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Influence of crack opening and incident wave angle on second harmonic generation of Lamb waves

机译:裂缝打开和入射波角对羔羊二次谐波产生的影响

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摘要

Techniques utilising second harmonic generation (SHG) have proven their great potential in detecting contact-type damage. However, the gap between the practical applications and laboratory studies is still quite large. The current work is aimed to bridge this gap by investigating the effects of the applied load and incident wave angle on the detectability of fatigue cracks at various lengths. Both effects are critical for practical implementations of these techniques. The present experimental study supported by three-dimensional (3D) finite element (FE) modelling has demonstrated that the applied load, which changes the crack opening and, subsequently, the contact nonlinearity, significantly affects the amplitude of the second harmonic generated by the fundamental symmetric mode (S-0) of Lamb wave. This amplitude is also dependent on the length of the fatigue crack as well as the incident wave angle. The experimental and FE results correlate well, so the modelling approach can be implemented for practical design of damage monitoring systems as well as for the evaluation of the severity of the fatigue cracks.
机译:利用第二次谐波产生(SHG)的技术已经证明了它们在检测接触型损伤方面的巨大潜力。然而,实际应用与实验室研究之间的差距仍然相当大。目前的工作旨在通过研究施加的负载和入射波角度对各种长度疲劳裂缝的可检测性的影响来弥合该差距。这两种效果对于这些技术的实际实现至关重要。三维(3D)有限元(FE)建模支持的本实验研究表明,改变裂缝开口的施加负荷,随后改变接触非线性,显着影响了由基础产生的第二次谐波的幅度Lamb波的对称模式(S-0)。该幅度也取决于疲劳裂纹的长度以及入射波角度。实验和Fe结果良好,因此可以实现建模方法以实现损伤监测系统的实际设计,以及评估疲劳裂缝的严重程度。

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