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High-polymer biological composite coating material

A composite coating and polymer technology, applied in coatings, lignin coatings, etc., can solve problems such as increased production costs, short service life, and short validity period, and achieve cost savings, superior high temperature stability, and convenient construction.

Inactive Publication Date: 2014-09-17
QINGDAO GUOHANG XIANGYU TECH SERVICE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the traditional thermal insulation materials are mainly to reduce the thermal conductivity and conductivity coefficient. In order to give full play to the role of convective heat transfer and radiation heat transfer in the use environment, fiber-based thermal insulation materials must use thick cladding, while profile-based thermal insulation materials The assembly and construction of materials is cumbersome, many seams affect the appearance, and the service life is short
At present, the domestic thermal insulation coatings on the market have the problems of single function, limited effect and short validity period, which make it difficult to be widely used. Imported composite coating materials have good effect and wide application, but the price is relatively high, which increases the production cost

Method used

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Examples

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Effect test

Embodiment 1

[0008] A polymer biocomposite coating material, which is composed of the following ingredients in parts by weight: 50-60 parts of silicon acrylic emulsion, 15-20 parts of golden bud flower sawdust powder, 25-30 parts of rose sawdust powder, 15-30 parts of peanut straw powder 30 parts, urethane 11-19 parts, melamine resin 20-25 parts, ash calcium powder 11-16 parts, calcium carbonate 60-75 parts, silicate fiber cotton 6-9 parts, kaolin 15-20 parts, 10-15 parts of expanded perlite, 9-14 parts of magnesium hydroxide.

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PUM

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Abstract

The invention discloses a high-polymer biological composite coating material which is composed of the following components in parts by weight: 50-60 parts of silicone-acrylic emulsion, 15-20 parts of Pachystachys lutea cutting powder, 25-30 parts of rose cutting powder, 15-30 parts of peanut straw powder, 11-19 parts of carbamate, 20-25 parts of melamine resin, 11-16 parts of ash calcium powder, 60-75 parts of calcium carbonate, 6-9 parts of silicic acid cellucotton, 15-20 parts of kaolin, 10-15 parts of expanded perlite and 9-14 parts of magnesium hydroxide. The high-polymer biological composite coating material has the advantages of excellent high-temperature stability, high strength, wear resistance, high toughness, environment friendliness, flame retardancy, self-cleaning performance and thermal insulation, is convenient for construction and saves the cost.

Description

technical field [0001] The invention relates to a polymer coating material. Background technique [0002] The energy consumption in modern society is increasing day by day, consuming a lot of precious power resources and coal resources. As people gradually realize the finiteness of resources and the environmental crisis caused by energy consumption, energy conservation has become one of the important contents of environmental protection and resource conservation. Thermal insulation technology is widely used in various fields, such as various thermal insulation materials, reflective insulation thermal coating etc. However, the traditional thermal insulation materials are mainly to reduce the thermal conductivity and conductivity coefficient. In order to give full play to the role of convective heat transfer and radiation heat transfer in the use environment, fiber-based thermal insulation materials must use thick cladding, while profile-based thermal insulation materials Th...

Claims

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Application Information

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IPC IPC(8): C09D133/04C09D197/02C09D161/28C09D7/12
Inventor 王爱国
Owner QINGDAO GUOHANG XIANGYU TECH SERVICE
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