Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Schultz, Peter A
and
Davenport, James W
1992.
Bonding and brittleness in B2 structure 3d transition metal aluminides: Ionic, directional, or does it make a difference?.
Scripta Metallurgica et Materialia,
Vol. 27,
Issue. 5,
p.
629.
Freeman, A. J.
1992.
Structure and Electronic Properties of Complex Solids.
Berichte der Bunsengesellschaft für physikalische Chemie,
Vol. 96,
Issue. 11,
p.
1512.
Cheng, Tianyi
1993.
Effects of refined microstructures on ductility and toughness at room temperature in nickel-rich NiAl.
Journal of Materials Science,
Vol. 28,
Issue. 21,
p.
5909.
Schröpf, H.
Kuhrt, C.
Arzt, E.
and
Schultz, L.
1994.
Ordering versus disordering tendencies in mechanically alloyed (NixFe1−x)Al alloys.
Scripta Metallurgica et Materialia,
Vol. 30,
Issue. 12,
p.
1569.
Wu, Yutong
Tao, Hui-Shu
Garfunkel, Eric
Madey, Theodore E.
and
Shinn, Neal D.
1995.
Growth, interfacial alloying, and oxidation of ultra-thin Al films on Ru(0001).
Surface Science,
Vol. 336,
Issue. 1-2,
p.
123.
Wolff, I. M.
1996.
Synthesis of RuAl by reactive powder processing.
Metallurgical and Materials Transactions A,
Vol. 27,
Issue. 11,
p.
3688.
Sabariz, A. L. R.
and
Taylor, G.
1996.
Preparation, Structure and Mechanical Properties of RuAl and (Ru,Ni)Al Alloys.
MRS Proceedings,
Vol. 460,
Issue. ,
Makino, Y.
1996.
Structural design of intermetallics: structural mapping, site preference of third alloying element and planar defects.
Intermetallics,
Vol. 4,
Issue. ,
p.
S11.
Botton, G. A.
Guo, G. Y.
Temmerman, W. M.
and
Humphreys, C. J.
1996.
Experimental and theoretical study of the electronic structure of Fe, Co, and Ni aluminides with theB2 structure.
Physical Review B,
Vol. 54,
Issue. 3,
p.
1682.
Deng, Wen
Xiong, Liangyue
Wang, Shuhe
Guo, Jianting
and
Long, Qiwei
1997.
Influence of Fe on electronic density of defects in NiAl alloys.
Chinese Science Bulletin,
Vol. 42,
Issue. 21,
p.
1783.
Zhukov, V. P.
1997.
Computational methods in the theory of chemical bonding in solids.
Journal of Structural Chemistry,
Vol. 38,
Issue. 3,
p.
459.
WOLFF, I.M
and
SAUTHOFF, G
1997.
ROLE OF AN INTERGRANULAR PHASE IN RuAl WITH SUBSTITUTIONAL ADDITIONS.
Acta Materialia,
Vol. 45,
Issue. 7,
p.
2949.
Wolff, I. M.
1997.
Toward a better understanding of ruthenium aluminide.
JOM,
Vol. 49,
Issue. 1,
p.
34.
Rzyman, K.
Moser, Z.
Watson, R. E.
and
Weinert, M.
1998.
Enthalpies of formation of AlNi: Experiment versus theory.
Journal of Phase Equilibria,
Vol. 19,
Issue. 2,
p.
106.
Medvedeva, N.I.
Gornostyrev, Yu.N
Novikov, D.L.
Mryasov, O.N.
and
Freeman, A.J.
1998.
Ternary site preference energies, size misfits and solid solution hardening in NiAl and FeAl.
Acta Materialia,
Vol. 46,
Issue. 10,
p.
3433.
Das, G. P.
1998.
Frontiers in Materials Modelling and Design.
p.
108.
Anderson, S.A
and
Lang, C.I
1998.
Thermal Conductivity of Ruthenium Aluminide (RuAl).
Scripta Materialia,
Vol. 38,
Issue. 3,
p.
493.
Lu, D.C
and
Pollock, T.M
1999.
Low temperature deformation and dislocation substructure of ruthenium aluminide polycrystals.
Acta Materialia,
Vol. 47,
Issue. 3,
p.
1035.
Kulikov, N. I.
Postnikov, A. V.
Borstel, G.
and
Braun, J.
1999.
Onset of magnetism inB2transition-metal aluminides.
Physical Review B,
Vol. 59,
Issue. 10,
p.
6824.
Daniel, Million
Balasubramanian, Mahalingam
Brewe, Dale
Mehl, Michael J.
Pease, Douglas
and
Budnick, Joseph I.
2000.
Site selectivity and bonding in the β-phase aluminides: Studies of RuAl, PdAl, and Pd and Ru dopants in NiAl.
Physical Review B,
Vol. 61,
Issue. 10,
p.
6637.