Keyword: Microstructure

22 records found. Displaying records 1 to 10.

P.Daram, et.al-2024_Compositionally graded titanium to aluminum processed by laser powder bed fusion process- Microstructure evolution and mechanical properties.docx
Compositionally graded titanium to aluminum processed by laser powder bed fusion process: Microstructure evolution and mechanical properties
Journal article
Creator
Phuangphaga Daram (author) (Search by this author)
ORCID SAMURAI ;
Alok Singh (author) (Search by this author)
ORCID SAMURAI ;
Takanobu Hiroto (author) (Search by this author)
ORCID SAMURAI ;
Tomonori Kitashima (author) (Search by this author)
ORCID SAMURAI ;
Makoto Watanabe (author) (Search by this author)
ORCID SAMURAI
Keyword
Laser powder bed fusion process, Compositionally graded materials, Ti–Al alloy, Microstructure, Mechanical properties
Date published
2024-05-15
Updated at
2024-06-24 10:01:25 +0900

Text-DMR.pdf
Mechanical behaviours of hot-pressed rare-earth oxide (RE = Y and La)-doped TaB2-SiC composites
Journal article
Creator
Shuqi Guo (author) (Search by this author)
ORCID SAMURAI ;
Gaku Okuma (author) (Search by this author)
ORCID SAMURAI ;
Kimiyoshi Naito (author) (Search by this author)
ORCID SAMURAI ;
Hideki Kakisawa (author) (Search by this author)
ORCID SAMURAI
Keyword
TaB2, SiC, Rare-earth oxide, Microstructure, Mechanical properties
Date published
2023-10-29
Updated at
2024-09-12 11:08:33 +0900

1-s2.0-S2238785426016790-main.pdf
Cellular automata simulations of texture evolution in flat-top laser additively manufactured Hastelloy-X
Journal article
Creator
ORCID SAMURAI ;
Phuangphaga Daram (author) (Search by this author)
;
Tomonori Kitashima (author) (Search by this author)
;
Makoto Watanabe (author) (Search by this author)
Keyword
Cellular automata, Additive manufacturing, Texture, Microstructure
Date published
2026-06-30
Updated at
2026-07-03 12:48:41 +0900

P.Daram,et.al.-Microstructure and phase evolution of functionally graded multi-materials of Ni-Ti alloy fabricated by laser powder bed fusion process.pdf
Microstructure and phase evolution of functionally graded multi-materials of Ni–Ti alloy fabricated by laser powder bed fusion process
Journal article
Creator
Phuangphaga Daram (author) (Search by this author)
ORCID SAMURAI ;
Takanobu Hiroto (author) (Search by this author)
ORCID SAMURAI ;
Makoto Watanabe (author) (Search by this author)
ORCID SAMURAI
Keyword
Laser powder bed fusion process, Functionally graded materials, Ni-Ti alloy, Microstructure, Compositional gradient
Date published
2023-02-28
Updated at
2024-06-21 16:30:21 +0900

REPM-2025 Navid.docx
Recent advances in the development of high-performance HRE-free and RE-lean permanent magnets
Conference presentation
Creator
SEPEHRI AMIN Hossein (author) (Search by this author)
Research Center for Magnetic and Spintronic Materials/Green Magnetic Materials Group, National Institute for Materials Science
ORCID SAMURAI ;
KULESH Nikita (author) (Search by this author)
International Center for Young Scientists, National Institute for Materials Science
ORCID SAMURAI ;
ZHANG Jiasheng (author) (Search by this author)
Research Center for Magnetic and Spintronic Materials/Green Magnetic Materials Group, National Institute for Materials Science
;
KAUTSAR Zulfa Hilmi (author) (Search by this author)
Research Center for Magnetic and Spintronic Materials/Green Magnetic Materials Group, National Institute for Materials Science
ORCID SAMURAI ;
BOLYACHKIN Anton (author) (Search by this author)
Research Center for Magnetic and Spintronic Materials/Green Magnetic Materials Group, National Institute for Materials Science
ORCID SAMURAI ;
TANG Xin (author) (Search by this author)
Research Center for Magnetic and Spintronic Materials/Green Magnetic Materials Group, National Institute for Materials Science
ORCID SAMURAI ;
H. Nakamura (author) (Search by this author)
Shin-Etsu Chemical
;
OHKUBO Tadakatsu (author) (Search by this author)
Research Center for Magnetic and Spintronic Materials, National Institute for Materials Science
ORCID SAMURAI ;
HONO Kazuhiro (author) (Search by this author)
ORCID SAMURAI
Keyword
Hard magnets, Microstructure, Coercivity
Date published
Updated at
2026-01-14 15:01:40 +0900

main2.pdf
Achieving high productivity in wire-arc directed energy deposition of magnesium alloy thin-walled structures via active cooling
Journal article
Creator
Hyu Kudo (author) (Search by this author)
; ORCID SAMURAI ;
Hiroyuki Sasahara (author) (Search by this author)
;
Hideaki Nagamatsu (author) (Search by this author)
ORCID
Keyword
Wire-arc directed energy deposition, Manufacturing rate, Magnesium alloy, Microstructure, Tensile properties, Fractography, Smut
Date published
2026-06-16
Updated at
2026-06-22 15:52:11 +0900

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

1-s2.0-S0142112326004263-main_resized.pdf
Effect of tempering temperatures on the fatigue behavior of 0.6% C martensitic steel
Journal article
Creator
Jiaqiang Dang (author) (Search by this author)
ORCID ;
Sien Liu (author) (Search by this author)
ORCID ;
Eisuke Kazama (author) (Search by this author)
;
Ryuji Yabutani (author) (Search by this author)
;
Karel Blanken (author) (Search by this author)
; ORCID SAMURAI ;
Shoichi Nambu (author) (Search by this author)
ORCID
Keyword
0.6% C martensitic steel, Warm tempering, Microstructure, Fracture toughness, Bending fatigue
Date published
2026-08-04
Updated at
2026-08-24 11:26:08 +0900

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