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Delamination detection and quantification on laminated composite structures with Lamb waves and wavenumber analysis

机译:Lamb波和波数分析的层状复合结构脱层检测与量化

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摘要

Laminated composites are susceptible to delamination due to their weak transverse tensile and interlaminar shear strengths as compared to their in-plane properties. Delamination damage can occur internally, where it is not visible to the naked eye. Development of reliable, quantitative techniques for detecting delamination damage in laminated composite components will be imperative for safe and functional optimally designed next-generation composite structures. In this article, we study the potential of using Lamb waves for delamination detection and quantification, using model-assisted data acquisition. Novel wavenumber analysis approaches are developed and discussed to show how they can be used to investigate Lamb wave interactions with delaminated plies. Ultrasonic wave simulations are implemented to provide both in-plane and out-of-plane wave motion for the wavenumber studies. The out-of-plane results are verified against data obtained from experimental tests. It is found that the wavenumber methods can not only determine the delaminated region of the plate and its length, but can also identify the plies between which the delamination occurs. We envision that the wavenumber approaches can lead to a complete delamination quantification in the future.
机译:层压复合材料由于其面内性能较差,因此其横向拉伸强度和层间剪切强度较弱,因此易于分层。分层损坏可能发生在内部,而肉眼看不到。对于安全和功能优化设计的下一代复合结构,必须开发可靠的定量技术来检测层压复合材料组件中的分层损坏。在本文中,我们研究了使用Lamb波通过模型辅助数据采集进行分层检测和量化的潜力。开发并讨论了新颖的波数分析方法,以展示如何将其用于研究Lamb波与分层层的相互作用。进行超声波仿真以提供波数研究的面内和面外波运动。相对于从实验测试获得的数据验证面外结果。发现波数方法不仅可以确定板的分层区域及其长度,而且还可以识别发生分层的层。我们设想,波数方法可以在将来导致完全的分层量化。

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