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Modeling of Bullet Penetration in Explosively Welded Composite Armor Plate

机译:爆破焊接复合装甲板子弹渗透的建模

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Normal impact of high-speed armor piercing bullet on titanium-steel composite has been investigated using smooth particle hydrodynamics (SPH) code. The objective is to understand the effects of impact during the ballistic testing of explosively welded armor plates. These plates have significant microstructural differences within the weld region, heat-affected zone and the base metal. The variances result in substantial ductility, hardness and strength differences, important criteria in determining the failure mode, specifically whether it occurs at the joint or within the virgin base metal. Several configurations of composite plates with different material combinations were modeled. The results were used to modify the heat treatment process of explosively welded plates, making them more likely to survive impact.
机译:使用光滑的粒子流体动力学(SPH)代码研究了高速铠甲子弹对钛钢复合材料的正常影响。目的是了解在爆炸焊接甲板的弹道测试期间影响的影响。这些板在焊接区域,热影响区域和基础金属内具有显着的微观结构差异。差异导致大量的延展性,硬度和强度差异,确定失效模式的重要标准,具体是它是否发生在特敏基础金属中。建模了几种具有不同材料组合的复合板的配置。结果用于改变爆炸焊接板的热处理过程,使其更容易生存影响。

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