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Interaction of acoustic waves and anisotropic multilayered composite plates immersed in water.

机译:声波与浸入水中的各向异性多层复合板的相互作用。

摘要

In this dissertation a theoretical analysis of elastic wave propagation in multilayered anisotropic composite plates is presented. Reflection and transmission coefficients as a function of the plane wave incident angle and ultrasonic wave frequency are computed for single layered and multilayered plates. From the minima of the reflection spectra one can obtain the Lamb wave modes. Computation of the displacement and stress components inside the plate show that different Lamb wave modes excite different levels of energy at various depths of the plate. These modes can be effectively used to detect and image defects in different layers of a plate. Theoretical predictions have been qualitatively verified experimentally by imaging internal defects inside different layers of a multilayered composite plate by different Lamb wave modes. Numerical precision problems associated with such analyses have been completed avoided for an unidirectional composite plate by solving the problem by symbolic programming instead of conventional numerical matrix manipulation technique.
机译:本文提出了多层各向异性复合板中弹性波传播的理论分析。对于单层和多层板,计算了作为平面波入射角和超声波频率的函数的反射和透射系数。从反射光谱的最小值可以得到兰姆波模式。板内部位移和应力分量的计算表明,不同的兰姆波模式在板的不同深度处激发不同水平的能量。这些模式可以有效地用于检测和成像板的不同层中的缺陷。通过使用不同的兰姆波模式对多层复合板不同层内部的内部缺陷进行成像,已通过实验对定性理论进行了定性验证。通过使用符号编程代替常规数值矩阵操作技术解决该问题,已经避免了单向复合板与此类分析相关的数值精度问题。

著录项

  • 作者

    Yang Wei;

  • 作者单位
  • 年度 1994
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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