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Dual-energy wave subtraction imaging for damage detection in ultrasonic propagation imaging system

机译:用于超声传播成像系统损伤检测的双能波减影成像

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In various research fields, barely visible impact damages (BVID) caused by low velocity impacts have been studied as critical design factors of composite sandwich structures. Thus, dual-energy wave subtraction (DWS) algorithm using ultrasonic propagation imaging (UPI) system is proposed to evaluate BVID on sandwich panel. The UPI system, one of the laser ultrasonic techniques that generates ultrasound on structures with several tens kilohertz of scan speed and visualizes ultrasonic propagation. Amplitude of ultrasonic signals generated by the UPI system increases with increasing energy of excitation laser beam. Difference of amplitude level is able to be calibrated by multiplying a factor to the signal obtained with low laser excitation energy and the signals subtracted one from the other become almost noise level. However, the subtracted signals in the damaged area will not be zero because of change in ultrasonic frequency and material condition in laser ultrasonic generation mechanism, which will be shown in anomalous waves around the damage. The suggested algorithm has been developed based on this phenomenon. The DWS algorithm eliminates most of incident ultrasonic wave and relatively amplifies anomalous waves. In this paper, the sandwich panel with Nomex honeycomb core including ply delamination fabricated by mass drop has been inspected to validate the proposed algorithm, and the results of statistical analysis and damage visualization are presented.
机译:在各种研究领域中,已经研究了由低速冲击引起的几乎看不见的冲击破坏(BVID)作为复合夹层结构的关键设计因素。因此,提出了使用超声传播成像(UPI)系统的双能量波减法(DWS)算法来评估夹芯板上的BVID。 UPI系统是一种激光超声技术,可以在数十赫兹的扫描速度下在结构上生成超声并可视化超声传播。 UPI系统生成的超声信号的幅度随激发激光束能量的增加而增加。振幅水平的差异可以通过在低激光激发能量下获得的信号乘以一个因子来校准,并且彼此减去的信号几乎变为噪声水平。然而,由于超声频率和激光超声产生机理中材料状态的变化,在损伤区域中减去的信号将不会为零,这将在损伤周围的异常波中显示出来。建议的算法是基于这种现象而开发的。 DWS算法消除了大多数入射超声波,并相对放大了异常波。本文通过对Nomex蜂窝芯夹层板进行质量下降的分层检查,验证了该算法的有效性,并给出了统计分析和损伤可视化的结果。

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