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Application of a Lamb waves based technique for structural health monitoring of GFRP undercyclic loading

机译:基于LAMB波的应用在GFRP下环荷载下的结构健康监测

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A Lamb wave based ultrasonic technique as well as optical image characterization was utilized to estimate a current mechanical state of glass fiber reinforced polymers (GFRP) under cyclic tension. The ultrasonic acoustic method was applied in a 'pitch-catch' mode using piezoelectric transducers adhesively bonded onto a specimen surface. Numerical evaluation of acoustic data was performed by calculating two informative parameters: maximum of amplitude of the received signal and variance of signal envelopes. Optical images were registered and then analysed by calculating Shannon entropy that makes it possible to characterize changing of GFRP specimen translucency. The obtained results were treated in order to find out the relation between the current mechanical state of a specimen and informative parameter values being computed from the acoustic and optical signals.
机译:利用兰姆波的超声波技术以及光学图像表征来估计循环张力下的玻璃纤维增​​强聚合物(GFRP)的电流力学状态。使用粘合在样品表面上的压电换能器在“俯仰捕获”模式中应用超声波声学方法。通过计算两个信息参数来执行声学数据的数值评估:所接收信号的最大幅度和信号信封的方差。光学图像被登记,然后通过计算Shannon熵分析,使得可以表征GFRP样本半透明的改变。得到了所得结果,以便找出从声学和光信号计算的样本和信息性参数值之间的电流力学状态之间的关系。

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