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Modelling the Induced Force of Attraction in Electrorheological Nanofluids

机译:电流纳米流体中吸引力的诱导力

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The problem of electric-field induced force between spheres is fundamental to electrorheological fluids. In this paper we summarize recent work, and in particular present an exact solution to the electrostatic problem of dielectric spheres subject to an externally applied electric field. The numerical results are compared to published experimental data and the solution is shown to accurately predict the low-frequency experimental results at all measured interstices and particularly is applicable to nanosized spheres in close proximity. This method is applicable to nonidentical spheres and results indicate a genuine maximum in the attractive force between spheres exists, which depends on relative particle size and the electrostatic permittivity of the particles and that of the medium. These maxima have not previously been reported in the literature and the existing published work of the present authors constitutes the first published material on this topic.
机译:球体之间的电场诱导力的问题是电流流体的基础。 在本文中,我们总结了最近的工作,特别地,对外部施加的电场的介电球的静电问题提出了精确的解决方案。 将数值结果与公开的实验数据进行比较,并且显示解决方案以精确地预测所有测量空隙的低频实验结果,特别适用于密切接近的纳米球体。 该方法适用于非识别球体,结果表明球体之间的吸引力中的真正最大值,这取决于颗粒的相对粒度和静电介电常数和介质的静电介电常数。 这些最大值在文献中没有报道,本作者的现有公布工作构成了本主题的第一个公布的材料。

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