Precipitation formation on Σ5 and Σ7 grain boundaries in 316L stainless steel and their roles on intergranular corrosion

被引:40
|
作者
Tsai, Shao-Pu [1 ]
Makineni, Surendra Kumar [1 ,4 ]
Gault, Baptiste [1 ,2 ]
Kawano-Miyata, Kaori [3 ]
Taniyama, Akira [3 ]
Zaefferer, Stefan [1 ]
机构
[1] Max Planck Inst Eisenforsch GmbH, Max Planck Str 1, D-40237 Dusseldorf, Germany
[2] Imperial Coll London, Royal Sch Mines, Dept Mat, London SW7 2AZ, England
[3] Nippon Steel Corp Ltd, Res & Dev, 1-8 Fuso Cho, Amagasaki, Hyogo 6600891, Japan
[4] Indian Inst Sci, Dept Mat Engn, Bangalore 560012, Karnataka, India
关键词
Stainless steel; Coincidence site lattice (CSL); Faceting; GB energy anisotropy; CARBIDE PRECIPITATION; CHARACTER-DISTRIBUTION; CHROMIUM DEPLETION; M23C6; CARBIDE; LAVES PHASE; BEHAVIOR; SEGREGATION; SERRATION; ENERGIES; SENSITIZATION;
D O I
10.1016/j.actamat.2021.116822
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In sensitized (700 degrees C for 10 h) AISI 316L stainless steel samples attacked by an HF solution, coincidence site lattice (CSL) Sigma 7 grain boundaries (GBs) always show corrosion while Sigma 5 GBs never do. This distinct corrosion behaviour can be related to the distinct precipitation behaviour of the different GBs, which itself depends on the GB characters. It is found that Sigma 5 GBs, although being curved both macro- and microscopically, neither show facets nor precipitates. The amount of segregation is enhanced in sensitized Sigma 5 GBs compared to solution-annealed ones. In contrast, Sigma 7 GBs show clear faceting in both the solution-annealed and sensitized state, with one facet orientation showing strong segregation while the other not. GB energy anisotropy is applied to explain the faceting phenomenon. The formation of two kinds of precipitates, i.e., C14 Laves phase and M23C6 carbide, holding responsible for two distinct morphologies of corrosion, are believed to be both linked to intensive faceting and the anisotropic segregation of Sigma 7 GBs. For the carbide, a preferred {111} orientation out of all Sigma 7 facets measured by trace analyses is presumed to facilitate its nucleation. (C) 2021 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] TEXTURE, MICROHARDNESS AND CORROSION RESISTANCE OF 316L STAINLESS STEEL
    Bakhtiari, A.
    Berenjani, I.
    METALLURGICAL & MATERIALS ENGINEERING, 2015, 21 (01) : 1 - 5
  • [32] Electrodeposition of polypyrrole on 316L stainless steel for corrosion prevention
    Gonzalez, M. B.
    Saidman, S. B.
    CORROSION SCIENCE, 2011, 53 (01) : 276 - 282
  • [33] Corrosion behaviour of 316L stainless steel in PTA slurry
    Ju, P. F.
    Zuo, Y.
    Tang, J. L.
    Tang, Y. M.
    CORROSION ENGINEERING SCIENCE AND TECHNOLOGY, 2013, 48 (03) : 207 - 210
  • [34] Microstructure and corrosion resistance of a type 316L stainless steel
    Shieu, FS
    Deng, MJ
    Lin, SH
    CORROSION SCIENCE, 1998, 40 (08) : 1267 - 1279
  • [35] Influence of macrophage cells on 316L stainless steel corrosion
    Parker, SH
    Lin, HY
    Zardiackas, LD
    Bumgardner, JD
    STAINLESS STEELS FOR MEDICAL AND SURGICAL APPLICATIONS, 2003, 1438 : 137 - 153
  • [36] Effects of simulated inflammation on the corrosion of 316L stainless steel
    Brooks, Emily K.
    Brooks, Richard P.
    Ehrensberger, Mark T.
    MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2017, 71 : 200 - 205
  • [37] Crystallographic effects in corrosion of austenitic stainless steel 316L
    Lindell, D.
    Pettersson, R.
    MATERIALS AND CORROSION-WERKSTOFFE UND KORROSION, 2015, 66 (08): : 727 - 732
  • [38] Corrosion Resistance of Welds in Type 316L Stainless Steel
    Esmailian, Mohammad
    MATERIALS PERFORMANCE, 2017, 56 (03) : 58 - 61
  • [39] Corrosion performance of the plasma nitrided 316L stainless steel
    Gil, Linda
    Bruhl, Sonia
    Jimenez, Lorena
    Leon, Ovidio
    Guevara, Rafael
    Staia, Maniana H.
    SURFACE & COATINGS TECHNOLOGY, 2006, 201 (07): : 4424 - 4429
  • [40] Failure Analysis of End Grain Attack and Pit Corrosion in 316L Stainless Steel Pipe
    Baek, Un Bong
    Choe, Byung Hak
    Lee, Jin Hee
    Shim, Jong Hun
    Kim, Eui Soo
    Nam, Sung Hoon
    KOREAN JOURNAL OF METALS AND MATERIALS, 2015, 53 (01): : 20 - 27