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Microstructure and high temperature wear behaviour of in-situ TiC reinforced AlCoCrFeNi-based high-entropy alloy composite coatings fabricated by laser cladding

机译:激光熔覆制造的原位TIC钢筋基础高熵合金复合涂层的微观结构和高温磨损行为

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摘要

AlCoCrFeNiTix (x = 0, 0.2, 0.4, 0.6, 0.8, 1.0) HEA coatings reinforced by in-situ TiC particles were successfully prepared on AISI1045 steel via laser cladding. The coatings are made up of two BCC phases identified as Fe-Cr and Al-Ni phases, and a few in-situ TiC phases with a shape of granular in micro-nano scale. Ti element prefers to dissolve into the Al-Ni phase and refines the equiaxed grains. The AlCoCrFeNiTi1.0 HEA composite coating with the highest volume fraction of TiC particles phase (2.6%) exhibits the highest average microhardness (860.1 HV0.3). It is found that the composite coating is strengthened by the effect of solid solution strengthening, dispersion strengthening, and fine-grain strengthening. The wear behaviour of the coatings was tested at 25 degrees C and 600 degrees C, respectively. The micromorphology and chemical composition analysis of the wear scars show that oxidation wear occurs in addition to adhesive wear during the wear process at 600 degrees C. The oxidation products are identified as Al2O3, CoO, Cr2O3, Fe2O3, Fe3O4, and NiO in terms of the calculation of flash temperature and Gibbs free energy. The calculation results of wear rates show that the AlCoCrFeNiTi1.0 composite coating exhibits the best wear resistance.
机译:通过激光包层在AISI1045钢上成功地制备了通过原位TIC颗粒增强的HEA涂层的AlcoCrocenitix(x = 0,0.2,0.4,0.6,0.8,10.4,0.6,0.8,1.0)。涂层由鉴定为Fe-Cr和Al-Ni阶段的两个BCC相组成,以及少数原位TIC相位,具有微纳米级的颗粒形状。 Ti元素更喜欢溶解到Al-Ni期并改善等轴晶粒。 AlcoCrfeniti1.0 HE HE HEL复合涂层具有最高的TIC颗粒相(2.6%),具有最高的平均微硬度(860.1 HV0.3)。发现复合涂层通过固体溶液强化,分散强化和细粒强化而加强。涂层的磨损行为分别在25℃和600℃下进行测试。磨损疤痕的微晶和化学成分分析表明,除了在600℃的磨损过程中粘合剂磨损之外,氧化磨损还发生氧化磨损。氧化产物鉴定为Al2O3,Co,Cr2O3,Fe2O3,Fe3O4和NIO闪光温度和吉布斯自由能的计算。磨损率的计算结果表明,AlcoCrfenit1.0复合涂层具有最佳耐磨性。

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