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Modeling of acoustic-emission wave propagation in layered media.

机译:声发射波在分层介质中传播的建模。

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摘要

This study proposes a model for acoustic-emission (AE) wave propagation in a layered medium, which can be used for damage detection in structural health monitoring in general, and crack identification in non-destructive testing and evaluation for materials in particular. In the model, the materials are characterized by piecewise, layered media with one surface as free and the other as free, fixed or infinite. The AE waves are generated by dislocation over a fault area located in one of the layers or at a layer-to-layer interface.;In this study, three-dimensional (3D) wave motion in each homogeneous, isotropic and linearly-elastic layer is solved with the use of an integral transformation approach. The 3D wave motions are decomposed into 2D wave motion with coupled P-SV waves and 1D with SH waves in a transformed, frequency-wavenumber domain, where P and S indicate respectively compression and shear waves, SH denotes a shear wave component with particle motion direction parallel to the free surface, and SV perpendicular to SH motion direction. Wave reflection and transmission at layer-to-layer interfaces, boundaries and in a layered medium are derived in terms of wave scattering matrices in a transformed domain. A closed-form solution for wave responses to a point, unit-impulse dislocation is derived in the transformed domain, which can then be used to construct the wave responses to a finite time-dependent dislocation source and converted in a time-space domain.;With the model, this study examines AE wave propagation features in general, and wave responses at a free surface in particular from the perspective of damage detection. Numerical examples are provided for illustration.
机译:这项研究提出了一种在层状介质中传播声发射(AE)波的模型,该模型可用于一般性的结构健康监测中的损伤检测,尤其是可用于材料的无损检测和评估中的裂纹识别。在模型中,材料的特征是分段的分层介质,其中一个表面为自由表面,另一个表面为自由,固定或无限大。 AE波是由位于其中一层或层到层界面的断层区域上的错位产生的;在本研究中,每个均质,各向同性和线弹性层中的三维(3D)波运动通过使用积分变换方法解决。在变换的频率-波数域中,将3D波运动分解为具有耦合的P-SV波的2D波运动和具有SH波的一维运动,其中P和S分别表示压缩波和剪切波,SH表示具有粒子运动的剪切波分量方向平行于自由表面,SV垂直于SH运动方向。根据变换域中的波散射矩阵,可以得出层与层之间的界面,边界处以及分层介质中的波反射和透射。在变换域中得出对点,单位脉冲位错的波响应的封闭形式解,然后可以将其用于构造对有限时变位错源的波响应,并在时空域中进行转换。 ;使用该模型,本研究从损伤检测的角度检查了AE波的一般传播特征,特别是在自由表面的波响应。提供了数字示例以用于说明。

著录项

  • 作者

    Alamin, Aalhamid R.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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