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Highly reflective hydrophilic glazed glass process for double-glazed module

A technology of double-glass components and glass technology, which is applied in the field of deep processing of photovoltaic coated tempered glass, can solve the problems of being unable to be swollen or dissolved by water, and the hydrophilic resin is not necessarily fixed, so as to ensure hydrophilicity, high power generation efficiency, and firmness Effect

Inactive Publication Date: 2019-03-19
CHANGZHOU HUAMEI PHOTOVOLTAIC MATERIALS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The water-absorbing resin must be a hydrophilic resin, but the hydrophilic resin does not necessarily absorb water. It can absorb water because water has the ability to dissolve or swell the resin. At present, many resins have been modified by hydrophilicity. After modification, these resins have hydrophilic properties. Water-based, but cannot be swelled or dissolved by water, so we must pay attention to resins that are hydrophilic but not water-absorbent for use in high-reflection inks

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0019] The highly reflective hydrophilic glazed glass of the double glass module is made of the following materials in parts by weight: 40 parts of titanium dioxide, 25 parts of glass powder, and 29 parts of resin powder.

[0020] Titanium dioxide is a rutile-shaped titanium dioxide; the resin powder is made of polyvinyl chloride resin; the glass powder is an inorganic cubic hard ultrafine particle powder of Anmi Micronano, and the raw materials used in production are PbO, SiO2, After mixing TiO2 and other electronic-grade raw materials, a solid-state reaction is carried out at high temperature to form a glass homogeneous body with a disordered structure.

Embodiment 2

[0022] The highly reflective hydrophilic glazed glass of the double glass component is made of the following materials in parts by weight: 55 parts of titanium dioxide, 38 parts of glass powder, and 45 parts of resin powder.

[0023] Titanium dioxide is a rutile-shaped titanium dioxide; the resin powder is made of polyvinyl chloride resin; the glass powder is an inorganic cubic hard ultrafine particle powder of Anmi Micronano, and the raw materials used in production are PbO, SiO2, After mixing TiO2 and other electronic-grade raw materials, a solid-state reaction is carried out at high temperature to form a glass homogeneous body with a disordered structure.

Embodiment 3

[0025] The preparation process of highly reflective hydrophilic glazed glass for double glass components is suitable for the high reflective hydrophilic glazed glass of double glass components. The process of high reflective hydrophilic glazed glass for double glass components includes the following steps:

[0026] Step 1. Pour 40 parts of titanium dioxide, 25 parts of glass powder, and 29 parts of resin powder into the stirring reactor. The stirring time needs to be controlled at more than 30 minutes, and stand for 2 hours to obtain the ink;

[0027] Step 2. The ink in step 1 is coated on the surface of the glass sheet, and then the coated ink glass sheet is placed in a sintering furnace for baking. The ink starts to melt at 550 degrees Celsius, and there is a gap between the coated ink glass sheet and the ink. The mutual attachment, the time control is completed within 5 seconds;

[0028] Step 3. Let the ink glass sheet coated in step 2 stand at a temperature above 90 degree...

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PUM

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Abstract

The invention relates to the technical field of glass preparation and discloses a highly reflective hydrophilic glazed glass process for a double-glazed module. The preparation process is suitable forthe highly reflective hydrophilic glazed glass process for the double-glazed module. The highly reflective hydrophilic glazed glass process for the double-glazed module comprises the following steps:pouring titanium dioxide, glass flour and powder of resin into a stirring reaction kettle to obtain printing ink; then putting a coated ink glass sheet in a sintering furnace to be roasted; leaving the coated ink glass sheet to stand to over 90 DEG C; quickly cold-drying the glass sheet to volatilize volatile matters in the ink quickly and retaining a solidified material; and finally prepare thehighly reflective hydrophilic glazed glass for the double-glazed module. According to the highly reflective hydrophilic glazed glass process for the double-glazed module, the sintering immobility of ink and glass is ensured, the hydrophilicity of the surface of the ink layer can be ensured, selection of a formula of ink and resin is controlled and the production process links are controlled, and the hydrophilicity of the surface of the ink layer is ensured.

Description

technical field [0001] The invention relates to the field of deep processing of photovoltaic coated tempered glass, in particular to a high-reflection hydrophilic glazed glass process for double-glass components. Background technique [0002] The water-absorbing resin must be a hydrophilic resin, but the hydrophilic resin does not necessarily absorb water. It can absorb water because water has the ability to dissolve or swell the resin. At present, many resins have been modified by hydrophilicity. After modification, these resins have hydrophilic properties. Water-based, but cannot be swelled or dissolved by water, so we must pay attention to resins that are hydrophilic but not water-absorbent for use in high-reflection inks. [0003] As a user, how to control the glaze layer to be hydrophilic? It is generally known that the principle of hydrophobicity is that there is a smooth and delicate protective layer similar to an oil film on the surface, so that water droplets gather...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C03C17/00
CPCC03C17/009
Inventor 王志坚王涛刘爽
Owner CHANGZHOU HUAMEI PHOTOVOLTAIC MATERIALS
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