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A Numerical Research on the Penetration into a Semi-infinite Rolled Homogeneous Armor by a Medium-caliber Kinetic Energy Projectile

机译:中口径动能弹丸侵彻半无限滚动均质装甲的数值研究

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This paper presents numerical analysis on the penetration into a semi-infinite Rolled Homogeneous Armor(RHA) steel target by a medium-caliber projectile at the velocity range from 900m/s to 1000m/s. The projectile was made of a 93% tungsten heavy alloy (WHA) having a diameter of 18mm. LS-DYNA, an explicit non-linear finite element analysis code, was used for the numerical analysis. This kind of penetration problem is generally accompanied by large deformation, high strain rate and thermal softening, accordingly the Johnson-Cook constitutive models combined with Johnson-Cook fracture model and Mie-Gruneisen equation of state were employed to describe the RHA target and the WHA projectile, respectively. Due to the lack of the parameters of the Johnson-Cook failure model of RHA, the corresponding data of 4340 steel were applied for RHA inevitably. Here, two different failure strains for 4340 steel from the literatures were substituted in for RHA and their effects on the numerical analysis results were discussed and compared to the test results in terms of penetration efficiency (P/L) and crater hole shape. A quarter parts of the semi-infinite RHA target and the WHA projectile were only modeled considering the symmetric configuration of the problem for the analysis.
机译:本文对中口径弹丸在900m / s至1000m / s的速度范围内对半无限滚动均质装甲(RHA)钢靶的穿透进行了数值分析。弹丸由直径为18mm的93%钨重合金(WHA)制成。 LS-DYNA是一种显式非线性有限元分析代码,用于数值分析。这种穿透问题通常伴随着大变形,高应变率和热软化,因此,将Johnson-Cook本构模型与Johnson-Cook断裂模型和Mie-Gruneisen状态方程相结合来描述RHA目标和WHA弹丸。由于缺乏RHA的Johnson-Cook破坏模型的参数,因此不可避免地将4340钢的相应数据应用于RHA。在此,用文献中的两种不同的4340钢破坏应变代替了RHA,并讨论了它们对数值分析结果的影响,并根据渗透效率(P / L)和弹孔形状与测试结果进行了比较。半无限RHA目标和WHA弹丸的四分之一仅考虑了问题的对称配置进行分析。

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