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Thermal shock resistance of a refractory castable containing andalusite aggregate

机译:含红柱石骨料的耐火浇注料的抗热震性

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One of the most important aspects to be evaluated when predicting the performance of refractory materials is their thermal shock resistance, especially considering the thermomechanical loads to which they are subjected. The methods currently used to predict thermal shock resistance behavior are based on Hasselman's studies, which take into account various experimental parameters. Thermal shock resistance can also be evaluated experimentally by applying thermal shock cycles and measuring the residual elastic modulus after each cycle. To predict and evaluate this resistance, test specimens of a commercial castable were cast, cured, dried and fired at 1000 degrees C and 1450 degrees C for five hours. Using Hasselman's parameters, the refractory fired at 1450 degrees C was predicted to present lower thermal shock resistance, which was confirmed by experimental thermal shock tests. The results indicated that the modulus of elasticity and modulus of rupture decreased by about 72% in specimens fired at 1000 degrees C, and by 82% in those fired at 1450 degrees C. Therefore, the specimens fired at 1450 degrees C showed lower thermal shock resistance. This finding underscores the importance of evaluating the behavior of castables with different microstructures resulting from different firing temperatures.
机译:预测耐火材料性能时要评估的最重要方面之一是其耐热冲击性,尤其是考虑到它们所承受的热机械负荷。当前用于预测耐热冲击性能的方法是基于Hasselman的研究,其中考虑了各种实验参数。也可以通过应用热冲击循环并测量每个循环后的残余弹性模量来通过实验评估抗热冲击性。为了预测和评估这种抵抗力,将商品浇注料的测试样品在1000摄氏度和1450摄氏度下铸造,固化,干燥和烧制5小时。使用Hasselman的参数,在1450摄氏度下燃烧的耐火材料预计具有较低的抗热震性,这已通过实验性热冲击试验得到了证实。结果表明,在1000摄氏度下燃烧的样品的弹性模量和断裂模量下降了约72%,在1450摄氏度下燃烧的样品的弹性模量和断裂模量下降了82%。因此,在1450摄氏度下燃烧的样品表现出较低的热冲击抵抗性。该发现强调了评估由不同烧成温度导致的具有不同微观结构的浇铸料的性能的重要性。

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