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Effect of Long-Time Annealing at 1000 °C on Phase Constituent and Microhardness of the 20Co-Cr-Fe-Ni Alloys

机译:1000°C长时间退火对20Co-Cr-Fe-Ni合金相组成和显微硬度的影响

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摘要

The phase constituent and microhardness of the arc-melted 20Co-Cr-Fe-Ni alloys, in both as-cast state and after annealing at 1000 °C for 30 days, were experimentally investigated by scanning electron microscopy (SEM) and X-ray diffraction (XRD). Experiment results indicated that a uniform, stable, single Face-Center Cubic (FCC) phase can be obtained in as-cast 20 Co-Cr-Fe-Ni alloys with less than 30 at.% Cr. Annealing at 1000 °C has no effect on their phase composition and microhardness. When the Cr content is above 40 at.%, the σ phase forms and its volume fraction increases with the Cr content, which leads to an increase in microhardness. Annealing at 1000 °C for 30 days can slightly decrease the volume fraction of the σ phase and slightly decrease the alloy microhardness. Except for the Fe-rich alloys, the alloy microhardness increases with the Cr content when the Co and Ni or the Co and Fe contents were fixed. Moreover, comparing with the thermodynamically calculated phase diagram based on the TCFE database, it has been proved that the calculation can predict the phase stability of the FCC phase and the 1000 °C isothermal section. However, it fails to predict the stability of the σ phase near the liquidus. The present results will help to design and process treatment of the Co-Cr-Fe-Ni based high entropy alloys.
机译:通过扫描电子显微镜(SEM)和X射线实验研究了电弧铸造的20Co-Cr-Fe-Ni合金在铸态和在1000°C退火30天后的相组成和显微硬度。衍射(XRD)。实验结果表明,在铸态的20 Co-Cr-Fe-Ni合金中,Cr含量小于30 at。%时,可以获得均匀,稳定的单一面心立方(FCC)相。 1000°C退火对其相组成和显微硬度没有影响。当Cr含量高于40原子%时,形成σ相,并且其体积分数随Cr含量而增加,这导致显微硬度的增加。在1000°C下退火30天会稍微降低σ相的体积分数,并稍微降低合金的显微硬度。除了富铁合金,当固定钴和镍或钴和铁的含量时,合金的显微硬度随Cr含量的增加而增加。此外,与基于TCFE数据库的热力学计算相图相比,已证明该计算可以预测FCC相和1000°C等温截面的相稳定性。但是,它无法预测液相线附近σ相的稳定性。目前的结果将有助于设计和处理Co-Cr-Fe-Ni基高熵合金。

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