Feng Cong, Wang Xueliang, Yang Li, Guo Yongli, Wang Yaping
MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, School of Physics, Xi'an Jiaotong University, Xi'an 710049, China.
MOE Key Laboratory of Thermo-Fluid Science and Engineering, School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
Materials (Basel). 2022 Oct 5;15(19):6896. doi: 10.3390/ma15196896.
High-entropy alloys (HEAs) with high hardness are promising materials for advanced industrial manufacturing. In this study, the AlCrFeNiV HEA was designed and successfully prepared using a plasma instantaneous process. The hardness test showed that AlCrFeNiV had a high hardness of 1076 ± 15 HV, which was much higher than those reported in the literature. The microstructure of AlCrFeNiV was composed of two different types of body-centered cubic (BCC) structures, BCC1 (Al, Cr, Fe, and Ni) and BCC2 (enriched V and Cr). A mixture of different BCC systems produced solution strengthening, which was responsible for the superior hardness. Moreover, the reciprocating sliding wear behavior of HEA against AlO balls under dry and lubricated conditions at ambient temperature was investigated. The wear rates of AlCrFeNiV against AlO under dry wear and lubrication were 17.2 × 10 mm N·m and 12.4 × 10 mmN·m, respectively, which were of the same order of magnitude as the wear rates of BCC HEAs. Regardless of the dry wear or wear with lubrication, the wear mechanism of the HEA was abrasive and delamination wear.
具有高硬度的高熵合金(HEAs)是先进工业制造领域中很有前景的材料。在本研究中,设计并采用等离子体瞬时工艺成功制备了AlCrFeNiV高熵合金。硬度测试表明,AlCrFeNiV具有1076±15 HV的高硬度,远高于文献报道的硬度。AlCrFeNiV的微观结构由两种不同类型的体心立方(BCC)结构组成,即BCC1(Al、Cr、Fe和Ni)和BCC2(富含V和Cr)。不同BCC体系的混合产生了固溶强化,这是其具有优异硬度的原因。此外,还研究了高熵合金在室温下干燥和润滑条件下与AlO球的往复滑动磨损行为。AlCrFeNiV在干磨和润滑条件下与AlO的磨损率分别为17.2×10⁻⁶mm³/N·m和12.4×10⁻⁶mm³/N·m,与BCC高熵合金的磨损率处于同一数量级。无论干磨还是润滑磨损,高熵合金的磨损机制均为磨粒磨损和分层磨损。