Research on the Optimal Guided Wave Modes for the Detection of Delamination Defects

Xiao-dan Hu, Shi-yuan Zhou, Ming-Hua Zhao, Peng-jiao Yao, Quanpeng Yu, Chunguang Xu
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Abstract

Carbon fiber composite has good material properties, but it is easy to cause defects during the process of preparation and performance. Delamination is one of the main forms of failure, which directly affects the safety of the material. Due to the dispersion and multimodality of ultrasonic guided waves, it is necessary to select sensitive modes for defect detection. In this paper, firstly, the dispersion curve and wave structures are calculated by semi analytical finite element method. Then the finite element simulation model in the frequency domain is established by COMSOL. The mode-frequency points with better detection effect are selected by analyzing the displacement changes, and the frequency sweep experiment is carried out to verify the simulation result. The result shows that mode 4 at 480kHz is suitable for the detection and identification of the delamination defects with different sizes.
用于分层缺陷检测的最佳导波模式研究
碳纤维复合材料具有良好的材料性能,但在制备和使用过程中容易产生缺陷。分层是主要失效形式之一,它直接影响到材料的安全。由于超声导波的弥散性和多模性,需要选择敏感模态进行缺陷检测。本文首先用半解析有限元法计算了频散曲线和波结构。然后利用COMSOL软件建立了频率域有限元仿真模型。通过分析位移变化选择检测效果较好的模频点,并进行扫频实验验证仿真结果。结果表明,480kHz模式4适用于不同尺寸分层缺陷的检测与识别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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