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Building concrete

A technology for concrete and construction, applied in the field of preparation of concrete for construction, can solve the problems of poor corrosion resistance and low concrete strength, and achieve the effects of improving strength and wear resistance, large load, and increasing compactness

Inactive Publication Date: 2019-11-22
安徽虹达道路桥梁工程有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The purpose of the present invention is to solve the defects of low concrete strength and poor corrosion resistance in the prior art, and provide a kind of concrete for construction to solve the above problems

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] A kind of concrete for construction, which is composed of the following raw materials in parts by weight: 80 parts of cement, 30 parts of river sand, 30 parts of gravel, 20 parts of fly ash, 6 parts of silicon oxide, 20 parts of steel fiber, and 10 parts of surface enhancer 8 parts, 8 parts of calcium lignosulfonate powder, 8 parts of epoxy resin, 6 parts of acrylic emulsion, 4 parts of rubber powder, 1 part of rust inhibitor, 3 parts of additives and 60 parts of water.

[0019] Among them, the cement is made of Portland cement and sulphoaluminate cement, and the weight ratio of Portland cement to sulphoaluminate cement is 2:1;

[0020] Wherein, what rust inhibitor adopts is triethanolamine;

[0021] Wherein, the auxiliary agent is formed by compounding polyacrylic acid and carboxymethyl cellulose, and the mixing ratio of polyacrylic acid and carboxymethyl cellulose is 1:1 in parts by weight;

[0022] Among them, the particle size of crushed stone is less than 15 stone...

Embodiment 2

[0025] A kind of concrete for construction, which is composed of the following raw materials according to parts by weight: 85 parts of cement, 35 parts of river sand, 35 parts of gravel, 23 parts of fly ash, 7 parts of silicon oxide, 22 parts of steel fiber, and 12 parts of surface enhancer 9 parts, 9 parts of calcium lignosulfonate powder, 9 parts of epoxy resin, 7 parts of acrylic emulsion, 5 parts of rubber powder, 1.5 parts of rust inhibitor, 3 parts of additives and 65 parts of water.

[0026] Among them, the cement is made of Portland cement and sulphoaluminate cement, and the weight ratio of Portland cement to sulphoaluminate cement is 2:1;

[0027] Wherein, what rust inhibitor adopts is triethanolamine;

[0028] Wherein, the auxiliary agent is formed by compounding polyacrylic acid and carboxymethyl cellulose, and the mixing ratio of polyacrylic acid and carboxymethyl cellulose is 1:1 in parts by weight;

[0029] Among them, the particle size of crushed stone is less ...

Embodiment 3

[0032] A concrete for construction, which is composed of the following raw materials in parts by weight: 90 parts of cement, 40 parts of river sand, 40 parts of gravel, 25 parts of fly ash, 8 parts of silicon oxide, 25 parts of steel fiber, and 13 parts of surface enhancer 10 parts of calcium lignosulfonate powder, 10 parts of epoxy resin, 7 parts of acrylic emulsion, 5 parts of rubber powder, 1.5 parts of rust inhibitor, 4 parts of additives and 70 parts of water.

[0033] Among them, the cement is made of Portland cement and sulphoaluminate cement, and the weight ratio of Portland cement to sulphoaluminate cement is 2:1;

[0034] Wherein, what rust inhibitor adopts is triethanolamine;

[0035] Wherein, the auxiliary agent is formed by compounding polyacrylic acid and carboxymethyl cellulose, and the mixing ratio of polyacrylic acid and carboxymethyl cellulose is 1:1 in parts by weight;

[0036] Among them, the particle size of crushed stone is less than 15 stone;

[0037] ...

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PUM

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Abstract

The invention discloses concrete for a building. The feed additive is prepared from the following raw materials in parts by weight: 80-100 parts of cement, 30-50 parts of river sand, 30-50 parts of gravels, 20-30 parts of fly ash, 5-10 parts of silicon oxide, 20-30 parts of steel fibers, 10-15 parts of a surface enhancer, 8-12 parts of calcium lignosulphonate powder, 8-12 parts of epoxy resin, 6-8parts of acrylic emulsion, 4-6 parts of rubber powder, 1-2 parts of an anti-rust agent, 3-5 parts of auxiliaries and 60-80 parts of water. Compared with the prior art, a certain amount of steel fibers are doped into the concrete, so that the tensile strength, bending resistance, cracking resistance, wear resistance, impact resistance, fatigue resistance, toughness and the like of the concrete canbe improved; the surface reinforcing agent is fully permeated; effective components of the water reducing agent can be quickly subjected to chemical reaction with free calcium in concrete, so that the compactness of the structure is improved, a firm solid like massive rock is formed on the surface layer of the concrete, the strength and the wear resistance of the surface layer of the concrete structure are greatly improved, and the concrete structure is permanently closed, firm, wear-resistant, free of dusting and capable of bearing larger loads.

Description

technical field [0001] The invention relates to the technical field of preparation of concrete for construction, in particular to concrete for construction. Background technique [0002] Concrete for construction is a general term for engineering composite materials in which aggregates are cemented into a whole by cementitious materials. Generally speaking, the term construction concrete refers to the cement concrete obtained by mixing cement with cement as cementing material, gravel and fine sand as aggregate, mixed with water in a certain proportion, and admixtures and admixtures can also be added. , also known as ordinary building concrete, is widely used in civil engineering. [0003] Most of the existing building concrete is made of simple cement, gravel, and fine sand mixed with water. The surface of the building concrete produced in this way is prone to cracks, low tensile strength, poor corrosion resistance, and poor toughness. For example, the Chinese patent appli...

Claims

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Application Information

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IPC IPC(8): C04B28/06C04B111/20
CPCC04B28/06C04B2111/20C04B7/02C04B14/068C04B14/02C04B18/08C04B14/06C04B14/48C04B24/18C04B24/281C04B24/26C04B18/22C04B24/122C04B24/383
Inventor 王军席绪荣章铭童玉贵周平静
Owner 安徽虹达道路桥梁工程有限公司
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