Effects of Hf Addition on Microstructure and Hot Workability of Fe-30at.%A1-5at.%Cr Alloy

Hf가 첨가된 Fe-30at.%A1-5at.%Cr 합금의 미세조직 및 열간압연가공 특성

  • Yoon, Kye-Lim (Dept. of Metallurgical Engineering, Chonnam National University) ;
  • Lee, Doh-Jae (Dept. of Metallurgical Engineering, Chonnam National University) ;
  • Baek, Dae-Hwa (Gwangju Chonnam Regional Small and Medium Business Office) ;
  • Lee, Kyung-Ku (Dept. of Advanced Material Engineering, Hanlyo University)
  • 윤계림 (전남대학교 금속공학과) ;
  • 이도재 (전남대학교 금속공학과) ;
  • 백대화 (광주 전남지방 중소기업청) ;
  • 이경구 (한려대학교 신소재공학과)
  • Published : 2001.12.20

Abstract

This study was carried out to examine the effects of adding 0.3at.%Hf in Fe-30at.%Al-5at.%Cr alloy on the variation of microstructures and hot workability. The effect of hot rolling on mechanical properties was estimated by measuring the elongation and tensile strength after rolling at 800 and 1000 respectively. Microstructure of Fe-30at.%Al-5at.%Cr alloy was consisted of large equiaxed grains and it was changed to quasi-equiaxed or columnar structures by adding 0.3at.%Hf to Fe-30at.%Al-5at.%Cr alloy. Every specimens showed a decreased tensile strength after hot rolling compared to that of before rolling. The elongation was increased by hot rolling. Remarkable changes in elongation by hot rollong was observed such as from 1.4% to 4.5% elongation at the specimen of 0.3at.%Hf added to Fe-30at.%Al-5at.%Cr. Fe-30at.%Al-5at.%Cr alloy showed typical cleavage fracture on tensile failure and hot rolling has negligible effects on fracture mode in this alloy. However at the alloy containing Hf fracture mode was changed by hot rolling from intergranular to mixed intergranular and transgranular fracture mode.

Keywords

References

  1. Intermetallic compounds v.2 K. Vedula
  2. Mater. Si. & Eng. v.A174 C. G. Mckamey;P. J. Maziasa;G. M. Goodwin;T. Zacharia
  3. Mater. Sci. & Eng. v.A203 D. Raabe;J. Keichel
  4. Mater. Sci. & Techn. v.14 J. R. Blackford;R. A. Buckley;H. Jones;C. M. Sellars
  5. J. of the Korea Inst. of Met. & Mater. v.35 no.3 朴光一;朱成珉;崔畓川
  6. J. of the Korea Inst. of Met. & mater. v.37 no.2 尹奇石;鄭中采;元昌煥
  7. Metal. & Mate. Trans. A. v.27A A. Agarwal;R. Balasubramaniam;S. Bhargava
  8. Mater. Sci. & Eng. v.A263 Y. D. Huang;W. Y. Yang;Z. Q. Sun
  9. Intermetallics 7 D. G. Morris;M. A. Morris-Muoz
  10. Scripta mater. v.42 S. M. Zhu;K. Sakamoto;M. Tamura;K. Iwaski
  11. Journal of Alloys and Compounds v.256-254 R. Balasubramaniam
  12. Intermetallic 2 N. S. Stoloff;C. T. Liu
  13. Mate. Sci. & Eng. v.A249 D. Li;D. Lin;Y. Liu
  14. Metal. & Mater. Trans. A. v.27A H. Chiu;X. Mao
  15. Intermetallic 3 D. G. Morris;S. Gunther
  16. Scripta Mater v.38 no.10 C. T. Liu;J. L. Wright;N. S. Stoloff