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Effects of Annealing on the Microstructure and Properties of 6FeNiCoCrAlTiSi High-Entropy Alloy Coating Prepared by Laser Cladding

机译:退火对激光熔覆6FeNiCoCrAlTiSi高熵合金涂层组织和性能的影响

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摘要

The content of each constituent element in the newly developed high-entropy alloys is always restricted in equimolar or near-equimolar ratios to avoid the formation of complex brittle phases during the solidification process. In this article, a high-entropy alloy coating of 6FeNiCoCrAlTiSi has been prepared by laser cladding and subsequently annealed at 500, 750, 1000, and 1150 °C for 5 h. Surprisingly, the coating has a simple BCC solid solution phase with high microhardness, good resistance to softening, and high electrical resistivity properties. After annealing <750 °C, the coating shows high thermal stability, the electrical resistivity decreases slightly and the microhardness almost remains unchanged. After annealing above 750 °C, the microhardness of the coating slowly decreases with the decomposition of the supersaturated BCC solid solution.
机译:在新开发的高熵合金中,每个构成元素的含量总是以等摩尔或接近等摩尔的比例进行限制,以避免在凝固过程中形成复杂的脆性相。在本文中,已经通过激光熔覆制备了6FeNiCoCrAlTiSi的高熵合金涂层,然后在500、750、1000和1150°C下退火5 h。令人惊讶地,该涂层具有简单的BCC固溶相,具有高的显微硬度,良好的抗软化性和高电阻率特性。在<750°C下退火后,涂层显示出高的热稳定性,电阻率略有下降,并且显微硬度几乎保持不变。在高于750°C的温度下退火后,涂层的显微硬度随着过饱和BCC固溶体的分解而缓慢降低。

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