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陶乃镕(研究员)

所属单位:中国科学院金属研究所

担任职务:研究员

擅长领域:

联系方式:+86 24 23971891 邮箱:登录后查看

简历:

  200910~至今       中国科学院金属研究所 研究员

  20081~200812  美国麻省理工学院 访问学者

  20054~20099   中国科学院金属研究所 副研究员 

  20039~200412  德国马普学会金属研究所 访问学者

  19999~20035   中国科学院研究生院 金属研究所 获材料学博士

研究领域:

  纳米金属材料制备、微观结构、力学性能。

主要成就

5SCI论文:

  1. K. Lu, F.K. Yan, H.T. Wang, N.R. Tao, Strengthening austenitic steels by using nanotwinned austenitic grains, Scripta Materialia, 2012, Vol. 66, 878-883.

  2. Singh, N.R. Tao, M. Dao, S. Suresh, Repeated frictional sliding properties of copper containing nanoscale twins, Scripta Materialia, 2012, Vol. 66, 849-853.

  3. H.T. Wang, N.R. Tao, K. Lu, Strengthening an austenitic Fe-Mn steel by using nano-twinned austenitic grains, Acta Materialia, 2012, Vol. 60, 4027-4040.

  4. F.K. Yan, G.Z. Liu, N.R. Tao, K. Lu, Strength and ductility of 316L austenitic stainless steel strengthened by nano-scale twin bundles, Acta Materialia, 2012, Vol. 60, 1059-1071.

  5. W.L. Li, N.R. Tao, Z. Han and K. Lu, Comparisons of dry sliding tribological behaviors between coarse-grained and nanocrystalline copperWear, 2012, Vol. 274-275, 306-312.

  6. F. Yan, H.W. Zhang, N.R. Tao, K. Lu, Quantifying the microstructures of pure Cu subjected to dynamic plastic deformation at cryogenic temperature, Journal of Materials Science and Technology, 2011, Vol. 27, No.8, 673-679.

  7. B. Yao, Z. Han, Y.S. Li, N.R. Tao, K. Lu, Dry sliding tribological properties of nanostructured copper subjected to dynamic plastic deformation, Wear, 2011, Vol. 271, 1609-1616.

  8. F. Huang, N.R. Tao, K. Lu, Effects of impurity on microstructure and hardness in pure Al subjected to dynamic plastic deformation at cryogenic temperature, Journal of Materials Science and Technology, 2011, Vol. 27, No.7, 628-632.

  9. G.H. Xiao, N.R. Tao, K. Lu, Strength-ductility combination of nanostructured Cu-Zn alloy with nanotwin bundles, Scripta Materialia, 2011, Vol. 65, 119-122.

  10. Y. Zhang, N.R. Tao, K. Lu, Effects of stacking fault energy, strain rate and temperature on microstructures and properties of Cu-Al subject to plastic deformation, Acta Materialia, 2011, Vol. 58, 6048-6058.

  11. T.H. Fang, W.L. Li, N.R. Tao, K. Lu, Revealing extraordinary intrinsic tensile plasticity in gradient nano-grained copper, Science, 2011, Vol. 331, 1587-1590.

  12. F. Huang N.R. Tao K. Lu, Effects of Strain Rate and Deformation Temperature on Microstructures and Hardness in Plastically Deformed Pure AluminumJournal of Materials Science and Technology, 2011, Vol. 27, No.1, 1-7.

  13. G. Z. Liu, N. R. Tao, K. Lu, 316L austenite stainless steels strengthened by means of nano-scale twins, Journal of Materials Science and Technology, 2010, Vol. 26, No.4, 289-292.

  14. C.S. Hong, N.R. Tao, X. Huang, K. Lu, Nucleation and thickening of shear bands in nano-scale twin/matrix lamellae of a Cu-Al alloy processed by dynamic plastic deformation, Acta Materialia, 2010, Vol. 58, 3103-3116.

  15. E. Qin, L. Lu, N.R. Tao, J. Tan, K. Lu, Enhanced fracture toughness and strength in bulk nanocrystalline Cu with nanoscale twin bundles, Acta Materialia, 2009, Vol. 57, 6215-6225.

  16. Y. Zhang, N.R. Tao, K. Lu, Effect of stacking-fault energy on deformation twin thickness in Cu–Al alloys, Scripta Materialia, 2009, Vol. 60, 211-213.

  17. G.H. Xiao, N.R. Tao, K. Lu, Microstructures and mechanical properties of a Cu-Zn alloy subjected to cryogenic dynamic plastic deformation, Materials Science and Engineering A, 2009, Vol. 513-514, 13-21.

  18. C.S. Hong, N.R. Tao, K. Lu, X. Huang, Grain orientation dependence of deformation twinning in pure Cu subjected to dynamic plastic deformationScripta Materialia, 2009, Vol. 61, 289-292.

  19. N.R. Tao, K. Lu, Nano-scale structural refinement via deformation twinning in fcc metals, Scripta Materialia, 2009, Vol. 60, 1039-1043.

  20. Y.S. Li, Y. Zhang, N.R. Tao, K. LuEffect of Zener-Hollomon parameter on microstructures and mechanical properties of Cu subjected to plastic deformationActa Materialia, 2009, Vol. 57, 761-772.

  21. E. Qin, L. Lu, N.R. Tao, K. Lu, Enhanced fracture toughness of bulk nanocrystalline Cu with embedded nanoscale twins, Scripta Materialia, 2009, Vol. 60, 539-542.

  22. Y. Zhang, N.R. Tao, K. Lu, Mechanical properties and rolling behaviors of nano-grained copper with embedded nano-twin bundlesActa Materialia, 2008, Vol. 56, 2429-2440.

  23. G.H. Xiao, N.R. Tao, K. Lu Effects of strain, strain rate and temperature on deformation twinning in a Cu-Zn alloy, Scripta Materialia, 2008, Vol. 59, 975-978.

  24. W.L. Li, N.R. Tao, K. Lu Fabrication of a gradient nano-micro-structured surface layer on bulk copper by means of surface mechanical grinding treatment (SMGT), Scripta Materialia, 2008, Vol. 59, 546-549.

  25. Y.S. Li, Y Zhang, N.R. Tao, K. Lu,Effect of thermal annealing on mechanical properties of a nanostructured copper prepared by means of dynamic plastic deformation, Scripta Materialia, 2008, Vol. 59, 475-478.

  26. N.R. Tao, J. Lu, K. Lu, Surface nanocrystallization by surface mechanical attrition treatment, Materials Science Forum, 2008, Vol. 579, 91-108.

  27. Y.S. Li, N.R. Tao, K. Lu,  Microstructural evolution and nanostructure formation in copper during dynamic plastic deformation at cryogenic temperatures, Acta Materialia, 2008, Vol. 56, 230-241.