Thermal insulation regeneration high-performance decorative material

A decorative material, high-performance technology, applied in the direction of climate sustainability, chemical industry, sustainable manufacturing/processing, etc., can solve the problems of poor sound absorption, easy deformation, poor fire resistance, etc., to achieve good sound absorption, Good anti-aging effect

Inactive Publication Date: 2016-03-23
王威淞
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Most of the external wall insulation boards used in buildings are polystyrene styrene boards, which are easy to age and are not easy to degrade. The environmental pollution is very serious, easy to deform, easy to fall off, short life, and the fire resistance is not very good. The simulated shape based on perlite Stone product insulation materials have the advantages of fire prevention, anticorrosion and light weight and can be widely used in decorative materials
At present, most of the decorative materials in the prior art are made of soil or cement and other inorganic materials, which not only wastes a lot of land resources and destroys the ecological environment, but also has high production costs and low sound-absorbing effects. Inferior disadvantages, it is not suitable for use as building decoration materials, so the existing decoration materials are still not ideal when used

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0016] A high-performance decorative material for heat preservation and regeneration, characterized in that the components of the raw materials are composed as follows in parts by weight:

[0017] 30 parts of recycled polyvinyl chloride plastic, 15 parts of ironmaking blast furnace slag, 20 parts of crushed plants, 4 parts of mixture of nonadecane and gypsum powder with a mass ratio of 1:3, 4 parts of gypsum powder, 6 parts of bentonite, hot 4 parts of stabilizer, 5 parts of silica sand, 14 parts of aluminum plant waste residue, 2 parts of flux, and 2 parts of flame retardant.

[0018] The crushed plant is a mixture of dry grass, wheat straw and poplar leaves in a weight ratio of 2:1:3;

[0019] The flame retardant is a mixture of mineral fiber and perlite in a weight ratio of 3:5 containing 12-15% of antimony trioxide.

[0020] Further, the flux is a mixture of soda ash, sodium silicate and sodium fluorosilicate in a weight ratio of 3:2:2.

[0021] Further, the heat stabili...

Embodiment 2

[0023] A high-performance decorative material for heat preservation and regeneration, characterized in that the components of the raw materials are composed as follows in parts by weight:

[0024] 40 parts of recycled polyvinyl chloride plastic, 20 parts of ironmaking blast furnace slag, 25 parts of crushed plants, 6 parts of mixture of nonadecane and gypsum powder with a mass ratio of 1:3, 6 parts of gypsum powder, 8 parts of bentonite, hot 5 parts of stabilizer, 7 parts of silica sand, 16 parts of aluminum plant waste residue, 4 parts of flux, and 3 parts of flame retardant.

[0025] The crushed plant is a mixture of dry grass, wheat straw and poplar leaves in a weight ratio of 2:1:3;

[0026] The flame retardant is a mixture of mineral fiber and perlite in a weight ratio of 3:5 containing 12-15% of antimony trioxide.

[0027] Further, the flux is a mixture of soda ash, sodium silicate and sodium fluorosilicate in a weight ratio of 3:2:2.

[0028] Further, the heat stabili...

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PUM

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Abstract

The invention discloses a thermal insulation regeneration high-performance decorative material. The decorative material is composed of the following raw materials, by weight, 30-40 parts of reclaimed polyvinyl chloride plastic, 15-20 parts of iron-smelting blast furnace slag, 20-25 parts of crushed plant, 4-6 parts of a mixture of nonadecane and gypsum powder with a mass ratio of 1:3, 4-6 parts of gypsum powder, 6-8 parts of bentonite, 4-5 parts of heat stabilizer, 5-7 parts of silica sand, 14-16 parts of aluminium factory waste residues, 2-4 parts of fluxing agent and 2-3 parts of fire retardant. The decorative material is added with crushed plant, thus the obtained decorative material has a good sound absorbing effect, waste is changed into valuables, the decorative material has good ageing resistance and light degradation resistance, and the mechanical properties and the chemical performances of the decorative material are better than that of normal decorative materials. A proper amount of a flame resistant material is added, heat transmission in the heat storage and release processes is reinforced, AND thus the decorative material has a flame retardation function. The decorative material has ageing resistance through addition of waste plastic, and meets the energy saving and environmental protection requirements.

Description

technical field [0001] The invention belongs to the technical field of decorative material production, and in particular relates to a heat-retaining and regenerated high-performance decorative material. Background technique [0002] With the take-off of my country's national economy, people's material living standards are gradually improving, and the quality requirements for the living environment are also getting higher and higher. In recent years, the domestic home decoration market has continued to prosper, and people's requirements for home decoration are no longer at the level of aesthetics and elegance. Design sense, health, environmental protection, and high technical content have become consumers' new requirements for interior decoration. Under such requirements, new home improvement materials emerge in endlessly. Ceramic tiles and wooden floors are commonly used flooring materials. In recent years, the market for plastic flooring has flourished and has been welcome...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L27/06C08L97/02C08K13/04C08K7/04C08K5/098C08K3/30C08K3/34C08K3/22
CPCC08K2201/014C08L27/06C08L2201/02C08L2207/20C08L97/02C08K13/04C08K7/04C08K3/346C08K5/098C08K2003/3045C08K3/34C08K3/2279Y02P20/10
Inventor 王威淞
Owner 王威淞
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