PDF

Experiments on Removal of Hydrophilic Fi

Masatoshi KAWABATA, Yuichi TSUKAGUCHI

2026enmolten steelinclusionshydrophilic particlesbubblesbubbly flowparticle removal

Abstract

Language:

Improving the purity of molten steel during continuous casting is crucial for producing high-quality steel products. This study investigates the removal rate coefficient for hydrophilic particles, specifically focusing on aluminum inclusions within a bubbly flow context. Utilizing experimental methods, the research examines the mechanisms behind particle removal efficiency, emphasizing the interaction between gas bubbles and inclusions in molten steel. The results indicate that traditional assumptions about the ease of solid oxide removal by bubbles due to poor wettability need reevaluation, particularly concerning the behavior of liquid oxides and ladle slags that exhibit good wettability. The findings contribute valuable insights into the optimization of inclusion removal techniques, which can enhance the quality of steel production. Overall, this work provides a deeper understanding of the dynamics in bubbly flows and their practical applications in metallurgical processes.

Download

Cite This Work

@article{33d59ab1-0747-4c8e-bf8e-98ca0abe1cbb,
  title={Experiments on Removal of Hydrophilic Fi},
  author={Masatoshi KAWABATA and Yuichi TSUKAGUCHI},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Experiments on Removal of Hydrophilic Fi
AU  - Masatoshi KAWABATA
AU  - Yuichi TSUKAGUCHI
PY  - 2026
LA  - en
ER  -

Similar Items

Optimization of Integrated Steel Plant R

This paper addresses the challenge of assessing the feasibility of wind power plant projects at sites with insufficient or no local historic wind data

2025enPDF

Design for Recovery of Precious and Base

2026enPDF

Electrochemical techniques for a cleaner

Important advances in electrochemical engineering technology over the last three decades have fostered the development of a lternative methods to alle

2026enPDF

Environmental and Human Health Risks Ass

2026enPDF

THE FUTURE OF ELECTRONIC WASTE RECYCLING

2026enPDF

The Recovery of Precious and Base Metals

Increasing volumes of waste printed circuit boards from obsolete electronic equipment posed escalating environmental risks and resource losses due to

2026enPDF