鋳造工学
Online ISSN : 2185-5374
Print ISSN : 1342-0429
ISSN-L : 1342-0429
技術論文
還元スラグを鋼滓鍋内で凝固させて得られた人工石材のミクロ組織と硬さ
大坪 文隆
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2026 年 98 巻 2 号 p. 74-79

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  The development of practical applications for slag is an important challenge. When reduced slag is cooled, it solidifies into a rock-form strong artificial stone. In this study, the minerals and structures responsible for the hardness of artificial stones obtained by solidifying reduced slag in a slag pot in an electric-furnace general steel production line were investigated in detail. Reduced slag from an actual operating line was used in the experiment. The main mineral components of the artificial stone were found to be CaO, Al2O3 and SiO2. The center region of the stone was denser than the outer region and had cavities and small porosity. On the other hand, the outer region had high porosity. The main mineral phase consisted of gehlenite (2CaO·Al2O3·SiO2), with many fine spinel (MgAl2O4) crystallites also being present. The artificial stone had a Mohs hardness of 6.5. The formation of gehlenite is considerable to be the main reason for the granite-level strength of artificial stones.

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