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Influence of Texture Geometry on the Hydrodynamic Performances of Parallel Bearings

机译:纹理几何形状对平行轴承水动力性能的影响

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摘要

It has been proven experimentally that surface texturing represents a viable solution for increasing the load-carrying capacity of parallel fluid bearings. Along with several load-supporting mechanisms that have been identified in the literature, the texture geometry remains an important feature. With the main objective of evaluating the effects of the texture geometry, a mass-conserving model is employed. While avoiding the use of the bulk modulus β, the algorithm also deals with the cavitation phenomenon and provides rapid and accurate results. For given operating conditions (supply pressure, surface speed, or lubricant viscosity), essential geometrical features such as size, density, and shape are analyzed in detail. In terms of load support and friction, the results reveal a strong dependence between certain parameters such as the texture cell number and dimple depth, and an increase in the texture density has beneficial effects in most cases. With regard to shape, the influence of this feature proves to be more significant in the case of single-grooved bearings than in the case of textures.
机译:实验已经证明,表面纹理化是增加平行流体轴承的承载能力的可行解决方案。除了在文献中已经确定的几种负载支持机制外,纹理几何形状仍然是重要的特征。为了评估纹理几何形状的影响,采用了质量守恒模型。该算法在避免使用体积模量β的同时,还处理了气蚀现象并提供了快速而准确的结果。对于给定的操作条件(供应压力,表面速度或润滑剂粘度),将详细分析基本的几何特征,例如尺寸,密度和形状。在载荷支撑和摩擦方面,结果表明某些参数(例如,纹理单元数和凹坑深度)之间的依赖性很强,并且在大多数情况下,纹理密度的增加具有有益的作用。关于形状,单槽轴承的情况比纹理的情况更重要。

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