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Comparative study on antiballistic behaviour of AlMglO-SiCp type cellular ultralight composite metal materials

机译:ALMGLO-SICP型蜂窝超高压复合金属材料抗生素行为的比较研究

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This paper presents a study done on metallic materials composite ultralight cell type AlMg10-SiCp,obtained by two methods,chosen to assume minimal costs of production:a method based on melt bubbling with a reactive gas and a method based on using various salts powders particles,soluble in suitable solvents.First method is suitable for obtaining ultralight composite with open and semi-open cell.By the second one we achieved ultralight porous composite materials,with a metal foam structure characterized by generally semi-open cells.There are presented both technological flows for obtaining ultralight cell type composites.The porosity of these materials increases with the percentage of added SiC particles,no matter of used method of achievement.The antiballistic behavior refers basically to the impact of a small/medium caliber bullet shot on a light armor built on the base of obtained AlMg-SiC metallic cell composites.Thus,a 35 mm thick armor was achieved by using only cellular or porous composites of AlMglO with 15% SiC.These proved to be effective enough for a 9 mm projectile not to pass through,with the minimum penetration depth observed for the porous composite.It has been observed that up to a speed of about 320 m/s the projectile is braked more efficiently by the cellular composite material,which can be explained on the basis of the microstructure and the dependence of the coefficient of friction on the density of the material.
机译:本文介绍了通过两种方法获得的金属材料复合超高型电池型ALMG10-SICP的研究,选择假设生产最小的生产成本:基于反应气体的熔体鼓泡的方法和基于使用各种盐粉末颗粒的方法,溶于合适的溶剂。首发方法适用于用开放和半开池获得超广开复合材料。通过第二种,我们实现了超轻的多孔复合材料,其具有一般半开电池的金属泡沫结构。两者都呈现用于获得超广大细胞型复合材料的技术流程。无论使用使用的成就方法,这些材料的孔隙率随着添加的SiC颗粒的百分比增加。抗性行为基本上是指小/中口径子弹在光线上射击的影响内置在获得的Almg-SiC金属电池组合物的基础上。通过仅使用细胞或多孔,实现了35毫米厚的盔甲Almglo的复合材料,具有15%的SiC。这被证明是有效的,对于不通过的9毫米射弹,对于多孔复合材料观察到的最小渗透深度。已经观察到高达约320米/秒的速度通过细胞复合材料更有效地制定射弹,这可以基于微观结构和摩擦系数对材料密度的依赖性来解释。

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