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Microstructural Rearrangements and their Rheological Implications in a Model Thixotropic Elastoviscoplastic Fluid

机译:模型触变弹性体塑性流体的微观结构重排及其流变学意义

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摘要

We identify the sequence of microstructural changes that characterize the evolution of an attractive particulate gel under flow and discuss their implications on macroscopic rheology. Dissipative particle dynamics is used to monitor shear-driven evolution of a fabric tensor constructed from the ensemble spatial configuration of individual attractive constituents within the gel. By decomposing this tensor into isotropic and nonisotropic components we show that the average coordination number correlates directly with the flow curve of the shear stress versus shear rate, consistent with theoretical predictions for attractive systems. We show that the evolution in nonisotropic local particle rearrangements are primarily responsible for stress overshoots (strain-hardening) at the inception of steady shear flow and also lead, at larger times and longer scales, to microstructural localization phenomena such as shear banding flow-induced structure formation in the vorticity direction.
机译:我们确定了微观结构变化的序列,这些序列表征了流动条件下有吸引力的颗粒凝胶的演化,并讨论了它们对宏观流变学的影响。耗散粒子动力学用于监视由凝胶中各个有吸引力的成分的整体空间配置构成的织物张量的剪切驱动演变。通过将该张量分解为各向同性和非各向同性的分量,我们表明平均配位数与剪切应力与剪切速率的流量曲线直接相关,这与有吸引力的系统的理论预测一致。我们表明,在各向同性的局部粒子重排中的演化主要是在稳定剪切流开始时引起应力超调(应变硬化)的原因,并且在更大的时间和更长的范围内导致微观结构的局部化现象,例如剪切带流引起的。在涡度方向的结构形成。

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