Institut für Materialphysik im Weltraum, Deutsches Zentrum für Luft-und Raumfahrt (DLR), 51170 Köln, Germany.
Department of Structure Analysis, Institute of Physics of the Czech Academy of Sciences, Na Slovance 2, 18221 Prague, Czech Republic.
J Chem Phys. 2018 Mar 21;148(11):114502. doi: 10.1063/1.5018135.
Electrostatic levitation is applied in order to undercool liquid glass forming NiZr significantly below its melting temperature. For NiZr large undercoolings are found to be highly reproducible with this experimental method. One single NiZr sample of high purity is undercooled 200 consecutive times which leads to a distribution function of undercooling temperatures. Within a statistical approach of classical nucleation theory, the undercooling distribution is analyzed yielding parameters, e.g., a pre-exponential factor of K ≈ 10 m s, which indicates homogeneous nucleation. This result is consistent with the crystallization behavior of NiZr at high undercooling and with the corresponding microstructural analysis. Since NiZr is a representative of the very common CrB structure type, with 132 isostructural phases existing, understanding its nucleation behavior adds important knowledge to the nucleation of binary alloys in general.
静电悬浮被应用于将液态 NiZr 玻璃显著过冷到其熔点以下。对于 NiZr,这种实验方法发现可以高度重现大过冷度。一个高纯的 NiZr 样品被连续过冷 200 次,从而得到过冷温度的分布函数。在经典形核理论的统计方法中,对过冷分布进行了分析,得出了参数,例如,K 的预指数因子 K ≈ 10 m s,这表明是均匀形核。这一结果与 NiZr 在高过冷度下的结晶行为以及相应的微观结构分析一致。由于 NiZr 是非常常见的 CrB 结构类型的代表,存在 132 种同构相,因此了解其形核行为为二元合金的形核一般规律增加了重要知识。