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3D modeling of cleavage crack arrest with a stress criterion

机译:具有应力准则的劈裂裂缝的3D建模

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Thermal shock experiments on precracked discs were carried out in order to study cleavage crack arrest capabilities of one bainitic steel. Two thicknesses of specimen were used. Standard analysis shows no influence of thickness but an influence of the initial crack length on arrest toughness. A local stress criterion based on the maximal principal stress was applied in order to predict brittle crack arrest. 3D finite element models were developed in order to simulate the shape of the crack front. A scatter in critical stress for cleavage crack arrest was introduced through Monte-Carlo simulations and Weibull distribution. The comparison with the experiment is accurate, that shows a good potential of the stress criterion for predicting cleavage crack arrest. The scatter of critical stress influences the regularity of the simulated crack arrest front, but not the crack length. The cleavage crack propagation and arrest could then be simulated by the mean value of the local fracture stress.
机译:为了研究一种贝氏体钢的劈裂开裂能力,在预裂盘上进行了热冲击实验。使用两种厚度的样品。标准分析表明,厚度没有影响,但是初始裂纹长度对阻滞韧性有影响。应用了基于最大主应力的局部应力准则,以预测脆性裂纹的停滞。为了模拟裂纹前沿的形状,开发了3D有限元模型。通过蒙特卡洛模拟和Weibull分布引入了临界应力的分散,以消除裂隙。与实验的比较是准确的,这表明了应力准则在预测劈裂裂纹停滞方面具有良好的潜力。临界应力的散布影响模拟裂纹止裂前沿的规则性,但不影响裂纹长度。然后可以通过局部断裂应力的平均值模拟劈裂裂缝的扩展和阻止。

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