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Impact localization on a composite tail rotor blade using an inverse filtering approach

机译:使用逆滤波方法对复合材料尾桨叶片进行冲击定位

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摘要

This article presents an in situ structural health monitoring imaging system for the localization of impacts on a composite complex structure such as a tail rotor blade. Unlike conventional plate-like panels, this composite structure presents a strong anisotropy and inhomogeneous elastic nature due to the presence of both glass fibre and carbon fibre, a geometrically complex shape due to the curvature of the blade's airfoil section and variations in the mechanical behaviour due to local changes in the thickness. The proposed imaging technique is based on the inverse filtering or reciprocal time reversal approach applied to the waveforms originated from a point of the structure of unknown location (impact source) and a number of signals stored in a database containing the experimental Green's function of the medium. Unlike other ultrasonic impact localization methods, the present technique allows achieving the optimal focalization of the impact point in the spatial and time domain, by taking advantage of multiple linear scattering and a small number of receiver sensors.
机译:本文提出了一种现场结构健康监测成像系统,用于对复合复杂结构(例如尾桨)的撞击进行定位。与传统的板状面板不同,这种复合结构由于存在玻璃纤维和碳纤维而具有很强的各向异性和不均匀的弹性,由于叶片翼型截面的曲率和机械性能的变化而导致几何形状复杂局部厚度变化。所提出的成像技术基于逆滤波或倒数时间倒转方法,该方法应用于源自未知位置(冲击源)结构的点的波形以及存储在包含介质的实验格林函数的数据库中的许多信号。与其他超声冲击定位方法不同,本技术通过利用多重线性散射和少量接收器传感器,可以在空间和时域上实现冲击点的最佳聚焦。

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