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首页> 外文期刊>RSC Advances >Study on the anti-abrasion resistance of superhydrophobic coatings based on fluorine-containing acrylates with different Tg and SiO2
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Study on the anti-abrasion resistance of superhydrophobic coatings based on fluorine-containing acrylates with different Tg and SiO2

机译: T g 和SiO 2 的含氟丙烯酸酯类超疏水涂料的耐磨性研究

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摘要

Fluorine-containing acrylates (FACs) with different glass transition temperature (Tg) were synthesized by solution copolymerization, and then the superhydrophobic coatings were fabricated based on the FAC, micro-SiO2 (M-SiO2) and nano-SiO2 (N-SiO2) particles through a two-step spray method. The prepared FAC was characterized by Fourier transform infrared spectroscopy (FTIR), proton nuclear magnetic resonance (1H-NMR) and differential scanning calorimetry (DSC). The wetting behavior and surface morphology of the superhydrophobic coating were studied. The resistance and mechanism of the superhydrophobic coating against abrasion were also investigated. FTIR and 1H-NMR showed that the fluorinated-containing monomer had copolymerized with the acrylate monomers, and FACs with different Tg of about 74.2 °C, 24.5 °C, ?7.7 °C and ?29.5 °C were prepared. After coating with FAC/M-SiO2/N-SiO2 composite coating, the surface showed hierarchical structures with a roughness (Sa) of 1.23 mm, and became superhydrophobic with a water contact angle higher than 150° and a low sliding angle lower than 5°. Abrasion testing showed that the superhydrophobic coating fabricated based on the FAC polymer with low Tg had better abrasion resistance in comparison with that of the FAC polymer with high Tg. Meanwhile, the M-SiO2 in the composite coating could weaken the abrasion force to the surface micro roughness damage and acted as connections for the adhesion of N-SiO2 particles during abrasion, which ensured the binary microano structures required for good hydrophobicity after abrasion.
机译:通过溶液共聚合成具有不同玻璃化转变温度( T g )的含氟丙烯酸酯(FAC),然后制备超疏水涂层基于FAC的micro-SiO 2 (M-SiO 2 )和纳米SiO 通过两步喷雾法制备了 2 (N-SiO 2 )颗粒。通过傅里叶变换红外光谱(FTIR),质子核磁共振( 1 H-NMR)和差示扫描量热法(DSC)对制备的FAC进行表征。研究了超疏水涂层的润湿行为和表面形貌。还研究了超疏水涂层的耐磨性和机理。 FTIR和 1 H-NMR表明,含氟单体与丙烯酸酯单体共聚,且 T <制备了约74.2℃,24.5℃,〜7.7℃和〜29.5℃的sub> g 2 / N-SiO 2 复合涂层涂覆后,表面呈分层结构粗糙度( S a )为1.23毫米,并变得超疏水,水接触角大于150°,低滑动角较小比5°耐磨性测试表明,以低 T g 的FAC聚合物制成的超疏水涂层与FAC聚合物相比具有更好的耐磨性 T g 高。同时,复合涂层中的M-SiO 2 可以减弱对表面微观粗糙度损伤的磨损力,并作为N-SiO 附着力的连接磨损过程中的 2 颗粒确保了磨损后具有良好疏水性所需的二元微观/纳米结构。

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