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DYNAMIC BEHAVIOR AND YIELDING OF FIELD-RESPONSIVE PARTICULATE SUSPENSIONS

机译:场响应性颗粒悬浮液的动态行为和屈服

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摘要

We have examined the small strain response of an inverse ferrofluid system, consisting of micron-sized inert particles dispersed in a ferrofluid, which is a magnetisable liquid consisting of single domain magnetite nanoparticles. Under a magnetic field the inert particles will form elongated aggregates in the field direction, analogous to a magnetorheological fluid. It was found that the fluid appeared to have a Bingham fluid-like yield stress when analysed using the flow curve. However careful study of the behavior at very low shear rates revealed an ever decreasing shear stress. In addition, the behavior of conventional magnetorheological fluids at large strains under steady shear flow and constant magnetic field was also studied, and the results compared to particle-level computer simulations.
机译:我们已经研究了逆铁磁流体系统的小应变响应,该系统由分散在铁磁流体中的微米级惰性颗粒组成,铁磁流体是由单畴磁铁矿纳米颗粒组成的可磁化液体。在磁场下,惰性颗粒将在磁场方向上形成细长的聚集体,类似于磁流变流体。发现使用流动曲线分析时,该流体似乎具有像宾汉流体的屈服应力。但是,对非常低的剪切速率下的行为进行仔细研究后发现,剪切应力不断降低。此外,还研究了常规磁流变流体在稳定剪切流和恒定磁场下在大应变下的行为,并将结果与​​颗粒级计算机模拟进行了比较。

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