Thermal Stability of $\textrm{Fe}_{80-x}\textrm{P}_{10}\textrm{C}_{6}\textrm{B}_{4}\textrm{M}_{x}$(M=Transition Metal) Amorphous Alloys

$\textrm{Fe}_{80-x}\textrm{P}_{10}\textrm{C}_{6}\textrm{B}_{4}\textrm{M}_{x}$(M=Transition Metal) 비정질합금의 열적안정성

  • Guk, Jin-Seon (Dept. of Electrical Engineering Chonbuk National University) ;
  • Jeon, U-Yong (Dept. of Electrical Engineering Chonbuk National University) ;
  • Jin, Yeong-Cheol (Dept. of Electrical Engineering Chonbuk National University) ;
  • Kim, Sang-Hyeop (Korea Reserch Institute of Standards and Science)
  • Published : 1997.03.01

Abstract

At the aim of finding a Fehased amorphous alloy with a wide supercooled liquid region (${\Delta}T_{x}=T_{x}-T_{g}$) before crystallization, the changes in glass transition temperatudfI$T_{g}$ and crystallization temperature ($T_{x}$) by the dissolution of additional M elements were examined for the $Fe_{80}P_{10}C_{6}B_{4}$(x~6at%. M= transition metals) amorphous alloys. The ${\Delta}T_{x}$ value is 27K for the Fe,,,P,,,C,,R, alloy and increases to 40K for the addition of M=4at%Hf, 4at%Ta or 4at%Mo. The increase in ${\Delta}T_{x}$ is due to the increase of $T_{x}$ exceeding the degree in the increase in $T_{g}$. The $T_{g}$ and $T_{x}$ increase with decreasing electron concentration (e/a) from about 7 38 to 7.05. The decrease of e/a also implies the increase in the attractive bonding state between the M elements and other constitutent elements. It is therefore said that $T_{g}$ and $T_{x}$ increase kith increasing attractive bonding force.

과냉각액체구역(${\Delta}T_{x}=T_{x}-T_{g}$)을 갖는 $Fe_{80}P_{10}C_{6}B_{4}$ 조성에 천이금속(Ti, Zr, Hf, V, Nb, Ta, Cr, Mo, W, Mn, Co, Ni, Pd, Pt및 Cu)를 첨가하여 이들 원소가 유리화온도($T_{g}$), 결정화온도($T_{x}$) 및 과냉액체구역 (${\Delta}T_{x}$)에 미치는 영향에 \ulcorner여 조사하였다. $Fe_{80}P_{10}C_{6}B_{4}$ 합금의 ${\Delta}T_{x}$ 값은 27K였으나 이 합금에 Hf, Ta 및 Mo을 각각 4at%첨가하면 그 값이 40k 이상으로 증가하였다. 이같은 ${\Delta}T_{x}$ 값의 증가는 유리화온도($T_{g}$의 상승보다 결정화온도($T_{x}$)의 상승폭이 크기 때문이다. $T_{g}$$T_{x}$는 외각전자밀도(e/a)가 약 7.38에서 7.05로 감소할수록 상승하였다. e/a의 감소는 천이금속과 다른 구성원소(반금속)사이의 상호결합상태를 의미한다. 즉 $T_{g}$$T_{x}$의 상승은 강한 상호결합력에 기인하는 것으로 사료된다.

Keywords

References

  1. Met. Trans. v.3 H.J. Leamy;H.H. Chen;T.T. Wang
  2. 日本金屬學會誌 v.9 奈賀正明;橋本功二;增本健
  3. Japan J. Appl. Phys. v.13 H. Fujimori;T. Mosumoto;Y. Obi;M. Kikuchi
  4. Proc. of 4th Int. Conf. on Rapidly Quenched Metals v.1 B.C. Giessen
  5. 金屬 v.59 no.3 水谷宇朗
  6. アモルフアス 基礎 增本健(編著)
  7. Physica v.115B R. Boom;F.R. De Boer;A.K. Niessen;A. R. Miedema
  8. Proc. 2nd Intern. Conf. on Rapidly Quenched Metals N. Naka;S. Tomizawa;T. Watanabe;T. Masumoto
  9. 大韓金屬學會 秋季學術講演 發表槪要 鞠辰善;陳水喆;全邁龍;李敏浩