材料科学
活化能
合金
扩散
动力学
晶格扩散系数
高熵合金
热力学
冶金
动能
化学工程
物理化学
有效扩散系数
化学
放射科
量子力学
磁共振成像
医学
工程类
物理
作者
Harpreet Singh Grewal,R. Sanjiv,Harpreet Singh Arora,Ram Kumar,Aditya Ayyagari,Sundeep Mukherjee,Harpreet Singh
标识
DOI:10.1002/adem.201700182
摘要
Activation energy and diffusion kinetics are important in modulating the high temperature oxidation behavior of metals. Recently developed multi‐principal element alloys, also called high entropy alloys (HEAs), are promising candidate material for high temperature applications. However, the activation energies and diffusion kinetics of HEAs have been limitedly explored. We investigate the diffusional activation energy for oxidation of Al 0.1 CoCrFeNi HEA. Compared to conventional steels and Ni‐based super alloys, the HEA showed a significantly higher diffusion activation energy. This behavior is explained based on low potential energy of the lattice and interstitial sites which effectively trap the atoms, limiting their diffusion. The atomic mean jump frequency for interstitial diffusion of oxygen in the HEA is four‐orders of magnitude lower than T22 and T91 steels and seven‐orders of magnitude lower compared to pure iron. Al 0.1 CoCrFeNi HEA showed the lowest oxidation rate compared to conventionally used steels, super‐alloys, and coatings.
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