窄带
波长
兰姆波
材料科学
光学
领域(数学)
声学
模式(计算机接口)
铝
物理
表面波
复合材料
数学
计算机科学
操作系统
纯数学
作者
J. Luis Deán,Cristina Trillo,Ángel F. Doval,José L. Fernández
摘要
A method based on fitting the theoretical dispersion curves of Lamb waves to experimental data is presented to determine the thickness and two independent elastic constants of aluminum plates a few millimeters thick. The waves are generated by means of the wedge method using a narrowband source, selecting the wedge angle and the acoustic frequency f so that mainly one mode is excited. A self-developed pulsed electronic speckle pattern interferometry system renders a two dimensional map of the out-of-plane acoustic displacement field at the plate surface, which allows an accurate measurement of the acoustic wavelength λ1. For any mode, the relation between λ1 and f depends on the three unknown parameters, so at least three experimental measurements (λ1i,fi) with different frequencies and/or different modes are required to calculate them. The suitability of different Lamb modes to determine each parameter when the others are known is studied, as well as the conditions that the experimental set of values must fulfill to calculate all three parameters. Numerous Lamb modes at different frequencies are generated in each plate, and a fitting is made based on the minimization of the error function, resulting in an accuracy better than 1%.
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