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Investigation of composite filled hole coupons and lockbolt fastened joints under impact loading

机译:冲击载荷作用下复合实心孔试块和锁紧螺栓紧固连接的研究

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摘要

Two different composite fastened configurations, i.e., the filled hole and the single-lap double-fastener joint, subjected to impact tensile loads, are investigated using efficient modelling techniques. The novel simulation methodology of the 'stacked shell' approach (or '2.5D' approach) is exploited, in order to model the fastened composite coupons using the nonlinear explicit dynamics finite element code LS-DYNA. In the stacked shell approach, the composite plates are represented by discrete sublaminates of shell elements, which are tied together using interface elements with cohesive zone properties, resulting in a computationally efficient methodology of solving problems that involve significant inter-ply and intra-ply material failure. The numerical models are validated against relative experimental test data, derived from experiments which are performed within the investigated impact loading regime. The simulation results demonstrate that the models are capable to predict the onset of the damage, the failure modes and the load-displacement response of the fastened specimens with notable accuracy. In addition, the numerical investigation has shown limited loading rate sensitivity in terms of strength values for both of the examined configurations, while the lap joint samples illustrate pronounced changes in the final failure mode as the loading rate increases.
机译:使用有效的建模技术研究了两种不同的复合材料紧固构型,即填充孔和单圈双紧固件接头,它们承受了冲击拉伸载荷。为了利用非线性显式动力学有限元代码LS-DYNA对紧固的复合试样进行建模,采用了“叠层壳”方法(或“ 2.5D”方法)的新颖仿真方法。在叠层壳方法中,复合板以壳单元的离散下层为代表,壳单元使用具有粘性区域特性的界面单元绑在一起,从而产生了一种计算有效的方法,可以解决涉及大量层间和层内材料的问题失败。相对模型的相对实验数据验证了数值模型,这些数据是在所研究的冲击载荷范围内进行的实验得出的。仿真结果表明,该模型能够以显着的精度预测损坏样本的开始,破坏模式和载荷位移响应。另外,数值研究表明,就两种检查构型的强度值而言,有限的加载速率敏感性,而搭接接头样品说明了随着加载速率的增加,最终破坏模式的明显变化。

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