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Laser-cladding process: a study using stationary and scanning CO2 laser beams

机译:激光熔覆工艺:使用固定和扫描CO2激光束的研究

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In a precise and controlled laser-cladding process, the effect of power density and beam-interaction time play a vital role. We study this process in both stationary and scanning beam modes with the laser cladding of stellite 6 on mild steel, Cr-Ni base materials, and we demonstrate their effects on the evolution of coarse, fine and very fine cladding microstructure. The effect of the various parameters such as input power, beam-interaction time, scanning frequency and the traverse speed are considered. The possible applications in the rapid prototyping industries are well illustrated. (C) 1997 Elsevier Science S.A.
机译:在精确且受控的激光熔覆过程中,功率密度和光束相互作用时间的影响至关重要。我们用在软钢,Cr-Ni基材料上的Stellite 6激光熔覆在固定和扫描光束模式下研究了这一过程,并证明了它们对粗,细和非常细的熔覆微观组织演变的影响。考虑各种参数的影响,例如输入功率,光束相互作用时间,扫描频率和移动速度。很好地说明了快速原型行业中的可能应用。 (C)1997年Elsevier Science S.A.

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