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首页> 外文期刊>Advances in Tribology >Non-Newtonian Effects on the Squeeze Film Characteristics between a Sphere and a Flat Plate: Rabinowitsch Model
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Non-Newtonian Effects on the Squeeze Film Characteristics between a Sphere and a Flat Plate: Rabinowitsch Model

机译:球与平板之间的挤压膜特性的非牛顿效应:Rabinowitsch模型

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The use of additives (polyisobutylene, ethylene-propylene, lithium hydroxy stearate, hydrophobic silica, etc.) changes lubricants’ rheology due to which they show pseudoplastic and dilatant nature, which can be modelled as cubic stress fluid model (Rabinowitsch fluid model). The present theoretical analysis investigates the effects of non-Newtonian pseudoplastic and dilatant lubricants on the squeezing characteristics of a sphere and a flat plate. The modified Reynolds equation has been derived and an asymptotic solution for film pressure is obtained. The results for the film pressure distribution, load carrying capacity, and squeezing time characteristics have been calculated for various values of pseudoplastic parameter and compared with the Newtonian results. These characteristics show a significant variation with the non-Newtonian pseudoplastic and dilatant behavior of the fluids.
机译:添加剂(聚异丁烯,乙烯-丙烯,羟基硬脂酸锂,疏水性二氧化硅等)的使用改变了润滑剂的流变性,因为它们表现出假塑性和膨胀性,可以将其建模为立方应力流体模型(Rabinowitsch流体模型)。目前的理论分析研究了非牛顿假塑性和膨胀润滑剂对球体和平板挤压特性的影响。推导了修正的雷诺方程,并获得了膜压力的渐近解。针对各种假塑性参数值,计算了膜压力分布,承载能力和挤压时间特性的结果,并与牛顿结果进行了比较。这些特征显示出流体的非牛顿假塑性和膨胀行为的显着变化。

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