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Manual clamping and meshing tool for aluminum frames of solar battery assembly

A solar cell, aluminum frame technology, applied in electrical components, circuits, semiconductor devices, etc., can solve the cracks between short aluminum frames and long aluminum frames, short aluminum frames and long aluminum frames are prone to cracks, and the adhesive force of the sealant decreases. and other problems to achieve the effect of solving the crack problem

Inactive Publication Date: 2010-11-10
EGING PHOTOVOLTAIC TECHNOLOGY CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the existing packaging process, if the size of the corner code does not meet the predetermined requirements, it will easily loosen between the corner code and the long and short frames, resulting in cracks at the connection between the short aluminum frame and the long aluminum frame, especially for solar cell modules After long-term exposure under natural conditions, the adhesive force of the sealant will decrease, which will lead to a decrease in the bonding force between the frame and the battery laminate, and cracks are more likely to occur at the joint between the short aluminum frame and the long aluminum frame
After careful observation and analysis by the applicant, the main reason for the above-mentioned defects is that the connection between the corner bracket and the long aluminum frame is unreliable. The existing technology can only punch out tightening dimples on the inner surface of the short aluminum frame, but the long aluminum frame and the serrated pins of the corner codes cannot punch the tightening dimples. Therefore, the four connecting corners of the solar cell module are the The connection point is also a place where cracks are prone to occur, and the connection between the long aluminum frame and the corner bracket is the main cause of cracks

Method used

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  • Manual clamping and meshing tool for aluminum frames of solar battery assembly
  • Manual clamping and meshing tool for aluminum frames of solar battery assembly
  • Manual clamping and meshing tool for aluminum frames of solar battery assembly

Examples

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Embodiment Construction

[0016] The specific embodiment of the present invention is described in detail below in conjunction with accompanying drawing:

[0017] The aluminum frame of the solar cell module is manually clamped with a snapping tool, such as figure 2 , image 3 , Figure 4 As shown, it includes a base plate 1, an elastic moving rod 2, a stamping die head 3, a pressure bearing column 4 and a pressure lever 5, the elastic moving rod 2 is in the shape of "7", and the right end 21 of the long handle is fixedly connected with the right end 13 of the base plate In one piece, the short handle 22 is located at the left end of the elastic moving rod 2, and the stamping die head 3 is hingedly connected to the lower end of the short handle 22 through a pin shaft 32, and a bearing platform 11 is arranged on the left end 12 of the base plate, and the width of the bearing platform 11 is Equivalent to the width of the outer surface 72 of the aluminum frame 7, the lower end of the pressure bearing col...

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Abstract

The invention relates to a manual clamping and meshing tool for aluminum frames of a solar battery assembly, which comprises a base plate, an elastic moving rod, a stamping die head, a pressure bearing post and a pressure applying lever, wherein one end of the elastic moving rod is fixedly connected with the right end of the base plate, and the other end of the elastic moving rod is articulated with the stamping die head; the lower end of the pressure bearing post is fixed on a base; the elastic moving rod and the pressure applying lever are sleeved on the pressure bearing post; the pressure applying lever is arranged above the left end of the long handle of the elastic moving rod and is axially limited by an adjusting nut on the pressure bearing post; and a convex structure which enables the inner side surfaces of the aluminum frames to form tightened pits is arranged at the lower end of the stamping die head. When the connecting part of the aluminum frames on the solar battery assembly has a crack, a slot clamping tool is firstly used for restoring the crack, and then, the manual clamping and meshing tool of the invention is used for stamping the inner side surfaces of long aluminum frames to tighten the pits, so that the long aluminum frames and a bracket are more firmly meshed together. The invention can be used for solving the problem of cracking of the aluminum frames of the solar battery assembly.

Description

Technical field: [0001] The invention relates to a maintenance tool for a solar battery module, in particular to a manual repair tool for cracks in the aluminum frame of the solar battery module. Background technique: [0002] The solar panel is the core part of the solar power generation system, and it is also the most valuable part of the solar power generation system. Its function is to convert solar energy into electrical energy. The battery laminate must be packaged and protected with a frame during outdoor applications. If the battery laminate is not well sealed, encountering rain or working in a high-humidity environment for a long time, it will accelerate the damage of the battery laminate and cause solar energy The battery board cannot work properly, and the basic requirement of the package is to be sealed. [0003] The solar cell module is glued and packaged with an aluminum frame. The long aluminum frame and the short aluminum frame are connected by corners with ...

Claims

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Application Information

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IPC IPC(8): H01L31/18
CPCY02P70/50
Inventor 陈鑫
Owner EGING PHOTOVOLTAIC TECHNOLOGY CO LTD
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