Rchr
J-GLOBAL ID:200901062093487005   Update date: Oct. 30, 2024

Nanko Makoto

ナンコウ マコト | Nanko Makoto
Affiliation and department:
Job title: Associate Professor
Homepage URL  (1): http://mcweb.nagaokaut.ac.jp/~nanko/home.htm
Research field  (3): Material fabrication and microstructure control ,  Inorganic materials ,  Metallic materials
Research keywords  (7): self-healing ceramics ,  焼結機構 ,  酸化物の高温物理化学 ,  金属の高温酸化 ,  Sintering Mechanism ,  High Temperature Physical Chemistry of Oxides ,  High Temperature Oxidation of Metals
Research theme for competitive and other funds  (24):
  • 2019 - 2022 A production method of Tc-99m medical radioactive isotopes by hot atoms and hydrated MoO3 porous targets
  • 2013 - 2016 Establishment of the Fabrication Method of Metallic Particles with Nano-rod Array Applied with Internal Oxidation
  • 2010 - 2012 Development of Microreactors with Nano Structures by ApplyingInternal Oxidation of Alloys
  • 2010 - 2012 Development of Si-free Sealing Technique for Solid Oxide Fuel Cells withLong-term Durability at High-temperatures
  • 2006 - 2007 Development of Metal/Ceramic Hybrids with High Temperature Oxidation Resistance improved by Grainboundary Controlling
Show all
Papers (40):
  • Phanuwat Khlaisongkhram, Yen-Ling Kuo, Makoto Nanko. High-Temperature Oxidation Behavior of 10 vol% AlN/Al<sub>2</sub>O<sub>3</sub> Composites. MATERIALS TRANSACTIONS. 2023. 64. 12. 2776-2781
  • Daisuke Maruoka, Makoto Nanko. High-temperature oxidation and self-healing behavior of SiC and Ni Co-dispersed into Al2O3 matrix composite. Ceramics International. 2023. 49. 17. 28629-28634
  • Naoya Yamaguchi, Toshio Osada, Yen-Ling Kuo, Makoto Nanko. Influence of cutting damage on the bending strength of Ti<sub>2</sub>AlC MAX phase machinable ceramics. Journal of the Ceramic Society of Japan. 2023. 131. 4. 62-71
  • Kensei KANEKO, Kenyo SHINADA, Naoya YAMAGUCHI, Yen-Ling KUO, Makoto NANKO. Consideration of Changes in Mechanical Properties of Ti<sub>3</sub>AlC<sub>2</sub> Ceramics by Electrical Discharge Machining. Journal of The Japan Society of Electrical Machining Engineers. 2023. 57. 146. 89-89
  • Phanuwat Khlaisongkhram, Yen Ling Kuo, Makoto Nanko, Daisuke Maruoka. High-Temperature Oxidation Behavior of Ni/Al2O3 Composites with Various Ni Content. Materials Transactions. 2023. 64. 4. 914-919
more...
MISC (187):
  • 飯田慎也, 郭妍伶, 南口誠. 大気中800°Cにおける(Ti,Nb)2AlCの酸化皮膜形成メカニズム. 日本金属学会講演大会(Web). 2024. 174th
  • 松下開智, 郭妍伶, 南口誠. Alloy718の高温硬さと耐摩耗性に及ぼす低活量Al+Si同時パックセメンテーションの影響. 日本金属学会講演大会(Web). 2024. 174th
  • グエン ティフォン, 郭妍伶, 南口誠, ソログーッド ゴードン, ズ アラン, ドウ ティマイズン, 末松久幸. Influences of electron irradiation dose on the self-healing and oxidation behavior of SiC-dispersed yttrium silicate composites. 日本金属学会講演大会(Web). 2024. 174th
  • 福田千遥, 郭妍伶, 南口誠. Cr2O3焼結体の静疲労挙動に及ぼす温度と水蒸気の影響. 日本金属学会講演大会(Web). 2024. 174th
  • 藤田恕誠, 郭妍伶, 南口誠. 1000°CにおけるCrNbO4に係る相関係. 日本金属学会講演大会(Web). 2024. 174th
more...
Patents (13):
Books (1):
  • Poroves Materials(jointly worked )
    Kluwer Academic Publishers 1998
Works (1):
  • A Containerless Processing Method for Materials Under a State of Compensated-Gravitation and an Apparatus (patend Pending, US, UK, Germany and France)(共著)
    1992 -
Education (4):
  • - 1995 Nagaoka University of Technology
  • - 1995 Nagaoka University of Technology Graduate School, Division of Engineering
  • - 1990 Nagaoka University of Technology Faculty of Engineering
  • - 1990 Nagaoka University of Technology Faculty of Engineering
Professional career (1):
  • Docter(Engineering) (Nagaoka University of Technology)
Work history (3):
  • 1995 - 2001 Tokyo Institute of Technology
  • 1995 - 2001 Assistant Professor, Tokyo Institute of
  • Technology
Awards (2):
  • 2014/04 - 文部科学省 文部科学大臣表彰科学技術部門(理解増進部門) 技術を科学する技学の劇空間的手法による理解増進
  • 2000 - 日本金属学会奨励賞
Association Membership(s) (8):
The American Ceramic Socirty ,  THE JAPAN SOCIETY OF MECHANICAL ENGINEERS ,  JAPAN SOCIETY OF CORROSION ENGINEERING ,  THE ELECTROCHEMICAL SOCIETY OF JAPAN ,  JAPAN SOCIETY OF POWDER AND POWDER METALLURGY ,  The Electrochemical Society ,  The Ceramic Society of Japan ,  THE JAPAN INSTITUTE OF METALS AND MATERIALS
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