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Influence of Annealing on Microstructure and Mechanical Properties of Refractory CoCrMoNbTi0.4 High-Entropy Alloy

机译:退火对难治性CoCrmnBti0.4高熵合金微观结构和力学性能的影响

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摘要

A novel refractory CoCrMoNbTi0.4 high-entropy alloy (HEA) was prepared via vacuum arc melting. After annealing treatment at different temperatures, the microstructure evolution, phase stability, and mechanical properties of the alloy were investigated. The alloy was composed of two primary body-centered cubic structures (BCC1 and BCC2) and a small amount of (Co, Cr)(2)Nb-type Laves phase under different annealing conditions. The microhardness and compressive strength of the heat-treated alloy was significantly enhanced by the solid-solution strengthening of the BCC phase matrix and newborn Laves phase. Especially, the alloy annealed at 1473 K (1200 A degrees C) achieved the maximum hardness and compressive strength values of 959 +/- 2 HV0.5 and 1790 MPa, respectively, owing to the enhanced volume fraction of the dispersed Laves phase. In particular, the HEAs exhibited promising high-temperature mechanical performance, when heated to an elevated temperature of 1473 K (1200 A degrees C), with a compressive fracture strength higher than 580 MPa without fracture at a strain of more than 20 pct. This study suggests that the present refractory HEAs have immense potential for engineering applications as a new class of high-temperature structural materials.
机译:通过真空弧熔化制备一种新型难治性COCTMNBTI0.4高熵合金(HEA)。在不同温度下退火处理后,研究了合金的微观结构演化,相位稳定性和机械性能。该合金由两个初级体为中心的立方结构(BCC1和BCC2)组成,并在不同退火条件下少量(CO,Cr)(2)Nb型Laves阶段。通过对BCC期基质和新生儿疏水液相的固溶体强化显着提高了热处理合金的显微硬度和抗压强度。特别是,在1473k(1200℃)下退火的合金分别通过分散的Laves阶段的增强体积分别实现了959 +/- 2 HV0.5和1790MPa的最大硬度和压缩强度值。特别是,当加热到1473k(1200℃)的升高的温度时,遗址表现出高温的机械性能,在大于580MPa的压缩骨折强度高于580MPa的菌株的突变处。本研究表明,本难治性批发具有工程应用的巨大潜力,作为新一类高温结构材料。

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