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首页> 外文期刊>Bulletin of Materials Science >Antireflection coatings on plastics deposited by plasma polymerization process
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Antireflection coatings on plastics deposited by plasma polymerization process

机译:通过等离子聚合工艺沉积在塑料上的减反射涂层

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摘要

Antireflection coatings (ARCs) are deposited on the surfaces of optical elements like spectacle lenses to increase light transmission and improve their performance. In the ophthalmic industry, plastic lenses are rapidly displacing glass lenses due to several advantageous features. However, the deposition of ARCs on plastic lenses is a challenging task, because the plastic surface needs treatment for adhesion improvement and surface hardening before depositing the ARC. This surface treatment is usually done in a multi-stage process- exposure to energetic radiations, followed by deposition of a carbonyl hard coating by spin or dip coating processes, UV curing, etc. However, this treatment can also be done by plasma processes. Moreover, the plasma polymerization process allows deposition of optical films at room temperature, essential for plastics. The energetic ions in plasma processes provide similar effects as in ion assisted physical deposition processes to produce hard coatings, without requiring sophisticated ion sources. The plasma polymerization process is more economical than ion-assisted physical vapour deposition processes as regards equipment and source materials and is more cost-effective, enabling the surface treatment and deposition of the ARC in the same deposition system in a single run by varying the system parameters at each step. Since published results of the plasma polymerization processes developed abroad are rather sketchy and the techniques are mostly veiled in commercial secrecy, innovative and indigenous plasma-based techniques have been developed in this work for depositing the complete ARCs on plastic substrates.
机译:抗反射涂层(ARC)沉积在光学元件(如眼镜镜片)的表面上,以增加透光率并改善其性能。在眼科工业中,由于一些有利的特征,塑料镜片正在迅速取代玻璃镜片。但是,在塑料镜片上沉积ARC是一项艰巨的任务,因为在沉积ARC之前,塑料表面需要进行处理以提高附着力和表面硬化。这种表面处理通常在多阶段过程中进行-暴露于高能辐射下,然后通过旋涂或浸涂过程,UV固化等方法沉积羰基硬质涂层。但是,该处理也可以通过等离子工艺完成。此外,等离子体聚合过程允许在室温下沉积光学薄膜,这对于塑料是必不可少的。等离子体工艺中的高能离子可提供与离子辅助物理沉积工艺类似的效果,以产生硬质涂层,而无需复杂的离子源。就设备和原料而言,等离子聚合工艺比离子辅助物理气相沉积工艺更经济,并且更具成本效益,通过改变系统,可以在同一沉积系统中一次完成ARC的表面处理和沉积每个步骤的参数。由于国外开发的等离子聚合工艺的公开结果颇为粗略,并且该技术大多是出于商业机密,因此这项工作开发了创新的和基于本地等离子技术,用于将完整的ARC沉积在塑料基材上。

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