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A kind of preparation method of high-strength concrete

A concrete and high-strength technology, applied in chemical instruments and methods, grain processing, solid separation, etc., can solve the problems of difficulty in processing high-quality concrete, affecting the firmness of buildings, and high equipment investment costs, achieving long service life and mixing The effect of high uniformity and reduced processing cost

Active Publication Date: 2019-12-10
JIDONG CEMENT CHONGQING JIANGJIN CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the existing crushing methods are difficult to achieve fine crushing of construction waste. Usually, multiple crushing processes are required to obtain small crushed stones, which takes a long time to process and low work efficiency; and requires the use of multiple different processing equipment. The cost of equipment investment is high and energy consumption is high; and the qualified rate of the final crushed stone is low, which is difficult to meet the needs of processing high-quality concrete; and the strength of concrete prepared by traditional methods is low, which affects the firmness of buildings

Method used

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  • A kind of preparation method of high-strength concrete
  • A kind of preparation method of high-strength concrete
  • A kind of preparation method of high-strength concrete

Examples

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Comparison scheme
Effect test

Embodiment 1

[0035] A method for preparing high-strength concrete includes the following steps: (1) Preparation of raw materials: take 500kg of cement, 1000kg of sand and gravel, 160kg of water, 6kg of water reducing agent, 8kg of phenolic fiber and 60kg of montmorillonite; wherein the sand is passed through a crushing device It is obtained by crushing construction waste, and the particle size of the sand is 8mm; the water reducing agent is composed of the following components by weight: 40 parts of polycarboxylic acid mother liquor, 6 parts of slump retention agent, 2.5 parts of borax, 4 parts of plastic preservative and 35 parts of water; the slump and plastic preservatives can be directly purchased on the market, so the materials are not specifically limited; (2) Dry mixing: mix cement, sand, water reducing agent, The phenolic fiber and montmorillonite are put into the mixer for dry premixing, and the mixture A is obtained after the mixing is uniform; the specific mixing step is to first ...

Embodiment 2

[0041] A method for preparing high-strength concrete includes the following steps: (1) Preparation of raw materials: take 500kg of cement, 1000kg of sand and gravel, 160kg of water, 6kg of water reducing agent, 8kg of phenolic fiber and 60kg of montmorillonite; wherein the sand is passed through a crushing device The construction waste is crushed, and the particle size of the sand is 10mm; the water reducing agent is composed of the following components by weight: 45 parts of polycarboxylic acid mother liquor, 10 parts of slump retention agent, 3.5 parts of borax, 6 parts of plastic preservative and 40 parts of water; the slump and plastic preservatives can be directly purchased on the market, so the materials are not specifically limited; (2) Dry mixing: mix cement, sand, water reducing agent, The phenolic fiber and montmorillonite are put into the mixer for dry premixing, and the mixture A is obtained after the mixing is uniform; the specific mixing step is to first mix cement...

Embodiment 3

[0044] A method for preparing high-strength concrete includes the following steps: (1) Preparation of raw materials: take 500kg of cement, 1000kg of sand and gravel, 160kg of water, 6kg of water reducing agent, 8kg of phenolic fiber and 60kg of montmorillonite; wherein the sand is passed through a crushing device It is obtained by crushing construction waste, and the particle size of the sand is 8mm; the water reducing agent is composed of the following components by weight: 45 parts of polycarboxylic acid mother liquor, 6 parts of slump retention agent, 2.5 parts of borax, 6 parts of plastic preservative and 40 parts of water; the slump and plastic preservatives can be directly purchased on the market, so the materials are not specifically limited; (2) Dry mixing: mix cement, sand, water reducing agent, The phenolic fiber and montmorillonite are put into the mixer for dry premixing, and the mixture A is obtained after the mixing is uniform; the specific mixing step is to first ...

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Abstract

The invention discloses a preparation method of high-strength concrete. The preparation method comprises the following steps: (1) preparing raw materials: taking cement, gravel, water, a water reducer, phenolic fiber and montmorillonite, wherein the gravel is obtained by crushing building wastes through a crushing device; (2) carrying out dry mixing: adding the cement, the gravel, the water reducer, the phenolic fiber and the montmorillonite into a mixer and carrying out dry material pre-mixing; after uniformly mixing, obtaining a mixture A; (3) carrying out wet mixing: putting the mixture A into a stirrer and adding the water and fine aggregate into the stirrer; then uniformly mixing to prepare slurry-shaped concrete. According to the preparation method disclosed by the invention, dry mixing operation is carried out before the wet mixing, so that dry powder type materials have higher mixing uniformity in a mixing process and various materials are mixed together.

Description

Technical field [0001] The invention belongs to the field of construction technology, and particularly relates to a method for preparing high-strength concrete. Background technique [0002] A large amount of sand and gravel are needed in the preparation process of concrete. Due to the shortage of sand and gravel resources, people have begun to use gravel obtained from crushing construction waste to replace sand and gravel to meet the demand for sand and gravel in construction projects. However, the existing crushing method is difficult to achieve fine crushing of construction waste. It usually requires multiple crushing processes to obtain smaller crushed stone, which takes a long time to process and low work efficiency; and requires the use of multiple different processing equipment. The equipment investment cost is high and the energy consumption is large; and the final pass rate of the crushed stone is low, which is difficult to meet the needs of processing high-quality concr...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B28/00C04B20/02C04B111/20
CPCB02C4/08B02C23/16B02C2023/165B07B1/28B07B1/42B07B1/46C04B20/026C04B28/00C04B40/0028C04B2111/00017C04B2111/20C04B20/02C04B14/06C04B18/16C04B2103/302C04B16/0675C04B14/104C04B14/02
Inventor 李永建
Owner JIDONG CEMENT CHONGQING JIANGJIN CO LTD
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