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Hydrothermal corrosion of alumina ceramics under static and quasi-dynamic conditions

机译:静态和准动态条件下氧化铝陶瓷的水热腐蚀

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Corrosion resistance of solid state (SSS) and liquid phase sintered (LPS) alumina under hydrothermal conditions (subcritical water and sodium chloride solution at temperatures up to 290 °C, and pressures up to 7 MPa) was evaluated. The influence of sintering additives as well as the conditions of the test (temperature, corrosion medium) on dissolution of ceramics was studied. For evaluation of the corrosion mechanisms special attention was paid to determination of the eluate chemistry combined with the chemical and phase analysis of corroded surfaces. Corrosion of LPS alumina in both media was controlled by dissolution of calcium aluminosilicate grain boundary glass. Corrosion rates of SSS ceramics were several times lower and were largely controlled by dissolution of highly resistant alumina matrix. Corrosion of the ceramics was moderately faster in sodium chloride solution. The data are supplemented by calculations of phase equilibria in the corrosion solutions.
机译:评估了固态(SSS)和液相烧结(LPS)氧化铝在水热条件下(亚临界水和氯化钠溶液的温度最高为290°C,压力最高为7 MPa)的耐腐蚀性。研究了烧结助剂以及测试条件(温度,腐蚀介质)对陶瓷溶解的影响。为了评估腐蚀机理,特别注意了结合腐蚀表面的化学和相分析确定洗脱液的化学性质。 LPS氧化铝在两种介质中的腐蚀都通过铝硅酸钙晶界玻璃的溶解来控制。 SSS陶瓷的腐蚀速率要低几倍,并且很大程度上受高耐性氧化铝基质的溶解控制。陶瓷在氯化钠溶液中的腐蚀适度加快。通过计算腐蚀溶液中的相平衡来补充数据。

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