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Microstructures, Mechanical Properties, and Corrosion Behaviors of Refractory High-Entropy ReTaWNbMo Alloys

机译:耐火高熵拉链合金的微观结构,力学性能和腐蚀行为

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摘要

A refractory ReTaWNbMo high-entropy alloy (HEA) with an equal atomic ratio prepared by rapid solidification displays a BCC crystal structure. After annealing the as-quenched samples at 673, 873, 1073, and 1273?K for 12?h, respectively, the crystalline phase still keeps its BCC structure, but the crystalline morphology transforms from coarse dendrites to fine equiaxed crystals together with gradual grain refinement. The intragranular regions are enriched in W and Ta, while the crystals in the intergranular regions are enriched in Nb, Mo, and Re. With the increase in annealing temperature, the yield strength increases, and the compressive plasticity and fracture strength are obviously enhanced. The failure mode gradually changes from transgranular to intergranular fracture. Furthermore, the corrosion behaviors of the as-cast ReTaWNbMo HEA and the annealed states in a 3.5?wt.% NaCl solution were also studied. The samples annealed at 1273?K exhibit the best corrosion resistance due to the elemental re-distributions within grains.
机译:通过快速凝固制备的具有相等原子比的耐火固定型高熵合金(Hea)显示了BCC晶体结构。在673,873,1073和1273℃下退火的淬火样品分别为12?H,结晶相仍然保持其BCC结构,但是晶体形态从粗枝曲体与逐渐晶粒一起转变为精细的平衡晶体细化。鞘内区域富含W和TA,而晶间区域中的晶体富含Nb,Mo和Re。随着退火温度的增加,屈服强度的增加,压缩可塑性和断裂强度明显增强。失效模式逐渐从跨晶变化到晶间骨折。此外,还研究了3.5℃的AS-retaxBMO Hea和退火状态的腐蚀行为。还研究了%NaCl溶液。在1273℃下退火的样品由于谷物内的元素重新分布而表现出最佳耐腐蚀性。

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