Ductile–brittle behavior at the (110)[001] crack in bcc iron crystals loaded in mode I
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference11 articles.
1. Crack orientation versus ductile–brittle behavior in 3D atomistic simulations;Spielmannová;Mater Sci Forum,2007
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3. Crack induced slip processes in 3D;Hora;Engng Fract Mech,2008
4. Crack-tip dislocation emission arrangements for equilibrium – III. Application to large stress intensities;Marsh;Acta Metal Mater,1992
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1. Size effects in molecular dynamic simulations of fracture in bcc iron crystals;Physica Scripta;2023-11-28
2. Nanoscale ductile fracture and associated atomistic mechanisms in a body-centered cubic refractory metal;Nature Communications;2023-09-08
3. CRACK INTERACTION WITH TILT GRAIN BOUNDARIES IN BRITTLE FRACTURE OF ALUMINUM;Nanoscience and Technology: An International Journal;2023
4. Fracture toughness of Fe–Si single crystals in mode I: Effect of loading rate on an edge crack (–110)[110] at macroscopic and atomistic level;Journal of Applied Physics;2022-08-14
5. Role of excess atomic volume in crack growth in bcc iron;Results in Physics;2022-02
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