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Ion Irradiation-Induced Microstructural Evolution of Ni–Mo–Cr Low Alloy Steels

机译:Ni-Mo-Cr低合金钢的离子辐照诱导组织演变

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摘要

As leading candidates of sheet steels for advanced nuclear reactors, three types of Ni–Mo–Cr high-strength low alloy (HSLA) steels named as CNST1, CNST2 and CNSS3 were irradiated by 400 keV Fe+ with peak fluence to 1.4 × 1014, 3.5 × 1014 and 7.0 × 1014 ions/cm2, respectively. The distribution and morphology of the defects induced by the sample preparation method and Fe+ irradiation dose were investigated by transmission electron microscopy (TEM) and positron-annihilation spectroscopy (PAS). TEM samples were prepared with two methods, i.e., a focused ion beam (FIB) technique and the electroplating and twin-jet electropolishing (ETE) method. Point defects and dislocation loops were observed in CNST1, CNST2 and CNSS3 samples prepared via FIB. On the other hand, samples prepared via the ETE method revealed that a smaller number of defects was observed in CNST1, CNST2 and almost no defects were observed in CNST3. It is indicated that artifact defects could be introduced by FIB preparation. The PAS S-W plots showed that the existence of two types of defects after ion implantation included small-scale defects such as vacancies, vacancy clusters, dislocation loops and large-sized defects. The S parameter of irradiated steels showed a clear saturation in PAS response with increasing Fe+ dose. At the same irradiation dose, higher values of the S-parameter were achieved in CNST1 and CNST2 samples when compared to that in CNSS3 samples. The mechanism and evolution behavior of irradiation-induced defects were analyzed and discussed.
机译:作为先进核反应堆钢板的主要候选材料,用400 keV Fe + 辐照了三种类型的Ni-Mo-Cr高强度低合金(HSLA)钢,分别名为CNST1,CNST2和CNSS3。峰通量达到1.4×10 14 ,3.5×10 14 和7.0×10 14 离子/ cm 2 分别。采用透射电子显微镜(TEM)和正电子an没光谱法(PAS)研究了样品制备方法和Fe + 辐照剂量引起的缺陷的分布和形貌。用两种方法制备TEM样品,即聚焦离子束(FIB)技术和电镀和双喷电抛光(ETE)方法。通过FIB制备的CNST1,CNST2和CNSS3样品中观察到点缺陷和位错环。另一方面,通过ETE方法制备的样品表明,在CNST1,CNST2中观察到较少的缺陷,而在CNST3中几乎观察不到缺陷。结果表明,伪影缺陷可以通过FIB制备引入。 PAS S-W图表明,离子注入后存在两种类型的缺陷,包括空位,空位簇,位错环和大尺寸缺陷等小规模缺陷。随着Fe + 剂量的增加,辐照钢的S参数表现出明显的PAS响应饱和。在相同的照射剂量下,与CNSS3样品相比,在CNST1和CNST2样品中获得了更高的S参数值。分析和讨论了辐照引起的缺陷的机理和演变行为。

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