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Influence of Annealing on Microstructure and Mechanical Properties of a Nanocrystalline CrCoNi Medium-Entropy Alloy

机译:退火对纳米晶CrCoNi中熵合金组织和力学性能的影响

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摘要

An equiatomic CrCoNi medium-entropy alloy was subjected to high-pressure torsion. This process led to a refinement of the microstructure to a grain size of about 50 nm, combined with a strong increase in the materials hardness. Subsequently, the thermodynamic stability of the medium entropy alloy was evaluated by isothermal and isochronal heat treatments. Annealed samples were investigated by scanning and transmission electron microscopy as well as X-ray diffraction, and were subjected to tensile tests to establish microstructure-property relationships. Furthermore, a comparison of mechanical properties with a grade 316L stainless steel was performed in order to evaluate if the CrCoNi alloy is competitive with commercially available structural materials in the nanocrystalline state. A minority phase embedded in the face-centered cubic matrix of the CrCoNi alloy could be observed in multiple annealed states, as well as the as-received and high-pressure torsion processed material. For 200 h of annealing at 500 °C, it was determined that the minority phase has a hexagonal-closed-packed crystal structure. A possible explanation for the formation of the phase is a preferential segregation of Co to stacking faults.
机译:对等原子CrCoNi中熵合金进行高压扭转。该过程导致微观结构细化到约50 nm的晶粒尺寸,同时材料硬度大大提高。随后,通过等温和等时热处理评估了中熵合金的热力学稳定性。通过扫描和透射电子显微镜以及X射线衍射研究退火后的样品,并对其进行拉伸测试以建立微观结构与性能的关系。此外,进行了机械性能与316L不锈钢的比较,以评估CrCoNi合金是否与纳米晶态的市售结构材料具有竞争力。可以在多个退火状态下观察到嵌入在CrCoNi合金的面心立方基体中的少数相,以及接收到的高压扭转加工材料。在500℃下退火200 h,确定少数相具有六方密堆积晶体结构。相形成的一个可能的解释是钴优先于堆垛层错。

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