Synchronizing wheel aluminum edge cutting device for photovoltaic module conveying

By designing a synchronous wheel aluminum edge cutting device for photovoltaic module transportation, the problem of photovoltaic module damage caused by aluminum edges protruding above the belt in traditional devices has been solved. The aluminum edge is now lower than the belt surface, ensuring the safety of photovoltaic modules during transportation.

CN121447142APending Publication Date: 2026-02-03SUZHOU YOULAYER INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511568103.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-30
Publication Date
2026-02-03

AI Technical Summary

Technical Problem

In traditional synchronous pulley conveyors, the aluminum edge protrudes above the belt surface, causing the photovoltaic modules to rub against the aluminum edge during movement, resulting in product damage.

Method used

Design a synchronous pulley aluminum edge cutting device for photovoltaic module conveying. The device uses a cutter to cut the aluminum edge of the pulley so that it is lower than the conveying surface of the synchronous pulley belt. The device includes a support base, a pressing component, and a cutter. A rotating shaft, a swing block, and a pressure rod drive the cutter to move up and down to ensure that the aluminum edge height meets the requirements.

Benefits of technology

This effectively prevents the aluminum edges of photovoltaic modules from contacting the modules during transport on synchronous pulleys, thus preventing product damage and ensuring the safety and integrity of the transport process.

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Abstract

The invention discloses a synchronous wheel aluminum edge cutting device for photovoltaic module conveying, which comprises a supporting seat, a pressing assembly and a cutter, the supporting seat is fixedly arranged on belt wheel parts on two sides of a synchronous wheel, the pressing assembly is arranged on the supporting seat, the cutter is connected with the pressing assembly, and the pressing assembly is arranged on the supporting seat. The cutter is located above the aluminum edge of the belt wheel, and the downward pressing assembly drives the cutter to move downwards to cut the aluminum edge of the belt wheel so that the height of the aluminum edge can be lower than the conveying surface of a synchronous wheel belt. According to the synchronous wheel aluminum edge cutting device for conveying the photovoltaic module, the aluminum edge of a belt wheel can be cut through the cutter, so that the aluminum edge is lower than the conveying surface of a synchronous wheel belt, and therefore it is guaranteed that when the photovoltaic module is conveyed on the synchronous wheel, the aluminum edge does not make contact with the photovoltaic module, and product damage is avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of photovoltaic module production equipment, in particular to a synchronous wheel aluminum edge cutting device for photovoltaic module conveying. BACKGROUND

[0002] The synchronous wheel conveying device for photovoltaic module conveying is widely used in the production and manufacturing process of photovoltaic modules. The product is transferred and conveyed through the synchronous wheel. The synchronous wheel conveying device works in cooperation with the belt wheel and the belt. The aluminum edge on the traditional synchronous wheel conveying device belt wheel is higher than the conveying surface of the belt, which causes the photovoltaic module to scratch the protruding aluminum edge when moving to the edge of the synchronous wheel conveying device, thereby damaging the product. SUMMARY

[0003] In order to overcome the above-mentioned defects, the purpose of the present application is to provide a synchronous wheel aluminum edge cutting device for photovoltaic module conveying, thereby effectively solving the above-mentioned technical problems.

[0004] In order to achieve the above purpose, the present application adopts the following technical scheme: The synchronous wheel aluminum edge cutting device for photovoltaic module conveying provided by the present application comprises a support seat, the support seat is fixedly arranged at the belt wheel part on both sides of the synchronous wheel, a pressing assembly and a cutter, the pressing assembly is arranged on the support seat, the cutter is connected to the pressing assembly, the cutter is located above the aluminum edge of the belt wheel, and the cutter is driven downward by the pressing assembly to cut the aluminum edge of the belt wheel so that the height of the aluminum edge is lower than the conveying surface of the synchronous wheel belt.

[0005] Further, the pressing assembly comprises a rotating shaft, an oscillating block and a pressing rod, wherein the rotating shaft is rotatably arranged on the support seat, the oscillating block is connected to the rotating shaft and rotates synchronously with the rotating shaft, the cutter is fixedly arranged on the oscillating block and moves up and down by the oscillating block, and the pressing rod is fixedly connected to the oscillating block.

[0006] Further, the cutter comprises a cutter head and a cutter handle, wherein the cutter head is arranged at the end of the cutter handle, and the cutter handle is fixedly connected to the oscillating block by a clamping plate.

[0007] Further, the end face of the cutter head towards the aluminum edge of the belt wheel is provided with an inwardly recessed circular surface.

[0008] Further, a limiting assembly is further included, the limiting assembly includes a base, a limiting rod and a limiting block, wherein the base is fixedly arranged on the support seat, the bottom of the limiting rod is fixedly arranged on the base, a strip-shaped hole is arranged on the pressing rod, the limiting rod penetrates through the pressing rod through the strip-shaped hole, and the limiting block is arranged on the top of the limiting rod and clamped above the pressing rod.

[0009] Advantages The synchronous wheel aluminum edge cutting device for photovoltaic module conveying is designed, the aluminum edge of the belt wheel can be cut through the cutter, the aluminum edge is lower than the conveying surface of the synchronous wheel belt, so that when the photovoltaic module is conveyed on the synchronous wheel, the aluminum edge will not touch the photovoltaic module to cause product damage. BRIEF DESCRIPTION OF DRAWINGS

[0010] The accompanying drawings are included to provide a further understanding of the present technical solution, and constitute a part of the specification, and are used together with the embodiments of the present disclosure to explain the technical solution of the present disclosure, and do not constitute a limitation on the technical solution of the present disclosure. The shapes and sizes of the components in the drawings do not reflect the true proportions, and the purpose is only to schematically illustrate the content of the present application.

[0011] Fig. 1 The device overall structure schematic diagram provided for an embodiment of the present application.

[0012] Fig. 2 The device partial structure schematic diagram provided for the implemented embodiment of the present application.

[0013] In the above drawings, 1, support seat; 2, belt wheel; 3, aluminum edge; 4, rotating shaft; 5, swing block; 6, pressing rod; 7, cutter; 71, cutter head; 72, cutter handle; 8, clamping plate; 9, base; 10, limiting rod; 11, limiting block; 12, strip-shaped hole. DETAILED DESCRIPTION

[0014] The above-mentioned scheme will be further described in combination with specific embodiments. It should be understood that these embodiments are used to illustrate the present application and do not limit the scope of the present application. The implementation conditions used in the embodiments can be further adjusted according to the specific manufacturer's conditions, and the implementation conditions not marked are usually the conditions in the conventional experiment.

[0015] Unless otherwise defined, the technical or scientific terms used in the embodiments of this disclosure shall have the ordinary meaning understood by one of ordinary skill in the art to which this application pertains. The terms "first," "second," and similar terms used in the embodiments of this disclosure do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Terms such as "comprising" or "including" mean that the element or object preceding the word encompasses the element or object listed following the word and its equivalents, without excluding other elements or objects. Terms such as "connected" or "linked" are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect. In this document, "electrical connection" includes the situation where constituent elements are connected together by an element having some electrical function. There is no particular limitation on the "electrically functioning element," as long as it enables the transmission and reception of electrical signals between the connected constituent elements. An "electrically functioning element" can be, for example, an electrode or wiring, a switching element such as a transistor, or other functional elements such as a resistor, inductor, or capacitor. "Up," "down," "left," and "right" are only used to indicate relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship may also change accordingly.

[0016] In this application, the terms "upper," "lower," "inner," "middle," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.

[0017] Example One embodiment of this application provides a synchronous wheel aluminum edge 3 cutting device for photovoltaic module conveying, such as... Figs. 1-2 As shown, the device includes: Support base 1 is fixedly installed on the pulleys 2 on both sides of the synchronous pulley. Support base 1 is fixedly connected to the side of the synchronous pulley by screws. After the aluminum edge 3 is cut, the entire cutting device can be removed to avoid affecting the normal operation of the synchronous pulley.

[0018] The pressing assembly and the cutter 7 are arranged on the support base 1. The cutter 7 is connected to the pressing assembly and is located above the aluminum edge 3 of the pulley 2. The pressing assembly drives the cutter 7 to move downward to cut the aluminum edge 3 of the pulley 2 so that the height of the aluminum edge 3 is lower than the conveying surface of the synchronous pulley belt.

[0019] The pressing assembly comprises a rotating shaft 4, an oscillating block 5 and a pressing rod 6, wherein the rotating shaft 4 is rotatably arranged on the support base 1, the oscillating block 5 is connected with the rotating shaft 4 and rotates synchronously with the rotating shaft 4, the cutter 7 is fixedly arranged on the oscillating block 5 and is driven by the oscillating block 5 to move up and down, and the pressing rod 6 is fixedly connected with the oscillating block 5. When the device is used, the user manually presses the pressing rod 6, the pressing rod 6 drives the oscillating block 5 to oscillate, and the oscillating block 5 drives the cutter 7 to move, so that the cutter 7 cuts the aluminum edge 3.

[0020] The cutter 7 comprises a cutter head 71 and a cutter handle 72, wherein the cutter head 71 is arranged at the end of the cutter handle 72, the cutter handle 72 is fixedly connected with the oscillating block 5 through the clamping plate 8, the cutter handle 72 part of the cutter 7 is clamped and fixed through the clamping plate 8 and the oscillating block 5, and is locked by a screw.

[0021] The cutter head 71 is provided with an inwardly recessed circular arc surface towards the end face of the aluminum edge 3 of the pulley 2, which can be attached to the aluminum edge 3, so as to more effectively cut the aluminum edge 3.

[0022] The limiting assembly comprises a base 9, a limiting rod 10 and a limiting block 11, wherein the base 9 is fixedly arranged on the support base 1, the bottom of the limiting rod 10 is fixedly arranged on the base 9, a strip-shaped hole 12 is arranged on the pressing rod 6, the limiting rod 10 penetrates through the pressing rod 6 through the strip-shaped hole 12, and the limiting block 11 is arranged on the top of the limiting rod 10 and is clamped above the pressing rod 6. The limiting assembly ensures the movement path of the pressing rod 6, the oscillating block 5 and the cutter 7.

[0023] The cutter 7 can cut the aluminum edge 3 of the pulley 2, so that the aluminum edge 3 is lower than the conveying surface of the synchronous pulley belt, thereby ensuring that the photovoltaic assembly does not touch the photovoltaic assembly when conveying on the synchronous pulley, so as to avoid product damage.

[0024] The above embodiments are only for illustrating the technical concept and characteristics of the present application, and the purpose is to enable those skilled in the art to understand the content of the present application and implement it, and cannot limit the protection scope of the present application. Any equivalent transformation or modification made in the spirit and essence of the present application should be covered within the protection scope of the present application.

Claims

1. A synchronous wheel aluminum edge cutting device for conveying photovoltaic modules, characterized in that: include The support base is fixedly installed on the pulley portions on both sides of the synchronous pulley. The pressing assembly and the cutter are provided. The pressing assembly is mounted on the support base, and the cutter is connected to the pressing assembly. The cutter is located above the aluminum edge of the pulley. The pressing assembly drives the cutter to cut the aluminum edge of the pulley downward so that the height of the aluminum edge is lower than the conveying surface of the synchronous pulley belt.

2. The synchronous wheel aluminum edge cutting device for photovoltaic module conveying as described in claim 1, characterized in that: The pressing assembly includes a rotating shaft, a swing block, and a pressure rod. The rotating shaft is rotatably mounted on the support base. The swing block is connected to the rotating shaft and rotates synchronously with the rotating shaft. The cutter is fixedly mounted on the swing block and moves up and down through the swing block. The pressure rod is fixedly connected to the swing block.

3. The synchronous wheel aluminum edge cutting device for photovoltaic module conveying as described in claim 1, characterized in that: The cutter includes a blade head and a handle, wherein the blade head is disposed at the end of the handle, and the handle is fixedly connected to the swing block via a clamp.

4. The synchronous wheel aluminum edge cutting device for photovoltaic module conveying as described in claim 3, characterized in that: The end face of the cutter head facing the aluminum edge of the pulley has an inwardly recessed arc surface.

5. The synchronous wheel aluminum edge cutting device for photovoltaic module conveying as described in claim 1, characterized in that: It also includes a limiting component, which includes a base, a limiting rod, and a limiting block. The base is fixedly mounted on the support base, the bottom of the limiting rod is fixedly mounted on the base, the pressure rod has a strip hole, the limiting rod passes through the strip hole through the pressure rod, and the limiting block is located at the top of the limiting rod and is engaged above the pressure rod.