مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

video

مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

sound

مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

Persian Version

مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

View:

41
مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

Download:

22
مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

Cites:

Information Journal Paper

Title

On the Substructure Development and Continuous Recrystallization in the Course of Selective Laser Melting of 316L Stainless Steel

Pages

  61-69

Keywords

Selective laser melting (SLM) 

Abstract

 In the present work, the selective laser melting (SLM) has been chosen as a controlled thermomechanical processing route in which the required temperature and strain for the occurrence of dynamic Recrystallization is provided. The 316L Stainless steel as representative material was constructed by SLM under specified parameters (laser power, layer thickness, hatch spacing, scan strategy, and scan speed). The printed material’, s microstructure was carefully analyzed through electron back scattered diffraction. The presence of considerable fine grains (< 20 μ, m) through the printed microstructure was considered as evidence for the occurrence of dynamic Recrystallization during the manufacturing process. The high fraction of sub-boundaries (~79. 7%) and sub-grains indicated the capability of the material for substructure development in the course of additive manufacturing process, and the fact that the new fine grains were formed through continuous dynamic Recrystallization mechanism. The creation of plastic strains through the parts structure during SLM, which was required for dynamic Recrystallization, was discussed relying on the expansion and contraction of the layers during repeated heating and cooling cycles. The amount of plastic microstrain was estimated to be around ~0. 56 considering the layer thickness and depth of the melt pool. The hot compression tests were conducted at 1000℃,and various strain rates of 0. 001, 0. 01 and 0. 1 s-1 and the corresponding critical strains of dynamic Recrystallization (~0. 2) were calculated, which was well lower than those created during additive manufacturing process.

Multimedia

  • No record.
  • Cites

  • No record.
  • References

  • No record.
  • Cite

    APA: Copy

    ABBASI, Z., & ABEDI, H.R.. (2023). On the Substructure Development and Continuous Recrystallization in the Course of Selective Laser Melting of 316L Stainless Steel. IRANIAN JOURNAL OF MATERIALS FORMING, 10(1), 61-69. SID. https://sid.ir/paper/1054293/en

    Vancouver: Copy

    ABBASI Z., ABEDI H.R.. On the Substructure Development and Continuous Recrystallization in the Course of Selective Laser Melting of 316L Stainless Steel. IRANIAN JOURNAL OF MATERIALS FORMING[Internet]. 2023;10(1):61-69. Available from: https://sid.ir/paper/1054293/en

    IEEE: Copy

    Z. ABBASI, and H.R. ABEDI, “On the Substructure Development and Continuous Recrystallization in the Course of Selective Laser Melting of 316L Stainless Steel,” IRANIAN JOURNAL OF MATERIALS FORMING, vol. 10, no. 1, pp. 61–69, 2023, [Online]. Available: https://sid.ir/paper/1054293/en

    Related Journal Papers

  • No record.
  • Related Seminar Papers

  • No record.
  • Related Plans

  • No record.
  • Recommended Workshops






    Move to top
    telegram sharing button
    whatsapp sharing button
    linkedin sharing button
    twitter sharing button
    email sharing button
    email sharing button
    email sharing button
    sharethis sharing button