Effect of loaded-pad thickness on the static behaviors of five-pad hydrodynamic journal bearings

Dang Phuoc Vinh Dang
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Abstract

The use of tilting pad journal bearings (TPJBs) has increased in the recent past due to their stabilizing effects on the rotor bearing system. Most of the studies about steady state and dynamic behaviors of TPJBs are usually evaluated by means of thermohydrodynamic models assuming nominal dimensions for the bearing. However, machining errors could lead to actual bearing geometry and dimensions different from the nominal ones. In particular, for TPJB the asymmetry of the bearing geometry leads to unexpected behavior of the bearing. In this paper, effects of non-uniform clearance on TPJBs’ performances such as clearance profile, shaft locus, power loss, pad tilt angle, and pressure distribution are evaluated using an analytical model. The results show that effects of non-uniform clearance on static characteristics of TPJBs are considerable when evaluating the efficiency of the bearing in particular and system in general.
加载垫厚对五垫流体动压滑动轴承静态性能的影响
倾斜垫轴颈轴承(tpjb)的使用增加了在最近的过去,由于其对转子轴承系统的稳定作用。大多数关于tpjb稳态和动态行为的研究通常是通过假设轴承标称尺寸的热流体力学模型来评估的。然而,加工误差可能导致实际轴承的几何形状和尺寸与标称不同。特别是,对于TPJB,轴承几何形状的不对称导致轴承的意外行为。本文采用解析模型分析了非均匀间隙对TPJBs的间隙分布、轴轨迹、功率损失、衬垫倾角和压力分布等性能的影响。结果表明,在评估轴承和整个系统的效率时,非均匀间隙对tpjb静态特性的影响是相当大的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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