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The elasto-plastic Point Method to estimate fatigue lifetime of notched metallic materials under variable amplitude multiaxial fatigue loading

机译:可变幅度多轴疲劳负荷下抑制金属材料疲劳寿命的弹塑性点法

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The present paper deals with the formulation and implementation of a novel fatigue lifetime estimation technique suitable for designing notched components against multiaxial fatigue. This fatigue assessment procedure was devised by combining the Modified Manson-Coffin Curve Method and the Shear Strain-Maximum Variance Method with the elasto-plastic Point Method. The accuracy of the approach being proposed was checked against a large number of experimental results that were generated by testing notched cylindrical samples of medium-carbon steel En8. These tests were run under proportional/non-proportional constant/variable amplitude biaxial loading, with the effect of non-zero mean stresses and different frequencies between the axial and torsional stress/strain components being also investigated. The results from this validation exercise demonstrate that the novel multiaxial fatigue assessment methodology being proposed is highly accurate, with its systematic usage resulting in predictions falling within an error factor of 2. This remarkable level of accuracy is very promising especially in light of the fact that this approach can be applied by directly post-processing the results from elasto-plastic Finite Element (FE) models solved using commercial codes.
机译:本文涉及一种适用于设计缺口组分的新型疲劳寿命估计技术的制定和实施。通过将改进的Manson-Coffin曲线方法和剪切菌株 - 最大方差方法与弹性塑料点法相结合,设计了这种疲劳评估程序。检查所提出的方法的准确性是通过测试中碳钢EN8的缺口圆柱样品产生的大量实验结果检查。这些测试在比例/非比例常数/可变幅度幅度下进行,具有非零平均应力和轴向和扭转应力/应变组分之间的不同频率的影响。该验证练习的结果表明,提出的新型多轴疲劳评估方法是高度准确的,其系统使用导致预测在错误因子的错误因子内。这种显着的准确性水平非常有希望,特别是鉴于这一事实这种方法可以通过直接在使用商业代码解决的弹塑性有限元(FE)模型的结果来应用。

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