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Preparation of Hydrophobic Surface on Titanium by Micro-Rolling and Laser Diffusion Carbonitriding

Preparation of Hydrophobic Surface on Titanium by Micro-Rolling and Laser Diffusion Carbonitriding
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摘要 The application of rolling for fabricating grate on titanium stripe has been explored in this paper. Then the mechanically robust Ti(C,N) diffusion layer was synthetized directly on the grates by laser carbonitriding in the mixture gas of nitrogen and methane. The results shows that the carbonitriding process is accelerated by temperature enhancement with decreasing scanning speed, The Ti(C,N) diffusion layer is kept at 2 ~nn in thickness, when the scanning speed is smaller than 4 mm/s. The contact angle increases from 20~ to 143.6~ by designing an appropriate grate size and surface roughness. Meanwhile, the relationship between hydrophobicity, hardness performance and scanning speed is also discussed. The hardness of diffusion layer increases with decreasing laser scanning speed, and is up to 11.2 GPa. The surface structure and hydrophobic state are maintained after three cycles of sandpaper abrasion, which has improved the robustness of surface grate. The application of rolling for fabricating grate on titanium stripe has been explored in this paper. Then the mechanically robust Ti(C,N) diffusion layer was synthetized directly on the grates by laser carbonitriding in the mixture gas of nitrogen and methane. The results shows that the carbonitriding process is accelerated by temperature enhancement with decreasing scanning speed, The Ti(C,N) diffusion layer is kept at 2 ~nn in thickness, when the scanning speed is smaller than 4 mm/s. The contact angle increases from 20~ to 143.6~ by designing an appropriate grate size and surface roughness. Meanwhile, the relationship between hydrophobicity, hardness performance and scanning speed is also discussed. The hardness of diffusion layer increases with decreasing laser scanning speed, and is up to 11.2 GPa. The surface structure and hydrophobic state are maintained after three cycles of sandpaper abrasion, which has improved the robustness of surface grate.
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2016年第3期533-537,共5页 武汉理工大学学报(材料科学英文版)
基金 Funded by Zhejiang Provincial Natural Science Foundation(No.LQ12E05010) the Jiaxing Science Planning Project(No.2013AY11025)
关键词 TITANIUM hydrophobic surface micro-rolling laser diffusion carbonitriding (LDC) titanium hydrophobic surface micro-rolling laser diffusion carbonitriding (LDC)
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参考文献25

  • 1Liu X J,Liang Y M,Zhou F,et al.Extreme Wettability and Tunable Adhesion:Biomimicking beyond Nature?[J].Soft.Matter.,2012,8:2 070-2 086.
  • 2Soliveri G,Annunziata R,Ardizzone R G,et al.Multiscale Rough Titania Films with Patterned Hydrophobic/Oleophobic Features[J].J.Phys.Chem.C,2012,116:26 405-26 413.
  • 3Xue C H,Ma J.Z.Long-lived Superhydrophobic Surfaces[J].J.Mater.Chem.A,2013,13:4 146-4 161.
  • 4Tuukka V,Chris B,Piers A,et al.Mechanically Durable Superhydrophobic Surfaces[J].Adv.Mater.,2010,XX:1-6.
  • 5Feng X,Feng X,Jin M,et al.Reversible Super-hydrophobicity to Super-hydrophilicity Transition of Aligned Zn O Nanorod Films[J].Journal of the American Chemical Society.,2004,126:62-63.
  • 6Li Y,Shi G.Electrochemical Growth of Two-dimensional Gold Nanostructures on a Thin Polypyrrole Film Modified ITO Electrode[J].J.Phys.Chem.B.,2005,109:23 787.
  • 7Xue C H,Jia S T,Zhang J,et al.Large-area Fabrication of Superhydrophobic Surfaces for Practical Applications:an Overview[J].Adv.Mater,2010,11:033002-1-15.
  • 8Xiu Y H,Liu Y W,Hess D,et al.Mechanically Robust Superhydrophobicity on Hierarchically Structured Si Surfaces[J].Nanotechnology,2010,21:55 705.
  • 9Liu Y Y,Che X Q,Xin J H.Super-Hydrophobic Surfaces from a Simple Coating Method:a Bionic Nanoengineering Approach[J].Nanotechnology,2006,17:3 259-3 263.
  • 10Nosonovsky M,Bhushan N.Roughness Induced Superhydrophobicity:a Way to Design Nonadhesive surface[J].J.Phys.Condens.Matter.,2008,20:1-30.

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