A cleaning device for the sprocket of a textile machine
By setting the functions of rotation, sliding up and down and shaking on the placement seat of the textile machine sprocket cleaning equipment, the problem of low cleaning efficiency caused by small movement of the sprocket in the ultrasonic cleaning tank is solved, and the sprocket is more thoroughly cleaned and the cleaning efficiency and quality are improved.
Patent Information
- Application Number
- CN202411829262.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2044-12-12
AI Technical Summary
When the existing textile machine sprocket cleaning equipment puts the sprocket into the ultrasonic cleaning tank, the sprocket only moves slightly, resulting in low cleaning efficiency, especially the sprocket's dead corners are difficult to thoroughly clean, affecting the cleaning effect.
A sprocket cleaning equipment for textile machine is designed. By setting the functions of rotation, sliding up and down and shaking on the placement seat, the sprocket can move in multiple directions in the ultrasonic cleaning tank, thereby increasing the contact area and frequency with the cleaning liquid.
Through multi-directional movement, the cleaning efficiency and quality of the sprocket is significantly improved, ensuring that all parts of the sprocket, including dead corners, can be thoroughly cleaned, and the performance of the cleaning equipment is improved.
Smart Images

Figure CN119327802B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of sprocket cleaning, and specifically to a cleaning device for textile machine sprockets. Background Art
[0002] The textile machinery industry, as an important part of modern industry, its efficient and stable operation is crucial for textile production. In textile machinery, sprockets, as key transmission components, are connected to motors or other power sources through chains to achieve power transmission and motion conversion. However, during long-term operation, impurities such as cotton fluffs, dust, and oil stains are likely to adhere to the surface of the sprockets. These impurities not only increase the wear and failure rate of the sprockets but also affect the transmission efficiency and accuracy of the sprockets, thereby having an adverse impact on the stability and efficiency of the entire textile production line. These cleaning devices adopt advanced cleaning technologies and methods, which can efficiently and conveniently remove the impurities on the surface of the sprockets. Specifically, textile machine sprocket cleaning devices may adopt physical cleaning methods such as brushing and spraying, and wash away the impurities on the sprocket surface through mechanical force or fluid power; they may also adopt chemical cleaning methods, using specific cleaning agents to dissolve or decompose the dirt on the sprocket surface. In addition, with the development of intelligent technologies, some high-end textile machine sprocket cleaning devices also have intelligent functions, which can automatically monitor the cleaning status of the sprockets and perform cleaning as needed, greatly improving the cleaning efficiency and accuracy.
[0003] In the existing cleaning device for textile machine sprockets, when the sprocket is put into the ultrasonic cleaning tank for cleaning, after being put in, the sprocket may only move slightly, resulting in insufficient contact between the sprocket and the cleaning liquid. This will reduce the cleaning efficiency of the sprocket and make it difficult to thoroughly clean the dead corners of the sprocket, thus affecting the cleaning effect of the sprocket. Therefore, it does not meet the existing requirements, and for this reason, we propose a cleaning device for textile machine sprockets. Summary of the Invention
[0004] The present invention provides a cleaning device for textile machine sprockets, which has the beneficial effect that when the sprocket is put into the ultrasonic cleaning tank for cleaning, it can drive the placement seat for placing the sprocket to rotate, and at the same time, the placement seat can move up and down and shake, so that the sprocket can be cleaned more thoroughly. This solves the problem mentioned in the above background art that when the sprocket is put into the ultrasonic cleaning tank for cleaning, after being put in, the sprocket may only move slightly, resulting in insufficient contact between the sprocket and the cleaning liquid, reducing the cleaning efficiency of the sprocket and making it difficult to thoroughly clean the dead corners of the sprocket, thus affecting the cleaning effect of the sprocket.
[0005] The present invention provides the following technical solutions: a sprocket cleaning device for a textile machine comprises a processing table, a mounting block is arranged on the processing table, a first sliding track is arranged on one side of the mounting block, a second sliding track is arranged on one side of the first sliding track, a first sliding ball is slidably connected in the first sliding track, a sliding square tube is fixedly connected on one side of the first sliding ball, one end of the sliding square tube is rotatably connected to a rotating circular tube, one end of the rotating circular tube is slidably connected to a supporting slide seat, a third spring is arranged between the supporting slide seat and the rotating circular tube, one end of the supporting slide seat is rotatably connected to a placing seat, a rotating gear is arranged on a rotating shaft rotatably connected to the placing seat and the supporting slide seat, a plurality of placing blocks are arranged at one end of the placing seat, and a round rod for limiting the position of the sprocket is arranged on the placing block;
[0006] The second sliding track is internally slidably connected with a second sliding ball, one side of the second sliding ball is fixedly connected with a resistance core rod, the resistance core rod passes through the internal sliding square tube and the rotating circular tube for internal sliding connection, one end of the resistance core rod is provided with a sliding rod, the sliding rod outer sleeve is provided with a first spring, one end of the first spring is fixedly connected to the resistance core rod, the other end of the first spring is fixedly connected to the sliding seat, one end of the sliding rod is provided with a sliding rack, the sliding rack is used to mesh with the rotating gear.
[0007] As an optional solution for a textile machine sprocket cleaning device described in the present invention, a second rack is provided on one side of the mounting block, the second rack is located on one side of the first sliding track, and the first sliding track is located between the second rack and the second sliding track.
[0008] As an optional solution for a sprocket cleaning device for a textile machine described in the present invention, a transmission gear is provided at one end of the rotating circular tube, and the transmission gear is used to mesh with the second rack.
[0009] As an optional solution for a textile machine sprocket cleaning device described in the present invention, a sliding groove is provided on the lower side of the mounting block, a first rack is provided on one side of the sliding groove, a sliding seat is slidably connected in the sliding groove, the sliding groove is used to limit the sliding position of the sliding seat, a power motor is installed on the sliding seat, a power output end of the power motor is fixedly connected to a power gear, and the power gear is used to mesh with the first rack.
[0010] As an optional solution for a textile machine sprocket cleaning device described in the present invention, a resistance sleeve is provided on one side of the sliding seat, the resistance sleeve is sleeved on a rotating circular tube, the inner side of the resistance sleeve is rotatably connected to the rotating circular tube, and the resistance sleeve is used to drive the rotating circular tube to slide.
[0011] As an alternative solution for the textile machine sprocket cleaning device of the present invention, wherein: a limiting chute is provided on the round rod, a pair of sliding inclined blocks are slidably arranged in the limiting chute, the inclined surfaces of the sliding inclined blocks are used to abut against the round holes of the sprocket, a second spring is arranged between the two sliding inclined blocks, and the second spring is installed in the limiting chute.
[0012] As an alternative solution for the textile machine sprocket cleaning device of the present invention, wherein: the first sliding track includes a first inclined rail, a first horizontal rail and a second inclined rail, and the first inclined rail, the first horizontal rail and the second inclined rail are interconnected.
[0013] As an alternative solution for the textile machine sprocket cleaning device of the present invention, wherein: the second sliding track includes a third inclined rail, a wavy slide rail and a fourth inclined rail, and the third inclined rail, the wavy slide rail and the fourth inclined rail are interconnected.
[0014] As an alternative solution for the textile machine sprocket cleaning device of the present invention, wherein: an ultrasonic cleaning tank is provided on the processing table, the ultrasonic cleaning tank is located below the second rack, and the ultrasonic cleaning tank is used to clean the sprocket.
[0015] The present invention has the following beneficial effects:
[0016] 1. For the textile machine sprocket cleaning device, by combining with the ultrasonic cleaning tank and utilizing the strong penetration and cavitation effect of ultrasonic waves, stubborn dirt and oil stains on the surface of the sprocket are effectively removed, improving the cleaning efficiency and quality. By driving multiple sprockets to rotate in the ultrasonic cleaning tank through the placement seat, the sprockets can be cleaned more thoroughly.
[0017] 2. For the textile machine sprocket cleaning device, while the placement seat drives the sprocket to rotate, through the driving of the sliding rack by the abutting core rod against the rotating gear, while the placement seat rotates, one end of the placement seat can drive the sprocket to slide up and down and swing at the same time. By driving one end of the placement seat to swing while the placement seat rotates, the sprocket can be cleaned more thoroughly. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0019] Figure 2 It is a schematic diagram of the sliding seat structure of the present invention.
[0020] Figure 3 It is a schematic diagram of the sliding groove structure of the present invention.
[0021] Figure 4 It is a schematic diagram of the overall sectional structure of the present invention.
[0022] Figure 5 For the present invention Figure 4 Schematic diagram of the enlarged structure at position A in
[0023] Figure 6 For the present invention Figure 4 Schematic diagram of the enlarged structure at position B in
[0024] Figure 7 Schematic diagram of the swinging structure of the placement seat of the present invention
[0025] Figure 8 For the present invention Figure 7 Schematic diagram of the enlarged structure at position C in
[0026] In the figure: 1, processing table; 11, mounting block; 12, first sliding track; 121, first inclined track; 122, first horizontal track; 123, second inclined track; 13, second sliding track; 131, third inclined track; 132, wave slide rail; 133, fourth inclined track; 14, sliding groove; 2, first sliding ball; 21, sliding square tube; 22, rotating round tube; 23, transmission gear; 24, abutting core rod; 25, second sliding ball; 26, first spring; 27, sliding rod; 28, sliding rack; 29, placement seat; 210, rotating gear; 211, placement block; 212, supporting sliding seat; 213, third spring; 3, sliding seat; 31, abutting sleeve; 32, power motor; 33, power gear; 34, first rack; 35, second rack; 4, round rod; 41, sliding inclined block; 42, second spring; 43, limiting sliding groove; 5, ultrasonic cleaning tank; 6, sprocket wheel. Specific embodiments
[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.
[0028] Example 1, please refer to Figures 1 - 8The present invention discloses a sprocket cleaning device for a textile machine, comprising a processing table 1, a mounting block 11 is arranged on the processing table 1, a first sliding track 12 is arranged on one side of the mounting block 11, a second sliding track 13 is arranged on one side of the first sliding track 12, a first sliding ball 2 is slidably connected in the first sliding track 12, a sliding square tube 21 is fixedly connected on one side of the first sliding ball 2, one end of the sliding square tube 21 is rotatably connected to a rotating circular tube 22, a supporting slide 212 is slidably connected inside one end of the rotating circular tube 22, a third spring 213 is arranged between the supporting slide 212 and the rotating circular tube 22, one end of the supporting slide 212 is rotatably connected to a placing seat 29, a rotating gear 210 is arranged on a rotating shaft rotatably connected to the placing seat 29 and the supporting slide 212, a plurality of placing blocks 211 are arranged at one end of the placing seat 29, and a round rod 4 for limiting the position of a sprocket 6 is arranged on the placing block 211;
[0029] The second sliding track 13 is internally slidably connected with a second sliding ball 25, and one side of the second sliding ball 25 is fixedly connected with a resistance core rod 24, which passes through the internal sliding connection of the sliding square tube 21 and the rotating circular tube 22, and a sliding rod 27 is provided at one end of the resistance core rod 24, and a first spring 26 is covered on the sliding rod 27, one end of the first spring 26 is fixedly connected to the resistance core rod 24, and the other end of the first spring 26 is fixedly connected to the supporting slide 212, and a sliding rack 28 is provided at one end of the sliding rod 27, and the sliding rack 28 is used to mesh with the rotating gear 210.
[0030] A second rack 35 is disposed on one side of the mounting block 11 . The second rack 35 is located on one side of the first sliding track 12 . The first sliding track 12 is located between the second rack 35 and the second sliding track 13 .
[0031] A transmission gear 23 is disposed at one end of the rotating circular tube 22 , and the transmission gear 23 is used for meshing and connecting with the second rack 35 .
[0032] A sliding groove 14 is provided on the lower side of the mounting block 11, a first rack 34 is provided on one side of the sliding groove 14, a sliding seat 3 is slidably connected in the sliding groove 14, the sliding groove 14 is used to limit the sliding position of the sliding seat 3, a power motor 32 is installed on the sliding seat 3, a power output end of the power motor 32 is fixedly connected with a power gear 33, and the power gear 33 is used to mesh with the first rack 34.
[0033] A resistance sleeve 31 is provided on one side of the sliding seat 3. The resistance sleeve 31 is sleeved on the rotating circular tube 22. The inner side of the resistance sleeve 31 is rotatably connected to the rotating circular tube 22. The resistance sleeve 31 is used to drive the rotating circular tube 22 to slide.
[0034] A limiting chute 43 is formed in the round rod 4. A pair of sliding inclined blocks 41 are slidably arranged in the limiting chute 43. The inclined surfaces of the sliding inclined blocks 41 are used to abut against the round holes of the sprocket 6. A second spring 42 is arranged between the two sliding inclined blocks 41, and the second spring 42 is installed in the limiting chute 43.
[0035] The first sliding track 12 includes a first inclined track 121, a first horizontal track 122 and a second inclined track 123, and the first inclined track 121, the first horizontal track 122 and the second inclined track 123 are communicated with each other.
[0036] The second sliding track 13 includes a third inclined track 131, a wave-shaped slide rail 132 and a fourth inclined track 133, and the third inclined track 131, the wave-shaped slide rail 132 and the fourth inclined track 133 are communicated with each other.
[0037] An ultrasonic cleaning tank 5 is arranged on the processing table 1. The ultrasonic cleaning tank 5 is located below the second rack 35, and the ultrasonic cleaning tank 5 is used to clean the sprocket 6.
[0038] In the existing cleaning equipment for the sprocket 6 of a textile machine, when the sprocket 6 is put into the ultrasonic cleaning tank 5 for cleaning, after being put in, the sprocket 6 may only move slightly, so that the sprocket 6 does not come into contact with the cleaning liquid enough, which will result in low cleaning efficiency of the sprocket 6. At the same time, it is difficult to thoroughly clean the dead corners of the sprocket 6, thus affecting the cleaning effect of the sprocket 6; the cleaning equipment for the sprocket 6 of a textile machine provided by this solution can drive the placing seat 29 for placing the sprocket 6 to rotate and at the same time make the placing seat 29 shake when the sprocket 6 is put into the ultrasonic cleaning tank 5 for cleaning, so that the dead corners where the sprocket 6 is difficult to be cleaned can also come into contact with the cleaning liquid, making the sprocket 6 cleaner in the ultrasonic cleaning tank 5; the processing table 1 provides a stable working platform for various processing operations, ensuring the smooth progress of the cleaning process. At the same time, the stable working platform helps to reduce the shaking of the equipment; the mounting block 11 provides stable support for structures such as the first sliding track 12, the second sliding track 13, the sliding groove 14, the first rack 34 and the second rack 35, providing a basis for the stable operation of the equipment; the ultrasonic cleaning tank 5 uses the explosion of tiny bubbles generated by high-frequency sound wave vibration to clean dirt, grease and other impurities on the surface of the sprocket 6, with high-efficiency and thorough cleaning effects. By thoroughly cleaning the dirt and impurities on the surface of the sprocket 6, the ultrasonic cleaning tank 5 helps to improve the quality and appearance of the sprocket 6;
[0039] First, place the sprocket 6 on the round rod 4 of the placement block 211, and insert the round rod 4 into the round hole of the sprocket 6 so that the round hole of the sprocket 6 contacts the inclined surface of the sliding inclined block 41 on the round rod 4, so that the sliding inclined blocks 41 on both sides slide in the limiting slide groove 43, and the sliding inclined blocks 41 shrink toward the middle, so that the round hole of the sprocket 6 can slide over the inclined surface of the sliding inclined block 41, so that the circular ring of the sprocket 6 can be sleeved on the round rod 4, and the design of the limiting slide groove 43 allows the sliding inclined block 41 to slide, and the sliding inclined block 41 will not be separated from the limiting slide groove 43, and at the same time, under the action of the second spring 42, the sliding inclined block 41 can be expanded under the action of the second spring 42 after not being contacted by the round hole of the sprocket 6, so It can prevent the sprocket 6 from falling into the ultrasonic cleaning tank 5 when it is driven into the ultrasonic cleaning tank 5, thereby delaying the subsequent processing of the sprocket 6; at the same time, the diameter of the round rod 4 is smaller than the diameter of the circular hole of the sprocket 6, and after the sprocket 6 is placed, there is still a certain gap between the sprocket 6 and the sliding inclined block 41. Through such a design, when the sprocket 6 is subsequently cleaned, through shaking and rotation, all surfaces and hard-to-reach corners of the sprocket 6 can contact with the cleaning liquid in the ultrasonic cleaning tank 5. At the same time, the rotation and shaking of the sprocket 6 driven by the placement seat 29 can make all surfaces and corners of the sprocket 6 fully contact with the cleaning liquid in the ultrasonic cleaning tank 5, so that the sprocket 6 can be cleaned more thoroughly;
[0040] A plurality of placement blocks 211 are provided on the placement base 29. With such a design, multiple sprockets 6 can be cleaned at one time, which can improve the cleaning efficiency of the equipment to a certain extent and improve the working efficiency of the equipment. After the sprockets 6 are placed, the power motor 32 is started. The driving of the power motor 32 enables the power gear 33 to rotate. While the power gear 33 rotates, the engagement of the power gear 33 with the first rack 34 enables the sliding seat 3 to slide in the sliding groove 14. Through the design of the sliding groove 14, the sliding seat 3 can stably slide under the mounting block 11. At the same time, through the design of the sliding groove 14, the sliding seat 3 can slide stably, preventing the sliding seat 3 from shifting and shaking during the sliding process. While the sliding seat 3 slides, it can drive the abutting sleeve 31 to slide together. While the abutting sleeve 31 slides, it can drive the rotating round tube 22 to slide together. Through the design of the abutting sleeve 31 sleeved on the rotating round tube 22, during the process of the abutting sleeve 31 driving the rotating round tube 22 to slide, the rotating round tube 22 will not swing or one end lift up, enabling the rotating round tube 22 to slide smoothly. While the rotating round tube 22 slides, it can drive the sliding square tube 21 to slide together. Through the square design of the sliding square tube 21, when one end of the sliding square tube 21 slides in the first sliding track 12, the clamping of the first sliding track 12 can prevent the sliding square tube 21 from rotating, enabling the sliding square tube 21 to slide smoothly. It should be noted that the abutting core rod 24 passes through the sliding square tube 21, which will not affect the subsequent rotation of the abutting core rod 24 inside the sliding square tube 21. At the same time, while the sliding square tube 21 slides, it can drive the first sliding ball 2 to slide in the first sliding track 12. Through the design of the first sliding ball 2, the first sliding ball 2 can slide stably when sliding in the first sliding track 12, preventing the first sliding ball 2 from getting stuck in the first sliding track 12;
[0041] The sliding square tube 21 and the rotating circular tube 22 can drive the abutting core rod 24 to slide together while sliding. While the abutting core rod 24 slides, it can drive the second sliding ball 25 to slide within the second sliding track 13. At the same time, through the design of the abutting core rod 24 sliding within the sliding square tube 21 and the rotating circular tube 22, during the sliding process of the abutting core rod 24, there will be no swinging or shaking; as the abutting sleeve 31 drives the sliding of the rotating circular tube 22, the sliding square tube 21, and the first sliding ball 2, when the transmission gear 23 on the rotating circular tube 22 slides to mesh with the second rack 35, at this time, the sprocket 6 has already submerged into the liquid in the ultrasonic cleaning tank 5. Through the transmission gear 23, the rotating circular tube 22 can be driven to rotate. At the same time, the abutting core rod 24 is designed as a square, so that the abutting core rod 24 can always rotate with the rotating circular tube 22, making the abutting core rod 24 and the rotating circular tube 22 in a relatively static state. It should be noted that there is a certain gap between the abutting core rod 24 and the first sliding ball 2, allowing the abutting core rod 24 to slide and rotate normally within the first sliding ball 2. When the rotating circular tube 22 rotates, it will drive the placing seat 29 to rotate together. Through the rotation of the placing seat 29, multiple placing blocks 211 at one end of the placing seat 29 and the sprocket 6 on the placing blocks 211 can rotate together. By driving the rotation of the sprocket 6 within the ultrasonic cleaning tank 5 and driving the rotation of the sprocket 6 through the placing seat 29, it will drive the cleaning liquid to flow on the surface of the sprocket 6, thereby forming a stronger scouring force on the surface of the sprocket 6, which helps to clean the sprocket 6 and can also quickly carry away the dirt washed off from the sprocket 6, preventing the dirt from reattaching to the surface of the sprocket 6;
[0042] At the same time, the abutting core rod 24 passes through the middle of the first sliding ball 2 and the sliding square tube 21, and the abutting core rod 24 does not contact the interiors of the first sliding ball 2 and the sliding square tube 21, so that the subsequent rotation process of the abutting core rod 24 will not be affected by the first sliding ball 2 and the sliding square tube 21. At the same time, the abutting core rod 24 is slidably connected to the interior of the rotating circular tube 22. Coupled with the square design of the abutting core rod 24, when the rotating circular tube 22 rotates, it can drive the abutting core rod 24 to rotate together; at the same time, the sliding rod 27 is also designed as a square, so that when the abutting core rod 24 drives the sliding rod 27 to rotate, the sliding rod 27 can also drive the supporting sliding seat 212 to rotate together. Through this design, each structure within the rotating circular tube 22 can also be in a relatively static state during the rotation process, thus not affecting the subsequent up and down sliding and swinging of driving the placing seat 29;
[0043] With the sliding of the rotation tube 22 driven by the abutting sleeve 31, when the abutting sleeve 31 drives the first sliding ball 2 to slide to the end of the first inclined rail 121 and the abutting sleeve 31 drives the second sliding ball 25 to slide to the end of the third inclined rail 131, at this time, the rotation tube 22 drives the placement seat 29 to move the sprocket 6 into the ultrasonic cleaning tank 5. At the same time, as the abutting sleeve 31 continues to slide, when it drives the first sliding ball 2 to slide from the first inclined rail 121 into the first horizontal rail 122, at this time, the second sliding ball 25 also slides from the third inclined rail 131 into the wave-shaped slide rail 132. When the second sliding ball 25 slides to the lowest point of the wave-shaped slide rail 132, at this time, the second sliding ball 25 drives the abutting core rod 24 to slide in the sliding square tube 21 and the rotation tube 22, so that when the abutting core rod 24 slides, it abuts against the first spring 26. It should be noted that the first spring 26 requires a relatively large abutting force to cause deformation. At this time, the first spring 26 pushes the supporting sliding seat 212 to slide in the rotation tube 22. When the supporting sliding seat 212 slides, the third spring 213 deforms. When the supporting sliding seat 212 slides to the protrusion on the inner wall of the rotation tube 22 and cannot slide any further, at this time, as the abutting core rod 24 continues to slide downward, at this time, the abutting core rod 24 starts to squeeze the first spring 26 to make it deform, so that the sliding rod 27 at one end of the abutting core rod 24 drives the sliding rack 28 to drive the rotating gear 210 on the rotating shaft of the placement seat 29, so that the rotating gear 210 drives the rotating shaft and the placement seat 29 to swing. Through the up-and-down sliding and swinging of the placement seat 29, the sprocket 6 can rotate with the placement seat 29 while also being able to slide up and down and swing. At the same time, through the design of the first spring 26 and the third spring 213, the placement seat 29 first slides up and down and then swings. At the same time, through the design of the wave-shaped slide rail 132, the placement seat 29 can drive the sprocket 6 to perform up-and-down sliding and swinging actions multiple times. Through such a design, the sprocket 6 can come into contact with more cleaning liquid, and the surface, side, and hard-to-reach corners of the sprocket 6 can be more frequently exposed to the cleaning liquid, thereby increasing the cleaning area, helping to remove more dirt and impurities. At the same time, the up-and-down sliding and shaking actions can accelerate the flow of the cleaning liquid around the sprocket 6, forming a stronger scouring force. The combination of rotation, shaking, and ultrasonic cleaning can further improve the cleaning efficiency. The vibration of the ultrasonic wave and the mechanical actions of rotation and shaking complement each other and act together on the surface of the sprocket 6 to make the cleaning of the sprocket 6 more thorough;
[0044] When the abutment sleeve 31 drives the first sliding ball 2 to slide into the second inclined rail 123, and the second sliding ball 25 to slide into the fourth inclined rail 133, the placement seat 29 and the sprocket 6 on the placement seat 29 are driven out of the ultrasonic cleaning tank 5 by rotating the circular tube 22. At this time, the sprocket 6 has been cleaned. When the sprocket 6 is cleaned, it is only necessary to squeeze the protrusion of the sliding inclined block 41 so that the two sliding inclined blocks 41 slide toward the middle in the limiting slide groove 43, and the sliding inclined block 41 is contracted to remove the cleaned sprocket 6.
[0045] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0046] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. A sprocket cleaning device for a textile machine, comprising a processing table (1), characterized in that: The processing table (1) is provided with a mounting block (11), a first sliding track (12) is provided on one side of the mounting block (11), a second sliding track (13) is provided on one side of the first sliding track (12), a first sliding ball (2) is slidably connected inside the first sliding track (12), a sliding square tube (21) is fixedly connected to one side of the first sliding ball (2), one end of the sliding square tube (21) is rotatably connected to a rotating circular tube (22), and the internal sliding of one end of the rotating circular tube (22) A support slide (212) is connected, a third spring (213) is provided between the support slide (212) and the rotating circular tube (22), one end of the support slide (212) is rotatably connected to a placement seat (29), a rotating gear (210) is provided on a rotating shaft rotatably connected to the placement seat (29) and the support slide (212), a plurality of placement blocks (211) are provided at one end of the placement seat (29), and a round rod (4) for limiting the position of the sprocket (6) is provided on the placement block (211); The second sliding track (13) is internally slidably connected to a second sliding ball (25), one side of the second sliding ball (25) is fixedly connected to a resisting core rod (24), the resisting core rod (24) passes through the sliding square tube (21) and the rotating circular tube (22) for internal slidable connection, one end of the resisting core rod (24) is provided with a sliding rod (27), the sliding rod (27) is covered with a first spring (26), one end of the first spring (26) is fixedly connected to the resisting core rod (24), the other end of the first spring (26) is fixedly connected to the supporting slide seat (212), one end of the sliding rod (27) is provided with a sliding rack (28), the sliding rack (28) is used for meshing connection with the rotating gear (210).
2. The sprocket cleaning device for a textile machine according to claim 1, characterized in that: A second rack (35) is provided on one side of the mounting block (11); the second rack (35) is located on one side of the first sliding track (12); and the first sliding track (12) is located between the second rack (35) and the second sliding track (13).
3. The sprocket cleaning device for a textile machine according to claim 2, characterized in that: A transmission gear (23) is provided at one end of the rotating circular tube (22), and the transmission gear (23) is used to mesh with the second rack (35).
4. The sprocket cleaning device for a textile machine according to claim 1, characterized in that: A sliding groove (14) is provided on the lower side of the mounting block (11), a first rack (34) is provided on one side of the sliding groove (14), a sliding seat (3) is slidably connected in the sliding groove (14), the sliding groove (14) is used to limit the sliding position of the sliding seat (3), a power motor (32) is installed on the sliding seat (3), a power output end of the power motor (32) is fixedly connected to a power gear (33), and the power gear (33) is used to mesh with the first rack (34).
5. The sprocket cleaning device for a textile machine according to claim 4, characterized in that: A resistance sleeve (31) is provided on one side of the sliding seat (3); the resistance sleeve (31) is sleeved on the rotating circular tube (22); the inner side of the resistance sleeve (31) is rotatably connected to the rotating circular tube (22); and the resistance sleeve (31) is used to drive the rotating circular tube (22) to slide.
6. The sprocket cleaning device for a textile machine according to claim 1, characterized in that: The round rod (4) is provided with a limiting slide groove (43), a pair of sliding inclined blocks (41) are slidably arranged in the limiting slide groove (43), the inclined surfaces of the sliding inclined blocks (41) are used to abut against the round holes of the sprocket wheel (6), a second spring (42) is arranged between the two sliding inclined blocks (41), and the second spring (42) is installed in the limiting slide groove (43).
7. The sprocket cleaning device for a textile machine according to claim 1, characterized in that: The first sliding track (12) comprises a first inclined rail (121), a first transverse rail (122) and a second inclined rail (123), and the first inclined rail (121), the first transverse rail (122) and the second inclined rail (123) are connected to each other.
8. The sprocket cleaning device for a textile machine according to claim 1, characterized in that: The second sliding track (13) comprises a third inclined rail (131), a wave sliding rail (132) and a fourth inclined rail (133), and the third inclined rail (131), the wave sliding rail (132) and the fourth inclined rail (133) are connected to each other.
9. The sprocket cleaning device for a textile machine according to claim 1, characterized in that: An ultrasonic cleaning pool (5) is provided on the processing table (1), and the ultrasonic cleaning pool (5) is located below the second rack (35). The ultrasonic cleaning pool (5) is used to clean the sprocket (6).
Citation Information
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