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首页> 外文期刊>Advances in materials science and engineering >Nonuniformly Loaded Stack of Antiplane Shear Cracks in One-Dimensional Piezoelectric Quasicrystals
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Nonuniformly Loaded Stack of Antiplane Shear Cracks in One-Dimensional Piezoelectric Quasicrystals

机译:一维压电准晶体中反平面剪切裂纹的非均匀加载叠层

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摘要

Representations in a closed form are derived, using an extension to the method of dislocation layers, for the phonon and phason stress and electric displacement components in the deformation of one-dimensional piezoelectric quasicrystals by a nonuniformly loaded stack of parallel antiplane shear cracks. Their dependence upon the polar angle in the region close to the tip of a crack is deduced, and the field intensity factors then follow. These exhibit that the phenomenon of crack shielding is dependent upon the relative spacing of the cracks. The analogous analyses, that have not been given previously, involving non-piezoelectric or non-quasicrystalline or simply elastic materials can be straightforwardly considered as special cases. Even when the loading is uniform and the crack is embedded in a purely elastic isotropic solid, no explicit representations have been available before for the components of the field at points other than directly ahead of a crack. Typical numerical results are graphically displayed.
机译:使用位错层方法的扩展,得出闭合形式的表示形式,用于由非均匀加载的平行反平面剪切裂纹堆栈引起的一维压电准晶体变形中的声子和声子应力以及电位移分量。推论出它们对靠近裂纹尖端的区域中的极角的依赖性,然后是场强因子。这些表明裂纹屏蔽现象取决于裂纹的相对间距。以前没有给出的涉及非压电或非准晶体或简单的弹性材料的类似分析可以直接视为特殊情况。即使当载荷是均匀的并且裂纹被嵌入到纯弹性的各向同性固体中时,对于场的分量,除了在裂纹正前方之外,还没有明确的表示形式。典型的数值结果以图形方式显示。

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