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Gasoline Engine Connecting Rod Buckling Load and Post Buckling Deformation Prediction through CAE for Lightweight Design

机译:汽油发动机连接杆屈曲负荷和通过CAE进行轻质设计的屈曲变形预测

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Super-knocking event generates high pressure pulse in gasoline engine, the predominant failure mode in these cases is connecting rod buckling. Two major factors which affects the bucking strength of connecting rod are shank dimensions and load offset in crankpin axis. There are standard methods available for calculating buckling strength of connecting rod such as Johnson’s buckling equation, Eigenvalue method, Merchant-Rankine formula etc. Each of these methods have pros and cons. But no method caters to all the considerations accurately such as section variation in shank, load offsets, local material plasticity and geometric nonlinearity as in bending preceded by buckling. In present paper, a new methodology is developed using FEA to evaluate the connecting rod buckling strength and post buckling deformation. Comparison with eigenvalue method and theoretical results are presented. Study related to buckling load sensitivity for load offset is also presented.
机译:超敲击事件在汽油发动机中产生高压脉冲,这些情况下的主要失效模式是连接杆屈曲。影响连杆支柱强度的两个主要因素是柄部尺寸和曲轴轴的载荷偏移。有标准方法可用于计算连杆的屈曲强度,如Johnson的屈曲方程,特征值法,商人 - 朗肯式等。这些方法中的每一种都具有优点和缺点。但是,没有准确地迎合所有考虑因素的方法,例如柄部,负载偏移,局部材料可塑性和几何非线性,如弯曲所示的弯曲。在本文中,使用FEA开发了一种新的方法,以评估连杆屈曲强度和后屈曲变形。提出了与特征值法的比较和理论结果。还提出了与屈曲负荷偏移有关的研究。

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