Comparative study of the microstructures and mechanical properties of direct laser fabricated and arc-melted AlxCoCrFeNi high entropy alloys


Autoria(s): Joseph, Jithin; Jarvis, Tom; Wu, Xinhua; Stanford, Nicole; Hodgson, Peter; Fabijanic, Daniel Mark
Data(s)

01/05/2015

Resumo

High entropy alloys (HEA) are a relatively new metal alloy system that have promising potential in high temperature applications. These multi-component alloys are typically produced by arc-melting, requiring several remelts to achieve chemical homogeneity. Direct laser fabrication (DLF) is a rapid prototyping technique, which produces complex components from alloy powder by selectively melting micron-sized powder in successive layers. However, studies of the fabrication of complex alloys from simple elemental powder blends are sparse. In this study, DLF was employed to fabricate bulk samples of three alloys based on the AlxCoCrFeNi HEA system, where x was 0.3, 0.6 and 0.85M fraction of Al. This produced FCC, FCC/BCC and BCC crystal structures, respectively. Corresponding alloys were also produced by arc-melting, and all microstructures were characterised and compared longitudinal and transverse to the build/solidification direction by x-ray diffraction, glow discharge optical emission spectroscopy and scanning electron microscopy (EDX and EBSD). Strong similarities were observed between the single phase FCC and BCC alloys produced by both techniques, however the FCC/BCC structures differed significantly. This has been attributed to a difference in the solidification rate and thermal gradient in the melt pool between the two different techniques. Room temperature compression testing showed very similar mechanical behaviour and properties for the two different processing routes. DLF was concluded to be a successful technique to manufacture bulk HEA[U+05F3]s.

Identificador

http://hdl.handle.net/10536/DRO/DU:30075607

Idioma(s)

eng

Publicador

Elsevier

Relação

http://dro.deakin.edu.au/eserv/DU:30075607/joseph-comparativestudy-2015.pdf

http://www.dx.doi.org/10.1016/j.msea.2015.02.072

Direitos

2015, Elsevier

Palavras-Chave #Arc-melting #Direct laser fabrication #High entropy alloy #Mechanical properties #Microstructure #Science & Technology #Technology #Nanoscience & Nanotechnology #Materials Science, Multidisciplinary #Metallurgy & Metallurgical Engineering #Science & Technology - Other Topics #Materials Science #HYDROGEN STORAGE PROPERTIES #NET SHAPING LENS #SOLID-SOLUTION #MULTICOMPONENT ALLOYS #ALUMINUM CONTENT #PHASE-STABILITY #WEAR BEHAVIOR #DEPOSITION #POWDER #ELEMENTS
Tipo

Journal Article