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Analysis of the failure at notches and cavities in quasi-brittle media using the Thick Level Set damage model and comparison with the coupled criterion

机译:使用厚水平设定损伤模型分析了准脆性介质中的凹口和空腔的故障,并与耦合标准的比较

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摘要

The failure of quasi-brittle specimen weakened by sharp or blunted notches and cavities is analyzed under quasi-static loading. The load at failure is obtained with the Thick Level Set (TLS) damage modeling. In this model, the damage gradient is bounded implying that the minimal distance between a point where damage 0 (sound material) to 1 (fully damaged) is an imposed characteristic length in the model. This length plays an important role on the damage evolution and on the failure load. The paper shows that the TLS predictions are relevant. A comparison with the coupled criterion (CC) of Leguillon (2002) is given. A good agreement is obtained for cavities and V-notches provided that the characteristic length of Irwin is small compared to the notch depth (condition for the applicability of the CC criterion). A comparison with failure loads obtained experimentally is also given. In the numerical simulations, uniform stresses are imposed at infinity using a new finite element mapping technique (Cloirec 2005).
机译:在准静态载荷下分析了尖锐或垂直的凹口和腔体削弱的准脆性标本的失败。使用厚级别(TLS)损坏建模获得故障的负载。在该模型中,损坏梯度暗示暗示损坏0(声音)至1(完全损坏)的点之间的最小距离是模型中的强加的特征长度。这一长度对损坏进化和故障负荷作出重要作用。本文表明TLS预测是相关的。给出了与Leguillon(2002)的耦合标准(CC)的比较。对于空腔和V-缺口,获得了良好的一致性,条件是与凹口深度相比,IRWIN的特征长度小(CC标准适用的条件)小。还给出了通过实验获得的故障载荷的比较。在数值模拟中,使用新的有限元映射技术(Cloirec 2005)在无限远处施加均匀的应力。

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