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Fatigue life prediction under cyclic thermal loads using the boundary elements method for two-dimensional problems

机译:循环热负荷下疲劳寿命的边界元二维问题预测

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This study describes a sub-domain boundary element procedure for predicting the fatigue life of elastic media under cyclic transient thermal loads. The procedure assumes an initial crack in a two-dimensional medium, and evaluates the crack extension along a path defined by the maximum circumferential stress criterion. Partial closure may occur on the growing crack faces due to thermal loading. Appropriate thermal and mechanical boundary conditions are imposed on the numerical model to account for the contact state. The analysis requires solutions to the equations of quasi-static thermo-elasticity, and uses an iterative procedure to detect the contact region. We investigate cases of pure opening or mixed mode fracture, demonstrating the effects of crack closure on the predicted fatigue life. We compare the obtained results with those of other publications.
机译:这项研究描述了一个子域边界元程序,用于预测弹性介质在周期性瞬态热载荷下的疲劳寿命。该过程假定二维介质中存在初始裂纹,并评估沿最大圆周应力准则所定义的路径的裂纹扩展。由于热负荷,在不断增长的裂纹面上可能会发生部分封闭。将适当的热和机械边界条件施加到数值模型上以说明接触状态。该分析需要解决准静态热弹性方程,并使用迭代程序来检测接触区域。我们研究了纯开裂或混合模式断裂的情况,证明了裂纹闭合对预测疲劳寿命的影响。我们将获得的结果与其他出版物进行比较。

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