High-strength anti-corrosion solar photovoltaic support

A solar photovoltaic, high-strength technology, applied in the support structure of photovoltaic modules, photovoltaic modules, photovoltaic power generation and other directions, can solve the problems affecting the quality and service life of the device, social resource loss, corrosion of aluminum profiles, etc., to avoid oxygen and moisture. Residual, lasting and effective protection, the effect of avoiding corrosion

A solar photovoltaic, high-strength technology, applied in the support structure of photovoltaic modules, photovoltaic modules, photovoltaic power generation and other directions, can solve the problems affecting the quality and service life of the device, social resource loss, corrosion of aluminum profiles, etc., to avoid oxygen and moisture. Residual, lasting and effective protection, the effect of avoiding corrosion

CN110735173AInactive Publication Date: 2020-01-31XIAMEN ANTAI NEW ENERGY TECH

Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0023] In order to further explain the technical solutions of the present invention, specific examples are given below to illustrate in detail.

[0024] A high-strength anti-corrosion solar photovoltaic support of the present invention comprises the following steps:

[0025] (1) Prepare the aluminum alloy solar photovoltaic bracket pipe fittings and weld them to form the aluminum alloy solar photovoltaic bracket. The welding form can avoid gaps and activities at the joints of the aluminum alloy solar photovoltaic bracket pipe fittings. The integrity is stronger, and the subsequent coating and other processes are avoided. , but also to avoid the residual oxygen and moisture, to avoid corrosion;

[0026] (2) Clean and dry the aluminum alloy solar photovoltaic bracket, and wash away stubborn impurities such as lipids on the aluminum alloy solar photovoltaic bracket and affecting subsequent processes;

[0027] (3) Grind the ceramics into ceramic powder, prepare the aluminum ion e...

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Abstract

The invention provides a high-strength anti-corrosion solar photovoltaic support. The process form of a traditional photovoltaic support is broken through, and an aluminum alloy solar photovoltaic support pipe fitting is prepared and welded to form the aluminum alloy solar photovoltaic support; the aluminum alloy solar photovoltaic support is cleaned and dried; ceramic is ground into ceramic powder, an aluminum ion electrolytic solution is prepared and contained in an electrolytic cell, and the ceramic powder is added into the aluminum ion electrolytic solution to be evenly stirred to preparea turbid solution; and the aluminum alloy solar photovoltaic support is placed in the turbid solution to serve as a cathode, current is added for plating, the aluminum alloy solar photovoltaic supportis placed in the electrolytic solution for anodic oxidation treatment, and an oxidation layer is generated on the surface of the aluminum alloy solar photovoltaic support. Compared with the prior art, according to the high-strength anti-corrosion solar photovoltaic support, the strength and the wear resistance of the solar photovoltaic support can be remarkably enhanced through the process, so that the corrosion resistance and other properties of the solar photovoltaic support are durable and stable.

Description

technical field [0001] The invention relates to the technical field of aluminum profiles, in particular to a high-strength anti-corrosion solar photovoltaic bracket. Background technique [0002] The structures of the brackets of solar cells or water heaters are known, and most of them are made of aluminum alloy, because aluminum alloy has excellent strength and strength-to-weight ratio. The processing method of the aluminum alloy bracket is also known. For example, the Chinese invention patent CN201210456297.3 discloses an aluminum alloy solar battery bracket, which includes a triangular frame. The triangular frame consists of a mounting frame, a low bracket formed on the mounting frame, a high The bracket is composed of a horizontal connecting plate connecting the low bracket and the high bracket; the installation frame is composed of the middle arm, the side arms separated by slots on both sides of the middle arm, and the middle arm is located at the vertical position of ...

Claims

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Application Information

Patent Timeline
31 Jan 2020
Publication
CN110735173A
IPC
C25D15/00; C25D3/44; C25D11/04; C25D7/00; H02S20/00
CPC
C25D3/44; C25D7/00; C25D11/04; C25D15/00; H02S20/00; Y02E10/50
Inventors
黄仕强; 田君福