Influence of thermomechanical postprocessing on creep behavior of Inconel 718 superalloy prepared by additive manufacturing

Abstract Additive manufacturing represents a promising alternative to the conventional technologies used for the production of metallic materials. However, in contrast to the conventional approaches, materials produced using additive manufacturing typically feature certain disadvantages. One possibility to reduce their negative effects is to subject the additively manufactured materials to post processing via intensive plastic deformation. The present work primarily studies the creep behavior of Inconel 718, a nickel-based superalloy with a wide applicability in challenging industries, at four different initial material states (additive and conventional manufacturing, and subsequent post-processing via rotary swaging). A rather unique plastometric experimental methodology of accelerated creep testing, which consists of a slow plastic deformation of a material under long-term stress at an elevated temperature, was then used to study the behavior of the prepared samples.

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Publication Details

Journal
Progress in Additive Manufacturing
Published
2026-08-24
DOI
https://doi.org/10.1007/s40964-026-01922-2
Primary Topic
Additive Manufacturing Materials and Processes
Type
article
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Influence of thermomechanical postprocessing on creep behavior of Inconel 718 superalloy prepared by additive manufacturing

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Progress in Additive Manufacturing
Additive Manufacturing Materials and Processes
article

Influence of thermomechanical postprocessing on creep behavior of Inconel 718 superalloy prepared by additive manufacturing

Petr Opěla, Josef Walek, Radim Kocich, Lenka Kunčická, Marek Pagáč
article en

Abstract

Abstract Additive manufacturing represents a promising alternative to the conventional technologies used for the production of metallic materials. However, in contrast to the conventional approaches, materials produced using additive manufacturing typically feature certain disadvantages. One possibility to reduce their negative effects is to subject the additively manufactured materials to post processing via intensive plastic deformation. The present work primarily studies the creep behavior of Inconel 718, a nickel-based superalloy with a wide applicability in challenging industries, at four different initial material states (additive and conventional manufacturing, and subsequent post-processing via rotary swaging). A rather unique plastometric experimental methodology of accelerated creep testing, which consists of a slow plastic deformation of a material under long-term stress at an elevated temperature, was then used to study the behavior of the prepared samples.

Progress in Additive Manufacturing
VSB - Technical University of Ostrava (CZ)
Openalex Percentile: Top 100%
Additive Manufacturing Materials and Processes
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