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Effect of WC content on microstructures and mechanical properties of FeCoCrNi high-entropy alloy/WC composite coatings by plasma cladding

机译:WC含量对FECORNI高熵合金/ WC复合涂层通过等离子体包层的影响

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摘要

FeCoCrNi high-entropy alloy/WC composite coatings were fabricated via plasma cladding on steels adding different mass fraction of WC. Effects of WC content on the microstructure and mechanical properties of the coatings were studied. The results showed that WC content significantly affected microstructure and the wear resistance of the coatings. With the increase of WC content, the microstructures of the coatings became complex. When WC content was more than 60%, the coatings consisted of WC, FCC phase of HEA matrix as metal bond, Fe3W3C carbide phase and Cr-rich secondary solid solution phase. The Fe3W3C carbides improved the hardness and wear resistance of the coating. When WC content was at a high proportion of 60%, the HEA/WC coating had the best wear resistance with the minimum volume wear rate of 3.27x10(-7) mm(3)/N.m and the high hardness of 59.6 HRC, which was better than commercial Ni60/WC coating with the same WC content.
机译:通过在钢上通过等离子体包层制备Fecocrni高熵合金/ WC复合涂层,该钢加入不同的WC质量分数。 研究WC含量对涂层微观结构和机械性能的影响。 结果表明,WC含量显着影响微观结构和涂层的耐磨性。 随着WC含量的增加,涂层的微观结构变得复杂。 当WC含量超过60%时,涂层由WC,FCC阶段的HeA基质相同,作为金属键,Fe3W3C碳化物相和Cr的二次固体溶液相。 FE3W3C碳化物改善涂层的硬度和耐磨性。 当WC含量高达60%时,HEA / WC涂层具有最佳耐磨性,最小体积磨损率为3.27x10(-7)mm(3)/ nm,高硬度为59.6 hrc 比商业Ni60 / WC涂层更好,具有相同的WC含量。

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