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材料导报  2020, Vol. 34 Issue (Z1): 592-595    
  高分子与聚合物基复合材料 |
中和与否对聚羧酸减水剂性能的影响及机理分析
伍勇华, 祝婷, 党梓轩, 李莹, 李国新
西安建筑科技大学材料科学与工程学院,西安710055
Effect of Whether or Not to Adopt Neutralization on the Performance ofPolycarboxylate Superplasticizer and Mechanism Analysis
WU Yonghua, ZHU Ting, DANG Zixuan, LI Ying, LI Guoxin
College of Materials Science and Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China
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摘要 聚羧酸减水剂在合成过程中是否中和对产品性能的影响显著。采用净浆流动度、总有机碳分析仪、X射线光电子能谱、红外光谱、动态光散射和Zeta电位仪,研究了聚羧酸减水剂是否中和对其分散性、吸附量、吸附层厚度及初始构象和吸附构象的影响。结果表明,与已经中和的减水剂相比,掺加未中和的聚羧酸减水剂的水泥浆体初始流动度更大、流动度经时损失更小;相同掺量时,未中和聚羧酸减水剂吸附量较低但吸附层厚度更厚,这是由于未中和的聚羧酸减水剂分子在溶液中的初始构象侧链更为伸展,因此吸附后的吸附构象也占据更大的空间,使吸附层变厚,对水泥颗粒的分散性更好。
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伍勇华
祝婷
党梓轩
李莹
李国新
关键词:  聚羧酸减水剂  中和反应  初始构象  分散性能    
Abstract: The neutralization process of polycarboxylate superplasticizers in the synthesis process has a significant effect on the property of product. The effects of neutralization process on the dispersion, adsorption capacity, thickness of adsorption layer, initial conformation and adsorption conformation of polycarboxylate superplasticizer were studied by cement paste fluidity, total organic carbon analyzer, X-ray photoelectron spectroscopy, infrared spectroscopy, dynamic light scattering and Zeta potential. The results showed that compared with the neutralization process, when polycarboxylate superplasticizers produced by unneutralized process was mixed with cement, the initial fluidity of cement paste was higher, the loss of fluidity was smaller and the adaptability to cement was better. At the same dosage, the adsorption amount of unneutralized polycarboxylate superplasticizer is lower, but the thickness of the adsorption layer is thicker. Due to the fact that the initial conformation branched chain of the unneutralized polycarboxylate superplasticizer molecule in the solution is more extended, the adsorption conformation after adsorption also occupies a larger space, so that the adsorption layer is thicker, and the dispersibility of the cement particles is better.
Key words:  polycarboxylate superplasticizers    neutralization    initial conformation    dispersion property
                    发布日期:  2020-07-01
ZTFLH:  TU528.042  
基金资助: 陕西省社会发展科技攻关项目(2016SF-443)
作者简介:  伍勇华,工学博士,副教授,硕士研究生导师,主要从事混凝土减水剂作用机理与应用研究。
引用本文:    
伍勇华, 祝婷, 党梓轩, 李莹, 李国新. 中和与否对聚羧酸减水剂性能的影响及机理分析[J]. 材料导报, 2020, 34(Z1): 592-595.
WU Yonghua, ZHU Ting, DANG Zixuan, LI Ying, LI Guoxin. Effect of Whether or Not to Adopt Neutralization on the Performance ofPolycarboxylate Superplasticizer and Mechanism Analysis. Materials Reports, 2020, 34(Z1): 592-595.
链接本文:  
http://www.mater-rep.com/CN/  或          http://www.mater-rep.com/CN/Y2020/V34/IZ1/592
1 朱化雨,李因文,赵洪义.高分子通报,2010(5),19.
2 Hou S S, Konu X M, Cao E X, et al. Journal of the Chinese Ceramic Society,2010,38(9),1698.
3 Zhang Q, Ran Q P, Zhao H X, et al. Colloid and Polymer Science,2016,294(11),1705.
4 Lin X J, Liao B, Zhang J F, et al. Construction and Building Materials,2019,210,162.
5 任先艳,刘才林.西南科技大学学报,2008,23(4),14.
6 吴琼.低敏感性酯醚共聚聚羧酸减水剂的合成与性能研究.硕士学位论文,武汉科技大学,2018.
7 李英祥,陈周鹏,蔡文荣.商品混凝土,2016(2),30.
8 李海普,李星,张莎莎,等.化学通报,2011,74(5),417.
9 Álvarez-Torrellas S, Jose P, Gil-Álvarez V. Chemical Engineering Journal,2017,320,319.
10 TanH B, Zou F B, Ma B G. Construction and Building Materials,2016,126,617.
11 回瑞华,关崇新,侯冬岩.鞍山师范学院学报,2001(1),95.
12 段建平,吕生华,高瑞军,等.混凝土,2012(1),84.
13 吴刚.材料结构表征及应用,化学工业出版社,2002.
14 曹恩祥.聚羧酸减水剂对水泥净浆体系流变性能的作用机理研究.硕士学位论文,清华大学,2011.
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