Heat treatment effect on the microstructure, mechanical properties, and wear behaviors of stainless steel 316L prepared via selective laser melting

Won Sang Shin, Bongkuk Son, Wansu Song, Hyonkee Sohn, Ho Jang, Yoon Jun Kim, Changkyoo Park

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    133 Citations (Scopus)

    Abstract

    The influence of heat treatment on the microstructure, mechanical properties, and wear behaviors of stainless steel 316L (SS316L) produced via selective laser melting (SLM) was investigated. The fabricated SLM samples were subjected to two different heat treatments: a typical furnace-type heat treatment conducted at 1100 °C for 0.5 h and hot isostatic pressing performed at 1100 °C and 100 MPa for 1.5 h. High-density SLM samples with low porosities were obtained by increasing the laser power and decreasing the scan speed. The heat treatments of the fabricated SLM samples induced the removal of porosity, cellular microstructure, and dense dislocation structures with a slight increase in grain size. In terms of mechanical properties, the fabricated SLM samples exhibited similar hardness and tensile strength properties to those of the conventional SS316L, while a significantly lower elongation was evident. The heat treatments of the fabricated SLM samples improved elongation, while the surface hardness and tensile strength decreased owing to microstructural evolution. During the pin-on-disk test, the conventional SS316L and fabricated SLM sample exhibited similar wear resistance values, which decreased after the heat treatments of the fabricated SLM samples owing to the heat treatment-induced surface softening.

    Original languageEnglish
    Article number140805
    JournalMaterials Science and Engineering A
    Volume806
    DOIs
    Publication statusPublished - 2021 Mar 4

    Bibliographical note

    Funding Information:
    This research was supported by the Technology Transfer and Commercialization Program through the INNOPOLIS Foundation funded by the Ministry of Science and ICT (Grant number: 2020-DG-RD-0061 , Korea) and by the National Research Council of Science and Technology (Project number: NK232A , 2021, Korea).

    Funding Information:
    This research was supported by the Technology Transfer and Commercialization Program through the INNOPOLIS Foundation funded by the Ministry of Science and ICT (Grant number: 2020-DG-RD-0061, Korea) and by the National Research Council of Science and Technology (Project number: NK232A, 2021, Korea).

    Publisher Copyright:
    © 2021 Elsevier B.V.

    Keywords

    • Heat treatment
    • Mechanical properties
    • Microstructural evolution
    • Selective laser melting
    • Stainless steel 316L
    • Wear behavior

    ASJC Scopus subject areas

    • General Materials Science
    • Condensed Matter Physics
    • Mechanics of Materials
    • Mechanical Engineering

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