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Unusual relation between glass-forming ability and thermal stability of high-entropy bulk metallic glasses

机译:玻璃形成能力与高熵散装金属眼镜的热稳定性之间的不寻常关系

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摘要

It is generally accepted that good glass formers have a high thermal stability against crystallization upon heating. In this paper, we report an unusual relationship between thermal stability and glass-forming ability (GFA) for high-entropy bulk metallic glasses (HE-BMGs). As compared with their conventional counterparts in the same alloy system, the HE-BMGs have a lower energy barrier for atomic diffusion during undercooling, which facilitates crystallization and then reduces the GFA. Our results clearly demonstrate that the GFA of BMGs is governed by the kinetics of the undercooled liquid, whilst their thermal stability is controlled by atomic diffusion in the glass-transition regime.
机译:通常接受良好的玻璃造型剂在加热时具有高热稳定性。在本文中,我们在高熵散装金属玻璃(HE-BMG)之间报告了热稳定性和玻璃形成能力(GFA)之间的不寻常关系。与相同合金系统中的常规对应物相比,He-BMG在过冷期间具有较低的能量屏障,其有助于结晶,然后减少GFA。我们的结果清楚地证明了BMG的GFA由过冷液体的动力学来控制,而它们的热稳定性通过玻璃过渡制度中的原子扩散控制。

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