Concrete workability regulator and preparation method thereof

A technology of concrete and conditioner, applied in the field of concrete, can solve the problems of inconvenient construction, large mud content, excessive air content of concrete, etc., and achieve the effects of improving workability, moderate surface tension and poor cohesion.

Active Publication Date: 2019-06-14
CHINA TIESIJU CIVIL ENG GRP CO LTD +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, with the large-scale construction of concrete construction projects across the country, the demand for concrete has increased suddenly, and the environmental protection has increased in recent years. The particle gradation of sand is poor, there are many fine particles, and the mud content is large, and the cohesion of the mixed concrete is not good, loose and easy to segregate, which is not convenient for construction; on the other hand, with the promotion of energy conservation and environmental protection, minerals in cement There are more and more types of admixtures, and the adaptability of polycarboxylate superplasticizers to cement is also particularly prominent.
[0003] In response to the above problems, those skilled in the art are also constantly researching countermeasures, such as using thickeners, air-entraining agents, etc. to improve the workability of concrete, but the problem cannot be completely solved during use.
Because commonly used thickeners such as cellulose, wenlun gum, and rubber powder are not compatible with polycarboxylate water reducers due to their own solubility; and there are many types of air-entraining agents, and the dosage is small, and air bubbles will be introduced when used improperly. The size is not easy to control, and the air content of concrete exceeds the standard, etc.

Method used

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  • Concrete workability regulator and preparation method thereof
  • Concrete workability regulator and preparation method thereof
  • Concrete workability regulator and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0032] Under normal temperature (no external heating source) condition, in the four-neck flask of 2L, add the molecular weight of 600g after TPEG of 2000 and the tap water of 600g are stirred to dissolve, then add the thiourea dioxide of 1.02g, stir until the material in the flask dissolves; Simultaneously Add liquid A and liquid B that have been prepared dropwise, add liquid A dropwise for 2.5 hours, add liquid B dropwise for 3 hours, and the reaction will naturally heat up. After the temperature at the end of the dropwise addition is kept for 1 hour, add 40wt% sodium hydroxide to neutralize until the pH is 6-8, to obtain the concrete workability regulator.

[0033] Among them, liquid A is prepared by dissolving 32.4g of acrylic acid, 10.66g of acrylamide, and 3.1g of 2-acrylamide-2-methylpropanesulfonic acid in 120g of water, and liquid B is prepared by dissolving 1.5g of potassium dichromate in 100g of water. made.

Embodiment 2

[0035] At normal temperature (without external heating source), add 600g of TPEG with a molecular weight of 2400, 4.8g of vinyl acetate and 600g of tap water into a 2L four-necked flask and stir to dissolve, then add 4.02g of urea and stir into the flask Dissolve the material, add the prepared liquid A and liquid B dropwise into the kettle at the same time, add liquid A dropwise for 2.5 hours, add liquid B dropwise for 3 hours, the reaction will naturally heat up, and after the temperature at the end of the dropwise addition is kept for 1 hour, add 40wt% hydrogen Sodium oxide is neutralized to a pH of 6-8 to obtain the concrete workability regulator;

[0036] Liquid A is prepared by dissolving 55g of acrylic acid, 5.33g of acrylamide, and 20g of 2-acrylamide-2-methylpropanesulfonic acid in 120g of water, and liquid B is prepared by dissolving 3g of potassium permanganate in 100g of water.

Embodiment 3

[0038] Under normal temperature (no external heat source) condition, in the four-necked flask of 2L, add the TPEG that the molecular weight of 600g is 4000, the hydroxyethyl acrylate of 4.8g and the tap water of 600g stir and dissolve, add the thiourea of ​​2.5g, stir until The material in the flask is dissolved, and the prepared liquid A and liquid B are added dropwise to the kettle at the same time. The liquid A is added dropwise for 2.5 hours, and the liquid B is added dropwise for 3 hours. % sodium hydroxide is neutralized to pH 6-8 to obtain the concrete workability regulator;

[0039] Among them, liquid A is prepared by dissolving 37.9g ​​methacrylic acid, 28.62g itaconic acid, 7.5g N-methylolacrylamide, 1.6g sodium p-styrenesulfonate in 120g water, and liquid B is 3.7g permanganese It is prepared by dissolving potassium acid in 100g of water.

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Abstract

The invention discloses a concrete workability regulator and a preparation method thereof. The concrete workability regulator comprises the following components: an unsaturated polyether macromonomer,an unsaturated ester monomer, a chain transfer agent, a strong oxidant and a hydrophilic modifier, wherein the molar ratio of the unsaturated polyether macromonomer to the unsaturated ester monomer to the hydrophilic modifier is (0.5-1.5):(0-0.2):(1.65-5.3); the addition amounts of the chain transfer agent and the strong oxidant respectively account for 0.17-0.67% and 0.25-1% of the mass of the unsaturated polyether macromonomer; and the chain transfer agent is a chain transfer agent with reducibility, and the strong oxidant is at least one of potassium permanganate and potassium dichromate.The concrete workability regulator is prepared by polymerizing the chain transfer agent with weak reducibility and the strong oxidant under the condition of no external heat source, the molecular weight of the concrete workability regulator is larger, the concrete workability regulator has thickening and water retention effects, the workability of concrete is improved, and the gas content of the concrete cannot exceed the standard.

Description

technical field [0001] The invention belongs to the technical field of concrete, and in particular relates to a concrete workability regulator and a preparation method thereof. Background technique [0002] Polycarboxylate high-performance water reducer is widely used in various industries due to its advantages of low dosage, high water reducing rate, low slump loss, low shrinkage, no environmental pollution in the production process and designability of the product itself. It is also the most active high-performance superplasticizer researched at home and abroad in recent years. However, with the large-scale construction of concrete construction projects across the country, the demand for concrete has increased suddenly, and the environmental protection has increased in recent years. The particle gradation of sand is poor, there are many fine particles, and the mud content is large, and the cohesion of the mixed concrete is not good, loose and easy to segregate, which is n...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08F283/06C08F220/06C08F220/56C08F220/58C04B24/26
Inventor 汪志勇林春红陈娟黄海温建峰李双超汪春满訾贺李芳芳李双许立
Owner CHINA TIESIJU CIVIL ENG GRP CO LTD
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