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Zmanjšanje adhezije ledu na aluminijastih površinah s kombinacijo laserske obdelave in hidrofobnega premaza
ID Grajžel, Urban (Author), ID Može, Matic (Mentor) More about this mentor... This link opens in a new window, ID Golobič, Iztok (Comentor)

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Abstract
V zaključni nalogi je obravnavana problematika zmrzovanja vode in adhezije ledu na površinah, kar predstavlja pomemben izziv v letalstvu, energetiki in prometni infrastrukturi. Raziskava je bila usmerjena v razvoj superhidrofobnih aluminijastih površin z uporabo kombinacije laserskega strukturiranja in hidrofobnih premazov (PDMS in HDPA). Pripravljene so bile različne serije vzorcev, ki so se razlikovale po stopnji hrapavosti in vrsti premaza. Njihove lastnosti smo ovrednotili z meritvami kotov omočenja, kotov zdrsa ter z adhezijskimi preizkusi ledu. Rezultati so pokazali, da pri primerljivih kotih omočenja nižja hrapavost pogosto pomeni nižjo adhezijo. Vendar pa to ne velja univerzalno, saj srednje hrapave površine v določenih primerih izkazujejo zelo visoko adhezijo ledu. Naloga tako prispeva k razumevanju razvoja trajnih in učinkovitih površinskih obdelav za zmanjševanje posledic zmrzovanja.

Language:Slovenian
Keywords:adhezija ledu, hidrofobni premazi, lasersko strukturiranje, hrapavost površine, superhidrofobnost
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[U. Grajžel]
Year:2026
Number of pages:XII, 50, [3] f.
PID:20.500.12556/RUL-181205 This link opens in a new window
UDC:621.791.72:544.722.132:539.61(043.2)
COBISS.SI-ID:273495555 This link opens in a new window
Publication date in RUL:27.03.2026
Views:269
Downloads:115
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Secondary language

Language:English
Title:Reduction of ice adhesion strength on aluminum surfaces using laser texturing and hydrophobic coatings
Abstract:
This thesis addresses the issue of water freezing and ice adhesion on surfaces, which represents a significant challenge in aviation, energy, and transportation infrastructure. The research focused on the development of superhydrophobic aluminum surfaces using a combination of laser texturing and hydrophobic coatings (PDMS and HDPA). Several series of samples were prepared, differing in surface roughness and coating type. Their properties were evaluated by measuring water contact angles, sliding angles, and ice adhesion strength. The results showed that, at comparable contact angles, lower roughness often corresponds to lower ice adhesion. However, this is not universally true, as moderately rough surfaces in some cases exhibit very high ice adhesion. The thesis thus contributes to a better understanding of the development of durable and effective surface treatments for mitigating the consequences of icing.

Keywords:ice adhesion, hydrophobic coatings, laser texturing, surface roughness, superhydrophobicity

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