期刊文献+

Nano Surface Engineering in the 21^(st) Century 被引量:6

Nano Surface Engineering in the 21^(st) Century
下载PDF
导出
摘要 Nano surface engineering is the new development of surface engineering, and is the typical representation that the advanced nano technology improves the traditional surface engineering. The connotation of nano surface engineering is profound. The initial stage of nano surface engineering is realized at present day. The key technologies of nano surface engineering are the support to the equipment remanufacturing. Today the relatively mature key technologies are: nano thermal spraying technology, nano electric-brush plating technology, nano self-repairing anti-friction technology and metal surface nanocrystallization, etc. Many scientific issues have been continuously discovered. Meanwhile they have been applied in the practice more and more, and have archived the excellent remanufacturing effect. Nano surface engineering is the new development of surface engineering, and is the typical representation that the advanced nano technology improves the traditional surface engineering. The connotation of nano surface engineering is profound. The initial stage of nano surface engineering is realized at present day. The key technologies of nano surface engineering are the support to the equipment remanufacturing. Today the relatively mature key technologies are: nano thermal spraying technology, nano electric-brush plating technology, nano self-repairing anti-friction technology and metal surface nanocrystallization, etc. Many scientific issues have been continuously discovered. Meanwhile they have been applied in the practice more and more, and have archived the excellent remanufacturing effect.
出处 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第5期8-12,共5页 Transactions of Materials and Heat Treatment
基金 National Natural Science Foundation of China(50235030) “863”Project(2003AA331130)and“973”Project(G1999065009)
关键词 关键技术 设备重制造 纳米技术 表面处理 热喷涂 Nano surface engineering Key technology Equipment Remanufacturing
  • 相关文献

参考文献1

二级参考文献20

  • 1蒋斌 徐滨士 董世运 丁培道.电刷镀纳米A12O3/Ni复合镀层的组织与接触疲劳性能研究[J].摩擦学学报,(2002):185-185.
  • 2R D Clarke, DALIC Selective Brush Plating and Anodising, International Journal of Adhesion & Adhesives,19, 205(1999).
  • 3Derek Vanek, An Update on Brush Plating, Metal Finishing, 7, 18(2002).
  • 4S B Hu, J P Tu, Z Mei, Z Z Li, X B Zhang, Adhesion Strength and High Temperature Wear Behavior of Ion Plating TiN Composite Coating with Electric Brush Plating Ni-W Interlayer, Surface and Coatings Technology, 141, 174(2001).
  • 5R P Yang, X Cai, Q L Chen, Mechanism of Hydrogen Desorption during Palladium Brush Plating, Surface and Coating Technology, 141, 283(2001).
  • 6LIU Xianjun, XU Binshi, MA Shining, CHEN Zigang, Study of the Tribological Behavior of an Ni Electric Brush Platinz Laver on a Base of an Arc Sprayed Coating, Wear, 211, 151(1997).
  • 7B Subramanian, C.Sanjeeviraja, M.Jayachandran, Brush Plating of Tin (II) Selenide Thin Films, Journalof Crystal Growth, 234, 421(2002).
  • 8A Hovestad, L J J Janssen, Electrochemical Codeposition of Inert Particles in a Metallic Matrix, Journal of Applied Electrochemistry, 25, 519(1995).
  • 9Marco Musiani, Electrodeposition of Composite: An Expanding Subject in Electrochemical Material Science,Electrochim. Acta, 45(20), 3397(2000).
  • 10V P Greco, Electrocomposites and Their Benefits, Plating and Surface Finishing, 74(7), 62(1989).

共引文献9

同被引文献45

引证文献6

二级引证文献30

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