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Novel anti-corrosion polycarboxylate superplasticizer and preparation method thereof

A technology of anti-corrosion type polycarboxylic acid and water reducing agent, applied in the field of building materials, can solve the problems of high cost, complex synthesis process, complicated preparation process, etc., and achieve the effects of excellent high-temperature anti-corrosion performance, simple preparation process and wide source.

Active Publication Date: 2021-04-27
KZJ NEW MATERIALS GROUP CO LTD +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] CN110015857A, published on July 16, 2019, discloses a preparation method and application of a straw-starch-based mixed polycarboxylate water reducer, using dimethyl fumarate as a preservative directly It is compounded into patented products, but the water solubility of dimethyl fumarate is not very good. In the actual use of polycarboxylate superplasticizers, it is generally necessary to compound and add a large amount of water, and the water content often exceeds 90%. , so the effect of directly compounding and adding dimethyl fumarate is not ideal
[0009] CN109796561A, published on May 24, 2019, discloses a mother liquid of aromatic ring polycarboxylic acid water reducer and its preparation method and application, using aryl conjugated unsaturated carboxylic acid as anti-corrosion monomer to prepare Polycarboxylate superplasticizer with anti-corrosion effect, but there are problems of large steric hindrance and unsatisfactory polymerization effect when aryl conjugated unsaturated carboxylic acid is polymerized, which will eventually affect the performance of the product
[0010] CN109400819A, published on March 1, 2019, discloses a viscosity-reducing and antibacterial amphoteric polycarboxylate superplasticizer and its preparation method, using guanidine hydrochloride and alkyl compounds with amino groups at both ends to prepare antibacterial Monomer, and then used in the synthesis of polycarboxylate superplasticizer, the synthesis process is complicated and the energy consumption is high
[0011] CN108373526A, published on August 7, 2018, discloses an antifouling and antibacterial polycarboxylate water reducer and its preparation method, by adding (meth)acrylic acid sulfobetaine and methacrylic acid during polymerization Acyloxyethyltrimethylammonium chloride, to achieve antibacterial effect, but the cost of these two monomers is relatively high
[0012] CN107698721A, published on February 16, 2018, discloses a branched antibacterial polycarboxylate water reducer, its preparation method and application, but the preparation process is too complicated and the production efficiency is low
[0013] CN107265907A, published on October 20, 2017, discloses an amphoteric antibacterial polycarboxylate high-efficiency water reducer and its preparation method, through first copolymerization and then with unsaturated polyester macromonomer, halogen-terminated polyether Sequential reaction, the process is more complicated, and because of the reaction between large molecular weight and macromolecules, the product conversion rate will be limited, affecting product performance
However, the product of this patent only has anti-corrosion effect, and does not have the effect of reducing water, and the direct polymerization of dimethyl fumarate monomer and unsaturated monomer system has poor water solubility and phase separation during the polymerization process The problem that makes the aggregation efficiency low

Method used

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  • Novel anti-corrosion polycarboxylate superplasticizer and preparation method thereof
  • Novel anti-corrosion polycarboxylate superplasticizer and preparation method thereof
  • Novel anti-corrosion polycarboxylate superplasticizer and preparation method thereof

Examples

Experimental program
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Effect test

Embodiment 1

[0036] (1) 180.00g molecular weight is 3500 ethylene glycol monovinyl polyethylene glycol ether, 3.00g monomethyl fumarate, 0.006g ferrous sulfate and 145.00g water join in the reactor, open agitator and Temperature control device, after the materials are mixed evenly, start to drop acrylic acid aqueous solution (among them, acrylic acid 15.00g, water 20.00g), hydrogen peroxide aqueous solution (among them, hydrogen peroxide 1.50g, water 20.00g), mercaptopropionic acid aqueous solution (among them, mercaptopropionic acid 0.80g, water 20.00g), ascorbic acid aqueous solution (among them, ascorbic acid 0.40, water 20.00g), the initial reaction temperature is 15°C, the dropping time is 0.5h, the dropping process controls the material temperature ≤ 30°C, after the dropping Insulated for 1h to obtain the copolymerized product;

[0037] (2) Add 7g of 32% aqueous sodium hydroxide solution to the copolymerized product obtained in step (1), to obtain the novel anti-corrosion polycarboxy...

Embodiment 2

[0039] (1) 180.00g of 4-hydroxybutyl vinyl polyoxyethylene ether with a molecular weight of 3000, 4.00g of diethyl maleate, 0.005g of ferrous sulfate and 145.00g of water are added to the reactor, and the stirrer is turned on And temperature control device, until the materials are mixed evenly, start to drop acrylic acid aqueous solution (wherein, acrylic acid 18.00g, water 20.00g), hydrogen peroxide aqueous solution (wherein, hydrogen peroxide 1.80g, water 20.00g), thioglycolic acid aqueous solution (wherein, thioglycolic acid 0.90g g, 20.00g of water), aqueous solution of diaobaikuai (among them, 0.30 g of diaobaikuai, 20.00g of water), the initial reaction temperature is 10°C, and the dropping time is 0.75h. After the addition, keep warm for 1 hour to obtain the copolymerized product;

[0040] (2) Add 9g of 32% aqueous sodium hydroxide solution to the copolymerized product obtained in step (1), to obtain the novel anti-corrosion polycarboxylate water reducer KZJ-2.

Embodiment 3

[0042] (1) 180.00g molecular weight is ethylene glycol monovinyl polyethylene glycol ether of 4000, 0.50g monomethyl fumarate, 1.50g diethyl maleate, 2.50g sodium hypophosphite, 0.005g sulfurous acid Add iron and 150.00g water into the reactor, turn on the stirrer and the temperature control device, wait for the materials to mix evenly, start to drop the mixed aqueous solution of acrylic acid and maleic anhydride (wherein, 12.00g of acrylic acid, 2.00g of maleic anhydride, 20.00g of water ), hydrogen peroxide aqueous solution (among them, hydrogen peroxide 1.50g, water 20.00g), ascorbic acid aqueous solution (among them, ascorbic acid 0.40, water 20.00g), the initial reaction temperature is 10 ℃, the dropping time is 1h, and the dropping process controls the temperature of the material ≤ 30°C, keep warm for 1 hour after the dropwise addition to obtain the copolymerized product;

[0043] (2) Add 6g of 32% aqueous sodium hydroxide solution to the copolymerized product obtained i...

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Abstract

The invention relates to the technical field of building materials, in particular to a novel anti-corrosion polycarboxylate superplasticizer and a preparation method thereof. The novel anti-corrosion polycarboxylate superplasticizer is prepared by carrying out polymerization reaction on an anti-corrosion functional small monomer, an unsaturated macromonomer, unsaturated carboxylic acid and / or unsaturated carboxylic acid anhydride under the action of an initiator and a molecular weight regulator. The generated novel anti-corrosion polycarboxylate superplasticizer has a molecular main chain linked with an anti-corrosion functional small monomer. The unsaturated macromonomer is at least one of ethylene glycol monovinyl polyethylene glycol ether and 4-hydroxybutyl vinyl polyoxyethylene ether. The novel anti-corrosion polycarboxylate superplasticizer provided by the invention is an ether superplasticizer with an anti-corrosion effect, the anti-corrosion and water-reducing effects are excellent, the finally obtained novel anti-corrosion polycarboxylate superplasticizer product is of a stable macromolecular structure and can tolerate high temperature of 50 DEG C or more, the high-temperature anti-corrosion performance is more excellent, the preparation process is simple, and the cost is low. Important practical application values are realized.

Description

technical field [0001] The invention relates to the technical field of building materials, in particular to a novel anti-corrosion polycarboxylate water reducer and a preparation method thereof. Background technique [0002] With the development and progress of modern science and technology, the scale of basic engineering construction is expanding day by day, and modern construction projects are developing towards high-rise, super high-rise, and long-span frame projects. The demand for concrete is increasing, and the pumping of concrete, anti-segregation, etc. Performance requirements are getting higher and higher. [0003] In concrete materials, admixtures, such as water reducers, are often used. At present, polycarboxylate superplasticizers often have mildew and odor problems during the application process. Although they have little effect on the application performance of concrete, they have brought inconvenience to the application unit. At present, the conventional solu...

Claims

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Application Information

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IPC IPC(8): C08F283/06C08F222/16C08F220/06C08F222/14C08F222/06C04B24/26C04B103/30
CPCC08F283/065C04B24/2694C04B2103/302C08F222/16C08F220/06C08F222/14C08F222/06
Inventor 蒋卓君林添兴朱巧勇姚晓阳罗小峰邓磊
Owner KZJ NEW MATERIALS GROUP CO LTD
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