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Rheological behavior of calcium sulfoaluminate cement paste with supplementary cementitious materials

机译:富含水泥材料钙磺酸钙水泥浆料的流变行为

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Calcium sulfoaluminate (CSA) cement has the potential to become the 'future cement' given its excellent characteristics, such as low carbon, energy saving, and low shrinkage. However, compared with ordinary Portland cement (OPC) paste, with the same water-to-cement (w/c) ratio and similar fluidity, the plastic viscosity of the CSA cement paste increases remarkably and exhibits significant shear thickening behavior, which is unconducive to the formulation and application of CSA cement concrete. Rheological behavior of CSA cement paste with supplementary cementitious materials (SCMs) is systematically studied. Results show that silica fume (SF) can significantly reduce the maximum shear stress and plastic viscosity of CSA cement paste, but the yield stress increases evidently. The incorporation of fly ash and blast-furnace slag can substantially eliminate the negative effect of the increase in the yield stress of the paste caused by the SF. As the w/c ratio decreases, the plastic viscosity of the CSA cement paste increases significantly. Under the action of the SCMs, the plastic viscosity of CSA cement paste with low water-to-binder (w/b) ratio is reduced, and the plastic viscosity of the high w/b CSA cement paste is increased, all CSA cement pastes exhibit shear thinning behavior. (C) 2020 Elsevier Ltd. All rights reserved.
机译:磺碱酸钙(CSA)水泥有可能成为其优异特性的“未来水泥”,如低碳,节能和低收缩。然而,与普通植物水泥(OPC)浆料相比,具有相同的水 - 水泥(W / C)比和类似的流动性,CSA水泥膏的塑料粘度显着增加并且表现出显着的剪切增厚行为,这是无酷的CSA水泥混凝土的配方和应用。系统研究了CSA水泥浆料的流变行为(SCMS)得到了系统研究。结果表明,二氧化硅烟气(SF)可以显着降低CSA水泥浆料的最大剪切应力和塑料粘度,但屈服应力显然增加。粉煤灰和高炉炉渣的掺入基本上可以消除由SF引起的浆料屈服应力增加的负效应。随着W / C的比率降低,CSA水泥膏的塑性粘度显着增加。在SCM的作用下,降低了具有低水 - 粘合剂(W / B)比的CSA水泥浆料的塑料粘度,并且增加了高W / B CSA水泥浆料的塑料粘度,所有CSA水泥浆料表现出剪切变薄行为。 (c)2020 elestvier有限公司保留所有权利。

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