五元
高熵合金
合金
材料科学
熵(时间箭头)
原子半径
热力学
冶金
化学
物理
有机化学
作者
Tadaaki Matsuzaka,Akira Hyakubu,Yong Seong Kim,Aira Matsugaki,Takeshi Nagase,Takuya Ishimoto,Ryosuke Ozasa,Hyoung Seop Kim,Tomoji Mizuguchi,Ozkan Gokcekaya,Takayoshi Nakano
标识
DOI:10.1016/j.matchemphys.2024.129120
摘要
A super-high-entropy alloy (SHEA) with ΔSmix > 2.0R (where R is the gas constant) was designed to produce metallic materials with superior mechanical properties to conventional alloys. As an alternative to conventional quinary high-entropy alloys (HEAs), herein, octonary SHEAs for biomedical applications (BioSHEA) are proposed for the first time, and the TiNbTaZrMoHfWCr BioSHEA was fabricated. Arc-melted BioSHEA exhibited an extremely high yield strength of 1953 ± 84 MPa, which was approximately 500 MPa higher than that of the quinary TiNbTaZrMo BioHEA. This yield strength is considerably higher than that estimated by the rule of mixtures for pure metals, confirming the achievement of significant solid-solution strengthening induced by a supermulticomponent solid solution composed of elements with different atomic radii. Its biocompatibility was comparable to that of pure Ti and quinary BioHEA, and superior to that of SUS316L. This study demonstrates the validity of a novel entropy-based guideline for increasing the mixing entropy to achieve metallic materials with ultrahigh strength.
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