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辐照过程中He对ODS合金中氧化物的影响 被引量:1

Effect of Helium on Oxides in ODS Alloy During Ion Irradiation
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摘要 研究辐照下He在氧化物弥散强化材料中小于5nm的氧化物颗粒的稳定性。在有He环境下,对14YWT氧化物弥散强化材料进行高温离子辐照。采用三维原子探针(APT)对辐照前后样品中的氧化物颗粒的大小、密度、成分以及其空间分布进行分析。结果表明:小于5nm的弥散氧化物颗粒主要是由Y和Ti的氧化物组成,在辐照前后其成分、尺寸和空间分布无明显变化,说明在600℃高温重离子辐照过程中,在有He环境下铁素体ODS材料中弥散氧化物颗粒仍具有良好的稳定性。 The stability of nano-scale oxides with the size less than 5nm in the helium atmosphere under irradiation in the ODS(oxide dispersion strengthened) materials was researched. The 14YWT alloy with pre-implanted with helium was irradiated at high temperature. Size, density, and composition of the nano-scale oxides were investigated by the atom probe tomography. The results show that nano-scale oxides are composed of oxides enrich in Ti and Y. The change of the size and composition of the nano-scale oxides under irradiation is trivial, indicating the good stability of nano-scale oxides in helium pre-implanted ODS materials under irradiation at 600℃.
出处 《材料工程》 EI CAS CSCD 北大核心 2016年第4期89-93,共5页 Journal of Materials Engineering
基金 国家自然科学基金资助项目(11275023) 国家磁约束核聚变能发展研究专项基金资助(2011GB108002)
关键词 氧化物弥散强化材料 辐照 纳米氧化物颗粒 稳定性 ODS material irradiation nano-scale oxide particle stability
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参考文献30

  • 1ZINKLE SJ, WAS G S. Materials challenges in nuclear energy [J]. Acta Materials,2013,61(3):735-758.
  • 2ODETTE G R, ALINGER M J, WIRTH B D,et al. Recent de- velopments in irradiation resistant steels[J]. Annual Review of Materials Research, 2008,38 : 471- 503.
  • 3吕铮,刘春明.抗辐照合金的发展与纳米结构ODS钢的抗辐照性能[J].材料与冶金学报,2012,11(1):47-53. 被引量:3
  • 4李明,周张健,廖璐,许迎利,葛昌纯.ODS铁素体钢中弥散氧化物的研究进展[J].材料导报,2010,24(15):94-98. 被引量:9
  • 5UKAI S, FUJIWARA M. Perspective of ODS alloys application in nuclear environments[J]. Journal of Nuclear Materials, 2002, 307(1) :749-757.
  • 6WU Y, HANEY E M, CUNNINGHAM N J, et al. Transmis- sion electron microscopy characterization of the nanofeatures in nanostructured ferritic alloy MA957[J]. Acta Materialia, 2012,60 (8): 3456-3468.
  • 7KLUEHR L,SHIGLEDECKER J P, SWINDEMAN R W, et al. Oxide dispersion-strengthened steels: a comparison of some com- mercial and experimental alloys[J]. Journal of Nuclear Materials, 2005,341(2-3) : 103- 114.
  • 8WILLIAMS C A, UNIFANTOWICZ P, BALUC N, et al. The formation and evolution of oxide particles in oxide-dispersion- strengthened ferritic steels during processing[J]. Aeta Materia- Iia,2013,61(6) :2219-2235.
  • 9HSIUNGL L, FLUSS M J, KIMURA A. Structure of oxide nan- oparticles in Fe-16Cr MA/ODS ferritic steel[J]. Materials Let- ters,2010,64(16) : 1782- 1785.
  • 10PARISHC M, EDMONDSON P D, ZHANG Y. Direct observa- tion of ion-irradiation-induced chemical mixing[J]. Journal of Nuclear Materials, 2011,418 ( 1 - 3) : 106 - 109.

二级参考文献53

  • 1黄群英,郁金南,万发荣,李建刚,吴宜灿.聚变堆低活化马氏体钢的发展[J].核科学与工程,2004,24(1):56-64. 被引量:87
  • 2胡本芙,高桥平七郎.He对低活性Fe-Cr-Mn(W,V)合金辐照产生点缺陷行为的影响[J].金属学报,2004,40(9):955-961. 被引量:4
  • 3胡本芙,吴承健.新型抗辐照氧化物弥散强化(ODS)型铁素体不锈钢辐照损伤特性研究[J].金属学报,1995,31(11). 被引量:3
  • 4姚焕.国际合力攻关超临界水冷堆技术中材料和传热流动两大难题[J].中国核工业,2007(4):24-26. 被引量:9
  • 5Asano K, Kohno Y, Kohyama A, et al. Microstructural evolution of an oxide dispersion strengthened steel under charged particle irradiation[J]. J Nuclear Mater, 1988,155- 157(2):928.
  • 6Kayano H, Suganuma K, Narui M, et al. Neutron irradiation effects on the mechanical properties of dispersion- strengthened steels[-[-] J Nuclear Mater, 1979,85-86 (2): 925.
  • 7Snykers M. Void swelling of an oxide dispersion strengthened ferritic alloy in a high voltage electron microscope [J]. J Nuclear Mater,1980,89(1) :80.
  • 8Kim I S, Hunn J D, Hashimoto N, et al. Defect and void evolution in oxide dispersion strengthened ferritic steels under 3.2 MeV Fe^+ ion irradiation with simultaneous helium injection[J]. J Nuclear Mater,2000,280(3) :264.
  • 9Coppola R, Lindau R, May R P, et al. Investigation of microstructural evolution under neutron irradiation in Eurofer97 steel by means of small-angle neutron scattering[J]. J Nuclear Mater, 2009,386-388 : 195.
  • 10a郭丽娜,贾成厂,胡本芙.化学法制备的12Cr-ODS钢的组织和性能研究[C]//“超临界水堆关键科学问题的基础研究”973项目中期交流会.上海,2008.

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