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首页> 外文期刊>Journal of Composite Materials >The Influence of Embedded Optical Fibres on the Fatigue Damage Progress in Quasi-Isotropic CFRP Laminates
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The Influence of Embedded Optical Fibres on the Fatigue Damage Progress in Quasi-Isotropic CFRP Laminates

机译:包埋光纤对准各向同性CFRP层板疲劳损伤进展的影响

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摘要

mbedded optical fibre sensors have in the last decade been introduced as possible candidates for continuous damage monitoring in loaded composite structures. However, incorporation of foreign bodies like optical fibres in laminated structure; can lead to substantial microstructural disturbances, stress concentrations and degradations in mechanical properties. Optical fibres were embedded in the different interfaces of a quasi-isotropic CFRP laminate which was subsequently tested in interrupted tensioMension fatigue. During each interruption the damage state of the samples was quantified hy using penetrant enhanced microfocus radiography. The results were compared to earlier results obtained during continuous fatigue testing is which the number of cycles to fractllfe and the stiffness degradation were monitored. The main conclusion is that some optical fibre configurations can affect the fatigue properties by weakening the Qo-plies or accelerating the damage evolution. These results are the first to demonstrate a faster damage evolution caused by embedded optical fibres.
机译:在过去的十年中,嵌入式光纤传感器已被引入,可以作为连续载荷监测复合材料结构的可能方法。然而,在叠层结构中掺入异物如光纤。会导致大量的微结构干扰,应力集中和机械性能下降。将光纤嵌入准各向同性CFRP层压板的不同界面中,随后在间断张力应力疲劳中对其进行了测试。在每次中断期间,使用渗透增强微聚焦射线照相术对样品的损伤状态进行定量。将结果与连续疲劳测试期间获得的早期结果进行了比较,该结果是监测了断裂的次数和刚度的下降。主要结论是,某些光纤配置可通过削弱Qo折叠或加速损伤发展来影响疲劳性能。这些结果是第一个证明由嵌入式光纤引起的更快损伤发展的结果。

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