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April 12, 2026Ironmaking & Steelmaking Processes Products and Applications0 citations

Melting and sintering characteristics of carbon-free mold fluxes

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GBGuangda BaoWZWang ZhenHZHaixiang Zhuang

Key Points

  • This research aims to examine how basicity and various constituents affect the melting and sintering properties of carbon-free mold fluxes.
  • Analyzed the effects of CaO/SiO2 ratios on melting and sintering characteristics.
  • Examined the influence of Al2O3, F−, TiO2, MnO, MgO, and BaO content on mold flux performance.
  • Utilized XRD analysis to assess phase compositions in relation to sintering rates.
  • Increased CaO/SiO2 ratios elevate melting temperatures and times, while reducing sintering rates.
  • Al2O3 content alters melting behaviour variably based on the CaO/SiO2 ratio, impacting sintering rates.
  • Elevated contents of F−, TiO2, and MnO improve sintering properties but reduce melting rates.
  • Optimal compositional ranges for mold fluxes were identified for improved performance.

Abstract

This study systematically investigates the effects of basicity (CaO/SiO 2 ) and key constituents on the melting behaviour and sintering characteristics of carbon-free mold fluxes. As the CaO/SiO 2 ratio increases, both the melting temperature and time of mold fluxes increase, while the sintering rate and volumetric shrinkage decrease. With increasing Al 2 O 3 content, the melting temperature and time first decrease and then increase with CaO/SiO 2 ratios below 1.0, and both parameters exhibit a continuous increase when the ratio is above 1.0. Moreover, the increase of Al 2 O 3 content leads to a reduced sintering rate and volumetric shrinkage. Higher F − , TiO 2 and MnO contents result in reduced melting behaviour, along with increased sintering characteristics. With increasing MgO and BaO content, the melting temperature and time first decrease and then increase, whereas the sintering rate and volumetric shrinkage show an opposite trend. XRD analysis indicates that carbon-free mold fluxes with lower sintering rates exhibit more complex phase compositions. The optimal compositional range for carbon-free mold fluxes is determined to be having CaO/SiO 2 ratio of 1.0–1.1, Al 2 O 3 content of 3–9 wt-%, F − content of 3–6 wt-%, and TiO 2 , MnO, MgO and BaO contents each at 6 wt-%, 6 wt-%, 3 wt-% and 3 wt-%, respectively.

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Cite This Study

Bao et al. (2026) studied this question.

synapsesocial.com/papers/69db37774fe01fead37c576chttps://doi.org/10.1177/03019233261440748
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