材料科学
压力(语言学)
振幅
传感器
结构健康监测
超声波传感器
复合材料
单调函数
声学
应力消除
模式(计算机接口)
正常模式
圆筒应力
压电
应力松弛
作者
Xiangdi Meng,Caibin Xu,Weibin Li,Shuai Guo,Jia-Xiang Wang,Mingxi Deng
摘要
This Letter proposes an ultrasonic stress monitoring method utilizing the S1 zero group velocity (S1-ZGV) mode based on a PVDF comb transducer. Experimental investigations have revealed that under varying uniaxial stress conditions, both the measured S1-ZGV frequency and its corresponding amplitude exhibit appreciable variations. By adopting the relative change rate of the amplitude corresponding to the S1-ZGV frequency (denoted by RCA) as the characteristic parameter, it is evident that RCA demonstrates a monotonic and highly sensitive response to the applied uniaxial stress. Notably, RCA exhibits a significant increase as the applied uniaxial stress rises. This characteristic enables the use of RCA to predict the stress state, facilitating real-time stress monitoring. Experimental validation indicates that the predicted stress values align closely with the actual applied stress values, demonstrating a high level of accuracy in stress prediction. This method enables real-time and in situ monitoring of the stress state in thin plates subjected to uniaxial stresses, which holds paramount importance for a wide array of industrial applications in structural health monitoring.
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