Extruded Al-Fe-Si-V Melt-Spun Ribbons for High-Temperature Applications: Process Optimization and Characterization
Authors: Nnamchi, P. S., Obayi, C. O.
Journal: International Journal of Information Science and Engineering (IJISE), ISSN 1694-4496
Citation: IJISE 2(1), 2022-10-01.
DOI: 10.70878/ijise.2022.37488cdc
PDF: Download full-text PDF
Type: Original Research
Abstract
Although the extrusion conditions of A8009 aluminium alloys play a significant role in enhancing their mechanical and dynamic properties, the impact of extrusion degrees on the increased temperature reliability of this high temperature A8009 aluminium alloy has not been studied. Here, we compare the mechanical properties of Al-8.77Fe-1.27V-0.31Si alloys at varying degrees of extrusion and find that, at high temperatures, these parameters follow the opposite pattern. With a better grasp of the connection between extrusion conditions and high-temperature dependability thanks to this research, the alloy can be further refined for use in a variety of crucial automotive and aerospace components through the adoption of stricter manufacturing standards.
Keywords
Process Optimization, Al-Fe-Si-V Melt-Spun Ribbons, High-Temperature Applications Authorship: Nnamchi, P. and Obayi, C. O. | FULL PDF
Full Text
Although the extrusion conditions of A8009 aluminium alloys play a significant role in enhancing their mechanical and dynamic properties, the impact of extrusion degrees on the increased temperature reliability of this high temperature A8009 aluminium alloy has not been studied. Here, we compare the mechanical properties of Al-8.77Fe-1.27V-0.31Si alloys at varying degrees of extrusion and find that, at high temperatures, these parameters follow the opposite pattern. With a better grasp of the connection between extrusion conditions and high-temperature dependability thanks to this research, the alloy can be further refined for use in a variety of crucial automotive and aerospace components through the adoption of stricter manufacturing standards.