首页> 外文会议>International symposium on ballistics >FIRM EMBEDDING BEHAVIOR OF ANNULAR GROOVED PROJECTILES IMPACTING DUCTILE METAL TARGETS
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FIRM EMBEDDING BEHAVIOR OF ANNULAR GROOVED PROJECTILES IMPACTING DUCTILE METAL TARGETS

机译:抗弹性膨胀射孔冲击延性金属靶的坚固嵌入行为

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Annular grooved projectiles (AGPs) have drawn ongoing concerns as an advanced penetrator for their excellent anti-rebound capability in impacting metal plates. They could become embedded solidly in the target surface during low-velocity impact. In this investigation, the firm embedding behavior of AGP was observed by impact experiments. Corresponding numerical simulations provided an better understanding of this process. Experimental and numerical results indicated that the firm embedment behavior of the projectile was mainly due to the filling-material in the groove rather than the friction between the projectile and target. According to observation, firm embedding process can generally be subdivided into four stages: initial-cratering stage, groove-filling stage, filling-material failure stage and rebound vibration stage. Moreover, the damage mechanics of target material around crater was obtained through microscopic tests. A comparison of the cross-sectional figures between the experiment and simulation proved that the analysis and the proposed method were reasonable and feasible.
机译:环形凹槽射弹(AGPS)持续担心作为一种先进的渗透器,以实现抗冲击金属板的优异防弹功能。在低速撞击期间,它们可以在目标表面中固定地嵌入目标表面。在这项调查中,通过影响实验观察到AGP的坚定嵌入行为。相应的数值模拟提供了更好地理解此过程。实验和数值结果表明,弹丸的铸造行为主要是由于凹槽中的填充材料而不是射弹和目标之间的摩擦。根据观察,铸造嵌入过程通常可以细分为四个阶段:初始喷射阶段,凹槽填充阶段,填充材料故障阶段和回弹振动阶段。此外,通过显微镜测试获得了火山口周围的靶材料的损伤力学。实验与仿真之间的横截面图的比较证明了分析和所提出的方法是合理可行的。

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