Rchr
J-GLOBAL ID:200901033317450714   Update date: Mar. 27, 2025

Sakka Yoshio

サッカ ヨシオ | Sakka Yoshio
Affiliation and department:
Job title: Emeritus Researcher
Research field  (4): Inorganic materials ,  Inorganic and coordination chemistry ,  Nanostructure physics ,  Nanostructure chemistry
Research keywords  (6): 粉体プロセス ,  ナノ粒子 ,  セラミックス ,  Powder processing ,  Nano particles ,  Ceramics
Research theme for competitive and other funds  (13):
  • 2019 - 2021 New Functional Ceramic Membranes Using Nanoporous Metals
  • 2015 - 2018 Fabrication of ultra-hightemperature boride ceramics with novel properties
  • 2014 - 2017 New fabrication of (Y,Gd)2O3:Tb3+ transparent ceramics using ultrafine monospheres
  • 2014 - 2016 Fabrication of high-performance ternary carbon nitride ceramics using ubiquitous elements
  • 2011 - 2013 Fabrication of Textured Hematite by Magnetic Field-Assisted Colloidal Processing and Characterization of Its Anisotropic Properties
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Papers (245):
  • Eiichi Sei, Ken-ichi Ikeda, Seiji Miura, Koji Morita, Tohru S. Suzuki, Yoshio Sakka. Effect of Porosity on High Temperature Compressive Behavior of Textured Ti<sub>3</sub>SiC<sub>2</sub> Bodies Prepared by Pressureless Sintering. Journal of the Japan Institute of Metals and Materials. 2024. 88. 11. 297-305
  • Johtaro MURAOKA, Ken-ichi IKEDA, Seiji MIURA, Koji MORITA, Tohru S. SUZUKI, Yoshio SAKKA. Fabrication of Textured Ti<sub>2</sub>AlC-MAX Phase Ceramic by Slip Casting under Strong Magnetic Field and Spark Plasma Sintering, and Its Crystal Orientation Dependence of Room Temperature Deformation Behavior. Journal of the Japan Society of Powder and Powder Metallurgy. 2024. 71. 7. 257-262
  • Yuji Shirakami, Ken-ichi Ikeda, Seiji Miura, Koji Morita, Tohru S. Suzuki, Yoshio Sakka. Orientation Dependence of High Temperature Compressive Behavior of Textured Ti<sub>3</sub>SiC<sub>2</sub>. Journal of the Japan Institute of Metals and Materials. 2024. 88. 7. 129-136
  • Yuji Shirakami, Ken-ichi Ikeda, Seiji Miura, Koji Morita, Tohru S. Suzuki, Yoshio Sakka. Orientation Dependence of High Temperature Compressive Behavior of Textured Ti<sub>3</sub>SiC<sub>2</sub>. MATERIALS TRANSACTIONS. 2023. 64. 4. 805-812
  • Yuji Shirakami, Ken-ichi Ikeda, Seiji Miura, Koji Morita, Tohru S. Suzuki, Yoshio Sakka. Orientation Dependence of Plastic Deformation Behavior and Fracture Energy Absorption Mechanism around Vickers Indentation of Textured Ti<sub>3</sub>SiC<sub>2</sub> Sintered Body. MATERIALS TRANSACTIONS. 2023. 64. 3. 650-656
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MISC (311):
Patents (3):
  • ビスマス固溶アンチモン酸
  • 高プロトン伝導性アンチモン酸膜とその製造方法
  • 単斜晶ジルコニア緻密焼結体とその製造方法
Education (3):
  • 1980 - 1983 Kyushu University Materials Science
  • 1978 - 1980 Kyushu University Nuclear Engineering
  • 1974 - 1978 Kyushu University School of Engineering Nuclear Enginering
Professional career (1):
  • Doctor of Engineering
Work history (7):
  • 2021/04 - 現在 National Institute for Materials Science Global Networking Division
  • 2016/04 - 2021/03 National Institute for Materials Science Senior Scientist
  • 2011/04 - 2016/03 National Institute for Materials Science Advanced Processing Unit Director
  • 2006/04 - 2011/03 National Institute for Materials Science Nano Ceramic Center Director
  • 2001 - :物質・材料研究機構インテリジェント材料グループ
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Awards (26):
  • 2018/05 - Japan Society of Powder and Powder Metallurgy JSPM Award for Inovatory Research Study of surface control of fluorescent Si nanoparticle
  • 2017/10 - American Ceramic Society Fellow
  • 2017 - European Ceramic Society Distinguished Fellow
  • 2015/05 - Ceramic Society of Japan CerSJ Award for Outstanding review Published in the Journal of The Ceramic Society of Japan Rudimental research progress of rare-earth silicate oxyapatites: their indentification as a new compound until discovery of their oxygen ion conductivity
  • 2015/05 - Ceramic Society of Japan CerSJ Fellow Awards
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Association Membership(s) (8):
無機マテリアルズ学会 ,  日本粉体粉末冶金協会 ,  日本セラミックス協会 ,  アメリカセラミックス学会 ,  Society of Inorganic Materials, Japan ,  Japanese Society of Powder & Powder Metallurgy ,  Ceramic society of Japan ,  American Ceramic Society
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