材料科学
微观结构
冶金
高熵合金
工业化学
电化学
材料加工
金属
电极
物理化学
工程类
化学
生化工程
制造工程
作者
Hocheol Song,Seongi Lee,Kwang-Min Lee
标识
DOI:10.24425/amm.2020.133692
摘要
The present study investigated various thermodynamic parameters, microstructures and electrochemical behaviors of TiMoVCrZr and Ti-rich TiMoVCrZr high-entropy alloys (HEAs) prepared by vacuum arc remelting.The microstructures of the alloys were analyzed using X-ray diffraction (XRD) analysis, field emission scanning electron microscopy (FE-SEM), and potentiodynamic polarization tests.The determined thermodynamic values of the Ω-parameter and the atomic size difference (δ) for the HEAs were determined to be in the range of Ω ≥ 1.1, and δ ≤ 6.6% with valance electron configuration (VEC) ≤ 5.0, suggesting the HEAs were effective at forming solid solutions.XRD patterns of the equiatomic Ti 20 Mo 20 V 20 Cr 20 Zr 20 HEA revealed four phases consisting of the body centered cubic 1 (BCC 1 ), BCC 2 , hexagonal close-packed (HCP), and intermetallic compound Cr 2 Zr phases.Three phases were observed in the XRD patterns of Ti-rich Ti 40 Mo 15 V 15 Cr 15 Zr 15 (BCC, HCP, and Cr 2 Zr) and a single BCC phase was observed in Ti-rich Ti 60 Mo 10 V 10 Cr 10 Zr 10 HEAs.The backscattered-electron (BSE) images on the equiatomic Ti 20 Mo 20 V 20 Cr 20 Zr 20 HEA revealed BCC and HCP phases with Cr 2 Zr precipitates, suggesting precipitation from the HCP solid solution during the cooling.The micro-segregation of Ti-rich Ti 60 Mo 10 V 10 Cr 10 Zr 10 HEAs appeared to decrease remarkably.The alloying elements in the HEAs were locally present and no phase changes occurred even after additional HIP treatment.The lowest current density obtained in the polarization potential test of Ti-rich Ti 40 Mo 15 V 15 Cr 15 Zr 15 HEA was 7.12×10 -4 mA/cm 2 was obtained.The studied TiMoVCrZr HEAs showed improved corrosion characteristics as compared to currently available joint replacement material such as ASTM F75 alloy.
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