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Coupled effect of time and temperature on variations of plastic viscosity of highly flowable mortar

机译:时间和温度的耦合效应对高流动性砂浆塑性粘度变化的影响

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摘要

Self-consolidating concrete (SCC) is being increasingly used as construction material for its workability. However, the rheological properties of such concrete, which is made with significant concentration of high-range water-reducing admixture (HRWRA), depend in most cases on the casting temperature of the material. The study presented herein aimed at evaluating the coupled influence of time and temperature on the variations of plastic viscosity (mu) of micro mortar made with polymelamine (PMS), polynaphtalene (PNS) and polycarboxylate (PCP) polymer. In total, seven micro mortar mixtures proportioned with various binder compositions and water-to-binder ratios of 0.42 and 0.53 were prepared at 10 to 33 deg C. Test results show that the plastic viscosity varies linearly with the coupled effect of time and temperature for mixtures made with PNS or PMS HRWRA. However, for mixtures made with PCP-HRWRA, both temperature and mixture proportioning have influence on the variation of viscosity with time.
机译:自固混凝土(SCC)由于其可加工性正越来越多地用作建筑材料。但是,这种混凝土的流变特性是由高浓度的减水剂(HRWRA)制成,在大多数情况下取决于材料的浇铸温度。本文提出的研究旨在评估时间和温度对由聚三聚氰胺(PMS),聚萘(PNS)和聚羧酸盐(PCP)聚合物制成的微型砂浆的塑性粘度(μ)变化的耦合影响。总共在10到33摄氏度下制备了7种与各种粘合剂组成成比例且水与粘合剂的比例为0.42和0.53的微细砂浆混合物。测试结果表明,塑料粘度随时间和温度的耦合效应线性变化。用PNS或PMS HRWRA制成的混合物。但是,对于用PCP-HRWRA制成的混合物,温度和混合物配比都会影响粘度随时间的变化。

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