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Published in: Integrating Materials and Manufacturing Innovation 3/2021

09-06-2021 | Thematic Section: Metal Additive Manufacturing Modeling Challenge Series 2020

AFRL Additive Manufacturing Modeling Series: Challenge 4, In Situ Mechanical Test of an IN625 Sample with Concurrent High-Energy Diffraction Microscopy Characterization

Authors: David B. Menasche, William D. Musinski, Mark Obstalecki, Megna N. Shah, Sean P. Donegan, Joel V. Bernier, Peter Kenesei, Jun-Sang Park, Paul A. Shade

Published in: Integrating Materials and Manufacturing Innovation | Issue 3/2021

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Abstract

We describe 3D characterization of an additively manufactured Inconel 625 nickel-base superalloy specimen conducted during a uniaxial tension test using a suite of nondestructive x-ray techniques. High-energy diffraction microscopy in both near- and far-field modalities are employed in situ to track evolution of the material orientation and stress–strain fields at six points during the mechanical test, and these data streams are registered with micro-computed tomography reconstructions which probe the material density. This data volume was matched to a multi-modal serial sectioning characterization of the specimen taken after loading, described in this article’s companion. Twenty-eight grains which were monitored throughout the experiment were selected to form the basis for AFRL AM Modeling Series Challenge 4, Microscale Structure-to-Properties.
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Metadata
Title
AFRL Additive Manufacturing Modeling Series: Challenge 4, In Situ Mechanical Test of an IN625 Sample with Concurrent High-Energy Diffraction Microscopy Characterization
Authors
David B. Menasche
William D. Musinski
Mark Obstalecki
Megna N. Shah
Sean P. Donegan
Joel V. Bernier
Peter Kenesei
Jun-Sang Park
Paul A. Shade
Publication date
09-06-2021
Publisher
Springer International Publishing
Published in
Integrating Materials and Manufacturing Innovation / Issue 3/2021
Print ISSN: 2193-9764
Electronic ISSN: 2193-9772
DOI
https://doi.org/10.1007/s40192-021-00218-3

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