Finite element analysis for engine crankshaft torsional stiffness

R. Fan, Chu-Yuan Zhang, Fang Yin, Cheng-Cheng Feng, Zhendong Ma, Hua-Bing Gong
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引用次数: 2

Abstract

Accurate crankshaft torsional stiffness is important to build the lumped parameter model (LPM) for crankshaft torsional vibration analysis. For the crankshaft system of a four-cylinder in-line gasoline engine, a procedure to build the finite element model (FEM) is presented. And the applicability of two ways to set the equivalent mass or equivalent moment of inertia for piston-rod in FEM is declared. When building a lumped parameter model, the concept of rigid-rotation of the crank pin central section around the central line of the crankshaft is proposed, and a method to obtain the torsional angle of the central section is declared. What is more, three post-processing methods are presented to obtain the torsional stiffness coefficients. According to three load cases of no-load, half load and full load, the tests are carried out. The simulation results of FEM and LPM, and the test results have good agreement with each other.
发动机曲轴扭转刚度有限元分析
准确的曲轴扭转刚度对于建立曲轴扭转振动分析的集总参数模型至关重要。针对四缸直列汽油机曲轴系统,提出了建立曲轴系统有限元模型的方法。并说明了两种设定活塞杆等效质量或等效转动惯量的方法在有限元计算中的适用性。在建立集总参数模型时,提出了曲柄销中心段绕曲轴中心线进行刚体旋转的概念,并提出了一种求得曲柄销中心段扭转角的方法。此外,还提出了三种获得扭转刚度系数的后处理方法。根据空载、半载和满载三种载荷情况进行了试验。有限元和LPM的仿真结果与试验结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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