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An investigation of in-plane dynamic behavior of adhesively-bonded composite joints under dynamic compression at high strain rate

机译:高应变速率下动态压缩下胶粘复合接头的面内动态行为研究

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摘要

This study examines the behaviour of adhesively-bonded composite joints under dynamic compression tests. The purpose of this work is to use the split Hopkinson pressure bar (SHPB) for the dynamic characterization of adhesively bonded joints subjected to in-plane compression loading and in particular, the effect of strain rate on the mechanical behaviour and the damage kinetics. These joints are studied using glass/vinylester composite materials which are frequently used in naval applications Compression tests are performed at different strain rates using SHPB and high speed camera has been used to follow the damage progression. The experimental results have shown that the dynamic properties change with respect to the change in strain rate. Fibre buckling and delamination are the main damage criterias seen in the specimens under in-plane compressive tests. Therefore, this study not only allows us to understand the dynamic response of the adhesively bonded joints under dynamic compression but also enables us to establish damage models based on strain rate effect, for structure design purposes.
机译:这项研究检查了动态压缩试验下粘结复合材料接头的行为。这项工作的目的是使用剖分式霍普金森压力杆(SHPB)来动态表征承受平面内压缩载荷的胶粘接头,特别是应变率对机械性能和破坏动力学的影响。这些接头是使用在海军应用中经常使用的玻璃/乙烯基酯复合材料进行研究的,使用SHPB在不同的应变速率下进行了压缩测试,并使用了高速摄像头来跟踪其损伤进程。实验结果表明,动态特性随应变率的变化而变化。纤维屈曲和分层是在面内压缩试验中观察到的主要破坏准则。因此,这项研究不仅使我们能够了解动态压缩下胶接接头的动态响应,而且使我们能够基于应变率效应建立损伤模型,以进行结构设计。

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