the ceramic part outer lining block, of the ceramic part column body. The ceramic part column body and the ceramic part outer lining block are designed in a half-body structure, when the ceramic part column body and the ceramic part outer lining block are damaged, only the corresponding ceramic part half-body structure needs to be replaced, the maintenance cost is greatly saved, the fixing effect of the ceramic part can be improved by adopting a fastener connecting mode, equipment cannot touch a connecting surface when the ceramic part is used, and the service life of the ceramic part is prolonged. The friction effect during use is greatly reduced, and the service life is prolonged.
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Description

Technical Field

[0001] This utility model relates to the technical field of textile equipment components, and in particular to a low-friction ceramic component structure for textiles. Background Technology

[0002] A textile machine, also known as a spinning machine, loom, or cotton spinning machine, was originally a human-powered loom. The textile machine is a tool used to process raw materials such as thread, silk, and hemp into yarn and then weave it into fabric. With technological advancements, various types of textile machines have been put into use, and their operating speeds have continuously increased. The spinning wheel is a crucial component of the textile machine, primarily used for unwinding or straightening the spun yarn. It rotates at high speed, generating significant heat and wear due to friction. Ceramic materials, with their high melting point, high hardness, high wear resistance, and oxidation resistance, are used to manufacture spinning wheels.

[0003] Current technology has shortcomings: the spinning components made of ceramic materials are still vulnerable parts that need to be replaced frequently. Furthermore, different ceramic parts are required for different types of spinning, and the technology cannot be flexibly adjusted for different types of spinning, which greatly affects the efficiency of intelligent spinning. Utility Model Content

[0004] The purpose of this invention is to provide a low-friction ceramic component structure for textiles, in order to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a low-friction ceramic component structure for textiles, comprising a textile ceramic component body, an outer ceramic component column, a ceramic component outer liner block located at the middle of the outer side of the ceramic component column, a wire inlet at the top of the ceramic component column, a wire outlet hole at the outer side of the ceramic component outer liner block, a cavity inside the textile ceramic component body, the wire inlet and the wire outlet hole being connected through the cavity, and an opening located inside the ceramic component outer liner block, the wire outlet hole being connected to the cavity through the opening, a guide wire disc being engaged inside the cavity, the guide wire disc being circular, a connection port at the bottom of the ceramic component column, the inner side of the connection port being threaded, and a fastener being connected to the connection port.

[0006] As a preferred technical solution of this utility model, the ceramic column and the ceramic outer liner are separated into two half-structures at the axis, and the two half-structures are connected and fixed by fasteners at the bottom.

[0007] As a preferred technical solution of this utility model, the bottom of the half structure is provided with an extension protrusion, and the corresponding half connection position is provided with a connection groove, and the connection port is located in the connection groove, and the extension protrusion is adapted to the connection groove.

[0008] As a preferred embodiment of this utility model, a large hole is provided in the middle of the guide wire disc, and a small hole is provided on the outside of the large hole. The number of small holes on the door lock is eight, and the eight small holes are equidistantly arranged around the outside of the large hole.

[0009] As a preferred embodiment of this utility model, the size of the guide wire disc is larger than the diameter of the cavity, and the inner wall of the cavity is provided with a connecting groove that matches the guide wire disc.

[0010] Compared with the prior art, the beneficial effects of this utility model are:

[0011] The ceramic component column and ceramic component outer liner of this utility model adopt a half-body structure design. When damage occurs, only the corresponding ceramic component half-body structure needs to be replaced, which greatly saves maintenance costs. In addition, the fastener connection method can improve the fixing effect of the ceramic component, so that the equipment will not touch the connection surface when the ceramic component is in use, which greatly reduces the friction effect during use and improves the service life.

[0012] This invention facilitates the passage of yarn through textile ceramic parts by setting a guide plate and a yarn outlet hole. The flexibility of the guide plate allows it to adapt to various types of yarn, and the multi-diameter setting enables the ceramic parts to perform multiple yarn spinning processes simultaneously. Attached Figure Description

[0013] Figure 1 This is a three-dimensional view of the structure of this utility model;

[0014] Figure 2 This is a cross-sectional view of the structure of this utility model;

[0015] Figure 3 This is a schematic diagram of the wire guide disc structure of this utility model;

[0016] Figure 4 This is a schematic diagram of the bottom structure of the ceramic part of this utility model.

[0017] In the diagram: 1. Textile ceramic component body; 2. Ceramic component column; 3. Ceramic component outer liner; 4. Wire inlet; 5. Wire outlet; 6. Cavity; 7. Wire guide disc; 8. Opening; 9. Large hole; 10. Small hole; 11. Connection port; 12. Fastener. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0019] Please see Figure 1-4 This utility model provides a technical solution for a low-friction ceramic component structure for textiles:

[0020] A low-friction ceramic component structure for textiles includes a textile ceramic component body 1, an outer ceramic component column 2, a ceramic component outer liner 3 located at the middle of the outer side of the ceramic component column 2, a wire inlet 4 at the top of the ceramic component column 2, and a wire outlet 5 on the outer side of the ceramic component outer liner 3. The textile ceramic component body 1 has an internal cavity 6, through which the wire inlet 4 and the wire outlet 5 are connected. Furthermore, the ceramic component column 2, located inside the ceramic component outer liner 3, has an opening 8, and the wire outlet 5... The guide wire disc 7 is connected to the cavity 6 through the opening 8. The cavity 6 contains a guide wire disc 7, which is circular in shape. A large hole 9 is located in the center of the guide wire disc 7, and small holes 10 are located outside the large hole 9. There are eight small holes 10 on the door lock, equidistantly surrounding the outer side of the large hole 9. The guide wire disc 7 and the outlet hole 5 facilitate the passage of the woven ceramic component. The guide wire disc 7 is flexible enough to accommodate various types of woven wires, and the multi-diameter design allows for efficient handling of the ceramic component. The device can simultaneously perform multiple yarn spinning processes. The size of the guide disc 7 is larger than the diameter of the cavity 6. The inner wall of the cavity 6 has a connecting groove that matches the guide disc 7. The bottom of the ceramic column 2 has a connecting port 11 with a threaded structure on the inside. The connecting port 11 is connected to a fastener 12. The ceramic column 2 and the ceramic outer liner 3 are separated into two half-body structures at the axis, and the two half-body structures are connected and fixed by the fastener 12 at the bottom. The bottom of the half-body structure has an extension protrusion, and the corresponding half-body connection position has a connecting groove. The connecting port 11 is located in the connecting groove, and the extension protrusion matches the connecting groove. The ceramic column 2 and the ceramic outer liner 3 adopt a half-body structure design. When damage occurs, only the corresponding ceramic half-body structure needs to be replaced, which greatly saves maintenance costs. Moreover, the connection method of using fastener 12 can improve the fixing effect of the ceramic parts, so that the equipment will not touch the connecting surface when the ceramic parts are in use, which greatly reduces the friction effect during use and improves the service life.

[0021] In the description of this utility model, it should be understood that the indicated orientation or positional relationship is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing this utility model and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0022] In this utility model, unless otherwise explicitly specified and limited, for example, it can be a fixed connection, a detachable connection, or an integral part; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components or an interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0023] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A low-friction textile ceramic piece structure comprising a textile ceramic piece body (1), characterized by: The textile ceramic body (1) includes a ceramic column (2) on the outside. A ceramic outer liner (3) is provided in the middle of the outer side of the ceramic column (2). An inlet (4) is provided at the top of the ceramic column (2). An outlet (5) is provided on the outer side of the ceramic outer liner (3). A cavity (6) is provided inside the textile ceramic body (1). The inlet (4) and outlet (5) are connected through the cavity (6). An opening (8) is provided inside the ceramic outer liner (3) of the ceramic column (2). The outlet (5) is connected to the cavity (6) through the opening (8). A guide plate (7) is snapped into the cavity (6). The guide plate (7) has a circular structure. A connection port (11) is provided at the bottom of the ceramic column (2). The inner side of the connection port (11) has a threaded structure. A fastener (12) is connected to the connection port (11).

2. A low friction ceramic textile structure according to claim 1, wherein: The ceramic column (2) and the ceramic outer liner (3) are separated into two half-structures at the axis, and the two half-structures are connected and fixed by fasteners (12) at the bottom.

3. A low friction ceramic textile structure according to claim 2, wherein: The bottom of the half-body structure is provided with an extension protrusion, and the corresponding half-body connection position is provided with a connection groove, and the connection port (11) is located in the connection groove. The extension protrusion is adapted to the connection groove.

4. A low friction ceramic textile structure according to claim 1, wherein: The guide wire disc (7) has a large hole (9) in the middle and a small hole (10) on the outside of the large hole (9). The number of small holes (10) on the door lock is eight, and the eight small holes (10) are equidistantly surrounding the outside of the large hole (9).

5. A low friction ceramic textile structure according to claim 1, wherein: The size of the guide wire disc (7) is larger than the diameter of the cavity (6), and the inner wall of the cavity (6) is provided with a connecting groove that is compatible with the guide wire disc (7).