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Mechanism of AZS Refractory Corrosion in Barium Soda Lime Potassium Silicate Glass Melt

机译:钡钠石灰钾硅酸钾玻璃熔体机制耐火腐蚀

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Al_2O_3 - ZrO_2 - SiO_2 refractory corrosion in barium soda lime potassium silicate glass melt have been studied. The composition of glass phase of unused AZS and the concentration profiles of the principal oxides in the glass phases of corroded AZS materials were determined. The refractory samples have been taken from the melting parts of a furnace after production termination as well as from the material where the laboratory static corrosion tests have been conducted. SEM and EDX analysis have been provided on the samples located in the part above and below the metal line corrosion.The corrosion mechanism of refractories in glass melt consists of diffusion of alkalis (Na, K, Ca, Ba) from the glass melt into the refractory, dissolution of the Al_2O_3 and ZrO_2 in the glass phase, diffusion of Zr and Al from the refractory into the glass melt, creation and erosion of the boundary layer area.In the part, where the refractory is not in contact with the glass melt, the mechanism is characterized by a dissolution of alumina in refractory glass phase, diffusion of alkalis in glass phase from the refractory part below the glass level into the upper part, condensation and diffusion of evaporated volatile components of glass melt into the refractory material.
机译:Al_2O_3的 - ZrO_2 - 在钡钠钙硅酸钾玻璃SiO_2耐火腐蚀熔体进行了研究。未使用的AZS和在腐蚀AZS材料的玻璃相的主要氧化物的浓度分布的玻璃相的组成进行测定。耐火样本已经从生产后终止熔炉的熔融部分,以及从其中实验室静态腐蚀试验已进行了所述材料。 SEM和EDX分析已经提供在位于上方和下方在玻璃耐火材料的金属线corrosion.The腐蚀机理熔体由来自玻璃碱(钠,钾,钙,钡)的扩散的该部分样品融进耐火材料,在玻璃相中的Al_2O_3的和ZrO_2的溶解,从耐火材料进入玻璃熔体中,创建和边界层area.In部分,其中,所述耐火不与玻璃熔体接触的侵蚀Zr和Al的扩散,该机构的特征在于,氧化铝的耐火玻璃相的溶解,在从低于玻璃化水平进入上部,缩合和玻璃的蒸发挥发性组分的扩散的耐火部分的玻璃相的碱金属扩散熔入耐火材料。

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