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AE Signal Analysis of Carbon Fiber Reinforced Composites Based on Hilbert-Huang Transform

机译:基于Hilbert-Huang变换的碳纤维增强复合材料的AE信号分析

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The AE signals of fiber reinforced composites in the tensile testing were processed by Hilbert-Huang transform. The AE signals were well recognized from the Hilbert-Huang spectrum. The experimental results show that the frequency range of matrix crack AE signals is below 200 kHz and the main frequency is nearly in 175 kHz. The frequency range of fiber breakage is above 200 kHz and the main frequency is nearly 250 kHz. While the frequency of delimitations is distributed all over the frequency range and the energy is distributed below 200 kHz. The experimental results also indicted that the intrinsic mode function (IMF) components of the AE signals processed by empirical mode decomposition (EMD) can reconstruct the original signals well, and the Hilbert spectrum of the IMF components can reveal the frequency and energy trends of AE signals.
机译:通过Hilbert-Huang变换加工拉伸试验中的纤维增强复合材料的AE信号。 AE信号从Hilbert-Huang谱识别出来。实验结果表明,矩阵裂纹AE信号的频率范围低于200kHz,主频率几乎在175 kHz。纤维断裂的频率范围高于200 kHz,主频率接近250 kHz。虽然分隔率频率在频率范围内分布,但能量分布在200 kHz以下。实验结果也表示,通过经验模式分解(EMD)处理的AE信号的内在模式(IMF)组件可以很好地重建原始信号,并且IMF组件的HILBERT频谱可以揭示AE的频率和能量趋势信号。

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