Using kinetics to avoid sigma phase formation on hyper duplex stainless weld cladding

被引:6
|
作者
Acuna, Andres [1 ]
Ramirez, Antonio [1 ,3 ]
Riffel, Kaue Correa [1 ,2 ]
机构
[1] Ohio State Univ Columbus, Dept Mat Sci & Engn, Columbus, OH USA
[2] Univ Fed Santa Catarina Florianopolis, Dept Mech Engn, Florianopolis, Brazil
[3] Ohio State Univ, Dept Mat Sci & Engn, 1248 Arthur E Adams Dr, Columbus, OH 43221 USA
基金
美国国家科学基金会;
关键词
Weld-overlay; GTAW; weld cladding; precipitation; intermetallic phases; filler metal; MECHANICAL-PROPERTIES; SECONDARY AUSTENITE; INTERGRANULAR CORROSION; DELETERIOUS PHASES; PITTING CORROSION; CHROMIUM NITRIDE; PRECIPITATION; TRANSFORMATION; STEELS; SUPER;
D O I
10.1080/13621718.2023.2246719
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The Hyper Duplex Stainless Steel HDSS enhanced corrosion resistance and toughness relies upon high alloying to obtain a balanced ferrite and austenite volume and pitting resistance equivalent number PREn. However, during welding, sigma phase precipitates might form, hindering corrosion and mechanical performance. Therefore, a kinetics model is developed to avoid the sigma phase's formation during welding and validated using physical simulation, finite element analysis (FEA), welding, and SEM characterisation. The sigma phase kinetics model produced calculated and validated temperature-time-transformation (TTT) and continuous-cooling-transformation (CCT) curves from which a 4 & DEG;C/s cooling rate was found as a cooling rate threshold for sigma phase formation in this new material. Three-layered gas tungsten arc welding GTAW cladded mockup with 53 beads produced 24 & DEG;C/s minimum cooling rate. Moreover, microscopy, mechanical, and corrosion testing attested it as a sigma-free weld.
引用
收藏
页码:885 / 893
页数:9
相关论文
共 50 条
  • [41] Prediction of austenite phase fraction in duplex stainless steel weld metals
    Yasuda, Koichi
    Gunn, Robert N.
    Gooch, Trevor G.
    Yosetsu Gakkai Ronbunshu/Quarterly Journal of the Japan Welding Society, 2002, 20 (01): : 68 - 77
  • [42] Effects of alloying elements on c-curve of sigma phase precipitation in duplex stainless steel: (Effects of alloying elements on sigma phase precipitation in duplex stainless steel)
    Ogawa, Kazuhiro
    Osuki, Takahiro
    Yosetsu Gakkai Ronbunshu/Quarterly Journal of the Japan Welding Society, 2015, 33 (01): : 62 - 68
  • [43] Magnetic and Thermoelectric Detection of Sigma Phase in 2507 Duplex Stainless Steel
    Meszaros, Istvan
    Bogre, Balint
    Szabo, Peter Janos
    CRYSTALS, 2022, 12 (04)
  • [44] Sigma phase morphologies in cast and aged super duplex stainless steel
    Martins, Marcelo
    Casteletti, Luiz Carlos
    MATERIALS CHARACTERIZATION, 2009, 60 (08) : 792 - 795
  • [45] Effects of sigma phase precipitation on seawater pitting of duplex stainless steel
    Ezuber, Hosni M.
    El-Houd, A.
    El-Shawesh, F.
    DESALINATION, 2007, 207 (1-3) : 268 - 275
  • [46] Sigma phase detection in duplex stainless steel by induced magnetic field
    Silva, E. M.
    Fialho, W. M. L.
    Silva, H. F. B. M.
    Leite, J. P.
    Leite, J. P.
    Oliveira, A. V. G.
    8TH BRAZILIAN CONGRESS ON METROLOGY (METROLOGIA 2015), 2016, 733
  • [47] Prediction of sigma phase precipitation in super duplex stainless steel weldments
    Nishimoto K.
    Saida K.
    Katsuyama O.
    Welding in the World, 2006, 50 (3-4) : 13 - 28
  • [48] Effect of sigma phase on the wear behavior of a super duplex stainless steel
    Fargas, G.
    Mestra, A.
    Mateo, A.
    WEAR, 2013, 303 (1-2) : 584 - 590
  • [49] Sigma phase precipitation during superplastic forming of duplex stainless steel
    Patankar, SN
    Tan, MJ
    MATERIALS AT HIGH TEMPERATURES, 2002, 19 (01) : 41 - 44
  • [50] Influence of the Heterogeneous Nucleation Sites on the Kinetics of Intermetallic Phase Formation in Aged Duplex Stainless Steel
    Elis Almeida Melo
    Rodrigo Magnabosco
    Metallurgical and Materials Transactions A, 2017, 48 : 5273 - 5284