Bare concrete and preparation method thereof

A technology of fair-faced concrete and kaolin, which is applied in the field of building materials, can solve problems such as cracking of dry powder mortar, consumption of river sand resources, and easy cracking, and achieves safe and environmentally friendly production and use, simple and easy preparation process, impermeability and crack resistance sex effect

Active Publication Date: 2019-08-09
佛山市政通混凝土有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The existing fair-faced concrete mix ratio design is carried out with the ordinary concrete mix ratio design method, and the mixing amount of various ingredients is adjusted as appropriate, resulting in rough and uneven surfaces of the poured clear-water concrete, large color differences, and large pores and gaps. Large and unevenly distributed, or while obtaining the surface quality, the strength of the concrete cannot be guaranteed. The fair-faced concrete designed by this design method has more or less cement-based efflorescence, color changes of cast-in-place concrete, and existing Pouring fair-water concrete is rigid, easy to crack, and imitation fair-water concrete dry powder mortar cracking technical problems
[0004] In the prior art, domestic production of clear-water concrete usually uses natural river sand and pebbles as coarse and fine aggregates, and after mixing with cement, mineral admixtures, water-reducing agents, water, etc., a certain amount of defoamer is added to produce clear-water concrete. This method consumes a large amount of river sand resources and seriously damages the environment, and the addition of defoaming agent still cannot eliminate the air bubbles on the surface of fair-faced concrete. After the concrete components are demolished, the surface finish cannot meet the requirements, which makes many projects generate repeated decoration engineering costs.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] A clear-water concrete, made of the following raw materials in parts by weight: 5 parts of surface-modified nano-boron fibers, 5 parts of kaolin, 10 parts of illite powder, 20 parts of gravel, 5 parts of vermiculite sand, 20 parts of fine sand, silicon 40 parts of salt cement, 1 part of composite additive, and 20 parts of water.

[0029] The preparation method of the surface-modified nano-boron fiber comprises the following steps: dispersing 3 kg of nano-boron fiber in 10 kg of ethanol, and then adding N-[β-(N,N-diacetoxy) aminoethyl]- γ-(N-Acetoxy)aminopropyltrimethoxysilane 1kg, stirred and reacted at 60°C for 3 hours, then centrifuged and washed 3 times with isopropanol, then dried in a vacuum oven at 80°C to constant weight .

[0030] The composite additive includes the following components by weight: 20 parts of phosphate-based boric acid-based copolymer, 2 parts of zinc citrate, 1 part of pyrophyllite powder, 1 part of wollastonite powder, 2 parts of porous magne...

Embodiment 2

[0036] A clear-water concrete, made from the following raw materials in parts by weight: 6.5 parts of surface-modified nano-boron fibers, 7 parts of kaolin, 11 parts of illite powder, 23 parts of gravel, 6.5 parts of vermiculite sand, 23 parts of fine sand, silicon 42 parts of salt cement, 2.5 parts of composite additives, and 23 parts of water.

[0037] The preparation method of the surface-modified nano-boron fiber comprises the following steps: dispersing 3.5 kg of nano-boron fiber in 11 kg of ethanol, and then adding N-[β-(N,N-diacetoxy) aminoethyl] -1 kg of γ-(N-acetoxy)aminopropyltrimethoxysilane, stirred and reacted at 65°C for 3.5 hours, then centrifuged and washed 4 times with isopropanol, and then dried in a vacuum oven at 83°C until constant Heavy.

[0038] The composite additive includes the following components by weight: 22 parts of phosphate-based boric acid-based copolymer, 3 parts of zinc citrate, 2 parts of pyrophyllite powder, 2 parts of wollastonite powder...

Embodiment 3

[0044] A clear-water concrete, made of the following raw materials in parts by weight: 8 parts of surface-modified nano-boron fibers, 7 parts of kaolin, 13 parts of illite powder, 25 parts of gravel, 7.5 parts of vermiculite sand, 25 parts of fine sand, silicon Salt cement 45 parts, compound additive 3.5 parts, water 25 parts.

[0045] The preparation method of the surface-modified nano-boron fiber comprises the following steps: dispersing 4 kg of nano-boron fiber in 13 kg of ethanol, and then adding N-[β-(N,N-diacetoxy) aminoethyl]- γ-(N-Acetoxy)aminopropyltrimethoxysilane 1kg, stirred and reacted at 70°C for 4 hours, then centrifuged and washed 4 times with isopropanol, and then dried to constant weight at 85°C in a vacuum drying oven .

[0046] The composite additive includes the following components by weight: 23 parts of phosphate-based boric acid-based copolymer, 3.5 parts of zinc citrate, 2 parts of pyrophyllite powder, 2 parts of wollastonite powder, 3 parts of porous...

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PUM

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Abstract

The invention discloses bare concrete. The bare concrete is characterized by being prepared from, by weight, 5-10 parts of surface modified nano-boron fiber, 5-10 parts of kaolin, 10-15 parts of illite powder, 20-30 parts of gravel, 5-10 parts of vermiculite sand, 20-30 parts of silver sand, 40-50 parts of Portland cement, 1-5 parts of a compound additive and 20-30 parts of water. The compound additive comprises, by weight, 20-25 parts of a phosphate borate copolymer, 2-5 parts of zinc citrate, 1-3 parts of pyrophyllite powder, 1-3 parts of wollastonite powder, 2-4 parts of porous magnesium silicate, 0.5-1 part of a defoaming agent, 0.8-1.5 parts of polyaminopropyl biguanide, 0.5-2 parts of hydroxypropyl cyclodextrin, 1-3 parts of an activator and 80-100 parts of water. The invention further discloses a preparation method of the bare concrete. The bare concrete is high in compressive strength, good in corrosion resistance, impermeability and crack resistance and excellent in comprehensive performance, and production and application are safe and environmentally friendly.

Description

technical field [0001] The invention relates to the technical field of building materials, in particular to a fair-faced concrete and a preparation method thereof. Background technique [0002] With the development of my country's construction industry technology level, the rise of green buildings, low-carbon buildings, ecological buildings, etc., fair-faced concrete has attracted widespread attention for its natural texture and no need for decoration and decoration, and has gradually been used in subways and high-speed railways. , highways, bridges and culverts, high-rise buildings, and water conservancy dams. Compared with ordinary concrete, fair-faced concrete belongs to one-time pouring molding concrete, without any external decoration, and directly adopts the natural surface effect of cast-in-place concrete as the finish, with uniform color, smooth surface, no honeycomb pitting, sharp edges and corners, and no bumps. In addition, since the fair-faced concrete structure ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B28/04C04B20/02C08F283/06C08F230/06C08F230/02C04B111/34C04B111/27
CPCC04B20/023C04B28/04C04B2111/27C04B2111/343C04B2201/50C08F283/065C04B14/38C04B14/106C04B14/02C04B14/202C04B14/06C04B14/10C04B24/161C04B24/06C04B24/2652C04B24/38C04B22/08C04B22/00C08F230/06C08F230/02
Inventor 梁剑
Owner 佛山市政通混凝土有限公司
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