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NUMERICAL EXPERIMENTS WITH JACKETED PROJECTILES

机译:带夹套射弹的数值实验

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A set of numerical experiments was carried out in order to examine the effect of steel jackets on the post-perforation qualities of jacketed tungsten-heavy-alloy (WHA) projectiles against thin, oblique, steel, plate targets. Jacket strength or hardness was varied in order to gauge its effect on overall projectile performance. In addition, jacket thickness was varied within the constraint that the projectile's overall dimensions remain constant. For impacts at 2.2 km/s, the LID 10 projectile overwhelms the target, and a residual projectile emerges behind the plate. With residual length, L_R, as the performance metric, these simulations show that L_R is a maximum in the case for no jacket, at least for the jacket configurations and material combinations studied here. Further, the results show that jacket strength only plays a minor role with respect to residual length and suggest that the decrease in sectional density at the penetration interface is not balanced by jacket strength considerations. However, the simulations do suggest that a relatively thin cladding layer will not detract meaningfully from the projectile's perforation performance. Reductions in L_R correspond to an observed drop in the penetration velocity and a corresponding drop in the instantaneous penetration efficiency, as compared to the unjacketed reference case.
机译:进行了一组数值实验,以检验钢套对薄壁,倾斜,钢板目标的带夹套的钨-重型合金(WHA)射弹的射孔后质量的影响。改变夹克的强度或硬度,以评估其对总体射弹性能的影响。另外,护套厚度在射弹的整体尺寸保持恒定的限制内变化。对于2.2 km / s的冲击力,LID 10弹丸压倒了目标,在板后方出现了残留弹丸。以剩余长度L_R作为性能指标,这些模拟表明,在没有外套的情况下,L_R最大,至少对于这里研究的外套构造和材料组合而言。此外,结果表明,外套强度仅对残余长度起次要作用,并且表明在穿透界面处的截面密度的降低不受外套强度的考虑所平衡。但是,仿真结果确实表明,相对较薄的包覆层不会显着降低弹丸的射孔性能。与没有夹套的参考案例相比,L_R的降低对应于观察到的穿透速度下降和瞬时穿透效率的相应下降。

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