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On radiation-free transonic motion of cracks and dislocations

机译:裂纹和位错的无辐射跨音速运动

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Eshelby has shown that a glide dislocation can move without radiation of energy at sq root2 of the shear wave speed. It is also known that the same velocity plays a special role in shear crack propagation. This result has not received wide attention in the past due to lack of experiments and numerical simulations of transonic defects. Recent experiments on transonic shear fracture and molecular dynamics simulations of dislocation motion have stimulated renewed interest in the behavior of cracks and dislocations beyond the subsonic regime. We attempt to provide a unified treatment of transonic cracks and dislocations by elaborating on the fundamental result of EsheIby. We develop a unified treatment of radiation-free transonic motion of both cracks and dislocations. We use Stroh's method to generalize the Eshelby theorem to orthotropic and anisotropic elastic solids. In the case of orthotropic solids, we provide a proof of existence of the radiation-free speed. In the case of general anisotropic solids, there are three wave speeds c_3 < c_2 < c1 in any given crystal orientation at which a moving defect is considered. In the first transonic regime c_3 < v < c_2, we show that there always exists a radiation-free state for any given velocity v of a moving defect. In the second transonic regime c_2 < v < cl, the existence of radiation-free states appears to depend on both the symmetry properties of the material and the defect orientation.
机译:埃舍尔比(Eshelby)已显示,滑移位错可以在剪切波速度平方根的情况下在没有能量辐射的情况下移动。众所周知,相同的速度在剪切裂纹扩展中起着特殊的作用。由于缺乏跨音速缺陷的实验和数值模拟,该结果在过去并未受到广泛关注。跨音速剪切断裂的最新实验以及位错运动的分子动力学模拟激发了人们对亚音速范围以外的裂纹和位错行为的新兴趣。我们试图通过详细阐述EsheIby的基本结果来提供对跨音速裂纹和位错的统一处理。我们开发了裂缝和位错的无辐射跨音速运动的统一处理。我们使用Stroh方法将Eshelby定理推广为正交各向异性和各向异性弹性固体。对于正交各向异性固体,我们提供了无辐射速度存在的证明。在一般的各向异性固体的情况下,在任何给定的晶体取向上,考虑到运动缺陷,存在三种波速c_3

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