Cloth wrinkle preventing mechanism of cloth rolling machine

By designing a deflectable nip roller mechanism and gear transmission system in the cloth rolling machine, the problem of poor effect of handling large-area and length direction folds in the prior art is solved, and a more efficient fabric flattening treatment is achieved.

CN120039687AActive Publication Date: 2025-05-27WUXI SHENXIN TEXTILE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510417003.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2025-05-27
Estimated Expiration
2045-04-03

AI Technical Summary

Technical Problem

The existing cloth rolling machine anti-wrinkle mechanism is not effective when dealing with large areas of wrinkles and wrinkles distributed along the length direction, and it is difficult to effectively unfold the fully folded fabric.

Method used

A cloth anti-wrinkle mechanism for the cloth rolling machine including a frame, unwinding roller and winding roller is designed. The deflectable nip roller mechanism is adopted. The gear transmission mechanism drives the resurgence deflection of the rebound deflection. The clamp pulls the fabric during the deflection process, and combines the rebound oscillation of the cam and the coil spring to effectively expand the wrinkles in the fabric.

Benefits of technology

This design can effectively eliminate large-area wrinkles in the fabric and wrinkles distributed along the length direction, ensuring that the fabric remains flat during the rolling process, and improving the anti-wound effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a cloth wrinkle preventing mechanism of a cloth rolling machine, which relates to the technical field of cloth rolling machines, and comprises a rack, an unwinding roller, a winding roller and a deflectable clamping roller mechanism, the two deflectable clamping roller mechanisms are symmetrically distributed on the two sides of the rack and used for clamping the edges of the two sides of cloth, and each deflectable clamping roller mechanism comprises a springback deflection frame rotationally arranged on the rack. The rotating wheel drives the distributed protruding blocks to rotate, each protruding block extrudes the corresponding cam in the rotating process, the cams drive the corresponding springback deflection frames to deflect by a certain angle, and therefore the springback deflection frames synchronously deflect through the clamping plates clamping the edge of cloth; in this way, the clamping plates have the pulling effect on the cloth in the deflection process, and some wrinkles can be unfolded conveniently.
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Description

Technical Field

[0001] The present invention relates to the technical field of cloth winding machines, and particularly relates to an anti-wrinkle mechanism for a cloth winding machine. Background Art

[0002] The types of textiles and yarns are becoming more and more diversified. And the last inspection process in general cloth production often checks whether there are wrinkles on the cloth surface, because creases in the production of some varieties have a greater impact on the final result, affecting the normal production of subsequent dyeing and printing, and leaving hidden dangers for the quality of the products leaving the factory.

[0003] In order to prevent cloth wrinkles from affecting product quality, anti-wrinkle treatment is generally carried out during the unwinding process. Commonly, a flattening roller is installed, and the cloth is horizontally stretched through the arc of the roller surface during passing through the flattening roller to eliminate wrinkles.

[0004] The deficiencies of the existing anti-wrinkle treatment mechanism for cloth winding machines are as follows: The existing anti-wrinkle treatment mechanism for cloth winding machines rolls the passing cloth through the flattening roller. For some small creases or wrinkle positions, they can be effectively eliminated. However, for cloth with large wrinkle areas, such as the situation where some positions of the cloth are completely folded together, in this case, relying on rolling cannot effectively unfold the cloth, and the flattening roller can only eliminate the wrinkles distributed along the width direction of the cloth, and it is not convenient to eliminate the wrinkles distributed along the length direction, thus affecting the anti-wrinkle effect. Summary of the Invention

[0005] The purpose of the present invention is to provide an anti-wrinkle mechanism for a cloth winding machine to solve the technical problems of the general anti-wrinkle effect and poor treatment effect of the anti-wrinkle mechanism for a cloth winding machine in the prior art.

[0006] The technical problems to be solved by the present invention can be achieved through the following technical solutions: An anti-wrinkle mechanism for a cloth winding machine includes a frame, an unwinding roller, and a winding roller, and further includes a deflectable pinch roller mechanism; The deflectable pinch roller mechanism includes two groups, symmetrically distributed on both sides of the frame, and is used to clamp the two side edge positions of the cloth. Each group of the deflectable pinch roller mechanism includes a resilient deflection frame rotatably arranged on the frame. A gear transmission mechanism is arranged between the two resilient deflection frames, and the gear transmission mechanism rotates synchronously with the winding roller. During the process of the winding roller rotating to wind the cloth, the gear transmission mechanism rotates to drive the two resilient deflection frames to deflect synchronously and in opposite directions.

[0007] As a further solution of the present invention: each group of the deflectable clamping roller mechanism also includes a mounting frame and a clamping plate, the mounting frame is fixedly connected to the frame, the rebound deflection frame is rotatably connected to the mounting frame, a disc spring is also connected between the rotating shaft connected to the rebound deflection frame and the mounting frame, electric telescopic rods are fixedly provided at both ends of the rebound deflection frame, two clamping plates are provided, and are respectively fixedly connected to the corresponding telescopic ends of the electric telescopic rods, and each of the clamping plates is rotatably connected to a guide column.

[0008] As a further solution of the present invention: the gear transmission mechanism includes a fixed cross frame, a transmission gear and a toggle mechanism, the fixed cross frame is fixedly set on the frame, and two transmission gears and toggle mechanisms are each provided, and the two transmission gears are rotatably connected to a position near the middle of the fixed cross frame, and a linkage mechanism is cooperated and connected between one of the transmission gears and the winding roller, and the two toggle mechanisms are rotatably set at both ends of the fixed cross frame respectively, and the two transmission gears are meshed with each other, and each transmission gear rotates synchronously with the toggle mechanism at the same side position, and each rebound deflection frame is coaxially fixedly connected with a cam corresponding to the toggle mechanism.

[0009] As a further solution of the present invention: the toggle mechanism includes a rotating wheel and a convex block, the rotating wheel is rotatably connected to the fixed cross frame, a plurality of convex blocks are provided and circumferentially equidistantly distributed on the rotating wheel, and the convex blocks cooperate with corresponding cams.

[0010] As a further solution of the present invention: the rotating wheel and the corresponding transmission gear are both coaxially fixedly connected with a first synchronous wheel, and a first synchronous belt is cooperatively connected between the two first synchronous wheels.

[0011] As a further solution of the present invention: a screw is fixedly connected to the center position of the rotating wheel, a screw sleeve is threadedly connected to the screw, a rotating sleeve is provided on the outer rotating sleeve, a plurality of connecting grooves are equidistantly distributed circumferentially on the rotating wheel, the protrusions are slidingly connected to the connecting grooves correspondingly, each of the protrusions is movably connected to a linkage rod via a hinge, and each of the linkage rods is movably connected to the rotating sleeve at one end away from the protrusion via a hinge.

[0012] As a further solution of the present invention: the linkage mechanism includes a linkage shaft, a first steering bevel gear and a second steering bevel gear, one end of the linkage shaft is coaxially fixedly connected to one of the transmission gears, the second steering bevel gear is coaxially fixedly connected to the other end of the linkage shaft, and the second steering bevel gear is meshed with the first steering bevel gear, and the first steering bevel gear rotates synchronously with the winding roller.

[0013] As a further solution of the present invention: the first steering bevel gear and the winding roller are both coaxially fixedly connected with a second synchronous wheel, and a second synchronous belt is cooperatively connected between the two second synchronous wheels.

[0014] As a further solution of the present invention: a guide roller mechanism is arranged on one side of the deflectable clamping roller mechanism, and the guide roller mechanism is used to guide the cloth to pass through the position where the deflectable clamping roller mechanism is located.

[0015] As a further solution of the present invention: the guide roller mechanism includes a mounting frame and a guide roller, an elastic telescopic rod is connected between the bottom of the mounting frame and the frame, two guide rollers are provided, and are rotatably connected to the upper and lower sides of the mounting frame respectively, and the cloth is used to pass between the two guide rollers.

[0016] Beneficial effects of the present invention: The present invention drives the distributed protrusions to rotate by means of a rotating wheel, and each protrusion compresses the corresponding cam during the rotation process, so that the cam drives the corresponding rebound deflection frame to deflect by a certain angle, so that the rebound deflection frame is synchronously deflected by the clamping plate clamping the edge of the cloth, and the clamping plate produces a pulling effect on the cloth during the deflection process. Since the clamping plate makes a rotating motion, the cloth is pulled in both the front and rear directions and the left and right directions, so that some wrinkles are stretched out, and when the protrusion is separated from the cam, the cam can also rebound and generate vibration by relying on the corresponding coil spring rebound force, and the vibration can be transmitted to the cloth to further eliminate the wrinkles on the cloth.

[0017] During the rotation of the winding roller of the present invention, it drives the corresponding transmission gear to rotate through the synchronous belt, synchronous wheel, first steering bevel gear and second steering bevel gear, and the transmission gear drives the corresponding wheel to rotate, completing the transmission of the winding roller to the clamping plate without the need to drive the clamping plate to deflect separately.

[0018] The combination of the rebound deflection frame, the clamping plate and the cam of the present invention is symmetrically distributed in two groups, and rotates in conjunction with mutually meshing transmission gears, so as to ensure that the clamping plates on both sides rotate in opposite directions when clamping the edges of the cloth, thereby facilitating effective pulling of the cloth. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The present invention will be further described below in conjunction with the accompanying drawings.

[0020] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a schematic diagram of the structure of the winding rotating tube and the transmission gear in the present invention; Figure 3 It is a schematic diagram of the structure of the transmission gear and the cam in the present invention; Figure 4 It is a schematic diagram of the structure of the cam and the convex block in the present invention; Figure 5 It is a schematic cross-sectional structure diagram of the cooperative connection between the rotating sleeve and the threaded sleeve in the present invention; Figure 6 It is a schematic structural diagram of the cooperation connection between the resilient deflection frame and the clamping plate in the present invention; Figure 7 It is a schematic structural diagram of the cooperation connection between the resilient deflection frame and the mounting frame in the present invention; Figure 8 It is a schematic structural diagram of the cooperation connection between the guide roller and the mounting frame in the present invention; Figure 9 It is a schematic diagram of the state when the resilient deflection frame deflects and pulls the fabric in the present invention.

[0021] In the figure: 1, frame; 2, unwinding roller; 3, winding roller; 4, fabric processing equipment; 5, guide roller; 6, first steering bevel gear; 7, second steering bevel gear; 8, linkage shaft; 9, second synchronous pulley; 10, second synchronous belt; 11, transmission gear; 12, fixed cross frame; 13, first synchronous belt; 14, first synchronous pulley; 15, runner; 16, A-shaped frame; 17, cam; 18, convex block; 19, linkage rod; 20, rotating sleeve; 21, screw sleeve; 22, screw rod; 23, clamping plate; 24, electric telescopic rod; 25, guide post; 26, disc spring; 27, mounting frame; 28, elastic telescopic rod; 29, resilient deflection frame; 30, mounting frame. Specific embodiments

[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.

[0023] Such as Figures 1-9As shown in the figure, a cloth wrinkling prevention mechanism for a cloth winding machine includes a frame 1, an unwinding roller 2, and a winding roller 3. The unwinding roller 2 is installed at one end of the frame 1 through an A-shaped frame 16, and the winding roller 3 is installed at the other end of the frame 1 through a shaft frame. Both the unwinding roller 2 and the winding roller 3 are driven to rotate by motors, and the rotation speeds of the two can maintain a certain differential speed by controlling the rotation speeds of the corresponding motors, so as to facilitate tightening the cloth to a certain extent and making it convenient for the cloth to pass through the corresponding cloth processing equipment 4 for surface treatment. The mechanism also includes a deflectable pinch roller mechanism. The deflectable pinch roller mechanism includes two groups, which are symmetrically distributed on both sides of the frame 1 and are used to clamp the two side edges of the cloth. Each group of deflectable pinch roller mechanisms includes a resilient deflection frame 29 rotatably arranged on the frame 1. A gear transmission mechanism is arranged between the two resilient deflection frames 29, and the gear transmission mechanism rotates synchronously with the winding roller 3. During the process of the winding roller 3 rotating to wind the cloth, the gear transmission mechanism rotates, thereby driving the two resilient deflection frames 29 to deflect synchronously and reversely, facilitating lifting the two side edges of the cloth upward. During this process, the cloth is pulled in both the left and right directions and also in the front and back directions, thus facilitating the unfolding of the wrinkled position.

[0024] In some specific embodiments, in combination with Figure 3 , Figure 6 and Figure 7 as shown, each group of deflectable pinch roller mechanisms further includes a mounting bracket 30 and a clamping plate 23. The mounting bracket 30 is fixedly connected to the frame 1, and the resilient deflection frame 29 is rotatably connected to the mounting bracket 30 through a rotating shaft. A disc spring 26 is also connected in cooperation between the rotating shaft connected to the resilient deflection frame 29 and the mounting bracket 30. The resilient deflection frame 29 is a U-shaped frame body. Electric telescopic rods 24 are fixedly arranged at both ends of the resilient deflection frame 29. The two electric telescopic rods 24 are symmetrically distributed. There are two clamping plates 23, which are respectively fixedly connected to the telescopic ends of the corresponding electric telescopic rods 24. A guide post 25 is rotatably connected to each clamping plate 23. When the cloth passes through the position where the deflectable pinch roller mechanism is located, the two side edges of the cloth respectively pass through between the corresponding two groups of guide posts 25. By extending the corresponding electric telescopic rods 24, the paired two groups of guide posts 25 clamp the edge of the cloth. Since the guide post 25 can rotate relative to the corresponding resilient deflection frame 29, it is convenient for the clamped cloth to be conveyed through.

[0025] In some specific embodiments, in combination with Figures 2 to 4As shown, the gear transmission mechanism includes a fixed cross frame 12, a transmission gear 11 and a toggle mechanism. The fixed cross frame 12 is fixedly set on the frame 1. Two transmission gears 11 and toggle mechanisms are provided. The two transmission gears 11 are rotatably connected to the fixed cross frame 12 near the middle through a rotating shaft. A linkage mechanism is connected between one of the transmission gears 11 and the winding roller 3. The two toggle mechanisms are rotatably set at both ends of the fixed cross frame 12 respectively. The two transmission gears 11 are meshed with each other. Each transmission gear 11 rotates synchronously with the toggle mechanism at the same side position. Each rebound deflection frame 29 is coaxially fixedly connected with a cam 17 corresponding to the toggle mechanism.

[0026] The toggle mechanism includes a rotating wheel 15 and a protrusion 18 . The rotating wheel 15 is rotatably connected to the fixed cross frame 12 via a rotating shaft. A plurality of protrusions 18 are provided and are equidistantly distributed on the rotating wheel 15 circumferentially. The protrusions 18 cooperate with corresponding cams 17 .

[0027] In addition, the rotating wheel 15 and the corresponding transmission gear 11 are both coaxially fixedly connected with a first synchronous wheel 14 , and a first synchronous belt 13 is cooperatively connected between the two first synchronous wheels 14 .

[0028] When the winding roller 3 rotates to wind up the fabric, it drives one of the transmission gears 11 to rotate through the linkage mechanism, and then the transmission gear 11 drives another transmission gear 11 to rotate, and each transmission gear 11 drives the corresponding rotating wheel 15 to rotate through the corresponding first synchronous wheel 14 and the first synchronous belt 13, and the rotating wheel 15 continuously squeezes the corresponding cam 17 through the distributed protrusions 18. Whenever the end of the cam 17 is squeezed by a protrusion 18, the cam 17 deflects a certain angle, and in this process, the coil spring 26 Tightening generates a rebound force, and the deflected cam 17 drives the corresponding rebound deflection frame 29 to rotate synchronously. The rebound deflection frame 29 relies on the clamping plate 23 to clamp the edge of the cloth to achieve pulling. Due to the existence of the transmission gear 11, the rebound deflection frames 29 on both sides are convenient to turn in opposite directions, so as to facilitate pulling the wrinkled position of the cloth apart, and when the corresponding protrusion 18 is separated from the cam 17, the rebound deflection frame 29 relies on the rebound force of the coil spring 26 to rotate, and during the rotation process, it oscillates due to the elastic force of the coil spring 26, which is convenient for further restoring the wrinkles of the cloth.

[0029] In some specific implementation schemes, in order to facilitate the adjustment of the deflection angle of the cam 17, the length of the protrusion 18 extending out of the edge of the rotating wheel 15 needs to be adjusted, such as Figure 4As shown, a screw rod 22 is fixedly connected to the center position of the runner 15. A screw sleeve 21 is threadedly connected to the screw rod 22. A convex handle can be added to the screw sleeve 21 as needed for easy operation and rotation. A rotating sleeve 20 is rotatably sleeved outside the screw sleeve 21. The inner side wall of the rotating sleeve 20 is fitted on the outer wall of the screw sleeve 21 and cannot be separated. A plurality of connecting sliding grooves are circumferentially and equidistantly distributed on the runner 15. The connecting sliding grooves can all extend through the center position of the circular surface of the runner 15. The convex blocks 18 are correspondingly slidably connected to the connecting sliding grooves. The connecting sliding grooves are T-shaped grooves. Each convex block 18 is movably connected to a linkage rod 19 through a hinge, and one end of each linkage rod 19 away from the convex block 18 is movably connected to the rotating sleeve 20 through a hinge. By rotating the screw sleeve 21, it moves along the screw rod 22, thereby driving the rotating sleeve 20 to move synchronously. In this way, the rotating sleeve 20 pushes and pulls the convex blocks 18 to slide relative to the runner 15 through the distributed linkage rods 19 to adjust the extended length.

[0030] In some specific embodiments, such as Figure 2 As shown, the linkage mechanism includes a linkage shaft 8, a first steering bevel gear 6, and a second steering bevel gear 7. One end of the linkage shaft 8 is coaxially and fixedly connected to one of the transmission gears 11, and the linkage shaft 8 is rotatably connected to the frame 1 through a shaft bracket. The first steering bevel gear 6 is rotatably connected to the frame 1 through a shaft bracket. The second steering bevel gear 7 is coaxially and fixedly connected to the other end of the linkage shaft 8, and the second steering bevel gear 7 meshes with the first steering bevel gear 6. The first steering bevel gear 6 rotates synchronously with the winding roller 3.

[0031] Among them, in order to effectively realize the synchronous rotation of the first steering bevel gear 6 and the winding roller 3, second synchronous wheels 9 are coaxially and fixedly connected to both the first steering bevel gear 6 and the winding roller 3, and a second synchronous belt 10 is connected between the two second synchronous wheels 9 in a matching manner.

[0032] When the winding roller 3 rotates driven by the motor, it drives the first steering bevel gear 6 to rotate through the second synchronous wheel 9 and the second synchronous belt 10. The first steering bevel gear 6 drives the second steering bevel gear 7 to rotate. The second steering bevel gear 7 drives the corresponding transmission gear 11 to rotate through the linkage shaft 8 to achieve transmission.

[0033] In some specific embodiments, a guide roller mechanism is provided on one side of the deflectable pinch roller mechanism. The guide roller mechanism is used to guide the fabric through the position where the deflectable pinch roller mechanism is located.

[0034] Among them, the guide roller mechanism includes a mounting frame 27 and guide rollers 5. An elastic telescopic rod 28 is connected between the bottom of the mounting frame 27 and the frame 1. The elastic telescopic rod 28 includes a telescopic rod and a spring sleeved on the telescopic rod. The two ends of the spring are respectively fixedly connected to the two ends of the telescopic rod. Two guide rollers 5 are provided and are respectively rotatably connected to the upper and lower sides inside the mounting frame 27. The fabric is used to pass through between the two guide rollers 5.

[0035] When the clamping plate 23 deflects while clamping the edge of the fabric, since the mounting frame 27 is connected to the machine frame 1 by means of a telescopic elastic telescopic rod 28, it can move longitudinally to a certain extent under the driving action of the fabric, avoiding excessive pulling when the clamping plate 23 deflects while clamping the edge of the fabric and causing damage.

[0036] In addition, it should be noted that in order to facilitate the adjustment of the distance between the two guide rollers 5, the mounting frame 27 is divided into upper and lower frame bodies, and the two frame bodies are fixedly connected by bolts. Actually, holes can be drilled at the corresponding positions according to needs, and then bolts are installed to keep the two guide rollers 5 at a certain distance.

[0037] For the convenience of those skilled in the art to understand the embodiments of this solution, the working principle of this solution will be briefly described below in combination with a specific application scenario: First, set the rotation speeds of the driving motors of the unwinding roller 2 and the winding roller 3 to maintain a certain differential speed, so as to facilitate tightening the fabric to a certain extent and making it convenient for the fabric to pass through the corresponding fabric processing equipment 4 for surface treatment; and during the rotation of the winding roller 3, it drives the first steering bevel gear 6 to rotate through the second synchronous pulley 9 and the second synchronous belt 10. The first steering bevel gear 6 drives the second steering bevel gear 7 to rotate, and the second steering bevel gear 7 drives the corresponding transmission gear 11 to rotate through the linkage shaft 8. This transmission gear 11 drives another transmission gear 11 to rotate, and each transmission gear 11 drives the corresponding runner 15 to rotate through the corresponding first synchronous pulley 14 and the first synchronous belt 13. The runner 15 continuously squeezes the corresponding cam 17 through the distributed bumps 18. Whenever the end of the cam 17 is squeezed by a bump 18, the cam 17 deflects by a certain angle, and during this process, the disc spring 26 tightens to generate a return force. The deflected cam 17 drives the corresponding rebound deflection frame 29 to rotate synchronously. The rebound deflection frame 29 clamps the edge of the fabric by relying on the clamping plate 23 to achieve pulling. Due to the presence of the transmission gear 11, it is convenient for the rebound deflection frames 29 on both sides to turn in opposite directions, so as to facilitate pulling open the wrinkled position of the fabric. And when the corresponding bump 18 disengages from the cam 17, the rebound deflection frame 29 rotates back relying on the return force of the disc spring 26, and during the rotation process, it oscillates due to the elastic force of the disc spring 26, which is convenient for further restoring the fabric wrinkles; And in order to facilitate the adjustment of the deflection angle of the cam 17, by rotating the screw sleeve 21, it moves along the screw rod 22, thereby driving the rotating sleeve 20 to move synchronously. In this way, the rotating sleeve 20 pushes and pulls the bump 18 to slide relative to the runner 15 through the distributed linkage rods 19 to adjust the extended length.

[0038] The above has described several embodiments of the present invention in detail, but the embodiments of the present invention are not limited thereto and cannot be considered as limiting the scope of implementation of the present invention. All equivalent changes and improvements made according to the scope of the application of the present invention should still fall within the scope covered by the patent of the present invention.

Claims

1. A cloth wrinkle prevention mechanism for a cloth rolling machine, comprising a frame (1), an unwinding roller (2) and a winding roller (3), characterized in that: Also included is a deflectable pinch roller mechanism; The deflectable clamping roller mechanism comprises two groups, which are symmetrically distributed on both sides of the frame (1) and are used to clamp the edge positions of the cloth on both sides. Each group of the deflectable clamping roller mechanism comprises a rebound deflection frame (29) rotatably arranged on the frame (1). A gear transmission mechanism is arranged between the two groups of rebound deflection frames (29), and the gear transmission mechanism rotates synchronously with the winding roller (3). When the winding roller (3) rotates to wind the cloth, the gear transmission mechanism rotates to drive the rebound deflection frames (29) on both sides to deflect synchronously in the opposite direction.

2. The anti-cloth wrinkle mechanism of a cloth rolling machine according to claim 1, characterized in that: Each group of the deflectable clamping roller mechanisms further comprises a mounting frame (30) and a clamping plate (23); the mounting frame (30) is fixedly connected to the frame (1); the rebound deflection frame (29) is rotatably connected to the mounting frame (30); a coil spring (26) is also cooperatively connected between the rotating shaft connected to the rebound deflection frame (29) and the mounting frame (30); both ends of the rebound deflection frame (29) are fixedly provided with an electric telescopic rod (24); two clamping plates (23) are provided and are respectively fixedly connected to the telescopic ends of the corresponding electric telescopic rod (24); and each of the clamping plates (23) is rotatably connected to a guide column (25).

3. The anti-cloth wrinkle mechanism of a cloth rolling machine according to claim 1, characterized in that: The gear transmission mechanism comprises a fixed cross frame (12), a transmission gear (11) and a toggle mechanism. The fixed cross frame (12) is fixedly arranged on the frame (1). Two transmission gears (11) and two toggle mechanisms are provided. The two transmission gears (11) are both rotatably connected to a position close to the middle of the fixed cross frame (12). A linkage mechanism is cooperatively connected between one of the transmission gears (11) and the winding roller (3). The two toggle mechanisms are rotatably arranged at two ends of the fixed cross frame (12). The two transmission gears (11) are meshed with each other. Each transmission gear (11) rotates synchronously with the toggle mechanism at the same side. Each rebound deflection frame (29) is coaxially fixedly connected to a cam (17) corresponding to the toggle mechanism.

4. The anti-cloth wrinkle mechanism of a cloth rolling machine according to claim 3, characterized in that: The toggle mechanism comprises a rotating wheel (15) and a convex block (18); the rotating wheel (15) is rotatably connected to a fixed cross frame (12); a plurality of convex blocks (18) are provided and are equidistantly distributed on the rotating wheel (15); and the convex blocks (18) cooperate with corresponding cams (17).

5. The anti-cloth wrinkle mechanism of a cloth rolling machine according to claim 4, characterized in that: The rotating wheel (15) and the corresponding transmission gear (11) are both coaxially fixedly connected with a first synchronous wheel (14), and a first synchronous belt (13) is cooperatively connected between the two first synchronous wheels (14).

6. The cloth wrinkle prevention mechanism of a cloth rolling machine according to claim 4, characterized in that: A screw rod (22) is fixedly connected to the center of the rotating wheel (15), a screw sleeve (21) is threadedly connected to the screw rod (22), a rotating sleeve (20) is rotatably sleeved outside the screw sleeve (21), a plurality of connecting grooves are equidistantly distributed circumferentially on the rotating wheel (15), the protrusions (18) are slidably connected to the connecting grooves, each of the protrusions (18) is movably connected to a linkage rod (19) via a hinge, and one end of each linkage rod (19) away from the protrusion (18) is movably connected to the rotating sleeve (20) via a hinge.

7. The anti-cloth wrinkle mechanism of a cloth rolling machine according to claim 3, characterized in that: The linkage mechanism comprises a linkage shaft (8), a first steering bevel gear (6) and a second steering bevel gear (7); one end of the linkage shaft (8) is coaxially fixedly connected to one of the transmission gears (11); the second steering bevel gear (7) is coaxially fixedly connected to the other end of the linkage shaft (8); the second steering bevel gear (7) is meshed with the first steering bevel gear (6); and the first steering bevel gear (6) rotates synchronously with the winding roller (3).

8. The cloth wrinkle prevention mechanism of a cloth rolling machine according to claim 7, characterized in that: The first steering bevel gear (6) and the winding roller (3) are both coaxially fixedly connected with a second synchronous wheel (9), and a second synchronous belt (10) is cooperatively connected between the two second synchronous wheels (9).

9. The cloth wrinkle prevention mechanism of a cloth rolling machine according to claim 1, characterized in that: A guide roller mechanism is arranged on one side of the deflectable clamping roller mechanism, and the guide roller mechanism is used to guide the cloth to pass through the position where the deflectable clamping roller mechanism is located.

10. The cloth wrinkle prevention mechanism of a cloth rolling machine according to claim 9, characterized in that: The guide roller mechanism comprises a mounting frame (27) and a guide roller (5); an elastic telescopic rod (28) is connected between the bottom of the mounting frame (27) and the frame (1); two guide rollers (5) are provided and are rotatably connected to the upper and lower sides of the mounting frame (27), respectively; and fabric is used to pass between the two guide rollers (5).

Citation Information

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