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Crystallization of glass-forming liquids: Maxima of nucleation, growth, and overall crystallization rates

机译:玻璃形成液的结晶:成核,生长和总结晶速率的最大值

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摘要

A set of equations for determining the temperatures and magnitudes of the maximum nucleation, growth, and overall crystallization rates of glass-forming liquids is derived and analyzed. The analysis is performed based on the classical theories of nucleation and growth, without introducing additional assumptions such as the Stokes-Einstein-Eyring (SEE) equation, models for specific kinetic mechanisms of aggregation, a specification of the type of temperature dependence of the diffusion coefficient, or specific models for the computation of the driving force of crystallization and the work of critical cluster formation. Such approximations are employed only for analytical estimates and to illustrate the general results. In particular, it is shown that the magnitude of the maximum of the steady-state nucleation rate J(max) decreases upon increasing the ratio T-max((nucl))/T-m (T-max((nucl)): temperature of maximum of the steady-state nucleation rate, T-m: melting or liquidus temperature). Similarly, the maximum growth rate, u(max) decreases with increasing values of the ratio T-max((growth))/T-m (T-max((growth)): temperature of maximum of the growth rate). Several experimental results on the crystallization kinetics of glass-forming liquids are interpreted theoretically for the first time employing the concepts developed here. (C) 2015 Elsevier B.V. All rights reserved.
机译:推导并分析了一组方程式,用于确定玻璃形成液的最大成核,生长和总结晶速率的温度和大小。该分析是基于经典的成核和生长理论进行的,没有引入其他假设,例如斯托克斯-爱因斯坦-艾林(SEE)方程,聚集的特定动力学机制模型,扩散的温度依赖性类型规范系数,或用于计算结晶驱动力和关键团簇形成功的特定模型。这种近似值仅用于分析估计并用于说明一般结果。特别地,示出了当增加比率T-max((核))/ Tm(T-max((核)):温度的Tb)时,稳态成核率J(max)的最大值的大小减小。稳态成核速率的最大值(Tm:熔化或液相线温度)。类似地,最大增长率u(max)随着比率T-max((增长))/ T-m(T-max((增长):增长率的最大值的温度))的值增加而减小。理论上首次使用此处开发的概念首次解释了有关玻璃形成液体结晶动力学的实验结果。 (C)2015 Elsevier B.V.保留所有权利。

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