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Annealing Effect of Thermal Conductivity on Thermal Stress Induced Fracture of Nuclear Graphite

机译:导热系数对核石墨热应力诱导断裂的影响

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摘要

Graphite materials are used for structural components in the core of high temperature gas-cooled reactors (HTGRs) because of their excellent thermo/mechanical properties. When the core temperature is raised at an accident, the thermal stress of the components is induced, and it enhances the fracture probability of them. In general, the thermal conductivity of graphite is decreased by neutron irradiation due to irradiation-induced defects preventing heat conduction by phonon. It is hence expected that decreased thermal conductivity is recovered to some extent by thermal annealing at the accident. Therefore, the consideration of the thermal annealing effect is placed as much important subject in the fracture/strength evaluation of the graphite components at the accident. In the present study, the thermal stress and the fracture probability of graphite components influenced by the thermal annealing were investigated by a finite element method (FEM) analysis. It was shown that the annealing effect decreases the thermal stress and a certain level of the fracture probability.
机译:石墨材料因其出色的热/机械性能而被用作高温气冷堆(HTGR)堆芯的结构部件。事故时提高堆芯温度时,会引起组件的热应力,从而增加了组件的断裂几率。通常,由于辐照引起的缺陷阻止了声子的热传导,中子辐照会降低石墨的热导率。因此,期望通过事故时的热退火在某种程度上恢复降低的导热率。因此,在事故时对石墨组分的断裂/强度评估中,将热退火效果的考虑作为重要的主题。在本研究中,通过有限元方法(FEM)分析了热退火对石墨部件的热应力和断裂概率的影响。结果表明,退火效应降低了热应力并降低了一定程度的断裂概率。

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