Ballistic performance of integral body armor with closed-cell aluminum foam: A numerical study

被引:4
|
作者
Winchester, Trevor [1 ]
Kustra, Elysia [1 ]
Cormier, Ikale [1 ]
Cherniaev, Aleksandr [1 ]
机构
[1] Univ Windsor, Dept Mech Automot & Mat Engn, 401 Sunset Ave, Windsor, ON N9B 3P4, Canada
来源
FORCES IN MECHANICS | 2023年 / 11卷
关键词
Mechanics of penetration; Integral body armor; Armor-piercing bullets; Closed-cell foam; CERAMICS INFLUENCE; IMPACT; PENETRATION; DESIGN;
D O I
10.1016/j.finmec.2023.100187
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This numerical study is dedicated to investigating the ballistic performance of three-component integral body armor comprising ceramic facade, layers of ultra-high molecular weight polyethylene fiber-based composite (Dyneema) and closed-cell aluminum foam against NIJ-Type IV armor-piercing bullets. A numerical model of integral armor with a ceramic facade and a fiber-reinforced composite backing plate was developed in IMPETUS Afea Solver and verified against experimental data. The verified model was used to design a "baseline config-uration" of two-component integral armor that can stop the NIJ-Type IV projectiles. Three-component armor configurations were obtained by introducing layer(s) of closed-cell aluminum foam into the laminate. Laminates with different stacking sequences of composite and porous layers and different foam relative densities were studied and compared with the baseline two-component configuration. The study presents new insights into the mechanics of perforation of integral armor with closed-cell foam and provides design recommendations for such armor systems.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Failure Investigations on Low Velocity Ballistic Impact Deformation of Closed-Cell Aluminum Metal Foam Targets
    S. Suresh Kumar
    R. Sabareeswar
    S. Siddharth Krishna
    R. Suraj
    B. Vishal
    Journal of Materials Engineering and Performance, 2024, 33 : 1842 - 1851
  • [22] Failure Investigations on Low Velocity Ballistic Impact Deformation of Closed-Cell Aluminum Metal Foam Targets
    Suresh Kumar, S.
    Sabareeswar, R.
    Siddharth Krishna, S.
    Suraj, R.
    Vishal, B.
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2024, 33 (04) : 1842 - 1851
  • [23] Cell-structure and mechanical properties of closed-cell aluminum foam
    Zhou, Y
    Zuo, XQ
    Sun, JL
    Nutt, SR
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2004, 14 (02) : 340 - 344
  • [24] Effect of cell size on the energy absorption of closed-cell aluminum foam
    Xu, Jinglin
    Liu, Jianqing
    Gu, Wenbin
    Wang, Zhenxiong
    Liu, Xin
    Cao, Tao
    MATERIALS TESTING, 2018, 60 (06) : 583 - 590
  • [25] Drop Impact of Closed-Cell Aluminum Foam: Experiment and Simulation
    Taherkhani, Bahman
    Kadkhodapour, Javad
    Anaraki, Ali Pourkamali
    Saeed, Mahmoud
    Tu, Haoyun
    JOURNAL OF FAILURE ANALYSIS AND PREVENTION, 2020, 20 (02) : 464 - 469
  • [26] Effect of rolling schedule on plasticity of closed-cell aluminum foam
    Zu, Guo-Yin
    Yao, Guang-Chun
    Li, Hong-Bin
    Dongbei Daxue Xuebao/Journal of Northeastern University, 2007, 28 (02): : 237 - 240
  • [27] Sound absorption and insulation property of closed-cell aluminum foam
    尉海军
    李兵
    姚广春
    王晓林
    罗洪杰
    刘宜汉
    Transactions of Nonferrous Metals Society of China, 2006, (S3) : 1383 - 1387
  • [28] Experimental investigation of the fatigue of closed-cell aluminum alloy foam
    Zhao, M. D.
    Fan, Xueling
    Fang, Qin-Zhi
    Wang, T. J.
    MATERIALS LETTERS, 2015, 160 : 68 - 71
  • [29] Cell-structure and mechanical properties of closed-cell aluminum foam
    周芸
    左孝青
    孙加林
    S.R.Nutt
    Transactions of Nonferrous Metals Society of China, 2004, (02) : 340 - 344
  • [30] Cell-structure and mechanical properties of closed-cell aluminum foam
    Zhou, Yun
    Zuo, Xiao-Qing
    Sun, Jia-Lin
    Nutt, S.R.
    Transactions of Nonferrous Metals Society of China (English Edition), 2004, 14 (02): : 340 - 344