Personnel Information

写真a

UEKI Kosuke


Job title

Associate Professor

Homepage URL

https://www.lbb.iir.isct.ac.jp/met/

Research Areas, Keywords

Biomedical metallic materials, Thermomechanical treatment, microstructure control, powder metallurgy

Field Introduction URL

https://www.lbb.iir.isct.ac.jp/met/

Graduating School 【 display / non-display

  • Tohoku University, Faculty of Engineering, 2014.03, Graduated

Graduate School 【 display / non-display

  • Tohoku University, Graduate School, Division of Engineering, Master's Course, 2016.03, Completed

  • Tohoku University, Graduate School, Division of Engineering, Doctor's Course, 2019.03, Completed

Campus Career 【 display / non-display

  • 2026.04
    -
    Now
    Institute of Science Tokyo, -, Institute of Integrated Research, Division of Biomedical Materials, Department of Metallic Biomaterials, Associate Professor

External Career 【 display / non-display

  • 2019.04
    -
    2022.03
    , Assistant Professor
  • 2022.04
    -
    2025.03
    , Junior Associate Professor
  • 2024.04
    -
    2024.09
    , Visiting Lecturer
  • 2025.04
    -
    2026.03
    , Associate Professor
  • 2026.09
    -
    Now
    , Visiting Lecturer

Research Areas 【 display / non-display

  • Material processing and microstructure control

  • Structural materials and functional materials

  • Biomaterials

 

Published Papers & Misc 【 display / non-display

  1. Formation of unique heterogeneous microstructure in biomedical Co-Cr-W-Ni-C alloys by mechanical milling and heat treatment processes 2025.07; 1036 181631. ( DOI )

  2. Co-Cr-W-Pt alloys with high X-ray visibility for next-generation balloon-expandable stents 2025.06; 931 148216. ( DOI )

  3. Effects of Dimple Surface Texturing on Wear Characteristics of Commercially Pure Ti in Comparison with Ti-6Al-4V ELI and Ti-29Nb-13Ta-4.6Zr Alloys for Dental Applications 2025.05; 66 (5): 577-583. ( DOI )

  4. Effects of Fe addition on the mechanical and corrosive properties of biomedical Co-Cr-W-Ni alloys for balloon-expandable stents 2024.12; 160 106714. ( DOI )

  5. Vibration absorption of as-built and post-heat-treated Ti-6Al-4V alloy fabricated by laser powder bed fusion additive manufacturing 2024.09; 34 (3): 1963. ( DOI )

  6. Exceptional balance of strength and ductility in biomedical Co–Cr–W–Ni alloy with added carbon 2024.08; 908 146722. ( DOI )

  7. Probing plastic deformation-related properties in static recrystallized Co–Cr–Fe–Ni–Mo alloy for biomedical applications 2024.05; 899 146458. ( DOI )

  8. Improvement of Work-Hardening Behavior of Co-Cr-W-Ni Alloy by Adding Mn/Fe for Balloon-Expandable Stents 2023.12; 967 115-120. ( DOI )

  9. Development of biodegradable Fe-Mn-Mg alloys by mechanical alloying and spark plasma sintering 2023.03; 34 105465. ( DOI )

  10. Improvement of mechanical properties of Co–Cr–W–Ni alloy tube suitable for balloon-expandable stent applications through heat treatment 2023.01; 862 144505. ( DOI )

  11. Effect of titanium plate stiffness on bone healing in rabbit femur 2022.12; 9 (6): 22-00282. ( DOI )

  12. TOUGH YET FLEXIBLE SUPERELASTIC ALLOYS MEET BIOMEDICAL NEEDS 2022.10; 180 (7): 35-37.

  13. Effect of low modulus titanium plate fixation on rabbit femur bone healing 2022.06; 37 2536-2545. ( DOI )

  14. Flexible and Tough Superelastic Co‐Cr Alloys for Biomedical Applications 2022.05; 34 (27): 2202305. ( DOI )

  15. Differences in the effect of surface texturing on the wear loss of β-type Ti–Nb–Ta–Zr and (α+β)-type Ti–6Al–4V ELI alloys in contact with zirconia in physiological saline solution 2021.09; 124 104808. ( DOI )

  16. Development of Low-Yield Stress Co–Cr–W–Ni Alloy by Adding 6 Mass Pct Mn for Balloon-Expandable Stents 2021.07; 52 (9): 4137-4145. ( DOI )

  17. Improvement of Mechanical Properties by Microstructural Evolution of Biomedical Co–Cr–W–Ni Alloys with the Addition of Mn and Si 2021.02; 62 (2): 229-238. ( DOI )

  18. Improvement of Strength and Ductility by Combining Static Recrystallization and Unique Heat Treatment in Co-20Cr-15W-10Ni Alloy for Stent Application 2021.01; 1016 1503-1509. ( DOI )

  19. K. Ueki, M. Kasamatsu, K. Ueda, Y. Koizumi, D. Wei, A. Chiba, T. Narushima. Precipitation during γ-ε phase transformation in biomedical Co-Cr-Mo alloys fabricated by electron beam melting Metals. 2020.01; 10 (1): 1-13. ( DOI )

  20. Kosuke Ueki, Soh Yanagihara, Kyosuke Ueda, Masaaki Nakai, Takayoshi Nakano, Takayuki Narushima. Overcoming the strength-ductility trade-off by the combination of static recrystallization and low-temperature heat-treatment in Co-Cr-W-Ni alloy for stent application Materials Science and Engineering A. 2019.10; 766 138400. ( DOI )

  21. Ueki Kosuke, Abe Mai, Ueda Kyosuke, Nakai Masaaki, Nakano Takayoshi, Narushima Takayuki. Synchronous improvement in strength and ductility of biomedical Co-Cr-Mo alloys by unique low-temperature heat treatment MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING. 2019.01; 739 53-61. ( DOI )

  22. Heterogeneous microstructures and corrosion resistance of biomedical Co-Cr-Mo alloy fabricated by electron beam melting (EBM) 2018.12; 24 103-114. ( DOI )

  23. Kosuke Ueki, Kyosuke Ueda, Masaaki Nakai, Takayoshi Nakano, Takayuki Narushima. Microstructural changes during plastic deformation and corrosion properties of biomedical Co-Cr-W-Ni alloy heat-treated at 873 K Metallurgical and Materials Transactions A. 2018.06; 49 (6): 2393-2404. ( DOI )

  24. Microstructure and Mechanical Properties of Heat-Treated Co-20Cr-15W-10Ni Alloy for Biomedical Application 2016.06; 47A (6): 2773-2782. ( DOI )

  25. K. Ueki, K. Ueda, T. Narushima. Microsturucture, tensile properties and corrosive properties of ASTM F90 Co-20Cr-15W-10Ni alloys Proceedings of 24thInternational Symposium of Processing and Fabrication of Advanced Materials, PFAM XXIV. 2015.12; 50-58.

  26. K. Ueki, K. Ueda, T. Narushima. Effect of heat treatment of the microstructure and mechanical properties of biomedical Co-20Cr-15W-10Ni alloy Proceedings of the Biomaterials International Conference 2015. 2015.06; 1182.

  27. Effects of Precipitates and Albumin in Simulated Body Fluids on Pin-on-Disk Wear Behavior of Biomedical Co-Cr-Mo Alloys 2015.06; 57 (12): 2054-2059. ( DOI )

  28. Changes in Microstructure of Biomedical Co-Cr-Mo Alloys during Aging at 973 to 1373 K 2015.06; 57 (12): 2048-2053. ( DOI )

  29. Precipitate phases and mechanical properties of heat-treated ASTM F 90 Co-Cr-W-Ni alloy 2014.06; 616 258-262. ( DOI )

▼display all

Conference Activities & Talks 【 display / non-display

  1. Mechanical and corrosive properties of Co-Cr-Pt-W-Fe alloy for next-generation balloon-expandable stent. 2025.11.05

  2. Kosuke Ueki, Tomoki Nakajima, Kyosuke Ueda, Masaaki Nakai, Takayuki Narushima. Fabrication of Co-Cr-W-Ni alloys with a unique heterogeneous microstructure utilizing carbide precipitation. THERMEC'2025 International Conference on Processing, Fabrication, Properties, Application 2025.07.03

  3. Masaaki Nakai, Kosuke Ueki, Takahisa Shiraishi, Takanori Kiguchi. High fatigue limit / tensile strength ratio of beta-type Ti-Cr alloy for biomedical applications. THERMEC'2025 International Conference on Processing, Fabrication, Properties, Application 2025.06.30

  4. Kosuke Ueki, Akira Hida, Kyosuke Ueda, Masaaki Nakai, Takayuki Narushima. Development of high-performance Co-Cr based alloy for next-generation balloon-expandable stent. International Conference on Materials Science, Engineering and Technology 2024.09.11

  5. Kai Hiyama, Kosuke Ueki, Kyosuke Ueda, Takayuki Narushima. Effect of Ni and Fe content on microstructure and mechanical properties of biomedical Co-Cr-Fe-Ni-Mo alloy. The 11th Pacific Rim International Conference on Advanced Materials and Processing 2023.11.20

  6. Effect of Mg addition on mechanical and corrosive properties of biodegradable Fe-Mn alloy fabricated by mechanical alloying and spark plasma sintering. 2023.08.01

  7. Wear properties of biomedical titanium alloys with dimple textured surface through laser processing. 2023.07.06

  8. Improvement of work-hardening behavior of Co-Cr-W-Ni alloy by adding Mn / Fe for balloon-expandable stents. 2023.07.05

  9. ノルアイン アブドラ, 宮崎 大輔, 山本 衛, 植木 洸輔, 仲井 正昭. 初期治癒段階における骨形成に及ぼすインプラントプレートと骨と弾性率差の影響. 公益社団法人 日本金属学会 2022年春期(第170回)講演大会 2022.03.22

  10. Improvement of strength and ductility by combining static recrystallization and unique heat treatment in Co-20Cr-15W-10Ni alloy for stent application. 2021.06.05

  11. ノルアイン アブドラー, 仲井 正昭, 植木 洸輔, 川村 勇樹, 山本 衛, 新家 光雄. Effects of Young's modulus difference of titanium alloys and bone on bone formation. 日本金属学会2019年秋期講演大会(第165回) 2019.09.12

  12. FATIN NABILAH BINTI SAPARI, 仲井 正昭, 植木 洸輔, 瀧口 功大, 大津 直史. Effect of Laser Nitriding Process Repetition on Surface Hardening of Ti-6Al-4V ELI. 日本金属学会2019年秋期講演大会(第165回) 2019.09.11

  13. Kosuke Ueki, Kyosuke Ueda, Masaaki Nakai, Takayoshi Nakano, Takayuki Narushima. Changes in microstructure during deformation in ASTM F90 Co-20Cr-15W-10Ni alloy for biomedical application. 2017 Joint symposium on the Materials Science and Engineering (MSE) for the 21st Century 2017.06.26

  14. K. Ueki, K. Ueda, M. Nakai, T. Narushima. Microstructure change during deformation of biomedical Co-Cr-W-Ni alloy. 2017 Japan-Russia Joint Seminar, Advanced Materials: Synthesis, Process and Nanostructures 2017.03.22

  15. K. Ueki, K. Ueda, T. Narushima. Tensile properties and corrosion resistance of heat-treated Co-20Cr-15W-10Ni alloy for stent application. 2016 Joint symposium on the Materials Science and Engineering (MSE) for the 21st Century 2016.08.29

  16. T. Narushima, K. Ueki, K. Hara, K. Ueda. Precipitates and mechanical properties of metallic biomaterials. International Conference on Processing & Manufacturing of Advanced Materials (THERMEC’ 2016) 2016.05.31

  17. K. Ueki, K. Ueda, T. Narushima. Microstructure, tensile properties, and corrosion resistance of ASTM F90 Co-20Cr-15W-10Ni alloy heat-treated at 673 to 1623 K. 24thInternational Symposium of Processing and Fabrication of Advanced Materials, PFAM XXIV 2015.12.19

  18. K. Ueki, K. Ueda, T. Narushima. Effect of heat treatment on the microstructure and mechanical properties of biomedical Co-20Cr-15W-10Ni alloy. Biomaterials International 2015 2015.06.02

  19. S. Nunome, H. Kanetaka, K. Ueda, K. Ueki, T. Narushima. Corrosion Resistance of Zr-ion Plationg Ni-Ti Alloys in Fluoride-containing Environments. International Association for Dental Research General Session & Exhibition 2015.03.14

  20. K. Ueki, K. Ueda, T. Narushima. Precipitates and mechanical properties of heat-treated Co-Cr-W-Ni alloy (L605) for stent application. 9th International Workshop on Biomaterials in Interface Science 2014.08.27

▼display all

 

Campus class subject 【 display / non-display

  • Applied Biomaterials,2026 - Now

  • Advanced Biomaterials Science,2026 - Now

External class subject 【 display / non-display

  • Plastic forming,Kindai University