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Influence of CaF2 in calcium aluminate-based slag on the degradation of magnesia refractory

机译:CaF2在铝酸钙渣中的影响氧化镁耐火氢化

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High temperature experiments were carried out using an induction furnace to simulate the refractory-slag-metal reactions in conjunction with thermodynamic computations using FactSage7.0 software. The Al-killed steel and the CaO-Al2O3-8SiO(2)-5MgO-xCaF(2) (CaO/Al2O3 = 1.9, x = 0-15 wt%) slag were brought to equilibrium in a magnesia refractory at 1823 K. Moreover, the solubility of MgO in the slag was quantitatively measured using a resistance furnace as a function of CaF2 content and temperature to confirm the thermodynamic driving force of the dissolution of MgO. The penetration depth of a slag into the magnesia refractory increased with increasing CaF2 content, which originated from a decrease in slag viscosity. Also, it was confirmed that MgO grains were dynamically detached from the slag/refractory interface by increasing the content of CaF2.
机译:使用感应炉进行高温实验,以使用Factage7.0软件结合热力学计算来模拟耐火熔渣金属反应。 在1823K的氧化镁耐火材料中达到铝杀钢和CaO-Al2O3-8SiO(2)-5MGO-XCAF(2)(CaO / Al2O3 = 1.9,X = 0-15wt%)渣。 此外,使用电阻炉作为CAF2含量和温度的函数定量测量MgO在炉渣中的溶解度,以确认MgO溶解的热力学驱动力。 炉渣中的渗透深度随着CAF2含量的增加而增加,这源于渣粘度的降低。 此外,证实通过增加CAF2的含量,从渣/耐火界面动态地脱离MgO晶粒。

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