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Analytic solutions of problem about a circular hole with a straight crack in one-dimensional hexagonal quasicrystals with piezoelectric effects

机译:一维带压电效应的六方准晶体中带有直裂纹的圆孔问题的解析解

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The anti-plane shear problem about a circular hole with a straight crack in one-dimensional (1D) hexagonal quasicrystals (QCs) with piezoelectric effects is investigated by means of the complex variable function method and using the technique of conformal mapping. The analytic solutions of the stress intensity factors (SIFs) and the electric displacement intensity factors (EDIFs) with electrically impermeable and permeable conditions were obtained, and these solutions have an important theoretical significance for the engineering application of QCs materials. When the circle radius tends to zero, the present results can be reduced to the cases of the Griffith crack. In the absence of the phason field, the obtainable results in this paper agrees well with the results for piezoelectric materials. Numerical analysis is then conducted to discuss the influences of geometric parameters and applied mechanical/electric loads on the field intensity factors and energy release rate. (C) 2015 Elsevier Ltd. All rights reserved.
机译:利用复变函数方法和共形映射技术研究了一维(1D)六方准晶体(QCs)中具有直裂纹的圆形孔的反平面剪切问题。得到了具有电不渗透和可渗透条件的应力强度因子(SIF)和电位移强度因子(EDIF)的解析解,这些解对于QCs材料的工程应用具有重要的理论意义。当圆半径趋于零时,可以将当前结果简化为格里菲斯裂纹的情况。在没有声场的情况下,本文可获得的结果与压电材料的结果非常吻合。然后进行了数值分析,以讨论几何参数和施加的机械/电负载对场强因子和能量释放速率的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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