Textile machine with dust removal function

The self-cleaning design of the roller brush and scraper teeth driven by the rotary motor solves the problem of incomplete removal of stubborn impurities in textile machines, achieving efficient dust removal and self-cleaning functions, and improving textile quality and production efficiency.

CN223705902UActive Publication Date: 2025-12-23JIANGSU TIANJUN MASCH CO LTD
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Patent Information

Application Number
CN202520286372.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-12-23
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

The fixed brush layer in existing textile machines is difficult to completely remove stubborn impurities. The accumulated dust and fibers reduce the cleaning efficiency and require regular manual cleaning, which affects the quality of textiles and production efficiency.

Method used

The design incorporates first and second roller brushes driven by a rotary motor, with bristles rotating in the opposite direction to the fabric to enhance friction. Combined with a scraper and scraper teeth, a self-cleaning function is achieved. An electric telescopic rod and springs clamp the scraper teeth to remove impurities, while a dust collection assembly ensures dust collection and filtration.

Benefits of technology

It improves cleaning efficiency and achieves self-cleaning effect, solving the problem of unsatisfactory cleaning effect in existing technologies and extending the service life of equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of textile machines, and discloses a textile machine with a dust removal function, which comprises a textile machine body, a dust removal box is mounted on the textile machine body, a plurality of guide rollers are mounted in the dust removal box, textile cloth is wound on the outer surfaces of the guide rollers, a first rolling brush is arranged above the textile cloth, and a second rolling brush is arranged above the first rolling brush. A first rolling brush is arranged below the textile cloth, a second rolling brush is arranged below the textile cloth, bristles are arranged on the outer wall of the first rolling brush and the outer wall of the second rolling brush, rotating motors are connected and installed on the first rolling brush and the second rolling brush, and scraping assemblies are arranged on one side of the first rolling brush and below the second rolling brush. The rotating motor provides power for the first rolling brush and the second rolling brush to drive the first rolling brush and the second rolling brush to rotate, and in the continuous rotating process of the rolling brushes, bristles can be in continuous contact with scraping teeth on a scraping plate, and the design achieves the self-cleaning function of the bristles.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to textile machine technical field, concretely relates to a textile machine with dust removal function. BACKGROUND

[0002] The textile machine with dust removal function is a mechanical device specially designed to remove dust, fiber impurities and other particles during the textile process. In the process of textile production, various fine particles and impurities will inevitably be produced on the textile fabric, which not only affects the quality of the textile, but also causes harm to the working environment and the health of workers.

[0003] In the application number 202122496297.3, an improved textile machine with dust removal function is disclosed, which can clean the surface of the textile fabric driven by the guide roller twice through the action of the fixed frame and the brush layer, realize the ability of cleaning the dust on the surface of the textile fabric, open the fan and the ion wind rod through the control panel, the ion wind rod can blow the surface of the fabric when working, eliminate static electricity generated in the cleaning process, and the fan can absorb the dust and lint cleaned out through the dust cover and transfer them to the lower end of the filter water tank through the air duct, and in the cooperation of the second filter screen, the dust and lint discharged into the water body can be blocked, realizing the ability of full dust removal. In the above, since the brush layer is fixed, the cleaning process completely depends on the moving speed of the textile fabric and the contact pressure between the brush and the fabric. This passive cleaning method is difficult to completely remove stubborn impurities on the surface of the fabric, resulting in unsatisfactory overall cleaning effect. With the continuous movement of the textile fabric, the brush layer will continuously accumulate dust, fibers and other impurities, and the brush lacking self-cleaning function cannot remove these accumulated impurities, causing the impurities to gradually accumulate, further reducing the effective contact area and cleaning intensity of the brush and the fabric, thereby significantly reducing the cleaning efficiency. At the same time, during the high-intensity production process, the fixed brush layer needs to be cleaned regularly by manual, which not only consumes time and effort, but also easily leads to the problem of untimely cleaning. When the impurities accumulate on the brush to a certain extent, a "barrier" will be formed to hinder the cleaning, not only reducing the thoroughness of the cleaning, but also possibly causing the already removed impurities to reattach to the fabric, thereby aggravating the pollution problem. This vicious cycle ultimately affects the cleanliness of the textile and the production efficiency. UTILITY MODEL CONTENTS

[0004] The utility model aims to provide a textile machine with dust removal function to solve the problem of fixed brush layer depending on fabric movement for cleaning, which is difficult to remove stubborn impurities and accumulated dust and fibers reduce cleaning efficiency.

[0005] To achieve the above object, the utility model provides following technical scheme: A textile machine with dust removal function, include: Textile machine body, The textile machine body is installed with dust removal box, The inside of dust removal box is installed with a plurality of guide rollers, The outer surface of guide roller is wound with textile cloth, The top of textile cloth is equipped with first rolling brush, The lower side of textile cloth is equipped with second rolling brush, The outer wall of first rolling brush and second rolling brush is equipped with bristle all, The first rolling brush and second rolling brush are all connected and installed with rotating electrical machine, The side of first rolling brush and the lower side of second rolling brush are all equipped with scraping component;

[0006] The inside of dust removal box is equipped with dust removal assembly on the top and the bottom.

[0007] Preferably, the scraping component includes a scraper, a scraping tooth, and an electric telescopic rod. The scraper is located on one side of the bristles. The scraping tooth is installed on the side of the scraper close to the bristles. The electric telescopic rod is connected to the scraper. The scraping component is externally equipped with a material collecting component, and the scraping tooth can contact the bristles.

[0008] The material collecting component includes a mounting plate, a movable plate, a spring, and a fixed plate. The movable plate and the fixed plate are distributed on both sides of the electric telescopic rod. The mounting plate is located on one side of the movable plate. The mounting plate is provided with a movable slot, and a part of the movable plate is located in the movable slot. The spring is connected between the movable slot and the movable plate.

[0009] A bearing plate is installed on the inner wall of the dust removal box. A first storage box is placed on the bearing plate. A limiting plate is arranged between the bearing plate and the first storage box. A second storage box is placed at the bottom end of the inner wall of the dust removal box. The limiting plate prevents the first storage box from falling off the bearing plate, assisting the alignment of the mounting plate and the movable plate.

[0010] The electric telescopic rod located on one side of the first rolling brush is horizontally connected to the inner wall of the dust removal box. The electric telescopic rod located below the second rolling brush is vertically connected to the inner wall of the second storage box.

[0011] The mounting plate located on one side of the first rolling brush is connected to the top end of the inner wall of the dust removal box through a first connecting plate. The fixed plate located on one side of the first rolling brush is connected to the first storage box through a second connecting plate.

[0012] The mounting plate located below the second rolling brush is connected to the second storage box through a third connecting plate. The fixed plate located below the second rolling brush is connected to the second storage box through a fourth connecting plate.

[0013] A baffle is installed on the dust removal box. The baffle is movably connected to the dust removal box. The design of the baffle facilitates the opening of the dust removal box, making it convenient to take out the first storage box and the second storage box, and facilitating the maintenance of the dust removal box.

[0014] By the above technical scheme:

[0015] In use, the textile machine body serves as the operation basis for the entire textile machine, and multiple guide rollers are carefully installed inside the dust removal box. Their main function is to guide the smooth movement of the textile cloth during the weaving process, ensuring that the textile cloth can pass through each cleaning and dust removal link evenly.

[0016] During the dust removal operation, the rotating motor plays a crucial role. It provides power for the first and second roller brushes, allowing them to rotate at high speed. The rotation of the roller brushes brings the bristles into close contact with the textile cloth, effectively removing dust and impurities attached to the surface of the textile cloth. The first roller brush is located above the textile cloth and is responsible for cleaning the upper surface of the textile cloth; the second roller brush is located below the textile cloth and is responsible for cleaning the lower surface. To achieve a more thorough cleaning effect, the rotation direction of the roller brushes is opposite to the movement direction of the textile cloth. This reverse rotation design can generate greater friction, greatly improving the efficiency of removing surface impurities.

[0017] During the continuous rotation of the roller brushes, the bristles will continuously contact the scraping teeth on the scraper. This design not only enhances the cleaning effect, but also achieves a self-cleaning function for the bristles: the scraping teeth can effectively remove dust and impurities accumulated on the bristles, preventing the bristles from losing their cleaning ability due to impurity accumulation. The cooperation of the scraper and the scraping teeth ensures the continuous cleaning of the bristles, thereby ensuring the persistent cleaning effect of the roller brushes on the textile cloth.

[0018] As the use time increases, the outer surface of the scraper and the scraping teeth may accumulate too much impurities, which will gradually affect their cleaning effect on the bristles. To solve this problem, an electric telescopic rod is introduced into the design: the electric telescopic rod on one side of the first roller brush is responsible for driving the scraper to move horizontally. The spring, through its elastic force, makes the movable plate tend to approach the fixed plate. This repeated clamping action on the scraping teeth can effectively cause the accumulated impurities on the scraping teeth to fall off. The falling impurities naturally fall into the first storage box below under the action of gravity. For the electric telescopic rod below the second roller brush, its working principle is similar to that on one side of the first roller brush: the electric telescopic rod drives the scraper to move vertically. The clamping force of the fixed plate and the movable plate also acts on the scraping teeth, causing the impurities to fall off. The falling impurities also fall into the second storage box below due to gravity.

[0019] During the collection operation, to ensure the best dust removal effect, the dust removal assembly at the top end of the dust removal box should be in a stopped state. This measure can prevent impurities from flying in the air during the dust removal process, avoiding their re-falling onto the textile machine body, thereby reducing unnecessary workload. In addition, the movement of the scraper should be kept within a certain range. This design is to avoid excessive movement, ensuring that the fixed plate and the movable plate can work normally, maintaining the stability and efficiency of the entire cleaning and dust removal process.

[0020] Through the above optimization design, the dust removal and self-cleaning functions of the textile machine are significantly improved. The cooperation between various components not only improves the cleaning efficiency, but also prolongs the service life of the equipment. At the same time, the addition of operation precautions makes the entire dust removal process more efficient and reliable. This design concept fully embodies the intelligent and efficient characteristics of modern textile machinery.

[0021] Preferably, the dust removal assembly comprises a dust collection hood, a filter water tank and a fan, the dust collection hood is installed at the top end of the inner wall of the dust removal box, the filter water tank is installed at the top end of the outer wall of the dust removal box, the fan is installed on the air outlet end of the filter water tank, and a material guide pipeline is connected between the dust collection hood and the filter water tank.

[0022] Specifically, the main function of the dust collection hood is to collect dust, fibers and other impurities generated during the operation of the textile machine. Its design usually includes a large conical suction inlet, which aims to ensure that it can cover as large an area as possible, thereby improving collection efficiency. The main function of the filter water tank is to filter the dust and impurities collected by the dust collection hood. It is usually equipped with multiple filter layers or filter screens inside, which can effectively filter out small particles in the air to ensure that the air discharged into the environment is clean. The main function of the fan is to provide air flow power to ensure that dust and impurities can be efficiently sucked into the dust collection hood and transported to the filter water tank through the material guide pipeline. At the same time, the fan is also responsible for discharging clean air filtered to the environment, maintaining the negative pressure state of the entire dust removal system to ensure the persistence of the dust removal effect. The upper and lower dust removal assemblies can comprehensively cover the moving path of the textile cloth, ensuring effective dust removal in the entire width and length range of the textile cloth. This upper and lower cooperative design avoids dust removal dead angles, ensuring the uniformity and thoroughness of dust removal. The upper and lower dust removal assemblies are arranged in a staggered manner to avoid direct opposite arrangement. This design can effectively prevent air from forming a convection between the upper and lower ends, thereby reducing the disordered flow of dust and impurities inside the dust removal box, ensuring that each dust collection hood can efficiently collect dust in its responsible area.

[0023] Compared with the prior art, the utility model has the advantages that:

[0024] (1) The utility model discloses a rotating motor, a first roller brush and a second roller brush are arranged, which effectively improve the cleaning effect. In use, the rotating motor provides power for the first roller brush and the second roller brush, prompting them to rotate. The rotation direction of the roller brush is opposite to the moving direction of the textile cloth. This reverse rotation design can generate greater friction, thereby greatly improving the efficiency of removing impurities on the surface of the textile cloth.

[0025] (2) The utility model discloses a scraping plate and scraping tooth are set up, guarantee the persistent cleaning effect of the rolling brush to the textile cloth. In the process of the persistent rotation of the rolling brush, the bristle will contact the scraping tooth on the scraping plate constantly, and this design realizes the self-cleaning function of the bristle. The scraping tooth can effectively scrape the dust and impurity accumulated on the bristle, and prevent the bristle from losing the cleaning ability due to the impurity accumulation. The scraping plate and scraping tooth cooperate with each other, ensure the persistent cleaning of the bristle, and further guarantee the persistent cleaning effect of the rolling brush to the textile cloth.

[0026] (3) The utility model discloses a electric telescopic link, spring, fixed plate and movable plate are set up, realize the function that the sundries accumulated on the scraping tooth falls off. In actual use, the electric telescopic link drives the scraping plate to move, and the spring makes the movable plate close to the fixed plate by the elastic force of itself. This repeated clamping action acts on the scraping tooth, and can effectively make the sundries accumulated on the scraping tooth fall off. The sundries that fall off naturally drop to the storage box below under the action of gravity. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is the structural schematic diagram of the utility model;

[0028] Figure 2 It is the appearance diagram of the dust removal box of the utility model;

[0029] Figure 3 It is the structural schematic diagram of the first storage box of the utility model;

[0030] Figure 4 It is the structural schematic diagram of the second storage box of the utility model;

[0031] Figure 5 It is the structural schematic diagram of the movable plate of the utility model;

[0032] Figure 6 It is the structural schematic diagram of the spring of the utility model;

[0033] In the drawing: 1, textile machine body;2, dust removal box;3, guide roller;4, textile cloth;5, first rolling brush;6, second rolling brush;7, rotary motor;8, bristle;9, scraping plate;10, scraping tooth;11, electric telescopic link;12, mounting plate;13, movable slot;14, movable plate;15, spring;16, fixed plate;17, first connecting plate;18, second connecting plate;19, first storage box;20, bearing plate;21, limiting plate;22, third connecting plate;23, fourth connecting plate;24, second storage box;25, dust collecting hood;26, filter water tank;27, fan;28, material guide pipeline;29, baffle. DETAILED DESCRIPTION

[0034] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0035] Please refer to Figures 1-6 The utility model provides the following technical scheme: a textile machine with dust removal function, comprising: a textile machine body 1, the textile machine body 1 is installed with dust removal box 2, the inside installation of dust removal box 2 has a plurality of guide rollers 3, the outer surface of guide roller 3 is wound with weaving cloth 4, the top of weaving cloth 4 is equipped with first rolling brush 5, the below of weaving cloth 4 is equipped with second rolling brush 6, the outer wall of first rolling brush 5 and second rolling brush 6 is equipped with bristle 8, first rolling brush 5 and second rolling brush 6 are all connected and installed with rotating electrical machine 7, the side of first rolling brush 5 and the below of second rolling brush 6 are all equipped with scraping component;

[0036] The inside upper and lower ends of dust removal box 2 are equipped with dust removal components.

[0037] Further, the scraping component includes a scraper 9, a scraper tooth 10 and an electric telescopic rod 11, the scraper 9 is located on one side of the bristle 8, the scraper tooth 10 is installed on one side of the scraper 9 close to the bristle 8, the electric telescopic rod 11 is connected to the scraper 9, the scraping component is equipped with a material collecting component outside, and the scraper tooth 10 can contact the bristle 8;

[0038] The material collecting component includes a mounting plate 12, a movable plate 14, a spring 15 and a fixed plate 16, the movable plate 14 and the fixed plate 16 are distributed on both sides of the electric telescopic rod 11, the mounting plate 12 is located on one side of the movable plate 14, the mounting plate 12 is provided with a movable slot 13, and part of the movable plate 14 is located in the movable slot 13, and the spring 15 is connected between the movable slot 13 and the movable plate 14;

[0039] The inner wall of the dust removal box 2 is provided with a bearing plate 20, the bearing plate 20 is provided with a first storage box 19, the bearing plate 20 and the first storage box 19 are provided with a limiting plate 21, the inner wall bottom end of the dust removal box 2 is provided with a second storage box 24, the limiting plate 21 makes the first storage box 19 not easy to fall off from the bearing plate 20, and assists the alignment work of the mounting plate 12 and the movable plate 14;

[0040] The electric telescopic rod 11 located on one side of the first rolling brush 5 is transversely connected with the inner wall of the dust removal box 2, and the electric telescopic rod 11 located below the second rolling brush 6 is vertically connected with the inner wall of the second storage box 24;

[0041] The mounting plate 12 located on one side of the first roller brush 5 is connected with the first connecting plate 17 at the top end of the inner wall of the dust removal box 2, and the fixed plate 16 located on one side of the first roller brush 5 is connected with the second connecting plate 18 between the first storage box 19;

[0042] The mounting plate 12 located below the second roller brush 6 is connected with the third connecting plate 22 between the second storage box 24, and the fixed plate 16 located below the second roller brush 6 is connected with the fourth connecting plate 23 between the second storage box 24;

[0043] The dust removal box 2 is provided with a baffle 29, and the baffle 29 is movably connected with the dust removal box 2. The baffle 29 is designed to facilitate the opening of the dust removal box 2, thereby facilitating the removal of the first storage box 19 and the second storage box 24, and facilitating the maintenance of the dust removal box 2.

[0044] Through the above technical scheme:

[0045] In use, the textile machine body 1 serves as the basis for the operation of the entire textile machine, and a plurality of guide rollers 3 are carefully installed inside the dust removal box 2. Their main function is to guide the smooth movement of the textile cloth 4 during the weaving process, ensuring that the textile cloth 4 can pass through each cleaning and dust removal link evenly.

[0046] When performing the dust removal operation, the rotating motor 7 plays a crucial role. It provides power for the first roller brush 5 and the second roller brush 6, allowing them to rotate at high speed. The rotation of the roller brush drives the bristles 8 into close contact with the textile cloth 4, effectively removing dust and impurities attached to the surface of the textile cloth 4. The first roller brush 5 is located above the textile cloth 4 and is responsible for cleaning the upper surface of the textile cloth 4; the second roller brush 6 is located below the textile cloth 4 and is responsible for cleaning the lower surface. To achieve a more thorough cleaning effect, the rotation direction of the roller brush is opposite to the movement direction of the textile cloth 4. This reverse rotation design can generate greater friction, greatly improving the efficiency of removing surface impurities.

[0047] During the continuous rotation of the roller brush, the bristles 8 will continuously contact the scraping teeth 10 on the scraper 9. This design not only enhances the cleaning effect, but also achieves a self-cleaning function for the bristles 8: the scraping teeth 10 can effectively remove dust and impurities accumulated on the bristles 8, preventing the bristles 8 from losing cleaning ability due to impurity accumulation. The cooperation of the scraper 9 and the scraping teeth 10 ensures the continuous cleaning of the bristles 8, thereby ensuring the persistent cleaning effect of the roller brush on the textile cloth 4.

[0048] As the use time increases, the outer surfaces of the scraper 9 and the scraping teeth 10 may accumulate too much dirt, which will gradually affect their cleaning effect on the bristles 8. To solve this problem, the electric telescopic rod 11 is introduced into the design: the electric telescopic rod 11 on one side of the first roller brush 5 is responsible for driving the scraper 9 to move horizontally. The spring 15 makes the movable plate 14 have a tendency to approach the fixed plate 16 through its elastic force. This repeated clamping action on the scraping teeth 10 can effectively make the accumulated dirt on the scraping teeth 10 fall off. The fallen dirt naturally falls into the first storage box 19 below under the action of gravity. For the electric telescopic rod 11 below the second roller brush 6, its working principle is similar to that on one side of the first roller brush 5: the electric telescopic rod 11 drives the scraper 9 to move vertically. The clamping force of the fixed plate 16 and the movable plate 14 also acts on the scraping teeth 10, prompting the dirt to fall off. The fallen dirt also falls into the second storage box 24 below due to gravity.

[0049] When performing the collection operation, to ensure the best dust removal effect, the dust removal assembly at the top end of the dust removal box 2 should be in a stopped state. This measure can prevent the dirt from flying in the air during the dust removal process, avoiding its re-falling onto the textile machine body 1, thereby reducing unnecessary workload. In addition, the movement of the scraper 9 should be kept within a certain range. This design is to avoid excessive movement, ensuring that the fixed plate 16 and the movable plate 14 can work normally, maintaining the stability and efficiency of the entire brushing and dust removal process.

[0050] Through the above optimization design, the dust removal and self-cleaning functions of the textile machine are significantly improved. The coordinated work between various components not only improves the cleaning efficiency, but also prolongs the service life of the equipment. At the same time, the addition of operation precautions makes the entire dust removal process more efficient and reliable. This design concept fully embodies the intelligent and efficient characteristics of modern textile machinery.

[0051] Further, please refer to Figures 1-2 As shown in the figure, the dust removal assembly includes a dust collection hood 25, a filter water tank 26, and a fan 27. The dust collection hood 25 is installed at the top end of the inner wall of the dust removal box 2, the filter water tank 26 is installed at the top end of the outer wall of the dust removal box 2, and the fan 27 is installed at the air outlet end of the filter water tank 26. The dust collection hood 25 and the filter water tank 26 are connected by a material guide pipe 28.

[0052] Specifically, the main function of the dust cover 25 is to collect the dust, fibers and other impurities generated during the operation of the textile machine. Its design usually includes a large conical suction inlet, the purpose of which is to ensure that it can cover as large an area as possible, thereby improving collection efficiency. The main function of the filter water tank 26 is to filter the dust and impurities collected by the dust cover 25. It is generally provided with multiple filter layers or filter screens inside, which can effectively filter out the tiny particles in the air and ensure that the air discharged into the environment is clean. The main function of the fan 27 is to provide air flow power to ensure that dust and impurities can be efficiently sucked into the dust cover 25 and transported to the filter water tank 26 through the material guide pipe 28. At the same time, the fan 27 is also responsible for discharging clean air after filtration into the environment, maintaining the negative pressure state of the entire dust removal system to ensure the persistence of the dust removal effect. The upper and lower dust removal assemblies can fully cover the moving path of the textile cloth 4, ensuring effective dust removal in the entire width and length range of the textile cloth 4. This upper and lower cooperative design avoids dust removal dead angles, ensuring the uniformity and thoroughness of dust removal. The upper and lower dust removal assemblies are arranged in a staggered manner to avoid direct opposite arrangement. This design can effectively prevent air from forming a convection between the upper and lower ends, thereby reducing the disordered flow of dust and impurities inside the dust removal box 2, ensuring that each dust cover 25 can efficiently collect the dust in its responsible area.

[0053] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A textile machine with dust removal function, characterized in that, include: A textile machine body (1) is equipped with a dust collection box (2). Multiple guide rollers (3) are installed inside the dust collection box (2). Textile fabric (4) is wound on the outer surface of the guide rollers (3). A first roller brush (5) is provided above the textile fabric (4). A second roller brush (6) is provided below the textile fabric (4). Brush bristles (8) are provided on the outer walls of the first roller brush (5) and the second roller brush (6). A rotary motor (7) is connected to and installed on both the first roller brush (5) and the second roller brush (6). A scraping assembly is provided on one side of the first roller brush (5) and below the second roller brush (6). The dust removal box (2) is equipped with dust removal components at both the upper and lower ends.

2. A textile machine with dust removal function according to claim 1, characterized in that: The scraping assembly includes a scraper (9), scraper teeth (10) and an electric telescopic rod (11). The scraper (9) is located on one side of the bristles (8). The scraper teeth (10) are installed on the side of the scraper (9) close to the bristles (8). The electric telescopic rod (11) is connected to the scraper (9). The scraping assembly is provided with a material collection assembly on the outside.

3. A textile machine with dust removal function according to claim 2, characterized in that: The material collection assembly includes a mounting plate (12), a movable plate (14), a spring (15), and a fixed plate (16). The movable plate (14) and the fixed plate (16) are distributed on both sides of the electric telescopic rod (11). The mounting plate (12) is located on one side of the movable plate (14). The mounting plate (12) has a movable groove (13), and a portion of the movable plate (14) is located in the movable groove (13). The spring (15) is connected between the movable groove (13) and the movable plate (14).

4. A textile machine with dust removal function according to claim 3, characterized in that: A support plate (20) is installed on the inner wall of the dust collector (2), a first storage box (19) is placed on the support plate (20), a limiting plate (21) is provided between the support plate (20) and the first storage box (19), and a second storage box (24) is placed at the bottom of the inner wall of the dust collector (2).

5. A textile machine with dust removal function according to claim 4, characterized in that: The electric telescopic rod (11) located on one side of the first roller brush (5) is horizontally connected to the inner wall of the dust collection box (2), and the electric telescopic rod (11) located below the second roller brush (6) is vertically connected to the inner wall of the second storage box (24).

6. A textile machine with dust removal function according to claim 5, characterized in that: The mounting plate (12) located on one side of the first roller brush (5) is connected to the top of the inner wall of the dust collection box (2) by a first connecting plate (17), and the fixing plate (16) located on one side of the first roller brush (5) is connected to the first storage box (19) by a second connecting plate (18).

7. A textile machine with dust removal function according to claim 6, characterized in that: A third connecting plate (22) is connected between the mounting plate (12) located below the second roller brush (6) and the second storage box (24), and a fourth connecting plate (23) is connected between the fixing plate (16) located below the second roller brush (6) and the second storage box (24).

8. A textile machine with dust removal function according to claim 7, characterized in that: A baffle (29) is installed on the dust collection box (2), and the baffle (29) is movably connected to the dust collection box (2).

9. A textile machine with dust removal function according to claim 1, characterized in that: The dust removal assembly includes a dust collection hood (25), a filter water tank (26), and a fan (27). The dust collection hood (25) is installed on the top of the inner wall of the dust collection box (2), the filter water tank (26) is installed on the top of the outer wall of the dust collection box (2), and the fan (27) is installed on the air outlet of the filter water tank (26). A material guide pipe (28) is connected between the dust collection hood (25) and the filter water tank (26).

Citation Information

Patent Citations

  • Improved textile machine with dust removal function

    CN216460768U