半空间双相压电介质垂直边界附近圆孔对SH波的散射

张希萌 齐辉 项梦

张希萌, 齐辉, 项梦. 半空间双相压电介质垂直边界附近圆孔对SH波的散射[J]. 爆炸与冲击, 2017, 37(4): 591-599. doi: 10.11883/1001-1455(2017)04-0591-09
引用本文: 张希萌, 齐辉, 项梦. 半空间双相压电介质垂直边界附近圆孔对SH波的散射[J]. 爆炸与冲击, 2017, 37(4): 591-599. doi: 10.11883/1001-1455(2017)04-0591-09
Zhang Ximeng, Qi Hui, Xiang Meng. Scattering of SH-wave by a circular cavity near the vertical boundary in the piezoelectric bi-material half-space[J]. Explosion And Shock Waves, 2017, 37(4): 591-599. doi: 10.11883/1001-1455(2017)04-0591-09
Citation: Zhang Ximeng, Qi Hui, Xiang Meng. Scattering of SH-wave by a circular cavity near the vertical boundary in the piezoelectric bi-material half-space[J]. Explosion And Shock Waves, 2017, 37(4): 591-599. doi: 10.11883/1001-1455(2017)04-0591-09

半空间双相压电介质垂直边界附近圆孔对SH波的散射

doi: 10.11883/1001-1455(2017)04-0591-09
基金项目: 

黑龙江省自然科学基金项目 A201404

详细信息
    作者简介:

    张希萌(1989-),男,博士研究生

    通讯作者:

    齐辉,qihui205@sina.com

  • 中图分类号: O343.4

Scattering of SH-wave by a circular cavity near the vertical boundary in the piezoelectric bi-material half-space

  • 摘要: 利用“Green函数法”和“镜像法”对垂直边界附近含圆孔的半空间双相压电介质对SH波的散射问题进行分析,得到其稳态解。利用镜像法得到满足水平边界应力自由与电位移自由的波函数解析表达式。根据垂直边界连续性条件,利用“契合法”建立第一类Fredholm型积分方程组,得到圆孔周边的动应力集中系数与电场强度集中系数解析表达式。数值算例分析了入射波频率、入射角度、介质参数等对动应力集中系数与电场强度集中系数的影响,并与已有文献进行比较。计算表明,高频SH波垂直入射危害较大。
  • 图  1  含圆孔的半空间双相压电介质模型

    Figure  1.  Model of a piezoelectric bi-material in half space with a circular cavity

    图  2  受线源荷载作用的直角域模型

    Figure  2.  Right-angle plane model impacted by a line source force

    图  3  含圆孔的半空间双相压电介质垂直界面的契合

    Figure  3.  Conjunction of piezoelectric bi-material vertical interface in half space with a circular cavity

    图  4  方法验证(与文献[12-13]比较)

    Figure  4.  Vertification of the present method (Compared to reference [12-13])

    图  5  SH波水平入射时圆孔周边动应力集中系数随λ的分布

    Figure  5.  DSCF around circular cavity edge vs. λ by horizontal SH-wave

    图  6  SH波水平入射时圆孔周边动应力集中系数随参数ka的分布

    Figure  6.  DSCF around circular cavity edge vs. ka by horizontal SH-wave

    图  7  SH波水平入射时圆孔周边动应力集中系数随λ的分布

    Figure  7.  DSCF around circular cavity edge vs. λ by horizontal SH-wave

    图  8  SH波水平入射时圆孔周边动应力集中系数随λ的分布

    Figure  8.  DSCF around circular cavity edge vs. λ by horizontal SH-wave

    图  9  SH波水平入射时圆孔周边应力集中系数随参数ka的变化

    Figure  9.  DSCF around circular cavity edge vs. ka by horizontal SH-wave

    图  10  SH波以不同角度入射时圆孔周边电场强度集中系数的分布

    Figure  10.  EFICF around circular cavity edge by SH-wave with different incident angles

    图  11  SH波水平入射时圆孔周边电场强度集中系数随参数ka的分布

    Figure  11.  EFICF around circular cavity edge vs.ka by horizontal SH-wave

    图  12  SH波水平入射时电场强度集中系数随参数ka的分布

    Figure  12.  Variation of EFICF around circular cavity edge vs.ka by horizontal SH-wave

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出版历程
  • 收稿日期:  2015-11-24
  • 修回日期:  2016-06-27
  • 刊出日期:  2017-07-25

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