A Theoretical and Numerical Study of Ultrasonic Waves in Laminated Composites for Nondestructive Evaluation of Structures

Duy Kien Dao, H. Nguyen, Ductho Le, D. Pham, Truonggiang Nguyen, Haidang Phan
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Abstract

The current work investigates guided waves in laminated composite plates subjected to ultrasonic sources for potential applications in nondestructive evaluation of composite structures. The propagation of free ultrasonic waves in laminated plates is first considered and their dispersion curves are obtained using numerical computation. The problem of wave motion generated by a time-harmonic load in the composites is theoretically derived in a simple manner using reciprocity theorems. Analytical and numerical results of the generated wave fields are compared, and they show excellent agreement for several material combinations. Scattering of guided waves by a delamination at the interface of laminates is also discussed. The expressions and calculations found in this investigation are critical to explore the potential of using ultrasound-based methods for nondestructive evaluation of composite structures.
超声在层合复合材料结构无损评价中的理论与数值研究
目前的工作是研究受超声源作用的层合复合材料板中的导波在复合材料结构无损评价中的潜在应用。首先考虑了自由超声波在层合板中的传播,并通过数值计算得到了其频散曲线。利用互易定理,从理论上简单地推导了复合材料中时谐载荷产生的波动问题。对产生的波场的解析结果和数值结果进行了比较,结果表明,对于几种材料组合,它们具有很好的一致性。本文还讨论了层合板界面处分层对导波散射的影响。在本研究中发现的表达式和计算对于探索使用基于超声的方法对复合材料结构进行无损评估的潜力至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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