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Yuichiro Koizumi

The University of Osaka

1-1 Yamadaoka

Suita

Osaka, 565-0871

Japan

SCHOLARLY PAPERS

4

DOWNLOADS

263

TOTAL CITATIONS

0

Scholarly Papers (4)

Equiaxed Grain Formation by Intrinsic Heterogeneous Nucleation Via Rapid Heating and Cooling in Additive Manufacturing of Aluminum-Silicon Hypoeutectic Alloy

Number of pages: 17 Posted: 15 Feb 2022
The University of Osaka, The University of Osaka, affiliation not provided to SSRN, The University of Osaka and The University of Osaka - Division of Materials and Manufacturing Science
Downloads 62 (957,329)

Abstract:

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Additive manufacturing, selective laser-melting, Al-Si hypoeutectic alloy, multiphase field simulation, grain refinement

Equiaxed Grain Formation by Intrinsic Heterogeneous Nucleation Via Rapid Heating and Cooling in Additive Manufacturing of Aluminum-Silicon Hypoeutectic Alloy

Number of pages: 15 Posted: 17 Jan 2022
The University of Osaka, The University of Osaka, The University of Osaka, The University of Osaka and The University of Osaka - Division of Materials and Manufacturing Science
Downloads 54 (1,038,620)

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Phase-field method, solidification, Additive Manufacturing, eutectic, rapid heating

2.

Resolving the Long-Standing Discrepancy in Fe3Al Ordering Mobilities: A Synergistic Experimental and Phase-Field Study

Number of pages: 45 Posted: 17 Jan 2024
The University of Osaka, The University of Osaka, The University of Osaka, The University of Osaka, The University of Osaka, The University of Osaka and The University of Osaka
Downloads 59 (970,490)

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Phase-field simulation, Transmission electron microscopy, Ordering mobility, Antiphase boundary, Fe3Al

3.

Phase-Separation Induced Dislocation-Network Cellular Structures in Ti-Zr-Nb-Mo-Ta High-Entropy Alloy Processed by Laser Powder Bed Fusion

Number of pages: 37 Posted: 04 Sep 2024
University of Tokyo - Department of Materials Science & Engineering, University of Tokyo - Department of Materials Science & Engineering, National Institute for Materials Science, National Institute for Materials Science, The University of Osaka, University of Toyama, The University of Osaka, The University of Osaka, The University of Osaka - Division of Materials and Manufacturing Science and University of Tokyo - Department of Materials Science & Engineering
Downloads 58 (989,921)

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High-entropy alloy, additive manufacturing, phase separation, dislocation-network, cell structure

4.

Segregation-Free Fe–Cr–Co Single Crystals Fabricated by Laser Powder Bed Fusion Utilizing Solidification Conditions Beyond the Absolute Stability Limit

Number of pages: 79 Posted: 23 Feb 2026
The University of Osaka, The University of Osaka, The University of Osaka, The University of Osaka, The University of Osaka, The University of Osaka, The University of Osaka - Division of Materials and Manufacturing Science and The University of Osaka
Downloads 30 (1,332,057)

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Laser Powder Bed Fusion, absolute stability, Fe-Cr-Co alloys, segregation-free single crystals, magnetic properties