Incompatibility stresses at grain boundaries in Ni bicrystalline micropillars analyzed by an anisotropic model and slip activity

T Richeton - Acta Materialia, 2015 - Elsevier
Incompatibility stresses can develop in bicrystals due to material elastic and plastic
anisotropies owing to different crystal orientations separated by grain boundaries. Here …

Incompatibility stresses at grain boundaries in Ni bicrystalline micropillars analyzed by an anisotropic model and slip activity

I Tiba, T Richeton, C Motz, H Vehoff… - Acta …, 2015 - ui.adsabs.harvard.edu
Incompatibility stresses can develop in bicrystals due to material elastic and plastic
anisotropies owing to different crystal orientations separated by grain boundaries. Here …

Incompatibility stresses at grain boundaries in Ni bicrystalline micropillars analyzed by an anisotropic model and slip activity

I Tiba, T Richeton, C Motz, H Vehoff, S Berbenni - Acta Materialia, 2015 - hal.univ-lorraine.fr
Incompatibility stresses can develop in bicrystals due to material elastic and plastic
anisotropies owing to different crystal orientations separated by grain boundaries. Here …

Incompatibility stresses at grain boundaries in Ni bicrystalline micropillars analyzed by an anisotropic model and slip activity

I Tiba, T Richeton, C Motz, H Vehoff, S Berbenni - Acta Materialia, 2015 - infona.pl
Incompatibility stresses can develop in bicrystals due to material elastic and plastic
anisotropies owing to different crystal orientations separated by grain boundaries. Here …

Incompatibility stresses at grain boundaries in Ni bicrystalline micropillars analyzed by an anisotropic model and slip activity

I Tiba, T Richeton, C Motz, H Vehoff, S Berbenni - Acta Materialia, 2015 - inis.iaea.org
[en] Incompatibility stresses can develop in bicrystals due to material elastic and plastic
anisotropies owing to different crystal orientations separated by grain boundaries. Here …

Incompatibility stresses at grain boundaries in Ni bicrystalline micropillars analyzed by an anisotropic model and slip activity

I Tiba, T Richeton, C Motz, H Vehoff, S Berbenni - Acta Materialia, 2015 - hal.science
Incompatibility stresses can develop in bicrystals due to material elastic and plastic
anisotropies owing to different crystal orientations separated by grain boundaries. Here …

[引用][C] Incompatibility stresses at grain boundaries in Ni bicrystalline micropillars analyzed by an anisotropic model and slip activity

I Tiba, T Richeton, C Motz, H Vehoff, S Berbenni - Acta Materialia, 2015 - cir.nii.ac.jp
Incompatibility stresses at grain boundaries in Ni bicrystalline micropillars analyzed by an
anisotropic model and slip activity | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ …

[PDF][PDF] Incompatibility stresses at grain boundaries in Ni bicrystalline micropillars analyzed by an anisotropic model and slip activity

Acta Materialia, 2015 - researchgate.net
Incompatibility stresses can develop in bicrystals due to material elastic and plastic
anisotropies owing to different crystal orientations separated by grain boundaries. Here …

Incompatibility stresses at grain boundaries in Ni bicrystalline micropillars analyzed by an anisotropic model and slip activity

I Tiba, T Richeton, C Motz, H Vehoff, S Berbenni - Acta Materialia, 2015 - infona.pl
Incompatibility stresses can develop in bicrystals due to material elastic and plastic
anisotropies owing to different crystal orientations separated by grain boundaries. Here …