含各种合成纳米填料的剪切增稠液分散的泡沫铝混合复合装甲的弹道冲击性能

IF 5.3 Q2 MATERIALS SCIENCE, COMPOSITES
Edison E. Haro , Akindele G. Odeshi , Santiago Castellanos , Xavier Sanchez , Lenin Abatta , Linker Criollo , Alejandra Alban , Jerzy A. Szpunar
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引用次数: 0

摘要

研制了由闭孔泡沫铝制成的混合复合装甲,用于弹道防护板。制造过程包括将含有不同微和纳米填料的剪切增稠剂浸渍到泡沫铝板中,然后使用压缩成型技术将两片围绕目标的AA 5086-H32铝板粘合在一起。研究了在泡沫铝板中添加胶体二氧化硅、氧化铝、碳化硅和凯夫拉微纤维等纳米填料对杂化复合材料装甲弹道响应的影响。采用扫描电镜研究了试样层间的界面相互作用,以及在封闭泡沫铝孔内浸渍纳米粒子对高速撞击前后试样层间的影响。根据北约标准,使用半自动9毫米贝雷塔Cx4风暴步枪卢格测试了所生产的混合复合电池泡沫铝层叠板的抗弹道冲击性。结果表明,在闭孔泡沫铝表面沉积微纳米填料,可提高泡沫铝复合装甲的性能。从而提高了试样的抗弹道冲击性能和吸能性能。凯夫拉纤维微纤维沉积获得了最高的冲击能量吸收能力,但所得到的板的目标重量和厚度最高。碳化硅粉次之,氧化铝次之,胶体二氧化硅粉以最小的靶重和平均厚度增强了冲击能吸收能力。研究结果表明,在闭孔泡沫铝表面添加微纳米填料,可使泡沫铝表面的热传导强度提高4.9 ~ 30.9 J,是一种很有前途的增强泡沫铝复合材料层间界面结合的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ballistic impact performance of hybrid composite armors made of aluminum foam containing the dispersion of shear thickening fluid made of various synthetic nano-fillers

Hybrid composites armors made of closed-cell aluminum foam are developed for intended use in ballistic protective plates. The manufacturing process involved impregnation of shear thickening containing different micro and nano-fillers into aluminum foam panels which are subsequently bonded two AA 5086-H32 aluminum sheets that surrounded the targets, by using compression molding techniques. The effects of the addition of different nano-fillers as colloidal silica, gamma alumina, silica carbide, and Kevlar micro-fibers to the aluminum foam plates on the ballistic response of the hybrid composites armors were investigated. Scanning electron micrographs were used to investigate the interfacial interaction between specimen layers, and the influence of the nanoparticles impregnated within closed aluminum foam cells before and after high-velocity impacts. The ballistic impact resistance of the produced hybrid composite cell aluminum foam laminates was tested according to NATO standards using a semiautomatic 9 mm Beretta Cx4 Storm Rifle Luger. The results indicated that the performance of the hybrid composite armors made of aluminum foam were enhanced by the deposition of micro and nano-fillers into the surface of the closed-cell aluminum foam.Therefore, the ballistic impact resistance and energy absorption of the specimens were improved. The highest impact energy absorption capacity was achieved by the deposition of Kevlar micro-fibers, but the resulting plates have the highest target weight and thickness. Silica carbide powder followed by gamma alumina, and colloidal silica powder in that order, enhanced the impact energy absorption capability with the least target weight and thickness average. These findings indicate that introduction of micro and nano-fillers coating on closed-cell aluminum foam, improved a range from 4.9 to 30.9 J in comparison with untreated samples, therefore, it could be a promising method for strengthening interfacial bonding between layers of the aluminum foam composites.

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来源期刊
Composites Part C Open Access
Composites Part C Open Access Engineering-Mechanical Engineering
CiteScore
8.60
自引率
2.40%
发文量
96
审稿时长
55 days
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