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How a Colloidal Paste Flows—Scaling Behaviors in Dispersions of Aggregated Particles under Mechanical Stress—

机译:胶体浆料如何在机械应力下的聚集颗粒分散中进行缩放行为 -

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We have developed a novel computational scheme that allows direct numerical simulation of the mechanical behavior of sticky granular matter under stress. We present here the general method, with particular emphasis on the particle features at the nanometric scale. It is demonstrated that, although sticky granular material is quite complex and is a good example of a challenging computational problem (it is a dynamical problem, with irreversibility, self-organization and dissipation), its main features may be reproduced on the basis of rather simple numerical model, and a small number of physical parameters. This allows precise analysis of the possible deformation processes in soft materials submitted to mechanical stress. This results in direct relationship between the macroscopic rheology of these pastes and local interactions between the particles.
机译:我们开发了一种新颖的计算方案,允许在应力下直接数值模拟粘性粒状物质的力学行为。我们在这里介绍了一般方法,特别强调了纳米级的粒子特征。虽然粘性粒状材料非常复杂并且是一个充满挑战的计算问题的良好示例(具有不可逆转,自组织和耗散),其主要特征可以基于相反的方式再现简单的数值模型,以及少量物理参数。这允许精确地分析提交给机械应力的软材料中可能的变形过程。这导致这些浆料的宏观流变与颗粒之间的局部相互作用之间的直接关系。

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