期刊文献+

Preparation and tribological performance of electrodeposited Ni-TiB_2-Dy_2O_3 composite coatings 被引量:3

Preparation and tribological performance of electrodeposited Ni-TiB_2-Dy_2O_3 composite coatings
在线阅读 下载PDF
导出
摘要 TiB2 and Dy2O3 were used as codeposited particles in the preparation of Ni-TiB2-Dy2O3 composite coatings to improve its performance. Ni-TiB2-Dy2O3 composite coatings were prepared by electrodeposition method with a nickel cetyltrimethylammonium bromide and hexadecylpyridinium bromide solution containing TiB2 and Dy2O3 particles. The content of codeposited TiB2 and Dy2O3 in the composite coatings was controlled by adding TiB2 and Dy2O3 particles of different concentrations into the solution, respectively. The effects of TiB2 and Dy2O3 content on microhardness, wear mass loss and friction coefficients of composite coatings were investigated. The composite coatings were characterized by X-ray diffraction (XRD), inductively coupled plasma-atomic emission spectrometer (ICP-AES) and scanning electron microscopy (SEM) techniques. Ni-TiBE-Dy2O3 composite coatings showed higher microhardness, lower wear mass loss and friction coefficient compared with those of the pure Ni coating and Ni-TiB2 composite coatings. The wear mass loss of Ni-TiB2-Dy2O3 composite coatings was 9 and 1.57 times lower than that of the pure Ni coating and Ni-TiB2 composite coatings, respectively. The friction coefficient of pure Ni coating, Ni-TiB2 and Ni-TiB2-Dy2O3 composite coatings were 0.723, 0.815 and 0.619, respectively. Ni-TiBE-Dy2O3 composite coatings displayed the least friction coefficient among the three coatings. Dy2O3 particles in composite coatings might serve as a solid lubricant between contact surfaces to decrease the friction coefficient and abate the wear of the composite coatings. The loading-bearing capacity and the wear-reducing effect of the Dy2O3 particles were closely related to the content of Dy2O3 particles in the composite coatings. TiB2 and Dy2O3 were used as codeposited particles in the preparation of Ni-TiB2-Dy2O3 composite coatings to improve its performance. Ni-TiB2-Dy2O3 composite coatings were prepared by electrodeposition method with a nickel cetyltrimethylammonium bromide and hexadecylpyridinium bromide solution containing TiB2 and Dy2O3 particles. The content of codeposited TiB2 and Dy2O3 in the composite coatings was controlled by adding TiB2 and Dy2O3 particles of different concentrations into the solution, respectively. The effects of TiB2 and Dy2O3 content on microhardness, wear mass loss and friction coefficients of composite coatings were investigated. The composite coatings were characterized by X-ray diffraction (XRD), inductively coupled plasma-atomic emission spectrometer (ICP-AES) and scanning electron microscopy (SEM) techniques. Ni-TiBE-Dy2O3 composite coatings showed higher microhardness, lower wear mass loss and friction coefficient compared with those of the pure Ni coating and Ni-TiB2 composite coatings. The wear mass loss of Ni-TiB2-Dy2O3 composite coatings was 9 and 1.57 times lower than that of the pure Ni coating and Ni-TiB2 composite coatings, respectively. The friction coefficient of pure Ni coating, Ni-TiB2 and Ni-TiB2-Dy2O3 composite coatings were 0.723, 0.815 and 0.619, respectively. Ni-TiBE-Dy2O3 composite coatings displayed the least friction coefficient among the three coatings. Dy2O3 particles in composite coatings might serve as a solid lubricant between contact surfaces to decrease the friction coefficient and abate the wear of the composite coatings. The loading-bearing capacity and the wear-reducing effect of the Dy2O3 particles were closely related to the content of Dy2O3 particles in the composite coatings.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2009年第3期480-485,共6页 稀土学报(英文版)
基金 supported by the Science Technology Foundation of Shanghai (072305113) the Program for Professor of Special Appointment (Eastern Scholar) at Shanghai Institutions of Higher Learning and Science Technology Foundation of Shanghai Institute of Technology (KJ2008-07)
关键词 ELECTRODEPOSITION composite coatings nickel TIB2 Dy2O3 friction and wear rare earths electrodeposition composite coatings nickel TiB2 Dy2O3 friction and wear rare earths
  • 相关文献

参考文献10

  • 1Li C,Li P W,Zeng Z X,Zeng J Y.Effect of surfactant on the electrodeposition and wear resistance of Ni-Al2O3 composite coatings[].Journal of Materials Science.2006
  • 2Denny T,Andreas B.Characterization of electrodeposited Ni- TiO2 nanocomposite coatings[].Surface and Coatings Tech- nology.2007
  • 3Bund A,Thiemig D.Influence of bath composition and pH on the electrocodeposition of alumina nanoparticles and nickel[].Surface and Coatings Technology.2007
  • 4St-Georges L.Development and characterization of composite Ni-Cr +WC laser cladding[].Wear.2007
  • 5Liu X Z,Chen J.A preparation method of Ni-TiB2-RE2O3 composite coatings by electrodeposition[].CN.2008
  • 6Nabeen K. Shrestha Takashi Takebe and Tetsuo Saji.Effect of particle size on the co-deposition of diamond with nickel in presence of a redox-active surfactant and mechanical property of the coatings[].Diamond and Related Materials.2006
  • 7Nabeen K. Shresth Masabumi Masuko and Tetsuo Saji.Composite plating of Ni/SiC using azo-cationic surfactants and wear resistance of coatings[].Wear.2003
  • 8A. Abdel Aal Khaled M. Ibrahim and Z. Abdel Hamid.Enhancement of wear resistance of ductile cast iron by Ni–SiC composite coating[].Wear.2006
  • 9Ramalho,A.,Miranda,J.C.Friction and wear of electroless NiP and NiP + PTFE coatings[].Wear.2005
  • 10G.K. Burkat T. Fujimura V.Yu. Dolmatov E.A. Orlova and M.V. Veretennikova.Preparation of composite electrochemical nickel–diamond and iron–diamond coatings in the presence of detonation synthesis nanodiamonds[].Diamond and Related Materials.2005

同被引文献9

引证文献3

二级引证文献5

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