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Preparation of biomimetic hydrophobic coatings on AZ91D magnesium alloy surface 被引量:1

Preparation of biomimetic hydrophobic coatings on AZ91D magnesium alloy surface
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摘要 The hydrophobic coating has been a promising technology for improving surface performance. The surface performance of magnesium alloy has been limited in application. Furthermore, the hydrophobic of magnesium alloy is rarely investigated because magnesium alloy is an active metal alloy. In this paper, inspired by microstructure character of typical plant leaf surface such as lotus, the biomimetic hydrophobic coatings on AZ91D magnesium alloy surface were prepared by means of wet-chemical combining electroless. The samples were immersed into AgNO3 solution in wet-chemical method firstly. Then, biomimetic hydrophobic coatings were prepared by electroless after wet-method pretreatment. The microstructure was observed by SEM and the contact angles were measured by contact angle tester. The results indicated that the biomimetic hydrophobic coatings with uniform crystalline and dense structure could be obtained on AZ91D magnesium alloy surface. The results of contact angle revealed that the biomimetic nano-composite coatings were hydrophobic. The wet-chemical method treatment on the AZ91D magnesium alloy substrate provided a rough microstructure, thus improving adhesion of the coating and the substrate. The hydrophobic coating has been a promising technology for improving surface performance. The surface performance of magnesium alloy has been limited in application. Furthermore, the hydrophobic of magnesium alloy is rarely investigated because magnesium alloy is an active metal alloy. In this paper, inspired by microstructure character of typical plant leaf surface such as lotus, the biomimetic hydrophobic coatings on AZ91D magnesium alloy surface were prepared by means of wet-chemical combining electroless. The samples were immersed into AgNO3 solution in wet-chemical method firstly. Then, biomimetic hydrophobic coatings were prepared by electroless after wet-method pretreatment. The microstructure was observed by SEM and the contact angles were measured by contact angle tester. The results indicated that the biomimetic hydrophobic coatings with uniform crystalline and dense structure could be obtained on AZ91D magnesium alloy surface. The results of contact angle revealed that the biomimetic nano-composite coatings were hydrophobic. The wet-chemical method treatment on the AZ91D magnesium alloy substrate provided a rough microstructure, thus improving adhesion of the coating and the substrate.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2010年第11期2972-2975,共4页 中国科学(技术科学英文版)
基金 supported by the National Natural Science Foundation of China (Grant Nos 50635030, 50905071) the Program for the Development of Science and Technology of Jilin Province (Grant No 20090539) the Postdoctoral Science Foundation of China (Grant No 20100471247)
关键词 BIOMIMETIC HYDROPHOBIC COATINGS magnesium alloy biomimetic hydrophobic coatings magnesium alloy
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参考文献25

  • 1刘燕,任露泉.Wettability of a Biomimetic Non-smooth Coating by Water[J].Journal of Wuhan University of Technology(Materials Science),2009,24(S1):79-82. 被引量:1
  • 2Yan Liu,Luquan Ren,Sirong Yu,Zhuwu Han.Influence of current density on nano-Al_2O_3/Ni+Co bionic gradient composite coatings by electrodeposition[J].Journal of University of Science and Technology Beijing,2008,15(5):633-637. 被引量:1
  • 3Nosonovsky M,Bhushan B.Biologically inspired surfaces, boaden- ing the scope of roughness. Advan Funct Mater . 2008
  • 4Koch K,Bhushan B,Barthlott W.Diversity of structure, morphology and wetting of plant surfaces. Soft Matter . 2008
  • 5Gao L C,McCarthy T J.The "lotus effect" explained: Two reasons why two length scales of topography are important. Langmuir . 2006
  • 6Min W L,Jiang B,Jiang P.Bioinspired self-cleaning antireflection coatings. Advanced Materials . 2008
  • 7Roach P,Shirtcliffe N J,Newton M I.Progess in superhydrophobic surface development. Soft Matter . 2008
  • 8Shiu J Y,Kuo C W,Chen P L, et al.Fabrication of tunable superhy- drophobic surfaces by nanosphere lithography. Chemistry of Materials . 2004
  • 9Nakajima A,Fujishima A,Hashimoto K, et al.Preparation of transpar- ent superhydrophobic boehmite and silica films by sublimation of alu- minum acetylacetonate. Advanced Materials . 1999
  • 10Zhai L,Cebeci F C,Cohen R E, et al.Stable superhydrophobic coatings from polyelectrolyte multilayers. Nano Letters . 2004

二级参考文献14

  • 1L.Z. Du,B.S. Xu,S.Y. Dong.Preparation, microstructure and tribological properies ofnano-Al2O3/Ni brush plated composite coatings[].Surf Coat Technol.2005
  • 2X.H. Chen,C.S. Chen,,H.N. Xiao.Corrosion behavior of carbon nanotubes-Ni composite coating[].Surf Coat Technol.2005
  • 3C. Mller,,M. Sarret,M. Benballa.ZnNi/SiC com-posites obtained from an alkaline bath[].Surface and Coatings Technology.2002
  • 4Shi L,Sun C F,Zhou F, et al.Electrodeposited nickel-cobalt composite coating containing nano-sized Si3N4[].Materials Science and Engineering.2005
  • 5Grosiean A,Rezrazi M,Takadoum J et al.Friction and Wear Characteristics of Nickel-SiC Electroless Composite Deposits[].Surface and Coatings Technology.2001
  • 6Pierre-Antoine Gay,Patrice Bercot,Jacques Pagetti.Electrodeposition and characterization of Ag-ZrO2 electroplated coatings[].Surface and Coatings Technology.2001
  • 7ZIMMERMAN A F,PALUMBO G,AUST K T,ERB U.Mechanical properties of nickel silicon carbide nanocomposites[].Materials Science Engineering A Structural Materials Properties Microstructure and Processing.2002
  • 8HOU K H,Ger M D,WANG L M,et al.The wear behavior of electro-codeposited Ni-SiC composites[].Wear.2002
  • 9Wang W,Hou F Y,Wang H,et al.Fabrication and characterization ofNi-ZrO2composite nano-coatings by pulse electrodeposition[].Scripta Materialia.2005
  • 10Qu N S,Chan K C,Zhu D.Pulse co-electrode-position of nano Al2O3whiskers nickel compositecoating[].Scripta Materialia.2004

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