首页|Mechanical and tribological properties of (FeCoNi)88-x(AlTi)12Mox high-entropy alloys

Mechanical and tribological properties of (FeCoNi)88-x(AlTi)12Mox high-entropy alloys

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? 2022 Elsevier LtdIn this study, we designed and prepared (FeCoNi)88-x(AlTi)12Mox high-entropy alloys (HEAs) with good comprehensive properties by vacuum arc melting technology. The influence of Mo content on the microstructure, mechanical properties, and tribological properties of the HEAs were systematically studied. The results showed that all HEAs in this study are simple fcc solid solution structure, all HEAs are composed of γ + γ' phase, and they are in a coherent relationship. The tensile test results show that all the HEAs exhibit excellent strength-ductility combination, and the final tensile fracture mechanism is a ductile fracture. Mo1.0 HEA has the best comprehensive mechanical properties, with the yield strength, tensile strength, and elongation of 980 MPa, 1260 MPa, and 34.5%, respectively. The reciprocating friction and wear test results show that the HEAs have excellent friction and wear properties. Compared with the four HEAs, the order of friction and wear properties from good to poor is Mo1.0 HEA, Mo1.5 HEA, Mo0.5 HEA, and Al6Ti6 HEA. The wear mechanisms of all HEAs are abrasive wear and oxidation wear, as well as the Al6Ti6 and Mo1.0 HEAs also have delamination wear.

Friction and wear propertiesMulti-component high-entropy alloysStrength-ductility trade-offγ' precipitates

Liang C.、Wang C.、Zhang K.、Liang M.、Xie Y.、Liu W.、Yang J.、Tan H.、Zhou S.

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School of Materials Science and Engineering Guangxi Key Laboratory of Information Materials Engineering Research Center of Electronic Information Materials and Devices Ministry of Education Guilin University of Electronic Technology

Affiliated Hospital of Guilin Medical University

Institute of advanced wear & corrosion resistance and functional materials Jinan university

2022

International Journal of Refractory Metals & Hard Materials

International Journal of Refractory Metals & Hard Materials

SCI
ISSN:0263-4368
年,卷(期):2022.105
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