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Experimental investigation on the ballistic resistance of monolithic and multi-layered plates against ogival-nosed rigid projectiles impact

机译:整体和多层板抗球鼻刚弹撞击的弹道阻力实验研究

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摘要

In this paper, the ballistic performance of single, two-, three- and four-layered steel plates impacted by ogival-nosed projectiles were experimentally investigated. Thin multi-layered plates arranged in various combinations of the same total thicknesses were normally impacted with the help of a gas gun. Ballistic limit velocity for each configuration target was obtained and compared based on the investigation of the effect of the air gap between layers, the number, order and thickness of layers on the ballistic resistance of targets. The results show that the thin monolithic targets have greater ballistic limit velocities than multi-layered targets if the total thickness less than a special value, and also the ballistic limit velocities of multi-layered targets decrease with the increase of the number of layers. Otherwise, the moderate thickness monolithic targets give lower ballistic limit velocities than multi-layered targets. Furthermore, the ballistic limit velocities of in-contact multi-layered targets are greater than those of spaced multi-layered targets. The order of layers affects the ballistic limit velocities of multi-layered targets, the ballistic resistance of the multi-layered targets is better when the first layer is thinner than the second layer.
机译:在本文中,实验研究了单齿,两齿,三层和四层钢板受齿状鼻炮弹的冲击性能。通常,在气枪的帮助下,以相同总厚度的各种组合布置的多层薄板受到了冲击。通过研究层间气隙,层数,层数和厚度对靶材的抗冲击性的影响,获得并比较了每个配置目标的弹道极限速度。结果表明,如果总厚度小于特定值,则较薄的整体靶材具有比多层靶材更大的弹道极限速度,并且随着层数的增加,多层靶材的弹道极限速度也会降低。否则,中等厚度的整体靶材要比多层靶材具有更低的弹道极限速度。此外,接触式多层靶的弹道极限速度大于间隔的多层靶的弹道极限速度。层的顺序会影响多层靶的弹道极限速度,当第一层比第二层薄时,多层靶的弹道阻力会更好。

著录项

  • 来源
    《Materials & design》 |2013年第2期|228-239|共12页
  • 作者单位

    Hypervelocity Impact Research Center, Harbin Institute of Technology, P.O. Box 3020, Science Park, No. 2 Yikuang Street, Nangang District, Harbin 150080, PR China;

    Hypervelocity Impact Research Center, Harbin Institute of Technology, P.O. Box 3020, Science Park, No. 2 Yikuang Street, Nangang District, Harbin 150080, PR China;

    Hypervelocity Impact Research Center, Harbin Institute of Technology, P.O. Box 3020, Science Park, No. 2 Yikuang Street, Nangang District, Harbin 150080, PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    projectile; impact; failure model; layered plate; target;

    机译:弹丸影响;失效模型分层板目标;

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