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Exact(7)
A marginal improvement in corrosion resistance was also recorded in laser surface engineered samples due to microstructural/compositional homogenization introduced by laser surface engineering.
High entropy alloy coatings were synthesized on aluminum substrate by laser surface engineering.
The study explores the synthesis of TiB2 and TiC reinforced Fe-based nano-composite coating by laser surface engineering using Ti, B4C and Fe powder mixture as precursor.
This paper presents a unique process to coat HAp powders on titanium substrates at low temperature and enhance the coating/substrate interface by laser surface engineering.
In this study, the rare earth oxide (Y2O3) is added to the precursor powder mixture of Ti+SiC+h-BN, and the subsequent mixture is alloyed on the surface of Ti 6Al 4V substrate by laser surface engineering.
The present study concerns an attempt to improve the wear resistance of a recently developed magnesium alloy (MEZ) by formation of a SiC reinforced composite layer on the surface by laser surface engineering.
Similar(53)
Laser surface engineering has promising process characteristics for changing surface properties.
This chapter is focused on the modification of technical grade ceramics through laser surface engineering.
It is demonstrated that using laser surface engineering a controlled multiscale surface can be synthesized for bioactive functions.
Using a continuous-wave CO2 laser, surface engineering of a Ti 6Al 4V alloy through a combined treatment of laser nitriding and SiC preplacement was undertaken.
Finally, the future scope of application of laser surface engineering of magnesium-based alloys is presented with examples.
More suggestions(17)
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by laser surface cladding
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