Influence of electrolytic plasma process on corrosion property of peened 304 austenitic stainless steel

被引:14
|
作者
Liang, J. [1 ]
Wang, K. Y. [1 ]
Guo, S. M. [1 ]
Wahab, M. A. [1 ]
机构
[1] Louisiana State Univ, Dept Mech Engn, Baton Rouge, LA 70803 USA
关键词
Electrolytic plasma; Submicro grain; Corrosion; NANOSTRUCTURED SURFACE-LAYER; 304-STAINLESS-STEEL;
D O I
10.1016/j.matlet.2010.10.089
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
An electrolytic plasma process (EPP) was applied onto shot peened surface of 304 stainless steel (SS) and the corrosion behavior were studied with different treatment parameters. The peening process on 304 SS was performed by a ball milling machine. Although the peening process may improve the material strength, due to the refinement of gamma phase and gamma -> martensite (alpha') transformation, the low corrosion resistance of martensite limits the application of the resultant material. In this paper. EPP was applied onto the peened surfaces for a rapid surface annealing. After EPP, the deformation-induced martensite was partially reverted back to austenite phase. X-ray diffraction, hardness, and SEM study were employed to manifest the major transformations. Optimal EPP treatment could achieve both high strength and corrosion resistance on steel surfaces. Published by Elsevier B.V.
引用
收藏
页码:510 / 513
页数:4
相关论文
共 50 条
  • [31] Influence of microstructure and roughness level on corrosion resistance of the austenitic stainless steel welded joint
    Kovacina, Jovanka
    Jegdic, Bore
    Radojkovic, Bojana
    Marunkic, Dunja
    Stevanovic, Sanja
    Simovic, Andela
    MATERIALS AND CORROSION-WERKSTOFFE UND KORROSION, 2021, 72 (07): : 1215 - 1231
  • [32] High temperature corrosion protection of austenitic AISI 304 stainless steel by Si, Mo and Ce ion implantation
    Perez, FJ
    Otero, E
    Hierro, MP
    Gomez, C
    Pedraza, F
    de Segovia, JL
    Roman, E
    SURFACE & COATINGS TECHNOLOGY, 1998, 108 (1-3) : 127 - 131
  • [33] Influence of tensile pre-strain and sensitization on passive films in AISI 304 austenitic stainless steel
    Jin-long, L. V.
    Hong-yun, Luo
    MATERIALS CHEMISTRY AND PHYSICS, 2012, 135 (2-3) : 973 - 978
  • [34] Influence of treating frequency on microstructure and properties of Al2O3 coating on 304 stainless steel by cathodic plasma electrolytic deposition
    Wang, Yunlong
    Jiang, Zhaohua
    Liu, Xinrong
    Yao, Zhongping
    APPLIED SURFACE SCIENCE, 2009, 255 (21) : 8836 - 8840
  • [35] Corrosion behaviour of nanocrystallines 304 stainless steel in simulated secondary side environment
    Liu, Jiang
    Wang, Chunming
    Zhang, Wenlong
    Xia, Tingting
    Zhang, Xuehui
    Liang, Tongxiang
    Ahmad, Tahir
    Yang, Bin
    MATERIALS SCIENCE AND TECHNOLOGY, 2019, 35 (08) : 907 - 915
  • [36] Influence of Surface Treatments on the Pitting Corrosion of Type 304 Stainless Steel by Electrochemical Noise Measurements
    Klapper, H. S.
    Burkert, A.
    Burkert, A.
    Lehmann, J.
    Villalba, A. L.
    CORROSION, 2011, 67 (07)
  • [37] Corrosion behavior of TiN-coated 304 stainless steel
    Chou, WJ
    Yu, GP
    Huang, JH
    CORROSION SCIENCE, 2001, 43 (11) : 2023 - 2035
  • [38] Corrosion Failure of 304 Stainless Steel Hooks in a Brick Kiln
    Liu L.
    Ding N.
    Shi J.
    Xu N.
    Guo W.
    Qu S.
    Wu C.-M.L.
    Journal of Failure Analysis and Prevention, 2018, 18 (2) : 225 - 232
  • [39] ELECTROCHEMICAL ANALYSIS OF 304 STAINLESS STEEL CORROSION IN CHLORINE DIOXIDE
    Wang Shumei
    Dai Hongqi
    Lu Lihua
    RESEARCH PROGRESS IN PAPER INDUSTRY AND BIOREFINERY (4TH ISETPP), VOLS 1-3, 2010, : 1256 - 1259
  • [40] CORROSION BEHAVIOR OF AISI 304 STAINLESS STEEL IN A BIOCIDE WITH FUNGI
    Stoica, Maricica
    Alexe, Petru
    Carac, Geta
    METALURGIA INTERNATIONAL, 2012, 17 (06): : 106 - 109