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Experimental and Numerical Investigations of Textile Hybrid Composites Subjected to Low Velocity Impact Loadings

机译:低速冲击载荷对纺织混合复合材料的实验性和数值研究

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摘要

In the present study experimental and numerical investigations were carried out to predict the low velocity impact response of four symmetric configurations: 10 ply E Glass, 10 ply AS4 Carbon, and two Hybrid combinations with 1 and 2 outer plies of E Glass and 8 and 6 inner plies of Carbon. All numerical investigations were performed using commercial finite element software, LS-DYNA. The test coupons were manufactured using the low cost Heated Vacuum Assisted Resin Transfer Molding (H-VARTM©) technique. Low velocity impact testing was carried out using an Instron Dynatup 8250 impact testing machine. Standard 6 × 6 Boeing fixture was used for all impact experiments. Impact experiments were performed over progressive damage, that is, from incipient damage till complete failure of the laminate in six successive impact energy levels for each configuration. The simulation results for the impact loading were compared with the experimental results. For both nonhybrid configurations, it was observed that the simulated results were in good agreement with the experimental results, whereas, for hybrid configurations, the simulated impact response was softer than the experimental response. Maximum impact load carrying capacity was also compared for all four configurations based on their areal density. It was observed that Hybrid262 configuration has superior impact load to areal density ratio.
机译:在本研究中,进行了实验性和数值研究以预测四种对称配置的低速冲击响应:10级E玻璃,10层级碳,以及两个具有1和2外层的E玻璃和8和6的混合组合内层碳。使用商业有限元软件,LS-DYNA进行所有数值研究。使用低成本加热真空辅助树脂转印(H-VARTM©)技术制造测试试样。使用Instron Dynatup 8250冲击试验机进行低速冲击测试。标准6×6波音夹具用于所有冲击实验。对渐进式损伤进行影响实验,即从初始损伤到每个配置的六个连续冲击能量水平的层压板完全失效。将冲击载荷的仿真结果与实验结果进行了比较。对于非水配置,观察到模拟结果与实验结果吻合良好,而对于混合配置,模拟的影响响应比实验反应更柔软。基于其面密度,还与所有四种配置进行了比较了最大冲击载荷承载能力。观察到Hybrid262构造具有优异的冲击载荷对区域密度比。

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