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Study on Corrosion Mechanism of CAS Glass-ceramic to Refractories by EPMA

机译:CAS玻璃陶瓷对EPMA耐火腐蚀机理的研究

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CaO-Al_2O_3-SiO_2 (CAS) glass-ceramic is a novel material developed in recent years. It has a number of excellent properties, such as shining appearance, high strength, and good erosion resistance. So its practical prospect is wide. Many glass and ceramic scientists have studied this glass-ceramic, but there have been no publication made regarding corrosion mechanism. In order to choose the most suitable refractory materials for melting furnace for this glass-ceramic system, the corrosion and erosion mechanism must be investigated. The results can then be used to design the furnace and predict the life of the melting furnace. Also such investigation will reveal the extent of contamination of the final glass-ceramic product. According to the experiment that the glass liquid corrodes refractory materials in static condition, various effective material test method were used, especially Electron Probe Microanalysis (EPMA). Using EPMA, the chemical species, morphology, size and distribution of refractory materials corroded can be observed, so we know the microstructure of refractory materials prior to and after being corroded as well as the features of changing. In this paper, the authors present the features of refractory materials microstructure prior to and after being corroded by means of analyzing these pictures, which is very useful to provide the reliable theory to establish the mechanism that CAS glass-ceramic liquid corrodes the refractory materials.
机译:CAO-AL_2O_3-SIO_2(CAS)玻璃陶瓷是近年来开发的新型材料。它具有许多优异的性能,如闪亮的外观,高强度和良好的抗腐蚀性。所以它的实际前景很广。许多玻璃和陶瓷科学家研究了这款玻璃陶瓷,但没有关于腐蚀机制的出版物。为了为该玻璃陶瓷系统选择最合适的熔化材料,必须研究腐蚀和腐蚀机制。然后可以使用结果来设计炉子并预测熔炉的寿命。此类调查还将揭示最终玻璃陶瓷产品的污染程度。根据玻璃液腐蚀耐火材料在静态条件下,使用各种有效材料测试方法,尤其是电子探针微分析(EPMA)。使用EPMA,可以观察到腐蚀材料的化学品种,形态,尺寸和分布,因此我们知道腐蚀剂之前和之后的耐火材料的微观结构以及改变的特征。在本文中,作者呈现了通过分析这些图片腐蚀之前和之后的耐火材料微观结构的特征,这非常有用,可以提供可靠理论,以确定CAS玻璃陶瓷液体腐蚀耐火材料的机构。

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