4.7 Article

316L stainless steel designed to withstand intermediate temperature

Journal

MATERIALS & DESIGN
Volume 135, Issue -, Pages 1-8

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.matdes.2017.08.072

Keywords

Selective laser melting; Thermo-mechanical processing; Mechanical properties; Microstructure evolution

Funding

  1. Carl Tryggers foundation [CTS 16:6]
  2. Swedish Foundation for Strategic Research (SSF) [RIF14-0083]

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Austenitic stainless steel 316L was fabricated for withstanding elevated temperature by selective laser melting (SLM). Tensile tests at 800 degrees C were carried out on laser melted 316L with two different strain rates of 0.05 S-1 and 0.25 S-1. The laser melted 316L showed tensile strength of approximately 400 MPa at 800 degrees C, which was superior to conventional 316L. Analysis of fracture surface showed that the 316L fractured in mixed mode, ductile and brittle fracture, with an elongation of 18% at 800 degrees C. In order to understand the mechanical response, laser melted 316L was thermally treated at 800 degrees C for microstructure and phase stability. X-ray diffraction (XRD) and Electron back scattered diffraction (EBSD) of 316L treated at 800 degrees C disclosed a textured material with single austenitic phase. SEM and EBSD showed that the characteristic and inherent microstructure of laser melted 316L, consisting of elongated grains with high angle grain boundaries containing subgrains with a smaller misorientation, remained similar to as-built SLM 316L during hot tensile test at 800 degrees C. The stable austenite phase and its stable hierarchical microstructure at 800 degrees C led to the superior mechanical response of laser melted 316L. (C) 2017 Elsevier Ltd. All rights reserved.

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