When the quantitative characterization of non-metallic inclusions in steel is done and the effect of limiting factors is assessed, and based on that the possibility of reconstruction of the total content of non-metallic inclusions in steel is estimated, further considerations can be directed towards predicting the model of size distribution curve. The aim of this work is to establish relations on the basis of which it will be possible to quantify the content of non-metallic inclusions in extra-pure steels, when metallographic control is difficult or even impossible by routine procedures
The source, the removal and the mechanical consequences of the non-metallic inclusions depends on th...
Large inclusions can be the initiation site for fatigue failure in metal components. As melting pro...
Abstract Recent inclusion models are mainly focused on the compositional evolution of inclusion, st...
When the quantitative characterization of non-metallic inclusions in steel is done and the effect of...
When the quantitative characterization of non-metallic inclusions in steel is done and the effect of...
Non-metallic inclusions have always been the active subject of steelmaking research to improve the s...
The evolution of oxide inclusion size distribution and the shape of the distribution during steelmak...
AbstractThe search for increasingly cleaner steels has heightened the demand for additional analysis...
Deoxidation is an unavoidable step in the elaboration of steel. The study of its influence could imp...
The interest of gaining on-line information related to non-metallic inclusions during the steelmakin...
Due to growing demands for steel powder properties and continuous evolution of the powder metallurgy...
This doctoral thesis is motivated by the metallurgical problem of non-metallic inclusions, which ari...
Non-metallic inclusions (NMIs) play a key role in many important properties of steel, influencing bo...
The effects of sample area and automated SEM/EDS feature analysis parameters (step size, magnificati...
Inclusions play an important role in the performance of steel products. In this respect, they should...
The source, the removal and the mechanical consequences of the non-metallic inclusions depends on th...
Large inclusions can be the initiation site for fatigue failure in metal components. As melting pro...
Abstract Recent inclusion models are mainly focused on the compositional evolution of inclusion, st...
When the quantitative characterization of non-metallic inclusions in steel is done and the effect of...
When the quantitative characterization of non-metallic inclusions in steel is done and the effect of...
Non-metallic inclusions have always been the active subject of steelmaking research to improve the s...
The evolution of oxide inclusion size distribution and the shape of the distribution during steelmak...
AbstractThe search for increasingly cleaner steels has heightened the demand for additional analysis...
Deoxidation is an unavoidable step in the elaboration of steel. The study of its influence could imp...
The interest of gaining on-line information related to non-metallic inclusions during the steelmakin...
Due to growing demands for steel powder properties and continuous evolution of the powder metallurgy...
This doctoral thesis is motivated by the metallurgical problem of non-metallic inclusions, which ari...
Non-metallic inclusions (NMIs) play a key role in many important properties of steel, influencing bo...
The effects of sample area and automated SEM/EDS feature analysis parameters (step size, magnificati...
Inclusions play an important role in the performance of steel products. In this respect, they should...
The source, the removal and the mechanical consequences of the non-metallic inclusions depends on th...
Large inclusions can be the initiation site for fatigue failure in metal components. As melting pro...
Abstract Recent inclusion models are mainly focused on the compositional evolution of inclusion, st...