Concrete for buildings

A technology for concrete and construction, applied in the field of concrete for construction, can solve the problems of poor corrosion resistance and low concrete strength, and achieve the effect of improving corrosion resistance and improving thermal insulation effect.

Inactive Publication Date: 2018-09-04
CHENGDU RONGDE CONSTR LABOR
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The purpose of the present invention is to provide concrete for construction to solve the problems of low concrete strength and poor corrosion resistance

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0014] A kind of concrete for construction, the raw material of this concrete comprises the following components and the ratio of each component by weight is: Portland cement 80 parts, sulphoaluminate cement 60 parts, phosphate cement 50 parts, crushed stone 40 parts , 50 parts of river sand, 5 parts of rubber powder, 4 parts of gypsum, 3 parts of plant fiber, 13 parts of polyvinyl carbazole, 1 part of cubic boron nitride particles, 2 parts of polyvinyl ether, 3 parts of alkenyl succinic acid 5 parts, 5 parts of petroleum sulfonate, 7 parts of antirust oil, 500 parts of water.

[0015] Adding the raw materials of the above components to prepare concrete, adding alkenyl succinic acid, petroleum sulfonate and antirust oil can improve the corrosion resistance of concrete, adding plant fibers to improve the tensile strength of concrete after molding, adding cubic nitriding Boron improves the hardness of concrete after molding, and polyvinyl carbazole is added to improve the therma...

Embodiment 2

[0018] A kind of concrete for building, the raw material of this concrete comprises the following components and the ratio of each component by weight is: 100 parts of portland cement, 80 parts of sulphoaluminate cement, 70 parts of phosphate cement, 60 parts of crushed stone , 80 parts of river sand, 15 parts of rubber powder, 15 parts of gypsum, 12 parts of plant fiber, 28 parts of polyvinyl carbazole, 6 parts of cubic boron nitride particles, 25 parts of polyvinyl ether, 18 parts of alkenyl succinic acid parts, 23 parts of petroleum sulfonate, 17 parts of antirust oil, and 1000 parts of water.

[0019] Adding the raw materials of the above components to prepare concrete, adding alkenyl succinic acid, petroleum sulfonate and antirust oil can improve the corrosion resistance of concrete, adding plant fibers to improve the tensile strength of concrete after molding, adding cubic nitriding Boron improves the hardness of concrete after molding, and polyvinyl carbazole is added t...

Embodiment 3

[0022] The raw materials of the concrete include the following components and the ratio of each component by weight is: 88 parts of Portland cement, 65 parts of sulphoaluminate cement, 54 parts of phosphate cement, 48 parts of gravel, and 52 parts of river sand , 8 parts of rubber powder, 6 parts of gypsum, 4 parts of plant fiber, 16 parts of polyvinyl carbazole, 1 part of cubic boron nitride particles, 5 parts of polyvinyl ether, 6 parts of alkenyl succinic acid, petroleum sulfonic acid 8 parts of salt, 10 parts of anti-rust oil, 600 parts of water.

[0023] Adding the raw materials of the above components to prepare concrete, adding alkenyl succinic acid, petroleum sulfonate and antirust oil can improve the corrosion resistance of concrete, adding plant fibers to improve the tensile strength of concrete after molding, adding cubic nitriding Boron improves the hardness of concrete after molding, and polyvinyl carbazole is added to improve the thermal insulation effect of conc...

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Abstract

The invention relates to the field of buildings, in particular to concrete for the buildings. The concrete comprises the following components as raw materials in parts by weight: 80-100 parts of silicate cement, 60-80 parts of sulphoaluminate cement, 50-70 parts of phosphate cement, 40-60 parts of gravel, 50-80 parts of river sand, 5-15 parts of rubber powder, 4-15 parts of gypsum, 3-12 parts of plant fiber, 13-28 parts of polyvinylcarbazole, 1-6 parts of cubic boron nitride particles, 2-25 parts of polyvinyl ether, 3-18 parts of alkenyl succinic acid, 5-23 parts of petroleum sulfonate, 7-17 parts of anti-rust oil and 500-1000 parts of water. Through addition of the alkenyl succinic acid, the petroleum sulfonate and the anti-rust oil, the corrosion resistance of the concrete can be improved; through addition of the plant fiber, the tensile strength of the moulded concrete is improved; through addition of the cubic boron nitride, the hardness of the moulded concrete is improved; throughaddition of the polyvinylcarbazole, the heat preservation effect of the concrete is improved.

Description

technical field [0001] The invention relates to the construction field, in particular to concrete for construction. Background technique [0002] Concrete is one of the most important contemporary civil engineering materials. It is prepared in a certain proportion by cementitious materials, granular aggregates, water, and admixtures and admixtures added when necessary. After uniform mixing, dense molding, curing and hardening Concrete is a kind of artificial stone material that is formed. Concrete has the characteristics of rich raw materials, low price and simple production process, so its consumption is increasing. However, the current concrete still has the problems of low strength and poor corrosion resistance. Contents of the invention [0003] The object of the present invention is to provide concrete for construction, to solve the problems of low concrete strength and poor corrosion resistance. [0004] In order to solve the above-mentioned technical problems, the ...

Claims

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Application Information

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IPC IPC(8): C04B28/34
CPCC04B28/34C04B2201/50C04B7/02C04B7/32C04B18/12C04B14/068C04B24/2611C04B22/143C04B18/248C04B24/2652C04B14/327C04B24/26C04B24/04C04B24/16C04B2103/61
Inventor 曾晓予
Owner CHENGDU RONGDE CONSTR LABOR
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