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首页> 外文期刊>Tribology Transactions >A Theory of the Hydrodynamic Film Thickness in Centrally Pivoted Oil-Lubricated Plane-Pad Thrust Bearings
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A Theory of the Hydrodynamic Film Thickness in Centrally Pivoted Oil-Lubricated Plane-Pad Thrust Bearings

机译:中心枢转式油压平面推力轴承的流体动力学膜厚理论

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摘要

An analytical model is developed in this article for pivoted, oil-lubricated rectangular plane-pad thrust bearings considering the thermal effects of oil viscosity. The model is governed by three dimensionless parameters: the pad length-to-width ratio, the location of the pad pivot, and the bearing load parameter that prescribes lubricant thermal properties and applied load. Analyses were carried out for centrally pivoted bearings of a number of pad length-to-width ratios and a number of bearing load parameters. The results suggest a theory that, for bearings with a square pad or wider, the oil viscosity thermal effect enables a centrally pivoted bearing to develop a hydrodynamic film thickness of about one half of the film thickness that would be developed under isothermal conditions with the pad pivoted at its maximum-load-capacity optimal position. This level of relative film thickness could be developed under all design conditions of practical interest. The theory is fairly general and may be applicable to fan-shaped thrust bearing assemblies with the concept of equivalent length-to-width ratio of the bearing pad. The validity of the theory is modestly evaluated and should be further validated in time through various means and in various settings.
机译:考虑到油粘度的热效应,本文针对枢轴式油润滑矩形平面垫推力轴承开发了一个分析模型。该模型由三个无因次参数控制:轴瓦长宽比,轴瓦枢轴的位置以及规定润滑剂热性能和施加载荷的轴承载荷参数。对具有许多垫长宽比和许多轴承载荷参数的中央枢轴轴承进行了分析。结果表明,一种理论认为,对于具有方形垫块或更宽的垫块的轴承,油粘度热效应可使中心枢转轴承产生的流体力学膜厚约为在等温条件下使用垫块形成的膜厚的一半。枢转到最大负载容量的最佳位置。可以在所有实际感兴趣的设计条件下确定相对膜厚度的水平。该理论相当笼统,可适用于扇形推力轴承组件,其概念是轴承瓦的长宽比相等。对该理论的有效性进行了适度的评估,并应通过各种手段和各种环境及时进行进一步验证。

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