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The use of a CFBG fibre optical sensor to detect disbond development in composite/composite and metal/composite adhesively bonded joints

机译:使用CFBG光纤传感器检测复合材料/复合材料和金属/复合材料粘合接头中的脱粘发展

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摘要

This paper describes a novel technique to monitor disbond initiation and propagation in both composite-composite and metal-composite adhesively bonded joints using chirped fibre Bragg grating (CFBG) sensors embedded within fibre-reinforced composite adherends. Characteristic changes in the reflected spectra from the sensors indicate both (a) disbond initiation (due, for example, to fatigue loading) and (b) the current position of the disbond front (to within about 2 mm). For composite-composite bonded joints, the reflected spectra are recorded with the joint under a small load (in practice, this could be the self-weight of the structure). In the case of a metal-composite joint, the difference in the coefficient of thermal expansion between the adherends is sufficient to enable disbond propagation to be monitored when the joint is unloaded. The experimental results have been modelled using a combination of finite-element analysis and commercial software for predicting FBG spectra, with very good agreement between the experimental observations of the reflected spectra and the predicted spectra, for disbonds of different lengths.
机译:本文介绍了一种新技术,该技术可以使用嵌入纤维增强复合被粘物内的chi光纤布拉格光栅(CFBG)传感器来监测复合复合材料和金属复合材料粘合接头中的剥离起始和扩展。来自传感器的反射光谱的特征变化既指示(a)剥离开始(例如,由于疲劳载荷),又指示(b)剥离前的当前位置(大约2毫米以内)。对于复合复合粘结接头,反射光谱是在很小的载荷下随接头记录的(实际上,这可能是结构的自重)。在金属复合材料接头的情况下,被粘物之间的热膨胀系数之差足以使接头卸荷时能够监测脱粘传播。实验结果已经使用有限元分析和商业软件相结合来建模,以预测FBG光谱,在反射光谱的实验观察结果和预测光谱之间,对于不同长度的剥离,具有很好的一致性。

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