Textile waste gas filtering device
By designing a combination of base, mounting base, filter cartridge and scraper mechanism, the clogging problem of textile waste gas filtration device is solved, achieving continuous filtration and efficient cleaning, and improving the operating efficiency and convenience of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-23
- Publication Date
- 2026-03-24
AI Technical Summary
Existing textile exhaust gas filtration devices are prone to clogging due to the adhesion of lint during use, resulting in reduced airflow and requiring a pause in exhaust to remove lint before restarting, thus failing to achieve continuous filtration.
A device comprising a base, mounting base, filter cartridge, sealing and bonding mechanism, airway switching mechanism, and anti-clogging and cleaning mechanism is designed. By switching the use of the filter cartridge and cleaning the inner wall with a scraper, continuous filtration and efficient cleaning are achieved.
It enables continuous filtration of textile waste gas, reduces the risk of clogging, improves work efficiency and ease of use, and ensures stable airflow.
Smart Images

Figure CN120695563B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of textile waste gas treatment, in particular to a textile waste gas wool and dust filtering treatment device. BACKGROUND
[0002] When processing textile products, wool and dust are often generated, such as processing the needle of high-elastic TPE material, in the finishing process, the waste gas contains a large amount of wool, fiber debris and dust, in order to reduce the pollution damage to the environment caused by the waste gas entering the air, the waste gas can be filtered.
[0003] Prior art 1 (application number CN202211041184.7, Chinese patent published on September 30, 2022) a kind of textile waste gas wool and dust filtering treatment device, including upper plate body and lower plate body, the center of the upper plate body is fixedly connected with air guide pipe, the output end of the air guide pipe is opposite the top of the lower plate body;A plurality of filtering assemblies are arranged between the upper plate body and the lower plate body, each filtering assembly is arranged in a ring around the center of the lower plate body, the filtering assembly includes at least two outer frame bodies, the present application sequentially sets a plurality of filtering assemblies from inside to outside, and further reduces the flow pressure of waste gas, so as to ensure that the cotton wool in the waste gas is filtered out, and compared with the prior art, after the waste gas is guided by the lower plate body, the waste gas flows axially outward, so as to not only reduce the gas pressure of the waste gas, but also make the waste gas flow uniformly to the filtering assembly, so as to ensure the uniformity of waste gas flow, so as to ensure the exhaust effect of waste gas, prior art 2 (application number CN202011433057.2, Chinese patent published on March 12, 2021) a kind of umbrella curtain self-off type textile waste gas filtering treatment device, belongs to the technical field of textile waste gas treatment, the present application sets up a plurality of bamboo joint type adsorption chains, when filtering waste gas, the end of the plurality of bamboo joint type adsorption chains is automatically gathered on the hammer by magnetic attraction, forming an inverted umbrella shape distribution, and the distribution state of the bamboo joint type adsorption chain is maintained by the sleeve, the textile waste gas passes through the plurality of bamboo joint type adsorption chains from outside to inside, realizes the filtering and adsorption of fiber pollutants, after filtering, the limiting of the sleeve to the bamboo joint type adsorption chain is disconnected, the bamboo joint type adsorption chain automatically changes from inverted umbrella shape to vertical distribution, the plurality of bamboo joint type adsorption chains are separated from each other, the fiber pollutants automatically fall off in the separation process, the distribution gap between adjacent bamboo joint type adsorption chains is expanded, and the adsorption and filtering effect of fiber pollutants is lost, under the action of water flow, the residual fiber pollutants automatically separate from the bamboo joint type adsorption chain, realizing self-cleaning.
[0004] The current filtering device is easy to cause the filter cotton to be blocked due to the adhesion of the lint when filtering the dust in the textile waste gas, the filtering structure is easy to be blocked, the airflow passing capacity is reduced, and the device cannot continuously filter the waste gas, thereby reducing the working efficiency and use convenience. SUMMARY
[0005] The present application provides a textile waste gas lint and dust filtering device to solve the problem that the filtering structure is easy to be blocked, the airflow passing capacity is reduced, and the device cannot continuously filter the waste gas.
[0006] To achieve the above object, the present application provides the following technical scheme: a textile waste gas lint and dust filtering device, comprising a base and a mounting seat arranged above the base, an air inlet is connected above the mounting seat, a mounting cover is arranged below the mounting seat, the mounting cover is symmetrically arranged about the center line of the base, a bottom is fixed below the mounting cover, a filter cartridge is arranged inside the mounting cover to intercept the lint and dust in the waste gas, a docking port is arranged at the rear side of the mounting cover, an exhaust mechanism is arranged at the rear side of the docking port to exhaust the filtered gas, an air inlet channel is connected below the air inlet, an air outlet is arranged below the air inlet channel, the air outlet is located above the filter cartridge, an air passage switching mechanism is arranged inside the air inlet channel to control the airflow direction, a positioning mechanism is arranged outside the mounting cover, and the mounting cover is connected with the base through the positioning mechanism.
[0007] Further optimization of the technical scheme, a sealing and fitting mechanism is arranged above the filter cartridge to fit the lower surface of the filter cartridge and the mounting seat.
[0008] Further optimization of the technical scheme, the sealing and fitting mechanism comprises a telescopic pipe, a fitting head and a first spring.
[0009] The telescopic pipe is fixed above the filter cartridge.
[0010] The fitting head is fixed above the telescopic pipe, and the outer side of the fitting head is designed in an inclined structure.
[0011] The first spring is arranged below the fitting head to provide an upward thrust for the fitting head.
[0012] To further optimize this technical solution, a slider is fixed below the base, and the base forms a back-and-forth sliding structure through the slider and the base.
[0013] To further optimize this technical solution, the exhaust mechanism includes a guide channel, an exhaust port, and a one-way valve;
[0014] The guide channel is located inside the base, and the guide channel and the interface are positioned relative to each other.
[0015] The exhaust port is located at the rear of the guide channel to discharge the gas inside the guide channel;
[0016] A check valve is installed inside the guide channel, and there are two sets of check valves.
[0017] To further optimize this technical solution, the airway switching mechanism includes an adjusting plug and a telescoping mechanism;
[0018] An adjusting plug is installed inside and between the intake channel to form a horizontal sliding structure, and the radial outer surface of the adjusting plug fits into the intake channel;
[0019] The telescoping mechanism is connected to the adjusting plug to control its movement.
[0020] To further optimize this technical solution, the positioning mechanism includes a movable plate, a third spring, a positioning block, a positioning groove, a first positioning rod, and a second positioning rod.
[0021] The movable plate is located on the left side of the adjusting plug, and the movable plate and the base form an up-and-down sliding structure, and the upper end of the movable plate is designed with an inclined structure.
[0022] The third spring is located below the movable plate to provide upward thrust to the movable plate;
[0023] The positioning block is fixed to the side of the mounting cover and inserted into the interior of the base;
[0024] The positioning groove is formed inside the positioning block;
[0025] The first positioning rod is fixed above the movable plate;
[0026] The second positioning rod is located below the first positioning rod and is situated on the left side of the movable plate. The second positioning rod, the first positioning rod, and the positioning groove all form an engaging structure. Only one set of the first and second positioning rods is connected to the positioning groove at any given time.
[0027] To further optimize this technical solution, the filter cartridge is equipped with an anti-clogging and cleaning mechanism to clean the inner wall of the filter cartridge.
[0028] To further optimize this technical solution, the anti-clogging cleaning mechanism includes a scraper, a mounting shaft, a first gear, a second gear, a connecting shaft, and a transmission mechanism;
[0029] The scraper is located inside the filter cartridge;
[0030] The mounting shaft is rotatably mounted in the middle of the base, and the mounting shaft is connected to the scraper.
[0031] The first gear is located below the mounting shaft to control its rotation;
[0032] The second gear meshes with the first gear;
[0033] The connecting shaft is fixedly connected to the second gear, and the connecting shaft and the base form a rotatable connection.
[0034] The transmission mechanism is connected to the connecting shaft and controls the rotation of the connecting shaft.
[0035] To further optimize this technical solution, the transmission mechanism includes a transmission wheel, a movable block, a drive wheel, a control block, and a second spring;
[0036] The drive wheel is fixed to the surface of the connecting shaft, and the surface of the drive wheel is made of rubber.
[0037] The movable block is located inside the base, and the movable block and the base form a horizontal sliding structure;
[0038] The drive wheel is installed inside the movable block, and a drive motor is connected to the middle of the drive wheel. The surface of the drive wheel is in contact with the transmission wheel.
[0039] The control block is fixed above the movable block and is located on the lower right side of the movable plate. The lower part of the movable plate has an inclined structure design.
[0040] The second spring is located on the right side of the control block to provide it with thrust.
[0041] Compared with the prior art, the beneficial effects of the present invention are:
[0042] (1) By setting up two sets of mounting covers and filter cartridges and switching and adjusting the air intake channel, the device can continuously filter the exhaust gas. By switching the use of the filter cartridges, the other set of unused filter cartridges can be disassembled and cleaned, so that the exhaust gas can be discharged without interruption, making the operation more efficient. In addition, the filter cartridge adopts a ring structure, which can provide a larger filtration area, is not easy to clog, and can also provide a larger storage space for fluff.
[0043] (2) The mounting cover is positioned by the positioning block, and the first or second positioning rod and the positioning groove are connected to limit it. The air intake direction can be controlled by the movement of the adjusting plug, and the use of the filter cartridge can be adjusted. When the adjusting plug moves, the connection state of the first and second positioning rods and the positioning groove will change accordingly, which facilitates the subsequent disassembly of the mounting cover.
[0044] (3) The inner wall of the filter cartridge can be cleaned by the scraper, so as to avoid lint adhering to the inner wall of the filter cartridge and affecting the subsequent airflow. The drive source of the scraper is also affected by the movement of the regulating plug, so that the scraper below the air outlet can automatically obtain rotational power to rotate.
[0045] (4) The movement of the movable plate can control the movement of the first positioning rod and the second positioning rod. When the first positioning rod is connected to the positioning groove, the second positioning rod automatically disconnects from the other set of positioning grooves, so that the other set of unused filter cartridges can be disassembled through the mounting cover.
[0046] (5) The drive wheel and transmission wheel are driven by the movement of the movable block, and the movement of the movable block is controlled by the movement of the movable plate, so that the whole device is linked together and the power is automatically switched synchronously when the filter cartridge is switched for use. Attached Figure Description
[0047] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0048] Figure 2 This is a schematic diagram of the rear view structure of the present invention.
[0049] Figure 3 This is a schematic diagram of the three-dimensional structure of the base of the present invention.
[0050] Figure 4 This is a schematic diagram of the three-dimensional structure of the mounting cover of the present invention.
[0051] Figure 5 This is a top view of the mounting cover structure of the present invention.
[0052] Figure 6 This is a schematic diagram of the internal structure of the mounting base of the present invention.
[0053] Figure 7 This is a schematic diagram of the main cross-sectional structure of the mounting cover of the present invention.
[0054] Figure 8 This is a top-section schematic diagram of the base structure of the present invention.
[0055] Figure 9 This is a schematic diagram of the main cross-sectional structure of the base of the present invention.
[0056] Figure 10This is a schematic diagram of the three-dimensional structure of the movable block of the present invention.
[0057] Figure 11 This is a schematic diagram illustrating the movement of the movable plate of the present invention.
[0058] In the diagram: 1. Base; 2. Mounting seat; 3. Air inlet; 4. Mounting cover; 5. Base; 501. Slider; 6. Interface; 7. Guide channel; 8. Exhaust port; 9. One-way valve; 10. Air inlet channel; 11. Air outlet; 12. Filter cartridge; 13. Telescopic tube; 14. Fitting head; 15. First spring; 16. Scraper; 17. Mounting shaft; 18. First gear; 19. Second gear; 20. Connecting shaft; 21. Transmission wheel; 22. Movable block; 23. Drive wheel; 24. Adjusting plug; 25. Telescopic device; 26. Movable plate; 27. Control block; 28. Second spring; 29. Third spring; 30. Positioning block; 31. Positioning groove; 32. First positioning rod; 33. Second positioning rod. Detailed Implementation
[0059] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0060] Example 1: The present invention provides the following technical solution: a device for filtering and treating lint and dust in textile waste gas, such as... Figures 1-4 and Figure 7As shown, the system includes a base 1 and a mounting base 2 mounted on top of the base 1. An air inlet 3 is connected to the top of the mounting base 2, and a mounting cover 4 is located below the mounting base 2. Two sets of mounting covers 4 are symmetrically arranged about the center line of the base 1, and a base 5 is fixed below the mounting cover 4. A filter cartridge 12 is installed inside the mounting cover 4 to intercept lint and dust in the exhaust gas. A connection port 6 is provided on the rear side of the mounting cover 4, and an exhaust mechanism is provided behind the connection port 6 to discharge the filtered gas. An air intake channel 10 is connected below the air inlet 3, and an air outlet 11 is located below the air intake channel 10, above the filter cartridge 12. An airway switching mechanism is installed inside the air intake channel 10. The airflow direction is controlled. A positioning mechanism is provided on the outside of the mounting cover 4. The mounting cover 4 is connected to the base 1 through the positioning mechanism. A sealing and bonding mechanism is provided above the filter cylinder 12 to bond the filter cylinder 12 and the lower surface of the mounting base 2. The sealing and bonding mechanism includes a telescopic tube 13, a bonding head 14 and a first spring 15. The telescopic tube 13 is fixed above the filter cylinder 12. The bonding head 14 is fixed above the telescopic tube 13. The outer side of the bonding head 14 is designed with an inclined structure. The first spring 15 is located below the bonding head 14 to provide an upward thrust for the bonding head 14. A slider 501 is fixed below the base 5. The base 5 and the base 1 form a front and rear sliding structure through the slider 501.
[0061] The exhaust gas enters through the inlet 3 and then flows through the inlet 10 into the outlet 11 of the filter cartridge 12. The filtered gas is then discharged through the port 6. Two sets of filter cartridges 12 are provided, but only one set operates at a time. Figure 7 As shown, the base 5 slides on the base 1 via the slider 501. A handle is provided on the surface of the mounting cover 4 to facilitate the disassembly and assembly of the mounting cover 4. A fitting head 14 is provided above the filter cartridge 12 to keep the filter cartridge 12 and the air outlet 11 sealed.
[0062] Example 2: Based on Example 1, as follows Figures 5-9As shown, the exhaust mechanism further discloses a guide channel 7, an exhaust port 8, and a one-way valve 9. The guide channel 7 is located inside the base 1, and the guide channel 7 and the interface 6 are arranged opposite each other. The exhaust port 8 is located on the rear side of the guide channel 7 to discharge the gas in the guide channel 7. The one-way valve 9 is installed inside the guide channel 7, and two sets of one-way valves 9 are provided. The air passage switching mechanism includes an adjusting plug 24 and a telescopic device 25. The adjusting plug 24 is located inside the intake channel 10 and forms a horizontal sliding structure between the intake channel 10 and the intake channel 10. The radial outer surface of the adjusting plug 24 is in contact with the intake channel 10. The telescopic device 25 is connected to the adjusting plug 24 to control the movement of the adjusting plug 24. The positioning mechanism includes a movable plate 26, a third spring 29, a positioning block 30, a positioning groove 31, a first positioning rod 32, and a second positioning rod. 33. Movable plate 26 is located to the left of adjusting plug 24, and the movable plate 26 and base 1 form an up-and-down sliding structure. The upper end of the movable plate 26 is designed with an inclined structure. The third spring 29 is located below the movable plate 26 to provide upward thrust for the movable plate 26. The positioning block 30 is fixed to the side of the mounting cover 4 and is inserted into the interior of the base 1. The positioning groove 31 is opened inside the positioning block 30. The first positioning rod 32 is fixed above the movable plate 26. The second positioning rod 33 is located below the first positioning rod 32 and is located to the left of the movable plate 26. The second positioning rod 33, the first positioning rod 32, and the positioning groove 31 all form an engaging structure. Only one set of the first positioning rod 32 and the second positioning rod 33 is connected to the positioning groove 31 at any given time.
[0063] When the gas is discharged, it combines Figure 8 As shown, gas enters the guide channel 7 through the interface 6, and then flows along the guide channel 7 to the exhaust port 8 for discharge. The one-way valve 9 prevents the discharged gas from entering the interface 6. When controlling the intake, as... Figure 6 As shown, gas is discharged from the outlet 11 on the left side through the intake channel 10, combined with... Figure 9 As shown, at this time, the positioning groove 31 and the second positioning rod 33 in the positioning block 30 outside the mounting cover 4 on the left are connected, and the mounting cover 4 is limited. The mounting cover 4 on the right is not limited and can be removed from the base 1. The filter cartridge 12 can be cleaned. When it is necessary to switch the use of the filter cartridge 12, the adjusting plug 24 can be controlled to move to the left, so that the air outlet 11 on the right side of the air inlet channel 10 exhausts downward. At the same time, the adjusting plug 24 will squeeze the movable plate 26, control the movable plate 26 to move downward. The movable plate 26 drives the second positioning rod 33 and the first positioning rod 32 to move downward. The connection between the second positioning rod 33 and the positioning groove 31 is released, and the first positioning rod 32 and the positioning groove 31 are connected, limiting the mounting cover 4 on the right. At the same time, the mounting cover 4 on the left can be disassembled.
[0064] Example 3: Based on Example 2, such as Figures 9-11 As shown, the filter cartridge 12 is further disclosed to have an anti-clogging cleaning mechanism inside, which cleans the inner wall of the filter cartridge 12. The anti-clogging cleaning mechanism includes a scraper 16, a mounting shaft 17, a first gear 18, a second gear 19, a connecting shaft 20, and a transmission mechanism. The scraper 16 is located inside the filter cartridge 12. The mounting shaft 17 is rotatably mounted in the middle of the base 5 and is connected to the scraper 16. The first gear 18 is located below the mounting shaft 17 to control its rotation. The second gear 19 meshes with the first gear 18. The connecting shaft 20 is fixedly connected to the second gear 19, and the connecting shaft 20 and the base 5 form a rotatable connection. The transmission mechanism is connected to the connecting shaft 20 to control its rotation. The transmission mechanism includes a transmission wheel 21, a movable block 22, a drive wheel 23, a control block 27, and a second spring 28. The transmission wheel 21 is fixed to the surface of the connecting shaft 20, and the surface of the transmission wheel 21 is made of rubber. The movable block 22 is located inside the base 1, and the movable block 22 and the base 1 form a horizontal sliding structure. The drive wheel 23 is installed inside the movable block 22, and a drive motor is connected to the middle of the drive wheel 23. The surface of the drive wheel 23 is in contact with the transmission wheel 21. The control block 27 is fixed above the movable block 22, and the control block 27 is located on the lower right side of the movable plate 26. The lower part of the movable plate 26 has an inclined structure design. The second spring 28 is located on the right side of the control block 27 to provide thrust.
[0065] The surface of the filter cartridge 12 can be cleaned by rotating the scraper 16. Figure 7 and Figure 10 As shown, the scraper 16 drives the wheel 23, which in turn drives the transmission wheel 21 to rotate via friction. The transmission wheel 21 provides power to the mounting shaft 17 through the meshing of the first gear 18 and the second gear 19. When switching the use of the filter cartridge 12, the movable plate 26 moves, engaging... Figure 11 As shown, when the movable plate 26 moves, it can drive the control block 27 to move, which in turn drives the movable block 22 to move, adjusting the drive wheel 23 and the transmission wheel 21 to achieve automatic switching of the scraper 16 drive.
[0066] The contents not described in detail in this specification are existing technologies known to those skilled in the art.
[0067] In the description of this application, it should be noted that, unless otherwise explicitly specified and limited, the terms "set up," "install," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0068] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A device for filtering and treating lint and dust in textile waste gas, comprising a base (1) and a mounting seat (2) disposed above the base (1), wherein an air inlet (3) is connected above the mounting seat (2). Its features are: A mounting cover (4) is provided below the mounting base (2), and two sets of mounting covers (4) are symmetrically arranged on the left and right sides about the center line of the base (1). A base (5) is fixed below the mounting cover (4). A filter cylinder (12) is provided inside the mounting cover (4) to intercept lint and dust in the exhaust gas. A connection interface (6) is provided on the rear side of the mounting cover (4), and an exhaust mechanism is provided on the rear side of the connection interface (6) to discharge the filtered gas. An air inlet channel (10) is connected below the air inlet (3), and an air outlet (11) is provided below the air inlet channel (10). The air outlet (11) is located above the filter cylinder (12). An air duct switching mechanism is provided inside the air inlet channel (10) to control the airflow direction. A positioning mechanism is provided on the outer side of the mounting cover (4), and the mounting cover (4) is connected to the base (1) through the positioning mechanism. The airway switching mechanism includes an adjusting plug (24) and a telescoping device (25). The regulating plug (24) is set inside the intake channel (10) and between the intake channel (10) to form a horizontal sliding structure, and the radial outer surface of the regulating plug (24) fits against the intake channel (10); The telescopic device (25) is connected to the adjusting plug (24) to control the movement of the adjusting plug (24); The positioning mechanism includes a movable plate (26), a third spring (29), a positioning block (30), a positioning groove (31), a first positioning rod (32), and a second positioning rod (33); The movable plate (26) is located on the left side of the adjusting plug (24), and the movable plate (26) and the base (1) form an up-and-down sliding structure, and the upper end of the movable plate (26) is designed with an inclined structure. The third spring (29) is located below the movable plate (26) to provide an upward thrust to the movable plate (26); The positioning block (30) is fixed to the side of the mounting cover (4) and the positioning block (30) is inserted into the interior of the base (1); The positioning groove (31) is formed inside the positioning block (30); The first positioning rod (32) is fixed above the movable plate (26); The second positioning rod (33) is located below the first positioning rod (32) and is located on the left side of the movable plate (26). The second positioning rod (33), the first positioning rod (32), and the positioning groove (31) all form a locking structure. Only one set of the first positioning rod (32) and the second positioning rod (33) is connected to the positioning groove (31) at the same time.
2. The textile waste gas lint and dust filtration and treatment device according to claim 1, characterized in that: A sealing and bonding mechanism is provided above the filter cylinder (12) to bond the filter cylinder (12) and the lower surface of the mounting base (2).
3. The textile waste gas lint and dust filtration and treatment device according to claim 2, characterized in that: The sealing and bonding mechanism includes a telescopic tube (13), a bonding head (14), and a first spring (15). The telescopic tube (13) is fixed above the filter cylinder (12); The bonding head (14) is fixed above the telescopic tube (13), and the outer side of the bonding head (14) is designed with an inclined structure. A first spring (15) is positioned below the bonding head (14) to provide an upward thrust to the bonding head (14).
4. The textile waste gas lint and dust filtration and treatment device according to claim 1, characterized in that: A slider (501) is fixed below the base (5), and the base (5) forms a front-to-back sliding structure between the slider (501) and the base (1).
5. The textile waste gas lint and dust filtration and treatment device according to claim 1, characterized in that: The exhaust mechanism includes a guide channel (7), an exhaust port (8), and a one-way valve (9); The guide channel (7) is located inside the base (1), and the guide channel (7) and the interface (6) are positioned opposite each other; The exhaust port (8) is located on the rear side of the guide channel (7) to discharge the gas in the guide channel (7); A one-way valve (9) is installed inside the guide channel (7), and two sets of one-way valves (9) are provided.
6. The textile waste gas lint and dust filtration and treatment device according to claim 5, characterized in that: The filter cartridge (12) is equipped with an anti-clogging cleaning mechanism to clean the inner wall of the filter cartridge (12).
7. The textile waste gas lint and dust filtration and treatment device according to claim 6, characterized in that: The anti-clogging cleaning mechanism includes a scraper (16), a mounting shaft (17), a first gear (18), a second gear (19), a connecting shaft (20), and a transmission mechanism; A scraper (16) is disposed on the inner side of the filter cylinder (12); The mounting shaft (17) is rotatably mounted in the middle of the base (5), and the mounting shaft (17) is connected to the scraper (16); The first gear (18) is located below the mounting shaft (17) to control the rotation of the mounting shaft (17); The second gear (19) is meshed with the first gear (18); The connecting shaft (20) is fixedly connected to the second gear (19), and the connecting shaft (20) and the base (5) form a rotatable connection; The transmission mechanism is connected to the connecting shaft (20) to control the rotation of the connecting shaft (20).
8. The textile waste gas lint and dust filtration and treatment device according to claim 7, characterized in that: The transmission mechanism includes a transmission wheel (21), a movable block (22), a drive wheel (23), a control block (27), and a second spring (28); The drive wheel (21) is fixed on the surface of the connecting shaft (20), and the surface of the drive wheel (21) is made of rubber. The movable block (22) is set inside the base (1), and the movable block (22) and the base (1) form a horizontal sliding structure; The drive wheel (23) is installed inside the movable block (22), and a drive motor is connected to the middle of the drive wheel (23), and the surface of the drive wheel (23) is in contact with the transmission wheel (21); The control block (27) is fixed above the movable block (22), and the control block (27) is located on the lower right side of the movable plate (26), and the lower part of the movable plate (26) is designed with an inclined structure. The second spring (28) is located on the right side of the control block (27) to provide thrust to the control block (27).
Citation Information
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