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首页> 外文期刊>Materials Characterization >Investigation of microstructure, texture, and mechanical properties of FeCrCuMnNi multiphase high entropy alloy during recrystallization
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Investigation of microstructure, texture, and mechanical properties of FeCrCuMnNi multiphase high entropy alloy during recrystallization

机译:重结晶中Fecrcumnni多相高熵合金微观结构,质地和力学性能的研究

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摘要

FeCrCuMnNi multiphase high entropy alloy was cold-rolled to 85% reduction and annealed at different temperatures. Recrystallization behavior of the alloy was investigated using XRD, SEM-EBSD, hardness, microhardness, and tensile tests. The results revealed variation in phase distribution due to annealing and earlier recrystallization of the FCC1 phase. Recrystallization of FCC1 and FCC2 phases initiated at 873 and 1073 K, respectively, and a fully recrystallized microstructure was seen after 1273 K. Deformation texture components eliminated slowly with increase in annealing temperature, and D and Cube components formed as a result of recrystallization. Faster decrease in FCC1 microhardness was seen due to earlier recrystallization. In addition, an excellent combination of strength and elongation was achieved in the partially recrystallized samples compared to conventional alloys. The strength was affected more after annealing at temperatures higher than 1073 K. Fracture behavior of FCC2 phase changed from a brittle fracture to a ductile fracture with increase in annealing temperature; however, FCC1 phase revealed a ductile fracture even at low annealing temperatures.
机译:Fecrcumnni多相高熵合金冷轧至85%的减少,并在不同的温度下退火。使用XRD,SEM-EBSD,硬度,微硬度和拉伸试验研究了合金的重结晶行为。结果显示了由于退火和早期重结晶FCC1相的相相分布的变化。分别在873和1073k处引发FCC1和FCC2阶段的重结晶,并且在1273k k后观察到完全重结晶的微观结构。变形质地组分随着退火温度的增加而消除,D和立方体组分作为重结晶形成。由于早期的重结晶,可以看到FCC1显微硬度的更快降低。此外,与常规合金相比,在部分再结晶的样品中实现了优异的强度和伸长率的组合。在高于1073K的温度下退火后,强度受到影响。FCC2相的断裂行为从脆性断裂到延展性骨折,增加退火温度;然而,FCC1期即使在低退火温度下也显示出延性骨折。

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