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Damage-fragmentation transition: Size effect and scaling behavior for impact fragmentation of slender projectiles

机译:损伤 - 碎片过渡:苗条射弹冲击碎片的尺寸效应和缩放行为

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摘要

The focus of the present article is on the size effect of a transition region from the damaged to the fragmented phase in impact-induced breakup of a slender projectile. Molecular dynamics simulations of the classic ballistic Taylor test are performed with a simple generic model to explore an extended low-energy range. In the simulation setup, flat-ended, monocrystalline, nanoscale projectiles, with a fixed aspect ratio but 10 different diameters, collide perpendicularly with a rough rigid wall. With gradually increasing impact energy, a non-negligible projectile disintegration eventually takes place and is identified with the damage-fragmentation phase transition. These atomistic simulations offer an indispensable tool to gain an insight into damage evolution in the neighborhood of the damage-fragmentation transition resulting in the occurrence of fragmentation at the critical point. A finite size scaling analysis of the average fragment mass is carried out to determine critical exponents and dependence of the critical striking velocity upon the slender projectile's diameter.
机译:本文的重点是过渡区域从损坏到碎片射弹的破碎相位损坏的尺寸效应。经典弹道泰勒试验的分子动力学模拟采用简单的通用模型进行,以探索扩展的低能量范围。在模拟设置,平端,单晶,纳米级射弹,具有固定纵横比但10个不同的直径,垂直于粗糙的刚性壁碰撞。随着逐渐增加的冲击能量,最终发生不可忽略的射弹崩解,并用损伤破碎阶段转变鉴定。这些原子模拟提供了一个不可或缺的工具,可以深入了解损伤碎片过渡附近的损伤演变,导致关键点处的碎片发生。进行平均片段质量的有限尺寸缩放分析,以确定临界指数和临界引人注目速度对细长射弹的直径。

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