Higashi K | Department Of Metallurgy And Materials Science Graduate School Of Engineering Osaka Prefecture Unive
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概要
- 同名の論文著者
- Department Of Metallurgy And Materials Science Graduate School Of Engineering Osaka Prefecture Univeの論文著者
関連著者
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Higashi K
Department Of Metallurgy And Materials Science Graduate School Of Engineering Osaka Prefecture Unive
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平賀 賢二
東北大学
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東 健司
大阪府大工
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平賀 〓二
東北大学金属材料研究所
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平賀 二
東北大学金属材料研究所
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東 健司
Department Of Materials Science Graduate School Of Engineering Osaka Prefecture University
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HIGASHI Kenji
Department of Materials Science, Graduate School of Engineering, Osaka Prefecture University
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Higashi Kenji
Department Of Materials Science Graduate School Of Engineering Osaka Prefecture University
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毛利 哲雄
北大
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平賀 賢二
東北大学金属材料研究所
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WATANABE Hiroyuki
Osaka Municipal Technical Research Institute
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Watanabe H
Utsunomiya Univ. Utsunomiya Jpn
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毛利 哲雄
北海道大学大学院工学研究科材料科学専攻
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平賀 賢二
東北大学金研
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HIRAGA Kenji
Institute for Materials Research, Tohoku University
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Mabuchi M
Department Of Energy Science And Technology Graduate School Of Energy Science Kyoto University
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西嶋 雅彦
東北大学金属材料研究所
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西嶋 雅彦
東北大・金研
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Mabuchi M
Department Of Energy Science And Technology Kyoto University
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Higashi Kenji
Department Of Metallurgy And Materials Science College Of Engineering Osaka Prefecture University
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SOMEKAWA Hidetoshi
Department of Materials Science, Graduate School of Engineering, Osaka Prefecture University
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Somekawa H
Osaka Prefecture Univ. Sakai Jpn
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Somekawa Hidetoshi
Department Of Materials Science Osaka Prefecture University
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Somekawa Hidetoshi
Department Of Materials Science Graduate School Of Engineering Osaka Prefecture University
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Somekawa Hidetoshi
Department Of Metallurgy And Materials Science Osaka Prefecture University
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Mabuchi Mamoru
National Industrial Research Institute Of Nagoya
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WATANABE Hiroyuki
Mechanical Engineering Dept., Osaka Municipal Technical Research Institute
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Somekawa Hidetoshi
School Of Engineering Osaka Prefecture University
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山崎 倫昭
Dep. Of Materials Sci. Kumamoto Univ.
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Mohri Tetsuo
Department Of Metallurgical Engineering Hokkaido University
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河村 能人
Dep. Of Materials Sci. Kumamoto Univ.
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NISHIJIMA Masahiko
Institute for Materials Research, Tohoku University
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MUKAI Toshiji
Osaka Municipal Technical Research Institute
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HIGASHI Kenji
College of Engineering, Department of Metallurgy and Materials Science, Osaka Prefecture University
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平賀 賢二
東北大金研
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岩崎 源
ハイプロセスリサーチ
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YAMASAKI Michiaki
Department of Materials Science, Kumamoto University
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IWASAKI Hajime
College of Engineering, Department of Materials Science and Engineering, Himeji Institute of Technol
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OHSUNA Tetsu
Institute for Materials Research, Tohoku University
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Higashi Kenji
Department Of Metallurgy And Materials Science Osaka Prefecture University
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TAKARA Akira
Corporate Manufacturing Innovation Division, Matsushita Electric Industrial Co., Ltd.
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MUKAI Toshiji
Research Center for Advanced Science and Technology, The University of Tokyo
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Ishikawa Koichi
Osaka Municipal Technical Research Institute
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大谷 栄治
東北大理
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杉山 和正
東北大・金研
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木村 眞
茨城大・理
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河村 能人
熊本大学
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長瀬 敏郎
東北大・総学博
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平賀 賢二
東北大 金研
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宮原 正明
東北大・理
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KOHZU Masahide
Department of Materials Science, Graduate School of Engineering, Osaka Prefecture University
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大谷 栄治
東北大 理
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大谷 栄治
東北大学大学院理学研究科
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谷村 眞治
愛知工科大学工学部
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杉山 和正
東京大学大学院理学系研究科
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長瀬 敏郎
東北大
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杉山 和正
東北大 金属材料研
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杉山 和正
東北大・素材研
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Aizawa Tatsuhiko
Research Center For Advanced Science And Technology The University Of Tokyo
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相澤 龍彦
東大 国際・産学共同研究セ
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CHUNG Sung
Department of Materials Science, Graduate School of Engineering, Osaka Prefecture University
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EL GORESY
バイロイト大学
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西嶋 雅彦
東北大金研
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Chung S
Department Of Metallurgy And Materials Science Osaka Prefecture University
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Kohyama M
National Inst. Advanced Industrial Sci. And Technol. Ikeda Jpn
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Kohzu Masahide
Department Of Materials Science Graduate School Of Engineering Osaka Prefecture University
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KAWAMURA Yoshihito
Department of Materials Science, Kumamoto University
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KAWAMURA Yoshihiko
Department of Materials Science and Engineering, Kumamoto University
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SUN Wei
Institute for Materials Research, Tohoku University
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TANIMURA Shinji
College of Engineering, Osaka Prefecture University
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MORI Takasuke
College of Engineering, Department of Mateials Science and Engineering, Himeji Institute of Technolo
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大谷 栄治
東北大
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TAKARA Akira
Production Core Engineering Laboratory, Matsushita Electric Industrial Co., Ltd.
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NISHIKAWA Yukio
Production Core Engineering Laboratory, Matsushita Electric Industrial Co., Ltd.
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Chung Sung
Department Of Life And Nanopharmaceutical And Department Of Pharmaceutical Science Kyung Hee Univers
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小山 佳一
東北大金研強磁場セ
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福山 博之
東北大学多元物質科学研究所
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WATANABE Hiroyuki
Department of Internal Medicine, Division of Cardiovascular Medicine, Akita University Faculty of Me
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杉山 和正
東北大金研
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湯葢 邦夫
東北大・金研
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鈴木 謙爾
特殊無機材料研究所
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宮崎 照宣
東北大学原子分子材料科学高等研究機構(WPI)
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鶴井 隆雄
東北大金研
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河村 純一
東北大多元研
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中村 崇
東北大 多元物質科研
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今野 豊彦
阪府大院工
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加藤 宏朗
東北大学NICHe
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糸井 貴臣
千葉大学
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杉山 和正
東北大学金属材料研究所
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川崎 正博
Jeol U.s.a.
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川崎 正博
日本電子株式会社
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川崎 正博
日本電子(株)電子光学機器技術本部応用研究センター1g
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鶴井 隆雄
東北大学金属材料研究所
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小山 佳一
東北大 金属材料研
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桑田 直明
東北大多元研
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桜井 雅樹
東北大金研
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大谷 栄治
東北大院理
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Chino Yasumasa
National Institute Of Advanced Industrial Science And Technology
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大砂 哲
東北大金研
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大石 泰生
Jasri
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大石 泰生
高輝度光研究センター
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大石 泰生
SPring-8
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服部 武志
東京理科大
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佐川 眞人
インターメタリックス
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飛世 正博
日立金属株式会社先端エレクトロニクス研究所
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松浦 真
宮城工業高等専門学校
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松浦 真
宮城工業高等専門学校総合科学系理数科
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山崎 倫昭
熊本大
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河村 能人
熊本大院
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平尾 直久
JASRI
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平尾 直久
高輝度セ
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宮崎 照宣
東北大工
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YOKOYAMA Yoshihiko
Institute for Materials Research, Tohoku University
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大砂 哲
東北大学金属材料研究所
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TAKIGAWA Yorinobu
Department of Materials Science, Graduate School of Engineering, Osaka Prefecture University
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広橋 光治
千葉大学工学部電子機械工学科
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広橋 光治
千葉大学工学部
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糸井 貴臣
千葉大学工学部機械工学科
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今野 豊彦
東北大学金属材料研究所
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東 健司
大阪府立大学大学院工学研究科
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境 毅
東北大 理
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大石 泰夫
SPring8
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加藤 宏明
東北大工
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SUGIYAMA Kazumasa
Department of Earth and Planetary Science, Tokyo University
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大谷 栄治
東北大院・理
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湯蓋 邦夫
東北大学金属材料研究所
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山崎 倫昭
熊本大学
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Yokoyama Yoshihiko
Institute For Materials Research Tohoku University
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木村 眞
茨城大学理学部自然機能科学科
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加藤 宏朗
山形大工
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福山 博之
東北大
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福山 博之
東北大学
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佐川 眞人
東北大学niche:インターメタリックス
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Yokoyama Y
Inst. For Materials Res. Tohoku Univ.
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宮崎 照宣
東北大 原子分子材料科学高等研究機構
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中村 崇
東北大
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平尾 直久
財団法人 高輝度光科学研究センター
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Chino Y
Institute For Structural And Engineering Materials National Institute Of Advanced Industrial Science
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箱守 明
(株)トクヤマ
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中村 克仁
東北大
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杉山 和正
東北大・選研
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宮原 正明
東北大院理
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小澤 信
東北大院理
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長瀬 敏郎
東北大院理
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TRISTAN Ferroir
リヨン大学
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PHILIPPE Gillet
リヨン大学
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LEONID Dubrovinsky
バイロイト大学
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ALEXANDER Simionovici
グルノーブル大学
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今野 一弥
宮城工業高等専門学校
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Yamada Y
Department Of Quantum Science And Energy Engineering Tohoku University
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Yamada Y
Akita Univ. School Of Medicine Akita
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Yamamoto Y
College Of Engineering Hosei University
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Yoshida Y
Department Of Energy Engineering And Science Nagoya University
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SAITO Kaichi
Department of Materials Science and Engineering, Faculty of Engineering and Resourc Science, Akita U
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劉 峰
東北大学多元物質科学研究所
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Yamamoto Yuichi
Division Of Electronic And Information Engineering Faculty Of Technology Tokyo University Of Agricul
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佐々木 美波
熊本大(院)
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Mabuchi Mamoru
Institute For Structural And Engineering Materials National Institute Of Advanced Industrial Science
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Yamada Y
Akita Univ. Akita Jpn
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Yamada Yuh
National Research Institute For Metals
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KANAHASHI Hidetaka
Department of Metallurgy, Graduate School of Engineering, University of Tokyo
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Shimojima K
Institute For Structural And Engineering Materials National Institute Of Advanced Industrial Science
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Yamamoto Y
Nippon Steel Corp. Kawasaki Jpn
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HOSOKAWA Hiroyuki
Institute for Structural and Engineering Materials, National Institute of Advanced Industrial Scienc
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IWASAKI Hajime
Division of Materials Science and Engineering, Graduate School of Himeji Institute of Technology
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HOSOKAWA Hiroyuki
Department of Material Science & Engineering, Himeji Institute of Technology
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KARIYA Ryoichi
College of Engineering, Department of Materials Science and Engineering, Himeji Institute of Technol
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TAGATA Tutomu
SKY Aluminum Co., Ltd.
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岩崎 源
姫路工大工
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吉田 光彦
宮城工業高等専門学校
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佐々木 美波
熊本大院
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桑田 直明
東北大工
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服部 武志
東北大多元研
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金子 裕二
住特金
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大石 泰生
高輝度セ
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Yamamoto Y
Nara Inst. Sci. And Technol. Nara Jpn
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Hosokawa Hiroyuki
Department Of Biotechnology Graduate School Of Engineering Nagoya University:mext Innovative Researc
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湯葢 邦夫
東北大学金属材料研究所
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平賀 [ケン]二
東北大学金属材料研究所
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YOSHIKAWA Masahiro
Department of Urology, Faculty of Medicine, Kyushu University
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OHTANI Takuya
College of Engineering, Department of Materials Science and Engineering, Himeji Institute of Technol
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KUSHIBE Atsumichi
College of Engineering, Dept. Mech. Sys. Eng., University of Osaka Prefecture
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Yokoyama Yoshihiko
Advanced Research Center Of Metallic Glasses Institute For Materials Research Tohoku University
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YOSHIDA Fusahito
Department of Mechanical System Engineering, Graduate School of Engineering, Hiroshima University
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KAMADO Shigeharu
Department of Mechanical Engineering, Nagaoka University of Technology
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KOJIMA Yo
Department of Mechanical Engineering, Nagaoka University of Technology
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糸井 貴臣
千葉大学工学部
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CHIAN Li-Fu
Department of Materials Science, Osaka Prefecture University
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NISHIJIMA Masahiko
Nanotechnology Support Project of the Ministry of Education, Institute for Materials Research, Tohok
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LIAW Peter
Faculty of Engineering, The University of Tennessee
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HIRAGA Kenji
Nanotechnology Support Project of the Ministry of Education, Institute for Materials Research, Tohok
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BUCHANAN Raymond
Faculty of Engineering, The University of Tennessee
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INOUE Akihisa
Advanced Research Center of Metallic Glasses, Institute for Materials Research, Tohoku University
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TANABE Shigenori
Department of Metallurgy and Materials Science, College of Engineering, Osaka Prefecture University
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Nishimura Sinya
Institute For Materials Research Tohoku University
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Hosokawa Hiroyuki
Materials Research Institute For Sustainable Development National Institute Of Advanced Industrial S
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Hosokawa Hiroyuki
Materials Research Institute For Sustainable Development National Institute Of Advanced Industrial S
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Hosokawa Hiroyuki
Department Of Metallurgy And Materials Science Osaka Prefecture University
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Hosokawa Hiroyuki
Institute For Structural And Engineering Materials
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Takigawa Yorinobu
Department Of Materials Science Graduate School Of Engineering Osaka Prefecture University
著作論文
- 結晶の中で見つけた黄金比
- 透過電子顕微鏡による析出物の微細組織と結晶構造の解析 : Mg-RE(希土類金属)合金
- HAADF-STEM法によるMg-Ce-Zn系長周期構造の解析
- Stabilization of Guinier-Preston Zones in Hexagonal Close-Packed Mg-Gd-Zn Alloys Studied by Transmission Electron Microscopy
- サファイア窒化法による単結晶窒化アルミニウム薄膜の作製
- 衝撃を受けた隕石での Olivine メルトからの Wadsleyite と Ringwoodite の分別結晶作用
- Sm_2Fe_のHD処理過程において見られる Fe マトリックス中の繊維状 SmH_2 の規則配列
- Characterization of Precipitates in Mg-Sm Alloy Aged at 200℃, Studied by High-Resolution Transmission Electron Microscopy and High-Angle Annular Detector Dark-Field Scanning Transmission Electron Microscopy
- The Structure of Guinier-Preston Zones in an Mg-2at%Gd-1at%Zn Alloy Studied by Transmission Electron Microscopy
- Transmission Electron Microscopy for Precipitate Phases in Rapidly Solidified Mg-2at%Ce-1at%Zn and Mg-2at%Ce Alloys
- The Critical Stress at the Interface for Cavity Nucleation in Superplastic Aluminum Matrix Composites Reinforced with Si_3N_4 Particles
- Effects of Temperature and Strain Rate on Elongation at Elevated Temperature in Al-4.5Mg Alloy
- BNナノ粒子と双晶構造--5回対称星型粒子から超硬物質まで (今月の特集も、BNなの)
- HAADF-STEMによるMg-5 at%Gd合金中の析出物の構造・形態変化の研究
- HAADF-STEMとHRTEMによるMg-RE(RE:希土類金属)合金の析出物の構造
- 異常な?学術講演会
- 溶融急冷Mg_Cu_1Y_1合金中の非晶質と長周期積層構造からなる複相析出物
- Mg-Zn-Gd鋳造合金の高温時効による積層欠陥と長周期積層構造の形成
- サイエンスの中に美しさを求めて
- 30pXF-6 CuI-Cu_2MoO_4系超イオン導電性ガラスの高分解能電子顕微鏡観察(超イオン伝導体)(領域5)
- Al-Cu合金のGPゾーンのHAADF-STEM像
- Nd-Fe-B焼結磁石の強磁場中熱処理と保磁力
- Structural Characteristics of Al-Co-Ni Decagonal Quasicrystals and Crystalline Approximants
- Mater.Trans.を見直す : 論文投稿者の選択
- Structure of a Pentagonal Quasicrystal in Al_Co_Ni_ Studied by High-Angle Annular Detector Dark-Field Scanning Transmission Electron Microscopy
- AlCo基近似結晶の構造
- Elevated Temperature Deformation and Fracture Mechanisms in High-Strain-Rate-Superplastic Si_3 N_/Al-Cu-Mg Composite
- OBSERVATION OF CAVITATION FORMATION IN A SUPERPLASTIC Si_3N_/Al-Mg-Si COMPOSITE AT HIGH STRAIN RATES
- Stress Exponent and Activation Energy in Titanium Aluminides with Different Grain Sizes
- Suppression of Macroscopic Defects through the Control of Friction between Workpiece and Dies in a Forged Magnesium Alloy Part with Ribs
- New Forming Process of Three-Dimensionally Shaped Magnesium Parts Utilizing High-Strain-Rate Superplasticity
- Secondary Processing of AZ31 Magnesium Alloy Concomitant with Grain Growth or Dynamic Recrystallization
- The Grain Size Dependence on Diffusion Bonding Behavior in Superplastic Mg Alloys
- Experimental Study on Diffusion Bonding in Pure Magnesium
- Fatigue-Strength Enhancement of Cast Zr_Cu_Al_ Glassy Alloys
- Fracture Mechanism and Forming Limit in Deep-Drawing of Magnesium Alloy AZ31
- Al-Co-Ni系近似結晶W-相の構造
- The Grain Size and Texture Dependence of Tensile Properties in Extruded Mg-9Al-lZn
- Characterization of β' Phase Precipitates in an Mg-5at%Gd Alloy Aged in a Peak Hardness Condition, Studied by High-Angle Annular Detector Dark-Field Scanning Transmission Electron Microscopy
- Creep Deformation Mechanisms in Coarse-Grained Solid Solution Mg Alloys
- Deformation Mechanism of Fine-Grained Superplasticity in Metallic Materials Expected from the Phenomenological Constitutive Equation
- Materials Processing for Structural Stability in a ZK60 Magnesium Alloy
- Mechanical Properties of Mg-Y-Zn Alloy Processed by Equal-Channel-Angular Extrusion
- High-Strain-Rate Superplasticity in an AZ91 Magnesium Alloy Processed by Ingot Metallurgy Route
- Grain Size Control of Commercial Wrought Mg-Al-Zn Alloys Utilizing Dynamic Recrystallizaiton
- Effect of Grain Refinement on Tensile Ductility ZK60 Magnesium Alloy under Dynamic Loading
- Processing of Ductile Magnesium Alloy under Dynamic Tensile Loading
- Improvement of Crashworthiness in Ultra Lightweight Metallic Foam by Heat-Treatment for Microstructural Modification of Base Material
- Structure of One-Dimensional Al-Co-Ni Quasicrystal Studied by Atomic-Scale Transmission Electron Microscopy
- Structural Changes of Precipitates by Aging of an Mg-4at%Dy Solid Solution Studied by Atomic-Scaled Transmission Electron Microscopy
- 火星隕石より発見されたオリビンの高圧分解組織
- Dislocations in Deformation Microstructure of Extruded MgYZn Alloy Studied by High-Angle Annular Detector Dark-Field Scanning Transmission Electron Microscopy (HAADF-STEM)
- Dislocations in Deformation Microstructure of Extruded Mg_Y_2Zn_1 Alloy Studied by High-Angle Annular Detector Dark-Field Scanning Transmission Electron Microscopy (HAADF-STEM)