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Crack Nucleation in Phase Field Fracture Models

机译:相场断裂模型中的裂纹成核

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Phase field fracture models are able to reproduce a wide range of phenomena,which are observed in fracture experiments.These phenomena include the nucleation of new cracks in initially undamaged material.However,none of the material parameters of a phase field fracture model is directly connected to the fracture strength of the material.Thus,the critical stress for the nucleation of new cracks is not a priori clear.Crack nucleation in a phase field fracture model is preceded by a localization of the initially homogeneous crack field in an area surrounding the nucleating crack.For homogeneous problems,it can be shown analytically that the onset of the localization is caused by the loss of stability of the crack-free homogeneous solution of the phase field equations at a certain load level.This critical stability load provides a definition of the fracture stress in the phase field model depending on the stiffness of the material,the cracking resistance and the internal length of the phase field model.The analytical findings are illustrated in finite element simulations of the phase field fracture model.Further numerical investigations analyze the crack nucleation behavior of the phase field model in more complicated scenarios,where analytical stability results are not available.
机译:相场断裂模型能够再现在断裂实验中观察到的多种现象。这些现象包括初始未破坏材料中新裂纹的形核。但是,相场断裂模型的材料参数都没有直接关联因此,对于新裂纹成核的临界应力不是先验的。相场断裂模型中的裂纹成核先于初始均匀裂纹场在成核周围区域的定位。对于均质问题,可以分析地表明,局部化的开始是由于在一定载荷水平下相场方程的无裂纹均质解的稳定性损失而引起的。该临界稳定性载荷提供了一个定义。相场模型中的断裂应力取决于材料的刚度,抗裂性和相的内部长度在相场断裂模型的有限元模拟中说明了分析结果。进一步的数值研究分析了在更复杂的情况下无法获得分析稳定性结果的相场模型的裂纹成核行为。

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