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Assessment of Bending Fatigue Strength of Crankshaft Sections with Consideration of Quenching Residual Stress

机译:考虑淬火残余应力的曲轴截面弯曲疲劳强度评估

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摘要

High-cycle bending fatigue is the primary failure mode of crankshafts in engines. Compressive residual stresses are often introduced by induction quenching to improve the fatigue strength of crankshafts. The residual stresses, which are commonly obtained by numerical methods, such as the finite element method (FEM), should be included in fatigue failure analysis to predict the fatigue strength of crankshafts accurately. In this study, the simulation method and theory of quenching process are presented and applied to investigate the residual stresses of a diesel engine crankshaft. The coupling calculation of temperature, microstructure, and stress fields of the crankshaft section is conducted by FEM. Then, the fatigue strength of the crankshaft section is analytically assessed by Susmel and Lazzarin's criterion based on the critical plane approach that superimposes the residual stresses onto the bending stresses. The resonant bending fatigue tests of the crankshaft sections are conducted, and the tests and analytical assessments yield consistent results.
机译:高循环弯曲疲劳是发动机曲轴的主要故障模式。通常通过感应淬火引入压缩残余应力,以改善曲轴的疲劳强度。通常通过数值方法(例如有限元方法(FEM))获得的残余应力应包括在疲劳失效分析中,以准确预测曲轴的疲劳强度。提出了淬火过程的仿真方法和理论,并将其应用于研究柴油机曲轴的残余应力。曲轴截面温度,微观结构和应力场的耦合计算是通过有限元法进行的。然后,基于临界平面方法,通过将残余应力叠加到弯曲应力上的临界面方法,通过Susmel和Lazzarin的标准对曲轴截面的疲劳强度进行了分析评估。进行了曲轴截面的共振弯曲疲劳测试,测试和分析评估得出一致的结果。

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