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Thermal conductivity of ceramics during irradiation

机译:辐射过程中陶瓷的热导率

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摘要

Thermal conductivity is one of the most important parameters for the design of fusion reactors using ceramic materials. Thermal diffusivity of ceramics decreases by phonon scattering and specific heat increases slightly as the temperature rises to 1300 K. The amount of point defects during neutron irradiation changes with the irradiation temperature. In this work, α-Al_2 O_3, A1N, β-Si_3N_4 and β-SiC specimens were irradiated in the experimental fast reactor JOYO at 775, 835 and 1039 K to high neutron fluence. Thermal diffusivity was measured at elevated temperatures in vacuum via the laser flash method. Using an approximation function, the thermal diffusivity at the irradiation temperature was determined for each specimen, and the one during irradiation was estimated with additional assumptions. Thermal diffusivity of ceramics during irradiation was found to be almost temperature independent, and the thermal conductivity has a slight increase with temperature.
机译:对于使用陶瓷材料的聚变反应堆设计,热导率是最重要的参数之一。陶瓷的热扩散率通过声子散射而降低,比热随温度升高至1300 K而略有增加。中子辐照期间点缺陷的数量随辐照温度而变化。在这项工作中,α-Al_2O_3,AlN,β-Si_3N_4和β-SiC样品在实验快堆JOYO中以775、835和1039 K辐照到高中子注量。通过激光闪光法在真空中升高的温度下测量热扩散率。使用近似函数,确定每个样品在辐照温度下的热扩散率,并在其他假设下估算辐照期间的热扩散率。发现辐射期间陶瓷的热扩散率几乎与温度无关,并且热导率随温度略有增加。

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