Corrosion resistance and microstructure of zircaloy-4 subjected to ion irradiation

被引:4
|
作者
Bai, XD
Chen, XW [1 ]
Xu, J
Zhou, QG
Chen, BS
机构
[1] Tsing Hua Univ, Dept Mat Sci & Engn, Beijing 100084, Peoples R China
[2] Jianzhong Chem Corp, Sichuan 644000, Peoples R China
关键词
zircaloy-4; corrosion resistance; microstructure; irradiation;
D O I
10.1016/j.nimb.2003.10.015
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
To investigate the effect of the damage on the corrosion resistance and microstructure of zircaloy-4, irradiation with three types of ions including Ar, Kr and Xe ions has been respectively performed with a fluence range from I X 10(14) to I X 10(16) ions/cm(2). Potentiodynamic polarization measurements were employed to evaluate the corrosion resistance of zircaloy-4 in a IN H2SO4 solution at room temperature, and transmission electron microscope (TEM) was used to analyze the change of microstructures in the surface layer. Corrosion tests show the same trend in polarization curves of the samples respectively irradiated with At, Kr and Xe ions, that is, with the increase of irradiation dose, the passive current density first increasing and then decreasing quickly, while the natural corrosion potential decreases first and then increases rapidly. However, the critical point where the corrosion properties are transformed from damage stage to protection stage, exhibit the distinct diversity among the irradiation fluences. This work indicates that the critical point is determined not by irradiation dose, but by damage level. TEM analyses employed to demonstrate crystalline-to-amorphous transformation process help to investigate the mechanism of the corrosion properties of zircaloy-4 samples irradiated with various doses. (C) 2003 Elsevier B.V. All rights reserved.
引用
收藏
页码:293 / 299
页数:7
相关论文
共 50 条
  • [31] Effects of neutron irradiation on the microstructure of alpha-annealed Zircaloy-4
    Bajaj, R
    Kammenzind, BF
    Farkas, DM
    ZIRCONIUM IN THE NUCLEAR INDUSTRY: THIRTEENTH INTERNATIONAL SYMPOSIUM, 2002, 1423 : 400 - 425
  • [32] Microstructure evolution of recrystallized Zircaloy-4 under charged particles irradiation
    Gaume, M.
    Onimus, F.
    Dupuy, L.
    Tissot, O.
    Bachelet, C.
    Mompiou, F.
    JOURNAL OF NUCLEAR MATERIALS, 2017, 495 : 516 - 528
  • [33] Microstructure evolution of cold-worked Zircaloy-4 under 20 mev Cu ion irradiation
    Naceri, S. E.
    Izerrouken, M.
    Ishaq, A.
    Guittoum, A.
    Sari, A.
    Khereddine, A.
    Kadouma, M.
    Menchi, O.
    Ghamnia, M.
    PHILOSOPHICAL MAGAZINE LETTERS, 2019, 99 (04) : 157 - 165
  • [34] Impact of high dose krypton ion irradiation on corrosion behavior of laser beam welded zircaloy-4
    Wan, QA
    Bai, XD
    Zhang, XY
    MATERIALS RESEARCH BULLETIN, 2006, 41 (02) : 387 - 395
  • [35] Structural characterization of Zircaloy-4 subjected to helium ions irradiation of variable fluence
    Khan, Atika
    Rafique, Mohsin
    Afzal, Naveed
    Khaliq, Zubair
    Ahmad, R.
    NUCLEAR MATERIALS AND ENERGY, 2019, 20
  • [36] Steam corrosion kinetics of Zircaloy-4
    Zhang, SC
    Xu, WJ
    Xie, HY
    RARE METAL MATERIALS AND ENGINEERING, 1997, 26 (05) : 44 - 46
  • [37] Steam corrosion kinetics of zircaloy-4
    Xiyou Jinshu Cailiao Yu Gongcheng, 5 (44-46):
  • [38] Proton irradiation effect on microstructure, strain localization and iodine-induced stress corrosion cracking in Zircaloy-4
    Fournier, L.
    Serres, A.
    Auzoux, Q.
    Leboulch, D.
    Was, G. S.
    JOURNAL OF NUCLEAR MATERIALS, 2009, 384 (01) : 38 - 47
  • [39] Effect of Surface State on Nodular Corrosion Resistance of Zircaloy-4 Alloy
    Chuan-Ming Chen
    Bang-Xin Zhou
    Shao-Qiu Gou
    Jiao Huang
    Mei-Yi Yao
    Acta Metallurgica Sinica(English Letters), 2015, 28 (02) : 254 - 260
  • [40] Research on nodular corrosion resistance performance of zircaloy-4 cladding tubes
    Lu, Hua-Quan
    Pang, Hua
    Zhao, Wen-Jin
    Ding, Zhi-Feng
    Zhang, Feng-Lin
    Tian, Sheng
    2003, Atomic Energy Publishing House (37):