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Super-Arrhenius dynamics for sub-critical crack growth in two-dimensional disordered brittle media

机译:二维无序脆性介质中亚临界裂纹扩展的超阿里尼乌斯动力学

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摘要

Taking into account stress fluctuations due to thermal noise, we study thermally activated irreversible crack growth in disordered media. The influence of material disorder on sub-critical growth of a single crack in two-dimensional brittle elastic material is described through the introduction of a Gaussian rupture threshold distribution. We derive analytical predictions for crack growth velocity and material lifetime in agreement with direct numerical calculations. It is claimed that crack growth process is inhibited by disorder: velocity decreases and lifetime increases with disorder. More precisely, lifetime is shown to follow a super-Arrhenius law, with an effective temperature theta-theta(d), where theta is related to the thermodynamical temperature and theta(d) to the disorder variance.
机译:考虑到由于热噪声引起的应力波动,我们研究了无序介质中热活化的不可逆裂纹的增长。通过引入高斯断裂阈值分布,描述了材料无序对二维脆性弹性材料中单个裂纹的亚临界生长的影响。与直接数值计算一致,我们得出了裂纹扩展速度和材料寿命的分析预测。据称,裂纹扩展过程受到无序性的抑制:速度随无序性降低而寿命增加。更准确地说,生命周期遵循超级阿累尼乌斯定律,具有有效温度theta-theta(d),其中theta与热力学温度相关,theta(d)与无序变化相关。

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