Deformation twinning to dislocation slip transition in single-crystal tantalum under dynamic compression

被引:0
作者
M. X. Tang
C. Li
Y. Cai
S. N. Luo
机构
[1] Southwest Jiaotong University,School of Materials Science and Engineering
[2] The Peac Institute of Multiscale Sciences,undefined
来源
Journal of Materials Science | 2022年 / 57卷
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页码:6026 / 6038
页数:12
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[1]  
Dewaele A(2010)High melting points of tantalum in a laser-heated diamond anvil cell Phys Rev Lett 104 8526-8529
[2]  
Mezouar M(1999)Equation of state of tantalum to 174 GPA Phys Rev B 59 9-15
[3]  
Guignot N(2013)Shock-induced plasticity in tantalum single crystals: interatomic potentials and large-scale molecular-dynamics simulations Phys Rev B 88 157-175
[4]  
Loubeyre P(2016)Strain-rate dependence of ramp-wave evolution and strength in tantalum Phys Rev B 94 496-499
[5]  
Cynn H(2014)Grain boundary orientation effects on deformation of Ta bicrystal nanopillars under high strain-rate compression J Appl Phys 115 7142-7154
[6]  
Yoo C-S(2014)Molecular dynamics simulations of shock-induced plasticity in tantalum High Energy Den Phys 10 4851-4865
[7]  
Ravelo R(1997)Shock-induced deformation twinning in tantalum Acta Mater 45 6601-6620
[8]  
Germann TC(2017) x-ray diffraction measurement of shock-wave-driven twinning and lattice dynamics Nature 550 7767-7780
[9]  
Guerrero O(2013)Analysis of deformation twinning in tantalum single crystals under shock loading conditions J Appl Phys 113 482-491
[10]  
An Q(2019)Influence of defects on the shock hugoniot of tantalum J Appl Phys 125 38-48