The combination of a dual-scale (nano and micro) roughness with an inherent low-surface energy coating material is an essential factor for the development of superhydrophobic surfaces. Ultrashort pulse laser (USPL) machining/structuring is a promising technique for obtaining the dual-scale roughness. Sheets of stainless steel (AISI 304 L SS) and Ti-6Al-4V alloys were laser-machined with ultraviolet laser pulses of 6.7 ps, with different numbers of pulses per irradiated area. The surface energy of the laser-machined samples was reduced via application of a layer of perfluorinated octyltrichlorosilane (FOTS). The influence of the number of pulses per irradiated area on the geometry of the nanostructure and the wetting properties of the laser-machined structures has been studied. The results show that with an increasing number of pulses per irradiated area, the nanoscale structures tend to become predominantly microscale. The top surface of the microscale structures is seen covered with nanoscale protrusions that are most pronounced in Ti-6Al-4V. The laser-machined Ti-6Al-4V surface attained superhydrophobicity, and the improvement in the contact angle was >27% when compared to that of a nontextured surface.
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Texas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USATexas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USA
Farshchian, Bahador
Gatabi, Javad R.
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Texas State Univ San Marcos, Mat Sci Engn & Commercializat, San Marcos, TX 78666 USATexas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USA
Gatabi, Javad R.
Bernick, Steven M.
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Texas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USATexas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USA
Bernick, Steven M.
Park, Sooyeon
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Texas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USATexas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USA
Park, Sooyeon
Lee, Gwan-Hyoung
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Yonsei Univ, Dept Mat Sci & Engn, Seoul 03722, South KoreaTexas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USA
Lee, Gwan-Hyoung
Droopad, Ravindranath
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Texas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USA
Texas State Univ San Marcos, Mat Sci Engn & Commercializat, San Marcos, TX 78666 USATexas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USA
Droopad, Ravindranath
Kim, Namwon
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Texas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USATexas State Univ San Marcos, Ingram Sch Engn, San Marcos, TX 78666 USA
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Seoul Natl Univ, Sch Mech & Aerosp Engn, Seoul 151744, South Korea
Purdue Univ, Sch Mech Engn, W Lafayette, IN 47907 USAKorea Inst Sci & Technol, Future Fus Technol Lab, Seoul 136151, South Korea
Cha, Tae-Gon
Yi, Jin Woo
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Korea Inst Sci & Technol, Future Fus Technol Lab, Seoul 136151, South KoreaKorea Inst Sci & Technol, Future Fus Technol Lab, Seoul 136151, South Korea
Yi, Jin Woo
Moon, Myoung-Woon
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Korea Inst Sci & Technol, Future Fus Technol Lab, Seoul 136151, South KoreaKorea Inst Sci & Technol, Future Fus Technol Lab, Seoul 136151, South Korea
Moon, Myoung-Woon
Lee, Kwang-Ryeol
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Korea Inst Sci & Technol, Future Fus Technol Lab, Seoul 136151, South KoreaKorea Inst Sci & Technol, Future Fus Technol Lab, Seoul 136151, South Korea
Lee, Kwang-Ryeol
Kim, Ho-Young
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Seoul Natl Univ, Sch Mech & Aerosp Engn, Seoul 151744, South KoreaKorea Inst Sci & Technol, Future Fus Technol Lab, Seoul 136151, South Korea
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Natl Res Council Canada, Automot & Surface Transportat, London, ON N6G 4X8, CanadaNatl Res Council Canada, Automot & Surface Transportat, London, ON N6G 4X8, Canada
Serles, Peter
Nikumb, Suwas
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Natl Res Council Canada, Automot & Surface Transportat, London, ON N6G 4X8, CanadaNatl Res Council Canada, Automot & Surface Transportat, London, ON N6G 4X8, Canada
Nikumb, Suwas
Bordatchev, Evgueni
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Natl Res Council Canada, Automot & Surface Transportat, London, ON N6G 4X8, CanadaNatl Res Council Canada, Automot & Surface Transportat, London, ON N6G 4X8, Canada