Zugriffsnummer 50369
Dokumenttyp Zeitschriftenartikel Open Access Hybrid
Peer Review mit Peer Review
Sprache Englisch
Titel A holistic solution to icing by acoustic waves: de-Icing, active anti-icing, sensing with piezoelectric crystals, and synergy with thin film passive anti-icing solutions
Autor(in); Institution
Moral, Jaime del; Nanotechnology on Surfaces and Plasma Lab, Materials Science Institute of Seville (CSIC-US), Seville, SPAIN
Montes, Laura; Nanotechnology on Surfaces and Plasma Lab, Materials Science Institute of Seville (CSIC-US), Seville, SPAIN
Rico-Gavira, Victor Joaquin; Nanotechnology on Surfaces and Plasma Lab, Materials Science Institute of Seville (CSIC-US), Seville, SPAIN
Lopez-Santos, Carmen; Nanotechnology on Surfaces and Plasma Lab, Materials Science Institute of Seville (CSIC-US), Seville, SPAIN; Universidad de Sevilla, Departamento de Física Aplicada I, Escuela Politécnica Superior, Seville, SPAIN
Jacob, Stefan; 1.02, Gruppe Infraschall, PTB-Braunschweig; Leibniz IFW Dresden, SAWLab Saxony, Dresden, GERMANY
Oliva-Ramirez, Manuel; Nanotechnology on Surfaces and Plasma Lab, Materials Science Institute of Seville (CSIC-US), Seville, SPAIN; Atómica Molecular y Nuclear, Departamento de Física, Seville, SPAIN
Gil-Rostra, Jorge; Nanotechnology on Surfaces and Plasma Lab, Materials Science Institute of Seville (CSIC-US), Seville, SPAIN
Fakhfouri, Armaghan; Leibniz IFW Dresden, SAWLab Saxony, Dresden, GERMANY
Pandey, Shilpi; Leibniz IFW Dresden, SAWLab Saxony, Dresden, GERMANY
Gonzalez de Val, Miguel; National Institute for Aerospace Technology (INTA), Torrejón de Ardoz, SPAIN
Mora, Julio; National Institute for Aerospace Technology (INTA), Torrejón de Ardoz, SPAIN
Garcia-Gallego, Paloma; National Institute for Aerospace Technology (INTA), Torrejón de Ardoz, SPAIN
Ibanez-Ibanez, Pablo Francisco; Universidad de Granada, Departamento de Física Aplicada, Granada, SPAIN
Rodriguez-Valverde, Miguel Angel; Universidad de Granada, Departamento de Física Aplicada, Granada, SPAIN
Winkler, Andreas; Leibniz IFW Dresden, SAWLab Saxony, Dresden, GERMANY
Borras, Ana; Nanotechnology on Surfaces and Plasma Lab, Materials Science Institute of Seville (CSIC-US), Seville, SPAIN
Rodriguez Gonzalez-Elipe, Agustin; Nanotechnology on Surfaces and Plasma Lab, Materials Science Institute of Seville (CSIC-US), Seville, SPAIN
Quelle/Jahr Advanced Functional Materials: 33 (2023), 15, 1 - 16
Artikelnummer 2209421
ISSN 1616-301X (print) ; 1616-3028 (online)
DOI
URL
Verlag Weinheim: Wiley-VCH
Freie Schlagworte acoustic waves ; de-icing ; freezing delay ; ice monitoring ; ice-adhesion ; PFOTES ; ZnO
Zusammenfassung Icing has become a hot topic both in academia and in the industry given its implications in transport, wind turbines, photovoltaics, and telecommunications. Recently proposed de-icing solutions involving the propagation of acoustic waves (AWs) at suitable substrates may open the path for a sustainable alternative to standard de-icing or anti-icing procedures. Herein, the fundamental interactions are unraveled that contribute to the de-icing and/or hinder the icing on AW-activated substrates. The response toward icing of a reliable model system consisting of a piezoelectric plate activated by extended electrodes is characterized at a laboratory scale and in an icing wind tunnel under realistic conditions. Experiments show that surface modification with anti-icing functionalities provides a synergistic response when activated with AWs. A thoughtful analysis of the resonance frequency dependence on experimental variables such as temperature, ice formation, or wind velocity demonstrates the application of AW devices for real-time monitoring of icing processes.
Kostenfreier Zugang Open Access Hybrid
Rechteinformation CC BY-NC-ND 4.0 ; Creative Commons Attribution NonCommercial NoDerivatives 4.0 License
Themenbereich der Metrologie Akustik, Ultraschall, Beschleunigung
Förderinformationen (1) Förderername: European Commission (EC)
Förderer ID: 0000 0001 2242 8989
Förderer ID Typ: ISNI
Titel der Förderung: SOUNDofICE
Förderungsnummer: 899352 (FETOPEN-01-2018-2019-2020 SOUNDofICE)
URI der Förderung: https://www.fetopen-soundofice.eu/

Zitierung

Moral, J. D., Montes, L., Rico-Gavira, V. J., Lopez-Santos, C., Jacob, S., Oliva-Ramirez, M., Gil-Rostra, J., Fakhfouri, A., Pandey, S., Gonzalez de Val, M., Mora, J., Garcia-Gallego, P., Ibanez-Ibanez, P. F., Rodriguez-Valverde, M. A., Winkler, A., Borras, A., & Rodriguez Gonzalez-Elipe, A. (2023). A holistic solution to icing by acoustic waves: de-Icing, active anti-icing, sensing with piezoelectric crystals, and synergy with thin film passive anti-icing solutions. Advanced Functional Materials, 33(15), 1–16. https://doi.org/10.1002/adfm.202209421

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