首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >A dual ion irradiation study of helium–dpa interactions on cavity evolution in tempered martensitic steels and nanostructured ferritic alloys
【24h】

A dual ion irradiation study of helium–dpa interactions on cavity evolution in tempered martensitic steels and nanostructured ferritic alloys

机译:回火马氏体钢和纳米结构铁素体合金中氦-dpa相互作用对空穴演化的双离子研究

获取原文
获取原文并翻译 | 示例
           

摘要

Cavity evolutions in a normalized and tempered martensitic steel (TMS) and two nanostructured ferritic alloys (NFA) under Fe~(3+) and He~+ dual ion beam irradiations (DII) at 500 °C and 650 °C were characterized. The irradiation conditions encompass a wide range of displacement per atom damage (dpa), He and He/ dpa. The 500 °C DII produced damage and He levels of ≈10–47 dpa and ≈400–2000 appm, respectively. Transmission electron microscopy (TEM) showed that DII of a 8Cr TMS, at 500 °C to up to 60 dpa and 2100 appm He, produced a moderate density of non-uniformly distributed cavities with bimodal sizes ranging from ≈1 nmHe bubbles to ≈20 nm faceted voids, and swelling ≈0.44%. In contrast, the same irradiation conditions produced only small ≈1.3 nm diameter bubbles and swelling of ≈0.05% in the NFA MA957. Similar bubble distributions were observed in MA957 and a developmental NFA DII at 650 °C up to ≈80 dpa and ≈3900 appm He. These results demonstrate the outstanding He management capability of the oxide nano-features in the NFA. The various data trends are shown as a function of dpa, He, He/ dpa and He~*dpa.
机译:表征了在Fe〜(3+)和He〜+双离子束辐照(DII)下分别在500°C和650°C下归一化和回火的马氏体钢(TMS)和两种纳米结构的铁素体合金(NFA)的空穴演化。辐照条件包括大范围的单位原子损伤位移(dpa),He和He / dpa。 500°C DII产生的损害和He浓度分别为≈10-47dpa和≈400-2000appm。透射电子显微镜(TEM)显示8Cr TMS的DII,在500°C至60 dpa和2100 appm He的条件下,会产生中等密度的非均匀分布的腔,其双峰尺寸从≈1nmHe气泡到≈20 nm刻有空隙,溶胀度约为0.44%。相比之下,在NFA MA957中,相同的照射条件仅产生了直径约1.3 nm的小气泡和约0.05%的膨胀。在MA957和发展中的NFA DII中,在650°C达到≈80dpa和≈3900appm He时,观察到了类似的气泡分布。这些结果证明了NFA中氧化物纳米特征的出色的氦管理能力。各种数据趋势显示为dpa,He,He / dpa和He〜* dpa的函数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号