Effect of Molecular Structure on the Performance of Polyacrylic Acid Superplasticizer Effect of Molecular Structure on the Performance of Polyacrylic Acid Superplasticizer

Effect of Molecular Structure on the Performance of Polyacrylic Acid Superplasticizer

  • 期刊名字:武汉理工大学学报(材料科学版)(英文版)
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  • 论文作者:ZHANG Rongguo,GUO Huiling,LEI
  • 作者单位:Department of Applied Chemistry
  • 更新时间:2022-12-23
  • 下载次数:
论文简介

The effects of structure parameters, such as molecular structure, segment kinds, molecular weight, and organic functional groups, on the performance of polyacrylic acid superplasticizer were discussed. According to the differences of chain sections, functional groups, etc, polyacrylic acid superplasticizer could be divided into A, B, C three parts. Among them, A chain section included sulfonic acid groups, B chain section carboxyl groups, C chain section polyester. Polyacrylic acid superplasticizers with different matching of A, B, C chain sections, different length of C chain section and different molecular weights were synthesized by acrylic acid, polyethylene glycol, sodium methyl allylsulfonate; the relation between the molecular structure and performance was also studied. The expetimental results indicate that the water-reduction ratio increases obviously with the increment of the proportion of sodium methyl allylsulfonate chain section in the molecular; the slump retention increases greatly with the increment of the proportion of acrylic acid chain section; the dispersion of cement particles increases with the increment of the chain length of polyethylene glycol; when the molecular weight is in the range of 5000, the dispersion and slump retentibity increase with the increment of the average molecular weight of polymers.

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