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Detection and characterisation of disbonds on Fibre Metal Laminate hybrid composites by flying laser spot thermography

机译:飞行激光点热成像技术检测和表征金属纤维层压复合材料中的胶结

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In this work a novel data collection and processing is proposed for the Infrared Non-Destructive Testing (IR-NDT) of interlaminar disbonds on Fibre Metal Laminate (FML) hybrid composites. The adopted active IR-NDT scheme uses a pointwise laser heat source that is moved along a raster scanning trajectory over the object surface. A Focal Plane Array IR camera is employed to acquire the thermal field generated by the moving heat source. Disbonds defect signatures are then searched by analysing the perturbations of the temperature distribution over a reference area following the heat source. The proposed methodology has been implemented on a GLARE sample, since this class of FMLs has gained extensive use in aerospace structures. In particular, a sample of GLARE 13/2-0.3 was manufactured in-house, containing triangular shaped artificial disbonds at different interlayers. The novel inspection approach was able to detect the position, size and to some extent the shape of interlaminar defects by recording the changes in standard deviation of the temperature over the monitored area. The sensitivity found in detecting disbonds proposes the presented methodology as a potential alternative to more conventional inspection routes for FMLs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,提出了一种新颖的数据收集和处理方法,用于纤维金属层压板(FML)混合复合材料上层间剥离的红外无损检测(IR-NDT)。所采用的有源IR-NDT方案使用了点状激光热源,该热源沿光栅扫描轨迹在对象表面上方移动。使用焦平面阵列红外热像仪来获取由移动的热源产生的热场。然后通过分析热源后参考区域上温度分布的扰动来搜索脱胶缺陷特征。由于此类FML已在航空航天结构中得到广泛使用,因此已在GLARE样本上实施了所提出的方法。特别是,内部制造的GLARE 13 / 2-0.3样品包含在不同夹层处的三角形人工胶结物。通过记录受监控区域内温度标准偏差的变化,这种新颖的检查方法能够检测层间缺陷的位置,大小和某种程度上的形状。在检测脱胶中发现的灵敏度提出了所提出的方法,可以作为FML的更常规检查路线的潜在替代方法。 (C)2016 Elsevier Ltd.保留所有权利。

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