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Gap-filling adhesive-sealing structure of solar photovoltaic modules

A solar photovoltaic, bonding and sealing technology, applied in the field of solar energy, can solve problems such as unsuitable solar photovoltaic modules

Active Publication Date: 2017-06-20
广东大粤新能源科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] However, with the increasing use of solar energy in buildings, in order to reduce material and installation costs, people combine solar photovoltaic modules with building roofs to form solar photovoltaic building integration, that is, multiple solar photovoltaic modules are spliced ​​together. When solar energy is converted into electricity or other energy sources, it can also be used as a roof, which needs to consider the problem of waterproofing, so waterproof glue 60 should be used to fill the gaps between each solar photovoltaic module to cover all the solar panels. The solar photovoltaic modules are spliced ​​together. The current way to fill the gaps between adjacent solar photovoltaic modules with waterproof glue is to first stuff foam 70 into the lower gap between each solar photovoltaic module, and then fill the waterproof glue 60 in the In the gap above the foam, to complete all the splicing of solar photovoltaic modules; at the same time, in order to prevent rainwater from penetrating from the upper surface of the solar panel assembly 10 and the upper card platform 30, from between the vertical wall of the solar panel assembly 10 and the inner wall of the card slot If the space leaks into the house, the waterproof glue 60 will also be filled between the upper surface of the solar panel assembly 10 and the inner wall of the upper card platform 30, the vertical wall of the solar panel assembly 10 and the inner wall of the card slot; There is a slight gap at the connection 50 of the frame profile, and this gap cannot be filled with waterproof glue for waterproofing, so that rainwater will directly infiltrate into the house from the gap of the frame profile connection of each solar photovoltaic module. Solar photovoltaic modules are not suitable for use as roofs, so the applicant invented a bonding and sealing structure for solar photovoltaic modules that can be filled with waterproof glue at the joints of frame profiles for waterproofing

Method used

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  • Gap-filling adhesive-sealing structure of solar photovoltaic modules
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  • Gap-filling adhesive-sealing structure of solar photovoltaic modules

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Embodiment Construction

[0021] A solar photovoltaic module gap-filling adhesive sealing structure, such as Figures 3 to 7 As shown, it is spliced ​​by several pieces of solar photovoltaic modules 1, and each solar photovoltaic module 1 includes a square solar panel assembly 2 and four frame profiles 3 arranged on the four sides of the solar panel assembly 2. The upper end of the inner wall of the four frame profiles 3 is provided with a card slot 4 composed of an upper card platform 41 and a lower card platform 42. The solar panel assembly 2 is installed and fixed in the card slot 4. 4 Fill the interior with waterproof glue, then insert and install the solar panel assembly into the card slot, and finally clean up the waterproof glue extruded by the solar panel assembly; The vertical walls of 4 are respectively provided with notches 5 and 6 in the transverse direction; after the adjacent frame profiles are connected, the opening spaces 7 that can expose the corners of the solar panel assembly 2 are f...

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PUM

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Abstract

Provided is a solar photovoltaic assembly gap glue-filling-type bonding seal structure. The two ends of each frame profile of the solar photovoltaic assembly are provided with gaps along an upper clamp stand and a clamp groove vertical wall, such that when the adjacent frame profiles are connected, an opening space is formed in the connection place of the adjacent frame profiles; and after all the solar photovoltaic assemblies are assembled, when waterproof glue is filled in the gap between the adjacent solar photovoltaic assemblies, the waterproof glue is incidentally filled in the opening space, so that rain water cannot penetrate into the room from the connection place of the adjacent frame profiles and the gap between the adjacent solar photovoltaic assemblies, that is, water leakage phenomenon does not occur. After all solar photovoltaic assemblies are installed, the seal structure can convert the solar energy into electric energy, and meanwhile, can serve as a roof, so that the solar photovoltaic assemblies are allowed to be constructed into a solar photovoltaic building integrated roof, and the effects of power generating, water proofing, dust proofing, energy saving and environment protecting are achieved.

Description

technical field [0001] The invention relates to solar energy, and in particular refers to a structure capable of sealing effect after being filled with waterproof glue at joints of frame profiles. Background technique [0002] With the continuous exploitation and consumption of non-renewable energy sources such as oil and coal, the application of solar energy, a renewable energy source, has become more popular in various places. Such as figure 1 , 2 As shown, the solar photovoltaic module at the present stage includes a solar panel assembly 10 and four frame profiles 20 for fixing and installing the solar panel assembly 10. On the upper end of the inner wall of the four frame type 20, there are upper and lower clamping platforms 30, 40 The card slot that is formed and can be inserted into the solar panel assembly has a 45-degree slope at both ends of each frame profile, and they are connected by inserting corner codes into their respective corner code slots at both ends ,...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02S30/10H02S20/23
CPCY02B10/10Y02E10/50
Inventor 杨海映徐晖刘汉林曹宏州徐张弛郑珊珊黎志萍
Owner 广东大粤新能源科技股份有限公司
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