Cargando…

Superhydrophobic Polytetrafluoroethylene/Heat-Shrinkable Polyvinyl Chloride Composite Film with Super Anti-Icing Property

Wind power generation is an environmentally friendly way to produce electricity, but wind turbine blades that are prone to freeze in winter will reduce the efficiency of the generator. Therefore, the preparation of anti-icing blades is important and essential. Herein, anti-icing polytetrafluoroethyl...

Descripción completa

Detalles Bibliográficos
Autores principales: Jiang, Zhiqing, Wang, Xueqin, Jia, Huiying, Zhou, Yanfen, Ma, Jianwei, Liu, Xinyu, Jiang, Liang, Chen, Shaojuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6571669/
https://www.ncbi.nlm.nih.gov/pubmed/31064060
http://dx.doi.org/10.3390/polym11050805
_version_ 1783427462718291968
author Jiang, Zhiqing
Wang, Xueqin
Jia, Huiying
Zhou, Yanfen
Ma, Jianwei
Liu, Xinyu
Jiang, Liang
Chen, Shaojuan
author_facet Jiang, Zhiqing
Wang, Xueqin
Jia, Huiying
Zhou, Yanfen
Ma, Jianwei
Liu, Xinyu
Jiang, Liang
Chen, Shaojuan
author_sort Jiang, Zhiqing
collection PubMed
description Wind power generation is an environmentally friendly way to produce electricity, but wind turbine blades that are prone to freeze in winter will reduce the efficiency of the generator. Therefore, the preparation of anti-icing blades is important and essential. Herein, anti-icing polytetrafluoroethylene (PTFE)/heat-shrinkable polyvinyl chloride (HSPVC) composite film was prepared by depositing a PTFE coating on the surface of HSPVC film via vacuum thermal evaporation. HSPVC films were pretreated respectively by argon and carbon tetrafluoride (CF(4)) plasma cleaning to introduce new groups and change their surface energy. After that, PTFE coating with a thickness of about 4 μm was deposited on the surface of HSPVC, obtaining a superhydrophobic surface with an apparent water contact angle of 150°. The results demonstrated that the breaking strength of the PTFE/HSPVC composite film using CF(4) plasma pretreatment decreased by only 3.47% after exposing to ultraviolet light with the power of 1000 W for 5 min, suggesting an excellent anti-ultraviolet property. Furthermore, compared with the pristine films, the PTFE/HSPVC composite films exhibited better adhesive strength, super anti-icing property even after 10 icing–deicing cycles, and excellent dynamic anti-icing performance. The PTFE/HSPVC composite film with good adhesive strength, anti-ultraviolet, and anti-icing properties has prospective applications in packaging of wind turbine blades.
format Online
Article
Text
id pubmed-6571669
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-65716692019-06-18 Superhydrophobic Polytetrafluoroethylene/Heat-Shrinkable Polyvinyl Chloride Composite Film with Super Anti-Icing Property Jiang, Zhiqing Wang, Xueqin Jia, Huiying Zhou, Yanfen Ma, Jianwei Liu, Xinyu Jiang, Liang Chen, Shaojuan Polymers (Basel) Article Wind power generation is an environmentally friendly way to produce electricity, but wind turbine blades that are prone to freeze in winter will reduce the efficiency of the generator. Therefore, the preparation of anti-icing blades is important and essential. Herein, anti-icing polytetrafluoroethylene (PTFE)/heat-shrinkable polyvinyl chloride (HSPVC) composite film was prepared by depositing a PTFE coating on the surface of HSPVC film via vacuum thermal evaporation. HSPVC films were pretreated respectively by argon and carbon tetrafluoride (CF(4)) plasma cleaning to introduce new groups and change their surface energy. After that, PTFE coating with a thickness of about 4 μm was deposited on the surface of HSPVC, obtaining a superhydrophobic surface with an apparent water contact angle of 150°. The results demonstrated that the breaking strength of the PTFE/HSPVC composite film using CF(4) plasma pretreatment decreased by only 3.47% after exposing to ultraviolet light with the power of 1000 W for 5 min, suggesting an excellent anti-ultraviolet property. Furthermore, compared with the pristine films, the PTFE/HSPVC composite films exhibited better adhesive strength, super anti-icing property even after 10 icing–deicing cycles, and excellent dynamic anti-icing performance. The PTFE/HSPVC composite film with good adhesive strength, anti-ultraviolet, and anti-icing properties has prospective applications in packaging of wind turbine blades. MDPI 2019-05-06 /pmc/articles/PMC6571669/ /pubmed/31064060 http://dx.doi.org/10.3390/polym11050805 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jiang, Zhiqing
Wang, Xueqin
Jia, Huiying
Zhou, Yanfen
Ma, Jianwei
Liu, Xinyu
Jiang, Liang
Chen, Shaojuan
Superhydrophobic Polytetrafluoroethylene/Heat-Shrinkable Polyvinyl Chloride Composite Film with Super Anti-Icing Property
title Superhydrophobic Polytetrafluoroethylene/Heat-Shrinkable Polyvinyl Chloride Composite Film with Super Anti-Icing Property
title_full Superhydrophobic Polytetrafluoroethylene/Heat-Shrinkable Polyvinyl Chloride Composite Film with Super Anti-Icing Property
title_fullStr Superhydrophobic Polytetrafluoroethylene/Heat-Shrinkable Polyvinyl Chloride Composite Film with Super Anti-Icing Property
title_full_unstemmed Superhydrophobic Polytetrafluoroethylene/Heat-Shrinkable Polyvinyl Chloride Composite Film with Super Anti-Icing Property
title_short Superhydrophobic Polytetrafluoroethylene/Heat-Shrinkable Polyvinyl Chloride Composite Film with Super Anti-Icing Property
title_sort superhydrophobic polytetrafluoroethylene/heat-shrinkable polyvinyl chloride composite film with super anti-icing property
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6571669/
https://www.ncbi.nlm.nih.gov/pubmed/31064060
http://dx.doi.org/10.3390/polym11050805
work_keys_str_mv AT jiangzhiqing superhydrophobicpolytetrafluoroethyleneheatshrinkablepolyvinylchloridecompositefilmwithsuperantiicingproperty
AT wangxueqin superhydrophobicpolytetrafluoroethyleneheatshrinkablepolyvinylchloridecompositefilmwithsuperantiicingproperty
AT jiahuiying superhydrophobicpolytetrafluoroethyleneheatshrinkablepolyvinylchloridecompositefilmwithsuperantiicingproperty
AT zhouyanfen superhydrophobicpolytetrafluoroethyleneheatshrinkablepolyvinylchloridecompositefilmwithsuperantiicingproperty
AT majianwei superhydrophobicpolytetrafluoroethyleneheatshrinkablepolyvinylchloridecompositefilmwithsuperantiicingproperty
AT liuxinyu superhydrophobicpolytetrafluoroethyleneheatshrinkablepolyvinylchloridecompositefilmwithsuperantiicingproperty
AT jiangliang superhydrophobicpolytetrafluoroethyleneheatshrinkablepolyvinylchloridecompositefilmwithsuperantiicingproperty
AT chenshaojuan superhydrophobicpolytetrafluoroethyleneheatshrinkablepolyvinylchloridecompositefilmwithsuperantiicingproperty