Viscosity of glass-forming liquids
Corning (United States) · Aalborg University · +1 more institution
Abstract
The low-temperature dynamics of ultraviscous liquids hold the key to understanding the nature of glass transition and relaxation phenomena, including the potential existence of an ideal thermodynamic glass transition. Unfortunately, existing viscosity models, such as the Vogel-Fulcher-Tammann (VFT) and Avramov-Milchev (AM) equations, exhibit systematic error when extrapolating to low temperatures. We present a model offering an improved description of the viscosity-temperature relationship for both inorganic and organic liquids using the same number of parameters as VFT and AM. The model has a clear physical foundation based on the temperature dependence of configurational entropy, and it offers an accurate…
Citation impact
- FWCI
- 14.32
- Percentile
- 100%
- References
- 49
Authors
5Topics & keywords
- Glass transition
- Thermodynamics
- Viscosity
- Entropy (arrow of time)
- Configuration entropy
- Fragility
- Relaxation (psychology)
- Materials science