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Numerical and experimental analysis of a focused reflected wave in a multi-layered material based on a ray model

机译:基于射线模型的多层材料中聚焦反射波的数值和实验分析

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摘要

A focal probe is used for the acoustic measurement of a thin layer of a material with unknown sound velocity. This is now possible, because an algorithm, based on the focused ray model, has been found. However, there are still several problems such as the assumption that the half-aperture angle equals the incident angle, the identification of the longitudinal-wave focus, and the composition of the signal. In this work, we study the multi-mode wave focus numerically and experimentally to identify the focused longitudinal waves. A theoretical multilayered focusing model has been introduced based on geometrical acoustics. In addition, a phase differentiation theory is proposed to find the incident angle for the focus of the tilted rays, which is referred to as maximum half-aperture angle in other studies. The V(z,t)curve of a single layer, with a thickness of 1.5 mm and 2.0 mm, and a multi-layer are obtained using vertical translational movement. Both thickness and sound velocity are derived from the curve simultaneously. Our single layer experiments show that it is possible to focus multimode waves. The single and multi-layer experiments confirm the multi-layered focused ray model and phase differentiation theory. Furthermore, experiments are conducted to analyze the measured results. (C) 2018 Elsevier B.V. All rights reserved.
机译:焦点探针用于具有未知声速未知的材料的薄层的声学测量。这是可能的,因为已经找到了一种基于聚焦射线模型的算法。然而,仍然存在几个问题,例如半孔径角度等于入射角,纵向波焦的识别以及信号的组成。在这项工作中,我们在数字上研究了多模波重点,实验地识别聚焦的纵波。基于几何声学引入了理论多层聚焦模型。另外,提出了一种相位区分理论以找到倾斜光线的焦点的入射角,其被称为其他研究中的最大半径角度。使用垂直平移运动获得厚度为1.5mm和2.0mm的单层的V(z,t)曲线,以及多层。厚度和声速均同时从曲线衍生。我们的单层实验表明,可以聚焦多模波。单层和多层实验证实了多层聚焦射线模型和相位分化理论。此外,进行实验以分析测量结果。 (c)2018 Elsevier B.v.保留所有权利。

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