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Research on the Effect of Whole Cylinder Block on EHL Performance of Main Bearings Considering Crankshaft Deformation for Internal Combustion Engine

机译:考虑内燃机曲轴变形的整个气缸体对主轴承EHL性能的影响研究

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摘要

In this paper, the analyses of elastohydrodynamic lubrication (EHL) of crankshaft bearings considering the deformation of the whole cylinder block and crankshaft under load were carried out for the crankshaft bearing system of a four-stroke four-cylinder internal combustion engine. The lubrication of crankshaft bearing was analyzed by dynamic method. The deformation of bearing surface under pressure of oil film was calculated by compliance matrix method. The results show that when the crankshaft deformation under load is considered, compared with the results of not considering the deformation of cylinder block, the maximum film pressure decreases, the minimum film thickness increases, and the end leakage flow-rate and frictional coefficient of journal surface change little in an engine working cycle when considering the deformation of cylinder block. The models of the whole cylinder block and the single main bearing housing were used, respectively, to calculate the deformation of main bearing surface in the analyses. The results show that the calculation accuracy of the elastohydrodynamic lubrication analyses of crankshaft main bearings can be met basically by applying the simple model based on the single main bearing housing to calculate the elastic deformation of main bearing surface.
机译:本文针对四冲程四缸内燃机的曲轴轴承系统,进行了考虑了整个气缸体和曲轴在负载下的变形的曲轴轴承弹性流体动力润滑(EHL)分析。通过动态方法分析了曲轴轴承的润滑情况。采用柔度矩阵法计算了油膜压力下轴承表面的变形。结果表明,当考虑载荷作用下的曲轴变形时,与不考虑气缸体变形的结果相比,最大膜压力降低,最小膜厚度增加,端部泄漏流量和轴颈摩擦系数考虑到气缸体的变形,发动机工作循环中的表面变化很小。在分析中分别使用整个缸体和单个主轴承座的模型来计算主轴承表面的变形。结果表明,通过基于单个主轴承座的简单模型计算主轴承表面的弹性变形,可以基本满足曲轴主轴承的弹性流体动力润滑分析的计算精度。

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