Malakooti Sadeq, Vivod Stephanie L, Pereira Michael, Ruggeri Charles R, Revilock Duane M, Zhang Runyu, Guo Haiquan, Scheiman Daniel A, McCorkle Linda S, Lu Hongbing
Materials and Structures Division, NASA Glenn Research Center, 21000 Brookpark Road, Cleveland, OH, 44135, USA.
Department of Mechanical Engineering, The University of Texas at Dallas, Richardson, TX, 75080, USA.
Sci Rep. 2022 Aug 17;12(1):13933. doi: 10.1038/s41598-022-18247-z.
The ballistic performance of edge-clamped monolithic polyimide aerogel blocks (12 mm thickness) has been studied through a series of impact tests using a helium-filled gas gun connected to a vacuum chamber and a spherical steel projectile (approximately 3 mm diameter) with an impact velocity range of 150-1300 m s. The aerogels had an average bulk density of 0.17 g cm with high porosity of approximately 88%. The ballistic limit velocity of the aerogels was estimated to be in the range of 175-179 m s. Moreover, the aerogels showed a robust ballistic energy absorption performance (e.g., at the impact velocity of 1283 m s at least 18% of the impact energy was absorbed). At low impact velocities, the aerogels failed by ductile hole enlargement followed by a tensile failure. By contrast, at high impact velocities, the aerogels failed through an adiabatic shearing process. Given the substantially robust ballistic performance, the polyimide aerogels have a potential to combat multiple constraints such as cost, weight, and volume restrictions in aeronautical and aerospace applications with high blast resistance and ballistic performance requirements such as in stuffed Whipple shields for orbital debris containment application.
通过一系列冲击试验,研究了边缘夹紧的整体式聚酰亚胺气凝胶块(厚度12毫米)的弹道性能。试验使用连接到真空室的充氦气枪和直径约3毫米的球形钢质弹丸,冲击速度范围为150 - 1300米/秒。这些气凝胶的平均堆积密度为0.17克/立方厘米,孔隙率约为88%。气凝胶的弹道极限速度估计在175 - 179米/秒范围内。此外,气凝胶表现出强大的弹道能量吸收性能(例如,在1283米/秒的冲击速度下,至少18%的冲击能量被吸收)。在低冲击速度下,气凝胶通过韧性扩孔随后拉伸破坏而失效。相比之下,在高冲击速度下,气凝胶通过绝热剪切过程失效。鉴于其显著强大的弹道性能,聚酰亚胺气凝胶有潜力应对多种限制,如航空航天应用中的成本、重量和体积限制,以及对高抗爆性和弹道性能的要求,例如用于轨道碎片遏制应用的填充式惠更斯防护屏。