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

机译:聚(羧酸酯醚)基高效减水剂可保持铝酸钙水泥的可加工性

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摘要

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:第一次接触水后不到一小时(约15分钟),铝酸钙水泥(CAC)的工作性能就会下降。当前用于改变水泥外加剂粘度的高效减水剂的设计目标是普通波特兰水泥(OPC)。发现这些减水剂与水泥颗粒之间的高亲和力在CAC系统中是有害的。相反,利用促进超塑化剂的逐步吸附的单体提供了可加工性的保持。在文献中,我们首次报道了一种能适应CAC特性的高效减水剂,例如高表面显影速率和表面电荷。尽管纯净的CAC在1小时后几乎不起作用,但仅添加0.4%的优化高效减水剂,却可以保持90%的流动性。

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