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首页> 外文期刊>Comptes rendus. Mecanique >Performance of hydrodynamic journal bearing under the combined influence of textured surface and journal misalignment: A numerical survey
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Performance of hydrodynamic journal bearing under the combined influence of textured surface and journal misalignment: A numerical survey

机译:纹理表面综合影响下的流体动力杂志轴承的性能及杂志杂散:数值调查

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摘要

A wisely chosen geometry of micro textures with the favorable relative motion of lubricated surfaces in contacts can enhance tribological characteristics. In this paper, a computational investigation related to the combined influence of bearing surface texturing and journal misalignment on the performances of hydrodynamic journal bearings is reported. To this end, a numerical analysis is performed to test three texture shapes: square "SQ", cylindrical "CY", and triangular "TR", and shaft misalignment variation in angle and degree. The Reynolds equation of a thin viscous film is solved using a finite differences scheme and a mass conservation algorithm UFO boundary conditions), taking into account the presence of textures on both full film and cavitation regions. Preliminary results are compared with benchmark data and are consistent with a positive enhancement in misaligned bearing performances (load carrying capacity and friction). The results suggest that the micro-step bearing mechanism is a key parameter, where the micropressure recovery action present in dimples located at the second angular part of the bearing (from 180 degrees to 360 degrees) can compensate for the loss on performances caused by shaft misalignment, while the micro-pressure drop effect at the full film region causes poor performances. Considering the right arrangement of textures on the contact surface, their contours geometries can have a significant impact on the performance of misaligned journal bearings, particularly at high eccentricity ratios, high misalignment degrees and when the misalignment angle alpha approaches to 0 degrees or 180 degrees. (C) 2018 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:具有诸如触点中润滑表面有利的微纹理的明智的微纹理的几何形状可以提高摩擦学特征。本文报道,据报道,据报道了与轴承表面纹理和轴颈未对准相关影响的计算调查。为此,执行数值分析以测试三个纹理形状:方形“SQ”,圆柱形“CY”和三角形“TR”,以及角度和程度的轴未对准变化。使用有限差异方案和大规模保护算法UFO边界条件来解决薄粘性膜的雷诺等式,考虑到两个完整膜和空化区域上的纹理的存在。将初步结果与基准数据进行比较,并且符合未对准的轴承性能(负载承载能力和摩擦)的正增强。结果表明,微步轴承机构是一个关键参数,其中位于轴承的第二角部(180度至360度)的凹坑中存在的微型恢复作用可以补偿由轴引起的性能的损失未对准,而全膜区域的微压降效应导致性能差。考虑到纹理对接触表面上的正确布置,它们的轮廓几何形状对未对准的轴颈轴承的性能产生显着影响,特别是在高偏心率,高错位度以及未对准角α接近0度或180度时。 (c)2018年Academie Des Sciences。由Elsevier Masson SA出版。版权所有。

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