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MICROSTRUCTURAL AMD MICROCHEMICAL CHARACTERISATION OF FERRITIC EX-SERVICE MAGNOX CONTROL ROD SHEATH MATERIAL

机译:铁素体外磁铁控制杆护套材料的微观结构AMD微型化学特征

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Microstructural characterisation has proven an essential part of a Post Irradiation examination (PIE) programme for ex-service Magnox Reactor Safety Control Rods material. Clad ductility of the component is a key parameter and this can be assessed microstructurally by Transmission Electron Microscope examination. After service, one specific control rod was found to have suffered damage to its outer ferritic steel sheath. Using an understanding of the mechanisms for copper precipitation and dislocation loop formation under reactor operating conditions, it was possible to make an estimate of the operating temperature of the component. This was calculated to be 285±15°C, considerably lower than the nominal operating temperature of ~350°C. In support of this measurement, direct comparison with work on dislocation loop formation in ferrovac iron, irradiated to a comparable neutron dose over a range of temperatures, suggests an irradiation temperature of ~280°C, derived from the comparison of mean dislocation loop size.
机译:微观结构表征已证明辐照检查(PIE)方案的主要部分是用于锻炼磁铁反应器安全控制杆材料的辐照检查(PIE)计划。组分的包层延性是关键参数,并且可以通过透射电子显微镜检查来评估微观结构。在使用之后,发现一个特定的控制杆对其外部铁素体钢护套造成损坏。利用对反应器操作条件下的铜沉淀和位错环形成机制的理解,可以对组分的操作温度进行估计。计算为285±15°C,远低于标称工作温度〜350°C。为了支持该测量,与在一系列温度范围内照射到相当中子剂量的冰淇淋中的冰淇淋中的脱位环形成的直接比较,表明〜280℃的照射温度达到平均位错环尺寸的比较。

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