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Rendering hydrophilic glass-ceramic enamel surfaces hydrophobic by acid etching and surface silanization for heat transfer applications

机译:通过酸蚀刻和表面硅烷化进行亲水性玻璃牙釉质表面疏水,用于传热应用

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The study revealed a facile method to hydrophobize enamel coatings with a thermally stable hydrophobicity by using halogenic acid etching and perfluorooctyl triethoxysilane surface modification. The results showed that the modification was successfully achieved as evidenced by the presence of the organic modifier from the measurements by FTIR and XPS. SEM/EDS and 3D optical profilometer showed that hydrofluoric/hydrochloric acid exposed the distinct inner microstructures of glass-ceramic/glassy enamels, with corresponding structures of multi particles/island morphology in micro and sub-micro scales. The combination of these unique structures and fluoroalkyl silane modifier improved the contact angle of the enamel surfaces up to 134 degrees, compared to 110 degrees of the non-etched samples. The resulted hydrophobic film was thermally stable up to 400 degrees C and able to withstand a temperature of 200 degrees C in a period of 15 h. During a 60 min water condensation testing, the obtained hydrophobic enamel surfaces demonstrated an intriguing dropwise water condensation which is advantageous to the surface heat transfer. During mechanical sliding, the nano scaled multi-spike surface of crystalized enamel was more vulnerable than the micro island structured surface of glassy enamel. The former experienced a sharp decrease in hydrophobicity due to both the loss of modifier and the collapse of fragile nanostructure, and the latter still remained hydrophobic thanks to a mechanically stable micro structure. The study showed that the combination of the facile etching process and widely-used fluoroalkyl silanization could be utilized to introduce hydrophobicity on a large scale to improve the surface function of the conventional enamel coating for various heat transfer applications.
机译:该研究揭示了通过使用卤代酸蚀刻和全氟辛基三氧基硅烷表面改性用热稳定的疏水性疏水化鞘膜涂层的容易方法。结果表明,通过FTIR和XPS从测量的测量结果证明,成功实现了修饰。 SEM / EDS和3D光学轮廓表明,氢氟酸/盐酸暴露的玻璃 - 陶瓷/玻璃搪瓷的不同内的微结构,具有相应的多颗粒/岛形态学结构在微观和亚微米尺度。与非蚀刻样品相比,这些独特的结构和氟代烷基硅烷改性剂的组合改善了搪瓷表面高达134度的牙釉质表面的接触角。得到的疏水膜热稳定,可达400℃,能够在15小时的时间内承受200℃的温度。在60分钟的水冷凝测试期间,所获得的疏水牙釉质表面表明了一种有趣的滴加水凝结,这是有利于表面热传递的有利。在机械滑动期间,结晶珐琅的纳米缩放的多钉表面比玻璃釉质的微岛结构表面更容易受到伤害。由于改性剂的丧失和脆弱纳米结构的崩溃,前者在疏水性的急剧下降,并且由于机械稳定的微结构,后者仍然保持疏水。该研究表明,可采用蚀刻工艺和广泛使用的氟代烷基硅烷化的组合可用于在大规模上引入疏水性,以改善各种传热应用的常规搪瓷涂层的表面功能。

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