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Kinetic model for the mechanical response of suspensions of sponge-like particles

机译:电气悬浮液的机械响应动力学模型

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A dynamic two-scale model is developed that describes the stationary and transient mechanical behavior of concentrated suspensions made of highly porous particles. Particularly, we are interested in particles that not only deform elastically, but also can swell or shrink by taking up or expelling the viscous solvent from their interior, leading to rate-dependent deformability of the particles. The fine level of the model describes the evolution of particle centers and their current sizes, while the shapes are at present not taken into account. The versatility of the model permits inclusion of density- and temperature-dependent particle interactions, and hydrodynamic interactions, as well as to implement insight into the mechanism of swelling and shrinking. The coarse level of the model is given in terms of macroscopic hydrodynamics. The two levels are mutually coupled, since the flow changes the particle configuration, while in turn the configuration gives rise to stress contributions, that eventually determine the macroscopic mechanical properties of the suspension. Using a thermodynamic procedure for the model development, it is demonstrated that the driving forces for position change and for size change are derived from the same potential energy. The model is translated into a form that is suitable for particle-based Brownian dynamics simulations for performing rheological tests. Various possibilities for connection with experiments, e.g. rheological and structural, are discussed.
机译:开发了一种动态的两尺度模型,其描述了由高度多孔颗粒制成的浓缩悬浮液的静止和瞬态力学行为。特别是,我们对不仅变形的颗粒感兴趣,而且可以通过从其内部造成或排出粘性溶剂来溶胀或缩小,导致颗粒的速率依赖性变形性。该模型的细水平描述了颗粒中心的演变及其电流尺寸,而形状目前也没有考虑。模型的多功能性允许包含密度和温度依赖性的颗粒相互作用,以及流体动力相互作用,以及实施洞察力和缩小机制。在宏观流体动力学方面给出了模型的粗水平。两级相互耦合,由于流量改变颗粒构型,而又转绕配置产生应力贡献,最终确定悬浮液的宏观力学性能。使用用于模型开发的热力学程序,证明了用于位置变化和尺寸变化的驱动力源自相同的电位。该模型被翻译成适用于用于进行流变测试的基于粒子的布朗动力学模拟的形式。与实验联系的各种可能性,例如,讨论了流变和结构。

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