首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part L. Journal of Materials: Design and Application >Microstructural evolution of Al_(0.25)CoCrFeNiCu and Al_(0.45)CoCrFeNiSi_(0.45) high-entropy alloys during laser cladding
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Microstructural evolution of Al_(0.25)CoCrFeNiCu and Al_(0.45)CoCrFeNiSi_(0.45) high-entropy alloys during laser cladding

机译:Microstructural evolution of Al_(0.25)CoCrFeNiCu and Al_(0.45)CoCrFeNiSi_(0.45) high-entropy alloys during laser cladding

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摘要

Additive manufacturing of high-entropy alloys has recently attracted considerable scientific interest owing to their exceptional mechanical properties and corrosion resistance. In this work, Al_(0.25)CoCrFeNiCu and Al_(0.45)CoCrFeNiSi_(0.45) high-entropy alloys coatings are deposited on stainless steel using laser cladding. The prealloyed high-entropy alloys fabricated by arc melting followed by crushing were used as a precursor for laser cladding, which significantly decreased the optimum laser power to 1400-1600 W and hence minimized the thermal effect on the substrate. Laser cladding preserved the dendritic structure of arc melted alloys, while highly refined the dendritic microstructure. Some extent of substrate dilution effect was also observed in the cladding layers.

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