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Experimental and Numerical Simulation Study on the Antipenetration Properties of Fiber Ceramic-Reactive Powder Concrete Composite Targets

机译:纤维陶瓷-活性粉末混凝土复合靶材抗侵彻性能的实验与数值模拟研究

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摘要

Composite materials have been demonstrated to possess excellent antipenetration capacities, but the existing studies have not involved the penetration characteristics of ceramic-concrete composite targets. To investigate the antipenetration mechanisms of fiber ceramic-reactive powder concrete (FC-RPC) composite targets, three pieces of FC-RPC composite targets were designed to perform penetration tests. Antipenetration tests were performed with a special howitzer with a diameter of 125mm. The test parameters, such as the impact velocity, failure pattern of projectiles, penetration depth, crater diameter, and failure model of targets, were obtained. It was found that the FC-RPC targets exhibited an excellent antipenetration capacity and failed in a ductile manner, the target caused an obvious erosion effect on projectiles at low speed (i.e., 375m/s), and the antipenetration performance of the composite target was improved by increasing the thickness of the FC target. Simultaneously, numerical simulations of FC-RPC targets subjected to projectile impact were carried out by using LS-DYNA codes. Separately, combined and integrated finite element models were used to analyze the effect of the fiber layer in the composite target. The numerical results of the combined model were in good agreement with the experimental data, and the reliabilities of simulation were validated. The differential protection factor of the FC-RPC targets was obtained based on the penetration tests and numerical simulation, and an empirical formula for multilayer targets was presented.
机译:复合材料已被证明具有出色的抗渗透能力,但现有研究并未涉及陶瓷-混凝土复合靶材的渗透特性。为了研究纤维陶瓷-反应性粉末混凝土(FC-RPC)复合靶材的抗渗透机理,设计了三块FC-RPC复合靶材进行渗透测试。抗穿透测试是使用直径为125mm的专用榴弹炮进行的。获得了冲击速度,弹丸的破坏模式,穿透深度,弹坑直径和目标破坏模型等测试参数。结果表明,FC-RPC靶材表现出优异的抗侵彻能力,并以延性方式破坏,该靶材在低速(375m / s)时对弹丸产生明显的腐蚀作用,复合靶材的抗侵彻性能为通过增加FC靶的厚度来改善。同时,使用LS-DYNA编码对FC-RPC弹丸目标进行数值模拟。分别使用组合和集成有限元模型来分析纤维层在复合靶中的作用。组合模型的数值结果与实验数据吻合良好,验证了仿真的可靠性。通过渗透试验和数值模拟,获得了FC-RPC靶的差动保护系数,并给出了多层靶的经验公式。

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  • 来源
    《Shock and vibration》 |2019年第2期|7673437.1-7673437.16|共16页
  • 作者单位

    Army Engn Univ PLA, State Key Lab Disaster Prevent & Mitigat Explos &, Nanjing 210007, Jiangsu, Peoples R China;

    Army Engn Univ PLA, State Key Lab Disaster Prevent & Mitigat Explos &, Nanjing 210007, Jiangsu, Peoples R China;

    Army Engn Univ PLA, State Key Lab Disaster Prevent & Mitigat Explos &, Nanjing 210007, Jiangsu, Peoples R China;

    Army Engn Univ PLA, State Key Lab Disaster Prevent & Mitigat Explos &, Nanjing 210007, Jiangsu, Peoples R China;

    Army Engn Univ PLA, State Key Lab Disaster Prevent & Mitigat Explos &, Nanjing 210007, Jiangsu, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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