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Temperature dependence of damping in silica refractories measured via the impulse excitation technique

机译:通过脉冲励磁技术测量的二氧化硅耐火材料中阻尼的温度依赖性

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Using high-temperature impulse excitation the temperature dependence of damping, quantified by the so-called inverse quality factor, has been measured for silica refractories with porosities of 13-17% up to 1200 degrees C. Damping-temperature curves exhibit closed loops between heating and cooling and do not show any indication of damage accumulation after two complete heating-cooling cycles. The temperature dependence of damping exhibits features that are due to an interplay between phase transitions (between the subpolymorphs of tridymite and cristobalite) and microstructure (reversible closure re-opening of preexisting microcracks) and are also known from resonant frequency measurements. Additionally, however, the temperature dependence of damping reveals some details that are undetectable by resonant frequency measurements and may tentatively be attributed to the competition between microcrack closure and increased dry friction (damping peak at approximately 325 degrees C) and to a phase transition of the dicalcium silicate phase shannonite (damping increase in the range 700-800 degrees C).
机译:使用高温脉冲激发,通过所谓的反向质量因子量化的阻尼的温度依赖性,已经针对孔隙率为1200℃的孔隙率的二氧化硅耐火材料测量。阻尼温度曲线在加热之间表现出封闭的环。和冷却,在两个完整的加热冷却循环后,不显示任何损坏累积的指示。阻尼的温度依赖性表现出由于相变(Tridymite和Cristobalite的亚聚物之间)之间的相互作用和微观结构(可逆闭合的微裂纹之间)并且也从谐振频率测量中已知。此外,阻尼的温度依赖性揭示了一些细节,其通过谐振频率测量不可检测,并且可能暂时归​​因于微裂纹封闭和增加的干摩擦(在大约325℃下的阻尼峰值)和相位过渡之间的竞争。二钙硅酸盐相皂矿(阻尼范围内的700-800℃)。

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