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Poly(carboxylate ether)-based superplasticizer achieves workability retention in calcium aluminate cement

机译:基于聚(羧酸醚)的超级塑化剂在铝酸钙水泥中达到了可行的保留

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Calcium aluminate cement (CAC) suffers from loss of workability in less than an hour (~15?minutes) after first touch of water. Current superplasticizers that are utilized to modify the viscosity of cement admixtures are designed to target ordinary Portland cement (OPC). The high affinity between these superplasticizers and cement particles were found to be detrimental in CAC systems. Utilization of a monomer that, instead, facilitates gradual adsorption of a superplasticizer provides workability retention. For the first time in literature, we report a superplasticizer that caters to the properties of CAC such as high rate of surface development and surface charge. While neat CAC was almost unworkable after 1?hour, with the addition of only 0.4% of the optimized superplasticizer, 90% fluidity retention was achieved.
机译:铝酸钙水泥(CAC)在第一点水后不到一个小时(〜15?分钟)在不到一个小时(〜15?分钟)的损失。用于改变水泥混合物粘度的电流超塑性剂设计用于瞄准普通波特兰水泥(OPC)。发现这些超塑性剂和水泥颗粒之间的高亲和力在CAC系统中是有害的。使用单体的利用促进过度塑化酸塑化剂的逐渐吸附,可提供可加工性保留。在文献中首次,我们报告了一个超级塑化剂,其迎合CAC的性质,如高表面发育和表面电荷。虽然整洁CAC几乎是不可行的1?小时,但添加只有0.4%的优化超增生剂,达到90%的流动性潴留。

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