High Entropy alloy-based composite by utilizing industrial waste to enhance the Tribo-Mechanical Properties

Authors

  • Abhishek Kumar,Subodh Barthwal,Hanmant Virbhadra Shete

Keywords:

High Entropy Alloy; Industrial waste; Fly ash; Mill scale; Tribo-mechanical properties; Green metallurgy; Spark plasma sintering; Wear resistance

Abstract

The escalating generation of industrial waste, including fly ash, iron mill scale, and alumina grindingsludge, poses serious environmental hazards and demands innovative valorization strategies. High Entropy Alloys (HEAs), defined by the presence of five or more principal elements in near-equiatomicproportions, have emerged as next-generation structural materials

References

: Mayank Atreya, Navin Chhibber, Harvendra Singh, Explainable Machine Learning For Dynamic Pricing In Fast-Changing Retail Environments, 2022/4/9, Journal ,Available at SSRN 6011354, https://scholar.google.com/citations?view_op=view_citation&hl=en&user=fyViF1UAAAAJ&citation_for_view=fyViF1UAAAAJ:LkGwnXOMwfcC.

Downloads

Published

2024-11-20

How to Cite

Abhishek Kumar,Subodh Barthwal,Hanmant Virbhadra Shete. (2024). High Entropy alloy-based composite by utilizing industrial waste to enhance the Tribo-Mechanical Properties. Journal of Computational Analysis and Applications (JoCAAA), 33(08), 9071–9081. Retrieved from https://eudoxuspress.com/index.php/pub/article/view/5643

Issue

Section

Articles