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Elastohydrodynamic Lubrication Analysis of a Compliant Journal Bearing Considering Static and Dynamic Deformations of the Bearing Liner

机译:考虑轴瓦静态和动态变形的柔顺轴颈轴承的弹性流体动力润滑分析

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摘要

In this article, the effect of both static and dynamic deformations of the bearing liner on the dynamic performance characteristics and stability of a water-lubricated, rubber-lined journal bearing operating under small harmonic vibrations is theoretically investigated. To take into account the dynamic deformations of the bearing liner, the first-order perturbation technique is used to determine the eight dynamic coefficients for a given excitation frequency value. The static and dynamic deformation of the fluid/bearing-liner interface is assumed to be proportional to the steady-state and dynamic fluid-film pressures. It was found that the dynamic properties and stability of the compliant finite-length journal bearing are affected by surface coatings from soft materials. It was also shown that when dynamic deformations are considered in the calculations, the dynamic coefficients depend on the excitation frequency, especially for higher values of this parameter. Moreover, the two cross-damping coefficients differ from each other, while the classical elastohydrodynamic (EHD) theory predicts them to be equal, when the dynamic deformations are ignored.
机译:在本文中,从理论上研究了轴承衬套的静态和动态变形对在小谐波振动下工作的水润滑橡胶衬里轴颈轴承的动态性能和稳定性的影响。考虑到轴承衬套的动态变形,一阶扰动技术用于确定给定励磁频率值的八个动态系数。假定流体/轴承-衬套界面的静态和动态变形与稳态和动态流体膜压力成正比。发现柔顺有限轴承的动态性能和稳定性受软材料表面涂层的影响。还表明,在计算中考虑动态变形时,动态系数取决于激励频率,尤其是对于该参数的较高值。此外,两个交叉阻尼系数互不相同,而经典的弹性流体力学(EHD)理论预测,当忽略动态变形时,它们是相等的。

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