Formation of Non-equilibrium Cu-Ta-Mo Alloy Powders by Mechanical Alloying

기계적 합금화법에 의한 비평형 Cu-Ta-Mo계 합금분말의 제조

  • Published : 1999.12.01

Abstract

The solid state reaction by mechanical alloying(MA) generally proceeds by lowering the free energy as the result of a chemical reaction at the interface between the two adjacent layers. However, Lee et $al.^{1-5)}$ reported that a mixture of Cu and Ta, the combination of which is characterized by a positive heat of mixing of +2kJ/mol, could be amorphized by mechanical alloying. This implies that there exists an up-hill process to raise the free energy of a mixture of pure Cu and la to that of an amorphous phase. It is our aim to investigate to what extent the MA is capable of producing a non-equilibrium phase with increasing the heat of mixing. The system chosen was the ternary $Cu_{30}Ta_{ 70-x}Mo_ x$ (x=35, 10). The mechanical alloying was carried out using a Fritsch P-5 planetary mill under Ar gas atmosphere. The MA powders were characterized by the X-ray diffraction with Cu-K $\alpha$ radiation, thermal analysis, electron diffraction and TEM micrographs. In the case of x=35, where pure Cu powders were mixed with equal amount of pure Ta and Mo powders, we revealed the formation of bcc solid solution after 150 h milling but its gradual decomposition by releasing fcc-Cu when milling time exceeded 200 h. However, an amorphous phase was clearly formed when the Mo content was lowered to x=10. It is believed that the amorphization of ternary $Cu_{30}Ta_{60}Mo_{10}$ powders is essentially identical to the solid state amorphization process in binary $Cu_{30}Ta_{70}$ powders.

Keywords

References

  1. Mat. Sci. Forum v.88-90 C.H.Lee;M.Mori;T.Fukunaga;U.Mizutani
  2. J. Phase Equilibria v.14 C.H.Lee;T.Fukunaga;Y.Yamada;H.Okamoto;U.Mizutani
  3. Mat. Sci. Forum v.88-90 U.Mizutani;C.H.Lee;T.Fukunaga;M.Takaki;K.Tanaka
  4. Mat. Sci. Eng. v.A134 K.Sakurai;Y.Yamada;C.H.Lee;T.Fukunaga;U.Mizutani
  5. Mater. Trans., JIM v.36 U.Mizutani;C.H.Lee
  6. J. Non-Cryst. Solid v.76 R.B.Schwarz;R.R.Petich;C.K.Saw
  7. Phys. Rev. Letters v.51 R.B.Schwarz;W.L.Johnson
  8. Mater. Sci. & Eng. v.A134 K.Uenishi;K.F.Kobayashi;K.N.Ishihara;P.H.Shingu
  9. Jpn. J. Appl. Phys. v.26 J.Kuyma;H.Inui;S.Imaoka;S.Nasu;K.N.Ishihara;P.H.Shingu
  10. 한국분말야금학회지 v.3 김진천;고병휴;오승탁;문인형
  11. 한국분말야금학회지 v.5 류성수;문인형
  12. Cohesion in Metals F.R.de Boer;R.Boom;W.C.M.Mattens;A.R.Miedema;A.K.Niessen
  13. Binary Alloy Phase Diagrams(2nd ed.) T.B.Massalski
  14. 大韓金屬學會 秋季學術大會槪要集 이충효
  15. A Handbook of Lattice Spacing and Structure of Metals and Alloys W.B.Pearson
  16. Apply. Phys. Lettets v.49 R.B.Schwarz;C.C.Koch
  17. J. Non-Cryst. Solid v.117;118 C.H.Lee;M.Mori;U.Mizutani