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Characterization of fatigue damage in adhesively bonded lap joints through dynamic, full-spectral interrogation of fiber Bragg grating sensors

机译:通过动态,全光谱光纤布拉格光栅传感器对粘合搭接接头的疲劳损伤进行表征

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In this study we evaluate the measurements of a fiber Bragg grating (FBG) sensor embedded at the adhesive layer of a single composite lap joint subjected to harmonic excitation after fatigue loading. After a fully-reversed cyclic fatigue loading is applied to the composite lap joint, the full spectral response of the sensor is interrogated in reflection at 100 kHz during two states: with and without an added harmonic excitation. The dynamic response of the FBG sensor indicates strong nonlinearities as damage progresses. The short-time Fourier transform (STFT) is computed for the extracted peak wavelength information to reveal time-dependent frequencies and amplitudes of the dynamic FBG sensor response. Pulse-phase thermography indicates a progression in defect size at the adhesive layer that strongly suggests non-uniform loading of the FBG sensor.
机译:在这项研究中,我们评估了在疲劳载荷后受到谐波激励的单个复合搭接接头粘合层中嵌入的光纤布拉格光栅(FBG)传感器的测量结果。将完全反向的循环疲劳载荷施加到复合搭接接头后,在以下两种状态下以100 kHz的反射速率询问传感器的全光谱响应:有和没有附加谐波激励。 FBG传感器的动态响应表明,随着损坏的进行,非线性很强。为提取的峰值波长信息计算短时傅立叶变换(STFT),以揭示时间相关的频率和动态FBG传感器响应的幅度。脉冲相热成像法表明粘合剂层的缺陷尺寸不断增加,这强烈暗示了FBG传感器的加载不均匀。

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