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Thermal fracture as a framework for quasi-static crack propagation

机译:热断裂作为准静态裂纹扩展的框架

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We address analytically and numerically the problem of crack path prediction in the model system of a crack propagating under thermal loading. We show that one can explain the instability from a straight to a wavy crack propagation by using only the principle of local symmetry and the Griffith criterion. We then argue that the calculations of the stress intensity factors can be combined with the standard crack propagation criteria to obtain the evolution equation for the crack tip within any loading configuration. The theoretical results of the thermal crack problem agree with the numerical simulations we performed using a phase field model. Moreover, it turns out that the phase-field model allows to clarify the nature of the transition between straight and oscillatory cracks which is shown to be supercritical.
机译:我们在分析和数值上解决了在热负荷下传播的裂纹模型系统中裂纹路径预测的问题。我们表明,仅使用局部对称原理和格里菲斯准则,就可以解释从直线裂纹扩展到波浪裂纹扩展的不稳定性。然后,我们认为应力强度因子的计算可以与标准裂纹扩展标准相结合,以获得在任何载荷配置下裂纹尖端的演化方程。热裂纹问题的理论结果与我们使用相场模型进行的数值模拟一致。此外,事实证明,相场模型可以阐明直线裂纹和振荡裂纹之间的过渡特性,这是超临界的。

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