Production of powders for metal additive manufacturing applications using surface grinding

被引:6
|
作者
Dhami, Harish Singh [1 ]
Panda, Priti Ranjan [1 ]
Viswanathan, Koushik [1 ]
机构
[1] Indian Inst Sci, Dept Mech Engn, Bangalore, Karnataka, India
关键词
Additive manufacturing; Metal powders; Directed energy deposition; Powder manufacturing; SPHERICAL-PARTICLES; MICROSTRUCTURE; STEEL;
D O I
10.1016/j.mfglet.2022.02.004
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Metal powders for additive manufacturing (AM) applications are commonly produced using atomization techniques, which are known to be expensive, capital intensive and highly inflexible. In this work, we explore an alternative route for producing metal powders by the use of surface grinding. We demonstrate the production of nearly monodisperse AISI 52100 steel powders for AM applications. The formation of these powder particles is analyzed using material characterization techniques. We then evaluate the usability of the produced powders for metal AM using a custom-built directed energy deposition setup. Post-process analysis of laser-assisted deposition tracks shows that our powders perform just as well as conventional gas-atomized powders, resulting in void and inclusion-free metallurgical bonding. (c) 2022 Society of Manufacturing Engineers (SME). Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:54 / 58
页数:5
相关论文
共 50 条
  • [21] Solid-state production of uniform metal powders for additive manufacturing by ultrasonic vibration machining
    Wang, Yaoke
    Landis, Malachi
    Ekaputra, Clement
    Vita, Valeria
    Guo, Ping
    ADDITIVE MANUFACTURING, 2024, 81
  • [22] A method to assess the quality of additive manufacturing metal powders using the triboelectric charging concept
    Galindo, E.
    Espiritu, E. R. L.
    Gutierrez, C.
    Alagha, Ali N.
    Hudon, P.
    Brochu, M.
    SCIENTIFIC REPORTS, 2024, 14 (01):
  • [23] Thermal conductivity of metal powders for powder bed additive manufacturing
    Wei, Lien Chin
    Ehrlich, Lili E.
    Powell-Palm, Matthew J.
    Montgomery, Colt
    Beuth, Jack
    Malen, Jonathan A.
    ADDITIVE MANUFACTURING, 2018, 21 : 201 - 208
  • [25] Additive Manufacturing for Metal Applications in Orthopaedic Surgery
    Katsuura, Yoshihiro
    Qureshi, Sheeraz A.
    JOURNAL OF THE AMERICAN ACADEMY OF ORTHOPAEDIC SURGEONS, 2020, 28 (08) : E349 - E355
  • [26] Metal additive manufacturing for particle accelerator applications
    Romano, Tobia
    Pikurs, Guntis
    Ratkus, Andris
    Torims, Toms
    Delerue, Nicolas
    Vretenar, Maurizio
    Stepien, Lukas
    Lopez, Elena
    Vedani, Maurizio
    PHYSICAL REVIEW ACCELERATORS AND BEAMS, 2024, 27 (05)
  • [27] Metal Additive Manufacturing: Design, Performance, and Applications
    Kladovasilakis, Nikolaos
    Tsongas, Konstantinos
    Tzetzis, Dimitrios
    MATERIALS, 2025, 18 (03)
  • [28] Metal additive manufacturing as industrial production process
    Lamikiz-Mentxaka, Aitzol
    Ukar-Arrien, Eneko
    DYNA, 2020, 95 (04): : 343 - 344
  • [29] Developing Applications for Additive Manufacturing Series Production
    Bindl, Stefan
    Csiky-Strauss, Clemens
    2017 IEEE EUROPEAN TECHNOLOGY AND ENGINEERING MANAGEMENT SUMMIT (E-TEMS), 2017, : 49 - 55
  • [30] Using recycled material to produce gas-atomized metal powders for additive manufacturing processes
    Cacace, S.
    Furlan, V.
    Sorci, R.
    Semeraro, Q.
    Boccadoro, M.
    JOURNAL OF CLEANER PRODUCTION, 2020, 268