Sintering Kinetics Analysis of Molybdenum Nanopowder in a Non-Isothermal Process

  • Kim, Se Hoon
  • Kim, Dae-Gun
  • Park, Min Suh
  • Seo, Young Ik
  • Kim Young Do
Citations

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17

초록

Compared with commercial micro-sized molybdenum powder, the sintering of molybdenum nanopowder fabricated by high-energy ball milling and subsequent hydrogen reduction was considerably more activated due to its extended surface area. In this study, the sintering kinetics of a molybdenum nanopowder were evaluated by measuring the linear shrinkage in a non-isothermal process and calculating the activation energy for the initial sintering stage. To reach a linear shrinkage of 2 %, the activation energy of the molybdenum nanopowder sintering was 180 kJ, primarily due to the grain boundary diffusion, while the activation energy of the commercial micro-sized powder sintering was 345 kJ, predominantly due to the volume diffusion.

키워드

nanostructured materialssinteringdilatometryactivation analysisdiffusionDENSIFICATION BEHAVIORCONSOLIDATIONPOWDERSNI
제목
Sintering Kinetics Analysis of Molybdenum Nanopowder in a Non-Isothermal Process
저자
Kim, Se HoonKim, Dae-GunPark, Min SuhSeo, Young IkKim Young Do
DOI
10.1007/s12540-011-0209-x
발행일
2011-02
유형
Article
저널명
Metals and Materials International
17
1
페이지
63 ~ 66