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THE EFFECT OF CYLINDER BORE DISTORTION ON LUBE OIL CONSUMPTION AND BLOW-BY

机译:气缸孔变形对润滑油消耗和窜漏的影响

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It is well-known that cylinder bore deformations during engine operation cause a number of problems in piston ring lubrication. Particularly, the deterioration of piston ring and cylinder bore conformability results in a significant increase in lubricating oil consumption (LOC). Therefore, measurement and identification of cylinder bore distortion has been an important subject for engine designers. In this study, an analytical lubricating oil consumption model was developed for a diesel engine. Piston stiffness was identified as an important input parameter for the oil consumption model, and the stiffness matrix of the piston was calculated using finite element simulations. In addition, finite element analysis was performed to determine the distorted cylinder block shape in engine running conditions. Pressure curves obtained in actual engine tests were used in the analysis. The Fourier coefficients of a distorted cylinder bore was calculated which characterize the deformed bore orders. Using these Fourier coefficients, several distorted bore shapes were regenerated, including a straight bore and the effect of each order on total lube oil consumption was investigated by means of the oil consumption model.
机译:众所周知,发动机运转期间的汽缸孔变形在活塞环润滑中引起许多问题。特别地,活塞环和气缸孔顺应性的劣化导致润滑油消耗(LOC)的显着增加。因此,气缸孔变形的测量和识别已成为发动机设计者的重要课题。在这项研究中,为柴油发动机开发了一种分析性的润滑油消耗模型。活塞刚度被确定为机油消耗模型的重要输入参数,并且使用有限元模拟来计算活塞的刚度矩阵。此外,进行了有限元分析,以确定发动机工况下变形的气缸体形状。分析中使用了在实际发动机测试中获得的压力曲线。计算了变形缸孔的傅立叶系数,该系数表征了变形的缸孔阶数。使用这些傅立叶系数,可以重新生成包括直孔在内的几种变形的孔形状,并通过油耗模型研究每个阶次对总润滑油消耗的影响。

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