期刊文献+

纳米结构9Cr-ODS钢的微观结构及对氦泡形成的影响 被引量:1

Microstructure and Its Influence on Helium Bubbles in Nanostructured 9Cr-ODS Steel
下载PDF
导出
摘要 以采用机械合金化和热等静压法制备的纳米结构9Cr-ODS钢为研究对象,利用高分辨率透射电镜和扫描透射电镜的高角环形暗场像等手段分析了9Cr-ODS钢的微观结构特征;利用400 keV离子加速器向9Cr-ODS钢及无ODS的Eurofer97钢中注入4×1017/cm2氦离子,对比了氦泡尺寸.结果表明:纳米结构9Cr-ODS钢的平均晶粒尺寸约0.5μm,存在两种尺寸不同的析出相:超高密度弥散分布的纳米尺度Y2Ti2O7析出相和倾向于在晶界形成的尺寸较大的Mn(Ti)Cr2O4析出相.ODS钢中的氦泡尺寸明显小于Eurofer97钢,说明纳米析出相对粗大氦泡的形成有明显的抑制作用. A 9Cr-ODS steel was prepared by mechanical alloying and hot isostatic pressing methods. The microstructures were characterized by high-resolution transmission electron microscopy and high-angle annular dark field scanning transmission electron microscopy (HAADF- STEM). Helium ions of 4 ×1017/cm2 were respectively implanted into the 9Cr-ODS steel and non-ODS Eurofer97 steel with a 400 keV ion accelerator, and the sizes of helium bubbles in the two steels were observed by HAADF-STEM. The results show that the average grain size of the 9Cr-ODS steel is about 0. 5 μm. Two kinds of precipitates were observed in the ODS steel: high- density nano-size Y/Ti2O7 and large Mn(Ti) Cr2O4 formed mainly at the grain boundaries. The size of the helium bubbles in ODS steels is much more smaller than that in Eurofer97 steel, which means that the nano-size precipitates are helpful to suppress the formation of coarse helium bubbles.
出处 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2014年第8期1133-1136,共4页 Journal of Northeastern University(Natural Science)
基金 国家重点基础研究发展计划项目(2011CB610405) 国家自然科学基金资助项目(50971033 91026013) 教育部新世纪优秀人才支持计划项目(NCET-10-0302) 中央高校基本科研业务费专项资金资助项目(N120510001)
关键词 ODS钢 氦离子注入 析出相 Y—Ti—O Mn(Ti)Cr2O4 ODS steel helium ion implantation precipitate Y-Ti-O Mn (Ti) Cr2O4
  • 相关文献

参考文献9

  • 1Ehrlich K. The development of structural materials lbr fusion reactorsl Jl-Philosophical Transactions of the Royal Society: A, 1999,357(1752) :595 -623.
  • 2Lu Z, Faulkner R G, Riddle N, et al. Effect of heat treatment on microstructure and harness of Eurofer 97, Eurofer ODS and T92 steels[J]. Journal of Nuclear Materials, 2009,386/387/ 388:445 - 448.
  • 3Edmondon P D, Parish C M, Zhang Y, et al. Helium entrapment in a nanostructured ferritic alloy [J]. Scripta Materialia ,2011,65 ( 8 ) :731 - 734.
  • 4Yamashita S, Ohtsuka S, Akasaka N, et al. Formation of nanoscale complex oxide particles in mechanically alloyed ferritic steel [J]. Philosophicul Magazine Letters, 2004, 84 (8) :525 -529.
  • 5Krueger R. Dual-column (FIB-SEM) waler application[J]. Micron, 1999,30 ( 3 ) : 221 - 226.
  • 6Hirata A, Fujita T, Wen Y R, et al. Atomic structure of nanoclusters in oxide-dispersion-strengthened steels[ J ]. Nature Materials, 2011 , 10 ( 12 ) : 922 - 926.
  • 7Lu C Y,Lu Z, Liu C M. Microstructure of nano-structured ODS CLAM steel by mechanical alloying and hot isostatic pressing[J]. Journal of Nuclear Materials, 20I 3,442 ( sup I ) : 142 - 152.
  • 8Ukai S,Ohtsuka S. Nano-mesoscopic structure control in 9Cr- ODS ferritic steels[ J]. Energy Materials,2007,2( 1 ) :26 -35.
  • 9吕铮,卢晨阳,张守辉,谢锐,刘春明.纳米结构14Cr-ODS铁素体钢的制备与微观结构[J].金属学报,2012,48(6):649-653. 被引量:13

二级参考文献16

  • 1Maziasz P J. ,1 Nucl Mater, 1985; 133:134.
  • 2Yvon P, Carre F. J Nucl Mater, 2009; 385:217.
  • 3Klueh R L, Gelles D S, Jitsukawa S, Kimura A, Odette G R, Schaaf B, Victoria M. J Nucl Mater, 2002; 307 311: 455.
  • 4Ukai S, Fujiwatra M. J Nuc, l Maier, 2002:307 311:749.
  • 5Odette G R, Alinger M J, Wirth B D. Annut Rev Mater Res, 2008; 38:471.
  • 6Yamashita S, Ohtsuka S, Akasaka N, Ukai S. Ohnuki S. Philos Maq Lett, 2004: 84:525.
  • 7Odet, tc G R, Hoelzer D T. JOSl, 2010; 62:84.
  • 8Ukai S, Ohtsuka S. Energy Mater, 2007; 2:26.
  • 9Ratti hi, Leuvrey D, Mathon M H, Carlan Y. d Nucl Mater, 2009; 386 388:540.
  • 10Larson D J, Maziasz P J, Kim I S, Miyahara K. Scr Mater, 2001; 44:359.

共引文献12

同被引文献8

  • 1Cho H S,Klmura A,Ukai M,et al.Corrosion properties of oxide dispersion strengthened steels in super-critical water environment[J].Journal of Nuclear Materials,2004,329/333:387-391.
  • 2Schaeublin R,Leguey T,Spatig P,et al.Microstructure and mechanical properties of two ODS ferritic/martensitic steels[J].Journal of Nuclear Materials,2002,307/311:778-782.
  • 3Ohnuma M,Suzuki J,Ohtsuka S,et al.A new method for the quantitative analysis of the scale and composition of nanosized oxide in 9Cr-ODS steel[J].Acta Materialia,2009,57(18):5571-5581.
  • 4Kishimoto H,Yutani K,Kasada R,et al.Heavy-ion irradiation effects on the morphology of complex oxide particles in oxide dispersion strengthened ferritic steels[J].Journal of Nuclear Materials,2007,367/370:179-184.
  • 5Kishimoto H,Yutani K,Kasada R,et al.Evaluation of Helium effects on swelling behavior of oxide dispersion strengthened ferritic steels under ion irradiation[J].Journal of Nuclear Materials,2007,367/370:423-427.
  • 6LU Chen-yang,LU Zheng,LIU Chun-ming.Microstructure of nano-structured ODS CLAM steel by mechanical alloying and hot isostatic pressing[J].Journal of Nuclear Materials,2013,442(1/3):S148-S152.
  • 7Zhang Guangming,Zhou Zhangjian,Wang Man,et al.Tensile and Charpy impact properties of an ODS ferritic/martensitic steel 9Cr-1.8W-0.5Ti-0.35Y2O3[J].Fusion Engineering and Design,2014,89:280-283.
  • 8Hirata A,Fujita T,Wen Y R,et al.Atomic structure of nanoclusters in oxide-dispersion-strengthened steels[J].Natural Materials,2011,10:922-926.

引证文献1

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部