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Irradiation of an elastic plate by a finite-amplitude sound beam with applications to nondestructive evaluation.

机译:有限振幅声束辐照弹性板及其在无损评估中的应用。

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摘要

This dissertation describes an investigation of nonlinear effects associated with the interaction of ultrasound with plates. The overriding goal is to assess the potential for using immersion techniques to measure the nonlinear acoustical parameters of plates. Three measurement configurations are described, with both theory and experiment reported. Effects of weak nonlinearity are included in the theoretical models. In the first configuration, the goal is to characterize the nonlinear elastic response of an isotropic, homogeneous plate. Plate resonances were used to enhance the nonlinear acoustical response. An experiment was performed with an aluminum plate in water, but nonlinearity due to wave propagation in the plate could not be distinguished from the nonlinear effects associated with propagation of sound through the surrounding fluid. In the second configuration, the interaction of ultrasound with bonded plates is considered. In the theoretical model, nonlinear effects are assumed to occur only at the bond. Particular attention is paid to changes in the reflection and transmission coefficients, as well as the second harmonic radiated from the plate, as a function of bond stiffness. Experiments were performed using bonded aluminum and acrylic plates. Measurements are in qualitative agreement with linear theory, but nonlinear effects at the bond were not observed. In the first two configurations, nonlinearity within the plate is taken into account, but not diffraction of the ultrasound beams. In the third configuration, the interaction of a sound beam with a plate at oblique incidence is examined. Here, beam diffraction is taken into account, but plate nonlinearity is considered to be negligible. The theoretical model is based on an angular spectrum method, and accounts for Lamb wave propagation within the plate. At Lamb excitation angles, nonspecular effects occur in the reflected and transmitted sound beams. Second harmonic generation is assumed to occur only in the fluid. Experiments were performed on an aluminum plate in water, and quantitative agreement is found between theory and measurements.
机译:本文介绍了超声与板相互作用的非线性效应的研究。首要目标是评估使用沉浸技术测量板的非线性声学参数的潜力。描述了三种测量配置,并报告了理论和实验。理论模型中包括了弱非线性的影响。在第一种配置中,目标是表征各向同性均质板的非线性弹性响应。板共振用于增强非线性声学响应。用铝板在水中进行了实验,但是由于波在板中的传播而引起的非线性无法与与声音通过周围流体的传播相关的非线性效应区分开。在第二种配置中,考虑了超声与粘合板的相互作用。在理论模型中,假定非线性效应仅在键处发生。特别要注意的是,反射和透射系数的变化以及从板辐射的二次谐波的变化取决于粘结刚度。使用粘合的铝板和丙烯酸板进行实验。测量与线性理论在质量上一致,但是未观察到键的非线性效应。在前两种配置中,考虑了板内的非线性,但不考虑超声束的衍射。在第三构造中,检查了声束与板在倾斜入射时的相互作用。在此,考虑了束衍射,但是认为板非线性是可以忽略的。理论模型基于角谱方法,并解释了兰姆波在板内的传播。在兰姆激发角处,反射和透射的声束中发生非镜面效应。假定二次谐波的产生仅在流体中发生。实验是在水中的铝板上进行的,理论和测量结果之间存在定量一致性。

著录项

  • 作者

    Younghouse, Steven Joseph.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Physics Acoustics.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 p.4982
  • 总页数 211
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 声学;
  • 关键词

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