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Investigation into Microstructure, Wear Resistance in Air and NaCl Solution of AlCrCoNiFeCTax High-Entropy Alloy Coatings Fabricated by Laser Cladding

机译:通过激光覆层制造的Alcrconifectax高熵合金涂层的空气和NaCl溶液中微观结构的研究

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AlCrCoNiFeCTax (x = 0, 0.5 and 1.0) high-entropy alloys coatings were synthesized on 45# steel by laser cladding. The microstructural evolution of the coatings with the change in x was analyzed in detail. The effect of Ta content on the wear behaviors of the coatings at different circumstances (in air and 3.5 wt.% NaCl solution) was especially highlighted. The microstructure presented the following change: equiaxed BCC (Body Centered Cubic) grains fine MC (carbide, M = Al, Cr, Co and Ni) particles (x = 0) → equiaxed BCC grains coarse TaC blocks fine TaC particles (x = 0.5) → flower-like BCC grains coarse TaC blocks eutecticum (BCC TaC) (x = 1.0). The average microhardness of the coatings demonstrated an upward tendency with increasing x due to the combination of the stronger solid solution and dispersion strengthening from the significant difference in atomic radius between Ta and Fe and the formation of TaC with an extremely high hardness. The wear rates of the coatings were gradually reduced both in air and in NaCl solution along with the increase in Ta content, which were lower than those of the substrate. The wear rates of the coatings with x = 0.5 and 1.0 in NaCl solution were slightly reduced by about 17% and 12% when compared with those in air. However, the values of the substrate and the coating without Ta in NaCl solution were sharply enhanced by 191% and 123% when compared with those in air. This indicated that the introduction of Ta contributed to the improvement in wear resistance both in air and in NaCl solution.
机译:通过激光包层在45#钢上合成高熵合金涂层的高熵合金涂层。详细分析了X涂层的微观结构演化。特别突出显示TA含量对不同情况(空气和3.5重量%的NaCl溶液中的涂层磨损行为的影响。微观结构呈现以下变化:等轴BCC(体居立方)晶粒细菌(碳化物,M = Al,Cr,CO和Ni)颗粒(x = 0)→等式的BCC晶粒粗TAC块细塔颗粒(x = 0.5 )→花样的BCC晶粒粗TAC块Eutcticum(BCC TAC)(x = 1.0)。由于较强的固溶体和分散性来自Ta和Fe之间的原子半径的显着差异以及具有极高硬度的Tac的形成,因此涂层的平均微硬度表明了X增加倾向。涂层的磨损率在空气中逐渐减小,并且在NaCl溶液中随着TA含量的增加而低于基材的含量。与空气中的那些相比,NaCl溶液中涂层的涂层的磨损率略微降低约17%和12%。然而,与空气中的那些相比,基材和NaCl溶液中没有Ta的涂层的值急剧增强191%和123%。这表明TA引入TA有助于在空气和NaCl溶液中改善耐磨性。

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