Ajou University repository

Lightweight AlCuFeMnMgTi High Entropy Alloy with High Strength-to-Density Ratio Processed by Powder Metallurgy
  • Chae, Myoung Jin ;
  • Sharma, Ashutosh ;
  • Oh, Min Chul ;
  • Ahn, Byungmin
Citations

SCOPUS

57

Citation Export

Publication Year
2021-04-01
Journal
Metals and Materials International
Publisher
Korean Institute of Metals and Materials
Citation
Metals and Materials International, Vol.27 No.4, pp.629-638
Keyword
High entropy alloyLightweightMicrostructurePowder metallurgySpark plasma sintering
Mesh Keyword
Conventional alloysDensity ratioHigh strengthHigh-energy ball millingMilling timePhase fractionsSecondary phasisTi based alloy
All Science Classification Codes (ASJC)
Condensed Matter PhysicsMechanics of MaterialsMetals and AlloysMaterials Chemistry
Abstract
Abstract: In this study, we synthesized a new Al16.6Cu16.6Fe16.6Mn16.6Mg16.6Ti16.6 lightweight high entropy alloy (LWHEA) by high energy ball milling and spark plasma sintering (SPS). The effect of milling time (15, 30, 45, and 60 h) and SPS conditions (600 and 700 °C) on microstructure, hardness, and density of LWHEAs were studied. The results showed that milled LWHEA is base centered cubic (BCC) structured, consisting of dual BCC1/BCC2 matrix with dispersed minor Cu2Mg precipitates and Ti. After SPS of milled samples, the BCC2 phase fraction was increased gradually. The distribution of Ti was uniform up to 45 h milled sample SPSed at 600 °C. However, porosity was built up beyond 45 h milling and higher SPS temperature (700 °C). The presence of finer secondary phases in the HEA matrix contributes to the dispersion hardening. The optimum microhardness and density of LWHEA AlCuFeMnMgTi were around 770 HV and 4.34 g cm− 3 which is superior to other conventional alloys such as Al or Ti-based alloys. Graphic Abstract: [Figure not available: see fulltext.].
ISSN
2005-4149
Language
eng
URI
https://aurora.ajou.ac.kr/handle/2018.oak/31485
https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85089667403&origin=inward
DOI
https://doi.org/10.1007/s12540-020-00823-5
Journal URL
http://www.springerlink.com/content/121158/
Type
Article
Funding
This research was supported by Basic Science Research Program through the National Research Foundation of Korea (NRF) funded by the Ministry of Education (NRF-2018R1D1A1B07044481).
Show full item record

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Related Researcher

Ahn, Byungmin  Image
Ahn, Byungmin 안병민
Department of Materials Science Engineering
Read More

Total Views & Downloads

File Download

  • There are no files associated with this item.