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Computational Multiaxial Fatigue Modelling for Notched Components*

机译:缺口部件的计算多轴疲劳建模*

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摘要

Fatigue failures of driveline and suspension notched components for ground vehicles under multiaxial loading conditions are common, since most of those components are subjected to complex multiaxial loadings in service. A computational fatigue analysis methodology has been proposed here for performing multiaxial fatigue life prediction for notched components using analytical and numerical methods. The proposed multiaxial fatigue analysis methodology consists of an elastic-plastic stress/strain model and a multiaxial fatigue damage parameter. Results of the proposed multiaxial fatigue analysis methodology are compared to sets of experimental data published in the literature to verify the prediction capability of the elastic-plastic stress/strain model and the multiaxial fatigue damage parameter. Based on the comparison between calculated results and experimental data, it is found that the multiaxial elastic-plastic stress/strain model correlates well with experimental strain data for SAE 1070 steel notched shafts subjected to several non-proportional load paths. In addition, the proposed fatigue damage parameter is found to correlate reasonably well with experimental fatigue data of SAE 1045 steel notched shafts subjected to proportional and non-proportional loadings.
机译:在多轴载荷条件下,地面车辆的动力传动系统和悬架缺口部件的疲劳故障是很常见的,因为这些部件中的大多数都在使用中承受着复杂的多轴载荷。在此已经提出了一种计算疲劳分析方法,该方法可以使用解析和数值方法对缺口部件执行多轴疲劳寿命预测。所提出的多轴疲劳分析方法包括弹塑性应力/应变模型和多轴疲劳损伤参数。将拟议的多轴疲劳分析方法的结果与文献中公布的实验数据集进行比较,以验证弹塑性应力/应变模型和多轴疲劳损伤参数的预测能力。通过对计算结果和实验数据的比较,发现多轴弹塑性应力/应变模型与SAE 1070缺口槽轴在几种非比例载荷路径下的实验应变数据具有良好的相关性。此外,发现拟议的疲劳损伤参数与承受比例和非比例载荷的SAE 1045钢缺口轴的实验疲劳数据合理地相关。

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