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Characterization by acoustic emission pattern recognition of microstructure evolution in a fused-cast refractory during high temperature cycling

机译:通过声发射模式识别来表征高温循环过程中熔铸耐火材料的微观结构演变

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Fused-cast refractory materials are widely used in the glass industry, especially in the building of superstructures and side walls of fusion furnaces.The HZFC (High Zirconia Fused Cast) products are especially used as tank blocks for the fusion of highly corrosive glasses melted at very high temperature (such as LCD glass), due to their high corrosion resistance and their low generation of glass defects generation. The presence of this high amount of pure ZrO_2 in the refractory can be responsible for microdamage occurrence during the cooling step after melt casting (annealing), associated to the martensitic transition of zirconia. Acoustic emission (AE) analysis is well known as a reliable tool to investigate microstuctural evolution at a very small scale. In this work, a fused-cast ZrO_2 refractory has been investigated using a AE unsupervised pattern recognition procedure and a frequency-energy coupled analysis.Data gathering during thermal cycles at high temperature (typically 1500 ℃) has been done thanks to an innovative self-developed testing device.The analysis of frequency and energy parameters makes it possible to detect and to characterize the occurrence and the chronology of microdamage in specific range of temperature. Hypothesis concerning different ways of microdamage formation below the temperature of the martensitic transformation of ZrO_2 during the cooling stage can be proposed related to thermo-mechanical properties and the microstructure of the material. In particular, intergranular and intragranular microcracks due to CTE mismatches occurring in the material have been also investigated.
机译:熔融浇铸耐火材料广泛用于玻璃行业,特别是在熔融炉的上部结构和侧壁的建筑中.HZFC(高氧化锆熔融浇铸)产品特别用作罐体,用于熔融在高熔点玻璃中熔化的高腐蚀性玻璃由于它们的高耐腐蚀性和低缺陷玻璃的产生,因此温度非常高(例如LCD玻璃)。耐火材料中这种大量纯ZrO_2的存在可能是在熔体浇铸(退火)后冷却步骤中与氧化锆马氏体转变有关的微损伤发生的原因。众所周知,声发射(AE)分析是一种非常小规模研究微观结构演变的可靠工具。在这项工作中,使用AE无监督模式识别程序和频率-能量耦合分析对熔融浇铸的ZrO_2耐火材料进行了研究。由于具有创新的自通过对频率和能量参数的分析,可以检测和表征特定温度范围内微损伤的发生和时间顺序。可以提出关于在冷却阶段在ZrO_2马氏体转变温度以下低于温度的微损伤形成的不同方式的假说,该假说与材料的热机械性能和微观结构有关。特别地,还研究了由于材料中发生的CTE不匹配而引起的晶间和晶内微裂纹。

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