Ultrahigh-Flux Concerting Materials
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- NAGASAKA Takuya
- National Institute for Fusion Science, National Institutes of Natural Sciences
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- KOBAYASHI Makoto I.
- National Institute for Fusion Science, National Institutes of Natural Sciences
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- TANAKA Teruya
- National Institute for Fusion Science, National Institutes of Natural Sciences
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- TAKAYAMA Sadatsugu
- National Institute for Fusion Science, National Institutes of Natural Sciences
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- NOTO Hiroyuki
- National Institute for Fusion Science, National Institutes of Natural Sciences
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- SHEN Jingjie
- National Institute for Fusion Science, National Institutes of Natural Sciences
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- HINOKI Tatsuya
- Open Innovation Institute, Kyoto University
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- YABUUCHI Kiyohiro
- Institute of Advanced Energy, Kyoto University
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- TANABE Katsuaki
- Department of Chemical Engineering, Kyoto University
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- KASADA Ryuta
- Institute for Materials Research, Tohoku University
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- KONDO Sosuke
- Institute for Materials Research, Tohoku University
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- NOGAMI Shuhei
- Graduate School of Engineering, Tohoku University
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- KURITA Hiroki
- Graduate School of Environmental Studies, Tohoku University
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- HASHIMOTO Naoyuki
- Graduate School of Engineering, Hokkaido University
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- YAMAUCHI Yuji
- Graduate School of Engineering, Hokkaido University
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- OYA Yasuhisa
- Graduate School of Integrated Science and Technology, Shizuoka University
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- CHIKADA Takumi
- Graduate School of Integrated Science and Technology, Shizuoka University
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- HATANO Yuji
- Hydrogen Isotope Research Center, University of Toyama
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- KATAYAMA Kazunari
- Interdisciplinary Graduate School of Engineering Sciences, Kyushu University
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- OYA Makoto
- Interdisciplinary Graduate School of Engineering Sciences, Kyushu University
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- OONO Naoko
- College of Engineering Science, Yokohama National University
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- MORI Yoshitaka
- The Graduate School for the Creation of New Photonics Industries
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説明
<p>The purpose of the research unit UlCoMat (Ultrahigh-flux Concerting Materials) is creation of novel materials for advanced engineering systems, such as fusion and fission reactors, aerospace craft, rockets and chemical plants, based on understanding and control of the metastable phase and the self-organization induced in materials under extreme conditions. The UlCoMat will accelerate a paradigm shift from stable and resistant materials to metastable but adaptive ones. It focuses also on the science of life to seek long-life materials and a precise estimation of their existence for the development of robust engineering systems using the minimum materials compatible with economical and safety requirements.</p>
収録刊行物
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- Plasma and Fusion Research
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Plasma and Fusion Research 18 (0), 2505085-2505085, 2023-10-23
一般社団法人 プラズマ・核融合学会
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詳細情報 詳細情報について
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- CRID
- 1390860919496999168
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- NII書誌ID
- AA12346675
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- ISSN
- 18806821
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- HANDLE
- 10655/0002000120
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- 本文言語コード
- en
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- 資料種別
- journal article
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- データソース種別
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- JaLC
- IRDB
- Crossref
- OpenAIRE
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- 抄録ライセンスフラグ
- 使用不可