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

机译:层压复合材料中超声波的理论与数值研究,用于结构的非破坏性评价

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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.
机译:目前的工作调查了经受超声波源的层压复合板中的导向波,用于复合结构的非破坏性评价中的潜在应用。首先考虑自由超声波在层压板中的传播,并且使用数值计算获得它们的分散曲线。通过复合材料中的时间谐波载荷产生的波动的问题以简单的方式使用互惠定理来实现。比较产生的波场的分析和数值结果,它们对几种材料组合显示出优秀的一致性。还讨论了层压板界面的分层散射引导波。在本研究中发现的表达和计算对于探索使用基于超声波的无损性复合结构的非破坏性评估的潜力至关重要。

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