Zhou Jianping, Zhu Chunfang, Liang Hongbo, Wang Zhengyue, Wang Hailong
School of Material Science and Engineering, Nanchang Hangkong University, Nanchang 330063, China.
Jianxi Provincial Engineering Research Center for Surface Technology of Aeronautical Materials, Nanchang Hangkong University, Nanchang 330063, China.
Materials (Basel). 2020 Mar 19;13(6):1388. doi: 10.3390/ma13061388.
Low surface energy coatings have gained considerable attention due to their superior surface hydrophobic properties. However, their abrasion resistance and sustainability of surface hydrophobicity are still not very satisfactory and need to be improved. In this work, a series of utraviolet (UV)-curable fluorosiloxane copolymers were synthesized and used as reactive additives to prepare polyurethane acrylate coatings with low surface energy. The effect of the addition of the fluorinated graft copolymers on the mechanical durability and surface hydrophobicity of the UV-cured hybrid films during the friction-annealing treatment cycles was investigated. The results show that introducing fluorosiloxane additives can greatly enhance surface hydrophobicity of the hybrid film. With addition of 2 wt.% fluorosiloxane copolymers, the water contact angle (WCA) value of the hybrid film was almost tripled compared to that of the pristine PU film, increasing from 58° to 144°. The hybrid film also showed enhanced abrasion resistance and could withstand up to about 60 times of friction under a pressure of 20 kPa. The microstructure formed in the annealed film was found to contribute much to achieve better surface hydrophobicity. The polyurethane acrylate/fluorinated siloxane resin hybrid film prepared in this study exhibits excellent potential for applications in the low surface energy field.
低表面能涂层因其优异的表面疏水性能而备受关注。然而,它们的耐磨性和表面疏水性的可持续性仍不尽人意,需要改进。在这项工作中,合成了一系列紫外光(UV)固化氟硅氧烷共聚物,并将其用作反应性添加剂来制备具有低表面能的聚氨酯丙烯酸酯涂层。研究了氟化接枝共聚物的添加对UV固化杂化膜在摩擦退火处理循环过程中的机械耐久性和表面疏水性的影响。结果表明,引入氟硅氧烷添加剂可大大提高杂化膜的表面疏水性。添加2 wt.%的氟硅氧烷共聚物后,杂化膜的水接触角(WCA)值与原始聚氨酯膜相比几乎增加了两倍,从58°增加到144°。杂化膜还表现出增强的耐磨性,在20 kPa的压力下可承受约60次摩擦。发现退火膜中形成的微观结构对实现更好的表面疏水性有很大贡献。本研究制备的聚氨酯丙烯酸酯/氟化硅氧烷树脂杂化膜在低表面能领域具有优异的应用潜力。