4.7 Article

A recrystallization heat-treatment to reduce deformation anisotropy of additively manufactured Inconel 718

期刊

MATERIALS & DESIGN
卷 198, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.matdes.2020.109228

关键词

Inconel 718; Microstructure; Heat-treatment; Laser powder bed fusion; Split-Hopkinson pressure bar; Compression

资金

  1. Department of Defense Office of Economic Adjustment [ST1605-19-03]
  2. College of Engineering, Health Sciences Center, Office of the Vice President for Research
  3. Utah Science Technology and Research (USTAR) initiative of the State of Utah

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The study aimed to investigate the suitability of a solutionizing recrystallization heat-treatment in improving the yield strength and reducing deformation anisotropy of laser powder-bed fusion Inconel 718. Results showed an increase in grain size, decrease in texture, and formation of nano-precipitates in the RC condition, leading to an increase in yield strength and decrease in deformation anisotropy compared to the AB condition. Overall, the RC heat-treatment showed promising results in transitioning L-PBF parts from research laboratory to commercial implementation.
The aim of the current study is to investigate the suitability of a solutionizing recrystallization (RC) heat-treatment to improve the yield strength of laser powder-bed fusion (L-PBF) Inconel 718 (IN718), while decreasing deformation anisotropy under uniaxial compression. Scanning electron microscopy measurements show an increase in grain size, decrease in texture, and the formation of twins in the RC compared to the as-built (AB) and direct-age (DA) hardened conditions. Transmission electron microscopy measurements of the RC condition revealed the formation of nano-precipitates in the gamma matrix. As a result, the compressive stress-strain behavior showed an increase in the yield strength of the RC specimens compared to the AB condition in the quasi-static and high-strain rate regimes despite having significantly larger grain sizes. Post-mortem in-plane ellipticity measurements show a statistically significant decrease in the deformation anisotropy of the RC specimens compared to the AB and DA conditions. Overall, the solutionizing RC heat-treatment, when compared to the AB condition, resulted in an increase in yield strength and decrease in deformation anisotropy, two desirable outcomes necessary to continue to provide path-ways to transitioning L-PBF parts from the research laboratory setting to commercial implementation. Crown Copyright (C) 2020 Published by Elsevier Ltd.

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