A comparative investigation of long-term oxidation behavior of selective laser melting–fabricated Inconel 718 at 650 °C

The oxidation behavior of the selective laser melting (SLM)–fabricated Inconel 718 was investigated through isothermal oxidation testing at 650 °C for 500 h and compared with that of the as-cast and as-forged specimens at the same testing conditions. The effect of microstructure and surface roughnes...

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Veröffentlicht in:Journal of materials research 2020-08, Vol.35 (15), p.2036-2045
Hauptverfasser: Luo, Yan-Wen, Zhang, Bin, Song, Zhu-Man, Li, Chang-Peng, Chen, Guo-Feng, Zhang, Guang-Ping
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Sprache:eng
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Zusammenfassung:The oxidation behavior of the selective laser melting (SLM)–fabricated Inconel 718 was investigated through isothermal oxidation testing at 650 °C for 500 h and compared with that of the as-cast and as-forged specimens at the same testing conditions. The effect of microstructure and surface roughness on the oxidation behavior of the SLM-fabricated, as-cast, and as-forged Inconel 718 specimens was examined. The result shows that Inconel 718 fabricated by SLM with the unique layer structure exhibited a better resistance to the 500 h oxidation at 650 °C compared with as-cast and as-forged 718 with coarse dendritic structure and uniform equiaxed grain microstructure, respectively. The influence of the surface roughness on the long-time oxidation resistance of SLM specimens is not pronounced compared with that of as-cast and as-forged specimens. The tiny dendrites instead of grain boundaries are a major influencing factor for the oxidation process of SLM specimens. The surface roughness has more evident influence on the oxidation resistance of as-forged specimens than that of the as-cast ones subjected to the 500 h oxidation at 650 °C.
ISSN:0884-2914
2044-5326
DOI:10.1557/jmr.2020.98