Ester polycarboxylate superplasticizer with rust inhibition function and preparation method thereof

A technology of ester polycarboxylic acid and water reducing agent, which is applied in the field of concrete admixtures, can solve the problem of steel bars being easily corroded, achieve the best slump retention and workability, maintain slump, and enhance corrosion inhibition effect. Effect

Active Publication Date: 2021-04-27
KZJ NEW MATERIALS GROUP CO LTD +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] In order to solve the problem that the steel bars of marine engineering and saline-alkali construction mentioned in the background technology are easily corroded, the present invention provides a kind of ester polycarboxylate water reducer with anti-corrosion function, wherein, esterified products, esters Macromonomer, acrylic acid, unsaturated polyhydroxy monomer and anti-corrosion functional monomer B with double bond, amino group and sulfur bond are prepared by copolymerization;

Method used

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  • Ester polycarboxylate superplasticizer with rust inhibition function and preparation method thereof
  • Ester polycarboxylate superplasticizer with rust inhibition function and preparation method thereof
  • Ester polycarboxylate superplasticizer with rust inhibition function and preparation method thereof

Examples

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Embodiment 1

[0040] (1) Preparation of esterification product: by weight, 37.18 parts of acrylic acid and 50 parts of N-[2-(2-hydroxyethoxy)-4-nitrophenyl]ethanolamine are added to the first reaction vessel and mixed, Under vacuum conditions, add 1.74 parts of supported solid acid catalyst SO 4 2- / SiO 2 -TiO 2 , 0.44 parts of methyl hydroquinone, and adjust the reaction temperature to 110°C, and react for 4 hours to obtain the esterified product;

[0041](2) Copolymerization reaction: in parts by weight, first with 2 parts of esterification products obtained in step (1), 100 parts of monomethoxy ether monomethacrylate polyethylene glycol ester of molecular weight 2000 and 114 parts of water, Add to the second reaction vessel and stir evenly, mix 3 parts of potassium persulfate and 20 parts of water evenly in the first dropping device; 1 part of 2-hydroxy-2-sulfonic acid disodium salt, 2.5 parts of mercaptoethanol and 20 Mix parts of water evenly in the second dropping device; mix 7 pa...

Embodiment 2

[0044] (1) Preparation of esterification product: by weight, 14.87 parts of acrylic acid and 50 parts of N-[2-(2-hydroxyethoxy)-4-nitrophenyl]ethanolamine are added to the first reaction vessel and mixed, Under vacuum conditions, add 0.65 parts of supported solid acid catalyst SO 4 2- / SiO 2 -TiO 2 , 0.65 parts of 4-hydroxypiperidinol oxygen free radicals, and adjust the reaction temperature to 130°C, and react for 3 hours to obtain the esterified product;

[0045] (2) Copolymerization reaction: by weight, first 3 parts of the esterification product obtained in step (1), 100 parts of polyethylene glycol monomethacrylate with a molecular weight of 3000 and 109 parts of water are added to the second reaction vessel Stir evenly in the medium, mix 2 parts of hydrogen peroxide and 20 parts of water evenly in the first dropping device; In the second dropping device; 5 parts of acrylic acid, 1.5 parts of allylthiourea, 4 parts of 3-(2,3,4-trihydroxyphenyl)-2-acrylic acid and 20 p...

Embodiment 3

[0048] (1) Preparation of esterification product: by weight, 71.13 parts of methacrylic acid and 50 parts of N-[2-(2-hydroxyethoxy)-4-nitrophenyl]ethanolamine are added to the first reaction vessel Mixing, under vacuum condition, add 0.61 parts of supported solid acid catalyst SO 4 2- / SiO 2 -TiO 2 , 2.42 parts of 4-hydroxypiperidinol oxygen free radicals, and adjust the reaction temperature to 70°C, and react for 5 hours to obtain the esterification product;

[0049] (2) Copolymerization reaction: in parts by weight, first 5 parts of the esterification product obtained in step (1), 100 parts of polyethylene glycol monoacrylate with a molecular weight of 1200 and 114 parts of water are added to the second reaction vessel and stirred Uniformly, 1 part of ammonium persulfate and 20 parts of water are mixed uniformly in the first dropping device; 2 parts of 2-hydroxy-2-sulfoacetic acid, 0.5 parts of thioglycolic acid and 20 parts of water are evenly mixed in the second droppin...

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Abstract

The invention relates to the technical field of concrete admixtures, in particular to an ester polycarboxylate superplasticizer with a rust inhibition function and a preparation method thereof. The ester polycarboxylate superplasticizer is prepared from an esterification product, an ester macromonomer, acrylic acid, an unsaturated polyhydroxy monomer and a rust inhibition functional monomer B with double bonds, amino groups and sulfur bonds through copolymerization. The esterification product is prepared from a rust inhibition functional monomer A with benzene rings and hydroxyl groups and unsaturated acid through esterification reaction. According to the ester polycarboxylate superplasticizer with a rust inhibition function, provided by the invention, the rust inhibition functional monomer A containing benzene rings and hydroxyl groups and the unsaturated acid are esterified to prepare an esterification product which participates in a next-step copolymerization reaction, so that the molecules of the polycarboxylate superplasticizer have groups such as the benzene rings, the amino groups and the hydroxyl groups, nitrogen atoms in the amino groups and the hydroxyl groups can improve the adsorption capacity with the surface of a steel bar and inhibit the electrochemical reaction process of the surface of the steel bar, meanwhile, the amino groups can be combined with H<+> on the cathode surface, the cathode reaction rate is reduced, and the corrosion inhibition effect of the steel bar is enhanced.

Description

technical field [0001] The invention relates to the technical field of concrete admixtures, in particular to an ester polycarboxylate water reducer with antirust function and a preparation method thereof. Background technique [0002] In recent years, with the continuous and rapid development of my country's economy, the intensity and scale of my country's infrastructure construction have also continued to increase, and the application of concrete components has also increased. Prestressed high-strength concrete pipe piles have the advantages of short construction period, excellent mechanical properties, high cost performance, and less construction conditions, and solve the problem of traditional piles such as driven prefabricated solid piles, bored piles, and vibrating sinking pipe piles. The disadvantages of the foundation are widely used in engineering foundations such as bridges, ports, and docks. [0003] For offshore buildings and buildings in saline-alkali areas, the...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08F283/06C08F220/06C08F220/04C08F222/22C08F226/02C04B24/26C04B103/30
CPCC08F283/065C04B24/2694C04B2103/302C08F220/06C08F220/04C08F222/102C08F226/02
Inventor 张小芳柯余良郭元强李格丽林志君方云辉
Owner KZJ NEW MATERIALS GROUP CO LTD
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