Marie-Aline VAN ENDE, Muxing GUO
Non-metallic inclusions are a significant concern in steel production, affecting both the quality of the final product and processing efficiency. This study explores the evolution of inclusion size distributions in molten steel, emphasizing the need for controlling inclusions to enhance steel performance. The objective is to introduce a novel approach utilizing the Population Density Function (PDF) to analyze and interpret inclusion size distributions effectively. By characterizing the continuous changes in inclusion distributions as influenced by various steel conditions, the research presents several applications of PDF analysis for understanding the mechanisms of inclusion formation during steelmaking. In addition, the potential for using PDF methodologies for inclusion size control is discussed. The findings highlight the advantages of the PDF approach in steelmaking, paving the way for improved techniques in managing non-metallic inclusions and thus enhancing the quality of high-performance steels.
@article{ea93fbb3-528c-4940-be48-fc43a4b03c1d,
title={Evolution of Non-Metallic Inclusions in Secondary Steelmaking: Learning from Inclusion Size Distributions},
author={Marie-Aline VAN ENDE and Muxing GUO},
year={2013},
language={en}
}TY - JOUR TI - Evolution of Non-Metallic Inclusions in Secondary Steelmaking: Learning from Inclusion Size Distributions AU - Marie-Aline VAN ENDE AU - Muxing GUO PY - 2013 LA - en ER -
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