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Effect of PyC Thermal Behavior on the Stress of TRISO-Coated Fuel Particles

机译:PYC热行为对三重涂层燃料颗粒应力的影响

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TRISO coated fuel particle is the most important component in HTR fuel, the silicon carbide (SiC) coating layer is regarded as the pressure vessel to contain the fission products. During reactor operation, the inner pressure resulting from fission products and pyrocarbon (PyC) thermal effect will contribute to the failure of TRISO-coated particles. The higher temperature will result in the increasing of inner pressure and PyC thermal expansion, which will then change the stress of SiC layer. Considering the effects of temperature on inner-pressure expansion and elastic strain into the pressure vessel failure model, thermal effects on the stress of TRISO-coated particles were studied with analytical solution. The results indicated that the effects of inner pressure on the particle stresses were increasingly highlighted at the late stage of irradiation. And the increasing temperature caused a slight effect on PyC elastic modulus while elastic strain is unaffected greatly, either. Therefore, CFP stresses remain unchanged basically.
机译:Triso涂覆的燃料颗粒是HTR燃料中最重要的组分,碳化硅(SiC)涂层被认为是含有裂变产物的压力容器。在反应器操作期间,由裂变产物和吡烃(PYC)热效应产生的内部压力会导致三涂层涂覆颗粒的失效。较高的温度会导致内部压力和PYC热膨胀的增加,然后将改变SiC层的应力。考虑到温度对压力容器失效模型的内压膨胀和弹性应变的影响,用分析溶液研究了对三涂层涂层颗粒应力的热效应。结果表明,在辐射后期逐渐突出显示内压对颗粒应力的影响。并且越来越大的温度对Pyc弹性模量产生了轻微的影响,而弹性应变也没有大量影响。因此,基本上,CFP应力保持不变。

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