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March 6, 2026Tetsu-to-Hagane0 citationsOpen Access

Evaluation of Heterogeneity in Steam Aging Process of Slag Subbase Course Materials

HYHiromu YanoTHTakeru HoshinoYKYusuke Kato

Key Points

  • The study investigates causes of temperature rise delays and steam flow heterogeneity in steam aging facilities for slag stabilization.
  • Conducted laboratory-scale experiments to analyze steam flow dynamics.
  • Performed on-site sampling of slag to assess expansion stability.
  • Utilized numerical simulations based on actual slag properties to investigate steam distribution.
  • Identified that steam flow heterogeneity is caused by ruts from heavy machinery and particle size segregation during piling.
  • Found that ruts significantly impact steam distribution compared to segregation.
  • Determined that optimizing piling methods can enhance steam distribution and reduce energy consumption.

Abstract

Steelmaking slag, a by-product of the steelmaking process, contains free CaO (f-CaO), which hydrates to form Ca(OH)2, causing significant volume expansion and disintegration. Basic Oxygen Furnace (BOF) slag with its high f-CaO content exhibits particularly severe expansion. At JFE Steel, steelmaking slag intended for use as subbase course material is treated in a steam aging facility to stabilize expansion and slag expansion after aging is evaluated using the expansion stability test specified in the JIS standard. However, nonuniform steam distribution during aging often prolongs stabilization and increases steam consumption. In addition, some aged slags are not sufficiently stabilized and fail to meet the criteria, requiring re-aging and reducing productivity. This study aims to investigate the mechanisms and causes of delayed temperature rise and steam flow heterogeneity in steam aging facilities. Steam flow heterogeneity was analyzed through laboratory-scale experiments, on-site sampling, and numerical simulations based on actual slag properties. The results revealed that the steam flow heterogeneity arises from ruts formed by heavy machinery and particle size segregation during the slag piling process, with ruts having a greater influence than segregation. These findings indicate that optimizing piling methods is essential for improving steam distribution, reducing energy consumption, and enhancing productivity in steam aging facilities.

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Cite This Study

Yano et al. (2026) studied this question.

synapsesocial.com/papers/69aa6ee2531e4c4a9ff5908chttps://doi.org/10.2355/tetsutohagane.tetsu-2025-092
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