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Generation of narrowband antisymmetric lamb waves using a formed laser source in the ablative regime

机译:在烧蚀状态下使用形成的激光源产生窄带反对称兰姆波

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摘要

A formed laser source, using a four-element lenticular array, is used in the ablative regime to generate select, narrowband, acoustic plate waves. The arrangement of the array produces acoustical signals that have frequencies compatible with the response of the broadband capacitive air-coupled transducer used in this study. A simplified concept is presented to explain the effect of a line array source on the frequency content of acoustic waves. The analytical model for a point pulse surface displacement is derived from the point load solution to Lamb's problem. The point pulse displacement elements of a line array source are summed mathematically, taking into account all applicable propagation modes and dispersion of plate waves. The model considers only the out-of-plane displacement of the antisymmetric plate modes to represent the detection capability of the broadband receiver. The distribution function of the laser beam energy profile is modified to depict the actual energy distribution that illuminates the surface of the plate. Filtering functions are made compatible with the sensitivity of the broadband receiver so as to retain only the detected frequencies in the model. The theoretical model showed good agreement with experimental results
机译:形成的激光源,使用四元素双凸透镜阵列,在烧蚀方式中用于产生选择的窄带声板波。阵列的布置产生的声学信号的频率与本研究中使用的宽带电容性空气耦合换能器的响应兼容。提出了一个简化的概念来解释线阵列源对声波频率内容的影响。点脉冲表面位移的解析模型是从Lamb问题的点载荷解得出的。考虑到所有适用的传播模式和板波的色散,对线阵列源的点脉冲位移元素进行数学求和。该模型仅考虑反对称板模的平面外位移来表示宽带接收器的检测能力。修改了激光束能量分布的分布函数,以描绘照亮板表面的实际能量分布。使滤波功能与宽带接收器的灵敏度兼容,以便仅将检测到的频率保留在模型中。理论模型与实验结果吻合良好

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