A kind of exterior wall flexible photovoltaic decoration wall material and preparation method thereof
A photovoltaic and flexible technology, applied in the field of flexible photovoltaic decorative wall materials for external walls and their preparation, can solve the problems of complicated and cumbersome processes, expensive curtain wall keels, etc., and achieve the effect of reducing construction costs and shortening construction periods.
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0035] Such as figure 1 As shown, a flexible photovoltaic decorative wall material for exterior walls is composed of a flexible substrate 1 and a photovoltaic decorative layer 6. The flexible substrate 1 is a layered structure, which includes from bottom to top: an isolation layer 7, a back glue Layer 8, the lower flame-retardant polymer cement mortar layer 9, the high-tough glass fiber reinforced flame-retardant non-woven fabric base 10 and the upper flame-retardant polymer cement mortar layer 11, the five-layer structure is consolidated into one. The photovoltaic decoration layer 6 includes a flexible thin film battery assembly 3, a film layer 4 and a coating layer 5 from the inside to the outside; the thickness of the upper flame-retardant polymer cement mortar layer 11 and the lower flame-retardant polymer cement mortar layer 9 is 1.5 mm, and are composed of the following raw materials in parts by weight: 12 parts of ordinary silicon 42.5 cement, 40 parts of quartz sand, 1...
Embodiment 2
[0040] The upper flame-retardant polymer cement mortar layer 11 and the lower flame-retardant polymer cement mortar layer 9 have a thickness of 4mm, and are composed of the following raw materials in parts by weight: 17 parts of ordinary silicon 42.5 cement, 45 parts of quartz sand, glass transition temperature At least 23 parts of silicone acrylic emulsion below -5°C, 25 parts of water, and 8 parts of composite flame retardant. The composite flame retardant is formed by mixing aluminum hydroxide, magnesium hydroxide, decabromodiphenylethane and antimony trioxide, and the mass ratio is aluminum hydroxide: magnesium hydroxide: decabromodiphenylethane: trioxide Antimony = 4:2:3:3. The isolation film 7 in the flexible substrate is a PP isolation film with a thickness of 0.5 mm; the adhesive layer 8 is composed of colloidal calcium silicate creep self-adhesive, and the thickness of the adhesive layer 8 is 3 mm; The high-tough glass fiber reinforced flame-retardant non-woven fabri...
Embodiment 3
[0043] The upper flame-retardant polymer cement mortar layer 11 and the lower flame-retardant polymer cement mortar layer 9 have a thickness of 2 mm, and are composed of the following raw materials in parts by weight: 15 parts of ordinary silicon 42.5 cement, 42 parts of quartz sand, glass transition temperature At least 20 parts of silicone acrylic emulsion below -5°C, 20 parts of water, and 6 parts of composite flame retardant. The composite flame retardant is composed of raw materials with a mass ratio of magnesium hydroxide: aluminum hydroxide: 52# chlorinated paraffin: antimony trioxide = 2:4:2:3.
[0044] The isolation film 7 in the flexible substrate is a PA isolation film; the thickness of the isolation film 7 is 0.3mm; the adhesive layer 8 is made of polyacrylate self-adhesive, and the thickness of the adhesive layer 8 is 2mm ; The high-tough glass fiber reinforced flame-retardant non-woven fabric tire base 10 adopts the dowel reinforced non-woven fabric reinforced by...
PUM
| Property | Measurement | Unit |
|---|---|---|
| thickness | aaaaa | aaaaa |
| glass transition temperature | aaaaa | aaaaa |
| thickness | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
Login to View More 