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首页> 外文期刊>Optics and Lasers in Engineering >Damage detection in composite panels based on mode-converted Lamb waves sensed using 3D laser scanning vibrometer
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Damage detection in composite panels based on mode-converted Lamb waves sensed using 3D laser scanning vibrometer

机译:基于使用3D激光扫描测振仪感应的模式转换兰姆波的复合板损伤检测

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This paper introduces damage identification approach based on guided ultrasonic waves and 3D laser Doppler vibrometry. The method is based on the fact that the symmetric and antisymmetric Lamb wave modes differ in amplitude of the in-plane and out-of-plane vibrations. Moreover, the modes differ also in group velocities and normally they are well separated in time. For a given time window both modes can occur simultaneously only close to the wave source or to a defect that leads to mode conversion. By making the comparison between the in plane and out-of-plane wave vector components the detection of mode conversion is possible, allowing for superior and reliable damage detection. Experimental verification of the proposed damage identification procedure is performed on fuel tank elements of Reusable Launch Vehicles designed for space exploration. Lamb waves are excited using low-profile, surface-bonded piezoceramic transducers and 3D scanning laser Doppler vibrometer is used to characterize the Lamb wave propagation field. The paper presents theoretical background of the proposed damage identification technique as well as experimental arrangements and results.
机译:本文介绍了基于引导超声波和3D激光多普勒振动法的损伤识别方法。该方法基于以下事实:对称和反对称的Lamb波模式的面内和面外振动幅度不同。而且,模式在组速度上也不同,并且通常它们在时间上很好地分开。对于给定的时间窗口,这两种模式只能在靠近波源或导致模式转换的缺陷附近同时发生。通过比较面内和面外波矢量分量,可以检测模式转换,从而实现出色且可靠的损坏检测。对设计用于太空探索的可重复使用运载火箭的油箱元件进行了提议的损坏识别程序的实验验证。使用低剖面,表面结合的压电陶瓷换能器激发兰姆波,并使用3D扫描激光多普勒振动计来表征兰姆波的传播场。本文介绍了提出的损伤识别技术的理论背景以及实验安排和结果。

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