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首页> 外文期刊>Latin American Journal of Solids and Structures >Phenomenology of the Maximum Fragment Mass Dependence Upon Ballistic Impact Parameters
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Phenomenology of the Maximum Fragment Mass Dependence Upon Ballistic Impact Parameters

机译:最大碎片质量对弹道冲击参数的依赖的现象学

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Molecular dynamics simulations of the ballistic Taylor test are used to explore correlation between the largest fragment mass and the impact energy of a projectile as well as a set of selected state variables. Flat-ended, monocrystalline, nanoscale bars collide with a rigid wall with striking velocities ranging from 0.27 km/s to 60 km/s. The investigation emphasis is on two border regions of the emerging nonlinear phenomenological model identified with two transitions: the damage-fragmentation transition and the shattering transition. In between these two nonlinear regions, the maximum fragment mass is largely inversely proportional to the impact energy, and the maximum values of the pressure, temperature, and the square of the effective strain. A reverse-sigmoid phenomenological model is proposed to capture the unifying features of this nonlinear and saturable dependence. A crystallographic orientation dependence of the damage-fragmentation transition parameters is investigated.
机译:弹道泰勒试验的分子动力学模拟用于探索最大碎片质量与弹丸的冲击能量以及一组选定状态变量之间的相关性。平端的单晶纳米级棒与刚性壁相撞,冲击速度从0.27 km / s到60 km / s不等。研究的重点是新兴的非线性现象学模型的两个边界区域,该边界区域具有两个过渡:损坏-碎片过渡和破碎过渡。在这两个非线性区域之间,最大碎片质量与冲击能量以及压力,温度和有效应变的平方的最大值成反比。提出了一种反S形现象学模型,以捕捉这种非线性和饱和依赖关系的统一特征。研究了破坏碎片转变参数的晶体学取向依赖性。

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