4.5 Article

New TiTaNbZrMo high-entropy alloys for metallic biomaterials

期刊

MATERIALS RESEARCH EXPRESS
卷 8, 期 10, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/2053-1591/ac2f0b

关键词

alloy design; high-entropy alloys; mechanical property; biomaterials

资金

  1. scientific research fund project of Shaanxi Polytechnic Institute [2020-10]
  2. Science and technology innovation project of Shaanxi Polytechnic Institute [2021YKZX-001]

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High entropy alloys, such as the Ti-30(NbTaZr)(60)Mo-10 alloy, demonstrate excellent comprehensive properties and show potential for use in biomedical applications due to their good mechanical performance and wear and corrosion resistance demonstrated in experiments.
The advantages of high entropy alloy with good comprehensive properties provide a potential opportunity to explore and develop new alloys suitable for human implantation. In this experiment, TiTaNbZrMo high entropy alloy was designed and prepared by alloy design and first principle. The calculation results predict that the phase composition of each high entropy alloy is BCC structure, and the designed high entropy alloy has structural stability; the non-equal atomic ratio TiNbTaZrMo high-entropy alloy has higher ductility than the equal atomic ratio TiNbTaZrMo high-entropy alloy; the B/G, Poisson's ratio upsilon and (C (12)-C (44)) values of Ti-30(NbTaZr)(60)Mo-10 alloy are the largest, indicating that the toughness of this alloy is the best, and the Young's modulus value is the smallest. The experimental results show that the yield strength of Ti-30(NbTaZr)(60)Mo-10 alloy is 1132 MPa, the plastic strain is 33%, and the wear resistance and corrosion resistance are good. The potential of Ti-30(NbTaZr)(60)Mo-10 in biological field is proved by calculation and experimental test, which provides an important basis for its industrial application in biomedical alloy.

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