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Effect of projectile diameter on ballistic resistance and failure mechanism of single and layered aluminum plates

机译:弹丸直径对单层铝板弹道阻力及破坏机理的影响

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摘要

Finite element analysis has been carried out to study the effect of diameter of ogive nosed projectile on the ballistic resistance of 1 mm thick monolithic and 0.5 mm thick double-layered in contact plates of 1100-H12 aluminum alloy. The size of the projectile was varied by varying its shank diameter as 15, 19 and 24 mm, keeping the length constant. Thus, the length to diameter ratio varied as 2, 2.6 and 3.3. The ABAQUS/Explicit finite element code in conjunction with Johnson-Cook elasto-viscoplastic material model was employed to perform the simulation study. The numerical results were compared with available experiments. The ballistic resistance has been found to increase with increase in the projectile diameter. For a given diameter, the monolithic target has been found to offer better resistance. However, the influence of target configuration was dominant against the larger projectile diameter. The projectile was considered rigid and deformable to study its influence on the failure mechanism and ballistic limit. Friction effect between the projectile and target was also studied and its influence thereon the ballistic performance is discussed.
机译:进行了有限元分析,研究了尖头弹丸直径对1100-H12铝合金接触板中1毫米厚的整体式和0.5毫米厚的双层弹道阻力的影响。弹丸的大小可通过将其杆直径更改为15、19和24 mm来改变,以保持长度恒定。因此,长度与直径之比为2、2.6和3.3。 ABAQUS / Explicit有限元代码与Johnson-Cook弹粘塑性材料模型一起用于进行模拟研究。将数值结果与可用的实验进行了比较。已经发现,随着弹丸直径的增加,弹道阻力也会增加。对于给定的直径,已发现整体式靶材具有更好的抵抗力。但是,目标构型的影响对于较大的弹丸直径是主要的。为了研究弹丸对破坏机理和弹道极限的影响,认为弹丸具有刚性和可变形性。还研究了弹丸与目标之间的摩擦效应,并讨论了其对弹道性能的影响。

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