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首页> 外文期刊>Tribology International >Non-Newtonian dynamics characteristics of parabolic-film slider bearings: Micropolar fluid model
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Non-Newtonian dynamics characteristics of parabolic-film slider bearings: Micropolar fluid model

机译:抛物膜滑动轴承的非牛顿动力学特性:微极性流体模型

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摘要

The non-Newtonian influences of micropolar fluids on the dynamic stiffness and damping characteristics of parabolic-film slider bearings are investigated in the present paper. A closed-form solution for the bearing performances has been derived by applying the linear theory to the equation of the hydrodynamic film force. Comparing with the case of Newtonian lubricants, the non-Newtonian effects of micropolar fluids provide higher load capacities and higher dynamic coefficients. The improved performances are emphasized especially for the bearing with smaller film heights and larger fluid-gap interacting parameters and coupling parameters.
机译:本文研究了微极性流体对抛物线型滑动轴承动态刚度和阻尼特性的非牛顿影响。通过将线性理论应用于流体动力膜力方程,得出了轴承性能的封闭形式解决方案。与牛顿润滑剂相比,微极性流体的非牛顿效应提供了更高的负载能力和更高的动态系数。特别是对于膜厚度较小,液隙相互作用参数和耦合参数较大的轴承,尤其要强调改善的性能。

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