Elaboration of oxide dispersion strengthened Fe-14Cr stainless steel by selective laser melting

被引:43
|
作者
Vasquez, Elodie [1 ]
Giroux, Pierre-Francois [1 ]
Lomello, Fernando [2 ]
Chniouel, Aziz [2 ]
Maskrot, Hicham [2 ]
Schuster, Frederic [3 ]
Castany, Philippe [4 ]
机构
[1] Univ Paris Saclay, CEA, Serv Rech Met Appl, DEN, F-91191 Gif Sur Yvette, France
[2] Univ Paris Saclay, CEA, Serv Etud Analyt & Reactiv Surfaces, DEN, F-91191 Gif Sur Yvette, France
[3] CEA, Cross Cutting Program Mat & Proc Skills, F-91191 Gif Sur Yvette, France
[4] Univ Rennes, INSA Rennes, CNRS, ISCR,UMR 6226, F-35000 Rennes, France
关键词
Selective laser melting (SLM); Oxide dispersion strengthened (ODS) steel; Microstructure; Transmission electron microscopy; Nanoparticles; MECHANICAL-PROPERTIES; DEFORMATION MECHANISMS; CHEMICAL-COMPOSITION; TENSILE PROPERTIES; MATRIX COMPOSITES; MICROSTRUCTURE; PARTICLES; PARAMETERS; DEPOSITION; EVOLUTION;
D O I
10.1016/j.jmatprotec.2018.12.034
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study presents the influence of the main selective laser melting (SLM) processing parameters on the densification behavior and microstructure evolution of oxide dispersion strengthened (ODS) Fe-14Cr stainless steel. Optimization of the process parameters allows to manufacture ODS stainless steel parts, which present high densities up to 98% and a fine dispersion of nanosized Y-Ti rich oxide particles. Laser power and scan speed are found to strongly influence the density and the microstructure of SLM builds. The ratio power over scan speed controls the width and the depth of the molten pool. Low energy densities (i.e. a low laser power or a high scan speed), inferior to 100 J mm(-3), cause lack of fusion of the powder and induce the presence of numerous pores. Finer microstructure can be achieved in this condition since grains receive less energy to growth. The hatch distance does not affect the density in the range of testing values. A decrease in hatch distance causes re-fusion of previous neighbor track but does not re-melt the previous layer since the ratio power over speed is kept constant when varying the hatch distance. A slight coarsening of the microstructure is observed in this case. A large range of hatch distance can be used and especially large values, which decrease the time of production. This study can be a guideline to achieve materials with specific microstructure for high temperature applications.
引用
收藏
页码:403 / 413
页数:11
相关论文
共 50 条
  • [31] Oxide dispersion strengthened Fe-12Cr steel in three dimensions: An electron tomography study
    de Castro, V.
    Rodrigo, P.
    Marquis, E. A.
    Lozano-Perez, S.
    JOURNAL OF NUCLEAR MATERIALS, 2014, 444 (1-3) : 416 - 420
  • [32] Creep deformation behavior of nano oxide dispersion strengthened Fe-18Cr ferritic steel
    Jarugula, Rajesh
    Babu, P. Suresh
    Raman, S. Ganesh Sundara
    Sundararajan, G.
    MATERIALIA, 2020, 12
  • [33] Corrosion behavior of ceramic dispersion strengthened high-Cr stainless steel
    Lee, Gyoung-Ja
    Lee, Sang-Hoon
    Hong, Sung-Mo
    Han, Byung-Sun
    Park, Jin-Ju
    Lee, Min-Ku
    Rhee, Chang-Kyu
    NANOCOMPOSITES AND NANOPOROUS MATERIALS VIII, 2008, 135 : 127 - 130
  • [34] Amorphous alloy strengthened stainless steel manufactured by selective laser melting: Enhanced strength and improved corrosion resistance
    Zhang, Yuanjie
    Zhang, Jinliang
    Yan, Qian
    Zhang, Lei
    Wang, Min
    Song, Bo
    Shi, Yusheng
    SCRIPTA MATERIALIA, 2018, 148 : 20 - 23
  • [35] Microstructure characterization and strengthening mechanisms of oxide dispersion strengthened (ODS) Fe-9% Cr and Fe-14% Cr extruded bars
    Chauhan, A.
    Bergner, F.
    Etienne, A.
    Aktaa, J.
    de Carlan, Y.
    Heintze, C.
    Litvinov, D.
    Hernandez-Mayoral, M.
    Onorbe, E.
    Radiguet, B.
    Ulbricht, A.
    JOURNAL OF NUCLEAR MATERIALS, 2017, 495 : 6 - 19
  • [36] Process optimization and mechanical properties of oxide dispersion strengthened nickel-based superalloy by selective laser melting
    Wang, Guowei
    Huang, Lan
    Liu, Zecheng
    Qin, Zijun
    He, Wuqiang
    Liu, Feng
    Chen, Chao
    Nie, Yan
    MATERIALS & DESIGN, 2020, 188
  • [37] Small punch creep investigation of Eurofer97 and 14Cr oxide dispersion strengthened steel
    Richardson, M.
    Gorley, M.
    Wang, Y.
    Andres, D.
    Dawson, H.
    NUCLEAR MATERIALS AND ENERGY, 2021, 29
  • [38] Selective Laser Melting of Duplex Stainless Steel Powders: An Investigation
    Davidson, Karl
    Singamneni, Sarat
    MATERIALS AND MANUFACTURING PROCESSES, 2016, 31 (12) : 1543 - 1555
  • [39] PREPARATION OF STAINLESS STEEL/TiC COMPOSITE BY SELECTIVE LASER MELTING
    Biedunkiewicz, Anna
    Biedunkiewicz, Witold
    Figiel, Pawel
    Grzesiak, Dariusz
    CHEMICKE LISTY, 2011, 105 : S773 - S774
  • [40] Manufacture of stainless steel parts by selective laser melting process
    Jandin, G
    Bertin, JM
    Dembinski, L
    Coddet, C
    VIRTUAL MODELING AND RAPID MANUFACTURING: ADVANCED RESEARCH IN VIRTUAL AND RAPID PROTOTYPING, 2005, : 431 - 434