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Constitutive flow models for characterizing the rheology of fresh mortar and concrete

机译:表征新鲜砂浆和混凝土流变特性的本构模型

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Constitutive equations for fresh mortar and fresh concrete provide the characterization of the mixture's flow and the quantification of the rheological properties. This paper presents a constitutive material model for mortar and concrete that builds on previous research. It postulates that (a) the shear stress is the sum of three components: static interaction between particles, dynamic interaction between particles, and collision of particles; and (b) the cell is a representative volume of the mixture. For fresh concrete, the effects of particle collisions are negligible due to high concentration, and the equation reduces to the Bingham model. Experimental data reported in the literature was employed to evaluate the predictive capabilities of the constitutive equations. The model results are found to compare very well with the measured experimental data and the difference is within the measurement errors.
机译:新鲜砂浆和新鲜混凝土的本构方程提供了混合物流动的表征和流变性质的量化。本文提出了基于先前研究的砂浆和混凝土的本构模型。它假定(a)剪切应力是三个分量的总和:颗粒之间的静态相互作用,颗粒之间的动态相互作用和颗粒的碰撞; (b)单元是混合物的代表性体积。对于新拌混凝土,由于高浓度,颗粒碰撞的影响可忽略不计,该方程式简化为宾厄姆模型。文献中报道的实验数据用于评估本构方程的预测能力。发现模型结果与测量的实验数据很好地比较,并且差异在测量误差之内。

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