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首页> 外文期刊>Applied Surface Science >Fabrication of transparent icephobic surfaces with self-reparability: Effect of structuring and thickness of the lubricant-elastomer layer
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Fabrication of transparent icephobic surfaces with self-reparability: Effect of structuring and thickness of the lubricant-elastomer layer

机译:具有自修复性的透明憎冰表面的制造:润滑弹性体层的结构和厚度的影响

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摘要

Biomimetic lubricant-infused slippery surface (LISS) has attracted extensive attention as an alternative to a superhydrophobic surface (SHS) for icephobic applications. In this work, the impact of the material parameters of LISS with a lubricant-elastomer layer on icephobic performance is reported. A layer of polydimethylsiloxane elastomer and silicone oil on smooth and structured polypropylene (PP) surfaces was spin-coated by a simple one-step procedure. Results demonstrate that the ultra-smooth lubricant-elastomer layer (LEL) has an extremely low water contact angle hysteresis. Compared to SHS and smooth surface, the LISSs reduced ice adhesion by an order of magnitude due to its molecular homogeneity, low contact area, and strain mismatch. The LISSs exhibited excellent dynamic mobility at -10 degrees C, shear stability, evaporation resistance, mechanical robustness, and transparency. Physically damaged LISS can self-repair at 80 degrees C. The change in structures and LEL thickness of structured PP has little effect on ice adhesion. As the LEL thickness on a smooth PP increases, the ice adhesion decreases. The smooth PP with a thick LEL has very low ice adhesion, indicating that the roughness is not necessary for maintaining the slippery properties. Transparent, stable, anti-dusting, and self-repairing LELs on smooth materials have potential for icephobic applications.
机译:仿生润滑剂注入的光滑表面(LISS)作为超疏水表面(SHS)的替代品,已在冰层应用中引起广泛关注。在这项工作中,报道了具有润滑剂-弹性体层的LISS材料参数对疏冰性能的影响。通过简单的一步步骤,在光滑且结构化的聚丙烯(PP)表面上涂上一层聚二甲基硅氧烷弹性体和硅油。结果表明,超光滑的润滑剂-弹性体层(LEL)具有极低的水接触角滞后。与SHS和光滑的表面相比,LISS由于其分子均匀性,低接触面积和应变失配而使冰的附着力降低了一个数量级。 LISS在-10摄氏度下表现出出色的动态迁移率,剪切稳定性,耐蒸发性,机械强度和透明性。受到物理损坏的LISS可以在80摄氏度下自我修复。结构化PP的结构和LEL厚度的变化对冰的附着力影响很小。随着光滑PP上LEL厚度的增加,冰的附着力降低。具有较厚LEL的光滑PP具有极低的冰附着力,表明粗糙度对于保持滑爽性不是必需的。光滑材料上的透明,稳定,防尘和自我修复的LEL具有潜在的憎冰性。

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