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Acta Metall Sin  1993, Vol. 29 Issue (6): 54-58    DOI:
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SYNTHESIS OF Ni-Mo ALLOYS SY ALLOYING
WANG Erde;HUO Wencan Harbin Institute of TechnologyLIANG Guoxian;Post Box 435.Harbin Institute of Technology;Harbin 150006
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WANG Erde;HUO Wencan Harbin Institute of TechnologyLIANG Guoxian;Post Box 435.Harbin Institute of Technology;Harbin 150006. SYNTHESIS OF Ni-Mo ALLOYS SY ALLOYING. Acta Metall Sin, 1993, 29(6): 54-58.

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Abstract  

Ni_(100-x)Mo_x(x=20, 30, 38) alloys have been synthesized by mechanical al-loying. The structure evolution of powders during mechanical alloying has been monitored byX-ray diffraction, SEM and TEM analysis. The Ni_(62)Mo_(38) sample becomes partially amor-phous after high energy ball milling, while the Ni_(80)Mo_(20) and Ni_(70)Mo_(30) become no-equilib-rium nano-crystals.

Key words:  mechanical alloying      Ni-Mo alloy      amorphization      nano-crystal     
Received:  18 June 1993     
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1 王尔德,梁国宪,霍文灿.粉末冶金技术,1991;9(3) :176
2 Evanov E, Bokhonov B,Konstanchuk I.粉体粉末冶金,1991;38:903
3 Kuyama J, Inui H, Imaoka S, Nasu S, Ishihara K N. Shingu P H. Jpn J Appl Phys, 1991; 30 (5A): L854
4 Zdujic M, Kobayashi K F, Shingu P H. Z Metallk, 1990; 81: 380
5 Niessen A K, Miedema A R. Ber Bunsenges Phys Chem, 1983; 87: 717
6 Cocco G, Enzo S, Barrett N, Roberts K J. J Less-common Met, 1989; 154: 177
7 Trudeau L, Shulz R. Mater Sci Eng, 1991; A134: 1361
8 Egami T, Waseda Y. J Non-cryst Solids, 1984; 64: 113

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