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首页> 外文期刊>International journal of nonlinear sciences and numerical simulation >Ballistic Impact Characteristics of Flat-nose Projectile Penetrating Concrete and Soil Compound Target
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Ballistic Impact Characteristics of Flat-nose Projectile Penetrating Concrete and Soil Compound Target

机译:扁鼻弹丸侵彻混凝土与土复合靶的弹道冲击特性

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摘要

Ballistic impact characteristics on the flat-nose projectile penetrating the concrete and soil compound target are studied. The deformation process and failure zone in the target are described by numerical simulation with finite element software. The results show that penetration depth, residual velocity and deceleration amplitude of flat-nose projectile increase with initial velocity. The features of concrete target after impact are approximately in agreement with experimental results. And the cracks and the tensile crush zone formed during penetration could characterize the damage and failure of target. Meanwhile, terminal ballistic characteristics of flat-nose projectile into single soil layer are studied to compare with that of concrete compound target. The results show that the overload of projectile penetrating hard-soil is only one-third of that of concrete compound target with low velocity. Reversely, the duration of the former is more than five times as long as the latter, and the rebound velocity of projectile penetrating soil medium is greater than the concrete compound target.
机译:研究了扁形弹丸穿透混凝土和土壤复合靶的弹道冲击特性。用有限元软件通过数值模拟描述了目标的变形过程和破坏区域。结果表明,扁鼻弹丸的穿透深度,残余速度和减速度随着初始速度的增加而增加。撞击后混凝土靶的特征与实验结果基本一致。穿透过程中形成的裂纹和拉伸挤压区可以表征靶的破坏和破坏。同时,研究了扁鼻弹进入单层土的末段弹道特性,以与混凝土复合靶的弹道特性进行比较。结果表明,弹丸穿透硬土的超载仅为低速混凝土复合靶的超载的三分之一。相反,前者的持续时间是后者的五倍以上,而弹丸穿透土壤介质的回弹速度大于混凝土复合目标。

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