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One approach is to adapt the laser surface cladding technique to the scale of microengineering.
In the paper approximated examples of the use of the electron beam are given by the welding, rapid prototyping, texturing surface, cladding with wire and powder as well as alloying.
Continuous wave CO2 lasers have been the main lasers used for both surface cladding and alloying.
Laser surface cladding technique was employed using Nd: YAG high power laser beam for the synthesis of the powders.
Joining alclad AA2024-T3 sheets is difficult for conventional welding processes due to ductile surface cladding layers.
New thick Fe-based amorphous alloy coatings have been synthesized by laser surface cladding, with the nominal composition of Fe57Co8Ni8Zr10Si4B13 (at.%).
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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.
Maximum cladding surface temperature at nominal condition is evaluated to be 645.3 °C over the cycle.
Therefore, for the application to nuclear reactors, nanoporous oxide structures without gaps and cracks are to be fabricated on the surface of zircaloy cladding.
For application in nuclear reactors, nanoporous oxide structures of uniform thickness are to be fabricated on the surface of zircaloy cladding.
Comparison with measured data for cladding surface temperatures in both pre- and post-CHF regimes proved applicability of this approach in transients.
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