The effect of Y addition on the slip behavior of an edge dislocation on basal, prismatic and second-order pyramidal slip planes of Mg has been investigated using a molecular dynamics simulation. It is found that Y increases the critical resolved shear stress of basal slip more than that of non-basal slip and eventually reduces the difference in the CRSS between different slip systems, which is proposed as the reason for the experimentally reported activation of (c + a) slip in Mg-Y alloys. (C) 2015 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.112619sciescopu
This study is dedicated to the quantification of latent hardening and its effect on the plasticity o...
Crystal plasticity finite element analysis method considering the accumulation of geometrically nece...
We study the effect of solute segregation on pyramidal to basal transformation of〈c+a〉edge dislocati...
Alloying magnesium (Mg) with rare earth elements such as yttrium (Y) has been reported to activate t...
Mg-Ce alloys have been attracting attention because a small amount of Ce addition improves the ducti...
For dislocations in non-basal planes in hexagonal close-packed crystalline solids, the corresponding...
For dislocations in non-basal planes in hexagonal close-packed crystalline solids, the corresponding...
Yttrium (Y) addition is known to be effective in enhancing the formability of magnesium (Mg) alloys ...
Solution strengthening is a well-known approach to tailoring the mechanical properties of structural...
The deformation of polycrystalline magnesium alloy was studied by molecular dynamics simulation. The...
Solute accelerated cross-slip of pyramidal screw dislocations has recently been recognized as a cru...
Improving room temperature ductility and formability is a bottleneck for a wide industrial applicati...
In situ neutron diffraction of two binary Mg alloys, Mg-0.5 wt.% Y and Mg-2.2 wt.% Y have been carri...
Micropillar compression technique was employed to study the microscale deformation mechanisms of bas...
Micropillar compression technique was employed to study the microscale deformation mechanisms of bas...
This study is dedicated to the quantification of latent hardening and its effect on the plasticity o...
Crystal plasticity finite element analysis method considering the accumulation of geometrically nece...
We study the effect of solute segregation on pyramidal to basal transformation of〈c+a〉edge dislocati...
Alloying magnesium (Mg) with rare earth elements such as yttrium (Y) has been reported to activate t...
Mg-Ce alloys have been attracting attention because a small amount of Ce addition improves the ducti...
For dislocations in non-basal planes in hexagonal close-packed crystalline solids, the corresponding...
For dislocations in non-basal planes in hexagonal close-packed crystalline solids, the corresponding...
Yttrium (Y) addition is known to be effective in enhancing the formability of magnesium (Mg) alloys ...
Solution strengthening is a well-known approach to tailoring the mechanical properties of structural...
The deformation of polycrystalline magnesium alloy was studied by molecular dynamics simulation. The...
Solute accelerated cross-slip of pyramidal screw dislocations has recently been recognized as a cru...
Improving room temperature ductility and formability is a bottleneck for a wide industrial applicati...
In situ neutron diffraction of two binary Mg alloys, Mg-0.5 wt.% Y and Mg-2.2 wt.% Y have been carri...
Micropillar compression technique was employed to study the microscale deformation mechanisms of bas...
Micropillar compression technique was employed to study the microscale deformation mechanisms of bas...
This study is dedicated to the quantification of latent hardening and its effect on the plasticity o...
Crystal plasticity finite element analysis method considering the accumulation of geometrically nece...
We study the effect of solute segregation on pyramidal to basal transformation of〈c+a〉edge dislocati...