The oxidation behavior of an Fe61B15Zr8Mo7Co5Y2Cr2 bulk metallic glass at 550-700 °C

被引:18
|
作者
Kai, Wu [1 ]
Ren, I. F. [1 ]
Kao, P. C. [1 ]
Huang, R. T. [1 ]
Liu, C. T. [2 ]
机构
[1] Natl Taiwan Ocean Univ, Inst Mat Engn, Keelung 20224, Taiwan
[2] Univ Tennessee, Dept Mat Sci & Engn, Knoxville, TN 37996 USA
关键词
Oxidation; Glasses; metallic; AMORPHOUS-ALLOYS; SYSTEM; AIR;
D O I
10.1016/j.intermet.2008.08.013
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The oxidation behavior of an Fe61B15Zr8Mo7Co5Y2Cr2 bulk metallic glass (Fe7-BMG) and its crystalline counterpart (XFe7) was studied over the temperature range of 550-700 degrees C in dry air. In general, the results showed that the oxidation kinetics of the Fe7-BMG and XFe7 alloys followed a parabolic-rate law, with their oxidation rates increasing with temperature. It was found that the oxidation rate constants (k(p) values) of the Fe7-BMG are slightly higher than those of XFe7, indicating that the amorphous alloy underwent a fast oxidation reaction. The scale formed on the Fe7-BMG at 550 degrees C for 48 h was thin and heterophasic mixture of iron oxides (Fe2O3/Fe3O4) and tetragonal-ZrO2 (t-ZrO2). At higher temperatures (T >= 600 degrees C), duplex scales formed on the glassy alloy consisted of an outer layer of iron oxides (Fe2O3/Fe3O4) and minor amounts of B2O3, and of a heterophasic inner layer of mostly t-ZrO2 intermixed with non-oxidized Fe3B, FeCo, and ZrB12. The formation of the crystalline intermetallics indicated the occurrence of the substrate crystallization at the temperature range of interest. (C) 2008 Published by Elsevier Ltd.
引用
收藏
页码:205 / 210
页数:6
相关论文
共 50 条
  • [31] Mechanical properties of Fe-based bulk amorphous Fe41Co7Cr15Mo14C15B6Y2 alloy rods
    Wang, Li
    Wang, Jingang
    Sun, Mengtao
    CHEMICAL PHYSICS LETTERS, 2020, 750
  • [32] Glass formation, corrosion behavior, and mechanical properties of novel Cr-rich Cr-Fe-Mo-C-B-Y bulk metallic glasses
    Xu, Tao
    Pang, Shujie
    Zhang, Tao
    JOURNAL OF ALLOYS AND COMPOUNDS, 2015, 625 : 318 - 322
  • [33] Corrosion behaviors of bulk amorphous Fe41Co7Cr15 Mo14C15B6Y2 alloy in HCl solution
    Wang, Li
    Fan, Hongbo
    Li, Jing
    Zheng, Wei
    Chao, Yuesheng
    Shen, Jun
    Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering, 2009, 38 (11): : 1992 - 1996
  • [34] Corrosion behaviors of bulk amorphous Fe41Co7Cr15 Mo14C15B6Y2 alloy in NaOH solution
    Wang, Li
    Chao, Yue-Sheng
    Gongneng Cailiao/Journal of Functional Materials, 2010, 41 (10): : 1849 - 1852
  • [35] Non-Isothermal Crystallization Kinetics of Fe41Co7Cr15Mo14Y2C15B6 Bulk Amorphous Alloy
    Chen Qingjun
    Wei Dandan
    Zhou Xianliang
    Yan Jianwu
    Hua Xiaozhen
    Ai Yunlong
    RARE METAL MATERIALS AND ENGINEERING, 2009, 38 (08) : 1343 - 1347
  • [36] Air oxidation of a Zr58Cu22Al12Fe8 bulk metallic glass at 350-550°C
    Kai, W.
    Chen, Y. R.
    Ho, T. H.
    Hsieh, H. H.
    Qiao, D. C.
    Jiang, F.
    Fan, G.
    Liaw, P. K.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2009, 483 (1-2) : 519 - 525
  • [37] Synthesis of Cr50Fe6Co7Mo14C15B6Y2 bulk metallic glass with integrated merits by high-content solvent element substitution and the structural origin
    Xu, Tao
    Li, Xuan
    Zhuo, Longchao
    Li, Gong
    Yin, Enhuai
    Wang, Weizhong
    Jian, Zengyun
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2021, 14 : 220 - 228
  • [38] Crystallization kinetics of Co48Cr15Mo14C15B6Er2 bulk metallic glass with high thermal stability
    Men, H
    Pang, SJ
    Li, R
    Zhang, T
    CHINESE PHYSICS LETTERS, 2006, 23 (02) : 417 - 419
  • [39] Specific heat capacities of Fe-Co-Cr-Mo-C-B-Y bulk metallic glasses and their correlation with glass-forming ability
    Lu, Yunzhuo
    Huang, Yongjiang
    Lu, Xing
    Qin, Zuoxiang
    Shen, Jun
    MATERIALS LETTERS, 2015, 143 : 191 - 193
  • [40] Free volume and viscosity of Fe-Co-Cr-Mo-C-B-Y bulk metallic glasses and their correlation with glass-forming ability
    Lu, Yunzhuo
    Huang, Yongjiang
    Zheng, Wei
    Shen, Jun
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2012, 358 (10) : 1274 - 1277