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Influence of low-velocity impact on residual tensile properties of nonwoven flax/epoxy composite

机译:低速冲击对非织造亚麻/环氧树脂复合材料残余拉伸性能的影响

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This paper addresses the damage resistance and post-impact damage effect on residual tensile properties of nonwoven flax fibers reinforced epoxy composites subjected to low-velocity impact. Two different impactors: hemispherical and conical, at six different impact energy levels: 4 J, 6 J, 8 J, 10 J, 12 J and 14 J were assessed. The experimental results to investigate the influence of impactor type suggest that the penetration of the impactor and induced damage are more important with a conical impactor. The post-impact damage patterns and failure mechanisms of impacted samples were characterized by ultrasonic C-scan inspection. Results suggest that damage induced by the impact included matrix cracking, and delamination, which are more important with a conical impactor. Tensile properties show a significant effect of the impact induced damage on the performance of the composite. A particular effect was identified for an impact energy from 8 J, where the tensile modulus E0 and E1 are decreased by 53.5% and 59.3%, respectively. This effect was also confirmed by the examination of the strain map, describing the deformation behavior of the material at different impact energy, where a stress concentration localized in the impacted zones was identified.
机译:本文探讨了低速冲击下非织造亚麻纤维增强环氧复合材料的抗损伤性和冲击后损伤对残余拉伸性能的影响。两种不同的冲击器:半球形和圆锥形,具有六个不同的冲击能级:分别评估了4 J,6 J,8 J,10 J,12 J和14J。研究冲击器类型影响的实验结果表明,对于圆锥形冲击器,冲击器的穿透和诱发的损伤更为重要。通过超声C扫描检查来表征受冲击样品的冲击后破坏模式和破坏机理。结果表明,撞击引起的损坏包括基体破裂和分层,这对于锥形撞击器更为重要。拉伸性能显示冲击诱导的损伤对复合材料性能的显着影响。对于来自8 J的冲击能量,发现了特殊的效果,其中拉伸模量E0和E1分别降低了53.5%和59.3%。通过检查应变图也可以确认这种效果,该图描述了材料在不同冲击能量下的变形行为,其中确定了位于冲击区域的应力集中。

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