人才信息库
李艳芬
性 别 最高学历 博士研究生
职 称 研究员 专家类别 硕士生导师
部 门 师昌绪先进材料创新中心 特种合金研究部
通讯地址 辽宁省沈阳市沈河区文化路72号,中国科学院金属研究所,特种合金研究部
邮政编码 110016 电子邮件 yfli@imr.ac.cn
电 话 +86-24-23978990 传 真  
简历:

  教育经历:

  2006/10 — 2009/09,日本综合研究大学院大学(SOKENDAI),博士

  2001/09 — 2004/05,中南大学,材料科学与工程学院,硕士

  1997/09 — 2001/07,中南大学,冶金科学与工程学院,学士

  工作经历:

  2017/03 — 现在,中国科学院金属研究所,研究员

  2011/10 — 2017/03,日本东北大学金属材料研究所,两届日本“学术振兴会JSPS外国人特别研究员” 

  2009/10 — 2011/09,日本核融合科学研究所(NIFS), COE博士后

  2005/05 — 2005/07,日本核融合科学研究所(NIFS), 访问学者

  2004/05 — 2006/09,中国科学院等离子体物理研究所,研究实习员

研究领域:

  发展先进核能是我国能源中长期发展计划的战略焦点之一。作为国际热核聚变示范堆(ITER)的七大成员国之一和第四代核能系统国际论坛(GIF)主要成员,我国已制定了由热堆—快堆(第四代裂变堆)—聚变堆的核能发展战略。材料问题是制约先进核能系统走向工程应用的瓶颈。 

  主要从事先进核能系统用新型结构材料的设计和研发工作:

  (1)新型纳米氧化物弥散强化钢(oxide dispersion strengthened steels ——ODS)的研发

  得益于其弥散分布的纳米氧化物颗粒、高密度的位错和极细小的晶粒等优良结构特性,ODS钢具有优异的高温蠕变性能和抗辐照性能。ODS钢具有广泛的应用前景,可同时用作未来第四代裂变堆核燃料包壳材料和聚变堆包层结构材料,已成为国际上相关研究的热点。

  研究方向包括:性能优异的ODS马氏体钢、铁素体钢的研发;ODS钢的粉末冶金制备方法与加工工艺优化;ODS钢纳米氧化物颗粒形成、演化规律及稳定性的研究;纳米氧化物颗粒等微观结构的先进方法表征研究(TEM、STEM、APT等);高温时效、高温蠕变、3000KV超高压电子辐照、离子辐照和中子辐照等对ODS钢组织结构与性能的影响等。

  (2)低活化马氏体钢的设计和研发

  低活化铁素体/马氏体钢(RAFM)是未来第一座聚变示范堆的首选结构材料。是首个具有中国自主产权RAFM钢——China Low Activation Martensitic steel(CLAM)钢的早期研究重要成员之一,对CLAM钢以及日本同类钢JLF-1进行过大量研究。

  主要研究方向包括:RAFM钢的化学成分设计与优化、冶炼制备加工工艺、热处理制度等制定;力学性能、蠕变性能与抗辐照性能研究等。

  (3)其他相关的核材料

  包括其他核能相关结构材料的研究,如钒合金(V-4Cr-4Ti)、锆合金(Zr-Nb)等。

承担科研项目情况:
社会任职:
 
获奖及荣誉:

  2017年03月:中国科学院金属研究所人才引进;

  2014年04月-2017年3月:日本“学术振兴会 (JSPS) 外国人特别研究员”奖励(定着);

  2011年10月-1013年12月:日本“学术振兴会 (JSPS) 外国人特别研究员”奖励(一般);

  2007年:“第一届中国百篇最具影响优秀国内学术论文”(合作者);

  2007年:“第五届中国科协期刊优秀学术论文奖” (合作者);

  2006年10月-2009年9月:日本文部省MEXT全额奖学金(博士期间)。

代表论著:

  在Acta Materials、Scientific Report、J. Nuclear Materials、Materials Science and Engineering: A、Journal of Alloys and Compounds、Fusion Engineering and Design、Fusion Science and Technology等国际期刊上发表论文60余篇,他引600余次。

  [1] Y. Matsukawa, I. Okuma, H. Muta, Y. Shinohara, R. Suzue, H.L. Yang, T. Maruyama, T. Toyama, J.J. Shen, Y.F. Li, Y. Satoh, S. Yamanaka, H. Abe,"Crystallographic analysis on atomic-plane parallelisms between bcc precipitates and hcp matrix in recrystallized Zr-2.5Nb alloys", Acta Materialia, 2017, 126: 86-101.

  [2] Y. Matsukawa, S. Kitayama, K. Murakami, Y. Shinohara, K. Yoshida, H. Maeno, H.L. Yang, T. Toyama, K. Yasuda, H. Watanabe, A. Kimura, H. Muta, S. Yamanaka, Y.F. Li, Y. Satoh, S. Kano, H. Abe, "Reassessment of oxidation-induced amorphization and dissolution of Nb precipitates in Zr?Nb nuclear fuel cladding tubes", Acta Materialia, 2017, 127: 153-164.

  [3] J.J. Shen, H.L. Yang, Y.F. Li, S. Kano, Y. Matsukawa, Y. Satoh, H. Abe, "Microstructural stability of an as-fabricated 12Cr-ODS steel under elevated-temperature annealing", Journal of Alloys and Compounds, 2017, 695: 1946-1955.

  [4] H.L. Yang, S. Kano, Y. Matsukawa, J.J. Shen, Z.S. Zhao , Z.G. Duan, D.Y. Chen, K. Murakami, Y.F. Li, Y. Satoh, H. Abe, "Tensile properties and microstructure of Zr-1.8Nb alloy subjected to 140-MeV C4+ ion irradiation", Journal of Nuclear Materials, 2017, 495: 138-145

  [5] Yanfen Li*, Jingjie Shen, Feng Li, Sho Kano, Yoshi Matsukawa, Yuhki Satoh, Haiying Fu, Hiroaki Abe, Takeo Muroga, "Effects of Fabrication Processing on the Microstructure and Mechanical Properties of Oxide Dispersion Strengthening Steels", Materials Science and Engineering: A, 2016, 654:203–212.

  [6] J.J. Shen, Y.F. Li*, F. Li, H.L. Yang, Z.S. Zhao, S. Kano, Y. Matsukawa, Y. Satoh, H. Abe, "Microstructural characterization and strengthening mechanisms of a 12Cr-ODS steel", Materials Science and Engineering: A, 2016, 673: 624-632.

  [7] Z. Wang*, K. Georgarakis, K. S. Nakayama, Y. Li*, A. A. Tsarkov, G. Xie, D. Dudina, D. V. Louzguine-Luzgin, A. R. Yavari, "Microstructure and mechanical behavior of metallic glass fiberreinforced Al alloy matrix composites", Scientific Reports 6, 2016, Article number:24384.

  [8] Y.F. Li*, H. Abe, F. Li, Y. Satoh, Y. Matsukawa, T. Matsunaga and T. Muroga, "Grain structural characterization of 9Cr-ODS steel aged at 973 K up to 10000 h by electron backscatter diffraction", Journal of Nuclear Materials, 2014, 455: 568-572.

  [9] T. Muroga, T. Nagasaka, Y. F. Li, H. Abe, S. Ukai, A. Kimura and T. Okuda, "Fabrication and Characterization of Reference 9Cr and 12Cr-ODS Low Activation Ferritic/Martensitic Steels", Fusion Engineering and Design, 2014, 89: 1717-1722.

  [10]  F, Li, H. Abe, T. Ishizaki, Y.F. Li, T. Nagasaka, T. Muroga, T. Nagase and H. Yasuda, "Stability of oxide particles under irradiation in 9Cr-ODS steel at 400oC", Journal of Nuclear Materials, 2014, 455: 724-727.

  [11]  H. Abe, T. Ishizaki, F. Li, S. Kano, Y.F. Li, Y. Satoh, T. Nagase and H. Yasuda, "New approach to in situ observation experiments under irradiation in high voltage electron microscopes", Materials Transactions, 2014, 55 (3): 423-427. 

  [12]  Y.F. Li*, H. Abe, T. Muroga, T. Nagasaka and M. Kondo, "Corrosion behavior of 9Cr-ODS steel in stagnant liquid lithium and lead-lithium at 873 K", Journal of Nuclear Materials, 2013, 44: 200-206.

  [13]  Bo Huang, Qunying Huang, Yanfen Li, Chunjing Li, Qingsheng Wu and FDS Team, "Mechanical Properties and Microstructure Evolution of CLAM Steel in Tube Fabrication and Test Blanket Module Assembly", Journal of Nuclear Materials, 2013, 442 (1-3): s71-76.

  [14]  T. Muroga, T. Nagasaka, P.F. Zheng, Y.F. Li and H. Watanabe, "Dislocation evolution during thermal creep deformation in V–4Cr–4Ti with various thermal and mechanical treatments", Journal of Nuclear Materials, 2013, 442(1-3): s354-359. 

  [15]  Y. F. Li*, M. Kondo, T. Nagasaka and T. Muroga, V. Tsisar, "Influence of exposure to Pb-Li on microstructure and mechanical properties of 9Cr-ODS and CLAM steels", Fusion Sci. Tech., 2011, 60 (1): 359-363.

  [16]  Yanfen Li*, T. Nagasaka, T. Muroga, A. Kimura and S. Ukai, "High-temperature mechanical properties and microstructure of 9Cr oxide dispersion strengthened steel compared with RAFMs", Fusion Eng. Des., 2011, 86 (9-11): 2495-2499.

  [17]  Yanfen Li*, T. Nagasaka and T. Muroga, "Microstructure and mechanical properties of JLF-1 and CLAM Steels exposed to thermal aging with stress", Plasma Fusion Res., 2011, 6: 1-5.

  [18]  Y.F. Li*, T. Nagasaka and T. Muroga, "Long-term thermal stability of reduced activation ferritic/martensitic steels as structural materials of fusion blanket", Plasma Fusion Res., 2010, 5 (S1036): 1-5.

近期国内外学术会议

  [1] 李艳芬*,张家榕,石全强,严伟,单以银,杨柯,“氧化物弥散强化钢(ODS)蠕变性能及He离子辐照影响”,第8届反应堆物理和核材料会议,广东深圳,2017年11月13-16日。

  [2] Y.F. Li*, H.L. Yang, J.J. Shen, S. Kano, Y. Matsukawa, Y. Satoh, H. Abe, T. Muroga, J.R. Zhang, Y.Y.Shan, K.Yang, "Creep behavior and fracture mechanisms of 12Cr-ODS ferritic steel",18th International Conference On Fusion Reactor Materials (ICFRM-18), Aomori, Japan, Nov. 5-10, 2017.

  [3] Y.F. Li*, H. Abe, J.J Shen, F. Li, S. Kano, Y. Matsukawa, Y. Satoh and T. Muroga, “Anisotropy in microstructure and mechanical properties of 12Cr-ODS ferritic steels”, 17th International Conference On Fusion Reactor Materials (ICFRM-17), Aachen, Germany, October 12-16, 2015.

  [4] Yanfen Li*, H. Abe, F. Li, J.J. Shen, S. Kano, Y. Matsukawa, Y. Satoh and T. Muroga, “Comparison of mechanical properties and microstructural characterization of two 12Cr-ODS ferritic steels”, 12th Japan-China Symposium on Materials for Advanced Energy Systems and Fission & Fusion Engineering, Shizuoka, Japan, Sep. 17-20, 2014.

  [5] Yanfen Li*, H. Abe, F. Li, Y. Satoh, Y. Matsukawa, T. Matsunaga and T. Muroga, “Microstructural evolution of 9Cr-ODS steel during thermal aging at 973 K up to 10000 h”, 16th International Conference On Fusion Reactor Materials (ICFRM-16), Beijing, China, Oct. 21-26, 2013.

  [6] T. Muroga, T. Nagasaka, Y.F. Li, H. Abe, S. Ukai, A. Kimura and T. Okuda, “Fabrication and Characterization of Reference 9Cr and 12Cr-ODS Low Activation Ferritic/Martensitic Steels”, 11th International Symposium on Fusion Nuclear Technology (ISFNT-11), Barcelona, Spain, Sep. 16-20, 2013. (Invited presentation).

  [7] Yanfen Li*, T. Nagasaka, T. Muroga, A. Kimura and S. Ukai, “Mechanical properties and microstructure of 9Cr-ODS steel and compatibility with liquid metal Pb-Li”, Asian-Core University Program on Advanced Energy Science, International Symposium on Advanced Energy Systems and Materials, Mar. 4-5, 2011, Busan, Korea.

  [8] Y.F. Li*, T. Nagasaka and T. Muroga, “High-temperature mechanical properties and microstructure of 9Cr oxide dispersion strengthened steel compared with RAFMs”, 26th symposium on Fusion Technology (SOFT-26), Porto, Portugal, Sep.27-Oct.1, 2010.

  [9] Y.F. Li*, T. Nagasaka and T. Muroga, “Microstructure and Mechanical Properties of JLF-1 and CLAM Steels Exposed to Thermal Aging with Stress”, 20th International Toki Conference (ITC-20) on The Next Twenty Years in Plasma and Fusion Science, Dec.7-10, 2010, Toki, Toki-City, Gifu, Japan.

  [10] Yanfen Li*, M. Kondo, T. Nagasaka, T. Muroga and V. Tsisar, “The Corrosion Influence of Lithium and Lead-Lithium on Microstructure and Mechanical Properties of ODS and CLAM steels”, 19th Topical Meeting on the Technology for Fusion Energy, Nov.7-11, 2010, Las Vegas, Nevada, USA.

  [11] Yanfen Li*, T. Nagasaka, T. Muroga, A. Kimura and S. Ukai, “Research and Development of Low Activation 9Cr-ODS Steel for Fusion Blanket Structural Materials”, 10th Japan-China Symposium (JCS-10) on Materials for Advanced Energy Systems and Fission & Fusion Engineering, Oct.19-22, 2010, Kyoto, Japan.

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