Improving corrosion resistance of spark plasma sintering-produced AlCoCrFeNi2.1 high entropy alloy via in-situ process pressure and temperature control

Author:

Chu Zhuonan,Shao Zexi,Guo Xiaosong,Li Pubo,Wu Bintao

Publisher

Elsevier BV

Subject

Metals and Alloys,Surfaces, Coatings and Films,Biomaterials,Ceramics and Composites

Reference32 articles.

1. Effect of light (X= Mg, Si) and heavy (X= Zn) metals on the microstructural evolution and densification of AlCuFeMnTi-X high-entropy alloy processed by advanced powder metallurgy;Chae,2021

2. Controlled valence electron concentration approach to tailor the microstructure and phase stability of an entropy-enhanced AlCoCrFeNi alloy;Oh,2022

3. Corrosion behavior and passive film characteristics of AlNbTiZrSix high-entropy alloys in simulated seawater environment;Bi;Corrosion Sci,2023

4. Temperature dependence of the mechanical properties of equiatomic solid solution alloys with face-centered cubic crystal structures;Wu;Acta Mater,2014

5. Oxidative and abrasive wear of multiphase AlSi0. 75TiMnFeCux (X= 0, 0.25, 0.5) high entropy alloy under non-lubricating reciprocating motion;Lee,2023

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