Building integrated photovoltaic solar module of hollow type and manufacturing method thereof

A technology of solar cells and components, applied in photovoltaic power generation, photovoltaic modules, electrical components, etc., can solve problems such as poor impact resistance, low tensile strength, frequent changes and calibrations of fixtures, etc., to improve temperature insulation and increase The effect of barrier shielding and reducing the degree of strong light aging

Active Publication Date: 2013-05-08
JIANGSU XIUQIANG GLASSWORK CO LTD
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0002] When crystalline silicon and amorphous silicon solar cell components are applied to building curtain walls, doors, windows, and ceilings, there are still some problems that affect the practical development of the industry
One is that the effective battery power generation area and the daylighting area will change the spacing of silicon wafers due to different needs of users. This change will result in frequent changes and calibrations of fixtures and fixtures during mass production and high manufacturing costs; the other is that the battery components can reach outdoor sunlight Surface power generation function, partial indoor light transmission function, but the monotonous color and style of the back of the crystalline silicon cell and the amorphous silicon cell cannot create a visual aesthetic feeling for the indoor environment, and affect the comprehensive performance of the indoor environment; the third is that architectural photovoltaic glass is used for The temperature insulation, heat insulation, sound insulation, light filtering, safety and impact resistance of curtain walls, doors and windows and ceilings are poor, and the tensile strength is low, which needs to be further improved

Method used

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  • Building integrated photovoltaic solar module of hollow type and manufacturing method thereof

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Embodiment Construction

[0034] The building-photovoltaic-integrated hollow solar cell assembly of the present invention is a laminated structure, including front encapsulation glass 1, first adhesive film bonding layer 2, crystal silicon wafer 3, second adhesive film connecting layer 4, and substrate glass arranged in sequence. 6. Glass glue 8, color crystal glass mosaic plate 9, tempered glass 10; crystal silicon chip 3 is embedded in the second adhesive film connecting layer 4 and fixed on the surface of the first adhesive film bonding layer 2 by the second adhesive film connecting layer 4; The color crystal glass mosaic plate 9 is fixed on the surface of the substrate glass 6 by glass glue 8; the tempered glass 10 and the substrate glass 6 are fixed by setting hollow aluminum strips 11 around them, and coating polysulfide glue 12 on the edge of the hollow aluminum strips. seal.

[0035] The first adhesive film adhesive layer 2 and the second adhesive film connecting layer 4 are polyethylene-vinyl ...

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Abstract

The invention provides a building photovoltaic integrated hollow solar cell assembly and a manufacturing method thereof. The solar cell assembly is a stacked structure, including a front encapsulation glass (1), a first adhesive film adhesive layer (2), a crystal Silicon wafer (3), second adhesive film connection layer (4), substrate glass (6), glass glue (8), color crystal glass mosaic plate (9), tempered glass (10); crystal silicon wafer (3) embedded The second adhesive film connecting layer (4) is fixed on the surface of the first adhesive film bonding layer (2) by the second adhesive film connecting layer (4); the color crystal glass mosaic plate (9) is fixed on the surface by glass glue (8) The surface of the substrate glass (6); the tempered glass (10) and the substrate glass (6) are fixed by setting hollow aluminum strips (11) around them, and coating polysulfide glue (12) on the edges of the hollow aluminum strips for sealing. The product of the present invention respectively covers the back area of ​​the crystalline silicon wafer and the amorphous silicon cell and displays the product decorated with color crystal pattern, so as to achieve better effects of shielding sunlight, heat insulation and light filtering.

Description

technical field [0001] The invention relates to a structure and a manufacturing method of a novel crystalline silicon and amorphous silicon solar battery module, and belongs to the field of glass deep processing and building photovoltaic integration. Background technique [0002] When crystalline silicon and amorphous silicon solar cell modules are extended to be used in building curtain walls, doors, windows, and ceilings, there are still some problems that affect the practical development of the industry. One is that the effective battery power generation area and the daylighting area will change the spacing of silicon wafers due to different needs of users. This change will result in frequent changes and calibrations of fixtures and fixtures during mass production and high manufacturing costs; the other is that the battery components can reach outdoor sunlight Surface power generation function, partial indoor light transmission function, but the monotonous color and style...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01L31/048H01L31/18E04D13/18C03C17/00H02S20/26
CPCY02B10/10Y02B10/20Y02E10/50Y02P70/50
Inventor 余宗保李峰董玉红卢秀强
Owner JIANGSU XIUQIANG GLASSWORK CO LTD
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