Anti-pilling treatment equipment for polyester-cotton fabrics
By designing an interception and collection mechanism for the anti-pilling treatment equipment for polyester-cotton fabrics, the problem of incomplete removal of fiber impurities was solved, enabling rapid interception and collection of impurities and improving work efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG LIHONG NEW MATERIAL TECH CO LTD
- Filing Date
- 2025-08-20
- Publication Date
- 2026-07-17
AI Technical Summary
In existing fabric anti-pilling treatment equipment, fiber impurities cannot be completely removed, and some impurities fall off during production and transportation, affecting work efficiency.
A pilling-resistant treatment device for polyester-cotton fabric was designed, comprising a treatment box body, a rolling roller, a roller brush, and an interception and collection mechanism. The interception component intercepts and collects impurities falling on the fabric, the connecting component connects the interception component, and the pushing component pushes the impurities out.
It enables rapid interception and collection of impurities, reduces the need for manual cleaning, and improves work efficiency.
Smart Images

Figure CN224513838U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of anti-pilling treatment technology, specifically to anti-pilling treatment equipment for polyester-cotton fabrics. Background Technology
[0002] Fabric is the material used to make clothing. As one of the three essential elements of clothing, fabric not only interprets the style and characteristics of clothing, but also directly affects the color and shape of clothing. With the continuous improvement of people's living standards, consumers have increasingly strict requirements for the comfort, durability, and other qualities of products made of various fabrics, such as clothing and bedding. High-quality and high-end fabrics need to have multiple advantages such as comfortable wear, sweat absorption and breathability, drape and crispness, noble appearance, and soft touch. Pilling of textiles during wearing, washing, or other sports will reduce the comfort of wearing the fabric, which does not meet consumers' expectations for high-quality fabrics. It is necessary to treat the surface of the fabric with anti-pilling treatment equipment. However, the existing equipment still has the following problems: the anti-pilling agent in the treatment tank of the equipment is prone to sedimentation, which affects the treatment effect of the anti-pilling agent on the fabric. Therefore, a fabric anti-pilling treatment equipment is proposed.
[0003] To address the aforementioned technical problems, Chinese Patent No. CN221721123U discloses a fabric anti-pilling treatment device, comprising a treatment frame with an opening at the top and through slots on both sides. A cleaning mechanism is located on the left side of the treatment frame, and a treatment mechanism is located inside the treatment frame. The treatment mechanism includes a mixing component and a treatment component. The mixing component is located below the treatment component. The mixing component includes a dual-head motor, a second rotating rod is located behind the dual-head motor, and a third rotating rod is located to the right of the second rotating rod.
[0004] While the aforementioned existing technical solutions facilitate the uniform mixing of anti-pilling agents and prevent sedimentation of the anti-pilling agents in the processing box, their cleaning of the fabric only involves brushing the fabric surface with a stationary cleaning brush during transport. Furthermore, the port for absorbing impurities is located at the outermost edge, which not only fails to directly target the fabric surface for suction but is also blocked by the layers of the cleaning brush itself. As a result, fiber impurities cannot be completely removed, and some impurities that adhere to the fabric during production and transportation are easily detached during the soaking of the anti-pilling agent and the continuous squeezing of the pressure rollers. These impurities are scattered inside the processing box, making it difficult for workers to quickly collect and clean them, thus affecting subsequent work efficiency. Utility Model Content
[0005] The purpose of this invention is to provide an anti-pilling treatment device for polyester-cotton fabrics, in order to solve the problem that the treatment device mentioned in the background art cannot completely remove fiber impurities from the fabric. Some impurities that adhere to the fabric during production and transportation are also easily detached during the soaking of the anti-pilling agent and the continuous squeezing of the pressure roller. These impurities are scattered inside the treatment box, making it difficult for workers to quickly collect and clean them, which in turn affects the efficiency of subsequent work.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] A pilling-resistant treatment device for polyester-cotton fabric includes a treatment box body. Both ends of the outer wall of the treatment box body have conveying ports. Multiple sets of rollers are rotatably connected to both ends of the inner side of the treatment box body. Multiple sets of roller brushes are arranged on the outer wall of the rollers. Multiple sets of drive motors are arranged on the outer wall of the treatment box body, with the drive end of each motor extending into the interior of the treatment box body and fixedly connected to one end of the roller. Multiple sets of guide rollers, arranged alternately with the rollers, are rotatably connected to the inner wall of the treatment box body. An interception and collection mechanism is installed inside the treatment box body below the rollers. The interception and collection mechanism includes an interception component, a connecting component, and a pushing component. The interception component intercepts and collects impurities falling from the fabric. The connecting component connects the interception component, and the pushing component pushes out impurities clogging the interception component.
[0008] As a preferred embodiment of this utility model, the interception component includes an overlapping groove formed on one side of the outer wall of the processing box body, a fixing seat overlapping inside the overlapping groove, and a first sealing gasket at both ends of the overlapping groove inside the processing box body. The outer wall of the first sealing gasket is in contact with the outer wall of the fixing seat. A filter plate is installed on one side of the outer wall of the fixing seat, and multiple sets of filter holes are arranged inside the filter plate. The other end of the outer wall of the filter plate is in contact with the other side of the inner wall of the processing box body.
[0009] As a preferred embodiment of this utility model, the connecting assembly includes a movable rod slidably connected to one end of the fixed base. A linkage groove is provided at one end of the fixed base located on the outer wall of the movable rod. A linkage plate is slidably connected to the inner side of the linkage groove. The linkage plate and the movable rod are rotatably connected. A fourth spring is installed between the two ends of the outer wall of the linkage plate and the inner wall of the linkage groove. A buckle is rotatably connected to one end of the movable rod extending to the outside of the fixed base. A pressure groove is provided inside the processing box body on one side of the overlapping groove. A pressure block is installed at the other end of the movable rod and slidably connected to the pressure groove. The side cross-section of the pressure groove is circular.
[0010] As a preferred embodiment of this utility model, an abutment groove is provided inside the processing box body on one side of the pressure groove. An abutment plate is slidably connected to the inner side of the abutment groove. A first spring is installed between one end of the abutment plate and the inner wall of the abutment groove. Corresponding first inclined surfaces are provided on the opposite ends of the pressure block and the abutment plate. Two sets of second springs are installed on both sides of the other end of the inner side of the pressure groove. A fixing plate is installed on the other end of the second spring. A rotating disk is rotatably connected to the other end of the fixing plate. A protrusion is installed on one side of the outer wall of the abutment plate. A groove is provided on the other side of the outer wall of the pressure block and slidably connected to the protrusion. A positioning groove is provided on the side of the outer wall of the pressure block located on the first inclined surface. A positioning block is installed on one side of the rotating disk and slidably connected to the positioning groove.
[0011] As a preferred embodiment of this utility model, the pushing assembly includes a reset groove formed inside the fixed base, a reset plate slidably connected to the inner side of the reset groove, a third spring installed between both ends of the outer wall of the reset plate and the inner wall of the reset groove, a vertical plate installed at one end of the reset plate extending to the outside of the fixed base, corresponding second inclined surfaces being formed at the opposite ends of the vertical plate and the inner wall of the overlapping groove, multiple sets of vertical plates arranged on one side of the vertical plate, and multiple sets of top rods arranged at the top of the vertical plate, the top rods being slidably connected to the filter holes.
[0012] As a preferred embodiment of this utility model, a pushing groove is provided at one end of the inner wall of the processing box body, a deflecting rod is rotatably connected to one end of the inner side of the pushing groove, a pushing plate is fixedly sleeved at one end of the outer wall of the deflecting rod, and a torsion spring is installed between one end of the deflecting rod and the inner wall of the pushing groove.
[0013] As a preferred embodiment of this utility model, a pull ring is rotatably connected to one end of the deflection rod extending to the outer wall of the processing box body. The arc-shaped section of the pull ring is made of rubber, and a vertical rod is installed on the outer wall of the processing box body on one side of the pull ring.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] In this invention, an interception component intercepts and collects impurities that fall from the fabric, a connecting component connects the interception component, and a pushing component pushes out the impurities that are blocked on the interception component. The structure is simple and easy to operate. It can intercept and collect impurities that fall from a section of the fabric inside the processing box, eliminating the need for staff to reach into the processing box to clean up the scattered impurities one by one after the batch of fabric has been processed. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0017] Figure 2 This is a partial cross-sectional view of the main body of the processing box of this utility model;
[0018] Figure 3 This is a partial cross-sectional view of the connecting component of this utility model;
[0019] Figure 4 This is a partial three-dimensional structural diagram of the pull ring and upright of this utility model.
[0020] In the diagram: 1. Processing box body; 2. Roller roller; 3. Roller brush; 4. First sealing gasket; 5. Filter plate; 6. Movable rod; 7. Pressure block; 8. Abutment plate; 9. First spring; 10. Second spring; 11. Fixed plate; 12. Rotating plate; 13. Protrusion; 14. Positioning block; 15. Reset plate; 16. Vertical plate; 17. Vertical plate; 18. Top rod; 19. Push plate; 20. Torsion spring; 21. Pull ring; 22. Vertical rod; 23. Linkage plate; 24. Fixed base. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.
[0022] Example: Please refer to Figures 1-4 This utility model provides a technical solution:
[0023] The anti-pilling treatment equipment for polyester-cotton fabric includes a treatment box body 1. Both ends of the outer wall of the treatment box body 1 have conveying ports. Multiple sets of rollers 2 are rotatably connected to both ends of the inner side of the treatment box body 1. Multiple sets of roller brushes 3 are arranged and installed on the outer wall of the rollers 2. Multiple sets of drive motors are arranged and installed on the outer wall of the treatment box body 1. The drive ends of the drive motors extend into the interior of the treatment box body 1 and are fixedly connected to one end of the rollers 2. A discharge pipe is embedded at one end of the bottom of the treatment box body 1, and a valve is installed at one end of the discharge pipe extending to the outer side of the treatment box body 1. Multiple sets of guide rollers arranged alternately with the rollers 2 are rotatably connected to the inner wall of the treatment box body 1. The interior of the treatment box body 1 is located below the rollers 2. The device is equipped with an interception and collection mechanism, which includes an interception component, a connecting component, and a pushing component. The interception component is used to intercept and collect impurities that fall from the fabric. The connecting component is used to connect the interception component, and the pushing component is used to push out the impurities that are blocking the interception component. When in use, the device can intercept and collect impurities that fall from the fabric through the interception component, connect the interception component through the connecting component, and push out the impurities that are blocking the interception component. The structure is simple and easy to operate. It can intercept and collect impurities that fall from the fabric inside the processing box 1, eliminating the need for staff to reach into the processing box 1 to clean up the scattered impurities one by one after the batch of fabric has been processed.
[0024] In this embodiment, as Figure 1 , Figure 2 and Figure 3As shown, the interception component includes an overlap groove on one side of the outer wall of the processing box body 1. A fixing seat 24 overlaps inside the overlap groove. There are first sealing gaskets 4 at both ends of the overlap groove inside the processing box body 1. The outer wall of the first sealing gasket 4 is in contact with the outer wall of the fixing seat 24. A filter plate 5 is installed on one side of the outer wall of the fixing seat 24. Multiple sets of filter holes are arranged inside the filter plate 5. The other end of the outer wall of the filter plate 5 is in contact with the other side of the inner wall of the processing box body 1. First, the polyester-cotton fabric that needs to be anti-pilling treated is sent into the equipment through the conveying ports opened at both ends of the outer wall of the processing box body 1. This process ensures that the fabric can enter the equipment processing area stably and orderly for subsequent processing. Multiple sets of drive motors start, and the drive end of the drive motor drives the roller 2 to rotate. The roller brushes 3 arranged on the outer wall of the roller 2 rotate synchronously. At this time, the anti-pilling agent filled inside the processing box 1 covers the bottom part of the roller brushes 3 on both sides above. When the fabric is conveyed, the fabric will be located between the two sets of adjacent roller brushes 3. During the rotation of the roller brushes 3, the fabric is immersed in the anti-pilling agent in this way. Anti-pilling agent can adhere to the fabric surface, acting as a pretreatment and laying the foundation for improving the fabric's anti-pilling performance. The rotating brush 3, as it rotates with the rolling roller 2, rolls the fabric surface. Due to its special material and structure, and the contact pressure with the fabric surface, the brush 3 combs and compacts the surface fibers of the polyester-cotton fabric. This process makes the fibers on the fabric surface more neatly and tightly arranged, reducing fiber looseness. Furthermore, the friction between the brush 3 and the fabric surface helps the anti-pilling agent adhere better and more evenly to the fabric. During the fabric rolling process, due to friction, combing, and the soaking effect of the anti-pilling agent liquid, larger, firmly attached fibers and impurities on the fabric surface gradually fall off. Once these impurities no longer cover the fabric surface, the speed and effectiveness of the anti-pilling agent penetrating the fabric can be further increased.
[0025] In this embodiment, as Figure 1 , Figure 2 and Figure 3As shown, the connecting assembly includes a movable rod 6 slidably connected to one end of the fixed base 24. A linkage groove is provided at one end of the movable rod 6 inside the fixed base 24, and a linkage plate 23 is slidably connected to the inner side of the linkage groove. The linkage plate 23 is rotatably connected to the movable rod 6. A fourth spring is installed between the two ends of the outer wall of the linkage plate 23 and the inner wall of the linkage groove. A retaining ring is rotatably connected to one end of the movable rod 6 extending to the outside of the fixed base 24. A pressure groove is provided inside the processing box body 1 on one side of the overlapping groove. A pressure block 7 is installed at the other end of the movable rod 6, slidably connected to the pressure groove. The side cross-section of the pressure groove is circular. Then, when impurities... When the material falls, the interception components in the interception and collection mechanism begin to function. They are located inside the processing box body 1, on the inner side of the overlapping groove below the roller 2, and are connected to a fixing seat 24. The first sealing gasket 4 located at both ends of the overlapping groove inside the processing box body 1 is tightly fitted to the outer wall of the fixing seat 24 to ensure sealing and prevent leakage. A filter plate 5 is installed on one side of the outer wall of the fixing seat 24, and multiple sets of filter holes are arranged inside it. The falling impurities are guided to the surface of the filter plate 5. The filter holes can intercept impurities while allowing the anti-pilling agent liquid to flow, thereby achieving the interception and collection of impurities generated during the fabric processing.
[0026] In this embodiment, as Figure 2 , Figure 3 and Figure 4 As shown, an abutment groove is provided inside the processing box body 1 on one side of the pressure groove. An abutment plate 8 is slidably connected to the inside of the abutment groove. A first spring 9 is installed between one end of the abutment plate 8 and the inner wall of the abutment groove. Corresponding first inclined surfaces are provided on the opposite ends of the pressure block 7 and the abutment plate 8. Two sets of second springs 10 are installed on both sides of the other end of the pressure groove. A fixing plate 11 is installed on the other end of the second spring 10. A rotating plate 12 is rotatably connected to the other end of the fixing plate 11. A protrusion 13 is installed on one side of the outer wall of the abutment plate 8. A groove is provided on the other side of the outer wall of the pressure block 7 that is slidably connected to the protrusion 13. A positioning groove is provided on the side of the outer wall of the pressure block 7 located on the first inclined surface. A positioning block 14 that slides in connection with the positioning groove is installed on one side of the rotating disk 12. Furthermore, when assembling the filter plate 5, the fixed seat 24 can be aligned with the overlapping groove port and inserted. At the same time, the movable rod 6 is pushed so that the pressure block 7 enters the inner side of the pressure groove. The pressure block 7 squeezes the abutment plate 8 to retract, forcing the first spring 9 to retract. At the same time, the positioning block 14 on the pressure block 7 engages with the positioning groove, squeezing the fixed disk 11 to force the second spring 10 to retract. After the pressure block 7 and the abutment plate 8 are misaligned, the abutment plate 8 can be ejected by the first spring 9. At this time, the movable rod 6 is released, and the pressure block 7 will be reset by the fixed disk 11, so that the protrusion 13 and the groove engage, achieving the positioning effect.
[0027] In this embodiment, as Figure 3 , Figure 3 and Figure 4As shown, the pushing assembly includes a reset groove inside the fixed base 24. A reset plate 15 is slidably connected to the inside of the reset groove. A third spring is installed between both ends of the outer wall of the reset plate 15 and the inner wall of the reset groove. A vertical plate 16 is installed at the end of the reset plate 15 extending to the outside of the fixed base 24. A corresponding second inclined surface is opened at the opposite ends of the vertical plate 16 and the inner wall of the overlapping groove. Multiple sets of vertical plates 17 are arranged on one side of the vertical plate 16. Multiple sets of top rods 18 are arranged at the top of the vertical plates 17. The top rods 18 are slidably connected to the filter holes. A pushing groove is opened at one end of the inner wall of the treatment box body 1. A deflecting rod is rotatably connected to one end of the pushing groove. A pushing plate 19 is fixedly sleeved at one end of the outer wall of the deflecting rod. A torsion spring 20 is installed between one end of the deflecting rod and the inner wall of the pushing groove. A pull ring 21 is rotatably connected to one end of the rotating rod extending to the outer wall of the processing box body 1. The arc-shaped section of the pull ring 21 is made of rubber. A vertical rod 22 is installed on the outer wall of the processing box body 1 on one side of the pull ring 21. Furthermore, as the fabric processing continues, more and more impurities will gradually accumulate on the surface of the filter plate 5. When it is necessary to clean the impurities on the filter plate 5, after the processing of this batch of fabric is completed, the pull ring 21 is fastened to drive the deflection rod to rotate, so that the torsion spring 20 is compressed and retracted. After the push plate 19 deflects, it lifts the vertical plate 16, so that the reset plate 15 slides in the reset groove inside the fixed seat 24. The third spring installed between the two ends of one side of the outer wall of the reset plate 15 and the inner wall of the reset groove is compressed. As the vertical plate 16 moves, the multiple springs installed on one side of the vertical plate 16 are compressed. As the vertical plate 17 moves upward, the multiple sets of push rods 18 arranged at the top of the vertical plate 17 also move upward. Since the push rods 18 are slidably connected to the filter holes on the filter plate 5, the push rods 18 will push out the impurities clogging the filter holes, thereby effectively cleaning the filter plate 5 and restoring its good flowability so as to continue to intercept impurities generated during the fabric processing without interfering with the flow of the anti-pilling agent. After being pushed up, the rubber part of the pull ring 21 is stretched and temporarily positioned by hooking it onto the recess on the upright 22 to prevent it from deflecting again. Then, the movable rod 6 is pulled to extend to the buckle rotatably connected to the outer end of the fixed seat 24. Under the action of the pulling force, the movable rod 6 slides inside the fixed seat 24 at one end, while driving the linkage plate 23 rotatably connected to the movable rod 6 to the fixed seat 24. The linkage plate 23 slides within the linkage groove inside the seat 24. The fourth spring installed between the two ends of the outer wall of the linkage plate 23 and the inner wall of the linkage groove is stretched, and the linkage plate 23 slides smoothly within the linkage groove. The pressure block 7 installed at the other end of the movable rod 6 slides within the pressure groove located on one side of the overlapping groove inside the main body 1 of the processing box. Since the side cross section of the pressure groove is circular, it can ensure that the pressure block 7 slides or rotates smoothly in a straight line within the groove. After the protrusion 13 moves away from the groove, it can cooperate with the positioning block 14 and the positioning groove to drive the rotating disk 12 to rotate. After the pressure block 7 rotates to the point where it intersects with the abutment plate 8 in the longitudinal direction, it can be pulled out. When pulling it out, the bottom end of the extended vertical plate 16 can be held to prevent the top rod 18 from moving back, allowing the impurities to fall back into the filter holes. Then the impurities on the filter plate 5 can be concentrated and poured out.
[0028] The implementation principle of the anti-pilling treatment equipment for polyester-cotton fabric in this embodiment is as follows: The polyester-cotton fabric requiring anti-pilling treatment is fed into the equipment through the conveying ports at both ends of the outer wall of the treatment box body 1. This process ensures that the fabric can enter the equipment processing area stably and orderly for subsequent processing. Multiple sets of drive motors are started, and the drive ends of the drive motors drive the rollers 2 to rotate. The roller brushes 3 arranged on the outer wall of the rollers 2 rotate synchronously. At this time, the anti-pilling agent filled inside the treatment box body 1 covers the bottom part of the roller brushes 3 on both sides above. When the fabric is conveyed, the fabric will be located between the two sets of adjacent roller brushes 3. During the rotation of the roller brushes 3, the fabric is immersed in the anti-pilling agent in this way. The anti-pilling agent can adhere to the fabric surface and play a pre-treatment role, laying the foundation for improving the anti-pilling performance of the fabric. As the rotating roller brushes 3 rotate with the rollers 2, they perform a rolling action on the fabric surface. The roller brushes 3, with their special material and structure, as well as the contact pressure with the fabric surface, comb and compact the surface fibers of the polyester-cotton fabric. This process, on the one hand, makes the fibers on the fabric surface more neatly and tightly arranged, reducing the looseness of the fibers; on the other hand, the friction between the roller brush 3 and the fabric surface also helps the anti-pilling agent to adhere to the fabric better and more evenly. During the fabric rolling process, due to the friction, combing, and soaking of the anti-pilling agent liquid, larger, firmly attached fibers and impurities on the fabric surface will gradually fall off. After these impurities no longer cover the fabric surface, the speed and penetration effect of the anti-pilling agent into the fabric can be further increased. When the impurities fall off, the interception component in the interception and collection mechanism begins to function. It is located inside the treatment box body 1, on the inner side of the overlapping groove below the rolling roller 2, and is fitted with a fixing seat 24. The first sealing gasket 4 located at both ends of the overlapping groove inside the treatment box body 1 is tightly attached to the outer wall of the fixing seat 24. To ensure a tight seal and prevent leakage, a filter plate 5 is installed on one side of the outer wall of the fixing base 24. Multiple sets of filter holes are arranged inside the filter plate 5. Fallen impurities are guided to the surface of the filter plate 5. The filter holes allow the anti-pilling agent liquid to flow while intercepting impurities, thus achieving the interception and collection of impurities generated during fabric processing. During assembly, the fixing base 24 is aligned with the overlapping groove port and inserted. Simultaneously, the movable rod 6 is pushed, causing the pressure block 7 to enter the inner side of the pressure groove. The pressure block 7 presses against the abutment plate 8, causing it to retract and forcing the first spring 9 to retract. At the same time, the positioning block 14 on the pressure block 7 engages with the positioning groove, pressing against the fixing plate 11 and forcing the second spring 10 to retract. After the pressure block 7 and the abutment plate 8 are misaligned, the abutment plate 8 can be ejected by the first spring 9. At this point, the movable rod 6 is released.The pressure block 7 will be reset by the fixing plate 11, causing the protrusion 13 and the groove to engage, achieving a positioning effect. As the fabric processing continues, more and more impurities will gradually accumulate on the surface of the filter plate 5. When it is necessary to clean the impurities on the filter plate 5, after the processing of this batch of fabric is completed, the pull ring 21 can be fastened to drive the deflection rod to rotate, causing the torsion spring 20 to be squeezed back. After the push plate 19 deflects, it pushes up the upright plate 16, causing the reset plate 15 to slide in the reset groove inside the fixing seat 24. The two ends of one side of the outer wall of the reset plate 15 and the inner wall of the reset groove are... The third spring installed between the sections is compressed. As the vertical plate 16 moves, the multiple sets of vertical plates 17 arranged on one side of the vertical plate 16 move upward. The multiple sets of push rods 18 arranged at the top of the vertical plates 17 also move upward. Since the push rods 18 are slidably connected to the filter holes on the filter plate 5, the push rods 18 will push the impurities blocking the filter holes upward, thereby effectively cleaning the filter plate 5 and restoring good flowability to the filter plate 5 so as to continue to intercept impurities generated during the fabric processing without interfering with the flow of the anti-pilling agent. After being pushed up, the rubber material on the pull ring 21 will... One end is stretched and temporarily positioned at the recess on the upright 22 to prevent further deflection. Then, the movable rod 6 is pulled to extend to the buckle rotatably connected to the outer end of the fixed base 24. Under the action of the tension, the movable rod 6 slides inside the fixed base 24 at one end, simultaneously causing the linkage plate 23, which is rotatably connected to the movable rod 6, to slide in the linkage groove opened inside the fixed base 24. The fourth spring installed between the two ends of the outer wall of the linkage plate 23 and the inner wall of the linkage groove is stretched, and the linkage plate 23 slides smoothly in the linkage groove. The pressure block 7 installed at the other end of the movable rod 6... The pressure block 7 then slides within the pressure groove located on one side of the overlapping groove inside the main body 1 of the processing box. Because the side cross-section of the pressure groove is circular, it ensures that the pressure block 7 slides or rotates smoothly in a straight line within the groove. After the protrusion 13 moves away from the groove, it can cooperate with the positioning block 14 and the positioning groove to drive the rotating disk 12 to rotate. Once the pressure block 7 rotates until it intersects longitudinally with the abutment plate 8, it can be pulled out. When pulling it out, the bottom end of the extended vertical plate 16 can be held to prevent the top rod 18 from moving back, allowing impurities to fall back into the filter holes. Then, the impurities on the filter plate 5 can be collected and poured out.
[0029] The control method of this utility model is through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art. The power supply is also common knowledge in the field. Since this utility model is used to protect mechanical devices, the control method and circuit connection will not be explained in detail.
[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A polyester cotton fabric anti-pilling treatment device, comprising a treatment box main body (1), characterized in that: The processing box body (1) has conveying ports at both ends of its outer wall. Multiple sets of rolling rollers (2) are rotatably connected to both ends of the inner side of the processing box body (1). Multiple sets of roller brushes (3) are arranged on the outer wall of the rolling rollers (2). Multiple sets of drive motors are arranged on the outer wall of the processing box body (1). The drive end of the drive motor extends into the processing box body (1) and is fixedly connected to one end of the rolling roller (2). A discharge pipe is embedded at one end of the bottom of the processing box body (1). A valve is installed at one end of the discharge pipe extending to the outside of the processing box body (1). Multiple sets of guide rollers arranged alternately with the rolling rollers (2) are rotatably connected to the inner wall of the processing box body (1). An interception and collection mechanism is installed inside the processing box body (1) below the rolling rollers (2). The interception and collection mechanism includes an interception component, a connecting component, and a pushing component. The interception component is used to intercept and collect impurities falling from the fabric. The connecting component is used to connect the interception component. The pushing component is used to push out the impurities blocked on the interception component.
2. The polyester cotton fabric anti-pilling treatment equipment according to claim 1, characterized in that: The interception component includes an overlap groove on one side of the outer wall of the processing box body (1), a fixing seat (24) is attached to the inside of the overlap groove, and a first sealing gasket (4) is provided at both ends of the overlap groove inside the processing box body (1). The outer wall of the first sealing gasket (4) is attached to the outer wall of the fixing seat (24). A filter plate (5) is installed on one side of the outer wall of the fixing seat (24). Multiple sets of filter holes are arranged inside the filter plate (5). The other end of the outer wall of the filter plate (5) is attached to the other side of the inner wall of the processing box body (1).
3. The polyester cotton fabric anti-pilling treatment equipment according to claim 2, characterized in that: The connecting assembly includes a movable rod (6) slidably connected to one end of the fixed base (24). A linkage groove is provided at one end of the movable rod (6) inside the fixed base (24). A linkage plate (23) is slidably connected to the inside of the linkage groove. The linkage plate (23) and the movable rod (6) are rotatably connected. A fourth spring is installed between the two ends of the outer wall of the linkage plate (23) and the inner wall of the linkage groove. A buckle is rotatably connected to one end of the movable rod (6) extending to the outside of the fixed base (24). A pressure groove is provided inside the processing box body (1) on one side of the overlapping groove. A pressure block (7) is installed at the other end of the movable rod (6) and slidably connected to the pressure groove. The side cross-section of the pressure groove is circular.
4. The polyester cotton fabric anti-pilling treatment equipment according to claim 3, characterized in that: The processing box body (1) has an abutment groove on one side of the pressure groove. An abutment plate (8) is slidably connected to the inside of the abutment groove. A first spring (9) is installed between one end of the abutment plate (8) and the inner wall of the abutment groove. The opposite ends of the pressure block (7) and the abutment plate (8) are provided with corresponding first inclined surfaces. Two sets of second springs (10) are installed on both sides of the other end of the pressure groove. A fixing plate (11) is installed on the other end of the second spring (10). A rotating plate (12) is rotatably connected to the other end of the fixing plate (11). A protrusion (13) is installed on one side of the outer wall of the abutment plate (8). A groove is provided on the other side of the outer wall of the pressure block (7) and is slidably connected to the protrusion (13). A positioning groove is provided on one side of the outer wall of the pressure block (7) located on the first inclined surface. A positioning block (14) is installed on one side of the rotating plate (12) and is slidably connected to the positioning groove.
5. The polyester cotton fabric anti-pilling treatment equipment according to claim 4, characterized in that: The pushing assembly includes a reset groove inside the fixed base (24). A reset plate (15) is slidably connected to the inner side of the reset groove. A third spring is installed between the two ends of the outer wall of the reset plate (15) and the inner wall of the reset groove. A vertical plate (16) is installed at one end of the reset plate (15) extending to the outside of the fixed base (24). A corresponding second inclined surface is opened at the opposite ends of the vertical plate (16) and the inner wall of the overlapping groove. Multiple sets of vertical plates (17) are arranged on one side of the vertical plate (16). Multiple sets of top rods (18) are arranged at the top of the vertical plate (17). The top rods (18) are slidably connected to the filter holes.
6. The polyester cotton fabric anti-pilling treatment equipment according to claim 5, characterized in that: A push groove is provided at one end of the inner wall of the processing box body (1). A deflection rod is rotatably connected to one end of the inner side of the push groove. A push plate (19) is fixedly sleeved on one end of the outer wall of the deflection rod. A torsion spring (20) is installed between one end of the deflection rod and the inner wall of the push groove.
7. The polyester cotton fabric anti-pilling treatment equipment according to claim 6, characterized in that: The deflection rod extends to one end of the outer wall of the treatment box body (1) and is rotatably connected to a pull ring (21). The arc-shaped section of the pull ring (21) is made of rubber. A vertical rod (22) is installed on the outer wall of the treatment box body (1) on one side of the pull ring (21).