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On the truss-type structures backing the ceramic tiles in the ballistic panels subjected to the impact of hard steel projectiles

机译:在桁架式结构上背衬弹性板中陶瓷砖的影响,经受硬钢射弹的影响

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The objective of this paper is a feasibility study of a new concept for ceramic backing in multilayer ballistic panels. The truss structures were applied as a backing layer. They were based on a diamond crystal structure. The analysis of length/diameter ratio of the bars was performed. It was aimed at the achievement of the required mechanical properties maximizing the ballistic resistance and minimizing panel surface density. The panel structure is considered as a composition of Al_2O_3 ceramic tile backed by a plate in a truss form made of aluminum alloy or steel. These results were compared with classic multilayer solutions based on solid aluminum alloy backing plates. The study was carried out for a normal impact of the AP (armor-piercing) 7.62×51 projectile type with tungsten carbide (WC) core. A method of computer simulation was applied to study the problem. The Finite Element Method (FEM) implemented in the LS-DYNA code was used. The full 3D models of the projectile and target were developed with strain rate and temperature-dependent material constitutive relations. The Johnson-Cook constitutive model with Gruneisen Equation of State (EOS) was applied to describe the behavior of metal parts: aluminum alloy and projectile's core. However, the Johnson-Holmquist model was used to describe the ceramic material. The Boundary Conditions (BC) were defined by supporting the panel at its back edges. The obtained results show the alternative solution to the classic solid plates supporting the ceramic layers in ballistic panels. It was identified that the main deformation mechanism in truss-type backing components is buckling if the L/D ratio goes up. A virtual prototyping technique could be applied to manufacture the developed truss structure.
机译:本文的目的是对多层弹道面板陶瓷背衬的新概念的可行性研究。桁架结构被用作背衬层。它们基于钻石晶体结构。进行棒的长度/直径比的分析。旨在实现所需的机械性能,最大化抗弹性抗性和最小化面板表面密度。面板结构被认为是由由铝合金或钢制成的桁架形式的板材的Al_2O_3陶瓷瓷砖的组成。将这些结果与基于固体铝合金背衬板的经典多层溶液进行比较。该研究进行了对AP(Armor-Piercing)7.62×51射弹型与碳化钨(WC)核心的正常影响。应用了计算机模拟方法来研究问题。使用LS-DYNA代码中实现的有限元方法(FEM)。弹丸和目标的全3D模型具有应变率和温度依赖性材料本构造。采用Gruneisen方程(EOS)的Johnson-Cook本构模型描述了金属部件的行为:铝合金和弹丸的核心。然而,Johnson-Holmquist模型用于描述陶瓷材料。边界条件(BC)由在其背边缘支撑面板来定义。所得结果显示了支撑弹性板中陶瓷层的经典固体板的替代解决方案。如果L / D比率上升,则确定桁架式背衬部件中的主变形机制弯曲。可以应用虚拟样机技术来制造发育的桁架结构。

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