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Correlation of Thermo-Elastic Material and Corrosion Behavior of Refractory Castables by In-Situ Measurements

机译:原位测量热弹性材料与耐火材料腐蚀行为的相关性

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Corrosion is one of the most common wear mechanisms of refractories. Corrosive attacks lead to chemical and microstructural changes. Hot corrosion compromises chemical and/or physical interactions. Thus, the process is complex and not yet fully understood. Currently, corrosion is investigated post mortem by means of X-ray diffraction or scanning electron microscopy. These methods have the drawback that some information is lost on cooling. In-situ measurements, however, take measurements within the process. In resonant frequency and damping analysis (RFDA), a sample is excited to vibrate by a mechanical impulse. The vibrating sample emits an acoustic signal. This is recorded with a microphone and evaluated by means of Fast Fourier Transformation (FFT). We measured the change of the frequency of a low cement castable during the corrosion process. Further simplified experiments with less complex materials were done to confirm the results. Distinctive points of the curves could be correlated to specific corrosion phenomena, like melting or infiltration. The applied methods include a first characterization of the material with open porosity, density and in-situ high-temperature (HT)-RFDA measurements as well as a study of the slag behavior.
机译:腐蚀是耐火材料最常见的磨损机制之一。腐蚀性攻击导致化学和微观结构的变化。热腐蚀损害化学和/或物理相互作用。因此,该过程复杂,尚未完全理解。目前,通过X射线衍射或扫描电子显微镜检查腐蚀后腐蚀。这些方法具有缺点,即某些信息在冷却时损失。然而,原位测量在过程中进行测量。在谐振频率和阻尼分析(RFDA)中,将样品激发通过机械脉冲振动。振动样品发出声学信号。这用麦克风记录并通过快速傅里叶变换(FFT)进行评估。在腐蚀过程中测量了低水泥浇注件频率的变化。进行较差的材料的进一步简化实验以确认结果。曲线的独特点可能与特定的腐蚀现象相关,如熔化或渗透。所应用的方法包括具有开放孔隙率,密度和原位高温(HT)-RFDA测量的材料的第一次表征以及对炉渣行为的研究。

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