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Preparation of Amphoteric Polycarboxylate Superplasticizers and Their Performances in Cementitious System

机译:两性聚羧酸系高效减水剂的制备及其在胶凝体系中的性能。

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A series of amphoteric polycarboxylate (PC) polymers were synthesized by radical copolymerization of acrylic acid (AA), [3-(methacryloylamino) propyl] trimethylammonium chloride (MAPTAC) and -methoxypolyoxyethylene methacrylate ester (MPEGMA). Cationic groups were introduced in to PC molecules with expectation of less retardation effect on cement hydration compared to the traditional anionic PC superplasticizers. The content of cationic groups in polymer was varied by changing the monomer ratio of MAPTAC to AA in the synthesis recipes. The structure of the synthesized amphoteric PCs was verified by gel permeation chromatography (GPC) and Fourier transform infrared spectroscopy (FTIR). The performances of the amphoteric PCs were evaluated by measurement of flowability and zeta-potential of cement pastes and adsorption amount of PC in cement pastes. Impacts of the PCs on cement hydration were studied by isothermal calorimetry. It is concluded that both anionic and cationic PC polymers can be effectively adsorbed onto the surface of cement particles and thus change the zeta potential of cement pastes. The adsorption amounts of the amphoteric PCs decrease with increasing content of cationic units. A proper incorporation of cationic units into PC polymers may lead to a higher fluidizing performance in fresh cement pastes. The amphoteric PC polymers with higher content of cationic units show less retardation effect on cement hydration and hence higher early strength of cementitious materials may be achieved by using amphoteric PCs with appropriated content of cationic units without losing their plasticizing efficiency. (c) 2014 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 41348.
机译:通过丙烯酸(AA),[3-(甲基丙烯酰氨基)丙基]三甲基氯化铵(MAPTAC)和-甲氧基聚氧乙烯甲基丙烯酸甲酯(MPEGMA)的自由基共聚反应,合成了一系列两性聚羧酸盐(PC)聚合物。阳离子基团被引入PC分子中,与传统的阴离子PC高效减水剂相比,预期对水泥水化的阻滞作用较小。通过改变合成配方中MAPTAC与AA的单体比例,可以改变聚合物中阳离子基团的含量。合成的两性PC的结构通过凝胶渗透色谱(GPC)和傅里叶变换红外光谱(FTIR)进行了验证。通过测量水泥浆的流动性和Zeta电位以及水泥在水泥浆中的吸附量来评估两性PC的性能。通过等温量热法研究了PC对水泥水化的影响。结论是,阴离子和阳离子PC聚合物都可以有效地吸附到水泥颗粒表面,从而改变水泥浆的zeta电位。两性PC的吸附量随阳离子单元含量的增加而降低。将阳离子单元适当掺入PC聚合物中可导致新鲜水泥浆中更高的流化性能。具有较高阳离子单元含量的两性PC聚合物对水泥水化的阻滞作用较小,因此,通过使用具有适当阳离子单元含量的两性PC可以在不损失其增塑效率的情况下获得较高的胶凝材料早期强度。 (c)2014 Wiley Periodicals,Inc. J. Appl。 Polym。科学2015,132,41348。

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