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Theoretical and Numerical Investigation on Perforation Resistance of Monolithic and Segmented Concrete Targets with Steel Liners under Normal Penetration

机译:正常渗透下钢结构整体混凝土靶射孔抗性的理论与数值研究

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摘要

Steel-concrete composites are important armor protective materials with the increasing power of precision-guided weapons. In this study, the formula of residual velocity as well as the ratio between residual and initial kinetic energy (E-r/E-0) for concrete targets with a rear steel liner was derived. By establishing finite element models of steel liner concrete targets through ANSYS/LS-DYNA, the effect of the steel liner layout on the perforation resistance was analyzed for both monolithic and segmented concrete targets, which were compared in terms of projectile kinematics characteristics, projectile energy consumption, and target damages. Four main conclusions were drawn: (1) a residual velocity prediction model of concrete targets with a rear steel liner was accurately proposed for the first time when velocity reduction coefficient eta was 0.15 and the derived E-r/E-0 could be used to evaluate their corresponding perforation resistance; (2) moving back the steel liners enhanced the perforation resistance of both monolithic and segmented targets, but the performance of the latter was inferior to that of the former, which was reduced by 10%-16% under the same conditions; (3) during middle- and low-speed perforations, the projectile impact force was more influenced by the contact stiffness than the impact velocity; and (4) regarding the segmented targets, the perforation resistance of the 2nd target was better than the 1st target, which consumed about 10%-20% more projectile kinetic energy.
机译:钢混凝土复合材料是重要的装甲保护材料,具有较高的精密引导武器的力量。在该研究中,衍生出残余速度的公式以及残留速度与初始动能(E-R / E-0)与后钢结构的混凝土靶标的比率。通过ANSYS / LS-DYNA建立钢结构混凝土靶标的有限元模型,分析了钢结构布局对整体和分段混凝土靶标的穿孔抗性的影响,这些靶标在射弹运动学特性,射弹能量方面进行了比较消费和目标损害。绘制了四个主要结论:(1)当速度降低系数Eta为0.15时,首次准确提出了具有后钢衬里的混凝土靶的剩余速度预测模型,并且可以使用衍生的ER / E-0来评估它们相应的穿孔抗性; (2)返回钢衬里增强了整体和分段靶的穿孔性,但后者的性能低于前者的性能,在相同条件下减少了10%-16%; (3)在中间和低速穿孔期间,射弹冲击力更大的接触刚度影响而不是冲击速度; (4)关于分段靶标,第二靶的穿孔抗性优于第一个靶标,该抗射伤约为10%-20%的射弹动能。

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  • 来源
    《Advances in civil engineering》 |2019年第15期|3415423.1-3415423.20|共20页
  • 作者单位

    Hohai Univ Coll Civil & Lransportat Engn Nanjing 210098 Jiangsu Peoples R China|Hohai Univ Inst Engn Safety & Disaster Prevent Nanjing 210098 Jiangsu Peoples R China|Hohai Univ Minist Educ Geomech & Embankment Engn Key Lab Nanjing 210098 Jiangsu Peoples R China;

    Hohai Univ Coll Civil & Lransportat Engn Nanjing 210098 Jiangsu Peoples R China|Hohai Univ Inst Engn Safety & Disaster Prevent Nanjing 210098 Jiangsu Peoples R China|Hohai Univ Minist Educ Geomech & Embankment Engn Key Lab Nanjing 210098 Jiangsu Peoples R China;

    Hohai Univ Coll Civil & Lransportat Engn Nanjing 210098 Jiangsu Peoples R China|Hohai Univ Inst Engn Safety & Disaster Prevent Nanjing 210098 Jiangsu Peoples R China|Hohai Univ Minist Educ Geomech & Embankment Engn Key Lab Nanjing 210098 Jiangsu Peoples R China;

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