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One-Step Preparation of Durable Super-Hydrophobic MSR/SiO 2 Coatings by Suspension Air Spraying

机译:悬浮空气喷涂一步法制备耐用的超疏水MSR / SiO 2涂层

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摘要

In this study, we develop a facial one-step approach to prepare durable super-hydrophobic coatings on glass surfaces. The hydrophobic characteristics, corrosive liquid resistance, and mechanical durability of the super-hydrophobic surface are presented. The as-prepared super-hydrophobic surface exhibits a water contact angle (WCA) of 157.2° and contact angle hysteresis of 2.3°. Micoano hierarchical structures and elements of silicon and fluorine is observed on super-hydrophobic surfaces. The adhesion strength and hardness of the surface are determined to be 1st level and 4H, respectively. The coating is, thus, capable of maintaining super-hydrophobic state after sand grinding with a load of 200 g and wear distances of 700 mm. The rough surface retained after severe mechanical abrasion observed by atomic force microscope (AFM) microscopically proves the durable origin of the super-hydrophobic coating. Results demonstrate the feasibility of production of the durable super-hydrophobic coating via enhancing its adhesion strength and surface hardness.
机译:在这项研究中,我们开发了一种面部一步法来在玻璃表面上制备耐用的超疏水涂层。给出了超疏水表面的疏水特性,耐腐蚀性,以及机械耐久性。所制备的超疏水表面具有157.2°的水接触角(WCA)和2.3°的接触角滞后。在超疏水表面上观察到硅和氟的微/纳米级结构和元素。表面的粘合强度和硬度分别确定为第一级和4H。因此,该涂层能够在砂磨后以200 g的载荷和700 mm的磨损距离保持超疏水状态。通过原子力显微镜(AFM)观察到的严重机械磨损后残留的粗糙表面证明了超疏水涂层的持久起源。结果证明了通过提高其耐粘强度和表面硬度来生产耐用的超疏水性涂层的可行性。

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