纤维增强塑料
材料科学
分层(地质)
水下
变形(气象学)
水下爆炸
结构工程
应变计
数字图像相关
固体力学
夹层结构复合材料
破损
复合材料
空气冲击
休克(循环)
复合数
工程类
地质学
海洋学
采矿工程
医学
古生物学
内科学
俯冲
构造学
作者
Hari Arora,Paul A. Hooper,John P. Dear
标识
DOI:10.1007/s11340-011-9506-z
摘要
The resistance of glass-fibre reinforced polymer (GFRP) sandwich panels and laminate tubes to blast in air and underwater environments has been studied. Procedures for monitoring the structural response of such materials during blast events have been devised. High-speed photography was employed during the air-blast loading of GFRP sandwich panels, in conjunction with digital image correlation (DIC), to monitor the deformation of these structures under shock loading. Failure mechanisms have been revealed by using DIC and confirmed in post-test sectioning. Strain gauges were used to monitor the structural response of similar sandwich materials and GFRP tubular laminates during underwater shocks. The effect of the backing medium (air or water) of the target facing the shock has been identified during these studies. Mechanisms of failure have been established such as core crushing, skin/core cracking, delamination and fibre breakage. Strain gauge data supported the mechanisms for such damage. These studies were part of a research programme sponsored by the Office of Naval Research (ONR) investigating blast loading of composite naval structures. The full-scale experimental results presented here will aid and assist in the development of analytical and computational models. Furthermore, it highlights the importance of support and boundary conditions with regards to blast resistant design.
科研通智能强力驱动
Strongly Powered by AbleSci AI