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A facile method of fabricating mechanical durable anti-icing coatings based on CeO2 microparticles

机译:基于CEO2微粒制造机械耐用防冰涂层的容易方法

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Compromising between hydrophobicity and mechanical durability may be a feasible approach to fabricating usable anti-icing coatings. This work improves the contact angle of current commercial anti-icing coatings applied to wind turbine blades dramatically and keeps relatively high mechanical durability. CeO2 microparticles and diluent were mixed with fluorocarbon resin to fabricate high hydrophobic coatings on the glass fiber reinforced epoxy composite substrates. The proportion of CeO2 microparticles and diluent influences the contact angles significantly. The optimum mass ratio of fluorocarbon resin to CeO2 microparticles to diluent is 1:1.5:1, which leads to the highest contact angle close to 140°. The microscopy analysis shows that the CeO2 microparticles form nano/microscale hierarchical structure on the surface of the coatings.
机译:疏水性和机械耐久性之间的损害可能是制造可用的抗糖霜涂层的可行方法。这项工作改善了当前商业防冰涂层的接触角,其急剧施加到风力涡轮机叶片,并保持相对高的机械耐久性。将CeO 2微粒和稀释剂与氟碳树脂混合以制造在玻璃纤维增​​强的环氧复合基材上的高疏水涂层。 CeO2微粒和稀释剂的比例显着影响接触角。氟碳树脂与CeO 2微粒至稀释剂的最佳质量比为1:1.5:1,导致接近140°的最高接触角。显微镜分析表明,CEO2微粒在涂层表面上形成纳米/微观层次结构。

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