TY - JOUR
T1 - Alloying element additions to Ni 3Al
T2 - Site preferences and effects on elastic properties from first-principles calculations
AU - Wu, Qiong
AU - Li, Shusuo
PY - 2012/2
Y1 - 2012/2
N2 - First-principles calculations were performed to study the effects of alloying elements (Mo, Re, Ta, W, Ti, Co, Nb, Ru, Cr, Y) on the elastic properties of Ni 3Al. The site preferences of the alloying elements in Ni3Al at different temperature and concentrations were predicted. The influence of alloying elements on the lattice parameters of Ni 3Al were calculated and compared with the values fitted from experimental data. The effects of alloying elements on the elastic constants of Ni 3Al were present. The directional shear and Young's moduli for single-crystal Ni 3Al alloys with alloying elements were estimated. The bulk, shear, and Young's moduli of polycrystalline alloys were obtained. It is found that all the alloying elements occupy Al sites except Ru and Co, which may occupy both sites depending on concentration and temperature. All the elements increase shear and Young's moduli of single-crystal Ni 3Al in all orientations except Cr, Co and Y. All the elements increase both bulk and shear moduli of polycrystalline Ni 3Al except Co and Y. The solute atoms with higher bulk modulus tend higher bulk modulus of Ni 3Al alloys, and the bulk modulus is related to the mole volume either.
AB - First-principles calculations were performed to study the effects of alloying elements (Mo, Re, Ta, W, Ti, Co, Nb, Ru, Cr, Y) on the elastic properties of Ni 3Al. The site preferences of the alloying elements in Ni3Al at different temperature and concentrations were predicted. The influence of alloying elements on the lattice parameters of Ni 3Al were calculated and compared with the values fitted from experimental data. The effects of alloying elements on the elastic constants of Ni 3Al were present. The directional shear and Young's moduli for single-crystal Ni 3Al alloys with alloying elements were estimated. The bulk, shear, and Young's moduli of polycrystalline alloys were obtained. It is found that all the alloying elements occupy Al sites except Ru and Co, which may occupy both sites depending on concentration and temperature. All the elements increase shear and Young's moduli of single-crystal Ni 3Al in all orientations except Cr, Co and Y. All the elements increase both bulk and shear moduli of polycrystalline Ni 3Al except Co and Y. The solute atoms with higher bulk modulus tend higher bulk modulus of Ni 3Al alloys, and the bulk modulus is related to the mole volume either.
KW - Alloying element
KW - Elastic property
KW - First-principle theory
KW - Lattice parameter
KW - Nickel aluminides, based on Ni Al
KW - Site preference
UR - https://www.scopus.com/pages/publications/80054726095
U2 - 10.1016/j.commatsci.2011.09.016
DO - 10.1016/j.commatsci.2011.09.016
M3 - 文章
AN - SCOPUS:80054726095
SN - 0927-0256
VL - 53
SP - 436
EP - 443
JO - Computational Materials Science
JF - Computational Materials Science
IS - 1
ER -