Keyword: Additive manufacturing

5 records found.

20240730Cobbinah-MMTA.pdf
On the Enhanced Creep Performance in Ti6246 Achieved Through Laser Powder Bed Fusion (LPBF) Processing
Journal article
Creator
Prince Valentine Cobbinah (author) (Search by this author)
;
Sae Matsunaga (author) (Search by this author)
; ORCID SAMURAI ;
Ryosuke Ozasa (author) (Search by this author)
;
Takuya Ishimoto (author) (Search by this author)
;
Takayoshi Nakano (author) (Search by this author)
;
Tsutomu Ito (author) (Search by this author)
;
Yoko Yamabe-Mitarai (author) (Search by this author)
Keyword
Additive manufacturing, Crystallographic analysis, Heat-resistant titanium alloys, Microstructure, Precipitation, Volumetric energy density
Date published
2025-04-10
Updated at
2025-06-04 17:16:18 +0900

Accepted manuscript.pdf
Distinctive fatigue properties of additively-formed CoCrFeNiTiMo multi-principal element alloy: Excellent fatigue crack growth resistance against ordinally high cycle fatigue strength
Journal article
Creator
Hideaki Nishikawa (author) (Search by this author)
National Institute of Materials Science (NIMS)
ORCID SAMURAI ;
Yoshiyuki Furuya (author) (Search by this author)
National Institute of Materials Science (NIMS)
;
Houichi Kitano (author) (Search by this author)
National Institute of Materials Science (NIMS)
;
Yoshiharu Kanegae (author) (Search by this author)
Proterial, Ltd.
;
Kinya Aota (author) (Search by this author)
Proterial, Ltd.
;
Kosuke Kuwabara (author) (Search by this author)
Proterial, Ltd.
Keyword
Fatigue, Additive manufacturing, High entropy alloy, Multi principal element alloy, Short fatigue crack
Date published
2023-11-25
Updated at
2025-11-25 08:30:10 +0900

REPM2025_P1-61_Maltseva.pdf
Phase composition and magnetic properties of Nd(Pr)2Fe14B and (Sm,Zr)Fe11Ti magnets produced by selective laser melting
Conference poster
Collection
The 28th International Workshop on Rare Earth and Future Permanent Magnets and Their Applications (REPM2025)
Creator
Sergey Andreev (author) (Search by this author)
Ural Federal University, Russia
;
Viktoria Maltseva (author) (Search by this author)
Ural Federal University, Russia
;
Dmitriy Neznakhin (author) (Search by this author)
Ural Federal University, Russia
;
Arkadiy Shalaginov (author) (Search by this author)
Ural Federal University, Russia
;
Andrey Urzhumtsev (author) (Search by this author)
Ural Federal University, Russia
;
Alexey Volegov (author) (Search by this author)
Ural Federal University, Russia
Keyword
REPM2025, Additive manufacturing, Selective laser melting, Permanent magnets, Phase composition, Microstructure
Date published
Updated at
2025-09-11 16:30:51 +0900

REPM2025_O11-4_Wolz.pdf
In-Depth investigation of the sub-micronic equiaxed grain microstructure of a NdFeB permanent magnet fabricated by Laser Powder Bed Fusion
Conference presentation
Collection
The 28th International Workshop on Rare Earth and Future Permanent Magnets and Their Applications (REPM2025)
Creator
Aymeric Wolz (author) (Search by this author)
CEA (French Alternative Energies and Atomic Energy Commission), France
;
Jean-Paul Garandet (author) (Search by this author)
CEA (French Alternative Energies and Atomic Energy Commission), France
;
Camille Flament (author) (Search by this author)
CEA (French Alternative Energies and Atomic Energy Commission), France
;
Olivier Tosoni (author) (Search by this author)
CEA (French Alternative Energies and Atomic Energy Commission), France
Keyword
REPM2025, Laser Powder Bed Fusion (LPBF), Additive manufacturing, NdFeB, Microstructure investigation, Columnar to equiaxed transition (CET)
Date published
Updated at
2025-09-11 16:31:28 +0900

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