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Achieving ultrahigh strength in CoCrNi-based medium-entropy alloys with synergistic strengthening effect

机译:通过协同增强作用实现CoCrNi基中熵合金的超高强度

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摘要

Here, we report a novel CoCrNiAl_(0.1)Mo_(0.1) medium-entropy alloy, which possessed a complex structure comprising with the non-recrystallized structure, recrystallized structure, fine grains and precipitate phase. The alloy displayed exceptional tensile properties after cold-rolled and annealing at various temperatures in a range of 725-900 ℃. As annealed at 725 ℃, the alloy exhibit a tensile strength of 1304 MPa, and uniform elongation of 22% due to the synergistic strengthening of the high density of dislocation in the non-recrystallized regions, ultrafine grains and precipitates in the recrystallized structure. As annealing increasing, further growth of recrystallization region and grain size, resulting in high ductility but low strength. The alloy achieves excellent strength-ductility combination by adjusting microstructure (degree of recrystallization, sizes of grain and precipitate phase, etc.) at different annealing temperature. These results offer an extremely effective design strategy to enhance strength-ductility trade-off by simple thermal treatment.
机译:在这里,我们报道了一种新型的CoCrNiAl_(0.1)Mo_(0.1)中熵合金,该合金具有复杂的结构,包括非重结晶组织,重结晶组织,细晶粒和析出相。经过725-900℃的各种温度的冷轧和退火后,该合金表现出出色的拉伸性能。在725℃退火后,由于协同作用增强了非再结晶区的高位错密度,超细晶粒和再结晶组织中的析出物,该合金具有1304 MPa的拉伸强度和22%的均匀伸长率。随着退火的增加,再结晶区域和晶粒尺寸的进一步增长,导致高延展性但强度低。通过调节不同退火温度下的微观结构(重结晶度,晶粒大小和析出相等),该合金可实现出色的强度-延展性组合。这些结果提供了一种非常有效的设计策略,可以通过简单的热处理来增强强度-延展性。

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