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Multiscale fatigue crack growth modelling for welded stiffened panels

机译:焊接加筋板的多尺度疲劳裂纹扩展建模

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摘要

The influence of welding residual stresses in stiffened panels on effective stress intensity factor (SIF) values and fatigue crack growth rate is studied in this paper. Interpretation of relevant effects on different length scales such as dislocation appearance and microstruc-tural crack nucleation and propagation is taken into account using molecular dynamics simulations as well as a Tanaka-Mura approach for the analysis of the problem. Mode I SIFs, K_I, were calculated by the finite element method using shell elements and the crack tip displacement extrapolation technique. The total SIF value, K_(tot), is derived by a part due to the applied load, K_(appl) and by a part due to welding residual stresses, K_(res). Fatigue crack propagation simulations based on power law models showed that high tensile residual stresses in the vicinity of a stiffener significantly increase the crack growth rate, which is in good agreement with experimental results.
机译:研究了加筋板焊接残余应力对有效应力强度因子(SIF)值和疲劳裂纹扩展率的影响。使用分子动力学模拟以及Tanaka-Mura方法来分析问题,解释了在不同长度尺度上的相关影响,例如位错的出现,微结构裂纹的成核和扩展。使用壳单元和裂纹尖端位移外推法,通过有限元法计算出模式I SIF,K_I。总SIF值K_(tot)由施加载荷K_(appl)的一部分和焊接残余应力K_(res)的一部分得出。基于幂律模型的疲劳裂纹扩展模拟表明,在加强筋附近的高拉伸残余应力显着提高了裂纹扩展速率,这与实验结果非常吻合。

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