【2h】

Compositional landscape for glass formation in metal alloys

机译:金属合金中玻璃形成的成分图

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摘要

A high-resolution compositional map of glass-forming ability (GFA) in the Ni–Cr–Nb–P–B system is experimentally determined along various compositional planes. GFA is shown to be a piecewise continuous function formed by intersecting compositional subsurfaces, each associated with a nucleation pathway for a specific crystalline phase. Within each subsurface, GFA varies exponentially with composition, wheres exponential cusps in GFA are observed when crossing from one crystallization pathway to another. The overall GFA is shown to peak at multiple exponential hypercusps that are interconnected by ridges. At these compositions, quenching from the high-temperature melt yields glassy rods with diameters exceeding 1 cm, whereas for compositions far from these cusps the critical rod diameter drops precipitously and levels off to 1 to 2 mm. The compositional landscape of GFA is shown to arise primarily from an interplay between the thermodynamics and kinetics of crystal nucleation, or more precisely, from a competition between driving force for crystallization and liquid fragility.
机译:沿着各种成分平面实验确定了Ni–Cr–Nb–P–B系统中玻璃形成能力(GFA)的高分辨率成分图。 GFA被证明是由相交的成分表面相交形成的分段连续功能,每个成分表面都与特定晶相的成核途径相关。在每个地下,GFA随组成呈指数变化,当从一种结晶途径过渡到另一种结晶途径时,可以观察到GFA的指数尖端。总体GFA显示在由山脊相互连接的多个指数超尖峰处达到峰值。在这些成分下,从高温熔体淬火会产生直径超过1 cm的玻璃状棒,而对于远离这些尖点的成分,临界棒直径会急剧下降并稳定至1-2 mm。 GFA的成分格局主要来自晶体成核的热力学和动力学之间的相互作用,或更确切地说,源自结晶的驱动力与液体脆性之间的竞争。

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