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A crankshaft system model for structural dynamic analysis of internal combustion engines

机译:用于内燃机结构动力分析的曲轴系统模型

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摘要

A system model for analyzing the dynamic behavior of an internal combustion engine crankshaft is described. The model couples the crankshaft structural dynamics, the main bearing hydrodynamic lubrication and the engine block stiffness using a system approach. A two-level dynamic substructuring technique is used to predict the crankshaft dynamic response based on the finite-element method. The dynamic substructuring uses a set of load-dependent Ritz vectors. The main bearing lubrication analysis is based on the solution of the Reynold's equation. Comparison with experimental results demonstrates the accuracy of the model. Numerical results also show that capabilities and signi- ficance of the model in engine crankshaft design.
机译:描述了一种用于分析内燃机曲轴的动态行为的系统模型。该模型使用系统方法将曲轴结构动力学,主轴承液压润滑和发动机缸体刚度耦合在一起。基于有限元方法,采用二级动态子结构技术预测曲轴的动态响应。动态子结构使用一组依赖于负载的Ritz向量。主轴承润滑分析基于雷诺方程的解。与实验结果的比较证明了该模型的准确性。数值结果还表明该模型在发动机曲轴设计中的功能和意义。

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