Improved Corrosion Resistance in AZ61 Magnesium Alloys Induced by Impurity Reduction

被引:19
|
作者
Dai, Yan [1 ]
Chen, Xian-Hua [1 ,2 ]
Yan, Tao [1 ]
Tang, Ai-Tao [1 ,2 ]
Zhao, Di [1 ]
Luo, Zhu [1 ]
Liu, Chun-Quan [1 ]
Cheng, Ren-Ju [2 ]
Pan, Fu-Sheng [1 ,2 ]
机构
[1] Chongqing Univ, Coll Materials Sci, Engn, Chongqing, Peoples R China
[2] Chongqing Acad Sci, Technol, Chongqing, Peoples R China
基金
中国国家自然科学基金;
关键词
AZ61 magnesium alloy; Impurity Fe; Corrosion rate; CALCULATED PHASE-DIAGRAMS; HIGH-PURITY MG; ELECTROCHEMICAL-BEHAVIOR; MECHANICAL-PROPERTIES; PURE MAGNESIUM; CHLORIDE; FE; MICROSTRUCTURE; AZ91D; OXIDE;
D O I
10.1007/s40195-019-00914-2
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
The effect of impurity element Fe on corrosion behavior of AZ61 magnesium alloys in various states has been investigated by immersion test and hydrogen evolution measurements in 3.5% sodium chloride solution. The corrosion rate is found to relay on the impurity Fe concentration in the alloys and decreases with decreasing Fe content. When Fe content drops from 150 ppm to 10 ppm, the corresponding corrosion rates under as-cast and solution treatment conditions are reduced from 8.54 mm/a and 8.61 mm/a to 2.54 mm/a and 0.21 mm/a, respectively. The corrosion pattern of the AZ61 alloys is the localized corrosion, and the galvanic couples are formed among the impurity particles, second-phase particles and the matrix. The Fe impurity particles tend to act as main cathodic to form micro-galvanic cell with the alpha-Mg matrix, which is harmful for corrosion resistance of AZ61 alloy.
引用
收藏
页码:225 / 232
页数:8
相关论文
共 50 条
  • [41] The Influence of Aluminum Content of AZ61 and AZ80 Magnesium Alloys on Hot Cracking
    Huang, C. J.
    Cheng, C. M.
    Chou, C. P.
    MATERIALS AND MANUFACTURING PROCESSES, 2011, 26 (09) : 1179 - 1187
  • [42] Distribution of solute elements in AZ61 magnesium alloys under electromagnetic fields
    Li, Ying-Hong
    Xu, Guang-Ming
    Zheng, Ha-Wei
    Cui, Han-Zhong
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2007, 457 (1-2): : 58 - 62
  • [43] Fabrication Optimization of Magnesium Az61 Alloys Via Extrusion for High Productivity
    Park, Joon Sik
    Kim, Jeong Min
    Song, Young Ho
    Hong, Byung Hwan
    Cho, Ye Won
    Joo, Sangwook
    Oh, Joong Seok
    APPLIED MATERIALS AND ELECTRONICS ENGINEERING, PTS 1-2, 2012, 378-379 : 727 - +
  • [44] Effect of Y and Ca addition on the creep behaviors of AZ61 magnesium alloys
    Jun, Chen
    Qing, Zhang
    Quan-an, L. I.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2016, 686 : 375 - 383
  • [45] The effect of low temperature heat treatment on surface chemistry and corrosion resistance of commercial magnesium alloys AZ31 and AZ61 in 0.6 M NaCl solution
    Feliu, Sebastian, Jr.
    Samaniego, Alejandro
    Barranco, Violeta
    El-Hadad, A. A.
    Llorente, Irene
    Adeva, P.
    CORROSION SCIENCE, 2014, 80 : 461 - 472
  • [46] IMPROVING THE CORROSION RESISTANCE OF THE AZ61 MAGNESIUM ALLOY WITH A HOMOGENIZATION TREATMENT BEFORE THE EXTRUSION-SHEAR PROCESS
    Zhi Yan
    Hong Xing
    Hu Hongjun
    Zhang Dingfei
    Ou Zhongwen
    Gou Yinning
    Chai Linjiang
    MATERIALI IN TEHNOLOGIJE, 2018, 52 (06): : 803 - 808
  • [47] Mechanical properties and wear-corrosion resistance of a new compound extrusion process for magnesium alloy AZ61
    Liu, Jiehui
    Hu, Hongjun
    Liu, Yang
    Zhang, Dingfei
    Ou, Zhongwen
    Zhi, Yan
    MATERIALS TESTING, 2020, 62 (04) : 395 - 399
  • [48] Effects of strain rate and humidity on tensile properties of AZ31 and AZ61 magnesium alloys
    Manaka T.
    Keikinzoku/Journal of Japan Institute of Light Metals, 2024, 74 (02): : 117 - 124
  • [49] Effect of Calcium Content on Corrosion Resistance of AZ61-1.2Y Magnesium Alloys
    Li Xiaofeng
    Li Quan'an
    Chen Jun
    Zhang Qing
    Zhang Xingyuan
    RARE METAL MATERIALS AND ENGINEERING, 2011, 40 (08) : 1466 - 1469
  • [50] Effect of microstructure on corrosion resistance and heat resistance of flame-resistant Ca-added magnesium alloy AZ61
    Serizawa A.
    Iwase Y.
    Sudare T.
    Saito N.
    Kamiyama N.
    Ishizaki T.
    1600, Japan Institute of Light Metals (66): : 9 - 14