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Hypervelocity impact of the icy droplet on al shell at nanoscale:A molecular dynamics probe
Alternative Title冰滴在宇宙速度下与航天铝壳结构超高速撞击的分子动力学模拟
Yuan QZ(袁泉子); Zhao YP(赵亚溥)
Source Publication宁波大学学报(理工版)/JOURNAL OF NINGBO UNIVERSITY (NSEE)
2012-01-10
Volume25Issue:1Pages:94-97
ISSN1001-5132
AbstractLarge-scale molecular dynamics (MD) simulations are conducted to investigate the hypervelocity impact of the icy droplet on spacecraft Al shell at the atomic level. The velocity of the droplet is set to move at a typical cosmic speed. Part of the kinetic energy of the droplet is converted to thermal energy, resulting in a sudden increase of the temperature. With the increase of the droplet speed, the aluminum plate experiences elastic, plastic deformation, melting and finally be penetrated by the droplet. The formation and dynamic behavior of a debris cloud is observed and investigated in the simulations.
Other Abstract采用大规模分子动力学模拟,从原子层次探索了冰滴高速撞击航天铝壳结构的动态过程.冰滴的速度设置为典型的宇宙速度.在高速撞击时,部分动能转化为热能,使得撞击点附近迅速升温.随着撞击速度的提高,铝壳经历了弹性变形、塑性变形、冲击融化,最后被穿透的过程.在分子动力学模拟中,清楚地观测了碎片云的形成和动态行为.
Keyword超高速撞击 分子动力学模拟 碎片云 冰滴 Hypervelocity Impact Molecular Dynamics Debris Cloud Icy Droplet
Subject Area极端条件下的材料和结构
URL查看原文
Language英语
Funding OrganizationSupported by the National Natural Science Foundation of China(11032001,11011120245); Russian Foundation for Basic Research(11-01-91217)
DepartmentLNM纳/微系统力学与物理力学
Document Type期刊论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/46389
Collection非线性力学国家重点实验室
Corresponding AuthorZhao YP(赵亚溥)
Recommended Citation
GB/T 7714
Yuan QZ,Zhao YP. Hypervelocity impact of the icy droplet on al shell at nanoscale:A molecular dynamics probe[J]. 宁波大学学报(理工版)/JOURNAL OF NINGBO UNIVERSITY (NSEE),2012,25(1):94-97.
APA 袁泉子,&赵亚溥.(2012).Hypervelocity impact of the icy droplet on al shell at nanoscale:A molecular dynamics probe.宁波大学学报(理工版)/JOURNAL OF NINGBO UNIVERSITY (NSEE),25(1),94-97.
MLA 袁泉子,et al."Hypervelocity impact of the icy droplet on al shell at nanoscale:A molecular dynamics probe".宁波大学学报(理工版)/JOURNAL OF NINGBO UNIVERSITY (NSEE) 25.1(2012):94-97.
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