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A Novel Method Studying the Effects of Journal Straightness in Three-Dimensional Space on Lubrication of Bearing

机译:一种新的方法,研究杂志杂志在轴承润滑的三维空间中的影响

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Conventionally, the engines are calibrated under the assumption that engines will be made exactly to the prints, and all the engines from the same batch will be identical. However, engine-to-engine variations do exist which will affect the engine performances, and part-to-part variations, i.e., the tolerance, is an important factor leading to engine-to-engine variations. There are researches conducted on the influence of dimensional tolerances on engine performance, however, the impact of straightness, which is an important geometric tolerance, on lubrication is an unsolved issue. This study presents a systematic method to model the straightness and to analyze its effects on the friction loss. The bearing model is built based on elastohydrodynamic (EHD) theory. Meanwhile a novel modeling method to represent any form of straightness in three-dimensional space is proposed. Then the meta-model with straightness as the input and friction loss as the output is built based on Kriging interpolation theory. Genetic algorithm (GA) is utilized to search for the straightness forms that lead to the best and worst lubricating conditions, respectively. Results show that straightness of the U-shape could lead to an increase or decrease of friction loss and this is mainly determined by the straightness phase. It is also shown that the degree of friction variation at a certain straightness phase is determined by the shape and amplitude of straightness.
机译:传统上,在假设发动机将完全校准发动机,发动机将完全校准,并且来自相同批次的所有发动机将是相同的。然而,存在发动机到发动机变化,这将影响发动机性能,并且部分变化,即容差,是导致发动机到发动机变化的重要因素。有研究对尺寸公差对发动机性能的影响进行了研究,然而,直线度的影响是一个重要的几何公差,润滑是一个未解决的问题。本研究提出了一种建模直线度的系统方法,并分析其对摩擦损失的影响。轴承模型基于弹性流体动力学(EHD)理论构建。同时提出了一种代表三维空间中任何形式的直线度的新型建模方法。然后基于Kriging插值理论构建了随着输出的输入和摩擦损失的平直度的元模型。遗传算法(GA)用于搜索导致最佳和最差润滑条件的直线形式。结果表明,U形的直线度可能导致摩擦损失的增加或降低,这主要由直线阶段决定。还表明,某个直线阶段的摩擦变化程度由直线的形状和幅度确定。

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