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J. Korean Ceram. Soc. > Volume 40(1); 2003 > Article
Journal of the Korean Ceramic Society 2003;40(1): 24.
doi: https://doi.org/10.4191/kcers.2003.40.1.024
CaCO3, CaCl2 및 CaSO4 · 2H2O 첨가에 의한 AFm상의 변화
이종규, 추용식
요업기술원 세라믹·건재부
A Conversion of AFm Phases by Addition of CaCO3, CaCl2 and CaSO4 · 2H2O
ABSTRACT
A formation and conversion of AFm phases decisively play role in the hydration, hardening and corrosion processes of various cement. In this study, the conversion of Alumino-Ferrite Monohydrates(AFm) phases under the addition of $CaCO_3,;CaCl_2;and;CaSO_4{cdot}2H_2O$was investigated by the XRD quantitative analysis. The thypical AFm phases are $M_S(monosulfoaluminate),;M_C(monocarboaluminate);and;M_{Cl}(monochloroaluminate and also Called Friedel's salts)$in this cementitious system, The conversion reaction were not occurred in $M_C-CaCO_3,;M_{Cl}-CaCO_3$ and $M_{Cl}-CaCl_2$system. However, in $M_S-CaCO_3$ system, ettringite and $monocarboaluminate(M_C)$ were formed. In $M_S-CaCl_2;system;M_S$ was transformed to Friedel's $salts(M_{Cl})$ and ettringite was formed. In the case of $CaSO_4{cdot}2H_2O$ addition, all AFm $phases(M_S,;M_C;and;M_{Cl})$ were transformed to ettringite. The order of stabilization of AFm phases under $CaCO_3,;CaCl_2;and;CaSO_4{cdot}2H_2O$ was as follows : $M_S< M_C
Key words: AFm Phases, X-ray quantitative analysis, Phases change, Delayed ettringite formation, Solubility Product
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