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DAMAGE DETECTION IN COMPOSITE STRUCTURES WITH WAVENUMBER ARRAY DATA PROCESSING

机译:具有波数阵列数据处理的复合结构中的损坏检测

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Guided ultrasonic waves (GUW) have the potential to be an efficient and cost-effective method for rapid damage detection and quantification of large structures. Attractive features include sensitivity to a variety of damage types and the capability of traveling relatively long distances. They have proven to be an efficient approach for crack detection and localization in isotropic materials. However, techniques must be pushed beyond isotropic materials in order to be valid for composite aircraft components. This paper presents our study on GUW propagation and interaction with delamination damage in composite structures using wavenumber array data processing, together with advanced wave propagation simulations. Parallel elastodynamic finite integration technique (EFIT) is used for the example simulations. Multi-dimensional Fourier transform is used to convert time-space wavefield data into frequency-wavenumber domain. Wave propagation in the wavenumber-frequency domain shows clear distinction among the guided wave modes that are present. This allows for extracting a guided wave mode through filtering and reconstruction techniques. Presence of delamination causes spectral change accordingly. Results from 3D CFRP guided wave simulations with delamination damage in flat-plate specimens are used for wave interaction with structural defect study.
机译:引导超声波(GUW)有可能是一种高效且经济高效的方法,用于快速损坏大结构的损坏和量化。有吸引力的功能包括对各种损坏类型的敏感性和行驶的能力相对较长的距离。他们已被证明是各向同性材料裂纹检测和定位的有效方法。然而,必须超越各向同性材料的技术,以便对复合飞机组件有效。本文介绍了使用波数阵列数据处理的复合结构中的GuW传播和与分层损坏的相互作用的研究,以及高级波传播模拟。并行弹性动力学有限积分技术(EFIT)用于示例模拟。多维傅里叶变换用于将时空波场数据转换为频率波数域。波数频域中的波传播显示出在存在的引导波模式中的清晰区别。这允许通过滤波和重建技术提取引导波模式。分层的存在导致光谱变化相应。 3D CFRP引导波模拟与平板样本中分层损伤的波动模拟用于波浪相互作用与结构缺陷研究。

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