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effect of Mixing Procedure on the Rheological properties and Hydration Kinetics of Portland Cement Paste

机译:混合过程对波特兰水泥浆料流变性能和水化动力学的影响

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The mixing procedure used to make paste, mortar or concrete has an important influence on the hydration kinetics and rheological properties of cementitious materials. In this study, different shear mixing procedures were studied to evaluate the effect on the kinetics of hydration for Portland cement paste by isothermal calorimetry over 72 h. The rheological properties of the same pastes in terms of yield stress (Pa) and apparent viscosity (Pa.s) were also studied with the same mixing procedures: manual, 2500 rpm and high shear mixing at 10000 rpm. To compare the heat flow over the time of each mixing procedure with the stiffening, an oscillatory rheometry evaluation with continuous flow was carried out. All the tests were carried out in triplicate and the variability was evaluated. The results show important differences in terms of enhancement of height of the main heat evolution peak and reduction of the induction period when the paste was mixed at 10000 rpm (high shear), moreover, the oscillatory rheometry showed that the high shear mixing reduced the stiffening time of the mix compared to manual mixing and 2500 rpm mixing.
机译:用于制造糊状物,砂浆或混凝土的混合过程对水泥材料的水合动力学和流变性质具有重要影响。在这项研究中,研究了不同的剪切混合程序,以评估通过72小时的等温热量测定对波特兰水泥浆料的水化动力学的影响。还采用相同的混合方法研究了屈服应力(PA)和表观粘度(PA.S)的相同浆料的流变性质:手动,2500rpm和10000rpm的高剪切混合。为了将热流与加强的加强相比,进行了连续流动的振荡计流量评价。所有测试一式三份进行,评价变异性。结果表明,当浆料以10000rpm(高剪切)混合时,浆料混合时,浆料的高度和诱导时期的减少的增强差异的重要差异表明,振荡计流量表明,高剪切混合降低了加强与手动混合和2500rpm混合相比,混合的时间。

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