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径向非均匀压电介质中圆孔对SH波的散射
引用本文:张希萌,齐辉,孙学良.径向非均匀压电介质中圆孔对SH波的散射[J].爆炸与冲击,2017,37(3):464-470.
作者姓名:张希萌  齐辉  孙学良
作者单位:哈尔滨工程大学航天与建筑工程学院,黑龙江 哈尔滨 150001
基金项目:黑龙江自然科学基金项目
摘    要:利用复变函数理论对SH波作用下含圆孔径向非均匀压电介质的反平面动力特性进行了研究。压电介质的密度沿径向按幂函数形式变化,但压电参数、弹性参数、介电参数均为常数。利用变量替换法将非均匀压电介质的变系数波动方程组转化为标准的Helmholtz方程组,得到了满足边界条件的波函数解析表达式。通过数值算例分析了入射角度、入射波频率、幂次等对应力集中系数和电场强度集中系数的影响,并与已有文献进行比较。结果表明,某些参数组合下,动应力集中系数与电场强度集中系数均随幂次增大而增大。

关 键 词:径向非均匀压电介质    反平面动力特征    SH波    动应力集中系数    电场强度集中系数
收稿时间:2015-11-23

Scattering of SH-wave by a circular cavity in radial inhomogeneous piezoelectric medium
Zhang Ximeng,Qi Hui,Sun Xueliang.Scattering of SH-wave by a circular cavity in radial inhomogeneous piezoelectric medium[J].Explosion and Shock Waves,2017,37(3):464-470.
Authors:Zhang Ximeng  Qi Hui  Sun Xueliang
Institution:College of Aerospace and Civil Engineering, Harbin Engineering University, Harbin 150001, Heilongjiang, China
Abstract:The dynamic anti-plane behavior of the radial inhomogeneous piezoelectric medium with a circular cavity under the SH-wave was investigated using the complex function theory.It was assumed that the density of the piezoelectric medium varied as a power-law function on the radial distance but the elastic parameters,the piezoelectric parameters,and the dielectric parameters all remained as constants.The wave equations of the inhomogeneous piezoelectric medium were converted to the standard Helmholtz equations by variable substitution and the analytical expression of the wave function satisfying the boundary condition was obtained.The influence of the incident angle,the frequency of incident wave and the power of the power-law function,etc.on the dynamic stress concentration factor and electric field intensity concentration factor was analyzed and compared with the existing references in the calculated example.The numerical results show that the values of the dynamic stress concentration factor and the electric field intensity concentration factor increase as the power increases with combination of certain parameters.
Keywords:radial inhomogeneous piezoelectric medium  dynamic anti-plane behavior  SH wave  dynamic stress concentration factor  electric field intensity concentration factor
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