Microstructural aspects of Zircaloy nodular corrosion in steam

被引:11
|
作者
Taylor, DF [1 ]
机构
[1] GE, Corp Res & Dev, Schenectady, NY 12301 USA
关键词
D O I
10.1016/S0022-3115(99)00159-2
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Zircaloy-2 becomes susceptible to nodular corrosion in high-temperature, high-pressure steam when the total solute concentration of the beta-stabilizing alloying elements Fe, Ni and Cr in the alpha-zirconium matrix falls below a critical value C-c that is characteristic of the test conditions. C-c for typical commercial Zircaloy-2 in a 24 h/510 degrees C/10.4 MPa steam-test is the precipitate-free alpha-matrix concentration in equilibrium with solute-saturated beta phase at about 840 degrees C, the corresponding critical temperature T-c. Thus, immunity to nodular corrosion is a metastable condition for alpha-Zircaloy that requires fast cooling from above T-c to achieve adequate solute concentration throughout the matrix. Annealing Zircaloy at any temperature below T-c for a sufficiently long time makes it susceptible to nodular corrosion, in the (alpha + chi) phase field, where chi collectively designates the Fe-, Cr- and Ni-containing precipitate phases, lowering the solute concentration to less than C-c by Ostwald ripening can require many hundreds of hours. Above about 825 degrees C, the temperature of the (alpha + chi)/(alpha + beta + chi) transus, solute-saturated beta phase surrounds each precipitate and a strong 'inverse' activity gradient promotes equilibration with the much lower solute concentration in the alpha matrix. Sensitization to nodular corrosion occurs most rapidly at about 835 degrees C between the (alpha + chi)/(alpha + beta +chi) transus and T-c. Annealing Zircaloy at temperatures above T-c for a sufficiently long time will raise the solute concentration above C-c, and with rapid cooling, heal any degree of susceptibility. Annealing within the 'protective coarsening window' between T-c and about 850 degrees C, the temperature of the (alpha + beta + chi)/(alpha + beta) transus, achieves rapid precipitate growth in a matrix immune to nodular corrosion. (C) 2000 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:295 / 314
页数:20
相关论文
共 50 条
  • [21] Microstructure of Oxide Film and Nodular Corrosion Mechanism of Zircaloy-4 Alloy
    Li Qiang
    Yang Yanping
    Huang Changjun
    Xu Long
    Liang Xue
    Peng Jianchao
    RARE METAL MATERIALS AND ENGINEERING, 2013, 42 (09) : 1814 - 1819
  • [22] 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):
  • [23] 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 : 254 - 260
  • [24] Effect mechanism of heat treatments on nodular corrosion resistance of Zircaloy-4
    Zhou Bangxin
    Li Qiang
    Yao Meiyi
    Xia Shuang
    Liu Wenqing
    Chu Yuliang
    RARE METAL MATERIALS AND ENGINEERING, 2007, 36 (07) : 1129 - 1134
  • [25] Effect mechanism of heat treatments on nodular corrosion resistance of zircaloy-4
    Zhou, Bangxin
    Li, Qiang
    Yao, Meiyi
    Xia, Shuang
    Liu, Wenqing
    Chu, Yuliang
    Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering, 2007, 36 (07): : 1129 - 1134
  • [26] COMPARISON BETWEEN THE UNIFORM AND NODULAR FORMS OF ZIRCALOY CORROSION IN WATER-REACTORS
    DICKSON, IK
    EVANS, HE
    JONES, KW
    JOURNAL OF NUCLEAR MATERIALS, 1979, 80 (02) : 223 - 231
  • [27] Effect of Surface State on Nodular Corrosion Resistance of Zircaloy-4 Alloy
    Chen, Chuan-Ming
    Zhou, Bang-Xin
    Gou, Shao-Qiu
    Huang, Jiao
    Yao, Mei-Yi
    ACTA METALLURGICA SINICA-ENGLISH LETTERS, 2015, 28 (02) : 254 - 260
  • [28] MICROSTRUCTURAL INFLUENCE ON UNIFORM CORROSION OF ZIRCALOY NUCLEAR-FUEL CLADDINGS
    WADMAN, B
    ANDREN, HO
    NYSTROM, AL
    RUDLING, P
    PETTERSSON, H
    JOURNAL OF NUCLEAR MATERIALS, 1993, 200 (02) : 207 - 217
  • [29] Microstructural and corrosion aspects of alloy 690
    Dutta, RS
    Tewari, R
    BRITISH CORROSION JOURNAL, 1999, 34 (03): : 201 - 205
  • [30] Microstructural aspects of the corrosion of Alloy 800
    Dutta, RS
    Purandare, R
    Lobo, A
    Kulkarni, SK
    Dey, GK
    CORROSION SCIENCE, 2004, 46 (12) : 2937 - 2953