Nurazzi N M, Asyraf M R M, Khalina A, Abdullah N, Aisyah H A, Rafiqah S Ayu, Sabaruddin F A, Kamarudin S H, Norrrahim M N F, Ilyas R A, Sapuan S M
Institute of Tropical Forestry and Forest Products (INTROP), Universiti Putra Malaysia (UPM), Serdang 43400, Selangor, Malaysia.
Centre for Defence Foundation Studies, Universiti Pertahanan Nasional Malaysia (UPNM), Kem Perdana Sungai Besi 57000, Kuala Lumpur, Malaysia.
Polymers (Basel). 2021 Feb 22;13(4):646. doi: 10.3390/polym13040646.
Even though natural fiber reinforced polymer composites (NFRPCs) have been widely used in automotive and building industries, there is still a room to promote them to high-level structural applications such as primary structural component specifically for bullet proof and ballistic applications. The promising performance of Kevlar fabrics and aramid had widely implemented in numerous ballistic and bullet proof applications including for bullet proof helmets, vest, and other armor parts provides an acceptable range of protection to soldiers. However, disposal of used Kevlar products would affect the disruption of the ecosystem and pollutes the environment. Replacing the current Kevlar fabric and aramid in the protective equipment with natural fibers with enhanced kinetic energy absorption and dissipation has been significant effort to upgrade the ballistic performance of the composite structure with green and renewable resources. The vast availability, low cost and ease of manufacturing of natural fibers have grasped the attention of researchers around the globe in order to study them in heavy armory equipment and high durable products. The possibility in enhancement of natural fiber's mechanical properties has led the extension of research studies toward the application of NFRPCs for structural and ballistic applications. Hence, this article established a state-of-the-art review on the influence of utilizing various natural fibers as an alternative material to Kevlar fabric for armor structure system. The article also focuses on the effect of layering and sequencing of natural fiber fabric in the composites to advance the current armor structure system.
尽管天然纤维增强聚合物复合材料(NFRPCs)已广泛应用于汽车和建筑行业,但仍有空间将其推广到高级结构应用中,例如专门用于防弹和弹道应用的主要结构部件。凯夫拉尔纤维织物和芳纶的优异性能已广泛应用于众多弹道和防弹应用中,包括防弹头盔、背心和其他装甲部件,为士兵提供了可接受的防护范围。然而,废旧凯夫拉尔产品的处理会影响生态系统的平衡并污染环境。用具有增强动能吸收和耗散能力的天然纤维替代防护装备中现有的凯夫拉尔纤维织物和芳纶,是利用绿色和可再生资源提升复合结构弹道性能的一项重要举措。天然纤维的广泛可得性、低成本和易于制造,吸引了全球研究人员的关注,以便在重型军械装备和高耐用产品中对其进行研究。天然纤维机械性能提升的可能性,促使研究向NFRPCs在结构和弹道应用方面的扩展。因此,本文对利用各种天然纤维作为凯夫拉尔纤维织物的替代材料用于装甲结构系统的影响进行了最新综述。本文还重点关注了天然纤维织物在复合材料中的分层和排列顺序对当前装甲结构系统的影响。