Crystallographic orientation and size dependence of tension–compression asymmetry in molybdenum nano-pillars

JY Kim, D Jang, JR Greer - International Journal of Plasticity, 2012 - Elsevier
Uniaxial tension and compression experiments on [001] and [011] oriented molybdenum
nano-pillars exhibit tension–compression asymmetry, a difference in attained stresses in …

[PDF][PDF] Crystallographic orientation and size dependence of tension–compression asymmetry in molybdenum nano-pillars

JY Kim, D Jang, JR Greer - researchgate.net
abstract Uniaxial tension and compression experiments on [0 0 1] and [0 1 1] oriented
molybdenum nano-pillars exhibit tension–compression asymmetry, a difference in attained …

Crystallographic orientation and size dependence of tension–compression asymmetry in molybdenum nano-pillars

JY Kim, D Jang, JR Greer - International Journal of Plasticity, 2012 - infona.pl
Uniaxial tension and compression experiments on [001] and [011] oriented molybdenum
nano-pillars exhibit tension–compression asymmetry, a difference in attained stresses in …

Crystallographic orientation and size dependence of tension–compression asymmetry in molybdenum nano-pillars

JY Kim, D Jang, JR Greer - authors.library.caltech.edu
Uniaxial tension and compression experiments on [0 0 1] and [0 1 1] oriented molybdenum
nano-pillars exhibit tension–compression asymmetry, a difference in attained stresses in …

[引用][C] Crystallographic orientation and size dependence of tension–compression asymmetry in molybdenum nano-pillars

JY Kim, D Jang, JR Greer - International Journal of Plasticity, 2012 - cir.nii.ac.jp
Crystallographic orientation and size dependence of tension–compression asymmetry in
molybdenum nano-pillars | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ …

[引用][C] Crystallographic orientation and size dependence of tension―compression asymmetry in molybdenum nano-pillars

JY KIM, D JANG, JR GREER - International journal of plasticity, 2012 - pascal-francis.inist.fr
Crystallographic orientation and size dependence of tension―compression asymmetry in
molybdenum nano-pillars CNRS Inist Pascal-Francis CNRS Pascal and Francis …