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Analytical solutions for some defect problems in 1D hexagonal and 2D octagonal quasicrystals

机译:一维六角形和二维八边形准晶体中某些缺陷问题的解析解

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We study some typical defect problems in one-dimensional (1D) hexagonal and two-dimensional (2D) octagonal quasicrystals. The first part of this investigation addresses in detail a uniformly moving screw dislocation in a 1D hexagonal piezoelectric quasicrystal with point group 6mm. A general solution is derived in terms of two functions φ 1, φ 2, which satisfy wave equations, and another harmonic function φ 3. Elementary expressions for the phonon and phason displacements, strains, stresses, electric potential, electric fields and electric displacements induced by the moving screw dislocation are then arrived at by employing the obtained general solution. The derived solution is verified by comparison with existing solutions. Also obtained in this part of the investigation is the total energy of the moving screw dislocation. The second part of this investigation is devoted to the study of the interaction of a straight dislocation with a semi-infinite crack in an octagonal quasicrystal. Here the crack penetrates through the solid along the period direction and the dislocation line is parallel to the period direction. We first derive a general solution in terms of four analytic functions for plane strain problem in octagonal quasicrystals by means of differential operator theory and the complex variable method. All the phonon and phason displacements and stresses can be expressed in terms of the four analytic functions. Then we derive the exact solution for a straight dislocation near a semi-infinite crack in an octagonal quasicrystal, and also present the phonon and phason stress intensity factors induced by the straight dislocation and remote loads.
机译:我们研究了一维(1D)六角形和二维(2D)八角形准晶体中的一些典型缺陷问题。本研究的第一部分详细讨论了点群为6mm的一维六边形压电准晶体中均匀移动的螺杆位错。根据满足波动方程的两个函数φ 1 ,φ 2 和另一个谐波函数φ 3 得出一般解。然后,通过使用所获得的一般解,得出声子和声子位移,应变,应力,电势,电场和电位移所引起的基本表达式。通过与现有解决方案进行比较来验证派生的解决方案。在这部分研究中还获得了活动螺杆位错的总能量。本研究的第二部分专门研究八角形准晶中直位错与半无限裂纹的相互作用。这里,裂纹沿着周期方向穿透固体,并且位错线平行于周期方向。我们首先借助微分算子理论和复变数方法,针对八边形准晶体的平面应变问题,用四个解析函数导出了一个一般解。所有的声子和声子位移和应力都可以用四个解析函数表示。然后我们推导了八边形准晶体中半无限裂纹附近的直位错的精确解,并给出了由直位错和偏载引起的声子和相子应力强度因子。

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