Lubricating bearing component for spinning device
By setting lubricating bearing components, including auxiliary bearings, carrier disks and collection components, at the connection position of the power shaft of the textile multi-arm machine, the problems of lubricating oil dripping and overflow are solved, and the stability of lubrication and the reuse of resources are achieved.
Patent Information
- Application Number
- CN202510677976.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-26
- Publication Date
- 2025-07-08
AI Technical Summary
The existing textile multi-arm machine device lacks effective lubrication at the connection position of the power shaft and the chassis, resulting in waste of lubricating oil dripping, and it is difficult to avoid lubricating oil spilling outward.
A lubricating bearing component for textile devices is designed, including a power shaft, auxiliary bearing, carrier disk, sealed rubber gasket and collection assembly. It is connected to the lubricating auxiliary member through the installation thread groove body to provide lubricating effect, and the lubricating oil is avoided by sealing the rubber gasket and collection assembly.
Ensure the lubrication stability of the connection position of the power shaft and the multi-arm machine, avoid waste of lubricant, realize the reuse and collection of lubricant, and reduce resource waste.
Smart Images

Figure CN120273089A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of bearing lubrication, and particularly relates to a lubricating bearing component for a textile device. Background Art
[0002] A textile dobby loom is a mechanical device used in the textile industry. It has multiple arms and can perform multiple textile operations simultaneously to improve production efficiency. The main components of a textile dobby loom include a frame, a driving motor, arms, rollers, knitting needles, etc. The frame is the support structure of the entire device, the driving motor is responsible for controlling the movement of the rollers and knitting needles, and the arms are composed of multiple rollers and knitting needles for performing multiple textile operations simultaneously. The working principle of a textile dobby loom is mainly to form a fabric by the coordinated movement of the rollers and knitting needles to draw the silk thread onto the knitting needles. Each roller can be independently controlled, enabling the machine to flexibly produce fabrics of different specifications and shapes.
[0003] In the existing dobby loom device, a self-lubricating device is provided to provide a lubricating function for the transmission components in its inner cavity. However, there is a lack of a corresponding lubricating component at the connection position between the power shaft, which is the power input, and the chassis of the dobby loom. Generally, the lubricating oil sprayed by the lubricating device in the inner cavity of the dobby loom drips onto the power shaft. The power shaft is generally used in cooperation with a bearing, and its lubricating effect on the connection position between the power shaft and the chassis is small, that is, the lubricating effect on the outer side of the bearing needs to be improved. At the same time of lubrication, it is also necessary to prevent the lubricating oil from overflowing outward and causing waste.
[0004] Therefore, the present invention proposes a lubricating bearing component for a textile device to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a lubricating bearing component for a textile device to solve the problems raised in the above background art.
[0006] To achieve the above purpose, the present invention provides the following technical solution: A lubricating bearing component for a textile device, including a dobby loom main body and a swing arm member arranged in the dobby loom main body. A power shaft is also connected and arranged in the dobby loom main body, and one end of the power shaft extends to the outside of the dobby loom main body. An auxiliary bearing is arranged at the connection position between the power shaft and the side wall of the dobby loom main body, and the power shaft penetrates through the auxiliary bearing.
[0007] An installation threaded groove body is arranged on the outer side wall of the dobby loom main body at the connection position between the power shaft and the auxiliary bearing, and the installation threaded groove body is connected to a lubrication auxiliary member.
[0008] Preferably, the lubrication auxiliary member includes a bearing disk body, a sealing rubber gasket, an installation threaded through groove, a positioning screw, a loading cavity, an oil storage assembly, and an auxiliary assembly; a sealing rubber gasket is fixedly arranged on one side of the bearing disk body, and installation threaded through grooves are symmetrically arranged in the bearing disk body and extend into the sealing rubber gasket. The bearing disk body is fitted and sleeved on the power shaft, and the side of the bearing disk body with the sealing rubber gasket is in close contact with the side wall of the dobby body. The positioning screw is threadedly connected to the installation threaded through groove and is also threadedly connected to the installation threaded groove body on the side wall of the dobby body.
[0009] Preferably, a loading cavity is arranged in the bearing disk body, and the loading cavity is inclined in the bearing disk body. One end of the loading cavity extends into the sealing rubber gasket, and an oil storage assembly is arranged in the loading cavity.
[0010] Preferably, the oil storage assembly includes an oil storage rubber cylinder, a sealing cap body, an installation snap ring, a filling cavity opening, an elastic retaining piece, and an auxiliary mesh hole; the oil storage rubber cylinder is adaptively inserted into the loading cavity, and the number of sets of the oil storage rubber cylinder and the loading cavity is the same. Both the front end and the tail end of the oil storage rubber cylinder are provided with openings.
[0011] Preferably, a sealing cap body is connected to the front end opening of the oil storage rubber cylinder, and an installation snap ring is fixedly arranged inside the sealing cap body. The installation snap ring is adaptively clamped to the front end opening of the oil storage rubber cylinder.
[0012] Preferably, a filling cavity opening is arranged through the sealing cap body, and an elastic retaining piece is arranged on the inner side wall of the filling cavity opening. The elastic retaining piece is in a fan shape, and auxiliary mesh holes are evenly arranged in the elastic retaining piece.
[0013] Preferably, an auxiliary assembly is arranged at the tail end opening of the oil storage rubber cylinder. The auxiliary assembly includes an internal threaded connection groove, an external threaded connection ring, a tail end cap body, a diversion pipe body, a funnel-shaped cover, an auxiliary spring, and an oil guiding auxiliary structure; the internal threaded connection groove is arranged on the inner side wall of the tail end opening of the oil storage rubber cylinder and is adaptively threadedly connected to the external threaded connection ring. The external threaded connection ring is fixedly arranged at the cap opening position of the tail end cap body. One end of the tail end cap body is provided with an opening, and the other end is sealed. The end with the opening is the cap opening.
[0014] Preferably, a diversion pipe body is movably inserted into the tail end cap body. One end of the diversion pipe body extends into the tail end cap body, and the end part is connected to the hopper-shaped cover. The hopper-shaped cover is communicated with the diversion pipe body. The hopper-shaped cover is movably arranged in the tail end cap body, and the outer side of the cover opening of the hopper-shaped cover contacts the inner side wall of the tail end cap body. Auxiliary springs are fixedly arranged at equal intervals on the outer side wall of the hopper-shaped cover, and the other ends of the auxiliary springs are fixedly arranged on the inner side wall of the tail end cap body. The pipe orifice of the diversion pipe body extending outside the tail end cap body corresponds to the position where the ball in the auxiliary bearing is arranged.
[0015] Preferably, the other end of the diversion pipe body extends outside the tail end cap body, and a guide oil auxiliary structure is arranged at the end part. The guide oil auxiliary structure includes a circulation hole body and an auxiliary brush; the other end of the diversion pipe body is evenly provided with circulation hole bodies, and an auxiliary brush is arranged at the side position of the circulation hole bodies.
[0016] Preferably, the bearing disc body is connected to the collection assembly. The collection assembly includes an anti-overflow annular groove body, a drainage channel, an internal thread connection pipe head, an external thread docking pipe head, and a collection bottle body; the anti-overflow annular groove body is arranged in the inner ring side wall of the bearing disc body, and the end face shape of the anti-overflow annular groove body is V-shaped. The drainage channel is arranged in the bearing disc body, and one end of the drainage channel is communicated with the anti-overflow annular groove body. The other end of the drainage channel extends into the side wall of the bearing disc body and is communicated with the internal thread connection pipe head. The internal thread connection pipe head is fixedly arranged on the side wall of the bearing disc body, and the internal thread connection pipe head is threadedly connected with the external thread docking pipe head in a matching manner. The external thread docking pipe head is fixedly arranged at the bottle mouth position of the collection bottle body.
[0017] Compared with the prior art, the beneficial effects of the present invention are:
[0018] The lubricating bearing component for a textile device designed by the present invention includes a dobby main body and a swing arm component arranged in the dobby main body. A power shaft is also connected in the dobby main body, and one end of the power shaft extends outside the dobby main body. An auxiliary bearing is arranged at the connection position between the power shaft and the side wall of the dobby main body, and the power shaft penetrates through the auxiliary bearing; an installation thread groove body is arranged on the outer side wall of the dobby main body at the connection position between the power shaft and the auxiliary bearing, and the installation thread groove body is connected to the lubrication auxiliary component; in this solution, the lubrication auxiliary component provides a lubricating effect for the connection position between the power shaft and the dobby, ensuring the stability of the operation. And by arranging a sealing rubber gasket on one side of the bearing disc body and setting a corresponding collection assembly, it is avoided that the lubricating oil leaks outwards, and it has a certain collection function. The collected oil can be reused, avoiding waste of resources. Description of the Drawings
[0019] Figure 1Front-side schematic diagram of the structural connection of the dobby of the present invention;
[0020] Figure 2 Back-side schematic diagram of the structural connection of the dobby of the present invention;
[0021] Figure 3 For Figure 2 Enlarged schematic diagram of the structural connection at location A in
[0022] Figure 4 Schematic diagram of the structural connection between the main body of the dobby and the power shaft of the present invention;
[0023] Figure 5 For Figure 4 Enlarged schematic diagram of the structural connection at location B in
[0024] Figure 6 Front-side schematic diagram of the structural connection of the lubrication auxiliary component of the present invention;
[0025] Figure 7 Back-side schematic diagram of the structural connection of the lubrication auxiliary component of the present invention;
[0026] Figure 8 Front-side schematic diagram of the exploded structural connection of the oil storage component of the present invention;
[0027] Figure 9 For Figure 8 Enlarged schematic diagram of the structural connection at location C in
[0028] Figure 10 Back-side schematic diagram of the exploded structural connection of the oil storage component of the present invention;
[0029] Figure 11 Front-side schematic diagram of the internal structural connection of the end cap of the present invention;
[0030] Figure 12 Back-side schematic diagram of the internal structural connection of the end cap of the present invention;
[0031] Figure 13 For Figure 12 Enlarged schematic diagram of the structural connection at location D in
[0032] Figure 14 Schematic diagram of the structural connection between the carrier plate and the collection component of the present invention.
[0033] In the figure: dobby main body 1, swing arm member 11, power shaft 12, auxiliary bearing 13, mounting threaded groove body 2, bearing disk body 301, sealing rubber gasket body 302, mounting threaded through groove 303, positioning screw 304, loading cavity 305, oil storage rubber cylinder 401, sealing cap body 402, mounting snap ring 403, filling cavity opening 404, elastic retaining piece 405, auxiliary mesh hole 406, internal thread connection groove 501, external thread connection ring 502, tail end cap body 503, diversion pipe body 504, hopper-shaped cover 505, auxiliary spring 506, circulation hole body 601, auxiliary brush 602, anti-overflow annular groove body 701, drainage channel 702, internal thread connection pipe head 703, external thread docking pipe head 704, collection bottle body 705. Specific implementation manner
[0034] Next, the technical solutions in the embodiments of the present invention will be described clearly and completely. For the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0035] Embodiment 1: Please refer to Figures 1-14 , a lubricating bearing component for a textile device, including a dobby main body 1 and a swing arm member 11 arranged in the dobby main body 1. A power shaft 12 is also connected and arranged in the dobby main body 1, and one end of the power shaft 12 extends to the outside of the dobby main body 1. An auxiliary bearing 13 is arranged at the connection position between the power shaft 12 and the side wall of the dobby main body 1, and the power shaft 12 passes through the auxiliary bearing 13; wherein an installation threaded groove body 2 is arranged on the outer side wall of the dobby main body 1 at the connection position between the power shaft 12 and the auxiliary bearing 13, and the installation threaded groove body 2 is connected to the lubrication auxiliary component.
[0036] For the installation work of the lubrication auxiliary component, first insert the oil storage rubber cylinder 401 into the bearing disk body 301 until the sealing cap body 402 at the front end of the oil storage rubber cylinder 401 is flush with the end face of the bearing disk body 301. Then, thread the external thread docking pipe head 704 at the bottle mouth of the collection bottle body 705 with the internal thread connection pipe head 703 at the bottom side of the bearing disk body 301 to complete the installation of the collection bottle body 705. Then, put the bearing disk body 301 on the power shaft 12, and make the sealing rubber gasket body 302 on one side of the bearing disk body 301 close to the side wall of the dobby. At the same time, also make the installation threaded through groove 303 in the bearing disk body 301 align with the installation threaded groove body 2 on the side wall of the dobby, and finally connect and fix it with the set positioning screw 304.
[0037] This solution provides a lubricating effect on the connection position between the power shaft 12 and the dobby through the provided lubrication auxiliary component, ensuring the stability of the operation. And by setting a sealing rubber gasket 302 on one side of the bearing disc body 301 and setting a corresponding collection component, it avoids the outward seepage of the lubricating oil and has a certain collection function. The collected oil can be reused to avoid waste of resources. Among them, a sealing rubber gasket 302 is fixedly arranged on one side of the bearing disc body 301 in the lubrication auxiliary component, and installation threaded through grooves 303 are symmetrically arranged in the bearing disc body 301 and extend into the sealing rubber gasket 302. The bearing disc body 301 is adaptively sleeved on the power shaft 12, and the side of the bearing disc body 301 with the sealing rubber gasket 302 is closely attached to the side wall of the dobby main body 1. The positioning screw 304 is threadedly connected to the installation threaded through groove 303 and is also threadedly connected to the installation threaded groove body 2 on the side wall of the dobby main body 1. A loading cavity 305 is arranged in the bearing disc body 301, and the loading cavity 305 is inclined in the bearing disc body 301. One end of the loading cavity 305 extends into the sealing rubber gasket 302, and an oil storage component is arranged in the loading cavity 305. The oil storage component includes an oil storage rubber cylinder 401, a sealing cap body 402, an installation snap ring 403, a filling cavity opening 404, an elastic retaining piece 405, and an auxiliary mesh hole 406. The oil storage rubber cylinder 401 is adaptively inserted into the loading cavity 305, and the number of sets of the oil storage rubber cylinder 401 and the loading cavity 305 is the same. Both the front end and the tail end of the oil storage rubber cylinder 401 are provided with openings. The front end opening of the oil storage rubber cylinder 401 is connected with a sealing cap body 402, and an installation snap ring 403 is fixedly arranged on the inner side of the sealing cap body 402. The installation snap ring 403 is adaptively clamped with the front end opening of the oil storage rubber cylinder 401. A filling cavity opening 404 is arranged through the sealing cap body 402, and an elastic retaining piece 405 is arranged on the inner side wall of the filling cavity opening 404. The elastic retaining piece 405 is arranged in a fan shape, and auxiliary mesh holes 406 are uniformly arranged in the elastic retaining piece 405.
[0038] Lubricating oil liquid is filled into the oil storage rubber cylinder 401. After the oil storage rubber cylinder 401 is installed in the loading cavity 305 of the bearing disk body 301, the outer pipe orifice of the diversion pipe body 504 penetrating through the tail end cap body 503 reaches the position of the ball and the inner ring side of the auxiliary bearing 13, so that the lubricating oil liquid in the oil storage rubber cylinder 401 can flow to the ball and the inner ring position of the auxiliary bearing 13, providing a lubricating effect for the connection position between the power shaft 12 and the multi-arm machine. An auxiliary component is arranged at the tail end opening of the oil storage rubber cylinder 401. The auxiliary component includes an internal thread connection groove 501, an external thread connection ring 502, a tail end cap body 503, a diversion pipe body 504, a bucket-shaped cover 505, an auxiliary spring 506 and an oil guiding auxiliary structure; the internal thread connection groove 501 is arranged on the inner side wall of the tail end opening of the oil storage rubber cylinder 401, and the internal thread connection groove 501 is threadedly connected with the external thread connection ring 502 in a matching manner. The external thread connection ring 502 is fixedly arranged at the cap orifice position of the tail end cap body 503. One end of the tail end cap body 503 is provided with an opening, and the other end is provided with a plug. The end provided with the opening is the cap orifice; the diversion pipe body 504 is movably inserted into the tail end cap body 503. One end of the diversion pipe body 504 extends into the tail end cap body 503, and the end part is connected with the bucket-shaped cover 505. The bucket-shaped cover 505 is communicated with the diversion pipe body 504. The bucket-shaped cover 505 is movably arranged in the tail end cap body 503, and the outer side of the cover orifice of the bucket-shaped cover 505 is in contact with the inner side wall of the tail end cap body 503. The outer side wall of the bucket-shaped cover 505 is fixedly provided with auxiliary springs 506 at equal intervals. The other ends of the auxiliary springs 506 are fixedly arranged on the inner side wall of the tail end cap body 503. The pipe orifice of the diversion pipe body 504 extending to the outside of the tail end cap body 503 corresponds to the position where the ball in the auxiliary bearing 13 is arranged.
[0039] In addition, an oil guiding auxiliary structure is arranged at the end part of the outer side of the diversion pipe body 504. The oil guiding auxiliary structure includes a flow hole body 601 and an auxiliary brush 602; the other end of the diversion pipe body 504 is evenly provided with flow hole bodies 601, and an auxiliary brush 602 is arranged at the side position of the flow hole bodies 601. That is, the flow hole bodies 601 arranged can make the lubricating oil liquid flow slowly, avoid excessive inflow at one time, cause the overflow of the lubricating oil liquid and avoid waste; furthermore, the arranged auxiliary brush 602 can provide a uniform coating effect for the lubricating oil on the inner ring and the ball position of the auxiliary bearing 13. On the one hand, with the operation of the auxiliary bearing 13, when the lubricating oil flowing out from the flow hole bodies 601 passes through the position of the auxiliary brush 602, the auxiliary brush 602 coats the lubricating oil on the inner ring and the ball of the auxiliary bearing 13; on the other hand, for the lubricating oil that has reached the inner ring and the ball of the auxiliary bearing 13, when the auxiliary bearing 13 is running, the auxiliary brush 602 can also perform a simple uniform coating work on the lubricating oil, so as to achieve a better lubricating effect.
[0040] The hopper-shaped cover 505 connected to one end of the diversion pipe body 504 and the auxiliary spring 506 arranged outside the hopper-shaped cover 505 are used to provide a flexible contact effect when the diversion pipe body 504 contacts the auxiliary bearing 13. When the diversion pipe body 504 contacts the auxiliary bearing 13, it can make the lubricating oil reach the auxiliary bearing 13 better. However, the auxiliary bearing 13 during operation may generate relatively large friction with the diversion pipe body 504. The purpose of the auxiliary spring 506 is to minimize the frictional damage caused by the contact between the two.
[0041] When the lubricating oil in the oil storage rubber cylinder 401 is used up, on the one hand, the sealing cap body 402 at one end of the oil storage rubber cylinder 401 can be removed to add the lubricating oil liquid, and after the addition is completed, the sealing cap body 402 is used to clamp and seal the oil storage rubber cylinder 401. It can also be filled through the filling cavity opening 404 in the sealing cap body 402, that is, a syringe of the needle tube type is inserted into the filling cavity opening 404 to fill the lubricating oil liquid. The purpose of setting the elastic retaining piece 405 on the inner side wall of the filling cavity opening 404 and setting the auxiliary mesh holes 406 in the elastic retaining piece 405 is to provide a simple protection effect for the open filling cavity opening 404 to prevent external dust and impurities from entering through the filling cavity opening 404, and to provide a certain degree of convenience for the filling of the lubricating oil liquid to a certain extent.
[0042] If the lubricating oil liquid overflows from the gap between the bearing plate body 301 and the power shaft 12, in this solution, the overflow is prevented by the set collection component, that is, the bearing plate body 301 is connected to the collection component. The collection component includes an anti-overflow annular groove body 701, a drainage channel 702, an internal thread connecting pipe head 703, an external thread docking pipe head 704, and a collection bottle body 705. The anti-overflow annular groove body 701 is arranged in the inner side wall of the inner circle of the bearing plate body 301, and the end face shape of the anti-overflow annular groove body 701 is set as a V shape. The drainage channel 702 is arranged in the bearing plate body 301, and one end of the drainage channel 702 is communicated with the anti-overflow annular groove body 701. The other end of the drainage channel 702 extends to the side wall of the bearing plate body 301 and is communicated with the internal thread connecting pipe head 703. The internal thread connecting pipe head 703 is fixedly arranged on the side wall of the bearing plate body 301, and the internal thread connecting pipe head 703 is threadedly connected with the external thread docking pipe head 704 in a matching manner. The external thread docking pipe head 704 is fixedly arranged at the bottle mouth position of the collection bottle body 705.
[0043] When the overflowing lubricating oil passes through the anti-overflow annular groove 701 inside the bearing disc body 301, the anti-overflow annular groove 701 has a truncating effect on the overflowing lubricating oil at this time. And the truncated lubricating oil is diverted towards the bottom in the anti-overflow annular groove 701, and then continues to flow downward when it reaches the drainage channel 702, and finally flows into the collection bottle body 705 for collection. That is, the problem of lubricating oil leakage is avoided, and the overflowing lubricating oil also has a corresponding collection function, and the collected lubricating oil can also be reused. That is, the externally threaded docking pipe head 704 can be inserted into the filling cavity port 404 in the sealing cap body 402. That is, the collection bottle body 705 storing the lubricating oil is removed, and then the externally threaded docking pipe head 704 at the bottle mouth of the collection bottle body 705 is inserted into the filling cavity port 404, so that the lubricating oil in the collection bottle body 705 flows into the oil storage rubber cylinder 401. After the filling is completed, the collection bottle body 705 can be reinstalled and connected to the internally threaded connection pipe head 703 at the bottom side of the bearing disc body 301.
[0044] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A lubricating bearing component for a textile device, comprising a dobby main body (1) and a swing arm member (11) arranged in the dobby main body (1). A power shaft (12) is also connected and arranged in the dobby main body (1), and one end of the power shaft (12) extends to the outside of the dobby main body (1). An auxiliary bearing (13) is arranged at the connection position between the power shaft (12) and the side wall of the dobby main body (1), and the power shaft (12) is arranged through the auxiliary bearing (13). It is characterized in that: An installation threaded groove body (2) is arranged on the outer side wall of the dobby main body (1) at the connection position between the power shaft (12) and the auxiliary bearing (13), and the installation threaded groove body (2) is connected to a lubrication auxiliary component.
2. The lubricating bearing component for a textile device according to claim 1, characterized in that: The lubrication auxiliary component includes a bearing disc body (301), a sealing rubber gasket body (302), an installation threaded through groove (303), a positioning screw (304), a loading cavity (305), an oil storage component and an auxiliary component. A sealing rubber gasket body (302) is fixedly arranged on one side of the bearing disc body (301), and installation threaded through grooves (303) are symmetrically arranged in the bearing disc body (301) and extend into the sealing rubber gasket body (302). The bearing disc body (301) is adaptively sleeved on the power shaft (12), and the side of the bearing disc body (301) provided with the sealing rubber gasket body (302) is closely attached to the side wall of the dobby main body (1). The positioning screw (304) is in threaded connection with the installation threaded through groove (303) and is also in threaded connection with the installation threaded groove body (2) on the side wall of the dobby main body (1).
3. The lubricating bearing component for a textile device according to claim 2, characterized in that: A loading cavity (305) is arranged in the bearing disc body (301), and the loading cavity (305) is arranged obliquely in the bearing disc body (301). One end of the loading cavity (305) extends into the sealing rubber gasket body (302), and an oil storage component is arranged in the loading cavity (305).
4. The lubricating bearing component for a textile device according to claim 2, characterized in that: The oil storage component includes an oil storage rubber cylinder (401), a sealing cap body (402), an installation snap ring (403), a filling cavity port (404), an elastic retaining piece (405) and an auxiliary mesh hole (406). The oil storage rubber cylinder (401) is adaptively inserted and arranged in the loading cavity (305), and the number of sets of the oil storage rubber cylinder (401) and the loading cavity (305) is the same. Both the front end and the rear end of the oil storage rubber cylinder (401) are provided with openings.
5. The lubricating bearing component for a textile device according to claim 4, characterized in that: A sealing cap body (402) is connected to the front end opening of the oil storage rubber cylinder (401), and an installation snap ring (403) is fixedly arranged on the inner side of the sealing cap body (402). The installation snap ring (403) is adaptively clamped with the front end opening of the oil storage rubber cylinder (401).
6. The lubricating bearing component for a textile device according to claim 4, characterized in that: A filling cavity port (404) is arranged through the sealing cap body (402), an elastic retaining piece (405) is arranged on the inner side wall of the filling cavity port (404), the elastic retaining piece (405) is arranged in a fan shape, and auxiliary mesh holes (406) are evenly arranged in the elastic retaining piece (405).
7. The lubricating bearing component for a textile device according to claim 4, characterized in that: An auxiliary component is arranged at the open end of the oil storage rubber cylinder (401). The auxiliary component includes an internal thread connection groove (501), an external thread connection ring (502), a tail end cap body (503), a diversion pipe body (504), a hopper-shaped cover (505), an auxiliary spring (506) and an oil guiding auxiliary structure. The internal thread connection groove (501) is arranged on the inner side wall of the open end of the oil storage rubber cylinder (401), and the internal thread connection groove (501) is threadedly connected with the external thread connection ring (502) in a matching manner. The external thread connection ring (502) is fixedly arranged at the cap opening position of the tail end cap body (503). One end of the tail end cap body (503) is open, and the other end is blocked. The open end is the cap opening.
8. The lubricating bearing component for a textile device according to claim 7, characterized in that: A diversion pipe body (504) is movably inserted into the tail end cap body (503). One end of the diversion pipe body (504) extends into the tail end cap body (503), and the end is connected to the hopper-shaped cover (505). The hopper-shaped cover (505) is communicated with the diversion pipe body (504). The hopper-shaped cover (505) is movably arranged in the tail end cap body (503), and the outer side of the cover opening of the hopper-shaped cover (505) is in contact with the inner side wall of the tail end cap body (503). The outer side wall of the hopper-shaped cover (505) is fixedly provided with auxiliary springs (506) at equal intervals. The other ends of the auxiliary springs (506) are fixedly arranged on the inner side wall of the tail end cap body (503). The pipe orifice of the diversion pipe body (504) extending outside the tail end cap body (503) corresponds to the position where the ball is arranged in the auxiliary bearing (13).
9. The lubricating bearing component for a textile device according to claim 7, characterized in that: The other end of the diversion pipe body (504) extends outside the tail end cap body (503), and an oil guiding auxiliary structure is arranged at the end. The oil guiding auxiliary structure includes a circulation hole body (601) and an auxiliary brush (602). The other end of the diversion pipe body (504) is uniformly provided with circulation hole bodies (601), and an auxiliary brush (602) is arranged at the side of the circulation hole body (601).
10. The lubricating bearing component for a textile device according to claim 2, characterized in that: The carrier plate body (301) is connected to the collection assembly. The collection assembly includes an anti-overflow annular groove body (701), a drainage channel (702), an internally threaded connecting pipe head (703), an externally threaded docking pipe head (704), and a collection bottle body (705). The anti-overflow annular groove body (701) is arranged in the inner ring side wall of the carrier plate body (301), and the end face shape of the anti-overflow annular groove body (701) is set as a V shape. The drainage channel (702) is arranged in the carrier plate body (301), and one end of the drainage channel (702) is communicated with the anti-overflow annular groove body (701). The other end of the drainage channel (702) extends into the side wall of the carrier plate body (301) and is communicated with the internally threaded connecting pipe head (703). The internally threaded connecting pipe head (703) is fixedly arranged on the side wall of the carrier plate body (301), and the internally threaded connecting pipe head (703) is threadedly connected with the externally threaded docking pipe head (704) in a matching manner. The externally threaded docking pipe head (704) is fixedly arranged at the bottle mouth position of the collection bottle body (705).