Study of aluminum/kevlar fiber composite laminate with and without TiC nanoparticle impregnation and aluminum/carbon fiber composite laminate for anti-ballistic materials

Q1 Engineering
Benediktus Madika, Anne Z. Syahrial
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引用次数: 0

Abstract

Numerous studies have investigated the advantages of using composite laminates made of both metals and fibers, which include being able to sustain heavier loads, having better resistance to impacts, and being more durable, while also being lightweight. In this particular study, we utilized the hand lay-up method to create composite laminates consisting of three layers of aluminum alloy and 60 layers of fiber. We tested three different types of aluminum alloy (Al-2024, Al-5052, and Al-7075) and two types of fiber (kevlar and carbon), which were divided into three categories: kevlar fibers, TiC nanoparticle-impregnated kevlar fibers and carbon fibers. We then combined each type of fiber with each type of aluminum alloy to make nine distinct composite laminates. To determine the mechanical properties of the laminates, we used a rule-of-mixture formula. Our research revealed that kevlar fibers had a more significant impact on increasing the yield strength and ultimate tensile strength of the composite laminates than carbon fibers. However, carbon fibers have a greater effect on the modulus of elasticity of the composite. Among all types of aluminum, Al-2024 provides the highest mechanical properties for composite laminates. However, impregnating kevlar fibers with TiC nanoparticles did not enhance the anti-ballistic performance of composite laminates. Consequently, composite laminate that consists of Al-2024 and carbon fibers exhibits the best mechanical properties and anti-ballistic performance, making them the ideal choice for anti-ballistic applications.

纳米TiC浸渍和不浸渍铝/凯夫拉纤维复合层压板及铝/碳纤维复合层压板的研究
许多研究已经调查了使用由金属和纤维制成的复合层压板的优点,包括能够承受更重的负载,具有更好的抗冲击能力,更耐用,同时也很轻。在这个特殊的研究中,我们使用了手工铺层的方法来制造由三层铝合金和60层纤维组成的复合层压板。我们测试了三种不同类型的铝合金(Al-2024, Al-5052和Al-7075)和两种类型的纤维(凯夫拉纤维和碳),分为三类:凯夫拉纤维,TiC纳米颗粒浸渍凯夫拉纤维和碳纤维。然后,我们将每种类型的纤维与每种类型的铝合金结合起来,制成九种不同的复合层压板。为了确定层压板的力学性能,我们使用了混合规则公式。研究表明,在提高复合材料层合板的屈服强度和极限拉伸强度方面,芳纶纤维比碳纤维具有更显著的作用。而碳纤维对复合材料弹性模量的影响较大。在所有类型的铝中,Al-2024为复合层压板提供了最高的机械性能。然而,用TiC纳米粒子浸渍凯夫拉纤维并不能提高复合材料层合板的抗弹道性能。因此,由Al-2024和碳纤维组成的复合层压板具有最佳的机械性能和反弹道性能,使其成为反弹道应用的理想选择。
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来源期刊
International Journal of Lightweight Materials and Manufacture
International Journal of Lightweight Materials and Manufacture Engineering-Industrial and Manufacturing Engineering
CiteScore
9.90
自引率
0.00%
发文量
52
审稿时长
48 days
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