能源景观地形的脆弱性与变化率

Q1 Physics and Astronomy
Cameran Beg, John Kieffer
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引用次数: 0

摘要

我们对中等脆性硼酸钠熔体的力学响应进行了比较分析,并将在GHz频率下使用布里渊光散射测量的绝热复模量和在零Hz下测量的稳态剪切粘度并置。通过使用改进的Maxwell-Wiechert模型拟合高频复模量的两个分量,将损失模量转换为粘度,并外推到零频率,这两个数据集彼此完全兼容。当静态模量和弛豫模量以及粘性耗散的活化能与温度相关时,该过程可以很好地拟合稳态粘度,并由逻辑斯蒂函数调制,逻辑斯蒂函数解释了材料从液体转变为玻璃时的结构变化。因此,玻璃形成液体的易碎性可以看作是能量景观地形随温度变化速率的度量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fragility and the rate of change of the energy landscape topography

We conduct a comparative analysis of the mechanical response of a moderately fragile sodium borate melt, juxtaposing the adiabatic complex modulus measured at GHz frequencies using Brillouin light scattering and the steady-state shear viscosity measured at zero Hz. The two data sets are perfectly compatible with one another by fitting both components of the high-frequency complex modulus using a modified Maxwell-Wiechert model, transforming the loss modulus to viscosity, and extrapolating to zero frequency. This procedure yields an excellent fit to the steady-state viscosity under the condition that the static and relaxational moduli, as well as the activation energy for viscous dissipation are temperature dependent, as modulated by the logistic function, which accounts for the structural changes in the material as it transitions from liquid to glass. Accordingly, fragility of a glass forming liquid can be regarded as a measure of the rate of change with temperature in the energy landscape topography.

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来源期刊
Journal of Non-Crystalline Solids: X
Journal of Non-Crystalline Solids: X Materials Science-Materials Chemistry
CiteScore
3.20
自引率
0.00%
发文量
50
审稿时长
76 days
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