Researchers

NAKAI Masaaki

NAKAI Masaaki
Professor
Faculty Department of Mechanical Engineering / Graduate School of Science and Engineering
Researchmap https://researchmap.jp/read0210540

Education and Career

Academic & Professional Experience

  • 2021 - Today , Kindai University Faculty of Science and Engineering Professor
  • 2016 - 2021 , Kindai University Faculty of Science and Engineering Associate Professor
  • 2010 - 2016 , Tohoku University Institute for Materials Research Associate Professor
  • 2007 - 2010 , Tohoku University Institute for Materials Research Assistant Professor
  • 2006 - 2007 , Tohoku University Institute for Materials Research Research Associate

Research Activities

Research Areas

  • Manufacturing technology (mechanical, electrical/electronic, chemical engineering), Machine materials and mechanics
  • Life sciences, Biomaterials
  • Life sciences, Biomedical engineering
  • Nanotechnology/Materials, Structural and functional materials

Published Papers

  1. Improvement of Work-Hardening Behavior of Co-Cr-W-Ni Alloy by Adding Mn/Fe for Balloon-Expandable Stents
    Kosuke Ueki; Kyosuke Ueda; Masaaki Nakai; Takayoshi Nakano; Takayuki Narushima
    Key Engineering Materials  967  , 115-120, 5, Dec. 2023 
  2. Effect of O addition on microstructure and mechanical properties of Ti-Nb alloys with various β stability
    Qiang Li; Yan Liu; Huanhuan Yu; Masaaki Nakai; Mitsuo Niinomi; Kenta Yamanaka; Akihiko Chiba; Takuya Ishimoto; Takayoshi Nakano
    Vacuum  215  , 112311-, Sep. 2023  , Refereed
  3. Investigation of the Influence of High-Pressure Torsion and Solution Treatment on Corrosion and Tribocorrosion Behavior of CoCrMo Alloys for Biomedical Applications
    Hakan Yilmazer; Ihsan Caha; Burak Dikici; Fatih Toptan; Murat Isik; Mitsuo Niinomi; Masaaki Nakai; Alexandra Cruz Alves
    Crystals  13  (4)  , 590-590, 30, Mar. 2023  , Refereed

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Books etc

  1. チタンの基礎と応用(新家光雄, 池田勝彦, 成島尚之, 中野貴由, 細田秀樹 編著) , 新家光雄; 仲井正昭 , 7.1節 溶解・鋳造 , 7.1節 溶解・鋳造 , 内田老鶴圃 , Mar. 2023
  2. Novel Structured Metallic and Inorganic Materials (Edited by Y. Setsuhara, T. Kamiya and S. Yamaura) , M. Niinomi; M. Nakai , (Chapter 30) Low-Young's-modulus materials for bio-medical applications , (Chapter 30) Low-Young's-modulus materials for bio-medical applications , Springer , 2019
  3. Novel Structured Metallic and Inorganic Materials (Edited by Y. Setsuhara, T. Kamiya and S. Yamaura) , M. Niinomi; M. Nakai , (Chapter 3) Ti-based biomedical alloys , (Chapter 3) Ti-based biomedical alloys , Springer , 2019

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Conference Activities & Talks

  1. Effect of Mg addition on mechanical and corrosive properties of biodegradable Fe-Mn alloy fabricated by mechanical alloying and spark plasma sintering , K. Ueki; R. Hirano; M. Nakai , Biomaterials International 2023 , Jul. 2023
  2. Wear properties of biomedical titanium alloys with dimple textured surface through laser processing , Masaaki Nakai; Takeshi Iwasaki; Kosuke Ueki , Thermec'2023 , Jul. 2023
  3. Improvement of work-hardening behavior of Co-Cr-W-Ni alloy by adding Mn / Fe for balloon-expandable stents , Kosuke Ueki; Kyosuke Ueda; Masaaki Nakai; Takayoshi Nakano; Takayuki Narushima , Thermec'2023 , Jul. 2023

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MISC

  1. 共振式平面曲げ疲労試験法による生体用β型チタン合金の疲労特性の評価 , 仲井正昭 , チタン , 69 , 238 , 241 , Jul. 2021
  2. 高濃度の固溶酸素を含有したβ型Ti-Nab-Ta-Zr系合金の変形挙動 , 仲井正昭; 新家光雄 , 軽金属学会研究部会報告書No.77「チタンの準安定相・析出相研究部会報告書」 , 46 , 54 , Oct. 2020
  3. (LMコラム)研究者としての原点回帰 , 仲井正昭 , 軽金属 , 70 , 572 , 2020

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Patents

  1. β型強化チタン合金、β型強化チタン合金の製造方法 , 塚原真宏, 遠所茂夫, 三坂佳孝, 仲井正昭, 新家光雄, 成田健吾 , 特許第6621196号
  2. 銀耐性菌又は銀感受性菌の判定方法、及び銀耐性菌又は銀感受性菌の判定キット , 翠川裕, 月井真郁賀, 仲井 正昭
  3. 抗菌性検査方法 , 翠川裕, 西野彩水, 仲井正昭, 新家光雄 , 特許第6406875号

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Awards & Honors

  1. 2020, 軽金属学会第19回軽金属躍進賞
  2. 2019, 大阪大学接合科学研究所2019年度接合科学共同利用・共同研究賞
  3. 2014, 第36回日本バイオマテリアル学会大会ハイライト講演

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Research Grants & Projects

  1. 日本学術振興会, 科学研究費助成事業 基盤研究(C), 生体用低弾性率チタン合金の超高疲労限度比発現の普遍化 , 近畿大学
  2. Japan Society for the Promotion of Science, Grants-in-Aid for Scientific Research, Open atmospheric nitridation on a metallic surface using laser irradiation , Kitami Institute of Technology
  3. 科学技術振興機構, 未来社会創造事業, 難接合材料の逆活用した接合/分離統合技術の確立 , 大阪大学

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