Efficient energy-saving environment-friendly heat preservation material and preparing method thereof

A thermal insulation material, high-efficiency and energy-saving technology, applied in ceramic products, other household appliances, applications, etc., can solve the problems of large proportion of inorganic materials, large proportion of finished products, large thermal conductivity, etc., and achieve the effect of low price

Inactive Publication Date: 2016-06-22
张平
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The invention controls the amount of manganese dioxide catalyst to control the foaming process to ensure the strength of the inorganic foam thermal insulation material while reducing its thermal conductivity and enhancing the thermal insulation effect, and adds perlite as an anti-slump agent to reduce the reject rate, and at the same time adds triethanolamine Improve the performance of inorganic foam insulation materials and prepare new inorganic foam building insulation materials. The insulation materials produced by this invention have the characteristics of no heat energy, but the polypropylene fibers and triethanolamine used in the materials are still non-renewable organic materials. It is not a pure inorganic environmental protection material, and inorganic materials such as sulfoaluminum silicate cement and calcium stearate have a large proportion, so the finished product has the defects of large specificity and high thermal conductivity

Method used

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Embodiment Construction

[0023] A method for preparing a high-efficiency, energy-saving and environment-friendly thermal insulation material, comprising the following steps:

[0024] 1) Pulverize 50 tons of clay, 20 tons of volcanic cinder, 7 tons of fly ash, and 5 tons of quicklime, and pass through a 100-mesh sieve;

[0025] 2) Use a guillotine to cut 1 ton of wheat straw into wheat straw A with a length of 3mm-5mm, and mix it with 21 tons of binder B evenly:

[0026] 3) Add 16 tons of binder A to the materials of steps 1) and 2);

[0027] 4) Add 250 kg of softener to soften and thicken;

[0028] 5) Add 2.5 kg of catalyst (or not) and mix evenly to form a paste, then pour it into a mold for molding, catalyze fermentation for 20-24 hours, and then demould. Catalysts can improve high temperature performance.

[0029] During the use of the finished product in the furnace of the boiler and the wall of the steelmaking furnace, under high temperature conditions, the wheat straw of organic material is c...

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Abstract

The invention relates to an efficient energy-saving environment-friendly heat preservation material and a preparing method thereof. The material is prepared from wheat straw, clay, vesuvianite slag, coal ash, quick lime, binding agents, a softening agent and a catalyst. The binding agents comprise a binding agent A and a binding agent B. Water glass or cement or gypsum is adopted as the binding agent A. Corn starch paste or sticky rice paste or konjak powder paste with the solid content being 2% is adopted as the binding agent B. All the components are subjected to the steps of smashing, mixing, softening, thickening, catalytic fermenting, forming and the like according to a certain weight part. Compared with the prior art, the raw materials used in the method are environmentally friendly or reproducible, conform to the environmental protection idea, and are free of firing, light and low in price.

Description

technical field [0001] The invention relates to a preparation method of a thermal insulation material, in particular to a high-efficiency, energy-saving and environment-friendly thermal insulation material and a preparation method thereof. Background technique [0002] At present, the insulation materials commonly used at home and abroad are divided into two types: organic matter and inorganic matter. Organic building insulation materials include polystyrene foam (EPS, XPS), polyurethane rigid foam (PU), etc., which have the advantages of light weight, heat preservation, heat insulation, and waterproof. However, these organic foam materials are easy to age and cannot last the same life as the building. During the service life of the building, the insulation layer needs to be replaced many times. In addition, EPS, XPS, PU, ​​etc. are high-molecular organic materials, which are flammable and not resistant to high temperatures. , The burning speed is fast, and a large amount o...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B38/06C04B28/26C04B28/00C04B28/14
CPCC04B28/00C04B28/14C04B28/26C04B38/06C04B24/383C04B14/10C04B14/14C04B18/08C04B22/064C04B2103/0068C04B2103/10
Inventor 张平
Owner 张平
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