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Buckling and postbuckling behaviour of glare\ud laminates containing splices and doublers. Part 1:\ud instrumented tests

机译:眩光的屈曲和屈曲后的行为\ ud 包含接头和倍增器的层压板。第1部分:\ ud 仪器测试

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摘要

The progressive damage and fracture behaviour of Glare® fibre-metal laminates (FMLs) was investigated experimentally for the buckling and post- buckling regimes of laminates containing internal ‘splice’ and ‘doubler’ joints. Specimens were either ‘pristine’ or contained artificial delaminations in the form of strips of release film to represent manufacturing defects. Each was tested under in-plane compression. Tests were monitored using digital image correlation (DIC) for visualisation of three-dimensional full-field displacements whilst acoustic emission (AE) monitoring – combined with the novel Delta-T location algorithm – was used for the first time to detect and locate damage events in these FML structures. Results were validated using Scanning Electron Microscopy (SEM) to determine the damage mechanisms present. Large numbers of AE events were recorded at the splice and doubler locations during initial loading and throughout the postbuckling regime,suggesting that the novel AE location algorithm used is suitable for the monitoring of delaminations and matrix cracks in internal features in Glare® laminates. Moreover, AE events located away from internal features correlated well with buckling and postbuckling deformation as identified by the full- field DIC data. Finally, good correlation was observed between the onset of buckling and a rapid increase in cumulative AE energy, demonstrating that as well as locating damage, AE monitoring is able to indicate quite clearly when the buckling load has been reached.
机译:实验研究了Glare®纤维金属层压板(FML)的渐进式损坏和断裂行为,以分析包含内部“接头”和“双重”接头的层压板的屈曲和屈曲后状态。标本要么是“原始的”,要么是包含剥离膜条形式的人工分层,以代表制造缺陷。每个都在平面压缩下进行了测试。使用数字图像相关性(DIC)对测试进行监视,以实现三维全场位移的可视化,而声发射(AE)监视(结合新颖的Delta-T定位算法)首次用于检测和定位损坏事件在这些FML结构中。使用扫描电子显微镜(SEM)验证结果以确定存在的损伤机制。在初始加载期间和整个后屈曲过程中,在接头和倍增器位置记录了大量AE事件,这表明所使用的新型AE定位算法适用于监控Glare®层压板内部特征中的分层和基体裂纹。此外,如全场DIC数据所示,远离内部特征的AE事件与屈曲和屈曲后变形有很好的相关性。最后,在屈曲的开始与累积AE能量的快速增加之间观察到良好的相关性,这表明AE监测以及定位损坏的过程可以非常清楚地指示何时达到屈曲载荷。

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