National Deep Sea Center, Qingdao 266237, China.
College of Ocean Science and Engineering, Shandong University of Science and Technology, Qingdao 266590, China.
Sensors (Basel). 2023 Jan 20;23(3):1184. doi: 10.3390/s23031184.
In view of the shortage of structural defect monitoring methods for deep submersibles, numerical simulation and experimental research on underwater SAW propagation based on interdigital transducers are carried out in this paper. PVDF interdigital transducer (PVDF-IDT) has shown considerable potential in the application of structural health monitoring because of its micro size, soft material characteristics, and the characteristics of long-term bonding on the surface of the tested structure. In order to realize the application of IDT on submersible or underwater structures, it is necessary to understand the influence of underwater environment on IDTs with different structures. The underwater attenuation of IDT with 2-5 mm wavelength and the underwater attenuation of Lamb (A0 mode) wave on a 4 mm thick titanium alloy plate is obtained through COMSOL software simulation. The experimental verification shows that the simulation results match with the actual situation, which proves that COMSOL software can accurately calculate the acoustic attenuation of surface waves at the solid-liquid interface. At the same time, the underwater attenuation of IDT with different structures is very different, providing important design parameters for the underwater interdigital transducer. In this paper, it is found that the Lamb wave has significant advantages over the Rayleigh wave in the health monitoring of underwater thin plate structures.
鉴于深海潜水器结构缺陷监测方法的不足,本文对基于叉指换能器的水下声表面波传播进行了数值模拟和实验研究。聚偏二氟乙烯叉指换能器(PVDF-IDT)由于其微小尺寸、软材料特性以及长期粘结在被测结构表面的特性,在结构健康监测的应用中显示出了相当大的潜力。为了实现 IDT 在潜水器或水下结构上的应用,有必要了解不同结构的水下环境对 IDT 的影响。通过 COMSOL 软件模拟,得到了波长为 2-5mm 的 IDT 的水下衰减和 4mm 厚钛合金板上 Lamb(A0 模式)波的水下衰减。实验验证表明,模拟结果与实际情况相符,证明了 COMSOL 软件能够准确计算固液界面表面波的声衰减。同时,不同结构的 IDT 的水下衰减差异很大,为水下叉指换能器的设计提供了重要的设计参数。本文发现,在水下薄板结构的健康监测中,Lamb 波比瑞利波具有显著的优势。