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Non-model-based multiple damage identification of beams by a continuously scanning laser Doppler vibrometer system

机译:连续扫描激光多普勒振动计系统基于非模型的横梁抗冲击识别

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摘要

An effective non-model-based multiple damage identification method for beams by using a continuously scanning laser Doppler vibrometer (CSLDV) system is presented. Velocity response of a beam along a scan line under sinusoidal excitation is measured by the CSLDV system and a spatially dense operating deflection shape (ODS) of the beam along the scan line is obtained by the demodulation method from velocity response. An ODS of an associated undamaged beam is obtained by using a polynomial with a proper order to fit the ODS from the demodulation method. The curvature of an ODS (CODS) is used to identify abnormality induced by multiple damage. A curvature damage index (CDI) using differences between CODSs associated with ODSs that are obtained by the demodulation method and the polynomial fit is proposed to identify multiple damage. A normalized average CDI obtained by averaging CDIs at different excitation frequencies is defined to further assist multiple damage identification. Experiments on three beams with three damage on each beam in the form of three small cuts are conducted. Widths and depths of the three damage are varied from 3 mm to 9 mm with an increment of 3 mm and from 5% thickness reduction to 15% with an increment of 5%, respectively, and their effects on ODSs, CODSs, and CDIs are investigated. Five frequencies obtained by rounding the first through fifth natural frequencies of the beams and one arbitrarily selected frequency that is not close to any natural frequency of the beams are used as sinusoidal excitation frequencies. Each damage is successfully identified near regions with consistently high values of CDIs at different excitation frequencies. The three damage on each beam is successfully identified with the normalized average CDI by obvious peaks at locations of the three damage.
机译:通过使用连续扫描激光多普勒振动计(CSLDV)系统,提出了一种有效的基于非模型的多种损伤识别方法。沿正弦激励下沿扫描线的速率响应通过CSLDV系统测量,并且通过从速度响应的解调方法获得沿着扫描线的光束的空间致密的操作偏转形状(ODS)。通过使用具有适当顺序的多项式来获得相关的未脉冲光束的OD,以符合解调方法的处理。 ODS(CODS)的曲率用于识别多次损坏引起的异常。提出了一种曲率损伤指数(CDI)使用与通过解调方法和多项式配合获得的ODS相关的CODS之间的差异以识别多次损坏。通过在不同的激发频率下平均CDIS获得的标准化平均CDI被定义为进一步促进多次损害识别。进行三个梁的实验,每个梁在三个小切割形式的每个光束上进行。三个损坏的宽度和深度从3mm到9毫米变化,增量3mm,从5%的厚度降低到15%,同时分别为5%,它们对ODS,CODS和CDI的影响调查。通过舍入光束的第一至第五自然频率获得的五个频率和不接近光束的任何自固有频率的一个任意选择的频率被用作正弦激励频率。在不同励磁频率下,每次损坏都在附近成功识别出始终如一的CDI值。每光束上的三次损坏通过三个损坏位置的明显峰成功识别了正常化的平均CDI。

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