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Resource type
Journal article(3)
Keyword
Martensitic transformation (3)
Austenitic stainless steel (1)
Deformation twinning (1)
Extremely low cycle fatigue (1)
Fatigue (1)
Fracture surface (1)
High-pressure and temperature (1)
Microstructure (1)
Seismic damper (1)
Strain-hardening rate (1)
(more)
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Creative Commons BY-NC-ND Attribution-NonCommercial-NoDerivs 4.0 International (2)
In Copyright (1)
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application/pdf (3)
Keyword: Martensitic transformation
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3 records found.
High tensile strength and transformation-induced plasticity in bulk polycrystalline omega titanium
Journal article
Creator
Norimasa Nishiyama
(author) (
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https://orcid.org/0000-0001-6214-0875
(unauthenticated)
Research Center for Materials Nanoarchitectonics (MANA)/Nanomaterials Field/High-Pressure Structural Controls Group, National Institute for Materials Science
Norimasa Nishiyama
;
Yoshinori Tange
(author) (
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)
Sumitomo Electric Industries
Yoshinori Tange
;
Takashi Sawahata
(author) (
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)
Laboratory for Materials and Structures, a research laboratory in Institute of Innovative Research, Tokyo Institute of Technology
Takashi Sawahata
;
Masafumi Matsushita
(author) (
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)
Ehime University
Masafumi Matsushita
;
Kazuya Tokuda
(author) (
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)
Sumitomo Electric Industries
Kazuya Tokuda
;
Kosuke Tominaga
(author) (
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)
Sumitomo Electric Industries
Kosuke Tominaga
;
Takashi Sekiya
(author) (
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)
Sumitomo Electric Industries
Takashi Sekiya
;
Koji Kuramochi
(author) (
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)
Sumitomo Electric Industries
Koji Kuramochi
;
Keita Sasaki
(author) (
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)
Sumitomo Electric Industries
Keita Sasaki
;
Fumihiro Wakai
(author) (
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)
Laboratory for Materials and Structures, a research laboratory in Institute of Innovative Research, Tokyo Institute of Technology
Fumihiro Wakai
;
Zenji Horita
(author) (
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)
Kyushu Institute of Technolofy
Zenji Horita
;
Yutaka Kobayashi
(author) (
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)
Sumitomo Electric Industries
Yutaka Kobayashi
;
Akio Fujimura
(author) (
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)
Sumitomo Electric Industries
Akio Fujimura
Keyword
ω phase
,
High-pressure and temperature
,
Tensile strength
,
Martensitic transformation
,
Transformation-induced plasticity
,
Titanium
Date published
2026-02-03
Updated at
2026-03-10 16:30:22 +0900
Breaking the strength-ductility trade-off in austenitic stainless steel at cryogenic temperatures: Mechanistic insights
Journal article
Creator
Digvijay Singh
(author) (
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)
https://orcid.org/0000-0003-4357-957X
National Institute for Materials Science
Digvijay Singh
;
Fumiyoshi Yoshinaka
(author) (
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)
https://orcid.org/0000-0003-0534-7815
National Institute for Materials Science
NIMS Researchers Directory SAMURAI
Fumiyoshi Yoshinaka
;
Susumu Takamori
(author) (
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)
https://orcid.org/0000-0003-3422-9391
National Institute for Materials Science
NIMS Researchers Directory SAMURAI
Susumu Takamori
;
Satoshi Emura
(author) (
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)
https://orcid.org/0000-0001-5789-6408
National Institute for Materials Science
NIMS Researchers Directory SAMURAI
Satoshi Emura
;
Takahiro Sawaguchi
(author) (
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)
https://orcid.org/0000-0002-9405-002X
National Institute for Materials Science
NIMS Researchers Directory SAMURAI
Takahiro Sawaguchi
Keyword
Strength-ductility balance
,
Austenitic stainless steel
,
Martensitic transformation
,
Deformation twinning
,
Strain-hardening rate
Date published
2024-09-12
Updated at
2024-09-19 16:30:19 +0900
Fe-15Mn-10Cr-8Ni-4Si bidirectional-TRIP鋼の極低サイクル疲労に及ぼすひずみ速度の影響
Journal article
Creator
吉中 奎貴
(author) (
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)
https://orcid.org/0000-0003-0534-7815
National Institute for Materials Science
NIMS Researchers Directory SAMURAI
吉中 奎貴
;
長島 伸夫
(author) (
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)
https://orcid.org/0000-0003-3588-980X
National Institute for Materials Science
NIMS Researchers Directory SAMURAI
長島 伸夫
;
澤口 孝宏
(author) (
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)
https://orcid.org/0000-0002-9405-002X
National Institute for Materials Science
NIMS Researchers Directory SAMURAI
澤口 孝宏
Keyword
Fatigue
,
Fracture surface
,
Extremely low cycle fatigue
,
Microstructure
,
Martensitic transformation
,
Seismic damper
Date published
2023-12-15
Updated at
2024-09-30 16:30:40 +0900
Keyword
Martensitic transformation
(3)
Austenitic stainless steel
(1)
Deformation twinning
(1)
Extremely low cycle fatigue
(1)
Fatigue
(1)
Fracture surface
(1)
High-pressure and temperature
(1)
Microstructure
(1)
Seismic damper
(1)
Strain-hardening rate
(1)
Strength-ductility balance
(1)
Tensile strength
(1)
Titanium
(1)
Transformation-induced plasticity
(1)
ω phase
(1)
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