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Tribology of water and oil repellent sol-gel coatings for optical applications

机译:光学应用的拒水拒油溶胶-凝胶涂料的摩擦学

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摘要

Oil and water repellent sol-gel silica coatings may be used to extend the use and lifetime of certain computer displays, optoelectronic devices, and optical components such as touch screens. Organic-inorganic coatings consisting of organically modified silica are an optimal class of materials to use for such applications as they are substantially more durable than conventional polymers while having low processing temperatures compatible with organics. This study is concerned with the characterization of wear-resistant coatings derived from polysiloxanes. Organically modified sol-gel silica coatings were deposited on soda-lime glass substrates by dip coating. Mechanical, surface, and tribological properties were investigated using nanoindentation, contact angle goniometry, stylus profilometry, and a reciprocating polishing wear test to determine wear rate by mass loss. The average hardness of films was found to be 1.2 GPa and independent of curing times above 30 min at 150℃. In polishing wear, failure was caused by gradual abrasive wear through the depth of the coating. Wear rate was found to be independent of curing times above 30 min at 150℃. The development of these coatings will contribute to the rational design of the next generation of transparent overlays and displays.
机译:拒油和拒水的溶胶-凝胶二氧化硅涂层可用于延长某些计算机显示器,光电设备和光学组件(如触摸屏)的使用和寿命。由有机改性的二氧化硅组成的有机-无机涂料是用于此类应用的最佳材料类别,因为它们比常规聚合物更耐用,同时具有与有机物相容的低加工温度。这项研究与衍生自聚硅氧烷的耐磨涂层的特性有关。通过浸涂将有机改性的溶胶-凝胶二氧化硅涂层沉积在钠钙玻璃基板上。机械性能,表面性能和摩擦学性能使用纳米压痕,接触角测角法,测针轮廓测量法和往复式抛光磨损试验进行了研究,以确定质量损失造成的磨损率。发现膜的平均硬度为1.2 GPa,并且与150℃30分钟以上的固化时间无关。在抛光磨损中,故障是由于贯穿涂层深度的逐渐磨损引起的。发现在150℃下30分钟以上的磨损速率与固化时间无关。这些涂料的发展将有助于下一代透明覆盖物和显示器的合理设计。

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