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首页> 外文期刊>Materials Research >Corrosion penetration monitoring of advanced ceramics in hot aqueous fluids
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Corrosion penetration monitoring of advanced ceramics in hot aqueous fluids

机译:先进陶瓷在热水性流体中的腐蚀渗透监测

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摘要

Advanced ceramics are considered as components in energy related systems, because they are known to be strong, wear and corrosion resistant in many environments, even at temperatures well exceeding 1000 °C. However, the presence of additives or impurities in important ceramics, for example those based on Silicon Nitride (Si3N4) or Al2O3 makes them vulnerable to the corrosion by hot aqueous fluids. The temperatures in this type of corrosion range from several tens of centigrade to hydrothermal conditions above 100 °C. The corrosion processes in such media depend on both pH and temperature and include often partial leaching of the ceramics, which cannot be monitored easily by classical gravimetric or electrochemical methods. Successful corrosion penetration depth monitoring by polarized reflected light optical microscopy (color changes), Micro Raman Spectroscopy (luminescence changes) and SEM (porosity changes) will be outlined. The corrosion process and its kinetics are monitored best by microanalysis of cross sections, Raman spectroscopy and eluate chemistry changes in addition to mass changes. Direct cross-calibrations between corrosion penetration and mechanical strength is only possible for severe corrosion. The methods outlined should be applicable to any ceramics corrosion process with partial leaching by fluids, melts or slags.
机译:先进陶瓷被认为是能源相关系统中的组件,因为众所周知,它们在许多环境中甚至在超过1000°C的温度下都坚固,耐磨且耐腐蚀。但是,重要陶瓷中存在添加剂或杂质,例如基于氮化硅(Si3N4)或Al2O3的添加剂或杂质,使它们容易受到热水性流体的腐蚀。这种腐蚀的温度范围从几十摄氏度到高于100°C的水热条件。在这种介质中的腐蚀过程取决于pH值和温度,并且通常包括陶瓷的部分浸出,而传统的重量分析法或电化学方法则无法轻易地对其进行监测。将概述通过偏振反射光学显微镜(颜色变化),显微拉曼光谱法(发光变化)和SEM(孔隙率变化)成功监测腐蚀渗透深度的过程。腐蚀过程及其动力学最好通过横截面的微观分析,拉曼光谱和洗脱液的化学变化(质量变化)进行监控。腐蚀渗透与机械强度之间的直接交叉校准仅适用于严重腐蚀。概述的方法应适用于任何通过流体,熔体或炉渣部分浸出的陶瓷腐蚀过程。

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