Novel energy-saving environment-friendly building material and manufacturing method

An energy-saving, environmentally friendly, and building material technology, applied in the field of building materials, can solve the problems of non-wear resistance, complicated production process, and no waste utilization, and achieve the effects of reducing production costs, strength, wear resistance, and good utilization

Inactive Publication Date: 2020-02-28
河南晖睿智能科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Aiming at the deficiencies of the prior art, the present invention provides a new type of energy-saving and environment-friendly building material and its manufacturing method, which solves the problem that the existing building materials do not use construction waste as raw materials, do not utilize waste, and the strength of building materials is not high and is not wear-resistant. , The refractory effect is not good, the heat preservation effect is not good, and the production process is complicated.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] S1. Choose 30 parts of construction waste, 10 parts of perlite particles, 12 parts of coal ash, 15 parts of kaolin, 10 parts of quartz sand, 10 parts of ceramic fiber, 18 parts of magnesium oxide, 30 parts of purified water, 6 parts of flame retardant, 6 parts of water-based adhesive and 3 parts of compatibilizer, the raw materials are weighed respectively according to their weight ratio;

[0028] S2. Put 30 parts of construction waste and 12 parts of coal ash weighed in S1 into a crusher for crushing to obtain crushed objects, which are introduced into a ball mill and ball-milled to below 400 mesh sieves to obtain crushed particles. 10 parts of perlite granules, 15 parts of kaolin, 10 parts of quartz sand, 18 parts of magnesia and crushed granules are put into a mixing mixer at a stirring rate of 60 r / min, and the mixture of granules is obtained after being completely mixed;

[0029] S3. Mix the particles in S2 and add them to the mixing mixer, and add 10 parts of cera...

Embodiment 2

[0032] S1. Choose 40 parts of construction waste, 12 parts of perlite particles, 20 parts of coal ash, 11 parts of kaolin, 8 parts of quartz sand, 7 parts of ceramic fiber, 17 parts of magnesium oxide, 25 parts of purified water, 4 parts of flame retardant, 4 parts of water-based adhesive and 2 parts of compatibilizer, the raw materials are weighed respectively according to their weight ratio;

[0033] S2. Put 40 parts of construction waste and 20 parts of coal ash weighed in S1 into a crusher for crushing to obtain crushed objects, which are introduced into a ball mill and ball-milled to below 400 mesh sieves to obtain crushed particles. 12 parts of perlite particles, 11 parts of kaolin, 8 parts of quartz sand, 17 parts of magnesia and crushed particles were put into a mixing mixer, and the stirring speed was 80 r / min, and the particle mixture was obtained after it was completely mixed;

[0034] S3. Mix the particles in S2 into the mixing mixer, and add 7 parts of ceramic fib...

Embodiment 3

[0037] S1. Choose 50 parts of construction waste, 15 parts of perlite particles, 25 parts of coal ash, 8 parts of kaolin, 6 parts of quartz sand, 5 parts of ceramic fiber, 15 parts of magnesium oxide, 20 parts of purified water, 2 parts of flame retardant, 3 parts of water-based adhesive and 1 part of compatibilizer, the raw materials are weighed respectively according to their weight ratio;

[0038] S2. Put 50 parts of construction waste and 25 parts of coal ash weighed in S1 into a crusher for crushing to obtain crushed objects, which are introduced into a ball mill and ball-milled to below 400 mesh sieves to obtain crushed particles. 15 parts of perlite granules, 8 parts of kaolin, 6 parts of quartz sand, 15 parts of magnesia and crushed granules are put into a mixing mixer, and the stirring rate is 100r / min, and the granule mixture is obtained after it is completely mixed;

[0039] S3. Mix the particles in S2 and add them to the mixing mixer, and add 5 parts of ceramic fib...

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PUM

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Abstract

The invention discloses a novel energy-saving environment-friendly building material. The building material comprises the following raw materials in parts by weight: 30-50 parts of building waste, 10-15 parts of perlite particles, 12-25 parts of coal ash, 8-15 parts of kaolin, 6-10 parts of quartz sand, 5-10 parts of ceramic fibers, 15-18 parts of magnesium oxide, 20-30 parts of purified water, 2-6 parts of a flame retardant, 3-6 parts of a water-based adhesive and 1-3 parts of a compatilizer. The invention relates to the technical field of building materials. According to the novel energy-saving environment-friendly building material and a manufacturing method thereof, the building waste can be used as a main body material, so waste materials are well utilized, production cost reduction,and energy-saving and environment-friendly effects are obtained; by adding perlite and quartz sand, the building material is high in strength and resistant to wear; by adding the ceramic fibers and the flame retardant, the building material has a good fire-resistant effect and a good heat preservation effect and is improved in comprehensive performance; and the building material is easy to manufacture and short in consumed time, so manufacturing cost is reduced to a great extent, and the labor intensity of workers is reduced.

Description

technical field [0001] The invention relates to the technical field of building materials, in particular to a novel energy-saving and environment-friendly building material and a manufacturing method. Background technique [0002] Building materials are various materials used in construction engineering. There are many kinds of building materials, roughly divided into inorganic materials, which include metallic materials and non-metallic materials, organic materials, which include plant materials, synthetic polymer materials, composite materials, which include asphalt concrete, polymer concrete, etc., generally composed of inorganic Non-metallic materials and organic materials are composited. Building materials can be divided into structural materials, decorative materials and some special materials. Structural materials include wood, bamboo, stone, cement, concrete, metal, bricks, ceramics, glass, engineering plastics , composite materials, etc. Decorative materials includ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B26/00C04B111/28C04B111/20
CPCC04B26/00C04B2111/2038C04B2111/28C04B18/16C04B14/18C04B18/08C04B14/106C04B14/06C04B14/46C04B14/304C04B22/16C04B2103/0068
Inventor 李霞刘志杰陈平绪周光灿梁丰春马丽
Owner 河南晖睿智能科技有限公司
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