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Shock wave propagation, plasticity, and void collapse in open-cell nanoporous Ta

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成果类型:
期刊论文
作者:
Tang, J. F.;Xiao, J. C.;Deng, L.;Li, W.;Zhang, X. M.*;...
通讯作者:
Zhang, X. M.;Wang, L.
作者机构:
[Li, W.; Zhang, XM; Wang, L.; Xiao, J. C.; Zhang, X. M.; Deng, L.; Tang, J. F.] Hunan Agr Univ, Coll Sci, Changsha 410128, Hunan, Peoples R China.
[Deng, H. Q.; Xiao, S. F.] Hunan Univ, Coll Phys & Micro Elect, Changsha 410082, Hunan, Peoples R China.
[Hu, W. Y.] Hunan Univ, Coll Mat Sci & Engn, Changsha 410082, Hunan, Peoples R China.
通讯机构:
[Zhang, XM; Wang, L] H
Hunan Agr Univ, Coll Sci, Changsha 410128, Hunan, Peoples R China.
语种:
英文
期刊:
PHYSICAL CHEMISTRY CHEMICAL PHYSICS
ISSN:
1463-9076
年:
2018
卷:
20
期:
44
页码:
28039-28048
基金类别:
NSFs of ChinaNational Natural Science Foundation of China (NSFC) [11672254, 11802092, 51301066, 51501063]; NSF of Hunan Province [13JJ4071, 14JJ2080]; Science and Technology Foundation of State Key Laboratory of Shock Wave and Detonation Physics [LSB-KB1804]
机构署名:
本校为第一且通讯机构
院系归属:
理学院
摘要:
We systematically investigate the wave propagation, plasticity and void collapse, as well as the effects of porosity, specific surface area and impact velocity, in a set of open-cell nanoporous Ta, during shock compression, via performing large-scale non-equilibrium molecular dynamics simulations. The shock wave propagation presents an impedance, sensitive to porosity, but not to specific surface area. Such surprising phenomena are due to the similar sensitivities in density and stress variations to porosity or specific surface area. Upon impact, shock front shapes change from ramped to steep ...

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