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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >On projectile fragmentation at high-velocity perforation of a thin bumper
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On projectile fragmentation at high-velocity perforation of a thin bumper

机译:薄保险杠高速射孔时的弹丸破碎

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By means of 3D numerical simulations, we study the statistical properties of the fragments cloud formed during high-velocity impact of a spherical projectile on a mesh bumper. We present a quantitative description of the projectile fragmentation, and study the nature of the transition from the damage to the fragmentation of the projectile when the impact velocity varies. A distinctive feature of the present work is that the calculations are carried out by smoothed particle hydrodynamics (SPH) method applied to the equations of mechanics of deformable solids (MDS). We describe the materials behavior by the Mie–Grüneisen equation of state and the Johnson–Cook model for the yield strength. The maximum principal stress spall model is used as the fracture model. It is shown that the simulation results of fragmentation based on the MDS equations by the SPH method are qualitatively consistent with the results obtained earlier on the basis of the molecular dynamics and discrete element models. It is found that the power-law distribution exponent does not depend on energy imparted to the projectile during the high-velocity impact. At the same time, our calculations show that the critical impact velocity, the power-law exponent and other critical exponents depend on the fracture criterion.
机译:通过3D数值模拟,我们研究了球形弹丸高速撞击网状保险杠时形成的碎片云的统计特性。我们提出了弹丸碎片的定量描述,并研究了当撞击速度发生变化时,从弹丸的损坏向碎片破碎过渡的性质。本工作的一个显着特点是,计算是通过将平滑粒子流体动力学(SPH)方法应用于可变形固体(MDS)的力学方程来进行的。我们通过Mie-Grüneisen状态方程和Johnson-Cook模型来描述材料的屈服强度。最大主应力剥落模型用作断裂模型。结果表明,基于SPS方法的MDS方程的碎片模拟结果与分子动力学和离散元模型基础上获得的结果在质量上是一致的。发现在高速撞击过程中,幂律分布指数不取决于赋予弹丸的能量。同时,我们的计算表明临界冲击速度,幂律指数和其他临界指数取决于断裂准则。

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