Rchr
J-GLOBAL ID:200901071858052583
Update date: Oct. 01, 2024
CHIHIRO WATANABE
ワタナベ チヒロ | CHIHIRO WATANABE
Affiliation and department:
Job title:
教授
Homepage URL (1):
http://materiallab.w3.kanazawa-u.ac.jp/
Research field (3):
Material fabrication and microstructure control
, Structural and functional materials
, Metallic materials
Research keywords (1):
Mechanical properties of materials, Phase transformation, Dislocation, Precipitation, Copper alloys, Aluminum alloys, Magnesium alloys
Research theme for competitive and other funds (17):
- 2020 - 2023 豊かな老後を護る医療用超高強度・低弾性率ヘテロナノ純チタンの開発
- 2020 - 2023 Research and development of "ultra" high-strength Copper alloys for electronic devices utilizing heterogeneous-nano structure
- 2017 - 2020 Innovation of bulk nano-structured commercial purity Ti with utra-high strength and high ductility utilizing TWIP effect
- 2017 - 2019 TWIP効果を利用したバルクナノ工業用純チタンの超高強度化と高延性化の実現
- 2013 - 2016 Concurrently strengthened severely deformed metallic materials by ultra-fine grained and precipitation hardenings
- 2013 - 2015 高密度の変形双晶を含むバルクナノメタルの変形挙動のひずみ速度・温度依存性
- 2013 - 2015 巨大ひずみ加工による結晶粒超微細化強化と析出強化の同時利用の実現
- 2013 - 2015 巨大ひずみ加工による結晶粒超微細化強化と析出強化の同時利用の実現
- 2013 - 2014 高密度の変形双晶を含むバルクナノメタルの変形挙動のひずみ速度・温度依存性
- 2007 - 2009 Enhancement of fatigue properties of Al-Mg and Al-Mg-Si alloys at elevated temperatures by addition of small amount of Scandium
- 2007 - 2009 Functionalization of electrical and mechanical properties by controlling of nano-structures in Cu-base alloys
- 2007 - 2009 Sc含有Al-Mg合金及びAl-Mg-Sc合金の高温疲労特性の評価と改善
- 2005 - 2006 Composition of electrical and mechanical functions by controlling of nano-ltructure in Cu-Cr-Ag-Zr system alloys
- 2003 - 2004 超微細結晶粒を持つAl-Mg-Sc合金の繰り返し変形における転位組織図の構築
- 2004 - 超微細結晶粒を持つAl-Mg-Sc合金の繰り返し変形における転位組織図の構築
- 2002 - 2003 Improvement of Thermal Stability and Evaluation of Fatigue Behavior of an Ultra fine-Grained Al-Mg-Sc Alloy Using ECAE
- 2003 - ECAE法による超微細結晶Al-Mg-Sc合金の熱的安定性の向上と疲労特性の評価
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Papers (187):
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Yanshuo Li, Norimitsu Koga, Chihiro Watanabe, Hiromi Miura. Development Process of Hetero-Nano Structure in a Cu-38 mass%Zn Alloy. MATERIALS TRANSACTIONS. 2024. 65. 2. 138-143
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Chihiro Watanabe, Ayumu Terada, Hirokazu Sato, Norimitsu Koga, Yoshikazu Todaka, Hiromi Miura. High-speed Deformation Behavior of a SUS316LN Austenitic Stainless Steel with Heterogeneous-nano Structure. ISIJ International. 2024. 64. 2. 466-473
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H. Miura, Y. Oba, C. Watanabe, T. Benjanarasuth. Mg Alloy Rod Strengthened by Combined Processes of Deformation-Restricted Forging and Extrusion. MATERIALS TRANSACTIONS. 2024. 65. 1. 93-96
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Kenta Miyamoto, Takahiro Kunimine, Chihiro Watanabe, Ryoichi Monzen, Reza Gholizadeh, Nobuhiro Tsuji. Mechanical Dissolution of Cu<sub>5</sub>Zr Phase and Formation of Supersaturated Solid-Solution Nanocrystalline Structure by High-Pressure Torsion in a Hypoeutectic Cu-2.7 at%Zr Alloy. MATERIALS TRANSACTIONS. 2023. 64. 12. 2708-2713
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Yanshuo Li, Norimitsu Koga, Chihiro Watanabe, Hiromi Miura. Effects of Initial Texture on the Formation of Deformation Twins in a Cu-Zn System Alloy. MATERIALS TRANSACTIONS. 2023. 64. 8. 2000-2005
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MISC (32):
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三浦博己, 松尾潔剛, 松尾潔剛, 大場洋次郎, 小林正和, 青柳吉輝, 渡邊千尋, BENJANARASUTH Taworn. Low-Temperature Annealing and Recrystallized Structure of Heterogeneous Nano-Structured Cu-Zn-Si Alloy Bars Fabricated by Caliber Rolling. 銅と銅合金. 2024. 63
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三浦博己, 松尾潔剛, 松尾潔剛, 大場洋次郎, 青柳吉輝, 渡邊千尋. Strengthening Mechanisms of Heterogeneous Nano-Structured Cu-Zn-Si Alloy Bars Fabricated by Caliber Rolling. 銅と銅合金. 2024. 63
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三浦博己, 松尾潔剛, 松尾潔剛, 大場洋次郎, 青柳吉輝, 渡邊千尋. 溝ロール圧延によるCu-Zn-Si系合金棒材のヘテロナノ組織形成とその機械的特性. 日本銅学会講演大会講演概要集. 2023. 63rd
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戸高義一, 足立望, MWETA Frank, 小林正和, 三浦博己, 渡邊千尋, 青柳吉輝. 強ひずみ加工したオーステナイト系ステンレス鋼SUS316LNの水素脆化挙動に及ぼす引張ひずみ速度の影響. 日本金属学会講演大会(Web). 2022. 171st
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姜華, 渡邊千尋, 宮嶋陽司, 古賀紀光, 青柳吉輝, 小林正和, 三浦博己. ヘテロナノ組織オーステナイト鋼の変形機構の検討. 日本金属学会講演大会(Web). 2020. 167th
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Patents (1):
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三浦博己・小林正和・戸高義一(豊橋技科大)・青柳吉輝(東北大学)・渡邊千尋(金沢大学)、 豊橋技術科学大学・東北大学・金沢大学
Books (2):
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Introduction of Material Science for Engineers
CORONA PUBLISHING CO.,LTD. 2010 ISBN:9784339046052
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Introduction of Mechanical Materials
DTP Publishing 2009
Lectures and oral presentations (6):
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Nano-indentation Hardness of Hetero-Nano structure in Heavily Cold Rolled Stainless Steels
(173rd Annual Meeting of The Iron and Steel Institute of Japan 2017)
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Deformation Behavior of Ultra-fine Grained CP-Ti fabricated by Multi Directional Forging at Liquid Nitrgen Temperature
(Annual Meeting of Japan Institute of Metals 2017)
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電気電子機器用銅合金
(第222回塑性加工技術セミナー 2017)
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Hetero-Nano structure in heavily cold-rolled austenitic stainless steel
(9th Pacific Rim International Conference on Advanced Materials and Processing 2016)
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Development of Hetero-Nano Structure in 316LN Austenitic Stainless Steel During cold-rolling
(International Conference on PROCESSING & MANUFACTURING OF ADVANCED MATERIALS 2016)
more...
Education (3):
- 2002 - Tokyo Institute of Technology Science and Engineering Department of Innovative and Engineered materials
- 1999 - Tokyo Institute of Technology Science and Enginnering Department of Innovation and Engineered Materials
- 1993 - 1997 Tokyo Institute of Technology Faculty of Engineering
Work history (6):
Awards (7):
Association Membership(s) (5):
日本材料学会
, The Iron and Steel Institute of Japan
, Japan Institute of Copper alloys
, 日本軽金属学会
, 日本金属学会
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