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Liner Materials Flight Stability of EFPs and Geometric Configuration Effects

机译:EFP的衬垫材料飞行稳定性和几何构型效应

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Numerical simulation was carried out using Autodyn 2D code to study the formation and tandem behavior of multiliner explosively formed projectiles (EFPs). The main aim of multiliner configuration is to develop tandem behavior and to increase the length of explosively formed projectile in different applications. The high ductility and high dynamic material behavior of tantalum makes it difficult to generate a solid and stable projectile. To get these specific characteristics, MS was used for being the most stable liner material in the EFP technology. So when we used MS as a stabilization base and tantalum as a penetrator then solid and stable projectile was achieved. The tandem behavior with Ta-MS multiliner configuration was studied. The effects of detonation method, confinement and waveshaper on the multiliner EFP configuration have also been determined by simulation. The detonation method has its effect on the tandem behavior whereas confinement has not. The waveshaper is found to have 40.4% more prominent and faster tandem effect on the multi-liner EFPs.
机译:使用Autodyn 2D代码进行了数值模拟,以研究多列爆炸性弹丸(EFP)的形成和串联行为。多线构型的主要目的是在不同的应用中发展串联行为并增加爆炸性射弹的长度。钽的高延展性和高动态材料性能使其难以产生固体和稳定的弹丸。为了获得这些特定的特性,MS被用作EFP技术中最稳定的衬里材料。因此,当我们使用MS作为稳定基料并使用钽作为渗透剂时,可以得到坚固且稳定的弹丸。研究了Ta-MS多衬管配置的串联行为。还通过仿真确定了爆轰方法,约束和波状破碎对多缸EFP构型的影响。爆轰方法对串联行为有影响,而约束则没有。发现波状波导管对多线性EFP具有40.4%的显着性和更快的串联效应。

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