キーワード: Microstructure

21 件のレコードが見つかりました。 1件目から10件目まで表示します。

Thermodynamically consistent multi-phase-field model incorporating passive external domains.pdf
Thermodynamically consistent multi-phase-field model incorporating passive external domains
ジャーナル論文
著者
ORCID SAMURAI ;
Yusuke Matsuoka (author) (この著者で検索)
;
Toshiyuki Koyama (author) (この著者で検索)
ORCID
キーワード
Phase-field modeling, Microstructure, Multicomponent, CALPHAD
刊行年月日
2026-03-31
更新時刻
2026-04-03 09:38:10 +0900

main2.pdf
Achieving high productivity in wire-arc directed energy deposition of magnesium alloy thin-walled structures via active cooling
ジャーナル論文
著者
Hyu Kudo (author) (この著者で検索)
; ORCID SAMURAI ;
Hiroyuki Sasahara (author) (この著者で検索)
;
Hideaki Nagamatsu (author) (この著者で検索)
ORCID
キーワード
Wire-arc directed energy deposition, Manufacturing rate, Magnesium alloy, Microstructure, Tensile properties, Fractography, Smut
刊行年月日
2026-06-16
更新時刻
2026-06-22 15:52:11 +0900

REPM-2025 Navid.docx
Recent advances in the development of high-performance HRE-free and RE-lean permanent magnets
プレゼンテーション
著者
SEPEHRI AMIN Hossein (author) (この著者で検索)
National Institute for Materials Science Research Center for Magnetic and Spintronic Materials/Green Magnetic Materials Group
ORCID SAMURAI ;
KULESH Nikita (author) (この著者で検索)
National Institute for Materials Science International Center for Young Scientists
ORCID SAMURAI ;
ZHANG Jiasheng (author) (この著者で検索)
National Institute for Materials Science Research Center for Magnetic and Spintronic Materials/Green Magnetic Materials Group
;
KAUTSAR Zulfa Hilmi (author) (この著者で検索)
National Institute for Materials Science Research Center for Magnetic and Spintronic Materials/Green Magnetic Materials Group
ORCID SAMURAI ;
BOLYACHKIN Anton (author) (この著者で検索)
National Institute for Materials Science Research Center for Magnetic and Spintronic Materials/Green Magnetic Materials Group
ORCID SAMURAI ;
TANG Xin (author) (この著者で検索)
National Institute for Materials Science Research Center for Magnetic and Spintronic Materials/Green Magnetic Materials Group
ORCID SAMURAI ;
H. Nakamura (author) (この著者で検索)
Shin-Etsu Chemical
;
OHKUBO Tadakatsu (author) (この著者で検索)
National Institute for Materials Science Research Center for Magnetic and Spintronic Materials
ORCID SAMURAI ;
HONO Kazuhiro (author) (この著者で検索)
ORCID SAMURAI
キーワード
Hard magnets, Microstructure, Coercivity
刊行年月日
更新時刻
2026-01-14 15:01:40 +0900

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
ジャーナル論文
著者
Phuangphaga Daram (author) (この著者で検索)
ORCID SAMURAI ;
Alok Singh (author) (この著者で検索)
ORCID SAMURAI ;
Takanobu Hiroto (author) (この著者で検索)
ORCID SAMURAI ;
Tomonori Kitashima (author) (この著者で検索)
ORCID SAMURAI ;
Makoto Watanabe (author) (この著者で検索)
ORCID SAMURAI
キーワード
Laser powder bed fusion process, Compositionally graded materials, Ti–Al alloy, Microstructure, Mechanical properties
刊行年月日
2024-05-15
更新時刻
2024-06-24 10:01:25 +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
会議発表ポスター
コレクション
The 28th International Workshop on Rare Earth and Future Permanent Magnets and Their Applications (REPM2025)
著者
Sergey Andreev (author) (この著者で検索)
Ural Federal University, Russia
;
Viktoria Maltseva (author) (この著者で検索)
Ural Federal University, Russia
;
Dmitriy Neznakhin (author) (この著者で検索)
Ural Federal University, Russia
;
Arkadiy Shalaginov (author) (この著者で検索)
Ural Federal University, Russia
;
Andrey Urzhumtsev (author) (この著者で検索)
Ural Federal University, Russia
;
Alexey Volegov (author) (この著者で検索)
Ural Federal University, Russia
キーワード
REPM2025, Additive manufacturing, Selective laser melting, Permanent magnets, Phase composition, Microstructure
刊行年月日
更新時刻
2025-09-11 16:30:51 +0900

1-s2.0-S0142112326004263-main_resized.pdf
Effect of tempering temperatures on the fatigue behavior of 0.6% C martensitic steel
ジャーナル論文
著者
Jiaqiang Dang (author) (この著者で検索)
ORCID ;
Sien Liu (author) (この著者で検索)
ORCID ;
Eisuke Kazama (author) (この著者で検索)
;
Ryuji Yabutani (author) (この著者で検索)
;
Karel Blanken (author) (この著者で検索)
; ORCID SAMURAI ;
Shoichi Nambu (author) (この著者で検索)
ORCID
キーワード
0.6% C martensitic steel, Warm tempering, Microstructure, Fracture toughness, Bending fatigue
刊行年月日
2026-08-04
更新時刻
2026-08-24 11:26:08 +0900

latest submitted version-JMM.pdf
Microstructure evolution and phase analysis of Sm60Ni40 alloy
ジャーナル論文
著者
G. Vijayaragavan (author) (この著者で検索)
;
D. Prabhu (author) (この著者で検索)
;
M.B. Ponnuchamy (author) (この著者で検索)
;
K.R.S. Preethi Meher (author) (この著者で検索)
;
Ravi Gautam (author) (この著者で検索)
;
Mainak Saha (author) (この著者で検索)
Indian Institute of Technology Madras Metallurgical and Materials Engineering
ORCID SAMURAI ;
R. Gopalan (author) (この著者で検索)
;
K.G. Pradeep (author) (この著者で検索)
キーワード
Sm-Ni alloy, Annealing, Microstructure, Magnetic property, Crystal structure
刊行年月日
2022-12-26
更新時刻
2024-10-29 16:44:05 +0900

2_no_marked_Revised_GMFF_microplastic_JAmCeramSoc.docx
Interconnected channel subdivision and flow behavior in sintered glass bead–fiber mixed filters
ジャーナル論文
著者
Shingo Machida (author) (この著者で検索)
JFCC
;
Shintaro Matsushita (author) (この著者で検索)
Institute of Science Tokyo
;
Yasutoshi Mizuta (author) (この著者で検索)
JFCC
;
Daisaku Yokoe (author) (この著者で検索)
JFCC
;
Yuki Sada (author) (この著者で検索)
Japan Synchrotron Radiation Research Institute (JASRI)
;
Masayuki Uesugi (author) (この著者で検索)
Japan Synchrotron Radiation Research Institute (JASRI)
;
Akihisa Takeuchi (author) (この著者で検索)
Japan Synchrotron Radiation Research Institute (JASRI)
;
Yutaro Arai (author) (この著者で検索)
Tokyo University of Science
;
Shun Araya (author) (この著者で検索)
Tokyo University of Science
;
Gaku Okuma (author) (この著者で検索)
National Institute for Materials Science Research Center for Structural Materials/Materials Manufacturing Field/Ceramic Matrix Composites Group
ORCID SAMURAI
キーワード
Glass, X-ray CT, Sintering, Microstructure
刊行年月日
2026-06-16
更新時刻
2026-06-17 09:53:29 +0900

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