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A new continuum damage mechanics-based two-scale model for high-cycle fatigue life prediction considering the two-segment characteristic in S-N curves

机译:考虑S-N曲线两段特性的基于连续介质损伤力学的两尺度模型用于高周疲劳寿命预测

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摘要

In this study, we propose a new two-scale fatigue model based on continuum damage mechanics. A representative volume element (RVE) consisting of microinclusions and a matrix is constructed. Further, damage-coupled constitutive equations are derived. The degradation in the mechanical properties of the RVE is determined by the damaged inclusions and matrix using the Mori-Tanaka scheme. A numerical calculation of the fatigue lives of notched specimens is executed. This new model predicts high-cycle fatigue (HCF) life more effectively, considering the two-segment characteristic of S-N curves of smooth specimens. This study provides novel insights into the evolution mechanism of HCF damage.
机译:在这项研究中,我们提出了一种基于连续损伤机理的新的两级疲劳模型。构建了由微包裹体和基质组成的代表性体积元素(RVE)。此外,导出了损伤耦合的本构方程。 RVE的机械性能下降是由使用Mori-Tanaka方案的损坏的夹杂物和基体确定的。对缺口试样的疲劳寿命进行数值计算。考虑到光滑试样的S-N曲线的两段特性,该新模型可以更有效地预测高周疲劳(HCF)寿命。这项研究为HCF损伤的进化机制提供了新颖的见解。

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