Rchr
J-GLOBAL ID:200901097408165824   Update date: Sep. 17, 2024

Ozaki Kimihiro

オザキ キミヒロ | Ozaki Kimihiro
Affiliation and department:
Job title: Director
Homepage URL  (1): http://www.aist.go.jp/RESEARCHERDB/cgi-bin/worker_detail.cgi?call=namae&rw_id=K67453843
Research field  (3): Metals and resources production ,  Material fabrication and microstructure control ,  Structural and functional materials
Research keywords  (9): magnetic materials ,  粉末冶金 ,  通電焼結 ,  マイクロプラズマ ,  メカニカルアロイング 接合技術 ,  mechanical alloying ,  powder metallurgy ,  amorphous alloy ,  microdischarge
Papers (144):
  • Kizuku Kushimoto, Kaya Suzuki, Shingo Ishihara, Rikio Soda, Kimihiro Ozaki, Junya Kano. Analysis of the particle collision behavior in spiral jet milling. Advanced Powder Technology. 2023. 34. 5. 103993-103993
  • Tatsuya Kon, Hiroyuki Hosokawa, Nobuyoshi Imaoka, Kimihiro Ozaki. Coercivity of Fe-Mn powders prepared through hydrogen reduction of wet-process-synthesized oxide powders. JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS. 2022. 551
  • Kaoru Imaizumi, Asaya Fujita, Asuka Suzuki, Makoto Kobashi, Kimihiro Ozaki. Novel approach in fabricating microchannel-structured La(Fe,Si)13Hy magnetic refrigerant via low-contamination route using dissolutive mold. Materials & Design. 2022. 217. 110651-110651
  • Kaoru Imaizumi, Asaya Fujita, Asuka Suzuki, Makoto Kobashi, Kimihiro Ozaki. Microstructure and magnetocaloric property of homogeneous La(FexSi1-x)13 compounds fabricated by laser fusion using a powder mixture of Fe and LaySiz compounds. Journal of Alloys and Compounds. 2022. 901. 163706-163706
  • Kaoru Imaizumi, Asaya Fujita, Asuka Suzuki, Makoto Kobashi, Kimihiro Ozaki. Improvement of magnetocaloric effect in La(FexSi1-x)13 by dealing with inhibitory microstructures at high Fe concentration. Acta Materialia. 2022. 227. 117726-117726
more...
MISC (89):
  • 細川明秀, 高木健太, 尾崎公洋. Nd-Cu合金を添加したNd-Fe-Bナノコンポジット磁石の熱間加工による異方性化. 日本金属学会講演概要(CD-ROM). 2018. 163rd. ROMBUNNO.S7.37
  • 岡田周祐, 橋本龍司, 藤川佳則, 榎戸靖, 能出英里, 高木健太, 尾崎公洋. 還元拡散法の低温化と高保磁力なSm2Fe17N3微粉末の作製. 日本金属学会講演概要(CD-ROM). 2018. 163rd. ROMBUNNO.S7.9
  • 曽田力央, 高木健太, 尾崎公洋. 粒子法シミュレーションに基づくパルス磁場配向成形法の開発. 日本金属学会講演概要(CD-ROM). 2018. 163rd. ROMBUNNO.S7.6
  • 細川明秀, 高木健太, 尾崎公洋. 高圧ねじり加工によるNd-Fe-Ti-Bナノコンポジット磁石高性能化の試み. 日本金属学会講演概要(CD-ROM). 2018. 162nd. ROMBUNNO.281
  • 細川明秀, 高木健太, 尾崎公洋. 高圧ねじり加工によるNd-Fe-Bナノコンポジット磁石の粉末固化成形. 粉体粉末冶金協会講演大会(Web). 2018. 2018. ROMBUNNO.1-18A (WEB ONLY)
more...
Education (2):
  • Osaka University
  • 大阪大学大学院工学専攻
Professional career (1):
  • 博士(工学)
Association Membership(s) (3):
粉体粉末冶金協会 ,  日本金属学会 ,  The Japan Institute of Metals
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