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Potential anti-icing applications of encapsulated phase change material-embedded coatings; a review

机译:封装相变材料嵌入式涂层的潜在防冰应用;回顾

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摘要

Icephobic surfaces are highly sought-after materials as there is a need to reduce the catastrophic outcomes of ice formation on outdoor surfaces. Existing anti-icing strategies, including superhydrophobic surfaces (SHPSs) and slippery liquid-infused porous surfaces (SLIPS), are often ineffective against frost formation or have a limited durability. As such, new approaches are required, and the incorporation of phase change materials (PCMs) into polymeric matrices offers a potential means of delaying ice formation and reducing ice adhesion on exposed surfaces. Homogeneously dispersed encapsulated PCMs (EPCMs) of uniform size inside a binder can release high amounts of latent heat and produce local shear stresses on surfaces-due to their volume change-during icing conditions, thereby reducing ice adhesion strength. Furthermore, surface protrusions produced by the EPCMs can also impart hydrophobicity or even superhydophobicity onto a surface to delay ice formation. This con-tribution reviews recent progress in the development of ECPM-based anti-icing surfaces. We also discuss the advantages and challenges of using PCM materials for anti-icing applications, summarize existing encapsulation methods, and outline the ECPM-based mechanisms that hinder ice formation and lower ice adhesion.
机译:由于需要减少户外表面上的冰形成灾难性的灾难性后,冰冻表面是高度追捧的材料。现有的抗糖霜策略,包括超疏水表面(SHPS)和滑湿的液体注入多孔表面(滑动),其往往对霜形成或具有有限的耐久性。因此,需要新方法,并将相变材料(PCM)掺入聚合物基质提供延迟冰形成并减少暴露表面上的冰粘附的潜在装置。在粘合剂内均匀尺寸的均匀分散的包装PCM(EPCMS)可以释放大量的潜热并在表面上产生局部剪切应力 - 由于其体积变化 - 在糖化条件下,从而降低了冰粘附强度。此外,由EPCMS产生的表面突起还可以将疏水性赋予疏水性或甚至超高速性在表面上以延迟冰形成。这种核准审查了基于ECPM的防冰表面的发展的最新进展。我们还讨论了使用PCM材料进行防冰应用的优点和挑战,总结了现有的封装方法,并概述了妨碍冰形成和降低冰粘连的基于ECPM的机制。

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