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An Energy-Critical Plane Based Fatigue Damage Approach for the Life Prediction of Metal Alloys

机译:金属合金寿命预测的基于能量关键平面的疲劳损伤方法

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This paper presents a new energy-critical plane based fatigue damage approach for the assessment of the fatigue life under uniaxial and multiaxial proportional and non-proportional fatigue loading. The proposed approximate method, based on Farahani's multiaxial fatigue damage model, takes into account the critical plane orientations during a loading cycle and the values of the respective damage parameters on them. The uniqueness of the proposed method lies on the fact that it considers a weighted contribution of each critical plane orientation to the material damage. The relative weighting factors depend on the declination of each critical plane with respect to the critical plane, where the damage parameters exhibit their maximum values during a fatigue loading cycle. Herein, several low, mid and high-cycle fatigue loading cases are being investigated. The induced elastic-plastic stress-strain states are approximated by means of respective finite element analyses (FEA). Several experimental fatigue data derived from uniaxial and multiaxial fatigue tests on StE460 steel alloy thin-walled hourglass-type specimens have been used to verify the model's calculation accuracy. Comparison of experimental and calculated fatigue lives confirm remarkable fatigue life calculation accuracy in all cases examined.
机译:本文提出了一种新的能量关键平面基于能量 - 临界平面疲劳损伤方法,用于评估单轴和多轴比例和非比例疲劳负载下的疲劳寿命。基于Farahani的多轴疲劳损伤模型的提议的近似方法考虑了加载周期期间的临界平面取向,以及它们上的各个损伤参数的值。所提出的方法的唯一性在于它认为它认为每个临界平面方向对物质损坏的加权贡献。相对加权因子取决于每个关键平面的每个临界平面的偏差,其中损伤参数在疲劳负载循环期间表现出它们的最大值。在此,研究了几种低,中和高循环疲劳载荷病例。诱导的弹性塑料应力 - 应变状态通过各自的有限元分析(FEA)近似。若干实验疲劳数据来自STE460钢合金薄壁块型样本的单轴和多轴疲劳试验已被用于验证模型的计算精度。实验和计算疲劳生活的比较确认了所有案例中检查的疲劳寿命计算精度。

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