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利用几何参数优化平面波SH₀型压电陶瓷换能

Plane Wave SH₀ Piezoceramic Transduction Optimized Using Geometrical Parameters.

作者信息

Boivin Guillaume, Viens Martin, Belanger Pierre

机构信息

Département de génie mécanique, École de technologie supérieure, 1100 rue Notre-Dame Ouest, Montréal, QC H3C 1K3, Canada.

出版信息

Sensors (Basel). 2018 Feb 10;18(2):542. doi: 10.3390/s18020542.

Abstract

Structural health monitoring is a prominent alternative to the scheduled maintenance of safety-critical components. The nondispersive nature as well as the through-thickness mode shape of the fundamental shear horizontal guided wave mode (SH 0 ) make it a particularly attractive candidate for ultrasonic guided wave structural health monitoring. However, plane wave excitation of SH 0 at a high level of purity remains challenging because of the existence of the fundamental Lamb modes (A 0 and S 0 ) below the cutoff frequency thickness product of high-order modes. This paper presents a piezoelectric transducer concept optimized for plane SH 0 wave transduction based on the transducer geometry. The transducer parameter exploration was initially performed using a simple analytical model. A 3D multiphysics finite element model was then used to refine the transducer design. Finally, an experimental validation was conducted with a 3D laser Doppler vibrometer system. The analytical model, the finite element model, and the experimental measurement showed excellent agreement. The modal selectivity of SH 0 within a 20 ∘ beam opening angle at the design frequency of 425 kHz in a 1.59 mm aluminum plate was 23 dB, and the angle of the 6 dB wavefront was 86 ∘ .

摘要

结构健康监测是对安全关键部件进行定期维护的一种重要替代方法。基本水平剪切导波模式(SH₀)的非色散特性以及贯穿厚度的振型使其成为超声导波结构健康监测特别有吸引力的候选对象。然而,由于在高阶模式的截止频率厚度乘积以下存在基本兰姆波模式(A₀和S₀),以高纯度水平对SH₀进行平面波激励仍然具有挑战性。本文基于换能器几何结构提出了一种针对平面SH₀波转换进行优化的压电换能器概念。最初使用简单的分析模型进行换能器参数探索。然后使用三维多物理场有限元模型对换能器设计进行优化。最后,使用三维激光多普勒振动计系统进行了实验验证。分析模型、有限元模型和实验测量结果显示出极好的一致性。在1.59毫米铝板中,在425千赫设计频率下,SH₀在20°波束开口角内的模态选择性为23分贝,6分贝波前的角度为86°。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5879/5855228/12bef607254a/sensors-18-00542-g001.jpg

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