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基于增强相谱法的导波相速度色散重构

Guided Wave Phase Velocity Dispersion Reconstruction Based on Enhanced Phased Spectrum Method.

作者信息

Samaitis Vykintas, Mažeika Liudas

机构信息

Prof. K. Baršauskas Ultrasound Research Institute, Kaunas University of Technology, K. Baršausko St. 59, LT-51423 Kaunas, Lithuania.

出版信息

Materials (Basel). 2022 Feb 21;15(4):1614. doi: 10.3390/ma15041614.

Abstract

Fibre-reinforced composite laminates are frequently used in various engineering structures, due to their increased weight-to-stiffness ratio, which allows to fulfil certain regulations of CO emissions. Limited inter-laminar strength makes composites prone to formation of various defects, which leads to progressive degradation of residual strength and fatigue life of the structure. Using ultrasonic guided waves is a common technique for assessing the structural integrity of composite laminates. Phase velocity is one of the fundamental characteristics of guided waves and can be used for defect detection, material property estimation, and evaluation of dispersion. In this paper, a phase velocity reconstruction approach, based on the phase-shift method, was proposed, which uses frequency sweep excitation to estimate velocity at specific frequency harmonics. In contrast to the conventional phase spectrum technique, the proposed approach is applicable to the narrowband piezoelectric transducers and suitable for the reconstruction of dispersion curves for direct, converted, and multiple co-existing modes with high accuracy. The proposed technique was validated with finite element simulations and experiments, both on isotropic and anisotropic structures, analysing the direct, converted, and overlapped modes. The results demonstrated that, using the proposed technique, the phase velocity dispersion can be reconstructed at -20 dB level bandwidth of the transducer, with a relative error of ±4%, compared to the theoretical velocity predictions.

摘要

纤维增强复合材料层压板因其重量与刚度比的提高,常被用于各种工程结构中,这有助于满足某些一氧化碳排放规定。层间强度有限使得复合材料容易形成各种缺陷,从而导致结构的剩余强度和疲劳寿命逐渐降低。使用超声导波是评估复合材料层压板结构完整性的常用技术。相速度是导波的基本特性之一,可用于缺陷检测、材料性能估计和频散评估。本文提出了一种基于相移法的相速度重建方法,该方法利用扫频激励来估计特定频率谐波处的速度。与传统的相谱技术相比,该方法适用于窄带压电换能器,适用于直接模式、转换模式和多种共存模式的高精度频散曲线重建。通过有限元模拟和实验,在各向同性和各向异性结构上对所提出的技术进行了验证,分析了直接模式、转换模式和重叠模式。结果表明,使用该技术,可以在换能器的-20 dB电平带宽内重建相速度频散,与理论速度预测相比,相对误差为±4%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/898c/8880280/ab4f1679253b/materials-15-01614-g001.jpg

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