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Ultrasonic characteristic of phase shift of layered structure and the determination of layer thickness

机译:层状结构相移的超声特性及层厚的确定

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摘要

For the ultrasonic normally-incident reflected method, the phase shift of the mid-layer in a multi-layered structure has been theoretically derived and expressed as a sum form of the measured phase shift and the crossing phase shift. Using the sum form, the characteristics of phase shifts of a linear-viscoelastic layer on the two different elastic substrates of half-space of the infinite extent are first analyzed. By the replacement of phase shift of the upper elastic substrate with the corresponding measured phase shift, the substitution function of the input acoustical impedance of a next inaccessible layer has been developed. It is concluded that the corresponding relation of the layer phase shift with the minima/maxima of the absolute value of the input acoustical impedance of the inaccessible layer is repeated by those of the substitution function. Without giving the substrate thickness and considering the introduced misalignment and distortion problems, based on the corresponding relation, the thickness of the inaccessible layer can be determined by searching the frequencies of the minima/ maxima of the absolute value of the substitution function.
机译:对于超声波常入射反射方法,理论上已经得出了多层结构中的中间层的相移,并表示为所测相移和交叉相移的总和形式。使用和形式,首先分析了无限范围半空间的两个不同弹性基底上的线性粘弹性层的相移特性。通过用相应的测得的相移代替上弹性基板的相移,开发了下一不可接近层的输入声阻抗的替代函数。可以得出结论,层相移与不可访问层的输入声阻抗的绝对值的最小值/最大值的对应关系被替换函数所重复。在不给出基板厚度并且不考虑引入的未对准和变形问题的情况下,基于对应关系,可以通过搜索替代函数的绝对值的最小值/最大值的频率来确定难以接近的层的厚度。

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