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An Atomistic-to-Continuum Analysis of Crystal Cleavage in a Two-Dimensional Model Problem

机译:二维模型问题中晶体分裂的原子到连续性分析

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A two-dimensional atomic mass spring system is investigated for critical fracture loads and its crack path geometry. We rigorously prove that, in the discreteto-continuum limit, the minimal energy of a crystal under uniaxial tension leads to a universal cleavage law and energy minimizers are either homogeneous elastic deformations or configurations that are completely cracked and do not store elastic energy. Beyond critical loading, the specimen generically cleaves along a unique optimal crystallographic hyperplane. For specific symmetric crystal orientations, however, cleavage might fail. In this case a complete characterization of possible limiting crack geometries is obtained.
机译:研究了二维原子质量弹簧系统的临界断裂载荷及其裂纹路径几何形状。我们严格证明,在离散到连续谱的极限下,单轴张力下晶体的最小能量会导致普遍的分裂规律,而能量最小化剂要么是均匀的弹性变形,要么是完全破裂且不存储弹性能的构造。除临界载荷外,试样通常沿唯一的最佳晶体超平面劈裂。但是,对于特定的对称晶体取向,切割可能会失败。在这种情况下,可以获得可能的极限裂纹几何形状的完整特征。

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