Bulletin of the Chinese Ceramic Society, Volume. 41, Issue 11, 3844(2022)
Effect of Fe2O3 on Crystallization Behavior of CaOMgOAl2O3SiO2 GlassCeramics Based on Copper Tailings
CaOMgOAl2O3SiO2 (CMAS) glassceramics were prepared by melting method using copper tailings as main raw material. The crystallization behavior of finegrained copper tailings based CMAS glassceramics was optimized by adding Fe2O3 crystal nucleation agent. The effect of nucleation agent content on the crystallization behavior and physical properties of finegrained copper tailings based CMAS glassceramics was studied by DSC, XRD and SEM, and the crystallization kinetics parameters were calculated by OzawaChen method. The results show that when the amount of Fe2O3 crystal nucleation agent is more than 3.72%(mass fraction), the glassceramics prepared from finegrained copper tailings can achieve overall crystallization. The precipitation of pyroxene phase is the result of coordination of Fe and Mg elements in glass phase into [Si(Al)O4] tetrahedral lattice. In addition, the increase of Fe3+ is conducive to the precipitation of pyroxene phase and reduces crystallization activation energy. The crystallization behavior and mechanical properties of finegrained copper tailings based glassceramics are optimized by Fe2O3 crystal nucleation agent.
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SHI Linyun, XU Yuhua, WEI Qi. Effect of Fe2O3 on Crystallization Behavior of CaOMgOAl2O3SiO2 GlassCeramics Based on Copper Tailings[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(11): 3844
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Received: May. 21, 2022
Accepted: --
Published Online: Dec. 26, 2022
The Author Email: Linyun SHI (shilinyun1@163.com)
CSTR:32186.14.