Shi Tiantian, Liu Wenbo, Su Zhengxiong, Yan Xu, Lu Chenyang, Yun Di
Department of Nuclear Science and Technology, Xi'an Jiaotong University, Xi'an 710049, China.
Materials (Basel). 2022 Mar 17;15(6):2211. doi: 10.3390/ma15062211.
In this study, two types of ferritic model alloys (Fe-9Cr and Fe-9Cr-C) were simultaneously irradiated with 3.5 MeV Fe ions at 450 °C and 550 °C to a dose of 3dpa at the peak damage region, respectively. Transmission electron microscopy (TEM) was used to investigate the microstructural evolution of the Fe-Cr alloys after irradiation. The experimental results showed that the size of the dislocation loops formed in the Fe-9Cr-C alloy was larger than that in the Fe-9Cr alloy, but the loop density of the Fe-9Cr-C alloy was lower than that of the Fe-9Cr alloy after irradiation at 450 °C. The reason for this phenomenon was attributed to the fact that loops formed in Fe-9Cr-C alloy have greater capture efficiency for interstitial atoms. Compared to Fe-Cr alloys irradiated at 450 °C, high-density loops were not observed in the Fe-Cr alloys irradiated at 550 °C; the number of dislocation loops in the Fe-Cr alloys irradiated at 550 °C significantly decreased due to the rapid conversion of the dislocation loops into network dislocations. In addition, subgrains were observed in the Fe-Cr alloys after irradiation. The underlying reason behind the formation of subgrains is discussed in detail.
在本研究中,两种铁素体模型合金(Fe-9Cr和Fe-9Cr-C)在450℃和550℃下同时用3.5MeV的铁离子辐照,在峰值损伤区域的剂量分别达到3dpa。采用透射电子显微镜(TEM)研究辐照后Fe-Cr合金的微观结构演变。实验结果表明,Fe-9Cr-C合金中形成的位错环尺寸大于Fe-9Cr合金中的位错环尺寸,但在450℃辐照后,Fe-9Cr-C合金的环密度低于Fe-9Cr合金。这种现象的原因归因于Fe-9Cr-C合金中形成的环对间隙原子具有更高的俘获效率。与在450℃辐照的Fe-Cr合金相比,在550℃辐照的Fe-Cr合金中未观察到高密度环;由于位错环迅速转变为网络位错,在550℃辐照的Fe-Cr合金中位错环数量显著减少。此外,在辐照后的Fe-Cr合金中观察到了亚晶粒。详细讨论了亚晶粒形成背后的潜在原因。