Numerical analysis of the penetration process of a 30mm armor-piercing projectile

Predrag Pantović, M. Zivkovic, V. Milovanović, N. Miloradović
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Abstract

Introduction/purpose: Thin plates made of high-strength steel are frequently used both in civil and military ballistic protection systems. In order to choose an appropriate type of alloy, it is necessary to fulfil a number of criteria, such as the condition of use, the desired ballistic performance, weight, dimensions, and price. This paper presents a numerical analysis of the penetration of a 30mm armor-piercing projectile with a velocity of 750m/s into steel alloy Weldox 460 plates of different thicknesses at a distance of 1000m . Methods: The analysis has been performed using numerical methods and finite element modeling to calculate stresses and deformation caused by the penetration effect. For defining material characteristics, the Johnson-Cook material model and the fracture of materials model have been used. In this paper, the software packages FEMAP and LS Dyna have been used for defining models and performing numerical calculations. Results: The results of the performed numerical analysis as well as the obtained stress and displacement values are presented for four different armor plate thicknesses: 30mm, 33mm, 34mm, and 40mm. The results show a penetration effect and an interaction between the projectile and the armor plate. Conclusion: Modeling the impact on armor-piercing obstacles is very complex, extensive, and demanding, and the formed models approximate the real problem of projectile penetration in a very successful way (or with a certain deviation). In recent times, the analysis using the finite element method has proven to be one of effective approaches to solving such and similar problems. The material and the dimensions of the obstacle, as well as the material and the ballistic parameters of the projectile have the greatest influence on projectile penetration. Keeping all the input parameters at the same level and increasing the thickness of the target leads to its increased resistance to penetration.
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30mm穿甲弹侵彻过程的数值分析
简介/用途:由高强度钢制成的薄板经常用于民用和军用弹道防护系统。为了选择合适的合金类型,有必要满足许多标准,例如使用条件,所需的弹道性能,重量,尺寸和价格。本文对一枚速度为750m/s的30mm穿甲弹在1000m距离上对不同厚度的Weldox 460钢合金板的侵穿进行了数值分析。方法:采用数值方法和有限元建模相结合的方法进行分析,计算侵彻效应引起的应力和变形。在定义材料特性时,采用了Johnson-Cook材料模型和材料断裂模型。本文使用FEMAP和LS Dyna软件包定义模型并进行数值计算。结果:给出了30mm、33mm、34mm、40mm四种不同钢板厚度下的数值分析结果以及得到的应力和位移值。结果表明,弹丸与装甲之间存在侵彻效应和相互作用。结论:弹丸对穿甲障碍物的冲击建模是非常复杂、广泛和苛刻的,所形成的模型非常成功地(或有一定偏差)逼近了弹丸侵彻的实际问题。近年来,有限元分析已被证明是解决此类问题的有效方法之一。障碍物的材料和尺寸,以及弹丸的材料和弹道参数对弹丸侵彻的影响最大。保持所有的输入参数在同一水平和增加目标的厚度导致其抗侵彻增加。
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24
审稿时长
12 weeks
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