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Finite element modelling and analysis of crack shape evolution in mode-I fatigue Middle Cracked Tension specimens

机译:模态I疲劳中裂纹拉伸试样裂纹形态演化的有限元建模与分析

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摘要

A numerical procedure was employed to study the shape evolution of fatigue cracks in Middle Cracked Tension specimens. This iterative procedure consists of a 3D finite element analysis to obtain the displacement field in the cracked body, calculation of stress intensity factors along crack front and definition of local crack advances considering the Paris law. Numerical predictions were compared with experimental crack shapes with a good agreement. The evolution of crack shape was analysed for different propagation conditions considering robust dependent parameters. Two main propagation stages were identified: an initial transient stage highly dependent on initial crack shape and a stable stage where the crack follows preferred paths. Mathematical models were proposed for transient and stable stages consisting of exponential and polynomial functions, respectively. The transition between both stages was defined considering two criteria: the rate of shape variation and the distance to stable shape. Finally, the crack shape change was linked with the distribution of stress intensity factor along crack front.
机译:采用数值方法研究了中裂拉伸试样中疲劳裂纹的形状演变。该迭代过程包括3D有限元分析,以获取裂纹体中的位移场,计算沿裂纹前沿的应力强度因子,并根据巴黎定律定义局部裂纹的进展。将数值预测与实验裂纹形状进行了比较,吻合得很好。考虑了鲁棒相关参数,分析了在不同传播条件下裂纹形状的演变。确定了两个主要的传播阶段:一个高度依赖于初始裂纹形状的初始瞬态阶段和一个裂纹遵循优选路径的稳定阶段。提出了分别由指数函数和多项式函数组成的瞬态和稳定阶段的数学模型。定义两个阶段之间的过渡时要考虑两个标准:形状变化率和到稳定形状的距离。最后,裂纹形状的变化与应力强度因子沿裂纹前沿的分布有关。

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  • 作者

    Branco R.; Antunes F. V.;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 eng
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