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Fan Zhang, Aaron Johnston-Peck, Lyle E. Levine, Michael Katz, Kil-Won Moon, Maureen E. Williams, Sandra W. Young, Andrew J. Allen, Olaf Borkiewicz, Jan Ilavsky
Additive Manufacturing (AM) technologies offer unprecedented design flexibility but are limited by a lack of understanding of the material microstructure formed
Suzanne E. Witt, Andrew J. Allen, Megan E. Holtz, Sandra A. Young, Ivan Kuzmenko
In this study, a series of Sr2MMoO6-δ double perovskite solid oxide fuel cell (SOFC) anode materials (where M = Fe, Co, or Ni) were synthesized, and the changes
Mark R. Stoudt, Maureen E. Williams, Lyle E. Levine, Adam Abel Creuziger, Sandra A. Young, Jarred C. Heigel, Brandon Lane, Thien Q. Phan
Additive manufacturing (AM) of metals creates segregated microstructures with significant differences from those of traditional wrought alloys. Understanding
Lyle Levine, Maureen Williams, Fan Zhang, Edwin Schwalbach, Sandra Young, Mark Stoudt, Adam Creuziger, Olaf J. Borkiewicz, Jan Ilavsky
The following data files include microstructure measurement results associated with the 2022 Additive Manufacturing Benchmark test series (AM-Bench 2022) AMB2022-01 benchmark on laser powder bed
Lyle Levine, Maureen Williams, Mark Stoudt, Sandra Young, Jordan Weaver, David Deisenroth, Brandon Lane
The following data files include microstructure measurement results associated with the 2022 Additive Manufacturing Benchmark test series (AM Bench 2022) AMB2022-03 set of benchmarks. These AMB2022-03
Created October 30, 2018, Updated December 8, 2022