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Advanced echo-dynamic measures for the characterisation of multiple ultrasonic signals in aircraft structures

机译:用于表征飞机结构中多个超声信号的高级回波动力学测量

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摘要

A significant challenge in non-destructive evaluation is the ability to discern signals, originating from a crack and a geometric feature in a part, that are either closely spaced or superimposed in time. An example problem is the ultrasonic inspection of aircraft holes in vertical riser structures with limited accessibility for a transducer from an external wing surface. Characteristics of the path of the ultrasonic signal and the contact condition between the fastener and hole can hinder the use of traditional amplitude dynamics for signal classification and crack detection. A local correlation method was developed to detect the relative shift of signals in time for adjacent transducer locations due to the varying echo dynamics from crack and part geometries. This approach analyses a series of signals from a moving transducer by first accurately aligning the signals to the primary part signal feature and subsequently measuring the shifting of secondary signals of interest within multiple time windows. A methodology is proposed that supplements amplitude dynamic measures with both the change in time and signal variation measures. Feature maps of these dynamic measures are presented to demonstrate the methodology and provide a practical means for classification. Experimental and simulated studies are presented that validate this methodology for several ultrasonic NDE applications. Lastly, an alternative time delay estimation approach is presented for the local correlation method to improve computation time with comparable performance.
机译:在非破坏性评估中,一项重大挑战是辨别信号的能力,这些信号源自零件中的裂缝和几何特征,这些信号要么间隔很近,要么在时间上重叠。一个示例问题是对垂直立管结构中的飞机孔进行超声检查,而换能器从机翼外表面的可及性有限。超声波信号路径的特性以及紧固件与孔之间的接触条件可能会妨碍使用传统的振幅动力学来进行信号分类和裂缝检测。开发了一种局部相关方法,以检测由于裂纹和零件几何形状变化的回波动力学,相邻换能器位置的信号在时间上的相对偏移。该方法通过首先将信号与主要部分的信号特征准确对齐,然后测量多个时间窗口内感兴趣的次要信号的偏移,来分析来自移动换能器的一系列信号。提出了一种利用时间变化和信号变化度量来补充幅度动态度量的方法。提供了这些动态度量的特征图,以说明方法论并提供实用的分类方法。进行了实验和模拟研究,验证了该方法在几种超声NDE应用中的有效性。最后,针对局部相关方法提出了一种替代的时延估计方法,以提高计算时间并具有可比的性能。

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