Enhancement of mechanical and tribological performance of Ti–6Al–4V al…
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Summary:
• A novel combination of Inconel 625 and SiC precursor materials was employed to fabricate
MMC coatings on Ti-6Al-4V alloy using InssTek MX-Lab's laser surface alloying technology.
• This study utilized laser surface alloying to apply Inconel 625 & SiC onto a Ti-6Al-4V substrate and analyze
the resulting MMC coating's structures and properties. Different compositions of Inconel 625 & SiC were used to
evaluate the phase constituents, microstructure, composition distribution of the coatings, and mechanical properties.
• MMC coatings demonstrated excellent metallurgical bonding with substrate, and significantly enhanced microhardness by
more than 3 times and reduced wear by 95%. This study demonstrated the effective utilization of Inconel 625 & SiC alloying materials to enhance the surface properties of titanium alloys, thereby expanding their application in challenging environments.
Reference:
- https://link.springer.com/article/10.1007/s40544-024-0878-3
- https://insstek.com/products/mx-lab
#Metallurgy #Alloy #MMC #MetalMatrixComposite #Material #Research #materialresearch #Additive #Manufacturing #AM #DED #3Dprinter
• A novel combination of Inconel 625 and SiC precursor materials was employed to fabricate
MMC coatings on Ti-6Al-4V alloy using InssTek MX-Lab's laser surface alloying technology.
• This study utilized laser surface alloying to apply Inconel 625 & SiC onto a Ti-6Al-4V substrate and analyze
the resulting MMC coating's structures and properties. Different compositions of Inconel 625 & SiC were used to
evaluate the phase constituents, microstructure, composition distribution of the coatings, and mechanical properties.
• MMC coatings demonstrated excellent metallurgical bonding with substrate, and significantly enhanced microhardness by
more than 3 times and reduced wear by 95%. This study demonstrated the effective utilization of Inconel 625 & SiC alloying materials to enhance the surface properties of titanium alloys, thereby expanding their application in challenging environments.
Reference:
- https://link.springer.com/article/10.1007/s40544-024-0878-3
- https://insstek.com/products/mx-lab
#Metallurgy #Alloy #MMC #MetalMatrixComposite #Material #Research #materialresearch #Additive #Manufacturing #AM #DED #3Dprinter
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