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Crack Path Simulation by the MVCCI Method: Different Approaches and Applications

机译:MVCCI方法的裂缝路径仿真:不同的方法和应用

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The modified virtual crack closure integral (MVCCI) method has been proved to be a highly effective numerical procedure for the analysis of various crack problems in linear elasticity. In the present paper it will be shown that the MVCCI method in conjunction with multiple mesh analysis can also readily be utilised for the numerical prediction of curved fatigue crack growth under proportional loading conditions. Further, it will be shown that the common computer-aided two-dimensional crack path prediction can be considerably improved in accuracy by using a predictor-corrector procedure. In combination with the MVCCI method, this results in a step-by-step parabolic approximation of the simulated crack path. By this method, both the new locus of the crack tip and the slope of the crack path at this point can be computed simultaneously by the SIFs for only one virtual tangential crack extension with respect to the previous step. In order to evaluate the validity and efficiency of the proposed higher order crack path simulation method in relation to the well-established basic strategies, experiments of curved fatigue crack growth are carried out with specially designed specimens under proportional lateral force bending. In all the cases considered, the computationally predicted crack trajectories show an excellent agreement with the different types of curved cracks that are obtained in the experiments as a function of the position of crack initiation.
机译:已经证明修改的虚拟裂缝闭合积分(MVCCI)方法是对线性弹性分析各种裂缝问题的高效数值过程。在本文中,将表明,与多种网格分析结合的MVCCI方法也可以容易地用于比例负载条件下弯曲疲劳裂纹生长的数值预测。此外,将示出通过使用预测器校正器程序可以精确地提高公共计算机辅助二维裂缝路径预测。结合MVCCI方法,这导致模拟裂缝路径的逐步抛物面近似。通过这种方法,可以通过SIFS同时计算裂缝尖端的新轨迹和此时的裂缝路径的斜率仅由相对于前一步骤同时计算一个虚拟切向裂纹扩展。为了评估所提出的高阶裂纹路径模拟方法的有效性和效率与良好的基本策略相关,曲线疲劳裂纹生长的实验在比例侧向力弯曲下进行了专门设计的试样。在考虑的所有情况下,计算预测的裂缝轨迹与在实验中获得的不同类型的曲线裂缝表现出作为裂纹引发的位置的函数的函数。

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