A new differential thermal analysis (DTA) experimental method has been developed to determine the critical cooling rate for glass formation, Rc. The method, which is found especially suitable for melts that, upon cooling, have a small heat of crystallization or a very slow crystallization rate, has been verified using a 38Na2O-62SiO2 (mol%) melt with a known Rc (not, vert, similar19 °C/min), then used to determine Rc for two complex lithium silicate glass forming melts. The new method is rapid, easy to conduct and yields values for Rc that are in excellent agreement with the Rc values measured by standard DTA techniques
A simple method, based on the measurements of two peak temperatures on a single derivative different...
In this paper, a method for studying devitrification processes by means of DTA is reported, together...
Based on the analytic approach, a new parameter Delta T-m (reduced difference of nucleation temperat...
The rates for nucleation (I) and crystal growth (U) for a lithium disilicate (Li2O·2SiO2, LS2) glass...
The crystallization of lithium disilicate (Li2O·2SiO2) glass nucleated at various temperatures was s...
A method is proposed for estimating the critical cooling rate for glass formation and continuous coo...
A recently proposed analytical (DTA) method for estimating the nucleation rates in glasses has been ...
A differential thermal analysis (DTA) method has been developed that identifies and distinguishes su...
A method is proposed for estimating the critical cooling rate and continuous cooling transformation ...
AbstractWe focus on a recently suggested approach to the calculation of critical cooling rates for g...
The crystal nucleation of Li2O-2SiO2 glass is studied by DTA. A simple method based on the shift of ...
A simple method recently proposed (ref. 1) for evaluating the temperature of maximum nucleation rate...
A crystal growth rate vs. Temperature (U vs. T)-type of curve for a Li2O .2SiO2 glass was determined...
The nucleation rate (I) versus temperature type of curves for a Na 2O·2CaO·3SiO 2 (NC 2S 3) glass do...
Differential thermal analysis (DTA) is a technique frequently used for the study of the crystallizat...
A simple method, based on the measurements of two peak temperatures on a single derivative different...
In this paper, a method for studying devitrification processes by means of DTA is reported, together...
Based on the analytic approach, a new parameter Delta T-m (reduced difference of nucleation temperat...
The rates for nucleation (I) and crystal growth (U) for a lithium disilicate (Li2O·2SiO2, LS2) glass...
The crystallization of lithium disilicate (Li2O·2SiO2) glass nucleated at various temperatures was s...
A method is proposed for estimating the critical cooling rate for glass formation and continuous coo...
A recently proposed analytical (DTA) method for estimating the nucleation rates in glasses has been ...
A differential thermal analysis (DTA) method has been developed that identifies and distinguishes su...
A method is proposed for estimating the critical cooling rate and continuous cooling transformation ...
AbstractWe focus on a recently suggested approach to the calculation of critical cooling rates for g...
The crystal nucleation of Li2O-2SiO2 glass is studied by DTA. A simple method based on the shift of ...
A simple method recently proposed (ref. 1) for evaluating the temperature of maximum nucleation rate...
A crystal growth rate vs. Temperature (U vs. T)-type of curve for a Li2O .2SiO2 glass was determined...
The nucleation rate (I) versus temperature type of curves for a Na 2O·2CaO·3SiO 2 (NC 2S 3) glass do...
Differential thermal analysis (DTA) is a technique frequently used for the study of the crystallizat...
A simple method, based on the measurements of two peak temperatures on a single derivative different...
In this paper, a method for studying devitrification processes by means of DTA is reported, together...
Based on the analytic approach, a new parameter Delta T-m (reduced difference of nucleation temperat...