Toughness and Damping Properties of Nanostructured Ni-Al Alloys Produced by Mechanical Alloying Methods

기계적합금화법에 의해 제조된 NiAl 나노금속간화합물 소결체의 인성 및 제진특성

  • 안인섭 (경상대학교 재료공학부 및 생산기술연구소) ;
  • 김형범 (경상대학교 재료공학부 및 생산기술연구소) ;
  • 김영도 (한양대학교 재료공학부) ;
  • 김지순 (울산대학교 재료공학부)
  • Published : 2000.09.01

Abstract

NiAl alloy powders were prepared by mechanical alloying method and bulk specimens were produced using hot isostatic pressing techniques. This study focused on the transformation behavior and properties of Ni-Al mechanically alloyed powders and bulk alloys. Transformation behavior was investigated by differential scanning calorimeter (DSC), XRD and TEM. Particle size distribution and microstructures of mechanically alloyed powders were studied by particle size analyzer and scanning electron microscope (SEM). After 10 hours milling, XRB peak broadening appeared at the alloyed powders with compositions of Ni-36at%Al to 40at%Al. The NiAl and $Ni_3Al$ intermetallic compounds were formed after water quenching of solution treated powders and bulk samples at $1200^{\circ}C$, but the martensite phase was observed after liquid nitrogen quenching of solution treated powders. However, the formation of $Ni_3Al$ intermetallic compounds were not restricted by fast quenching into liquid nitrogen. It is considered to be caused by fast diffusion of atoms for the formation of stable $\beta$(NiAl) phase and $Ni_3Al$ due to nano sized grains during quenching. Amounts of martensite phase increased as the composition of aluminium component decreased in the Ni-Al alloy, which resulted in the increasing damping properties.

Keywords

References

  1. Met. Trans. v.2 K.Enami;S.Nenno
  2. 대한금속학회지 v.29 no.9 김영도;C.M.Wayman
  3. Met. Trans. v.4 J.L.Smialek;R.F.Heheman
  4. WRDC-TR-90-4125 Lighrweight Disk Alloy Development, Air Force Report S.M.Russell;C.C.Law;M.J.Blackburn;P.C.Clapp;D.M.Pease
  5. MRS symp. Proc. v.360 S.M.Russell;F.Sczerzene
  6. 분석화학회지 v.5 no.2 김영도;최주;C.M.Wayman
  7. Metallurgical Transactions A v.22A V.C.Nardone;J.R.Strife
  8. Mat. Res. Soc. Symp. Proc. v.360 Scott,M.;Russell;Frank Sczerzenie
  9. Scripta Metallurgica v.17 E.M.Schulson;D.R.Barker
  10. Scripta Metallurgica v.24 Y.D.Kim;C.M.Wayman
  11. Nanostructured Materials v.5 no.4 B.L.Huang;J.Vallone;M.J.Luton
  12. Mater. Sci. Eng. A v.160 J.H.Yang;C.M.Wayman
  13. Scripta Metallurgica v.17 J.Wolska(et al.)
  14. Study of Mechanics v.44 no.9 Y.Furuya
  15. Anelastic Relaxation in Crystalline Solids A.S.Nowick;B.S.Berry
  16. Introduction to Solid State Physics Ch.Kittel