283
Views
1
CrossRef citations to date
0
Altmetric
Research Articles

Study of microstructure and mechanical properties of 17-4 PH stainless steel produced via Binder Jetting

, , , , &
Pages 377-386 | Received 31 Jan 2023, Accepted 11 Apr 2023, Published online: 20 Apr 2023

References

  • Yeli G, Auger MA, Wilford K, et al. Sequential nucleation of phases in a 17-4PH steel: microstructural characterisation and mechanical properties. Acta Mater. 2017;125:38–49.
  • Hsiao CN, Chiou CS, Yang JR. Aging reactions in a 17-4 PH stainless steel. Mater Chem Phys. 2002;74(2):134–142.
  • Kwon Y-S, Wu Y, Suri P, et al. Simulation of the sintering densification and shrinkage behavior of powder-injection-molded 17-4 PH stainless steel. Metall Mater Trans A. 2004;35:257–263.
  • 2002 Wu _ Effects of residual carbon content on sintering shrinkage microstructure and mechanical properties of injection molded 174PH stainless steel.
  • 2013 Gulsoy _ Microstructural and mechanical properties of injection moulded gas and water atomised 174PH stainless steel powder.
  • Murr LE, Martinez E, Hernandez J, et al. Microstructures and properties of 17-4 PH stainless steel fabricated by selective laser melting. J Mater Res Technol. 2012;1(3):167–177.
  • Irrinki H, Jangam JSD, Pasebani S, et al. Effects of particle characteristics on the microstructure and mechanical properties of 17-4 PH stainless steel fabricated by laser-powder bed fusion. Powder Technol. 2018;331:192–203.
  • Rafi HK, Pal D, Patil N, et al. Microstructure and mechanical behavior of 17-4 precipitation hardenable steel processed by selective laser melting. J Mater Eng Perform. 2014;23:4421–4428.
  • Fayazfar a H, Salarian a M, Rogalsky a A, et al. A critical review of powder-based additive manufacturing of ferrous alloys: process parameters, microstructure and mechanical properties. Mater Des. 2018;144:98–128.
  • Ziaeea M, Crane NB. Binder jetting: a review of process, materials, and methods. Addit Manuf. 2019;28:781–801.
  • Mostafaei A, Elliott AM, Barnes JE, et al. Binder jet 3D printing – process parameters, materials, properties, modeling, and challenges. Prog Mater Sci. 2021;119:100707.
  • Do T, Kwon P, Shin CS. Process development toward full-density stainless steel parts with binder jetting printing. Int J Mach Tools Manuf. 2017;121:50–60.
  • Miyanaji H, Momenzadeh N, Yang L. Effect of powder characteristics on parts fabricated via binder jetting process. Rapid Prototyp J. 2019;25(2):332–342.
  • Lecis N, Mariani M, Beltrami R, et al. Effects of process parameters, debinding and sintering on the microstructure of 316L stainless steel produced by binder jetting. Mater Sci Eng: A. 2021;828:142108.
  • Rios AC, Hryha E, Olevsky E, et al. Sintering anisotropy of binder jetted 316L stainless steel: part 1 – sintering anisotropy. Powder Metall. 2022;65(4):273–282.
  • Rios AC, Hryha E, Olevsky E, et al. Sintering anisotropy of binder jetted 316L stainless steel: part 2 – microstructure evolution during sintering. Powder Metall. 2022;65(4):283–295.
  • Mirzababaei S, Pasebani S. A review on binder jet additive manufacturing of 316L stainless steel. J Manuf Mater Process. 2019;3(82):1–36.
  • Zago M, Lecis NFM, Vedani M, et al. Dimensional and geometrical precision of parts produced by Binder Jetting process as affected by the anisotropic shrinkage on sintering. Addit Manuf. 2021;43:102007.
  • Zago M, Lecis N, Mariani M, et al. Analysis of the flatness form error in Binder Jetting process as affected by the inclination angle. Metals (Basel). 2022;12:430.
  • Dahmen T, Klingaaa CG, Baier-Stegmaierb S, et al. Characterization of channels made by laser powder bed fusion and binder jetting using X-ray CT and image analysis. Addit Manuf. 2020;36:101445.
  • Huber D, Vogel L, Fisher A. The effects of sintering temperature and hold time on densification, mechanical properties and microstructural characteristics of binder jet 3D printed 17-4 PH stainless steel. Addit Manuf. 2021;46:102114.
  • Huber D, Stich P, Fisher A. Heat treatment of 17-4 PH stainless steel produced by Binder Jet Additive Manufacturing (BJAM) from N2 atomized powder. Prog Addit Manuf. 2022;7:187–199.
  • Shirooyeh M, Torabi P, Petros M. High performance 3D printed stainless steel: a metallurgical perspective on 3DEO’s intelligent layering, Advances in Additive Manufacturing with Powder Metallurgy, (2019), ed. MPIF, Princeton (NJ), pp. 657–666.
  • Lores A, Azurmendi N, Agote I, et al. A step towards a robust binder jetting technology: process parameter optimization for 17-4 PH steel to increase powder bed homogeneity, Proceedings EUROPM2020 Congress and Exhibition, virtual Congress, 5-7 October 2020, ed. EPMA, Chantilly (F), Session 13: Metal Binder Jetting.
  • Tillmann W, Dias NFL, Stangier D, et al. Heat treatment of binder jet printed 17-4 PH stainless steel for subsequent deposition of tribo-functional diamond-like carbon coatings. Mater Des. 2022;213:110304.
  • Zago M, Lecis NFM, Vedani M, et al. Geometrical issues in design for binder jetting – the effect of anisotropic dimensional change on sintering. Lect Notes Mech Eng. 2022: 410–421.
  • Wu Y, et al. Effects of residual carbon content on sintering shrinkage, microstructure and mechanical properties of injection molded 17-4 PH stainless steel. J Mater Sci. 2002;37:3573–3583.
  • Muterlle PV, Zendron M, Perina M, et al. Influence of carbon content on microstructure and mechanical properties of the 17-4 PH stainless steel produced by MIM. Powder Inject Mold Int. 2008;2(4):66.
  • Metals handbook vol.1 properties and selection: iron, steels and high performance alloys, ed. ASM International, 10th edition, 1990, p. 2072.
  • German RM. MIM 17-4 PH stainless steel processing, properties and best practice. PIM Int. 2018;12(2):49–76.
  • Reed Hill RE. Physical metallurgy principles, 2nd ed. New York: Van Nostrand Reinhold; 1973.
  • Chang C-W, Chen P-H, Hwang K-S. Enhanced mechanical properties of injection molded 17-4PH stainless steel through reduction of silica particles by graphite additions. Mater Trans A. 2019;51:2243–2250.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.