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Elizabeth Budzakoska-Testone

Government of the Commonwealth of Australia - Australian Nuclear Science and Technology Organisation

Locked Bag 2001

Kirrawee DC

Sydney, NSW 2232

Australia

SCHOLARLY PAPERS

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Scholarly Papers (1)

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Crystallographic Texture and Multiscale Boundaries Mediated Creep Anisotropy in Additively Manufactured Ni-Based Hastelloy C276 Superalloy

Number of pages: 30 Posted: 05 Jul 2023 Last Revised: 27 Mar 2024
University of Wollongong - School of Mechanical, Materials, Mechatronic and Biomedical Engineering, Government of the Commonwealth of Australia - Australian Nuclear Science and Technology Organisation, Government of the Commonwealth of Australia - Australian Nuclear Science and Technology Organisation, Australian Nuclear Science and Technology Organisation, Government of the Commonwealth of Australia - Australian Nuclear Science and Technology Organisation, Government of the Commonwealth of Australia - Australian Nuclear Science and Technology Organisation, Government of the Commonwealth of Australia - Australian Nuclear Science and Technology Organisation, Government of the Commonwealth of Australia - Australian Nuclear Science and Technology Organisation, Australian Synchrotron, Government of the Commonwealth of Australia - Australian Nuclear Science and Technology Organisation, University of Wollongong - School of Mechanical, Materials, Mechatronic and Biomedical Engineering and University of Wollongong - School of Mechanical, Materials, Mechatronic and Biomedical Engineering
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Abstract:

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Wire and arc-based directed energy deposition, Hastelloy C276 superalloy, microstructure, creep anisotropy, creep mechanism, microstructure evolution