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Measurement models for ultrasonic nondestructive evaluation

机译:超声波无损评估的测量模型

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The article reviews ways to use the electromechanical reciprocity relation to construct theoretical models of measurement processes in ultrasonic nondestructive evaluation. This relationship is important because it connects the change in the voltages measured at the electrical terminal of the transducer to the perturbation in the mechanical wavefield caused by the change in the propagation environment. It does so by mixing an unperturbed reference wavefield with one containing the perturbed wavefield. Two problems of progressive difficulty are explored. We begin by investigating the imaging of a one-dimensional sinusoidal fluid-solid interface using a cylindrically focused beam and continue by developing a model of the imaging of the mechanical properties of a two-dimensional, thin solid film using a confocal arrangement of point-focused transducers. This last problem uses an approximation to the thin solid film, which reduces its mechanical response to one similar to that of a membrane. Integral relations are given that can be used to form integral equations or to generate asymptotic approximations to the particle displacements and stresses in the film.
机译:本文回顾了使用机电互易关系构建超声无损评估中测量过程理论模型的方法。该关系很重要,因为它将在换能器电端子处测得的电压变化与传播环境变化引起的机械波场扰动联系起来。它通过将一个未扰动的参考波场与一个包含扰动的波场的参考波场混合来实现。探索了进行性困难的两个问题。我们首先研究使用圆柱聚焦束对一维正弦流体-固体界面进行成像,然后继续使用点-点共聚焦结构开发二维薄固体膜的机械性能成像模型。聚焦换能器。最后一个问题使用了近似于固态薄膜的方法,从而将其机械响应降低到了类似于膜的机械响应。给出了可用于形成积分方程或用于生成薄膜中粒子位移和应力的渐近近似的积分关系。

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