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J-GLOBAL ID:201301080720144837   Update date: Apr. 03, 2024

Yorinobu Takigawa

タキガワ ヨリノブ | Yorinobu Takigawa
Affiliation and department:
Homepage URL  (1): http://www2.mtr.osakafu-u.ac.jp/
Research field  (1): Material fabrication and microstructure control
Research keywords  (30): 電解析出法 ,  第一原理計算 ,  均質化 ,  バルクナノ結晶材料 ,  Ni基バルクナノ結晶材料 ,  偏析エネルギー ,  Ni-W合金 ,  粒界アモルファス相 ,  高延性 ,  内部応力 ,  電流密度最適化 ,  粒界エネルギー ,  高強度 ,  粒界偏析 ,  浴組成最適化 ,  機能性薄膜 ,  EXAFS ,  過冷却液体 ,  その場観察 ,  せん断帯 ,  透過型電子顕微鏡 ,  結晶・組織制御 ,  界面 ,  ナノ結晶 ,  弾性特異点 ,  摩擦攪拌プロセス ,  走査透過型電子顕微鏡 ,  高エネルギーX線 ,  超塑性 ,  摩擦攪拌接合
Research theme for competitive and other funds  (13):
  • 2022 - 2025 Fabrication of high strength and ductile alloys by controlling crystal growth mode in electrodeposition using deep eutectic solvents
  • 2021 - 2025 蹴り出し推進型短下肢装具の開発-中足指節関節の伸曲両立性を担保できるソール素材-
  • 2019 - 2022 Fabrication of electrodeposited Al alloys with high strength and high ductility by controlling ion adsorption behavior and crystal growth mode
  • 2016 - 2018 Fabrication of electrodeposited bulk nanocrystalline Al alloys with high strength and ductility without working and heat treatment process
  • 2015 - 2018 Development of low-Ag solder alloy with excellent creep resistance utilizing constitutive equation
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Papers (163):
  • Yasuhiro Terasaki, Takafumi Mochizuki, Junpei Kobata, Takahisa Yamamoto, Yorinobu Takigawa. Effect of Additional Element on Local Mechanical Properties of High Purity Aluminum Alloys by Nanoindentation. Journal of the Japan Institute of Metals and Materials. 2023. 87. 7. 219-225
  • A. Watanabe, T. Yamamoto, R. Miyamoto, Y. Takigawa. Microstructure and tensile strength of electrodeposited Fe-rich bcc FeCoNi medium-entropy alloys. Materials Science and Technology. 2023. 39. 15. 2028-2034
  • Atsuya Watanabe, Takahisa Yamamoto, Koichiro Nambu, Yorinobu Takigawa. Grain Growth Behavior in Electrodeposited Nanocrystalline FeCoNi Medium-entropy Alloy. 28th IFHTSE 2023 Congress. 2023
  • Atsuya Watanabe, Takahisa Yamamoto, Yorinobu Takigawa. Tensile strength of nanocrystalline FeCoNi medium-entropy alloy fabricated using electrodeposition. Scientific Reports. 2022. 12. 1
  • Masaki Tahara, Nao Otaki, Daichi Minami, Tokuteru Uesugi, Yorinobu Takigawa, Kenji Higashi, Tomonari Inamura, Hideki Hosoda. New dislocation dissociation accompanied by anti-phase shuffling in the α′′ martensite phase of a Ti alloy. Acta Materialia. 2022. 227. 117705-117705
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MISC (73):
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Work history (2):
  • 2018/04 - 現在 Osaka Prefecture University Graduate School of Engineering
  • 2004/04 - 2018/03 Osaka Prefecture University
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