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具有微锥阵列锚定多孔海绵和聚二甲基硅氧烷覆盖层的裂纹引发耐用低粘附性三层冰防护表面。

Crack-Initiated Durable Low-Adhesion Trilayer Icephobic Surfaces with Microcone-Array Anchored Porous Sponges and Polydimethylsiloxane Cover.

机构信息

Laser Materials Processing Research Center, Key Laboratory for Advanced Materials Processing Technology (Ministry of Education), Joint Research Center for Advanced Materials & Anti-icing of Tsinghua University (SMSE)-AVIC ARI, School of Materials Science and Engineering, Tsinghua University, Beijing100084, P. R. China.

Shenyang Key Laboratory of Aircraft Icing and Ice Protection, AVIC Aerodynamics Research Institute, Shenyang, Liaoning110034, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Feb 1;15(4):6025-6034. doi: 10.1021/acsami.2c15483. Epub 2023 Jan 23.

Abstract

Reducing unfavorable ice accretion on surfaces exposed in cold environment requires effective passive anti-icing/deicing techniques. Icephobic surfaces are widely applied on various infrastructures due to their low ice adhesion strength and flexibility, whereas their poor mechanical durability, common liquid infusion, weak resistance to contamination, and low bonding strength to substrates are the major remaining challenges. According to the fracture mechanics of ice layer, initiating cracks at the ice-solid interfaces via the proper design of internal structures of icephobic materials is a promising way to icephobicity. Herein, a crack initiating icephobic surface with porous PDMS sponges sandwiched between a protective, dense PDMS layer and a textured metal microstructure was proposed and fabricated. The combination of high- and low- stiffness PDMS layers anchored by the structured metal surface give the sandwich-like structure excellent icephobicity with both high durability and low ice adhesion (5.3 kPa in the icing-deicing cycles). The porosity and the elastic modulus of the PDMS sponges and the periodicity of the metal surface structures can both be tailored to realize enhanced icephobicity. The sandwich-like icephobic surface remained insignificantly changed under solid particle impacting and the durability characterized via linear abrasion tests was elevated compared with PDMS coating on flat metal surfaces. Additionally, the trilayer icephobic surface possesses durability, low ice adhesion strength, and improved resistance to contamination and is applicable on various surfaces.

摘要

在低温环境下暴露的表面减少不利的冰积需要有效的被动防冰/除冰技术。由于其低冰附着强度和柔韧性,疏冰表面广泛应用于各种基础设施,但其机械耐久性差、常见的液体注入、对污染的抵抗力弱以及与基底的结合强度低仍然是主要挑战。根据冰层的断裂力学,通过适当设计疏冰材料的内部结构在冰-固界面处产生裂纹是提高疏冰性的一种有前途的方法。在此,提出并制备了一种具有多孔 PDMS 海绵的裂纹起始疏冰表面,该海绵夹在致密 PDMS 层和具有纹理的金属微观结构之间。由结构化金属表面锚固的高低刚度 PDMS 层的组合赋予了这种三明治结构优异的疏冰性,具有高耐久性和低冰附着性(在结冰-除冰循环中为 5.3 kPa)。PDMS 海绵的孔隙率和弹性模量以及金属表面结构的周期性都可以进行调整,以实现增强的疏冰性。三明治疏冰表面在固体颗粒冲击下几乎没有变化,并且通过线性磨损测试表征的耐久性与平坦金属表面上的 PDMS 涂层相比有所提高。此外,三层疏冰表面具有耐久性、低冰附着强度以及提高的抗污染能力,适用于各种表面。

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