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王镇波(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:+86-24-23971890 邮箱:登录后查看

简历:

  教育经历:

  19929月-19966  中南工业大学 材料科学与工程    学士

  19969月-19996  中国科学院金属研究所 材料学      工学硕士

  19999月-20046  中国科学院金属研究所 材料学      工学博士

  工作经历:

  20046月-20069   中国科学院金属研究所   助理研究员

  20053月-20062   法国Troyes技术大学  博士后

  20069月-20109   中国科学院金属研究所  副研究员

  20073月-20086   德国Muenster大学材料物理研究所 洪堡学者

  20109 至今         中国科学院金属研究所  项目研究员/研究员

研究领域:

  1)纳米材料的扩散与相变行为

  2)金属材料的表面纳米化技术及特性

主要成就

  (1) H.W. Huang, Z.B. Wang*, J.Lu and K. Lu. Fatigue behaviors of AISI 316L stainless steel with a gradient nanostructured surface layer. Acta Materialia, 87 (2015) 150–160.

  (2) Y.L. Liang, Z.B. Wang*, J.B. Zhang and K. Lu. Formation of interfacial compounds and the effects on stripping behaviors of a cold-sprayed Zn–Al coating on interstitial-free steel. Applied Surface Science, 340 (2015) 89–95.

  (3) S. Guo, Z.B. Wang*, L.M.Wang and K. Lu. Lower-temperature aluminizing behaviors of a ferritic–martensitic steel processed by means of surface mechanical attrition treatment. Surface & Coatings Technology, 258 (2014) 329–336.

  (4) H.W. Huang, Z.B. Wang*, X.P. Yong and K. Lu. Enhancing torsion fatigue behaviour of martensitic stainless steel by generating gradient nanograined layer via surface mechanical grinding treatment. Materials Science and Technology, 2013, vol. 29 (Issue 10), pp. 1200–1205.

  (5) H.L. Wang, Z.B. Wang* and K. Lu. Enhanced reactive diffusion of Zn in a nanostructured Fe produced by means of surface mechanical attrition treatment. Acta Materialia, 2012, vol. 60, pp. 1762-1770.

  (6) L.M. Wang, Z.B. Wang* and K. Lu. Grain size effects on the austenitization process in a nanostructured ferritic steel. Acta Materialia, 2011, Vol. 59, pp. 3710-3719.

  (7) Z.B. Wang*, K. Lu, G. Wilde and S.V. Divinski. Effects of grain growth on interface diffusion in nanostructured Cu. Scripta Materialia, 2011, volume 64 (issue 11), pp. 1055-1058.

  (8) H.L. Wang, Z.B. Wang* and K. Lu. Interfacial diffusion in a nanostructured Cu produced by means of dynamic plastic deformation. Acta Materialia, 2011, vol. 59, pp. 1818-1828.

  (9) Z.B. Wang*, K. Lu, G. Wilde and S.V. Divinski. Interfacial diffusion in Cu with a gradient nanostructured surface layer. Acta Materialia, 2010, vol. 58, pp. 2376–2386.

  (10) S.D. Lu, Z.B. Wang* and K. Lu. Enhanced chromizing kinetics of tool steel by means of surface mechanical attrition treatment. Materials Science and Engineering A, 2010, vol. 527, pp.995-1002.