Correcting roll material conveying device

By integrating the first and second correction mechanisms into the correction roll conveyor, and adjusting the positions of the unwinding and rewinding shafts, the problem of simultaneously achieving unwinding and correction within a limited space is solved, thus realizing stable correction and convenient operation.

CN223752085UActive Publication Date: 2026-01-02LUNFINE ADVANCED MATERIAL TECH (GUANGZHOU) CO LTD
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Patent Information

Application Number
CN202520059063.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2026-01-02
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

Existing technologies make it difficult to simultaneously achieve deviation correction on both the unwinding and rewinding sides within a limited space, especially in integrated unwinding and rewinding machines where the unwinding and rewinding mechanisms are located in the same longitudinal space.

Method used

A web-correcting conveyor device is designed, comprising a base, a first web-correcting mechanism, a main wall plate, an upper bottom plate, and a second web-correcting mechanism. The first web-correcting mechanism adjusts the position of the first web-shaft, and the second web-correcting mechanism adjusts the position of the second web-shaft. Web correction is achieved by using a guide component and a cylinder drive. The web-correcting structure is integrated into the upper and lower web-shafts in the longitudinal space.

Benefits of technology

Stable unwinding and rewinding correction is achieved within a limited space. The structure is stable, easy to operate, easy to install and maintain, and suitable for production lines with limited space.

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    Figure CN223752085U_ABST
Patent Text Reader

Abstract

The utility model discloses a deviation rectifying roll material conveying device which comprises a base, a first deviation rectifying mechanism, main wallboards on the two sides, an upper bottom plate, a second deviation rectifying mechanism, a first roll material shaft and a second roll material shaft, the first deviation rectifying mechanism is arranged on the base, the main wallboards are arranged on the first deviation rectifying mechanism, the upper bottom plate is arranged on the main wallboards, and the second deviation rectifying mechanism is arranged on the second roll material shaft. The second deviation rectifying mechanism is arranged above the upper bottom plate; the first material rolling shaft is installed between the main wallboards on the two sides, and the second material rolling shaft is installed on the second deviation rectifying mechanism. The winding and unwinding integrated device is suitable for scenes such as limited and narrow production line arrangement space, occupies a small space, can be concentrated in a longitudinal space with a low utilization rate, realizes winding and unwinding integration, simultaneously arranges unwinding and winding, and can ensure deviation correction of different positions. And the structure is stable, operation is easy, and installation, arrangement and maintenance are convenient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a take -up and pay -off device technical field more specifically, relate to a kind of rectification material winding transmission device. BACKGROUND

[0002] For the existing production system with take-up and pay-off process, there is often a long production line, and the pay-off process and the winding process are located on both sides. When the material running in the production process has a position deviation, a rectification mechanism can be provided to correct the deviation, thereby ensuring the production quality and stability. In a long space arranged production line, the rectification mechanism can be arranged in the middle side. However, for the scene where the production line arrangement space is limited and narrow, such as the take-up and pay-off integrated machine where the pay-off mechanism and the winding mechanism are located in the same longitudinal space, the rectification mechanism is not easy to arrange accordingly. Especially when the pay-off side and the winding side need to be corrected, it is difficult to arrange the rectification of the pay-off and winding sides in the limited space.

[0003] Therefore, the prior art urgently needs a rectification material winding transmission device that can simultaneously implement different side rectification processes in a limited space. SUMMARY

[0004] The present application aims to overcome at least one of the above-mentioned deficiencies in the prior art, and provides a rectification material winding transmission device that can simultaneously implement the operation of two or more winding shafts in a limited space and ensure rectification at different positions.

[0005] The technical solution adopted by the present application is a rectification material winding transmission device, which comprises a base, a first rectification mechanism, two side main wallboards, an upper bottom plate, a second rectification mechanism, a first winding shaft and a second winding shaft. The first rectification mechanism is arranged above the base, the main wallboard is arranged on the first rectification mechanism, the upper bottom plate is arranged above the main wallboard, and the second rectification mechanism is arranged on the upper bottom plate. The first winding shaft is installed between the two side main wallboards, and the second winding shaft is installed on the second rectification mechanism. The first rectification mechanism is used to adjust the position of the first winding shaft in the length direction of the first winding shaft, and the second rectification mechanism is used to adjust the position of the second winding shaft in the length direction of the second winding shaft. Further, the first winding shaft and the second winding shaft are arranged in parallel.

[0006] The application is a deviation correction roll material conveying device, from bottom to top, there are base, first deviation correction mechanism, two side main wall plates, upper bottom plate and second deviation correction mechanism, first roll shaft and second roll shaft are respectively located between the main wall plates and on the second deviation correction mechanism, two roll shafts and different deviation correction mechanisms are integrated in limited longitudinal space. Taking the first roll shaft as unwinding shaft and the second roll shaft as winding shaft as an example, first, the first deviation correction mechanism is used for deviation correction, the main structure including the main wall plate, the upper bottom plate, the second deviation correction mechanism, the first roll shaft and the second roll shaft is moved to ensure that the unwinding side is corrected to the appropriate unwinding position, including the appropriate position relative to the other downstream conveying direction; then, the second deviation correction mechanism is used for deviation correction, the top structure including the second roll shaft is moved to ensure that the winding side is corrected to the appropriate winding position. Thus, stable unwinding and winding are performed after correction. In the prior art, even if the winding and unwinding integrated device is realized, the winding and unwinding sides are usually arranged in different frames separated in the horizontal direction, which still has certain installation space requirements, while in the application, the winding and unwinding integrated device can be realized in the longitudinal space with low utilization rate, and the deviation correction of different positions can be ensured at the same time. The structure is stable, easy to operate, and convenient for installation, arrangement and maintenance. The first roll shaft and the second roll shaft are arranged in the longitudinal limited space, and the first deviation correction mechanism and the second deviation correction mechanism are located in the same longitudinal space, the main structure including the first roll shaft and the second roll shaft side are moved to realize different deviation correction processes. Further, the roll material includes flexible substrate such as film roll which needs to be wound and unwound. The deviation correction direction of the first deviation correction mechanism is the length direction of the first roll shaft, that is, the first deviation correction mechanism guides the first roll shaft to move in the length direction of the first roll shaft; the deviation correction direction of the second deviation correction mechanism is the length direction of the second roll shaft, that is, the second deviation correction mechanism guides the second roll shaft to move in the length direction of the second roll shaft. Further, the first roll shaft is a winding shaft or an unwinding shaft, and the second roll shaft is a corresponding unwinding shaft or winding shaft. Further, an offset detection sensor is arranged to detect whether the first roll shaft, the second roll shaft or the roll material position is offset.

[0007] Further, the first deviation rectifying mechanism comprises a first guide assembly, a lower bottom plate, the first guide assembly is installed between the base and the lower bottom plate, and the main wall plate is installed on the lower bottom plate; the lower bottom plate drives the main wall plate to move on the first guide assembly relative to the base; and / or, the second deviation rectifying mechanism comprises a second guide assembly, a top plate, the top plate is above the upper bottom plate, the second guide assembly is installed between the upper bottom plate and the top plate, and the second material roll shaft is installed on the top plate; the top plate drives the second material roll shaft to move on the second guide assembly relative to the upper bottom plate. Further, the first guide assembly is installed on the base through a cushion block. The lower bottom plate and the first guide assembly form a guide sliding structure, when the lower bottom plate is driven by an external force, it can move relative to the base along the guide direction of the first guide assembly, rectifying and correcting the components above the lower bottom plate including the first material roll shaft to a suitable position; similarly, the top plate and the second guide assembly form a guide sliding structure, when the top plate is driven by an external force, it can move relative to the upper bottom plate along the guide direction of the second guide assembly, rectifying and correcting the components above the top plate including the second material roll shaft to a suitable position.

[0008] Further, a plurality of first guide assemblies are arranged between the lower bottom plate and the base, and corresponding first guide assemblies are arranged at the front and rear positions on the left and right sides. A plurality of second guide assemblies are arranged between the top plate and the upper bottom plate, and corresponding second guide assemblies are arranged at the front and rear positions on the left and right sides. Further, the first guide assembly comprises a first sliding rail and a first sliding block, the first sliding rail is fixed on the base, the first sliding block cooperates with the first sliding rail, and the top end of the first sliding block is fixedly connected with the lower bottom plate; further, the second guide assembly comprises a second sliding rail and a second sliding block, the second sliding rail is fixed on the upper bottom plate, the second sliding block cooperates with the second sliding rail, and the top end of the second sliding block is fixedly connected with the top plate. The arrayed plurality of first guide assemblies and second guide assemblies can improve the guiding accuracy, the multiple position restrictions can overcome the guiding deviation caused by part errors; at the same time, multiple first guide assemblies or second guide assemblies are arranged at the corresponding layer, which can improve the support effect on the structure above and enhance the stability of the overall structure.

[0009] Further, the first deviation rectifying mechanism further comprises a first cylinder, the lower bottom plate is provided with a mounting opening, the first cylinder is arranged on the base through the mounting opening, and the output end of the first cylinder is connected with the lower bottom plate, and the first cylinder drives the lower bottom plate to move on the first guide assembly relative to the base; the second deviation rectifying mechanism further comprises a second cylinder, the second cylinder is arranged on one side of the upper bottom plate, and the output end of the second cylinder is connected with one side of the top plate, and the second cylinder drives the top plate to move on the second guide assembly relative to the upper bottom plate. In an embodiment of the present application, the action direction of the first cylinder, i.e. the extension direction, is consistent with the guide direction of the first guide assembly, and the output end of the first cylinder is used to drive the lower bottom plate to move by extending or pulling back; similarly, the output end of the second cylinder is connected with the side of the top plate, and when the output end of the second cylinder extends or shrinks, the top plate is driven along the guide direction of the second guide assembly. In the present application, the first cylinder is arranged on the base through the mounting opening of the lower bottom plate, which is beneficial to the connection of the output end of the first cylinder with the inner side of the mounting opening of the lower bottom plate, so as to facilitate the direct pushing and pulling of the lower bottom plate on the inner side, and fully utilize the space in the horizontal direction and the excess gap in the vertical direction. Further, the inner side of the mounting opening of the lower bottom plate is extended to form a mounting portion, and the output end of the first cylinder is fixedly connected with the mounting portion. Further, the second cylinder is arranged on one side of the upper bottom plate through an L-shaped fixing seat, and the output end of the second cylinder is connected with the side of the top plate. The output end of the second cylinder can be connected with the side or the side portion of the top plate, and the second cylinder is arranged in the space of the upper bottom plate, and the output end is connected with the side portion of the top plate, so as to effectively provide driving force.

[0010] Further, a positioning column is arranged on the lower bottom plate, and a corresponding positioning hole is arranged on the base, and the positioning column is sunk to cooperate with the positioning hole to position the relative position before deviation rectification or after deviation rectification. The positioning column is a movable positioning column, when the lower bottom plate moves to the position where the positioning column cooperates with the positioning hole, the positioning column is sunk due to gravity, and then cooperates with the positioning hole to realize corresponding positioning.

[0011] Further, the top plate is in a U-shaped structure, and the second material winding shaft is arranged on the opening side of the U-shaped structure of the top plate. In an embodiment of the present application, by arranging the second material winding shaft on the opening side of the U-shaped structure, it is beneficial to fully utilize the remaining space in the vertical direction, and utilize the space above and below the opening of the top plate to provide space for the outer winding material and rotation of the second material winding shaft; in addition to improving the space utilization rate and avoiding the situation that the vertical structure is too high to be inconvenient to install, it is also beneficial to the cooperation and installation of other components on the top plate and the second material winding shaft, and improves the operation effect.

[0012] Further, the upper bottom plates are arranged on both sides, and a support rod is arranged between the upper bottom plates and the lower bottom plate; the upper bottom plates are respectively arranged above the two side main wall plates, and the upper bottom plates are arranged eccentrically relative to the corresponding side main wall plates; the lower part of the side of the upper bottom plate close to the second material winding shaft is connected with the corresponding main wall plate, and the lower part of the side of the upper bottom plate away from the second material winding shaft is connected with the upper end of the support rod; the lower bottom plate is extended to form a resisting part protruding out of the main wall plate, and the resisting part is connected with the lower end of the support rod. Through the upper bottom plates arranged on both sides, on one hand, the arrangement position of the guiding mechanism can be ensured, and the relative movement of the top plate can be provided, and on the other hand, the space between the main wall plates and the structure above the top plate is kept in communication, and the arrangement of the material feeding path of the overall mechanism is facilitated. Meanwhile, the upper bottom plates are arranged eccentrically, and the lower bottom plates and the support rods are matched on the outside, the load-bearing stability of the overall structure is improved, the integrity of the structure above the first deviation rectifying mechanism is enhanced, and the deviation rectifying effect is improved.

[0013] Further, two or more than two rollers are arranged, at least one roller is arranged on the second deviation rectifying mechanism, and at least one roller is arranged between the main wall plates. Further, a roller support is arranged on the top plate, and at least one roller is arranged on the roller support; the material can pass through the first material winding shaft, the rollers between the main wall plates, the rollers on the second deviation rectifying mechanism and the second material winding shaft. That is, two or more than two rollers are arranged to provide corresponding substrate guiding, and the control areas of the unwinding side and the winding side are relatively independent.

[0014] Further, one or more than one roller is arranged, and the end of the roller is arranged on the corresponding side mounting surface through an adjusting seat; the adjusting seat comprises a limiting protrusion on the outer periphery, a fixing block on the inner side and a fastening bolt, and an adjusting gap is left between the limiting protrusion and the fixing block; the end of the roller body is arranged on the fixing block, a long circular hole is arranged on the fixing block, and the position of the fixing block on the inner side of the limiting protrusion is adjusted through the fastening bolt. When the roller is arranged between the main wall plates, the mounting surface is the surface of the main wall plate, the limiting protrusion is arranged on the main wall plate, and the limiting protrusion is located on the outer side of the fixing block. Through the adjusting seat, the end position of the roller can be finely adjusted, and the parallel state of the roller can be adjusted, so as to adjust the material feeding in production and regular maintenance.

[0015] Further, the traction mechanism is detachably mounted on the main wall plate. Further, the traction mechanism comprises a wall plate, a quick-release driving roller roller body and a traction rubber roller mounted on the wall plate. The wall plate is detachably mounted on the main wall plate. The quick-release driving roller roller body is detachably mounted on the wall plate. For the multi-layer structure of the roll material, the peeling step is also involved, such as the base material being a composite base material including a release film layer and a layer to be processed. The first roll shaft can be used as a pay-off shaft, and the second roll shaft can be used as a winding shaft. The composite base material is separated into the release film and the layer to be processed before being transported to the traction mechanism. At this time, the layer to be processed / release film is transported to the second roll shaft by the traction mechanism and is wound. The release film / layer to be processed is guided downstream.

[0016] Further, the tension adjusting mechanism is used for adjusting the tension of the transmission material. Further, the tension adjusting mechanism at least comprises a swing floating roller arranged between the main wall plates. In the specific winding and unwinding process, the roll material is usually kept in the stretched and flat state. Therefore, the tension adjusting mechanism is arranged to adjust the tension in the winding and unwinding process, so as to immediately adjust the transmission of the roll material and maintain the transmission of the roll material in the stretched and flat state. The production effect is improved, and the production quality is guaranteed.

[0017] Further, a plurality of reinforcing rods are arranged between the main wall plates. The reinforcing rods can strengthen the overall structural stability and support the upper components in the longitudinal direction.

[0018] Compared with the prior art, the beneficial effects of the present application are as follows: the roll material transmission device provided by the present application is suitable for scenes with limited and narrow production line arrangement space, occupies small space, can be concentrated in the longitudinal space with low utilization rate, realizes the integration of winding and unwinding, simultaneously arranges the pay-off and winding, and can simultaneously guarantee the correction of different positions. The first roll shaft and the second roll shaft are arranged in the longitudinal limited space, the first correction mechanism and the second correction mechanism are located in the same longitudinal space, and the main structure including the first roll shaft and the second roll shaft are moved respectively to realize different correction processes. The structure is stable, easy to operate, and convenient to install, arrange and maintain. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a structural schematic view of the present application.

[0020] Figure 2 It is a structural schematic view of the present application.

[0021] Figure 3 It is a structural schematic view of the present application.

[0022] Figure 4 It is a structure schematic view (four) of the utility model.

[0023] Figure 5 It is a structure schematic view (five) of the utility model.

[0024] Figure 6 It is a structure schematic view (six) of the utility model.

[0025] Figure 7 It is a structure schematic view of the winding and unwinding system containing the deviation rectifying and material conveying device of the application.

[0026] Figure 8 It is a material running schematic view of the winding and unwinding system containing the deviation rectifying and material conveying device of the application.

[0027] BRIEF DESCRIPTION OF DRAWINGS: deviation rectifying and material conveying device 200, support rod 202, adjusting seat 201, limiting protrusion 201A, fixed block 201B, reinforcing rod 203, first deviation rectifying mechanism 220, first cylinder 220A, first guide assembly 221, lower bottom plate 222, positioning column 223, positioning hole 224, second deviation rectifying mechanism 230, second cylinder 230A, second guide assembly 231, top plate 232, traction mechanism 300, arrangement wallboard 320, quick-release driving roller roller body 310, traction rubber roller 350, tension adjusting mechanism 400, base 1110, main wallboard 1120, upper bottom plate 1130, first material winding shaft 1200, second material winding shaft 1300, over roller 1400, composite base material 2000, layer to be processed 2100, release film 2200. DETAILED DESCRIPTION

[0028] The drawings of the utility model are only used for example description, and cannot be understood as the limitation of the utility model. In order to better illustrate the following embodiments, some components of the drawings can be omitted, enlarged or reduced, and do not represent the size of the actual product; for those skilled in the art, it is understandable that some well-known structures and their descriptions in the drawings can be omitted. Embodiment 1

[0029] As Figures 1-8As shown, the embodiment discloses a deviation correction roll material conveying device 200, which comprises a base 1110, a first deviation correction mechanism 220, two side main wall plates 1120, an upper bottom plate 1130, a second deviation correction mechanism 230, a first roll material shaft 1200 and a second roll material shaft 1300, wherein the first roll material shaft 1200 is arranged in parallel with the second roll material shaft 1300; the first deviation correction mechanism 220 is arranged on the base 1110, the main wall plate 1120 is arranged on the first deviation correction mechanism 220, the upper bottom plate 1130 is arranged on the main wall plate 1120, and the second deviation correction mechanism 230 is arranged above the upper bottom plate 1130; the first roll material shaft 1200 is installed between the two side main wall plates 1120, and the second roll material shaft 1300 is installed on the second deviation correction mechanism 230. The first deviation correction mechanism 220 is used for adjusting the position of the first roll material shaft 1200 in the length direction of the first roll material shaft 1200, that is, the first deviation correction mechanism 220 guides the first roll material shaft 1200 to move in the length direction of the first roll material shaft 1200; the second deviation correction mechanism 230 is used for adjusting the position of the second roll material shaft 1300 in the length direction of the second roll material shaft 1300, that is, the second deviation correction mechanism 230 guides the second roll material shaft 1300 to move in the length direction of the second roll material shaft 1300. The deviation correction roll material conveying device 200 is also provided with a deviation detection sensor for detecting whether the first roll material shaft 1200, the second roll material shaft 1300 or the roll material position deviates.

[0030] In the structure of the deviation correction roll material conveying device 200, the base 1110, the first deviation correction mechanism 220, the two side main wall plates 1120, the upper bottom plate 1130 and the second deviation correction mechanism 230 are sequentially arranged from bottom to top, the first roll material shaft 1200 is located between the main wall plates 1120, and the second roll material shaft 1300 is located on the second deviation correction mechanism 230, so that the upper and lower roll material shafts and different deviation correction mechanisms are integrated in the limited longitudinal space. In the embodiment, the first roll material shaft 1200 is a unwinding shaft, the second roll material shaft 1300 is a winding shaft, the first deviation correction mechanism 220 is used for deviation correction, and the main structure including the main wall plates 1120, the upper bottom plate 1130, the second deviation correction mechanism 230, the first roll material shaft 1200 and the second roll material shaft 1300 is moved to correct the unwinding side to a suitable unwinding position, including a suitable position relative to the downstream conveying direction; then, the second deviation correction mechanism 230 is used for deviation correction during unwinding, and the top structure including the second roll material shaft 1300 is moved to ensure that the winding side is corrected to a suitable winding position or the base material is stably conveyed.

[0031] As a first deviation correction mechanism 220, the first deviation correction mechanism 220 includes a first guide assembly 221, a lower bottom plate 222, the first guide assembly 221 is installed between the base 1110 and the lower bottom plate 222, and the main wall plate 1120 is installed on the lower bottom plate 222; the lower bottom plate 222 drives the main wall plate 1120 to move on the first guide assembly 221 relative to the base 1110; the second deviation correction mechanism 230 includes a second guide assembly 231, a top plate 232, the second guide assembly 231 is installed between the upper bottom plate 1130 and the top plate 232, and the second material roll shaft 1300 is installed on the top plate 232; the top plate 232 drives the second material roll shaft 1300 to move on the second guide assembly 231 relative to the upper bottom plate 1130. In order to facilitate the arrangement and operation of the second material roll shaft 1300, the top plate 232 is a U-shaped structure, and the second material roll shaft 1300 is arranged on the opening side of the U-shaped structure of the top plate 232. In addition, in the embodiment, the upper bottom plate 1130 includes two sides, and a support rod 202 is arranged between the upper bottom plate 1130 and the lower bottom plate 222; the two upper bottom plates 1130 are respectively installed above the two main wall plates 1120, the upper bottom plate 1130 is eccentrically arranged relative to the corresponding side main wall plate 1120, the lower part of the side of the upper bottom plate 1130 close to the second material roll shaft 1300 is connected with the corresponding main wall plate 1120, and the lower part of the side of the upper bottom plate 1130 away from the second material roll shaft 1300 is connected with the upper end of the support rod 202; the lower bottom plate 222 is extended to form a resisting portion protruding out of the main wall plate 1120, and the resisting portion is connected with the lower end of the support rod 202. A plurality of reinforcing rods 203 are arranged between the main wall plates 1120.

[0032] On the guide mechanism, the first guide assembly 221 is installed on the base 1110 through a cushion block. The lower bottom plate 222 and the first guide assembly 221 cooperate to form a guide sliding structure, when the lower bottom plate 222 is driven by an external force, it can move relative to the base 1110 along the guide direction of the first guide assembly 221, and correct the deviation of the components on the lower bottom plate 222 including the first material roll shaft 1200 to the appropriate position; similarly, the top plate 232 and the second guide assembly 231 cooperate to form a guide sliding structure, when the top plate 232 is driven by an external force, it can move relative to the upper bottom plate 1130 along the guide direction of the second guide assembly 231, and correct the deviation of the components on the top plate 232 including the second material roll shaft 1300 to the appropriate position. In the embodiment, in order to improve the effect of the guide, a plurality of first guide assemblies 221 are arranged between the lower bottom plate 222 and the base 1110, and corresponding first guide assemblies 221 are arranged at the front and rear positions of the left and right sides. A plurality of second guide assemblies 231 are arranged between the top plate 232 and the upper bottom plate 1130, and corresponding second guide assemblies 231 are arranged at the front and rear positions of the left and right sides.

[0033] The first guiding assembly 221 comprises a first sliding rail and a first sliding block. The first sliding rail is fixed on the base 1110. The first sliding block cooperates with the first sliding rail. The top end of the first sliding block is fixedly connected with the lower bottom plate 222. The second guiding assembly 231 comprises a second sliding rail and a second sliding block. The second sliding rail is fixed on the upper bottom plate 1130. The second sliding block cooperates with the second sliding rail. The top end of the second sliding block is fixedly connected with the top plate 232.

[0034] In a specific implementation of the deviation rectifying power, the first deviation rectifying mechanism 220 further comprises a first air cylinder 220A. The lower bottom plate 222 is provided with a mounting opening. The first air cylinder 220A is arranged on the base 1110 through the mounting opening. The output end of the first air cylinder 220A is connected with the lower bottom plate 222. The first air cylinder 220A drives the lower bottom plate 222 to move on the first guiding assembly 221 relative to the base 1110. The action direction of the first air cylinder 220A, i.e. the extension direction, is consistent with the guiding direction of the first guiding assembly 221. The output end of the first air cylinder 220A is used to drive the lower bottom plate 222 to move by extending or pulling back. The second deviation rectifying mechanism 230 further comprises a second air cylinder 230A. The second air cylinder 230A is arranged on one side of the upper bottom plate 1130. The output end of the second air cylinder 230A is connected with one side of the top plate 232. The second air cylinder 230A drives the top plate 232 to move on the second guiding assembly 231 relative to the upper bottom plate 1130. Similarly, the output end of the second air cylinder 230A is connected with the side of the top plate 232. When the output end of the second air cylinder 230A extends, the top plate 232 is driven along the guiding direction of the second guiding assembly 231. In a specific arrangement, the first air cylinder 220A is arranged on the base 1110 through the mounting opening of the lower bottom plate 222. The output end of the first air cylinder 220A is connected with the inner side of the mounting opening of the lower bottom plate 222. The inner side of the mounting opening of the lower bottom plate 222 is extended to form a mounting portion. The output end of the first air cylinder 220A is fixedly connected with the mounting portion. The second air cylinder 230A is arranged on the side of the upper bottom plate 1130 through an L-shaped fixing base. The output end of the second air cylinder 230A is connected with the side of the top plate 232.

[0035] In the embodiment, two or more rollers 1400 are arranged in the specific feeding direction, and at least one roller 1400 is arranged on the second deviation rectifying mechanism 230, and at least one roller 1400 is arranged between the main wall plates 1120. The top plate 232 is provided with a roller 1400 support, and at least one roller 1400 is arranged on the roller 1400 support; the roll material can pass through the first roll shaft 1200, the roller 1400 between the main wall plates 1120, the roller 1400 on the second deviation rectifying mechanism 230, and the second roll shaft 1300. In the embodiment, the end of the roller 1400 is arranged on the corresponding side mounting surface through the adjusting seat 201; the adjusting seat 201 includes a limiting protrusion 201A on the outer periphery, a fixing block 201B on the inner side, and a fastening bolt, and an adjusting gap is left between the limiting protrusion 201A and the fixing block 201B; the end of the roller body of the roller 1400 is arranged on the fixing block 201B, the fixing block 201B is provided with an oblong hole, and the oblong hole cooperates with the fastening bolt to adjust the position of the fixing block 201B on the inner side of the limiting protrusion 201A. When the roller 1400 is arranged between the main wall plates 1120, the mounting surface is the surface of the main wall plate 1120, the limiting protrusion 201A is arranged on the main wall plate 1120, and the limiting protrusion 201A is located on the outer side of the fixing block 201B. Through the adjusting seat 201, the end position of the roller 1400 can be finely adjusted, and the parallel state of the roller 1400 can be adjusted.

[0036] The deviation rectifying roll material conveying device 200 has various uses, and can further include a traction mechanism 300 which is detachably arranged on the main wall plate 1120. The traction mechanism 300 includes an arrangement wall plate 320, a quick-release drive roller body 310 arranged on the arrangement wall plate 320, and a traction rubber roller 350; the arrangement wall plate 320 is detachably arranged on the main wall plate 1120; and the quick-release drive roller body 310 is detachably arranged on the arrangement wall plate 320. For the roll material of a multi-layer structure, a peeling step is also involved, such as a composite substrate 2000 including a release film 2200 layer and a layer to be processed 2100. The first roll shaft 1200 of the application can be used as a unwinding shaft, and the second roll shaft 1300 can be used as a winding shaft. The composite substrate 2000 is unwound from the first roll shaft 1200, and is separated into the release film 2200 and the layer to be processed 2100 before being conveyed to the traction mechanism 300. At this time, the layer to be processed 2100 / the release film 2200 is conveyed to the second roll shaft 1300 by the traction mechanism 300 and is wound, and the release film 2200 / the layer to be processed 2100 is guided downstream.

[0037] In the feeding process, in order to maintain a relatively stable tension, a tension adjusting mechanism 400 can also be arranged on the deviation rectifying and material feeding device 200, and the tension adjusting mechanism 400 is used for adjusting the tension of the transmission material. The tension adjusting mechanism 400 at least comprises a swing float roller arranged between the main wall plates 1120. The unwound base material passes through the tension adjusting mechanism 400 to the winding shaft and / or the traction mechanism 300.

[0038] In order to facilitate positioning, a positioning column 223 is arranged on the lower bottom plate 222, and a corresponding positioning hole 224 is arranged on the base 1110. The positioning column 223 is lowered to cooperate with the positioning hole 224 to position the relative position before or after deviation rectification. The positioning column 223 is a movable positioning column 223. When the lower bottom plate 222 moves to the position where the positioning column 223 cooperates with the positioning hole 224, the positioning column 223 is lowered due to gravity, and cooperates with the positioning hole 224 to achieve corresponding positioning.

[0039] Obviously, the above embodiments of the utility model are only examples for clearly illustrating the technical scheme of the utility model, and are not a limitation on the specific embodiments of the utility model. Any modification, equivalent replacement and improvement made within the spirit and principle of the utility model claim should be included in the protection scope of the utility model claim.

Claims

1. A misregistration web transport apparatus, comprising: The first deviation rectifying mechanism is arranged on the base, the main wall plate is arranged on the first deviation rectifying mechanism, the upper bottom plate is arranged on the main wall plate, and the second deviation rectifying mechanism is arranged above the upper bottom plate.

2. The correction web transport apparatus according to claim 1, wherein, The first deviation rectifying mechanism comprises a first guide assembly and a lower bottom plate, the first guide assembly is arranged between the base and the lower bottom plate, and the main wall plate is arranged on the lower bottom plate; the lower bottom plate drives the main wall plate to move on the first guide assembly relative to the base; and / or the second deviation rectifying mechanism comprises a second guide assembly and a top plate, the second guide assembly is arranged between the upper bottom plate and the top plate, and the second material winding shaft is arranged on the top plate; the top plate drives the second material winding shaft to move on the second guide assembly relative to the upper bottom plate.

3. The correction web transport of claim 2, wherein, The first deviation rectifying mechanism further comprises a first air cylinder, the lower bottom plate is provided with a mounting opening, the first air cylinder is arranged on the base through the mounting opening, and the output end of the first air cylinder is connected with the lower bottom plate; the first air cylinder drives the lower bottom plate to move on the first guide assembly relative to the base; the second deviation rectifying mechanism further comprises a second air cylinder, the second air cylinder is arranged on one side of the upper bottom plate, and the output end of the second air cylinder is connected with one side of the top plate; the second air cylinder drives the top plate to move on the second guide assembly relative to the upper bottom plate.

4. The correction web transport of claim 2, wherein, The top plate is in a U-shaped structure, and the second material winding shaft is arranged on the opening side of the U-shaped structure of the top plate.

5. The correction web transport of claim 2, wherein, The upper bottom plate is arranged on both sides of the main wall plate, and a support rod is arranged between the upper bottom plate and the lower bottom plate; the upper bottom plate is arranged above the main wall plate, and the upper bottom plate is arranged eccentrically relative to the main wall plate; the lower part of one side of the upper bottom plate close to the second material winding shaft is connected with the main wall plate, and the lower part of the other side of the upper bottom plate away from the second material winding shaft is connected with the upper end of the support rod; the lower bottom plate is extended to form a supporting part protruding from the main wall plate, and the supporting part is connected with the lower end of the support rod.

6. The correction web transport of claim 1, wherein, Two or more rollers are further arranged, and at least one roller is arranged on the second deviation rectifying mechanism, and at least one roller is arranged between the main wall plates.

7. The correction web transport of claim 1 wherein, One or more rollers are further arranged, and the end of the roller is arranged on the corresponding side mounting surface through an adjusting seat; the adjusting seat comprises a limiting protrusion on the outer periphery, a fixing block on the inner side, and a fastening bolt, and an adjusting gap is arranged between the limiting protrusion and the fixing block; a long circular hole is arranged on the fixing block, the position of the fixing block on the inner side of the limiting protrusion is adjusted through the long circular hole and the fastening bolt, and the end of the roller is arranged on the fixing block.

8. A correction web transport device according to any one of claims 1 to 7, characterized in that A traction mechanism is further arranged, and the traction mechanism is detachably arranged on the main wall plate.

9. A misregistration web transport as claimed in any one of claims 1 to 7, wherein, A tension adjusting mechanism is further arranged, and the tension adjusting mechanism is used for adjusting the tension of the transmission material.

10. The correcting web conveying apparatus according to any one of claims 1 to 7, wherein A plurality of reinforcing rods are arranged between the main wall plates.

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