Avila-Salgado Denis Ariel, Juárez-Hernández Arturo, Lara Banda María, Bedolla-Jacuinde Arnoldo, Guerra Francisco V
Facultad de Ingeniería Mecánica y Eléctrica (FIME), Universidad Autónoma de Nuevo León, Av. Universidad S/N, San Nicolás de los Garza 66450, Mexico.
Centro de Investigación e Innovación en Ingeniería Aeronáutica (CIIIA), Facultad de Ingeniería Mecánica y Eléctrica (FIME), Universidad Autónoma de Nuevo León, Carretera a Salinas Victoria Km. 2.3, Apodaca 66600, Mexico.
Entropy (Basel). 2022 Aug 26;24(9):1195. doi: 10.3390/e24091195.
In this research, a set of CuNiCrSiCoTi (H-0Nb), CuNiCrSiCoTiNb (H-0.5Nb) and CuNiCrSiCoTiNb (H-1Nb) high-entropy alloys (HEAs) were melted in a vacuum induction furnace. The effects of Nb additions on the microstructure, hardness, and wear behavior of these HEAs (compared with a CuBe commercial alloy) in the as-cast (AC) condition, and after solution (SHT) and aging (AT) heat treatments, were investigated using X-ray diffraction, optical microscopy, and electron microscopy. A ball-on-disc configuration tribometer was used to study wear behavior. XRD and SEM results showed that an increase in Nb additions and modification by heat treatment (HT) favored the formation of BCC and FCC crystal structures (CS), dendritic regions, and the precipitation of phases that promoted microstructure refinement during solidification. Increases in hardness of HEA systems were recorded after heat treatment and Nb additions. Maximum hardness values were recorded for the H-1Nb alloy with measured increases from 107.53 HRB (AC) to 112.98 HRB, and from 1104 HV to 1230 HV (aged for 60 min). However, the increase in hardness caused by Nb additions did not contribute to wear resistance response. This can be attributed to a high distribution of precipitated phases rich in high-hardness NiSiTi and CrSi. Finally, the H-0Nb alloy exhibited the best wear resistance behavior in the aged condition of 30 min, with a material loss of 0.92 mm.
在本研究中,一组CuNiCrSiCoTi(H-0Nb)、CuNiCrSiCoTiNb(H-0.5Nb)和CuNiCrSiCoTiNb(H-1Nb)高熵合金(HEAs)在真空感应炉中熔炼。使用X射线衍射、光学显微镜和电子显微镜研究了添加Nb对这些高熵合金(与一种CuBe商业合金相比)在铸态(AC)、固溶(SHT)和时效(AT)热处理后的微观结构、硬度和磨损行为的影响。采用销盘式摩擦磨损试验机研究磨损行为。XRD和SEM结果表明,增加Nb添加量并通过热处理(HT)改性有利于形成体心立方(BCC)和面心立方(FCC)晶体结构、枝晶区域以及在凝固过程中促进微观结构细化的相析出。热处理和添加Nb后,高熵合金体系的硬度有所增加。H-1Nb合金的硬度值最高,测量值从107.53 HRB(铸态)增加到112.98 HRB,从1104 HV增加到1230 HV(时效60分钟)。然而,添加Nb导致的硬度增加对耐磨性能没有贡献。这可归因于富含高硬度NiSiTi和CrSi的析出相分布较高。最后,H-0Nb合金在30分钟时效条件下表现出最佳的耐磨性能,材料损失为0.92毫米。