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Fatigue Failure Analysis using the Theory of Critical Distance

机译:使用临界距离理论的疲劳失效分析

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This paper explores the initial potential of theory of critical distance (TCD) which offers essential fatigue failure prediction in engineering components. The intention is to find the most appropriate TCD approach for a case of multiple stress concentration features in future research. The TCD is based on critical distance from notch root and represents the extension of linear elastic fracture mechanics (LEFM) principles. The approach is allowing possibilities for fatigue limit prediction based on localized stress concentration, which are characterized by high stress gradients. Using the finite element analysis (FEA) results and some data from literature, TCD applications is illustrated by a case study on engineering components in different geometrical notch radius. Further applications of TCD to various kinds of engineering problems are discussed.
机译:本文探讨了临界距离理论的初始潜力(TCD),其为工程部件提供了基本疲劳故障预测。目的是找到未来研究中多重压力集中特征的最合适的TCD方法。 TCD基于距离缺口根的临界距离,代表线性弹性骨折力学(LEFM)原理的延伸。该方法允许基于局部应力浓度的疲劳极限预测的可能性,其特征在于高应力梯度。使用有限元分析(FEA)结果和来自文献的一些数据,通过不同几何缺口半径的工程组件的案例研究说明了TCD应用。讨论了TCD对各种工程问题的进一步应用。

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