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Investigations on adhesively bonded curved CFRP panels with closed debonds subjected to compressive load

机译:压缩载荷作用下封闭解粘的弧形CFRP胶粘板的研究

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This present work aims to investigate the effect of debonds on the structural performance of adhesively bonded curved carbon fiber reinforced plastic (CFRP) panels under compressive loading environment. Representative curved panels are fabricated with a quasi-isotropic lay-up. Two types of specimens are prepared for the studies, one without debonds and the other with debonds of specified size, artificially introduced within the lap region. Pulsed thermography non-destructive technique is employed for the detection of debonds on the specimens. A set of experiments are conducted with displacement, strain and acoustic emission sensors to ascertain the performance of adhesively bonded joints under compression loading. Computational analyses are carried out using commercial finite element code MSC/NASTRAN to reproduce the experimental behavior and to aid in understanding the effect of closed debonds on the bonded joints. The computational model predictions are in good agreement with experimental observations. The effects of location of debond and panel curvatures are studied computationally incorporating debonds of different sizes. It is observed that debond location along the specimen length has significant effect and the buckling load reduces when the panel curvature increases for the same debond size.
机译:这项工作的目的是研究在压缩载荷环境下,脱胶对粘合弯曲碳纤维增强塑料(CFRP)面板的结构性能的影响。代表性的弧形面板是用准各向同性的叠层制作的。为研究准备了两种类型的标本,一种没有剥离,另一种具有指定尺寸的剥离,是在膝部区域人工引入的。脉冲热成像非破坏性技术被用于检测样品上的脱胶。用位移,应变和声发射传感器进行了一组实验,以确定在压缩载荷下胶接接头的性能。使用商业有限元代码MSC / NASTRAN进行计算分析,以重现实验行为并帮助理解封闭的键合对键合接头的影响。计算模型的预测与实验观察非常吻合。结合不同尺寸的脱胶剂,通过计算研究了脱胶剂位置和面板曲率的影响。可以观察到,在相同去粘尺寸的情况下,当面板曲率增加时,沿着试样长度的去粘位置会产生显着影响,并且屈曲载荷会降低。

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