Winding machine adjusting device and winding machine

By setting multiple guide rollers and adjustment mechanisms on the winding machine, the guide rollers and the core tube have an inner common tangent, which solves the problem of excessive gap or tight adhesion between the guide rollers and the reinforcing material, and realizes uniform force and precise winding of the reinforcing strip.

CN224170535UActive Publication Date: 2026-04-28SICHUAN GOLDSTONE ORIENT NEW MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SICHUAN GOLDSTONE ORIENT NEW MATERIAL TECH CO LTD
Filing Date
2025-04-30
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

After the existing winding machine adjustment device is adjusted, there is a gap between the guide roller and the reinforcing material or the adhesion is too tight, resulting in poor winding effect and failure to meet actual production needs.

Method used

A winding machine adjustment device is provided, including multiple guide rollers and an adjustment mechanism. The adjustment guide rollers have an inner common tangent with the core tube. The adjustment mechanism moves the adjustment guide rollers along the left and right and front and back adjustment plates to ensure that the reinforcing strip is subjected to uniform force during the winding process and to avoid twisting.

Benefits of technology

It achieves precise winding of the reinforcing strip on the core tube, with uniform stress on the reinforcing strip and better winding effect, meeting actual production needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of pipeline production and manufacturing, and discloses a winding machine adjusting device and a winding machine, the winding machine adjusting device comprises a plurality of guide rollers, the plurality of guide rollers are arranged to be used for guiding a reinforcing belt when the reinforcing belt is wound on a core pipe and driven to rotate around the core pipe, the guide rollers comprise an adjusting guide roller close to the core pipe, and the adjusting guide roller is arranged on the core pipe. The central axes of the adjusting guide roller and the core tube are positioned on different planes; the adjusting mechanism comprises a left adjusting plate and a right adjusting plate, and the adjusting guide roller is installed and connected to the left adjusting plate and the right adjusting plate and can move in the length direction of the left adjusting plate and the right adjusting plate so as to be adjusted to enable the adjusting guide roller and the core pipe to have an inner common tangent plane. By means of the technical scheme, the adjusting guide roller can move in the length direction of the left adjusting plate and the right adjusting plate, the inner common tangent plane is formed between the adjusting guide roller and the core pipe, and therefore the reinforcing belt is evenly stressed when wound around the core pipe, the winding effect of the core pipe is better, and precise winding is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of pipe manufacturing technology, specifically to a winding machine adjustment device and a winding machine. Background Technology

[0002] To improve the mechanical properties of conveying pipelines, it is usually necessary to use a winding machine to wind reinforcing materials such as steel strips and fiber strips onto a plastic core tube to form a composite pipe. The winding machine mainly consists of a fixed frame and a turntable mechanism (rotating support) pivotally connected to it. As the plastic core tube is conveyed forward along the rotation axis of the turntable mechanism, the turntable mechanism drives the belt reel and guide rollers on it to rotate and release the reinforcing strip on the belt reel, thereby winding the reinforcing strip onto the plastic core tube.

[0003] In actual production, it is necessary to adjust the relative position of the reinforcing material and the core tube on the winding machine to achieve a better winding effect. In the existing technology, the relative position of the reinforcing material and the core tube is usually adjusted by adjusting the distance and height of the guide roller and the core tube in the vertical plane. After adjustment, there may still be gaps between the guide roller and the reinforcing material or the adhesion may be too tight, resulting in poor winding effect when the reinforcing material is wound on the core tube, which cannot meet the needs of actual production. Utility Model Content

[0004] The purpose of this invention is to overcome the problems in the existing technology where, after the adjustment device is adjusted, there is still a gap between the guide roller and the reinforcing material or the attachment is too tight, resulting in poor winding effect when the reinforcing material is wound around the core tube, which cannot meet the needs of actual production.

[0005] To achieve the above objectives, this utility model provides a winding machine adjustment device, comprising:

[0006] Multiple guide rollers, configured to guide and be driven to rotate about the core tube as the reinforcing strip is wound onto it, include an adjusting guide roller near the core tube, the adjusting guide roller being located in a different plane from the central axis of the core tube; and,

[0007] The adjustment mechanism includes left and right adjustment plates, and an adjustment guide roller is connected to the left and right adjustment plates and can move along the length direction of the left and right adjustment plates to be adjusted so that the adjustment guide roller and the core tube have an inner common tangent.

[0008] In some embodiments, the adjustment mechanism further includes a mounting base plate, left and right adjustment plates are fixedly connected to the mounting base plate, and adjustment guide rollers are adjustablely connected to the left and right adjustment plates so as to be adjusted to have an inner common tangent with the core tube by causing the adjustment guide rollers to reciprocate along the length direction of the left and right adjustment plates.

[0009] In some embodiments, the left and right adjustment plates are provided with a through groove extending along their length direction, and a guide rod is provided in the through groove along the length direction. One end of the guide rod extends outward to the end of the left and right adjustment plates and is connected to a driving member. The other end of the guide rod is connected to an adjusting guide roller so that the adjusting guide roller can be moved along the length direction of the guide rod by manipulating the driving member.

[0010] In some embodiments, the guide rod is a lead screw, one end of the adjusting guide roller is screwed to the lead screw, and the driving component is a handwheel. The handwheel can drive the lead screw to rotate so that the adjusting guide roller can reciprocate along the length direction of the lead screw.

[0011] In some embodiments, the adjusting guide roller includes a rotating shaft and a bearing seat. The bearing seat is located at one end of the rotating shaft and embedded in a through groove. The bearing seat is connected to a guide rod and can reciprocate along the length of the guide rod in the through groove. The end of the bearing seat away from the rotating shaft is connected to a pressure plate with a size larger than the width of the through groove, and a pressure bolt for fixing the pressure plate to the bearing seat.

[0012] In some embodiments, the adjustment mechanism further includes a mounting base plate, left and right adjustment plates are slidably and adjustably connected to the mounting base plate, and adjustment guide rollers are fixedly connected to predetermined positions on the left and right adjustment plates. The left and right adjustment plates are capable of reciprocating relative to the mounting base plate along the length direction of the left and right adjustment plates.

[0013] In some embodiments, the left and right adjustment plates are provided with a first through hole extending along their length direction, and a first connecting rod is provided through the first through hole and fixedly connected to the mounting base plate. The end of the first connecting rod is provided with a first fastener with a size larger than the width of the first through hole. The first connecting rod can slide in the first through hole so that the left and right adjustment plates can reciprocate along their length direction.

[0014] In some embodiments, the adjustment mechanism further includes a front and rear adjustment plate and a mounting base plate. The front and rear adjustment plate is perpendicular to the left and right adjustment plate and is connected to the mounting base plate. The adjustment guide roller is connected to the left and right adjustment plates and can move along the length direction of the front and rear adjustment plates to adjust the position of the adjustment guide roller relative to the radial direction of the core tube.

[0015] In some embodiments, the front and rear adjustment plates are connected to and integrally formed with the left and right adjustment plates. The front and rear adjustment plates are provided with a second through hole extending along their length direction. A second connecting rod is provided through the second through hole and fixedly connected to the mounting base plate. The end of the second connecting rod is provided with a second fastener with a size larger than the width of the second through hole. The second connecting rod can slide back and forth in the second through hole along the length direction of the front and rear adjustment plates.

[0016] In some embodiments, the front and rear adjustment plates, the left and right adjustment plates, and the mounting base are stacked along their thickness direction and connected to their adjacent plates in sequence. The front and rear adjustment plates are provided with a second through hole extending along their length direction. A second connecting rod is provided through the second through hole and fixedly connected to the mounting base. The end of the second connecting rod is provided with a second fastener with a size larger than the width of the second through hole. The second connecting rod can slide back and forth in the second through hole along the length direction of the front and rear adjustment plates.

[0017] The second aspect of this utility model provides a winding machine, which includes the winding machine adjustment device described above.

[0018] Through the above technical solution, the winding machine adjustment device of this application includes an adjusting guide roller and left and right adjusting plates. The adjusting guide roller is not on the same plane as the core tube. The adjusting guide roller can move along the length direction of the left and right adjusting plates, so that there is an inner common tangent between the adjusting guide roller and the core tube. Thus, when the reinforcing belt is guided by the guide roller to wind around the core tube, the reinforcing belt does not twist between the guide roller near the core tube and the outer wall of the core tube. The entire reinforcing belt is subjected to uniform force, achieving precision winding and better core tube winding effect. Attached Figure Description

[0019] Figure 1 This is a side view of the winding machine adjustment device according to the first embodiment of this utility model;

[0020] Figure 2 yes Figure 1 Overall diagram of the adjustment device of the winding machine;

[0021] Figure 3 yes Figure 1 A three-dimensional view of the adjustment device of the winding machine;

[0022] Figure 4 yes Figure 1 Front view of the left and right adjustment panel;

[0023] Figure 5 yes Figure 1 Top view of the adjustment device of the winding machine;

[0024] Figure 6 yes Figure 1 A 3D view of the left and right adjustment panels;

[0025] Figure 7 This is an overall view of the left and right adjustment plate in the second embodiment of this utility model;

[0026] Figure 8 This is an overall view of the left and right adjustment plate in the third embodiment of this utility model;

[0027] Figure 9 This is a bottom view of the winding machine adjustment device according to the fourth embodiment of this utility model;

[0028] Figure 10 yes Figure 9 Front view of the adjusting device of the winding machine.

[0029] Explanation of reference numerals in the attached figures

[0030] 1. Core tube; 2. Reinforcing belt; 3. Guide roller; 31. Adjusting guide roller; 311. Rotating shaft; 312. Roller; 313. Shaft seat; 32. Fixed guide roller;

[0031] 4. Adjustment mechanism; 41. Mounting base plate; 42. Left and right adjustment plates; 421. Handwheel; 422. Lead screw; 423. First connecting rod; 424. First fastener; 425. Pressure plate; 426. Pressure bolt; 427. Lead screw fixing plate; 428. Through groove; 429. First through hole; 43. Front and rear adjustment plates; 431. Second connecting rod; 432. Second fastener; 433. Second through hole;

[0032] 5. Internal cross section. Detailed Implementation

[0033] In this utility model, unless otherwise stated, the directional terms such as "up," "down," "left," "right," "inner," and "outer" are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. When the absolute position of the described object changes, the relative positional relationship may also change accordingly. In this utility model, "left and right" refers to... Figure 2 The length direction of the left and right adjustment plate 42 is adjusted, and the guide roller 31 can move in the left and right direction. "Front and back" refers to the length direction of the guide roller 31. Figure 2 The length direction perpendicular to the left and right adjustment plates 42 is perpendicular to the front and rear adjustment plates 43 of this utility model. Figure 2 The middle is blocked, but can be seen from Figure 1 and Figure 3 The length directions are the same as those shown in the image.

[0034] To address the problem in existing technologies where gaps or excessively tight adhesion still exist between the guide roller and the reinforcing material after adjustment, resulting in poor winding effect when the reinforcing material is wound around the core tube and failing to meet actual production needs, this utility model provides a winding machine adjustment device, such as... Figures 1-3As shown, the winding machine adjustment device includes multiple guide rollers 3 and an adjustment mechanism 4. The multiple guide rollers 3 are configured to guide the reinforcing tape 2 when it is wound onto the core tube 1, and are driven to rotate around the core tube 1. The guide rollers 3 comprise multiple groups, each group arranged gradually away from the core tube 1 and staggered sequentially. After being released from the reel, the reinforcing tape 2 is guided by the guide rollers 3 and wound onto the core tube 1 under the rotation of the guide rollers 3. The guide rollers 3 include an adjusting guide roller 31 close to the core tube 1 and a fixed guide roller 32, with the adjusting guide roller 31 located on a different plane from the central axis of the core tube 1. The adjustment mechanism 4 includes left and right adjusting plates 42, with the adjusting guide roller 31 connected to the left and right adjusting plates 42 and movable along the length of the left and right adjusting plates 42 to be adjusted so that the adjusting guide roller 31 has an inner common tangent surface 5 with the core tube 1. Specifically, when the adjusting guide roller 31 and the core tube 1 have an inner common tangent surface 5, the reinforcing belt 2 is located on the inner common tangent surface. The reinforcing belt 2 does not twist between the guide roller near the core tube and the outer wall of the core tube. The entire reinforcing belt is subjected to uniform force, resulting in better core tube winding and achieving precision winding. This avoids situations where the contact area between the adjusting guide roller 31 and the reinforcing belt 2 is too small, leading to insufficient tension in the reinforcing belt 2, or too large, leading to excessive tension in the reinforcing belt 2. In such cases, the reinforcing belt 2 would not have adequate tension when winding around the core tube 1, resulting in poor winding performance. Through the above technical solution, the adjusting mechanism 4 can adjust the position of the adjusting guide roller 31 so that the adjusting guide roller 31 and the core tube 1 have an inner common tangent surface. This ensures that when the reinforcing belt 2 is guided by the guide roller 31 and wound around the core tube 1, the reinforcing belt 2 does not twist between the adjusting guide roller 31 and the outer wall of the core tube 1. The entire reinforcing belt 2 is subjected to uniform force, resulting in better core tube winding and achieving precision winding.

[0035] In some embodiments, such as Figures 1-6 As shown, the adjustment mechanism 4 also includes a mounting base plate 41, left and right adjustment plates 42 are fixedly connected to the mounting base plate 41, and fixed guide rollers 32 are also fixedly mounted on the mounting base plate 41. Adjustable guide rollers 31 are adjustablely connected to the left and right adjustment plates 42. Adjustable guide rollers 31 can be adjusted to move back and forth along the length direction of the left and right adjustment plates 42 so that they are adjusted to have an inner common tangent surface 5 with the core tube 1.

[0036] In some embodiments, such as Figures 1-6 As shown, the left and right adjustment plates 42 are provided with a through groove 428 extending along its length direction. A guide rod is provided in the through groove 428 along its length direction. One end of the guide rod extends outward to the end of the left and right adjustment plates 42 and is connected to a driving member. The other end of the guide rod is connected to the adjusting guide roller 31. By operating the driving member, the adjusting guide roller 31 can be moved along the length direction of the guide rod.

[0037] In some embodiments, such as Figures 1-6As shown, the guide rod is a lead screw 422, one end of the adjusting guide roller 31 is screwed to the lead screw 422, and the driving component is a handwheel 421. The handwheel 421 can drive the lead screw 422 to rotate, causing the adjusting guide roller 31 to reciprocate along the length direction of the lead screw 422. In some embodiments, such as Figures 1-6 As shown, the adjusting guide roller 31 includes a rotating shaft 311, a roller 312, and a bearing 313. The bearing 313 is located at one end of the rotating shaft 311 and is embedded in the through groove 428. The bearing 313 is connected to a guide rod in the through groove 428 and can reciprocate along the length of the guide rod in the through groove 428. A pressure plate 425 with a size larger than the width of the through groove 428 is connected to the end of the bearing 313 away from the rotating shaft 311, and a clamping bolt 426 is used to fix the pressure plate 425 to the bearing 313. The bearing seat 313 can be fixed to the guide rod by the clamping plate 425 and the clamping bolt 426. The tightness of the clamping bolt 426 can be adjusted. Loosening the clamping bolt 426 allows the bearing seat 313 to move along the length of the guide rod. When the bearing seat 313 reaches the position on the guide rod where the adjusting guide roller 31 and the core tube 1 have an inner common tangent, the clamping bolt 426 is tightened to adjust the position of the adjusting guide roller 31 so that it has an inner common tangent with the core tube 1. The driving component can also be a cylinder, and the guide rod can be a slide rod. The output end of the cylinder passes through one end of the left and right adjusting plates 42 and is fixedly connected to the adjusting guide roller 31. The output end of the cylinder is parallel to the slide rod. The extension and retraction of the output end of the cylinder causes the adjusting guide roller 31 to reciprocate along the length of the slide rod.

[0038] like Figure 4 As shown, the upper dimension of the bearing seat 313 is larger than the lower dimension, forming a stepped shape. The lower part of the bearing seat 313 is embedded in the through groove 428, and the upper part overlaps the left and right adjustment plates 42 through the step. The lower part of the bearing seat 313 is provided with a through hole corresponding to the lead screw 422, and the through hole is provided with a thread corresponding to the lead screw 422. The length of the lead screw 422 is set such that when the bearing seat 313 is located at the end away from the handwheel 421, the end of the lead screw 422 can be screwed to the bearing seat 313. Alternatively, the end of the lead screw 422 can be set to be away from the handwheel 421 and rotatably connected to the inside of the left and right adjustment plates 42 through a bearing. On the side where the lead screw 422 passes through the left and right adjustment plates 42, a lead screw fixing plate 27 is provided around the lead screw 422 to fix the lead screw 422 and prevent the lead screw 422 from coming out.

[0039] like Figure 7 and Figure 8 Two other embodiments of the left and right adjustment plates are shown. For example... Figure 7As shown, the left and right adjustment plates 42 are provided with a first through hole 429 along the length direction. The clamping bolt 426 passes through the first through hole 429 and is connected to the adjusting guide roller 31. A clamping plate 425 with a size larger than the width of the first through hole 429 is provided between the clamping bolt 426 and the left and right adjustment plates 42. By adjusting the tightness of the clamping bolt 426, the adjusting guide roller 31 can be moved along the length direction of the first through hole 429 and fixed in the desired position. Figure 8 and Figure 7 The difference lies in that a first connecting rod 423 passes through a first through hole 429 and connects to the adjusting guide roller 31, and the pressing plate 425 is replaced with a first fastener 424 whose size is larger than the width of the first through hole 429. The first connecting rod 423 can be configured to have threads at the connection with the first fastener 424, and the first fastener 424 can be configured to be a corresponding nut. Alternatively, the connection between the first connecting rod 423 and the first fastener 424 can be configured to have a protrusion or a rough outer surface, and the first fastener 424 can be a locking sleeve, which is fitted onto the end of the first connecting rod 423 and is detachable.

[0040] In some embodiments, such as Figures 8-9 As shown, the adjustment mechanism 4 also includes a mounting base plate 41, and left and right adjustment plates 42 are slidably and adjustablely connected to the mounting base plate 41. The adjustment guide roller 31 is fixedly connected to a predetermined position on the left and right adjustment plates 42. The left and right adjustment plates 42 can reciprocate relative to the mounting base plate 41 along the length direction of the left and right adjustment plates 42, thereby adjusting the position of the adjustment guide roller 31 so that the adjustment guide roller 31 and the core tube 1 have an inner common tangent.

[0041] In some embodiments, such as Figures 8-9 As shown, the left and right adjustment plates 42 are provided with a first through hole 429 extending along their length. A first connecting rod 423 is fixedly connected to the mounting base plate 41 through the first through hole 429. The end of the first connecting rod 423 is provided with a first fastener 424 whose size is larger than the width of the first through hole 429. The first connecting rod 423 can slide in the first through hole 429 to allow the left and right adjustment plates 42 to reciprocate along their length. During adjustment, the first fastener 424 is loosened to allow the left and right adjustment plates 42 to move along their length. When the adjusting guide roller 31 connected to it has an inner common tangent with the core tube 1, the first fastener 424 is tightened to fix the left and right adjustment plates 42 in this position. Specifically, the end of the first connecting rod 423 may be provided with threads, and the first fastener 424 is a nut whose size is larger than the width of the first through hole 429. Alternatively, the connection between the first connecting rod 423 and the first fastener 424 can be configured to have a protrusion or a rough outer surface. The first fastener 424 is a locking sleeve, which is fitted onto the end of the first connecting rod 423 and is detachable.

[0042] In some embodiments, such as Figures 1-9As shown, the adjustment mechanism 4 also includes front and rear adjustment plates 43 and a mounting base plate 41. The front and rear adjustment plates 43 and the left and right adjustment plates 42 are perpendicular to each other and connected to the mounting base plate 41. The adjusting guide roller 31 is connected to the left and right adjustment plates 42 and can move along the length direction of the front and rear adjustment plates 43, thereby moving closer to or further away from the core tube 1, adjusting the radial position of the adjusting guide roller 31 relative to the core tube 1. With the above configuration, the adjusting guide roller 31 can move along the length direction of the front and rear adjustment plates 43 and the left and right adjustment plates 42. During the entire operation of the winding machine, the adjusting guide roller 31 is brought as close as possible to the core tube 1, shortening the length of the reinforcing strip 2 between the adjusting guide roller 31 and the core tube 1, and reducing the fluctuation of the reinforcing strip 2 during winding. During installation and disassembly, the adjusting guide roller 31 is kept as far apart from the core tube 1 as possible, preventing interference between components. The radial position of the adjusting guide roller 31 relative to the core tube 1 can also be adjusted arbitrarily according to other needs in actual production.

[0043] In some embodiments, such as Figures 6-8 As shown, the front and rear adjusting plate 43 is connected to and integrally formed with the left and right adjusting plates 42. The front and rear adjusting plate 43 has a second through hole 433 extending along its length. A second connecting rod 431, fixedly connected to the mounting base plate 41, passes through the second through hole 433. The end of the second connecting rod 431 has a second fastener 432, larger than the width of the second through hole 433. The second connecting rod 431 can slide back and forth along the length of the front and rear adjusting plate 43 within the second through hole 433. During adjustment, the second fastener 432 is loosened, allowing the front and rear adjusting plate 43 to move along its length. When the adjusting guide roller 31 reaches a suitable position, the second fastener 432 is tightened to fix the front and rear adjusting plate 43 in this position. Specifically, the end of the second connecting rod 431 may be threaded, and the second fastener 432 is a nut larger than the width of the second through hole 433. Alternatively, the connection between the second connecting rod 431 and the second fastener 432 can be configured to have a protrusion or a rough outer surface. The second fastener 432 is a locking sleeve, which is fitted onto the end of the second connecting rod 431 and is detachable.

[0044] In some embodiments, such as Figures 9-10 As shown, the front and rear adjustment plates 43, left and right adjustment plates 42, and mounting base plate 41 are stacked along their thickness direction and connected to adjacent plates in sequence. The front and rear adjustment plates 43 are provided with a second through hole 433 extending along their length direction. A second connecting rod 431 is provided through the second through hole 433 and fixedly connected to the adjacent plate. The end of the second connecting rod 431 is provided with a second fastener 432 with a size larger than the width of the second through hole 433. The second connecting rod 431 can slide back and forth in the second through hole 433 along the length direction of the front and rear adjustment plates 43. By tightening or loosening the second fastener 432, the front and rear adjustment plates 43 can slide along their length direction and be fixed in the desired position. Figures 9-10In this configuration, the stacking order from top to bottom is: mounting base plate 41, front and rear adjustment plates 43, and left and right adjustment plates 42. The left and right adjustment plates 42 can move along their length through a first through hole 429. To ensure that both the left and right adjustment plates 42 and the front and rear adjustment plates 43 function, the left and right adjustment plates 42 are connected to the front and rear adjustment plates 43 via a first connecting rod 423. The front and rear adjustment plates 43 are connected to the mounting base plate 41 via a second connecting rod 431. The stacking order of the mounting base plate 41, front and rear adjustment plates 43, and left and right adjustment plates 42 can be arbitrarily adjusted, and the adjusting guide roller 31 can also be selectively installed on either the front and rear adjustment plates 43 or the left and right adjustment plates 42. The structural configuration of the left and right adjustment plates 42 is also not limited to... Figure 9 and Figure 10 As shown, it can also be as follows Figure 6 , Figure 7 , Figure 8 As shown in the image.

[0045] This utility model also provides a winding machine, which includes the aforementioned winding machine adjustment device. The winding machine adjustment device is mounted on the main body of the winding machine via a mounting base plate 41. Multiple sets of the winding machine adjustment device can be configured to surround the core tube 1. The winding machine also includes a reel on which reinforcing tape 2 is wound and released, such as... Figure 1 As shown, after the reinforcing belt 2 is released, it is guided by the guide roller 3 and wound onto the moving core tube 1. The reinforcing belt 2 is located on the inner common tangent surface of the adjusting guide roller 31 and the core tube 1, which is close to the core tube 1, so that it maintains good contact with the adjusting guide roller 31 and the core tube 1 respectively in its entire width direction, so that the reinforcing belt 2 is precisely wound around the outer periphery of the core tube 1.

[0046] The preferred embodiments of the present invention have been described in detail above with reference to the accompanying drawings; however, the present invention is not limited thereto. Within the scope of the technical concept of the present invention, various simple modifications can be made to the technical solution of the present invention, including combinations of various specific technical features in any suitable manner. To avoid unnecessary repetition, the present invention will not describe the various possible combinations separately. However, these simple modifications and combinations should also be considered as the content disclosed in the present invention and are all within the protection scope of the present invention.

Claims

1. A winding machine adjustment device, characterized in that, include: A plurality of guide rollers (3), the plurality of guide rollers (3) being configured to guide the reinforcing belt (2) as it is wound onto the core tube (1) and to be driven to rotate about the core tube (1), the guide rollers (3) including an adjusting guide roller (31) near the core tube (1), the adjusting guide roller (31) being located in a different plane from the central axis of the core tube (1); and, Adjustment mechanism (4), the adjustment mechanism (4) includes left and right adjustment plates (42), the adjustment guide roller (31) is connected to the left and right adjustment plates (42) and can move along the length direction of the left and right adjustment plates (42) to be adjusted so that the adjustment guide roller (31) and the core tube (1) have an inner common tangent (5).

2. The winding machine adjustment device according to claim 1, characterized in that, The adjustment mechanism (4) further includes a mounting base plate (41), the left and right adjustment plates (42) are fixedly connected to the mounting base plate (41), and the adjustment guide roller (31) is adjustablely connected to the left and right adjustment plates (42) so that the adjustment guide roller (31) is adjusted to have an inner common tangent (5) with the core tube (1) by reciprocating along the length direction of the left and right adjustment plates (42).

3. The winding machine adjustment device according to claim 2, characterized in that, The left and right adjustment plate (42) is provided with a through groove (428) extending along its length direction. A guide rod is provided in the through groove (428) along the length direction. One end of the guide rod extends outward to the end of the left and right adjustment plate (42) and is connected to a driving member. The other end of the guide rod is connected to the adjustment guide roller (31) so that the adjustment guide roller (31) can be moved along the length direction of the guide rod by manipulating the driving member.

4. The winding machine adjustment device according to claim 3, characterized in that, The guide rod is a lead screw (422), one end of the adjusting guide roller (31) is screwed to the lead screw (422), the driving component is a handwheel (421), the handwheel (421) can drive the lead screw (422) to rotate, so that the adjusting guide roller (31) reciprocates along the length direction of the lead screw (422); and / or, The adjusting guide roller (31) includes a rotating shaft (311) and a bearing seat (313). The bearing seat (313) is located at one end of the rotating shaft (311) and embedded in the through groove (428). The bearing seat (313) is connected to the guide rod and can reciprocate in the through groove (428) along the length direction of the guide rod. The end of the bearing seat (313) away from the rotating shaft (311) is connected to a pressure plate (425) with a size larger than the width of the through groove (428) and a pressure bolt (426) for fixing the pressure plate (425) to the bearing seat (313).

5. The winding machine adjustment device according to claim 1, characterized in that, The adjustment mechanism (4) further includes a mounting base plate (41), the left and right adjustment plates (42) are slidably and adjustablely connected to the mounting base plate (41), the adjustment guide roller (31) is fixedly connected to a predetermined position on the left and right adjustment plates (42), and the left and right adjustment plates (42) can reciprocate relative to the mounting base plate (41) along the length direction of the left and right adjustment plates (42).

6. The winding machine adjustment device according to claim 5, characterized in that, The left and right adjustment plate (42) is provided with a first through hole (429) extending along its length direction. A first connecting rod (423) is fixedly connected to the mounting base plate (41) through the first through hole (429). The end of the first connecting rod (423) is provided with a first fastener (424) with a size larger than the width of the first through hole (429). The first connecting rod (423) can slide in the first through hole (429) so that the left and right adjustment plate (42) can reciprocate along its length direction.

7. The winding machine adjustment device according to claim 1, characterized in that, The adjustment mechanism (4) further includes a front and rear adjustment plate (43) and a mounting base plate (41). The front and rear adjustment plate (43) is perpendicular to the left and right adjustment plate (42) and connected to the mounting base plate (41). The adjustment guide roller (31) is connected to the left and right adjustment plate (42) and can move along the length direction of the front and rear adjustment plate (43) to adjust the radial position of the adjustment guide roller (31) relative to the core tube (1).

8. The winding machine adjustment device according to claim 7, characterized in that, The front and rear adjustment plate (43) is connected to the left and right adjustment plate (42) and is integrally formed with the left and right adjustment plate (42). The front and rear adjustment plate (43) is provided with a second through hole (433) extending along its length direction. A second connecting rod (431) is fixedly connected to the mounting base plate (41) through the second through hole (433). The end of the second connecting rod (431) is provided with a second fastener (432) with a size larger than the width of the second through hole (433). The second connecting rod (431) can slide back and forth in the second through hole (433) along the length direction of the front and rear adjustment plate (43).

9. The winding machine adjustment device according to claim 7, characterized in that, The front and rear adjustment plates (43), the left and right adjustment plates (42), and the mounting base plate (41) are stacked along their thickness direction and connected to their adjacent plates in sequence. The front and rear adjustment plates (43) are provided with a second through hole (433) extending along their length direction. A second connecting rod (431) is fixedly connected to the mounting base plate (41) through the second through hole (433). The end of the second connecting rod (431) is provided with a second fastener (432) with a size larger than the width of the second through hole (433). The second connecting rod (431) can slide back and forth along the length direction of the front and rear adjustment plates (43) in the second through hole (433).

10. A winding machine, characterized in that, The winding machine includes a winding machine adjustment device according to any one of claims 1 to 9.