用准静态分量法评价两层板在兰姆波传播过程中的界面特性。

IF 3.8 2区 物理与天体物理 Q1 ACOUSTICS Ultrasonics Pub Date : 2025-01-07 DOI:10.1016/j.ultras.2025.107567
Han Chen , Caibin Xu , Guangjian Gao , Yan Chen , Yunshan Bai , Mingxi Deng
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引用次数: 0

摘要

本研究深入探讨了利用准静态分量(QSC)在主Lamb波传播过程中产生的可行性,以识别两层板界面特性的细微变化。与Lamb波的二次谐波产生不同,QSC产生不需要精确的相速度匹配,而是需要近似的群速度匹配,以确保累积生长效应的出现。这种独特的特性使基于qsc的非线性超声方法能够有效地克服与Lamb波传播固有色散和多模特性相关的限制。对QSC产生的建模表明,由主Lamb波音调突发传播产生的QSC脉冲的综合振幅随着传播距离的增加而逐渐放大。有限元模拟表明,在界面退化的情况下,QSC生成效率总体下降。通过非线性超声测量装置获得的实验结果生动地展示了QSC产生的累积生长效应,在近似群速度匹配下,随着传播距离的增加,这种效应明显。为了证实界面性能对QSC生成效率的影响,采用循环温度条件下不同热疲劳持续时间来模拟两层板界面性能的细微变化。随着热疲劳持续时间的增加,相对非线性声学参数表现出明显的敏感和单调减小的行为,证实了界面性质的改变对QSC产生效率的影响。实验结果与数值分析预测之间的一致性表明,QSC产生对初级Lamb波传播的影响为敏感地评估层状板界面特性的早期退化提供了一种有希望的方法。
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Assessment of interfacial properties in a two-layered plate using quasi-static component generation during primary Lamb wave propagation
This study delves into the feasibility of leveraging quasi-static component (QSC) generation during primary Lamb wave propagation to discern subtle alterations in the interfacial properties of a two-layered plate. Unlike the second-harmonic generation of Lamb waves, QSC generation doesn’t necessitate precise phase-velocity matching but rather requires an approximate matching of group velocities to ensure the emergence of cumulative growth effects. This unique characteristic empowers the QSC-based nonlinear ultrasonic method to effectively surmount the limitations associated with inherent dispersion and multimode traits of Lamb wave propagation. Modeling the QSC generation reveals that the integrated amplitude of the QSC pulse, derived from the propagation of the primary Lamb wave tone burst, progressively amplifies with increasing propagation distance. Finite element simulations illustrate an overall decline in the efficiency of QSC generation amidst interfacial degradation. Experimental outcomes obtained via a nonlinear ultrasonic measurement-based setup vividly showcase the cumulative growth effect of QSC generation, evident with the propagation distance under approximate group velocity matching. To substantiate the influence of interfacial properties on QSC generation efficiency, varying thermal fatigue durations under cyclic temperature conditions are employed to simulate subtle changes in the two-layered plate’s interfacial properties. The relative nonlinear acoustic parameter exhibits a distinctly sensitive and monotonically decreasing behavior with escalating thermal fatigue durations, corroborating the impact of alterations in interfacial properties on QSC generation efficiency. The alignment between experimental findings and numerical analysis predictions suggests that the effect of QSC generation in primary Lamb wave propagation provides a promising means for sensitively assessing the early-stage degradation of interfacial properties in layered plates.
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来源期刊
Ultrasonics
Ultrasonics 医学-核医学
CiteScore
7.60
自引率
19.00%
发文量
186
审稿时长
3.9 months
期刊介绍: Ultrasonics is the only internationally established journal which covers the entire field of ultrasound research and technology and all its many applications. Ultrasonics contains a variety of sections to keep readers fully informed and up-to-date on the whole spectrum of research and development throughout the world. Ultrasonics publishes papers of exceptional quality and of relevance to both academia and industry. Manuscripts in which ultrasonics is a central issue and not simply an incidental tool or minor issue, are welcomed. As well as top quality original research papers and review articles by world renowned experts, Ultrasonics also regularly features short communications, a calendar of forthcoming events and special issues dedicated to topical subjects.
期刊最新文献
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