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2023 年度 実施状況報告書

Microstructure control of biocompatible BCC high entropy alloys for achieving bone-like Young's modulus

研究課題

研究課題/領域番号 23K13574
研究機関横浜国立大学

研究代表者

THIRATHIPVIWAT PRAMOTE  横浜国立大学, 大学院工学研究院, 助教 (80965822)

研究期間 (年度) 2023-04-01 – 2025-03-31
キーワードHigh entropy alloy / Medium entropy alloy / Texture / Biomedical material / Hot deformation / Elastic modulus / Microstructure
研究実績の概要

A new single-BCC NbTiZr-based medium entropy alloy with additions of Cr and Mo was developed for biomedical implants. The alloy presents low density (~6.6 g/cm^3), high yield strength (~950 MPa) as well as non-cytotoxic based on a study of cell viability. A further reduction of Young’s modulus close to human bone is controlled by a development of <001> preferential dynamic grain growth via a high temperature uniaxial compression. Based on current result, the dynamic grain growth was observed, but texture was not distinctively developed. The larger volume fraction of <001> texture leads to lower Young's modulus. The alloy could be fabricated to have the lowest Young’s modulus at ~70 GPa. The result indicates that the alloy can be potentially developed for the biomedical applications.

現在までの達成度 (区分)
現在までの達成度 (区分)

2: おおむね順調に進展している

理由

The microstructure and texture development of NbTiZr-based MEA with additions of Cr and Mo through hot deformation was successfully characterized and understood. Although the Young's modulus could be reduced, the <001> preferential dynamic grain growth was not sharply developed for significantly reducing the Young's modulus. It indicates that grain boundary migration and <001> preferential dynamic grain growth were not highly activated under current process conditions. Moreover, the sluggish diffusion resulted from mutual interactions of compositional elements is considered to retard the grain growth. The results and outcomes can provide a key solution for designing new process conditions and alloy compositions in order to achieving bone-like Young's modulus.

今後の研究の推進方策

To drive the <001> preferential dynamic grain growth in BCC medium-high entropy alloys, the new alloy compositions with new trace element (Ta) will be conducted with hot uniaxial compression under potential process conditions. The addition of new trace element (Ta) is expected to increase grain boundary migration and enable the <001> preferential dynamic grain growth. The process conditions should be properly designed for driving the distinctive texture development. Moreover, the biocompatibility examinations will be conducted on the new alloys. The best alloy composition and process conditions can be suggested for being used as biomedical implant.

  • 研究成果

    (2件)

すべて 2023 その他

すべて 国際共同研究 (1件) 学会発表 (1件) (うち国際学会 1件)

  • [国際共同研究] Vellore Institute of Technology/Amrita Vishwa Vidyapeetham(インド)

    • 国名
      インド
    • 外国機関名
      Vellore Institute of Technology/Amrita Vishwa Vidyapeetham
  • [学会発表] Hot deformation behaviors of newly developed 30Nb5Ta30Ti15V20Zr high entropy alloy2023

    • 著者名/発表者名
      Pramote Thirathipviwat, Makoto Hasegawa, Yusuke Onuki, Shigeo Sato
    • 学会等名
      he International Conference on Applied Physics and Materials Applications (ICAPMA2023)
    • 国際学会

URL: 

公開日: 2024-12-25  

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