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通过非共线混频在弹性板中非线性产生零群速度模式

Nonlinear generation of a zero group velocity mode in an elastic plate by non-collinear mixing.

作者信息

Mora Pierric, Chekroun Mathieu, Raetz Samuel, Tournat Vincent

机构信息

Laboratoire d'Acoustique de l'Université du Mans (LAUM), UMR 6613, Institut d'Acoustique - Graduate School (IA-GS), CNRS, Le Mans Université, France; GERS-GeoEND, Univ Gustave Eiffel, IFSTTAR, F-44344 Bouguenais, France.

Laboratoire d'Acoustique de l'Université du Mans (LAUM), UMR 6613, Institut d'Acoustique - Graduate School (IA-GS), CNRS, Le Mans Université, France.

出版信息

Ultrasonics. 2022 Feb;119:106589. doi: 10.1016/j.ultras.2021.106589. Epub 2021 Sep 22.

DOI:10.1016/j.ultras.2021.106589
PMID:34571435
Abstract

Zero Group Velocity (ZGV) modes are peculiar guided waves that can exist in elastic plates or cylinders, and have proved to be very sensitive tools in characterizing materials or thickness variations with sub-percent accuracy at space resolutions of about the plate thickness. In this article we show theoretically and experimentally how such a mode can be generated as the sum-frequency interaction of two high amplitude primary waves, and then serve as a local probe of material non-linearity. The solutions to the phase matching condition, i.e. condition for a constructive non-linear effect, are obtained numerically in the mark of classical, quadratic non-linearity. The coupling coefficients that measure the transfer rate of energy as a function of time from primary to secondary modes are derived. Experiments are conducted on an aluminum plate using piezo-electric transducers and a laser interferometer, and explore the interaction for incident symmetric and anti-symmetric fundamental Lamb modes. In an experiment operated without voltage amplifier we demonstrate that the resonant nature of these ZGV modes can be leveraged to accumulate energy from long excitations and produce detectable effects at extraordinarily low input power even in such weakly non-linear material.

摘要

零群速度(ZGV)模式是一种特殊的导波,可存在于弹性板或圆柱体中,并且已被证明是在空间分辨率约为板厚的情况下以亚百分比精度表征材料或厚度变化的非常灵敏的工具。在本文中,我们从理论和实验上展示了如何通过两个高振幅初级波的和频相互作用产生这样一种模式,然后将其用作材料非线性的局部探测器。在经典二次非线性的框架下,通过数值方法获得了相位匹配条件(即建设性非线性效应的条件)的解。推导了作为时间函数的测量从初级模式到次级模式能量转移速率的耦合系数。使用压电换能器和激光干涉仪在铝板上进行了实验,并研究了入射对称和反对称基本兰姆模式的相互作用。在一个未使用电压放大器的实验中,我们证明了这些ZGV模式的共振特性可用于从长时间激励中积累能量,即使在这种弱非线性材料中,也能在极低的输入功率下产生可检测的效应。

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