The Guided Ultrasonic Wave Oscillation Phase Relation between the Surfaces of Plate-like Structures of Different Material Settings

IF 1.3 Q3 ACOUSTICS Acoustics (Basel, Switzerland) Pub Date : 2023-01-31 DOI:10.3390/acoustics5010009
L. Rittmeier, N. Rauter, A. Mikhaylenko, R. Lammering, M. Sinapius
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引用次数: 1

Abstract

Lamb waves occur in thin-walled structures in two wave modes—the symmetric and the antisymmetric mode. Their oscillation on the structures‘ surfaces is either in phase (symmetric) or shifted by a phase angle of π (antisymmetric). In this work, a method is developed by which to compare the surfaces’ oscillation phase relation to answer the question of whether fiber metal laminates show the same surface oscillation behavior as described for metals. The evaluation of time signals regarding the instantaneous phase angle is performed by using the continuous wavelet transformation and the short-time Fourier transformation. Numerical simulations utilizing the finite element method provide time signals from the top and bottom surface of different thin-walled structures of different material settings and configurations. The numerically obtained time signals are evaluated by the developed methods with respect to the oscillation phase. Subsequently, the oscillation phase is evaluated experimentally for the wave propagation in a fiber metal laminate. It is shown that the method based on the continuous wavelet transformation is suitable for the evaluation of oscillation phase relations in time signals. Additionally, it is proven that fiber metal laminates show only two phase relations, which indicates the occurrence of Lamb waves.
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不同材料设置的类板结构表面间的引导超声振荡相位关系
兰姆波以对称和反对称两种波型出现在薄壁结构中。它们在结构表面上的振荡要么同相(对称),要么偏移π(反对称)的相位角。在这项工作中,开发了一种方法来比较表面的振荡相位关系,以回答纤维金属层压板是否表现出与金属相同的表面振荡行为的问题。通过使用连续小波变换和短时傅立叶变换来执行关于瞬时相位角的时间信号的评估。利用有限元方法的数值模拟提供了来自不同材料设置和配置的不同薄壁结构的顶部和底部表面的时间信号。数值获得的时间信号通过所开发的方法相对于振荡相位进行评估。随后,通过实验评估了波在纤维-金属层压板中传播的振荡相位。结果表明,基于连续小波变换的方法适用于时间信号中振荡相位关系的估计。此外,还证明了纤维-金属层压板只表现出两种相位关系,这表明兰姆波的出现。
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来源期刊
CiteScore
3.70
自引率
0.00%
发文量
0
审稿时长
11 weeks
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