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Effect of 3D-woven glass fabric and nanoparticles incorporation on impact energy absorption of GLARE composites

机译:3D编织玻璃织物和纳米颗粒在眩光复合材料的冲击能量吸收中的影响

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摘要

Proper combination of fiber reinforced composite and metal is a novel concept that it caused the advent of fiber-metal laminates. This study reports the impact response of 3D-woven glass fiber fabric composite cores experimentally, and it describes the effect of silica and graphene nanoparticles addition on energy absorption behavior of laminated fiber-metal composites. The composites are manufactured by VARTM method with 71% fiber volume fraction. The low velocity impact tests are performed with drop-weight impact test machine with various impact energies. The results show higher impact performance of plain-weave samples compared with 3D-woven glass fiber fabrics under different impact energies. The 3D-woven glass fiber fabrics are preferred in case of using samples with lower weights. POLYM. COMPOS., 39:3528-3536, 2018. (c) 2017 Society of Plastics Engineers
机译:纤维增强复合材料和金属的适当组合是一种新颖的概念,即它导致纤维金属层压板的出现。 本研究报告了经过实验的3D编织玻璃纤维织物复合芯的影响响应,并描述了二氧化硅和石墨烯纳米粒子的作用对层压纤维 - 金属复合材料的能量吸收行为的影响。 复合材料通过具有71%纤维体积分数的Vartm方法制造。 低速冲击试验是用具有各种冲击能量的滴重型冲击试验机进行。 结果表明,与不同冲击能量的3D编织玻璃纤维织物相比,普通织物样品的影响力较高。 在使用具有较低重量的样品的情况下,优选3D编织玻璃纤维织物。 聚合物。 Compos。,39:3528-3536,2018。(c)2017塑料工程师协会

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