动力学
材料科学
焓
热力学
放松(心理学)
玻璃化转变
扩散
指数
过冷
拉伸指数函数
相(物质)
化学物理
化学
指数函数
复合材料
数学分析
聚合物
有机化学
哲学
物理
社会心理学
量子力学
语言学
数学
心理学
作者
R. Golovchak,Carrie Brennan,Joseph P. Fletcher,Tetyana Ignatova,Himanshu Jain
标识
DOI:10.1088/1361-648x/ab80f3
摘要
Kinetics of physical aging in archetypic 45S5 bioactive silicate glass composition with different types of phase separation are studied in situ below the glass transition temperature (T g). The qualitative nature of aging is found to be almost independent of the structural differences on the micrometer scale. A well-expressed step-like behavior in the enthalpy recovery kinetics is observed for aging temperatures T a ∼ 0.90T g and T a ∼ 0.85T g, which, however, disappears when the aging occurs at T a ∼ 0.95T g. The overall kinetics are described by a stretched-exponential function with stretching exponent close to 3/7 at T a ∼ 0.95T g, and 1/3 when the aging temperature drops to ∼0.90T g and below. The values correlate well with the predictions of Phillips' diffusion-to-traps and percolating fractals models. Appearance of step-like behavior at larger departure from T g is attributed to the hierarchical scheme of approaching equilibrium based on an alignment-shrinkage mechanism of physical aging proposed earlier for chalcogenide glasses.
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