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Bioinspired laser-textured aluminum surfaces for anti-icing : coupled effects of hydrophobic coating chemistry and surface morphology
ID
Gregorčič, Borut
(
Avtor
),
ID
Hadžić, Armin
(
Avtor
),
ID
Berce, Jure
(
Avtor
),
ID
Zupančič, Matevž
(
Avtor
),
ID
Može, Matic
(
Avtor
),
ID
Golobič, Iztok
(
Avtor
)
PDF - Predstavitvena datoteka,
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(2,90 MB)
MD5: A5ABD17AE1E0354368870F4B8AB42780
URL - Izvorni URL, za dostop obiščite
https://www.mdpi.com/2313-7673/11/8/585
Galerija slik
Izvleček
Natural water-repellent surfaces use hierarchical texture and low surface energy to minimize liquid adhesion, and this principle has inspired engineered superhydrophobic surfaces for passive anti-icing. However, whether such bioinspired water-repellent architectures remain beneficial during freezing and ice detachment depends on the stability of the wetting state and on the interaction between surface texture and coating chemistry. This study evaluates the anti-icing performance of smooth and laser-textured 1050A aluminum surfaces functionalized with different hydrophobic agents. Freezing delay measurements at −18 °C and ice adhesion strength measurements at −20 °C were conducted, together with wettability, surface free energy, roughness, and morphology analyses, to compare different coatings on identical morphologies and to isolate the effect of laser-generated texture for the same coating chemistry. On smooth surfaces, fluorinated alkyl phosphonic acid coating provided the largest reduction in ice adhesion strength, decreasing it by approximately 72% relative to the non-functionalized reference, while alkyl phosphonic acid coating reduced it by approximately 50%. In contrast, polydimethylsiloxane showed the longest freezing delay, with a mean value of 907 s, whereas the fatty acid-based coatings exhibited shorter freezing delays than the bare reference surface. On laser-textured surfaces, all coatings initially produced highly water-repellent wetting states. However, the differences in ice adhesion strength were markedly reduced and no longer followed the same ranking as on smooth surfaces. Polydimethylsiloxane again exhibited the most favorable freezing delay, while fluorinated alkyl phosphonic acid showed the poorest performance on the textured substrate. These results show that the bioinspired superhydrophobic state created by laser texturing does not by itself guarantee improved anti-icing performance, as under icing conditions, texture-mediated wetting, local liquid penetration, condensation or frost formation inside the texture, and mechanical interlocking can dominate over the nominal low-surface-energy chemistry.
Jezik:
Angleški jezik
Ključne besede:
bioinspired surfaces
,
biomimetic superhydrophobicity
,
ice adhesion
,
freezing delay
,
laser texturing
,
aluminum
,
hydrophobic coatings
,
wetting-state stability
Vrsta gradiva:
Članek v reviji
Tipologija:
1.01 - Izvirni znanstveni članek
Organizacija:
FS - Fakulteta za strojništvo
Status publikacije:
Objavljeno
Različica publikacije:
Objavljena publikacija
Leto izida:
2026
Št. strani:
24 str.
Številčenje:
Vol. 11, iss. 8, art. 585
PID:
20.500.12556/RUL-185696
UDK:
621.9.048:532.21
ISSN pri članku:
2313-7673
DOI:
10.3390/biomimetics11080585
COBISS.SI-ID:
288046595
Datum objave v RUL:
18.08.2026
Število ogledov:
75
Število prenosov:
26
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Objavi na:
Gradivo je del revije
Naslov:
Biomimetics
Skrajšan naslov:
Biomimetics
Založnik:
MDPI
ISSN:
2313-7673
COBISS.SI-ID:
526328601
Licence
Licenca:
CC BY 4.0, Creative Commons Priznanje avtorstva 4.0 Mednarodna
Povezava:
http://creativecommons.org/licenses/by/4.0/deed.sl
Opis:
To je standardna licenca Creative Commons, ki daje uporabnikom največ možnosti za nadaljnjo uporabo dela, pri čemer morajo navesti avtorja.
Sekundarni jezik
Jezik:
Slovenski jezik
Ključne besede:
bioinspirirane površine
,
biomimetična superhidrofobnost
,
adhezija ledu
,
zamik zmrzovanja
,
lasersko strukturiranje
,
aluminij
,
hidrofobne prevleke
,
stabilnost režima omočenja
Projekti
Financer:
ARIS - Javna agencija za znanstvenoraziskovalno in inovacijsko dejavnost Republike Slovenije
Številka projekta:
P2-0223
Naslov:
Prenos toplote in snovi
Financer:
ARIS - Javna agencija za znanstvenoraziskovalno in inovacijsko dejavnost Republike Slovenije
Številka projekta:
J2-50085
Naslov:
Raziskave medfaznih pojavov kapljic in mehurčkov na funkcionaliziranih površinah ob uporabi napredne diagnostike za razvoj okoljskih tehnologij prihodnosti in izboljšanega prenosa toplote (DroBFuSE)
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