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A New Method for Calculation of Laser-Generated Ultrasound Pulses

机译:一种计算激光产生的超声脉冲的新方法

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摘要

The generation of acoustic pulses (in solids) by laser pulses has received considerable attention recently (an extensive review has been given by Hutchins[l]). Current applications are to nondestructive evaluation and materials characterization, where it is convenient to have a highly reproducible source requiring no contact with the sample [2–5]. The need to make these applications quantitative requires a theoretical model which:1) is based on fundamental principles; 2) allows the use of realistic sample and source properties; and 3) is readily usable by the research community without a major computational development effort. Doyle[6] and Schliechert et al.[7] have described approaches which meet the first two criteria, but which are very computation-intensive. We will describe and illustrate a new formulation[8] which meets all three criteria. Numerical calculations will be presented to illustrate the efficacy of this approach, with emphasis on the effects of finite source dimensions and sample surface modification. Comparison with previous point-source results will indicate when the latter may he used. Finally, we show that the small initial displacement “spike” observed in experiments with metal samples, is due to “mode conversion”(thermal-to-longitudinal) at the boundary, rather than to the finite size of the thermal source resulting from thermal diffusion. For the present we limit the discussion to the thermoelastic regime.
机译:近来,由激光脉冲产生声脉冲(固体)已引起相当大的关注(Hutchins [1]已进行了广泛的综述)。当前的应用是无损评估和材料表征,在这种情况下具有高度可重现的源且无需与样品接触即可方便[2-5]。为了使这些应用程序量化,需要一个理论模型,该模型:1)基于基本原理; 2)允许使用实际的样本和源属性;和3)研究社区可以很容易地使用它,而无需进行大量的计算开发工作。 Doyle [6]和Schliechert等[7]。已经描述了满足前两个标准,但是计算量很大的方法。我们将描述和说明满足所有三个标准的新公式[8]。将进行数值计算以说明该方法的有效性,重点放在有限源尺寸和样品表面改性的影响上。与以前的点源结果进行比较将表明他何时可以使用后者。最后,我们表明,在金属样品的实验中观察到的较小的初始位移“峰值”是由于边界处的“模式转换”(从热到纵向),而不是由热引起的有限的热源尺寸引起的。扩散。目前,我们将讨论限制在热弹性范围内。

著录项

  • 作者

    McDonald, F. Alan;

  • 作者单位
  • 年度 1990
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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