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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Laser vibrometry of air-coupled Lamb waves: A novel methodology for non-contact materials characterisation
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Laser vibrometry of air-coupled Lamb waves: A novel methodology for non-contact materials characterisation

机译:空气耦合兰姆波的激光振动法:非接触材料表征的新方法

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摘要

A new non-contact methodology combining air-coupled ultrasonic excitation and laser detection of the Lamb waves is developed and applied for advanced material characterization. The flexural modes are generated in a specimen at normal and slanted incidence of a focused air-coupled beam. A laser scanning vibrometer is used for dynamic visualization of the Lamb wave field. As the local flexuaral wave velocity depends on the thickness of a specimen, the methodology enables remote imaging and profiling of thickness at high accuracy. Direct imaging of the flexural wave-defect interaction is capable of visualizing the damaged areas in fibre-reinforced compo-sites. The shape of the detected flexural waveforms is shown to re-flect the in-plane material anisotropy. The experiments proved a high sensitivity of the technique in remote imaging and measuring of local fibre orientation in composite materials.
机译:开发了一种新的非接触式方法,该方法结合了空气耦合的超声激发和Lamb波的激光检测,并将其用于先进的材料表征。弯曲模式是在聚焦空气耦合光束的法向倾斜入射时在样品中产生的。激光扫描振动计用于动态显示兰姆波场。由于局部挠曲波的速度取决于样本的厚度,因此该方法可以实现对厚度的远程成像和轮廓分析。弯曲波-缺陷相互作用的直接成像能够可视化纤维增强复合材料中的受损区域。所检测到的挠曲波形的形状被示出为反映平面内材料各向异性。实验证明,该技术在远程成像和测量复合材料中局部纤维取向方面具有很高的灵敏度。

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