Asymmetric (112¯ 1)[112¯ 6¯] twin boundary and migration mechanism in hexagonal close-packed titanium

B Li, K Chen - Acta Materialia, 2022 - Elsevier
Classical twinning theory predicted that a simple shear was able to create a perfect, twinned
structure without the need of atomic shuffles for (11 2¯ 1)[11 2¯ 6¯] twinning mode in …

Asymmetric {11-21}< 11-2-6> Twin Boundary and Migration Mechanism in Hexagonal Close-Packed Titanium

B Li, K Chen - Available at SSRN 3994652 - papers.ssrn.com
Classical twinning theory predicted that a simple shear was able to create a perfect twinned
structure without the need of atomic shuffles for {11-21}< 11-2-6> twinning mode in …

Asymmetric (11-21)[11-2-6] twin boundary and migration mechanism in hexagonal close-packed titanium

B Li, KF Chen - Acta Mathematica, 2022 - par.nsf.gov
abstract Classical twinning theory predicted that a simple shear was able to create a perfect,
twinned structure without the need of atomic shuffles for (1121)[1126] twinning mode in …

Asymmetric (11 2 bar 1)[11 2 bar 6 bar] twin boundary and migration mechanism in hexagonal close-packed titanium

B Li, K Chen - Acta Materialia, 2022 - ui.adsabs.harvard.edu
Classical twinning theory predicted that a simple shear was able to create a perfect, twinned
structure without the need of atomic shuffles for (11 2 bar 1)[11 2 bar 6 bar] twinning mode in …

[PDF][PDF] Asymmetric (112¯ 1)[112¯ 6¯] twin boundary and migration mechanism in hexagonal close-packed titanium

B Li, K Chen - Acta Materialia, 2022 - par.nsf.gov
abstract Classical twinning theory predicted that a simple shear was able to create a perfect,
twinned structure without the need of atomic shuffles for (1121)[1126] twinning mode in …