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Grain-boundary engineering markedly reduces susceptibility to intergranular hydrogen embrittlement in metallic materials
karnesky
Sep 13, 2016 11:17:12 AM
Traction–separation relationships for hydrogen induced grain boundary embrittlement in nickel via molecular dynamics simulations
noksagt
Dec 14, 2015 8:32:50 PM
The diffusion and trapping of hydrogen along the grain boundaries in polycrystalline nickel
noksagt
Dec 14, 2015 8:32:15 PM
Hydrogen-induced intergranular failure in nickel revisited
noksagt
Dec 14, 2015 8:31:06 PM
Hydrogen effects on nanovoid nucleation at nickel grain boundaries
noksagt
Dec 14, 2015 8:30:57 PM
Grain Boundary Contributions to Hydrogen-Affected Plasticity in Ni-201
noksagt
Dec 14, 2015 8:30:29 PM
Hydrogen-enhanced dislocation activity and vacancy formation during nanoindentation of nickel
noksagt
Dec 14, 2015 8:30:27 PM
A Nanoscale Study of Dislocation Nucleation at the Crack Tip in the Nickel-Hydrogen System
noksagt
Dec 14, 2015 8:30:02 PM
Testing continuum concepts for hydrogen embrittlement in metals using atomistics
noksagt
Dec 14, 2015 8:29:31 PM
Intergranular fracture of nickel: the effect of hydrogen-sulfur co-segregation
noksagt
Dec 14, 2015 8:29:29 PM
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Owner:
Richard Karnesky
Registered:
2009-05-14
Type:
Public
Membership:
Closed
Members (2)