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Delamination Growth Behaviour in Carbon/Epoxy Composite Road Wheel of an Armoured Fighting Vehicle Under Dynamic Load

机译:动态负荷下铠装战车辆碳/环氧复合路轮中的分层生长行为

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The primary objective of this paper is to find the threshold size of delamination as well as critical delamination location for composite road wheel of the Armoured Fighting Vehicle (AFV) under severe loading condition to which an AFV is subjected to, during the operation. The composite material considered in the study is carbon/epoxy composite (AS4/3501-6). Finite element analysis was performed using Ansys Workbench 17.2 to predict the delamination location and to study the delamination growth behaviour. The delamination onset spot was predicted using the stress-based failure criteria developed by Puck. Various delamination sizes were modelled at the critical location and the Strain Energy Release Rate (SERR) with respect to the fracture modes, viz., mode I, mode II and mode III were found using Virtual Crack Closure Technique (VCCT). The 3D failure criterion which was developed based on Benzeggagh-Kenane (B-K) mixed-mode I and II failure criterion was employed to predict the delamination growth based on which the threshold delamination size was found.
机译:本文的主要目的是在操作期间,在经常的严重负载条件下找到分层的分层的阈值大小以及用于铠装的战车(AFV)的复合路线的临界分层位置。研究中考虑的复合材料是碳/环氧复合材料(AS4 / 3501-6)。使用ANSYS Workbench 17.2进行有限元分析以预测分层位置并研究分层生长行为。使用冰球开发的基于应力的故障标准预测了分层开始点。各种分层尺寸在临界位置和应变能量释放速率(SERR)相对于裂缝模式,VIZ,使用虚拟裂纹闭合技术(VCCT)找到模式I,模式II和模式III。基于Benzeggagh-Kenane(B-K)混合模式I和II失效标准开发的3D故障标准用于预测基于发现阈值分层大小的分层生长。

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