Thermal Stability and Behavior of Isothermal Crystallization in Fe-P-C-B-(AI-Ge) Amorphous Alloys

Fe-P-C-B-(AI-Ge)계 비정질합금의 열적 안정성과 등온결정화 거동

  • Jeon, U-Yong (Dept. of Manufacture & Metallurigical Engineering, Kwangyang College) ;
  • Guk, Jin-Seon (Dept. of Iron & Metallurgical Engineering, Hanlyo University) ;
  • Bae, In-Seong (Institute of Advanced Materials Development, Dept. of Metallurigical Engineering, Chonbuk National University) ;
  • Seol, Gyeong-Won (Institute of Advanced Materials Development, Dept. of Metallurigical Engineering, Chonbuk National University)
  • 전우용 (광양대학 제철금속과) ;
  • 국진선 (한려대학교 제철금속학과) ;
  • 배인성 (전북대학교 공과대학 신소재공학부 신소재개발연구소) ;
  • 설경원 (전북대학교 공과대학 신소재공학부 신소재개발연구소)
  • Published : 1998.11.01

Abstract

Thermal properties of Fe- base amorpous alloys were investigated. $Fe_{80}P_6C_{12}B_{12}$ and $Fe_{73}P_{11}C_6B_4AI_4Ge_2$ amorphous alloys were fabricated by melt spinning method and thermal analysis was done by differential scanning calorimeter. After isothermal crystallization. the Avrami exponents of $Fe_{80}P_6C_{12}B_{12}$ and $Fe_{73}P_{11}C_6B_4AI_4Ge_2$ amorphous alloys were 1.8-2.2 and 2.5-4.0, respectively. It means the former alloy shows diffusion controlled growth and the latter one shows interface controlled growth. For $Fe_{80}P_6C_{12}B_{12}$ and $Fe_{73}P_{11}C_6B_4AI_4Ge_2$ amorphous alloys. the activation energies of isothermal crystallization was 353 and 371kJlmol. Also the activation energies of nucleation and growth were 301, 324kJlmol and 273. 30lkJ/mol, respectively. Thus $Fe_{73}P_{11}C_6B_4AI_4Ge_2$ amorphous alloy is considered to be more stable than $Fe_{73}P_{11}C_6B_4AI_4Ge_2$ amorphous alloy.

Fe기 비정질합금에서 과냉각액체영역의 유무에 따른 열적 안정성을 비교평가하기 위하여 결정화온도 이하에서 유리천이가 나타나지 않는 $Fe_{80}P_6C_{12}B_{12}$합금과 52K의 과냉각 액체영역을 갖는 $Fe_{73}P_{11}C_6B_4AI_4Ge_2$ glassy 합금을 열분석하였다. 등온결정화에 의한 열분석의 결과 JMA plot의 n값은 $Fe_{80}P_6C_{12}B_{12}$합금이 1.8-2.2이고 과냉각 액체영역을 갖는 $Fe_{73}P_{11}C_6B_4AI_4Ge_2$ 합금이 2.5-4.0으로서 후자의 경우가 열적으로 안정하였다. 결정화의 양상은 $Fe_{80}P_6C_{12}B_{12}$ 합금의 경우 핵생성속도가 일정할 때 확산율속에 의해 결정입자가 성장하는 반면 $Fe_{73}P_{11}C_6B_4AI_4Ge_2$ glassy합금의 경우 핵생성속도가 일정할 때 계면입자가 성장한다. $Fe_{73}P_{11}C_6B_4AI_4Ge_2$ 합금 및 $Fe_{80}P_6C_{12}B_{12}$ 합금의 결정화에 필요한 활성화에너지, 핵생성 및 성장에 필요한 활성화에너지는 각각 371, 353kJ/mol, 그리고 324, 301KJ/mol 및 301, 273KJ/mol로서 과냉각 액체영역을 갖는 합금이 열적으로 안정하다고 판단된다.

Keywords

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