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http://dx.doi.org/10.4150/KPMI.2003.10.3.164

Mechanical Alloying Effect in Immiscible Cu-Based Alloy Systems.  

Lee, Chung-Hyo (Dept. of Advanced Materials Science & Engineering, Mokpo National University)
Lee, Seong-Hee (Dept. of Advanced Materials Science & Engineering, Mokpo National University)
Kim, Ji-Soon (Research Center for Machine Parts and Materials Processing, University)
Kwon, Young-Soon (Research Center for Machine Parts and Materials Processing, University)
Publication Information
Journal of Powder Materials / v.10, no.3, 2003 , pp. 164-167 More about this Journal
Abstract
The mechanical alloying effect has been studied on the three Cu-based alloy systems with a positive heat of mixing. The extended bcc solid solution has been formed in the Cu-V system and an amorphous phase in the Cu-Ta system. However, it is round that a mixture of nanocrystalline Cu and Mo Is formed in the Cu-Mo system. The neutron diffraction has been employed at a main tool to characterize the detailed amorphization process. The formation of an amorphous phase in Cu-Ta system can be understood by assuming that the smaller Cu atoms preferentially enter into the bcc Ta lattice during ball milling.
Keywords
Mechanical alloying; Immiscible alloy system; Positive heat of mixing; Copper-tantalum; Copper-vanadium; Amorphization; Extended solid solution; Neutron diffraction; Structure factor;
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