G. Huo, Jiyu Qiu, Chengjun Liu
Abstract
The CaO–Al2O3–La2O3 slag system is a fundamental system for potential metallurgical slags applicable to rare‐earth steel (RE‐steel). Herein, we utilized high‐temperature equilibrium experiments and quenching techniques, followed by characterization via scanning electron microscopy, electron probe microanalysis, and x‐ray diffraction, to determine the morphology, composition, and type of equilibrium phases in the CaO–Al2O3–La2O3 system. Based on the experimental results, isothermal sections of the system at 1873 K (consisting of nine three‐phase fields, five two‐phase fields, and one liquid‐phase field) and 1773 K (containing 11 three‐phase fields, six two‐phase fields, and one liquid‐phase field) were constructed. Thereafter, the effect of slag composition on the dissolution behavior of potential inclusions in RE‐steel, particularly A, A11L, AL, C2AL, and C2A3L, into the slag was analyzed from a thermodynamic perspective. The study on the phase diagram of the CaO–Al2O3–La2O3 system can not only guide the smelting of RE‐steel but also offer a reference for the materials design and synthesis methods of La‐containing ceramic from a thermodynamic perspective.
Citation format
HUO, G.; QIU, Jiyu; LIU, Chengjun. Experimental study on phase equilibria of cao–al2o3–la2o3 system at 1873 and 1773 k. JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2026, 109(2).