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One approach is to adapt the laser surface cladding technique to the scale of microengineering.
Laser surface cladding technique was employed using Nd: YAG high power laser beam for the synthesis of the powders.
New thick Fe-based amorphous alloy coatings have been synthesized by laser surface cladding, with the nominal composition of Fe57Co8Ni8Zr10Si4B13 (at.%).
Laser surface cladding was carried out on a creep-resistant MRI 153M magnesium alloy with a mixture of Al and Al2O3 powders using a pulsed Nd YAG laser at scan speeds of 21, 42, 63 and 84mm/ss.
An investigation is reported of the laser surface cladding of self-fluxing Fe Cr Ni alloys on a medium carbon steel substrate using the preplaced powders method with gas shielding or vacuum protection.
In the present study, an attempt has been made to explore deposition of Fe-based amorphous/glassy layer on a plain carbon (AISI 1010) steel by laser surface cladding (LSC) to improve resistance of the substrate to wear and corrosion.
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The microstructure and corrosion behavior of commercial alloy ZE41 modified by surface laser cladding with Al Si powder mixture was studied by SEM, TEM, X-ray diffrandion and electrochemical methods.
Continuous wave CO2 lasers have been the main lasers used for both surface cladding and alloying.
Two laser surface engineering techniques, Laser Cladding and Laser Melt Injection (LMI), were used to prepare three different metal matrix composite layers with a thickness of about 1 mm and approximately 25 30% volume fraction of ceramic particles.
Specific examples of the use of experimental design techniques for process response modeling and optimization are presented for Laser Cladding, Laser Surface Melting, and Laser Shock Peening.
The strain build-up in the direction parallel and perpendicular to the laser cladding direction were measured for different laser surface treatment setups and for laser cladding of all three powders.
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