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首页> 外文期刊>Journal of the European Ceramic Society >Analysis and interpretation of refractory microstructures in studies of corrosion mechanisms by liquid oxides
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Analysis and interpretation of refractory microstructures in studies of corrosion mechanisms by liquid oxides

机译:液态氧化物腐蚀机理研究中的难熔组织分析与解释

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The refractories must not only resist high temperatures but also corrosion by liquid oxides. This corrosion involves phenomena of dissolution and precipitation of new crystalline phases. The study of the microstructures of corroded refractories provides essential information. However, the interpretation of the microscopic observations is difficult. Indeed, because of the crystallization of liquid glasses during cooling, the mineral phases observed at room temperature are not representative of those observed at high temperature. The concept of local thermodynamic equilibrium and the use of the phase rule makes it possible to interpret the microstructures of corroded refractories, to explain the observed mineral zonation and to quantify the composition of the liquid phase at high temperature from chemical profiles established by SEM. Experimental data from corrosion of high alumina refractories will illustrate and validate this theoretical approach.
机译:耐火材料不仅必须耐高温,而且还必须受到液态氧化物的腐蚀。这种腐蚀涉及新的结晶相的溶解和沉淀现象。对腐蚀耐火材料微观结构的研究提供了必要的信息。但是,很难解释微观观察结果。实际上,由于冷却期间液体玻璃的结晶,在室温下观察到的矿物相不能代表在高温下观察到的矿物相。局部热力学平衡的概念和使用相线法则可以解释腐蚀耐火材料的微观结构,解释所观察到的矿物区带,并根据由SEM建立的化学分布图来量化高温下的液相组成。高铝耐火材料腐蚀的实验数据将说明并验证这种理论方法。

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