A self-cleaning double-station fabric loading mechanism

Through the correction and cleaning mechanism of the self-cleaning double-station fabric rolling mechanism, the problem of winding and dust removal of the fabric rolling machine simultaneously in the operation of the dual-station is solved, and the correction and wrinkle removal of the fabric is achieved, avoiding powder and floc contamination.

CN119911734BActive Publication Date: 2025-07-04KUNSHAN INAUTEK AUTOMOTIVE COMPONENTS CO LTD
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Patent Information

Application Number
CN202510404839.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2025-07-04
Estimated Expiration
2045-04-02

AI Technical Summary

Technical Problem

It is difficult to achieve synchronous winding and dust removal when operating in dual-stations. The dust cannot be cleaned in time after the fabric is released, causing the dust to stick to the guide roller and contaminate other fabrics.

Method used

A self-cleaning double-station fabric rolling mechanism is designed, including a bias correction mechanism and a cleaning mechanism. By combining the correction and deflection roller and cleaning brush roller with the adsorption dust removal plate, the powder floc is deposited in the dust collecting water tank to avoid dust pollution.

Benefits of technology

The fabric is corrected and wrinkle-removed smoothed, avoiding the contamination of subsequent fabrics by sticking to the surface of the cleaning brush roller, and keeping the working environment clean.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a self-cleaning double-station fabric winding mechanism, which relates to the technical field of fabric winding machines and includes a winding device and a winding device connected to the left end of the winding device. It further includes: a deviation rectifying mechanism is arranged on the left side inside the winding device, and the deviation rectifying mechanism includes a deviation rectifying roller for guiding and winding the fabric, and deviation rectifying partition plates are slidably arranged on the front and rear sides of the outer wall of the deviation rectifying roller; a cleaning mechanism is arranged on the right side inside the winding device, and the cleaning mechanism includes a cleaning brush roller for separating the fluff on the surface of the fabric, and an adsorption dust removal plate is attached to the outer wall of the cleaning brush roller. This self-cleaning double-station fabric winding mechanism rectifies and removes wrinkles from the fabric during winding through the deviation rectifying mechanism of the winding device, and when the cleaning brush roller scrapes off the fluff, the adsorption dust removal plate introduces the fluff into the dust collection water tank so as to precipitate and collect the fluff, avoiding causing dust pollution to the subsequently wound fabric.
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Description

Technical Field

[0001] The present invention relates to the technical field of fabric upcoilers, and specifically to a self-cleaning double-station fabric upcoiling mechanism. Background Art

[0002] A fabric upcoiler, also known as a cloth coiler, drives a cloth winding shaft to rotate through a motor, and at the same time uses a cloth pressing mechanism to compact the fabric and feed it into the cloth winding shaft, thereby forming a cloth roll. It can adapt to fabrics of different thicknesses, widths, and lengths for winding processing. The double-station of the upcoiler can achieve efficient and non-stop winding work, thereby improving production efficiency. In a conventional fabric upcoiler, a corresponding cleaning device is provided between the fabric and the guide roller to clean the dust, fluff, etc. adhered to the fabric and improve the cleanliness of the fabric.

[0003] The invention with the publication number CN107697695A discloses a novel cloth coiler, which controls the lifting of a cleaning brush through a telescopic rod and a spring, and under the action of a blower, cleans the thread ends and dust on the surface of the fabric; the present invention controls the lowering of a pressing roller through the winding of a connecting rope by a winding shaft, facilitating the disassembly, assembly, and maintenance of the winding roller.

[0004] The invention with the publication number CN108328383A discloses a warp knitted fabric coiler with a dust removal function. While rolling up the warp knitted fabric, it drives the warp knitted fabric to rub against an upper brush and a lower brush. The upper brush and the lower brush clean the warp knitted fabric. The exhaust fan works to suck the dust into a collection box. After being filtered by a filter screen, it is then discharged through an air outlet.

[0005] However, the above-mentioned fabric upcoiling and winding device with a dust removal function still has the following problems in actual use: Dust removal is achieved by cooperating the upcoiler with negative pressure during fabric upcoiling. However, such an upcoiler is difficult to adapt to the synchronous winding and dust removal of the double-station during the fabric winding process. During double-station operation, due to the different contact surfaces of the fabric, the dust cannot be cleaned by a unified dust removal mechanism. At the same time, the dust cannot be cleaned by the dust removal mechanism in the first time after the fabric is released, causing it to adhere to the guide roller in contact with the fabric, and then mixing with other fabrics to cause pollution.

[0006] Therefore, we propose a self-cleaning double-station fabric upcoiling mechanism to facilitate the solution of the problems raised above. Summary of the Invention

[0007] The object of the present invention is to provide a self-cleaning double-station fabric winding mechanism, which is used to solve the problem that the existing fabric winding machine with negative pressure can achieve dust removal during fabric winding, but it is difficult to adapt to the synchronous winding and dust removal of the double station during the fabric winding process. During the double-station operation, due to the different contact surfaces of the fabric, it is impossible to clean the dust through a unified dust removal mechanism. At the same time, the dust cannot be cleaned by the dust removal mechanism in the first time after the fabric is released, which makes it stick to the guide roller in contact with the fabric, and then mixes with other fabrics to cause pollution.

[0008] To achieve the above object, the present invention provides the following technical solutions: A self-cleaning double-station fabric winding mechanism includes a winding device and a winding device connected to the left end of the winding device, and the winding device is used to wind the fabric after removing wrinkles, correcting deviation and cleaning inside the winding device; It also includes:

[0009] A deviation correction mechanism is arranged on the left side inside the winding device, and the deviation correction mechanism includes a deviation correction deflection roller for guiding and winding the fabric, and deviation correction partition plates are slidably arranged on the front and rear sides of the outer wall of the deviation correction deflection roller;

[0010] A cleaning mechanism is arranged on the right side inside the winding device, and the cleaning mechanism includes a cleaning brush roller for separating the fluff on the fabric surface, and an adsorption dust removal plate is attached to the outer wall of the cleaning brush roller.

[0011] Preferably, the deviation correction deflection roller included in the deviation correction mechanism is rotatably arranged on the upper and lower sides of the left end inside the winding device through bearings, and an adjustment distance sliding frame is arranged on the left side of the top surface of the winding device, and limit sliding rods for guiding the deviation correction partition plates are fixedly arranged on the left and right sides inside the adjustment distance sliding frame.

[0012] Preferably, the top ends of the deviation correction partition plates included in the deviation correction mechanism are slidably connected to the front and rear sides of the limit sliding rods, and the deviation correction partition plates and the limit sliding rods are connected to each other through a resisting spring, and wrinkle removing arc plates are fixedly arranged on the upper and lower sides of the symmetrically arranged deviation correction partition plates, and the wrinkle removing arc plates are attached to the fabric on the outer wall of the deviation correction deflection roller.

[0013] Preferably, wrinkle removing guide rollers are rotatably arranged at equal intervals through bearings on the inner side of the wrinkle removing arc plates included in the deviation correction mechanism, and the wrinkle removing guide rollers are arranged in an inclined structure with the outer ends downward, and the wrinkle removing guide rollers rotate following the movement of the fabric, and the wrinkles of the fabric are smoothed towards the end by their inclined distribution.

[0014] Preferably, the cleaning brush roller included in the cleaning mechanism is rotatably arranged on the upper and lower sides of the right end inside the winding device through bearings, and a negative pressure sleeve is fixedly arranged on the right side of the front surface of the winding device, and a one-way exhaust slot hole is opened on the front surface of the negative pressure sleeve, and the inner ends of the pressure pistons are slidably connected to the upper and lower sides inside the negative pressure sleeve.

[0015] Preferably, the cleaning mechanism includes a lifting slide plate, which is fixedly connected to the outer end of the pressure piston. The outer end of the lifting slide plate is rotatably provided with a turning connecting rod through a bearing. One end of the symmetrically arranged turning connecting rods away from the lifting slide plate is rotatably connected to the eccentric position at the front end of the cleaning brush roller through a bearing.

[0016] Preferably, the pressure piston included in the cleaning mechanism performs reciprocating lifting movements in opposite directions inside the negative pressure sleeve. The right end of the negative pressure sleeve is connected in a through manner with a one-way exhaust duct. The other end of the exhaust duct is connected in a through manner to the front top surface of the dust collection water tank. The dust collection water tank is fixedly installed in the middle of the right end inside the winding device.

[0017] Preferably, the cleaning mechanism includes a guiding frame, which is fixedly installed between the cleaning brush rollers on the upper and lower sides inside the winding device. A reciprocating threaded rod is rotatably provided inside the guiding frame. The outer wall of the reciprocating threaded rod is threadedly connected to the inner end of the adsorption and dust removal plate. The adsorption and dust removal plate is attached to the outer wall of the cleaning brush roller to achieve negative pressure recovery of separated flocs.

[0018] Preferably, the cleaning mechanism includes an air inlet telescopic pipe. The outer end of the air inlet telescopic pipe is connected in a through manner with the adsorption and dust removal plate to achieve negative pressure suction. The inner end of the air inlet telescopic pipe is connected in a through manner to the inner top surface at the rear end of the dust collection water tank. After the dust collection water tank absorbs the air containing flocs through the air inlet telescopic pipe, it is discharged through the exhaust duct and the one-way exhaust slot holes on the front surface of the negative pressure sleeve.

[0019] Preferably, the cleaning mechanism includes a main separation partition plate and a secondary separation partition plate, which are symmetrically installed on the front and rear sides inside the dust collection water tank. The bottom heights of the main separation partition plate and the secondary separation partition plate are higher than the bottom height of the dust collection water tank. The water level line inside the dust collection water tank is higher than the bottom heights of the main separation partition plate and the secondary separation partition plate.

[0020] Compared with the prior art, the beneficial effects of the present invention are as follows: For this self-cleaning double-station fabric winding-up mechanism, the deviation rectifying mechanism of the winding device rectifies and removes wrinkles from the fabric during winding-up. When the cleaning brush roller scrapes off the flocs, the adsorption and dust removal plate introduces the flocs into the dust collection water tank to precipitate and collect the flocs, avoiding causing dust pollution to the subsequently wound-up fabric. The specific content is as follows:

[0021] 1. The fabric is processed by the deviation rectifying mechanism and the cleaning mechanism of the winding device, and the processed fabric is recycled and wound by the winding-up device. The deviation rectifying partition plate ensures the centering of the fabric to avoid deviation during conveying. At the same time, the wrinkle-removing arc plate cooperates with the deviation rectifying roller to place the fabric at the gap. The wrinkle-removing guide roller rotates following the movement of the fabric, so that the wrinkle-removing guide roller guides and smooths the wrinkled part of the fabric through the rotational force inclined outward, avoiding folding during winding and affecting subsequent processing.

[0022] 2. The cleaning brush roller rotating in the opposite direction to the fabric conveying direction scrapes and separates the powder flocs on the fabric. The reciprocating threaded rod inside the guiding frame rotates to drive the adsorption and dust removal plate to move back and forth in the front and rear directions, so as to scrape off the powder flocs adhered to its surface after fitting the cleaning brush roller, avoiding the powder flocs adhering to the surface of the cleaning brush roller and contaminating the subsequent fabric.

[0023] 3. The cleaning brush roller drives the flipping connecting rod to reciprocally flip. The flipping connecting rod is limited by the lifting slide plate, so as to drive the lifting slide plate and the pressure piston to reciprocally move inside the negative pressure sleeve. When moving away from the negative pressure sleeve, the inside is in a negative pressure state and sucks air from the through-connected exhaust duct, while when approaching the middle of the negative pressure sleeve, it exhausts to the outside through the one-way exhaust slot holes opened in the middle of the negative pressure sleeve.

[0024] 4. The dust collection water tank collects the powder flocs through the adsorption and dust removal plate and the air intake telescopic pipe by negative pressure. The main separation partition plate and the secondary separation partition plate prevent the air containing flying flocs from discharging through the space above the water level line, and separate the flying flocs from the air by wetting with water. After separation, the air is discharged outward through the negative pressure sleeve, so that the flying flocs are deposited inside the dust collection water tank, avoiding discharging outward and diffusing in the air and affecting the working environment. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic three-dimensional structure diagram of the whole invention.

[0026] Figure 2 It is a schematic three-dimensional structure diagram of the winding device of the invention.

[0027] Figure 3 It is a schematic diagram of the deviation rectifying mechanism and the cleaning mechanism of the invention.

[0028] Figure 4 It is a schematic installation structure diagram of the negative pressure sleeve of the invention.

[0029] Figure 5 It is a schematic three-dimensional structure diagram of the adsorption and dust removal plate and the dust collection water tank of the invention.

[0030] Figure 6 It is a schematic sectional structure diagram of the negative pressure sleeve of the invention.

[0031] Figure 7 For the inventionFigure 6 Enlarged structural diagram at A in the middle.

[0032] Figure 8 It is a schematic diagram of the cross-sectional structure of the dust collecting water tank of the present invention.

[0033] Figure 9 It is a schematic diagram of the installation structure of the deviation-correcting partition plate and the wrinkle arc removal plate of the present invention.

[0034] Figure 10 It is a schematic diagram of the three-dimensional structure of the wrinkle arc removal plate of the present invention.

[0035] Figure 11 For the present invention Figure 10 Enlarged structural diagram at B in the middle.

[0036] Figure 12 For the present invention Figure 8 Enlarged structural diagram at point C in the middle.

[0037] In the figure: 1. Rolling device; 2. Winding device; 3. Deflection correction roller; 4. Deflection correction partition; 5. Cleaning brush roller; 6. Adsorption dust removal plate; 7. Distance adjustment slide; 8. Limiting slide bar; 9. Resistance spring; 10. Wrinkle removal arc plate; 11. Wrinkle removal guide roller; 12. Negative pressure sleeve; 13. Pressure piston; 14. Exhaust duct; 15. Dust collecting water tank; 16. Guide frame; 17. Reciprocating threaded rod; 18. Inlet telescopic pipe; 19. Main separation partition; 20. Auxiliary separation partition; 21. Lifting slide plate; 22. Flip connecting rod. DETAILED DESCRIPTION

[0038] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the implementation regulations described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0039] See also Figures 1-12 , the present invention provides the following technical solutions:

[0040] Embodiment 1: In order to solve the problems existing in the use of the existing cloth rolling mechanism, the present embodiment adopts the following technical scheme: a self-cleaning double-station cloth rolling mechanism, comprising a rolling device 1, and a winding device 2 connected to the left end of the rolling device 1, and the rolling device 1 is used to remove wrinkles and correct deviations inside the winding device 2 and wind up the cloth after cleaning; a correcting mechanism is arranged on the left side inside the winding device 2, and the correcting mechanism includes a correcting roller 3 for guiding the cloth, and a correcting partition 4 is slidably arranged on the front and rear sides of the outer wall of the correcting roller 3; the correcting roller 3 included in the correcting mechanism is rotatably arranged on the upper and lower sides of the left end inside the winding device 2 through bearings, and a distance adjusting slide 7 is arranged on the left side of the top surface of the winding device 2, and a limiting slide 8 for guiding the correcting partition 4 is fixedly arranged on the left and right sides inside the distance adjusting slide 7.

[0041] The top end of the correcting baffle 4 included in the correcting mechanism is slidably connected to the front and rear sides of the limiting slide bar 8, and the correcting baffle 4 and the limiting slide bar 8 are connected to each other through a resistance spring 9, and the upper and lower sides of the symmetrically arranged correcting baffle 4 are fixedly provided with wrinkle-removing plates 10, and the wrinkle-removing plates 10 are attached to the cloth on the outer wall of the correcting roller 3; the inner side of the wrinkle-removing plate 10 included in the correcting mechanism is provided with a wrinkle-removing guide roller 11 that is equidistantly rotated through a bearing, and the wrinkle-removing guide roller 11 is arranged in an inclined structure with the outer end downward, and the wrinkle-removing guide roller 11 rotates with the movement of the cloth, and smoothes the wrinkles of the cloth toward the end through its inclined distribution.

[0042] like Figures 1-2 As shown, the cloth unwinding roller releases the wound cloth to the winding device 2 and the upper rolling device 1, and the end of the cloth first enters the deflection correction roller 3 and the cleaning brush roller 5 on the left and right sides of the winding device 2, and is wound around the upper and lower upper rolling rollers of the upper rolling device 1, so that the cloth entering the winding device 2 can be rolled up by the upper rolling rollers under the control of the upper rolling device 1.

[0043] like Figures 9-11 As shown, when the cloth passes through the correcting mechanism on the left side inside the winding device 2, the correcting baffle 4 sliding on the front and rear sides of the outer wall of the correcting roller 3 is ensured to fit the cloth through the resistance spring 9, so that the correcting baffles 4 on both sides can be ensured to be centered relative to the correcting roller 3 through the distance adjusting slide 7, thereby driving the side edges of the fitted cloth to avoid deviation during transportation. At the same time, the correcting baffle 4 cooperates with the correcting roller 3 to place the cloth in the connected gap through the wrinkle removal plates 10 on the upper and lower sides of the inner end. At the same time, the wrinkle removal guide roller 11 on the inner side of the wrinkle removal plate 10 rotates with the movement of the cloth, so that the wrinkle removal guide roller 11 guides and smoothes the wrinkles of the cloth through the rotation force inclined toward the outside, thereby avoiding wrinkles during rolling up and affecting subsequent processing.

[0044] Embodiment 2: In order to solve the problems existing in the use of the existing fabric up-rolling mechanism, the following technical solutions are adopted in this embodiment. A cleaning mechanism is arranged on the right side inside the winding device 2, and the cleaning mechanism includes a cleaning brush roller 5 for separating the fluff on the fabric surface, and an adsorption dust removal plate 6 is attached to the outer wall of the cleaning brush roller 5; the cleaning mechanism includes a guiding frame 16, and the guiding frame 16 is fixedly installed between the cleaning brush rollers 5 on the upper and lower sides inside the winding device 2, and a reciprocating threaded rod 17 is rotatably arranged inside the guiding frame 16 through bearings, and the outer wall of the reciprocating threaded rod 17 is threadedly connected to the inner end of the adsorption dust removal plate 6, and at the same time, the adsorption dust removal plate 6 is attached to the outer wall of the cleaning brush roller 5 to realize the negative pressure recovery of separating the fluff.

[0045] As Figure 8 shown, the winding device 2 drives the cleaning brush rollers 5 on the upper and lower sides inside to rotate in the opposite direction to the fabric, and then the fluff adhered to the fabric surface is scraped and separated by the cleaning brush roller 5. Then the treated fabric moves to the right side of the winding device 2 and is recovered by the up-rolling device 1. At the same time, the winding device 2 drives the reciprocating threaded rods 17 inside the guiding frames 16 on the upper and lower sides to rotate, and the adsorption dust removal plates 6 threadedly connected to the reciprocating threaded rods 17 are driven to move back and forth in the front-rear direction, so as to scrape the fluff adhered to their surfaces after fitting the cleaning brush roller 5, and prevent the fluff from adhering to the surface of the cleaning brush roller 5 and polluting the subsequent fabric.

[0046] The cleaning brush roller 5 included in the cleaning mechanism is rotatably arranged on the upper and lower sides at the right end inside the winding device 2 through bearings, and a negative pressure sleeve 12 is fixedly arranged on the right side of the front surface of the winding device 2, and a one-way exhaust slot hole is opened on the front surface of the negative pressure sleeve 12, and the inner ends of the upper and lower sides inside the negative pressure sleeve 12 are both slidably connected to the pressure pistons 13; the cleaning mechanism includes a lifting slide plate 21, and the lifting slide plate 21 is fixedly connected to the outer ends of the pressure pistons 13. The outer end of the lifting slide plate 21 is rotatably arranged with a turning connecting rod 22 through a bearing, and the end of the turning connecting rod 22 far away from the lifting slide plate 21 is rotatably connected to the eccentric position at the front end of the cleaning brush roller 5 through a bearing.

[0047] The cleaning mechanism includes a pressure piston 13 that reciprocates up and down in the negative pressure sleeve 12 in opposite directions. The right end of the negative pressure sleeve 12 is connected through a one-way exhaust duct 14, and the other end of the exhaust duct 14 is connected through to the front top surface of the dust collection water tank 15. Moreover, the dust collection water tank 15 is fixedly installed in the middle of the right end inside the winding device 2. The cleaning mechanism includes an intake telescopic pipe 18, and the outer end of the intake telescopic pipe 18 is connected through to the adsorption dust removal plate 6 to achieve negative pressure suction. The inner end of the intake telescopic pipe 18 is connected through to the inner top surface at the rear end of the dust collection water tank 15. After the dust collection water tank 15 absorbs the air containing flocs through the intake telescopic pipe 18, it is discharged through the one-way exhaust slot hole on the front side of the negative pressure sleeve 12 by the exhaust duct 14. The cleaning mechanism includes a main separation partition 19 and a secondary separation partition 20, and the main separation partition 19 and the secondary separation partition 20 are symmetrically installed on the front and rear sides inside the dust collection water tank 15. Moreover, the bottom height of the main separation partition 19 and the secondary separation partition 20 is higher than the bottom height of the dust collection water tank 15, and the water level line inside the dust collection water tank 15 is higher than the bottom height of the main separation partition 19 and the secondary separation partition 20.

[0048] As Figures 6-7 shown, during the rotation of the cleaning brush rollers 5 on the upper and lower sides inside the winding device 2, the flipping link 22 connected to the front end bearing is driven to reciprocally flip up and down. The inner end of the flipping link 22 is limited by the lifting slide plate 21 connected through a bearing, so that the flipping link 22 drives the lifting slide plate 21 and the pressure piston 13 to reciprocally move inside the negative pressure sleeve 12. When moving away from the one-way exhaust slot hole in the middle of the negative pressure sleeve 12, the inside of the negative pressure sleeve 12 is in a negative pressure state to inhale air from the exhaust duct 14 connected through. When the pressure piston 13 approaches the middle of the negative pressure sleeve 12, it can exhaust to the outside through the one-way exhaust slot hole opened in the middle of the negative pressure sleeve 12.

[0049] As Figure 8 shown, when the inside of the negative pressure sleeve 12 is in a negative pressure state, it absorbs the air inside the dust collection water tank 15 through the exhaust duct 14. The dust collection water tank 15 then inhales air through the intake telescopic pipe 18 connected through to the rear end and the adsorption dust removal plate 6, so that when the adsorption dust removal plate 6 moves relative to the cleaning brush roller 5 to scrape and clean, the flocs are collected by negative pressure, and the flocs enter the inside of the dust collection water tank 15 through the intake telescopic pipe 18. Inside the dust collection water tank 15, by arranging the main separation partition 19 and the secondary separation partition 20 on the left and right sides, the air containing flocs cannot be discharged through the space above the water level line, but can only drive the flocs into the water through the air, and the flocs are wetted by the water and separated from the air. After separation, the air is discharged to the outside through the negative pressure sleeve 12, so that the flocs are deposited inside the dust collection water tank 15, preventing them from being discharged to the outside and diffusing in the air to affect the working environment.

[0050] 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 perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A self-cleaning double-station fabric winding-up mechanism, comprising a winding-up device (1) and a winding device (2) connected to the left end of the winding-up device (1), and the winding-up device (1) is used for winding the fabric after wrinkle removal, deviation correction and cleaning inside the winding device (2); Characterized in that, It further includes: A deviation correction mechanism is arranged on the left side inside the winding device (2), and the deviation correction mechanism includes a deviation correction roller (3) for guiding and winding the fabric, and deviation correction partition plates (4) are slidably arranged on both the front and rear sides of the outer wall of the deviation correction roller (3); A cleaning mechanism is arranged on the right side inside the winding device (2), and the cleaning mechanism includes a cleaning brush roller (5) for separating the powder flocs on the fabric surface, and an adsorption dust removal plate (6) is attached to the outer wall of the cleaning brush roller (5); The cleaning brush roller (5) included in the cleaning mechanism is rotatably arranged on the upper and lower sides at the right end inside the winding device (2) through bearings, and a negative pressure sleeve (12) is fixedly arranged on the right side of the front surface of the winding device (2), and a one-way exhaust slot hole is opened on the front surface of the negative pressure sleeve (12), and the upper and lower sides inside the negative pressure sleeve (12) are slidably connected to the inner ends of pressure pistons (13); The pressure pistons (13) included in the cleaning mechanism perform reciprocating lifting movements in opposite directions inside the negative pressure sleeve (12), and the right end of the negative pressure sleeve (12) is connected through a one-way exhaust duct (14), and the other end of the exhaust duct (14) is connected through to the front top surface of a dust collection water tank (15), and the dust collection water tank (15) is fixedly installed in the middle of the right end inside the winding device (2); The cleaning mechanism includes an air intake telescopic pipe (18), and the outer end of the air intake telescopic pipe (18) is connected through to the adsorption dust removal plate (6) to achieve negative pressure suction, and the inner end of the air intake telescopic pipe (18) is connected through to the inner top surface at the rear end of the dust collection water tank (15), and after the dust collection water tank (15) absorbs the air containing powder flocs through the air intake telescopic pipe (18), it is discharged through the exhaust duct (14) and the one-way exhaust slot hole on the front surface of the negative pressure sleeve (12); The cleaning mechanism includes a main separation partition plate (19) and a sub-separation partition plate (20), and the main separation partition plate (19) and the sub-separation partition plate (20) are symmetrically installed on the front and rear sides inside the dust collection water tank (15), and the bottom heights of the main separation partition plate (19) and the sub-separation partition plate (20) are higher than the bottom height of the dust collection water tank (15), and the water level line inside the dust collection water tank (15) is higher than the bottom heights of the main separation partition plate (19) and the sub-separation partition plate (20).

2. The self-cleaning double-station fabric winding mechanism according to claim 1, characterized in that: The deviation correction roller (3) included in the deviation correction mechanism is rotatably arranged on the upper and lower sides at the left end inside the winding device (2) through bearings, and an adjustable distance sliding frame (7) is arranged on the left side of the top surface of the winding device (2), and limiting sliding rods (8) for guiding the deviation correction partition plates (4) are fixedly arranged on both the left and right sides inside the adjustable distance sliding frame (7).

3. The self-cleaning double-station fabric up-rolling mechanism according to claim 2, characterized in that: The top end of the deflection correction baffle (4) included in the deflection correction mechanism is slidably connected to the front and rear sides of the limiting slide bar (8), and the deflection correction baffle (4) and the limiting slide bar (8) are connected to each other via a resistance spring (9), and wrinkle removal plates (10) are fixedly arranged on the upper and lower sides of the symmetrically arranged deflection correction baffle (4), and the wrinkle removal plates (10) are in contact with the fabric on the outer wall of the deflection correction roller (3).

4. The self-cleaning double-station fabric up-rolling mechanism according to claim 3, characterized in that: The de-wrinkling plate (10) included in the de-wrinkling mechanism has a de-wrinkling guide roller (11) rotatably arranged at equal distances on the inner side thereof via a bearing, and the de-wrinkling guide roller (11) is arranged in an inclined structure with the outer end facing downward, and the de-wrinkling guide roller (11) rotates following the movement of the cloth, and smoothes out wrinkles of the cloth towards the end thereof through its inclined distribution.

5. The self-cleaning double-station fabric rewinding mechanism according to claim 1, characterized in that: The cleaning mechanism comprises a lifting slide plate (21), and the lifting slide plate (21) is fixedly connected to the outer end of the pressure piston (13), and the outer end of the lifting slide plate (21) is rotatably provided with a flip connecting rod (22) via a bearing, and the symmetrically arranged flip connecting rod (22) has one end away from the lifting slide plate (21) rotatably connected to an eccentric position of the front end of the cleaning brush roller (5) via a bearing.

6. The self-cleaning double-station fabric up-rolling mechanism according to claim 1, characterized in that: The cleaning mechanism comprises a guide frame (16), and the guide frame (16) is fixedly installed between the cleaning brush rollers (5) on the upper and lower sides of the winding device (2), and a reciprocating threaded rod (17) is rotatably arranged inside the guide frame (16) via a bearing, and the outer wall of the reciprocating threaded rod (17) is threadedly connected to the inner end of the adsorption dust removal plate (6), and the adsorption dust removal plate (6) is attached to the outer wall of the cleaning brush roller (5) to realize negative pressure recovery of separated powder flocs.

Citation Information

Patent Citations

  • Novel fabric rolling machine

    CN107697695A

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    CN108328383A

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