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A thermodynamic framework for modelling thixotropic yield stress fluids: Application to cement pastes

机译:一种用于建模触变屈服应力流体的热力学框架:在水泥浆料中的应用

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In this paper, a Helmholtz-potential-based thermodynamic approach was developed for modelling fluids that exhibit both yielding and thixotropic behavior. The yielding behavior was captured using a framework of multiple natural configurations. The thixotropy was described using a structural parameter. The Helmholtz potential is made a function of a structural parameter and a stretch quantity, and the rate of dissipation was made to depend on the rate of change of the natural configuration and the time derivative of the structural parameter. The final constitutive equations were obtained by maximizing the rate of dissipation with the reduced dissipation equation as a constraint. For experimental corroboration of the model, steady-shear and step-shear experiments were performed using cement paste. The predictions from the model were found to match well with the experimental data. Finally, the different model variants that can also be obtained using the presented framework are discussed.
机译:在本文中,开发了一种亥姆霍兹 - 基于潜能的热力学方法,用于建模含有屈服和触变行为的液体。 使用多种自然配置的框架捕获产生行为。 使用结构参数描述了触变性。 亥姆霍兹电位是结构参数和拉伸量的函数,并且使耗散速率取决于自然配置的变化率和结构参数的时间衍生物。 通过将降低的耗散方程的耗散速率最大化为约束来获得最终组成方程。 对于模型的实验性粗制,使用水泥浆料进行稳定剪切和级剪切实验。 发现模型的预测与实验数据相匹配。 最后,讨论了也可以使用所提出的框架获得的不同模型变体。

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