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Damage Characterization of Repeatedly Impacted Glass Fiber Reinforced Polyester-Armor Steel Composites With Cone Beam Computed Tomography Technique

机译:锥束计算机断层扫描技术对反复冲击的玻璃纤维增​​强聚酯-铠装钢复合材料的损伤表征

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摘要

This article utilizes the characterization of single and repeated low velocity impact damage behavior of glass fiber reinforced polyester (GFRP) armor steel composite. Cone beam computed tomography technique (CBCT) was used for damage assessment. Impact energies, maximum loads and the permanent deflection of GFRP, armor steel composites are determined with instrumented drop weight impact test machine. The repeated impact performance and damage resistance were evaluated. On the other hand, preliminary single impact loading tests also performed in order to find the energy levels, which were ranged fully elastic energy level to perforation energy level for GFRP, armor steel composites. Additionally, CBCT was used to provide a novel, multiscale approach for assessing impact damage. Deformation areas of both single and repeatedly impacted GFRP, armor steel composites were assessed three-dimensionally by CBCT. An innovative approach was used to visualize the internal damages. (C) 2014 Society of Plastics Engineers
机译:本文利用玻璃纤维增​​强聚酯(GFRP)铠装钢复合材料的单次和反复低速冲击损伤行为进行表征。锥束计算机断层扫描技术(CBCT)用于损伤评估。冲击能量,最大载荷和GFRP的永久挠度是由仪器化的落锤冲击试验机确定的。评价了重复的冲击性能和抗损伤性。另一方面,还进行了初步的单次冲击载荷试验,以找到能级,即GFRP,铠装钢复合材料的全弹性能级到射孔能级。此外,CBCT用于提供一种新颖的,多尺度的方法来评估冲击损伤。通过CBCT三维评估了单次和反复冲击的GFRP铠装钢复合材料的变形区域。一种创新的方法用于可视化内部损坏。 (C)2014年塑料工程师学会

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