首页> 外文期刊>Journal of Tribology >Film Thickness and Friction Investigations in a Fluid Film Thrust Bearing Employing A New Conceived Micro-Texture on Pads
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Film Thickness and Friction Investigations in a Fluid Film Thrust Bearing Employing A New Conceived Micro-Texture on Pads

机译:在流体膜推力轴承中采用新构思的微纹理在垫上的膜厚度和摩擦调查

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This paper presents the performance behaviors (coefficient of friction, minimum film thickness, and pressure distributions) of a fluid film thrust bearing using a newly conceived micro-texture on pads. In the numerical investigation, the Reynolds equation has been discretized using the finite element formulation followed by the solution of algebraic equations employing the Fischer-Burmeister-Newton-Schur (FBNS) algorithm, which satisfies the mass-conservation phenomenon arising due to the commencement of cavitation in the lubricating film. The effects of parameters (micro-texture/pocket depth, circumferential/radial length of micro-texture and pocket, etc.) of new texture on the performance behaviors of the thrust bearing have been explored and presented herein for the range of input data. It has been found that the minimum film thickness has increased up to 48%, and the friction coefficient reduced up to 24% in comparison to conventional plain pad case.
机译:本文介绍了一种新型的微结构流体膜推力轴承的性能特性(摩擦系数、最小油膜厚度和压力分布)。在数值研究中,使用有限元公式对雷诺方程进行离散,然后使用Fischer-Burmeister-Newton-Schur(FBNS)算法求解代数方程,该算法满足由于润滑膜中空化开始而产生的质量守恒现象。在输入数据范围内,本文探讨并展示了新纹理参数(微纹理/凹槽深度、微纹理的周向/径向长度和凹槽等)对推力轴承性能的影响。研究发现,与传统平垫情况相比,最小油膜厚度增加了48%,摩擦系数降低了24%。

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