The study is devoted to define the optimal conditions for the nitriding of pure iron at atmospheric pressure by using NH3- Ar-C3H8 gas mixtures. After studying the mechanisms of phase formation and mass transfer at the gas-solid interface, a mathematical model is developed in order to predict the nitrogen transfer rate in the solid, the ε-carbonitride layer growth rate and the nitrogen and carbon concentration profiles. In order to validate the model and to show its possibilities, it is compared with thermogravimetric experiments, analyses and metallurgical observations (X-ray diffraction, optical microscopy and electron microprobe analysis). Results obtained allow us to demonstrate the sound correlation between the experimental results and...
The kinetics of the nitrided layer thickness growth and its structure depend on the nitrogen flux fr...
This paper present mathematical model which developed to predict the nitrided layer thickness (case ...
In order to provide greater improvements in material performance with respect to hardness, fatigue, ...
In this work, our goal is to optimize the nitriding treatment at a low-temperature of the steel 32Cr...
AbstractThe aim of this work is to study the effect of the nitriding potential on development of the...
In gas nitriding the thickness of the case depth is reported to increase parabolically with processi...
The present article presents a few selected aspects of the modelling of gaseous nitriding of pure i...
Gaseous nitriding is controlled by temperature, time and surface nitrogen potential. Tuning these pa...
The current knowledge of the mechanisms of gas nitriding bcc iron alloys was surveyed.Alloys studied...
Thermodynamic calculations of the Fe-Cr-N System in the region of the Gas Phase Equilibria have been...
The gaseous nitriding behaviour of 33CrMoV12-9 steel was investigated. The co-diffusion of nitrogen ...
Thermodynamic calculations of the Fe-Cr-N System in the region of the Gas Phase Equilibria have been...
In order to provide greater improvements in material performance with respect to hardness, fatigue, ...
An example of the experimental-theoretical model of the nitriding process of steel is presented. The...
Due to the excellent properties of nitrided steels, this technique is of great interest for numerous...
The kinetics of the nitrided layer thickness growth and its structure depend on the nitrogen flux fr...
This paper present mathematical model which developed to predict the nitrided layer thickness (case ...
In order to provide greater improvements in material performance with respect to hardness, fatigue, ...
In this work, our goal is to optimize the nitriding treatment at a low-temperature of the steel 32Cr...
AbstractThe aim of this work is to study the effect of the nitriding potential on development of the...
In gas nitriding the thickness of the case depth is reported to increase parabolically with processi...
The present article presents a few selected aspects of the modelling of gaseous nitriding of pure i...
Gaseous nitriding is controlled by temperature, time and surface nitrogen potential. Tuning these pa...
The current knowledge of the mechanisms of gas nitriding bcc iron alloys was surveyed.Alloys studied...
Thermodynamic calculations of the Fe-Cr-N System in the region of the Gas Phase Equilibria have been...
The gaseous nitriding behaviour of 33CrMoV12-9 steel was investigated. The co-diffusion of nitrogen ...
Thermodynamic calculations of the Fe-Cr-N System in the region of the Gas Phase Equilibria have been...
In order to provide greater improvements in material performance with respect to hardness, fatigue, ...
An example of the experimental-theoretical model of the nitriding process of steel is presented. The...
Due to the excellent properties of nitrided steels, this technique is of great interest for numerous...
The kinetics of the nitrided layer thickness growth and its structure depend on the nitrogen flux fr...
This paper present mathematical model which developed to predict the nitrided layer thickness (case ...
In order to provide greater improvements in material performance with respect to hardness, fatigue, ...