Application of Wool in High-velocity Ballistic Protective Fabrics

被引:13
作者
Sinnppoo, Kanesalingam [1 ]
Arnold, Lyndon [1 ]
Padhye, Rajiv [1 ]
机构
[1] RMIT Univ, Sch Fash & Text, Brunswick 3056, Australia
关键词
Ballistic; Protective; Wool; Aramid; Fabric; YARN PULL-OUT; IMPACT ENERGY; WOVEN FABRICS; PENETRATION; PERFORMANCE; PERFORATION; PROJECTILE; MECHANISMS; FRICTION; SYSTEM;
D O I
10.1177/0040517509352517
中图分类号
TB3 [工程材料学]; TS1 [纺织工业、染整工业];
学科分类号
0805 ; 080502 ; 0821 ;
摘要
The protective power of typical aramid-based ballistic fabrics, when assembled into multi-layered panels designed to defeat high-velocity ballistic impacts, can be improved if wool is incorporated into the weave structure. Although the synthetic is still the primary energy-absorbent material, the wool plays a complementary role by increasing resistive interactions between the yarns and filaments. Wool restricts the lateral separation of the synthetic yarns and ensures that more directly impacted yarns are held in place to dissipate the impact energy. Wool increases the energy-absorption mechanism of yarn pull-in by increasing the longitudinal friction along the yarns/filaments, in particular near the free edges of the fabric layers. The wool absorbs water that may otherwise lubricate synthetic filaments and so improves the wet performance. Ballistics tests have shown that synthetic fabrics blended with wool can at least match the dry or wet ballistic performance of an equivalent pure Kevlar fabric when tested under National Institute of Justice (NIJ) Ballistic Standard Level III A. The inclusion of the wool can significantly improve the tear strength of pure synthetic ballistic fabrics.
引用
收藏
页码:1083 / 1092
页数:10
相关论文
共 50 条
  • [21] Assessment of ballistic impact damage on aluminum and magnesium alloys against high velocity bullets by dynamic FE simulations
    Alwan, Faiz Haidar Ahmad
    Prabowo, Aditya Rio
    Muttaqie, Teguh
    Muhayat, Nurul
    Ridwan, Ridwan
    Laksono, Fajar Budi
    JOURNAL OF THE MECHANICAL BEHAVIOR OF MATERIALS, 2022, 31 (01) : 595 - 616
  • [22] Response of boron carbide subjected to high-velocity impact
    Holmquist, T. J.
    Johnson, G. R.
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2008, 35 (08) : 742 - 752
  • [23] Ballistic resistance of a novel re-entrant auxetic honeycomb under in-plane high-velocity impact
    Guo, Junlan
    He, Qiang
    Li, Lizheng
    Zhu, Jiamei
    Yan, Dejun
    JOURNAL OF COMPOSITE MATERIALS, 2024, 58 (08) : 1031 - 1049
  • [24] Experimental study on protective performance of ACF sandwich composites with different configurations in high-velocity impact
    Yu, Xu-Hua
    Liu, Wen-Wu
    Huang, Guo-Yang
    Fang, Yi-Qun
    Xu, Jia-Jun
    JOURNAL OF INDUSTRIAL TEXTILES, 2024, 54
  • [25] Effects of curvature on high-velocity impact resistance of thin woven fabric composite targets
    Pasquali, Michele
    Gaudenzi, Paolo
    COMPOSITE STRUCTURES, 2017, 160 : 349 - 365
  • [26] Fracture of Protective Structures from Heavy Reinforcing Cement During Interaction with High-velocity Impactor
    Radchenko, Pavel A.
    Batuev, Stanislav P.
    Radchenko, Andrey, V
    JOURNAL OF SIBERIAN FEDERAL UNIVERSITY-MATHEMATICS & PHYSICS, 2021, 14 (06): : 779 - 786
  • [27] Migrating intrathecal high-velocity projectile
    Chan, Yuen T. C.
    Al-Mahfoudh, Rafid
    Thennakon, Shymica
    Eldridge, Paul
    Pillay, Robin
    BRITISH JOURNAL OF NEUROSURGERY, 2015, 29 (04) : 585 - 586
  • [28] A study of high-velocity penetration on icy lunar regolith simulants
    Xiao, Junxiao
    Jiang, Shengyuan
    Tang, Junyue
    Sun, Miao
    Zhang, Weiwei
    Chi, Runqiang
    Chi, Cheng
    Lu, Zixiao
    Chi, Guanxin
    Zhang, Rong
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2024, 271
  • [29] Investigation of High-Velocity Projectile Penetrating Concrete Blocks Reinforced by Layers of High Toughness and Energy Absorption Materials
    Elhozayen, Aya
    Laissy, Mohamed Y.
    Attia, Walid A.
    CIVIL ENGINEERING JOURNAL-TEHRAN, 2019, 5 (07): : 1518 - 1532
  • [30] A numerical study on the high-velocity impact behavior of pressure pipes
    Wang, Zhen-yu
    Zhao, Yang
    Ma, Guo-wei
    He, Zhi-guo
    JOURNAL OF ZHEJIANG UNIVERSITY-SCIENCE A, 2016, 17 (06): : 443 - 453