Na Jong H, Corona Sydney L, Hoff Andrew, Johnson William L
Glassimetal Technologies, Pasadena, CA 91107.
Keck Laboratory of Engineering, Department of Applied Physics and Materials Science, California Institute of Technology, Pasadena, CA 91125.
Proc Natl Acad Sci U S A. 2020 Feb 11;117(6):2779-2787. doi: 10.1073/pnas.1916371117. Epub 2020 Jan 28.
An experimental study of the configurational thermodynamics for a series of near-eutectic Pt Cu P bulk metallic glass-forming alloys is reported where 14 < < 27. The undercooled liquid alloys exhibit very high fragility that increases as decreases, resulting in an increasingly sharp glass transition. With decreasing , the extrapolated Kauzmann temperature of the liquid, , becomes indistinguishable from the conventionally defined glass transition temperature, For < 17, the observed liquid configurational enthalpy vs. displays a marked discontinuous drop or latent heat at a well-defined freezing temperature, The entropy drop for this first-order liquid/glass transition is approximately two-thirds of the entropy of fusion of the crystallized eutectic alloy. Below , the configurational entropy of the frozen glass continues to fall rapidly, approaching that of the crystallized eutectic solid in the low T limit. The so-called Kauzmann paradox, with negative liquid entropy (vs. the crystalline state), is averted and the liquid configurational entropy appears to comply with the third law of thermodynamics. Despite their ultrafragile character, the liquids at = 14 and 16 are bulk glass formers, yielding fully glassy rods up to 2- and 3-mm diameter on water quenching in thin-wall silica tubes. The low Cu content alloys are definitive examples of glasses that exhibit first-order melting.
报道了一系列14<<27的近共晶Pt-Cu-P块状金属玻璃形成合金的构型热力学实验研究。过冷液态合金表现出非常高的脆性,且随着的减小而增加,导致玻璃转变越来越尖锐。随着的减小,液态的外推考兹曼温度与传统定义的玻璃转变温度变得难以区分。对于<17,观察到的液态构型焓与显示在明确的凝固温度处有明显的不连续下降或潜热。这种一级液/玻璃转变的熵降约为结晶共晶合金熔化熵的三分之二。在以下,冻结玻璃的构型熵继续迅速下降,在低温极限下接近结晶共晶固体的构型熵。所谓的考兹曼悖论,即液态熵为负(相对于晶态),得以避免,液态构型熵似乎符合热力学第三定律。尽管它们具有超脆性,但=14和16时的液体是块状玻璃形成体,在薄壁石英管中进行水淬时可得到直径达2毫米和3毫米的完全玻璃态棒材。低铜含量合金是表现出一级熔化的玻璃的典型例子。