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碳对铁铬合金高温自离子辐照过程中位错环形成的影响。

Effect of Carbon on Dislocation Loops Formation during Self-Ion Irradiation in Fe-Cr Alloys at High Temperatures.

作者信息

Shi Tiantian, Liu Wenbo, Su Zhengxiong, Yan Xu, Lu Chenyang, Yun Di

机构信息

Department of Nuclear Science and Technology, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Materials (Basel). 2022 Mar 17;15(6):2211. doi: 10.3390/ma15062211.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dca/8954294/7e7177765d40/materials-15-02211-g002.jpg

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