LICP OpenIR  > 固体润滑国家重点实验室(LSL)
Air Cushion Convection Inhibiting Icing of Self-Cleaning Surfaces
Department固体润滑国家重点实验室
Yang, Qin1,2; Luo, Zhuangzhu1; Jiang, Faming1,2; Luo, Yimin1; Tan, Sheng1; Lu ZB(鲁志斌)3; Zhang ZZ(张招柱)3; Liu WM(刘维民)3
The second department先进润滑与防护材料研究发展中心
2016
Source PublicationACS Applied Materials and Interfaces
ISSN1944-8244
Volume8Issue:42Pages:29169-29178
Abstract

Anti-icing surfaces/interfaces are of considerable importance in various engineering fields under natural freezing environment. Although superhydrophobic self-cleaning surfaces show good anti-icing potentials, promotion of these surfaces in engineering applications seems to enter a “bottleneck” stage. One of the key issues is the intrinsic relationship between superhydrophobicity and icephobicity is unclear, and the dynamic action mechanism of “air cushion” (a key internal factor for superhydrophobicity) on icing suppression was largely ignored. Here we report that icing inhibition (i.e., icing-delay) of self-cleaning surfaces is mainly ascribed to air cushion and its convection. We experimentally found air cushion on the porous self-cleaning coating under vacuum environments and on the water/ice-coating interface at low temperatures. The icing-delay performances of porous self-cleaning surfaces compared with bare substrate, up to 10–40 min under 0 to ∼−4 °C environments close to freezing rain, have been accurately real-time recorded by a novel synergy method including high-speed photography and strain sensing voltage. Based on the experimental results, we innovatively propose a physical model of “air cushion convection inhibiting icing”, which envisages both the static action of trapped air pocket without air flow and dynamic action of air cushion convection. Gibbs free energy of water droplets increased with the entropy of air derived from heat and mass transfer between warmer air underneath water droplets and colder surrounding air, resulting in remarkable ice nucleation delay. Only when air cushion convection disappears can ice nucleation be triggered on suitable Gibbs free energy conditions. The fundamental understanding of air cushion on anti-icing is an important step toward designing optimal anti-icing surfaces for practical engineering application.

KeywordSuperhydrophobic Surfaces Icing-delay Porous Structure Air Cushion Convection Heat And Mass Transfer
Subject Area材料科学与物理化学
DOI10.1021/acsami.6b10165
Funding OrganizationNational Natural ScienceFoundation of China (51575504);National Natural Science Foundation of China (51605466);Chongqing frontier and application basic research project (CSTC2014jcyjA50037)
Indexed BySCI
If7.504
Language英语
Funding Project低维材料摩擦学组;空间润滑材料组;复合润滑材料组
compositor第三作者单位
Citation statistics
Cited Times:49[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.licp.cn/handle/362003/20990
Collection固体润滑国家重点实验室(LSL)
中国科学院材料磨损与防护重点实验室/先进润滑与防护材料研究发展中心
Corresponding AuthorLuo, Zhuangzhu
Affiliation1.Chinese Acad Sci, Chongqing Inst Green & Intelligent Technol, Chongqing 400714, Peoples R China
2.Univ Chinese Acad Sci, Beijing 100049, Peoples R China
3.Chinese Acad Sci, Lanzhou Inst Chem Phys, Lanzhou 730000, Peoples R China
Recommended Citation
GB/T 7714
Yang, Qin,Luo, Zhuangzhu,Jiang, Faming,et al. Air Cushion Convection Inhibiting Icing of Self-Cleaning Surfaces[J]. ACS Applied Materials and Interfaces,2016,8(42):29169-29178.
APA Yang, Qin.,Luo, Zhuangzhu.,Jiang, Faming.,Luo, Yimin.,Tan, Sheng.,...&Liu WM.(2016).Air Cushion Convection Inhibiting Icing of Self-Cleaning Surfaces.ACS Applied Materials and Interfaces,8(42),29169-29178.
MLA Yang, Qin,et al."Air Cushion Convection Inhibiting Icing of Self-Cleaning Surfaces".ACS Applied Materials and Interfaces 8.42(2016):29169-29178.
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