Optics and Precision Engineering, Volume. 27, Issue 9, 1981(2019)
Fabrication and characterization of anti-fouling and self-cleaning surface for aluminum alloy
[1] [1] YI J, ZHANG J M, CAO S F, et al.. Effect of welding sequence on residual stress and deformation of 6061-T6 aluminium alloy automobile component [J]. Transactions of Nonferrous Metals Society of China, 2019, 29: 287-295.
[2] [2] LI X J, LIU D, LIU ZH, et al.. Electrochemical performance of surface modification coatings on aluminum alloy in marine environment[J]. Surface Technology, 2018, 47(1): 181-185.(in Chinese)
[3] [3] WANG H Y, SUN J, LIU L M. Formation and controlling mechanism of pores in laser-TIG hybrid welding of 6061-T6 aluminum alloys at high peed[J]. Chinese Journal of Lasers, 2018, 45(3): 186-191.(in Chinese)
[4] [4] LI X W, ZHANG Q X, GUO Z, et al.. Fabrication of superhydrophobic surface with improved corrosion inhibition on 6061 aluminum alloy substrate [J]. Applied Surface Science, 2015, 342: 76-83.
[5] [5] MOKHTARI S, KARIMZADEH F, ABBASI M H, et al.. Development of super-hydrophobic surface on Al 6061 by anodizing and the evaluation of its corrosion behavior [J]. Surface and Coatings Technology, 2017, 324: 99-105.
[6] [6] JIANG L, FENG L. Bioinspired Intelligent Nanostructured Interfacial Materials [M]. Beijing: Chemical Industry Press, 2016. (in Chinese)
[7] [7] VARSHNEY P, LOMGA J, GUPTA P K, et al.. Durable and regenerable superhydrophobic coatings for aluminium surfaces with excellent self-cleaning and anti-fogging properties[J]. Tribology International, 2018, 119: 38-44.
[8] [8] SAFFARI H, SOHRABI B, NOORI M R, et al.. Optimal condition for fabricating superhydrophobic Aluminum surfaces with controlled anodizing processes[J]. Applied Surface Science, 2018, 435: 1322-1328.
[9] [9] SONG Y X, WANG C, DONG X R, et al.. Controllable superhydrophobic aluminum surfaces with tunable adhesion fabricated by femtosecond laser[J]. Optics & Laser Technology, 2018, 102: 25-31.
[10] [10] LI J, ZHAO Y H, YU H D, et al.. Fabrication and properties of superhydrophobic surface on aluminum alloys substrates by brush plating and laser processing technology[J]. China Mechanical Engineering, 2017, 28(1): 82-87, 92.(in Chinese)
[11] [11] ZHANG CH W, LI X W, SHI T, et al.. Fabrication of superhydrophobic structure on 5A05 aluminum alloy surface and its corrosion resistance[J]. Rare Metal Materials and Engineering, 2018, 47(10): 2980-2985. (in Chinese)
[12] [12] PAN R, ZHONG M L. Fabrication of superwetting surfaces by ultrafast lasers and mechanical durability of superhydrophobic surfaces[J]. Chinese Science Bulletin, 2019, 64(12): 1268-1289.(in Chinese)
[14] [14] LI J, ZHAO S C, DU F, et al.. One-step fabrication of superhydrophobic surfaces with different adhesion via laser processing[J]. Journal of Alloys and Compounds, 2018, 739: 489-498.
[15] [15] TANG M K, HUANG X J, GUO Z, et al.. Fabrication of robust and stable superhydrophobic surface by a convenient, low-cost and efficient laser marking approach[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2015, 484: 449-456.
[16] [16] NGO C V, CHUN D M. Control of laser-ablated aluminum surface wettability to superhydrophobic or superhydrophilic through simple heat treatment or water boiling post-processing[J]. Applied Surface Science, 2018, 435: 974-982.
[17] [17] FENG L B, YAN Z N, SHI X T, et al.. Anti-icing/frosting and self-cleaning performance of superhydrophobic aluminum alloys[J]. Applied Physics A, 2018, 124(2): 1-14.
[18] [18] FOROOSHANI H M, ALIOFKHAZRAEI M, ROUHAGHDAM A S. Superhydrophobic aluminum surfaces by mechanical/chemical combined method and its corrosion behavior[J]. Journal of the Taiwan Institute of Chemical Engineers, 2017, 72: 220-235.
[19] [19] SHEN Y Z, TAO H J, CHEN S L, et al.. Water repellency of hierarchical superhydrophobic Ti6Al4V surfaces improved by secondary nanostructures[J]. Applied Surface Science, 2014, 321: 469-474.
[20] [20] VENGATESH P, KULANDAINATHAN M A. Hierarchically ordered self-lubricating superhydrophobic anodized aluminum surfaces with enhanced corrosion resistance[J]. ACS Applied Materials & Interfaces, 2015, 7(3): 1516-1526.
[21] [21] CHEN T C, GE S R, LIU H T, et al.. Fabrication of low adhesive superhydrophobic surfaces using nano Cu/Al2O3 Ni-Cr composited electro-brush plating[J]. Applied Surface Science, 2015, 356: 81-90.
[22] [22] SALEHIKAHRIZSANGI P, RAEISSI K, KARIMZADEH F, et al.. Highly hydrophobic Ni-W electrodeposited film with hierarchical structure[J]. Surface and Coatings Technology, 2018, 344: 626-635.
[23] [23] LU Y, SONG J L, LIU X, et al.. Preparation of superoleophobic and superhydrophobic titanium surfaces via an environmentally friendly electrochemical etching method[J]. ACS Sustainable Chemistry & Engineering, 2012, 1(1): 102-109.
[24] [24] ZHANG Y L, SUNDARARAJAN S. Superhydrophobic engineering surfaces with tunable air-trapping ability[J]. Journal of Micromechanics and Microengineering, 2008, 18(3): 035024.
[25] [25] YAN Y D, CHIBOWSKI E, SZCZE A. Surface properties of Ti-6Al-4V alloy part I: Surface roughness and apparent surface free energy[J]. Materials Science & Engineering. C, Materials for Biological Applications, 2017, 70(Pt 1): 207-215.
[26] [26] DONG X J, MENG J B, ZHOU H A, et al.. Fabrication of adhesive resistance surface with low wettability on Ti6Al4V alloys by electro-brush plating [J]. Micromachines, 2019, 10(1): 64.
[27] [27] OHKUBO Y, TSUJI I, ONISHI S, et al.. Preparation and characterization of super-hydrophobic and oleophobic surface[J]. Journal of Materials Science, 2010, 45(18): 4963-4969.
[28] [28] WANG C Q, HE X N. Effect of atmospheric pressure dielectric barrier discharge air plasma on electrode surface[J]. Applied Surface Science, 2006, 253(2): 926-929.
Get Citation
Copy Citation Text
MENG Jian-bing, LOU Guang-jun, DONG Xiao-juan, ZHAO Yu-gang, ZHOU hai-an, XU Ru-feng. Fabrication and characterization of anti-fouling and self-cleaning surface for aluminum alloy[J]. Optics and Precision Engineering, 2019, 27(9): 1981
Received: May. 22, 2019
Accepted: --
Published Online: Oct. 14, 2019
The Author Email: Jian-bing MENG (jianbingmeng@sdut.edu.cn)