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Fatigue damage analysis of welded structures based on continuum damage mechanics

机译:基于连续损伤力学的焊接结构疲劳损伤分析

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In this study, the fatigue damage analysis and life prediction of welded structures are carried out by using continuum damage mechanics. For high cycle fatigue, it is considered that plastic deformation and damage occurs at a microscopic scale. Therefore, a two-scale model presented by Lemaitre is introduced to evaluate the high cycle fatigue damage evolution. As it is difficult to identify the parameters directly at the micro scale, the identification method is proposed to obtain the reliable material parameters for weldment. In order to consider the effect of residual stress on fatigue behavior of welded joints, the inherent strain method is applied to determine the residual stress. The analytical results by the proposed method are compared to experimental results and it is confirmed that the proposed method could give the reliable fatigue lifetime of welded structures.
机译:在这项研究中,通过使用连续损伤力学进行焊接结构的疲劳损伤分析和寿命预测。对于高循环疲劳,认为塑性变形和损坏发生在显微尺度。因此,引入了LEMAITRE提出的两种规模模型,以评估高循环疲劳损伤的进化。由于难以直接识别微尺度的参数,提出了识别方法以获得可靠的焊接材料参数。为了考虑残余应力对焊接接头疲劳行为的影响,应用固有的应变方法来确定残余应力。通过该方法的分析结果与实验结果进行比较,确认所提出的方法可以提供焊接结构的可靠疲劳寿命。

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