A quantitative model is derived for the progress of a nucleation and growth controlled reaction during heating at a constant rate. It incorporates nucleation, growth, and impingement, takes account of temperature dependent solubility, and distinguishes between diffusion controlled growth and linear growth. Parameters of the model for a single process reaction are: s, which is akin to the Avrami parameter for isothermal analysis, Eeff the effective activation energy, ?i the impingement parameter, and a pre-exponential constant. The model is applied to the DSC data on precipitation in Al---Si alloys. An excellent agreement between data and model is obtained. The parameter s is interpreted in terms of the processes taking place, namely growth ...
International audienceThe heat flux during a differential scanning calorimetry (DSC) experiment of a...
A system of mean field rate equations is employed for describing the kinetics of solid-solid phase s...
A system of rate equations is developed for modeling the kinetics of diffusional phase transitions i...
The transformation exponent s is characteristic for the mechanism of a reaction and contains informa...
We study non-isothermal nucleation and growth phase transformations, which are described by a genera...
Recently (M.J. Starink, Thermochim Acta 596, 2014, 109-119) a new model for diffusion-controlled pre...
AbstractBased on an extended Johnson-Mehl-Avrami-Kolmogorov analytical phase transformation kinetics...
International audienceA detailed understanding of precipitation is essential to alloy and process de...
A simple numerical model which calculates the kinetics of crystallization involving randomly distrib...
A new approximation to the equations describing Classical Nucleation and Growth Theories, is propose...
The kinetics of precipitation processes in the presence of pre-existing nucleation sites are conside...
Avrami's model describes the kinetics of phase transformation under the assumption of spatially rand...
International audienceClassical Nucleation and Growth Theories provide a compelling framework predic...
The purpose of the present work is to show that measurements of the acoustic nonlinearity parameter ...
Precipitation in Al-Si alloys during cooling from solution annealing was investigated with advanced ...
International audienceThe heat flux during a differential scanning calorimetry (DSC) experiment of a...
A system of mean field rate equations is employed for describing the kinetics of solid-solid phase s...
A system of rate equations is developed for modeling the kinetics of diffusional phase transitions i...
The transformation exponent s is characteristic for the mechanism of a reaction and contains informa...
We study non-isothermal nucleation and growth phase transformations, which are described by a genera...
Recently (M.J. Starink, Thermochim Acta 596, 2014, 109-119) a new model for diffusion-controlled pre...
AbstractBased on an extended Johnson-Mehl-Avrami-Kolmogorov analytical phase transformation kinetics...
International audienceA detailed understanding of precipitation is essential to alloy and process de...
A simple numerical model which calculates the kinetics of crystallization involving randomly distrib...
A new approximation to the equations describing Classical Nucleation and Growth Theories, is propose...
The kinetics of precipitation processes in the presence of pre-existing nucleation sites are conside...
Avrami's model describes the kinetics of phase transformation under the assumption of spatially rand...
International audienceClassical Nucleation and Growth Theories provide a compelling framework predic...
The purpose of the present work is to show that measurements of the acoustic nonlinearity parameter ...
Precipitation in Al-Si alloys during cooling from solution annealing was investigated with advanced ...
International audienceThe heat flux during a differential scanning calorimetry (DSC) experiment of a...
A system of mean field rate equations is employed for describing the kinetics of solid-solid phase s...
A system of rate equations is developed for modeling the kinetics of diffusional phase transitions i...