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Simulations of model magnetorheological fluids in squeeze flow mode

机译:挤压流动模式模型磁流变液的模拟

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摘要

A particle-level simulation methodology is proposed to study the squeeze flow behavior of model magnetorheological (MR) fluids. The simulation algorithm takes into account Brownian motion and local field corrections to magnetic interactions of the particles. Simulation results obtained from using different initial configurations, including one single-particle-width chain per simulation box, random or lattice arrangements of preassembled single-particle-width chains as well as randomly dispersed particle suspensions, are compared with experimental data and predictions of a recently developed microscopic model. The assumption of single-particle-width chain structures in the systems has been shown to generate normal stresses larger than those found in experiments and the micromechanical model. However, much better agreement between the simulation and experimental results have been reached when using random initial configurations in the simulations.
机译:提出了一种粒子级模拟方法来研究模型磁流变(MR)流体的挤压流动行为。模拟算法考虑了布朗运动和对粒子的磁相互作用的局部场校正。通过使用不同的初始配置(包括每个模拟盒一个单粒子宽度链,预组装的单粒子宽度链的随机或晶格排列以及随机分散的粒子悬浮液)获得的模拟结果与实验数据和预测最近开发的微观模型。系统中单粒子宽度链结构的假设已显示出比实验和微机械模型中的法向应力大。但是,在仿真中使用随机初始配置时,在仿真和实验结果之间已经达成了更好的协议。

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