首页> 外文会议>International Symposium on Advanced Optical Manufacturing and Testing Technologies; 20070708-12; Chengdu(CN) >Study on the effects of depositing parameters on the protection performance of plasma polymerized hexamethyldisiloxane coatings
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Study on the effects of depositing parameters on the protection performance of plasma polymerized hexamethyldisiloxane coatings

机译:沉积参数对等离子体聚合六甲基二硅氧烷涂料保护性能的影响研究

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Aluminium thin film is widely used for high reflectivity reflector. However, it is readily corroded in a variety of environments and in oxygen saturated water. Coatings deposition on it is considered as a way of increasing its corrosion resistance. Among all available deposition techniques, the use of plasma-assisted technologies has grown rapidly. Organosilicon monomers have been successfully used as precursors of Si-based films and among them hexamethyldisiloxane (HMDSO) has gained increasing interest owing to its lower cost and higher deposition rates comparing to similar silicon containing monomers. This work studies the effects of depositing parameters on the structure and composition of the coating and at last on the corrosion protection performance concerning their use as protective coatings on reflective aluminum metallisations. Therefore, we have done a serial of experiments and got corresponding samples with different parameters such as HMDSO glow discharge power and depositing time. In the experiments, the plasma polymerized HMDSO thin films have been obtained in a DC glow discharge from the monomer vapor. And then the corrosion protection performances are analyzed by environment experiments. To analyze the reason of the deposition parameters effect on protection performances, the chemical structure and composition of the films have been analyzed.
机译:铝薄膜广泛用于高反射率的反射器。但是,它容易在各种环境和氧气饱和的水中被腐蚀。涂层在其上的沉积被认为是增加其耐腐蚀性的一种方式。在所有可用的沉积技术中,等离子体辅助技术的使用已迅速增长。有机硅单体已经成功地用作硅基薄膜的前体,其中六甲基二硅氧烷(HMDSO)由于与类似的含硅单体相比成本更低,沉积速率更高而受到越来越多的关注。这项工作研究了沉积参数对涂层的结构和组成的影响,最后研究了与将其用作反射性铝金属镀层的保护层有关的腐蚀防护性能。因此,我们进行了一系列实验,得到了具有不同参数(例如HMDSO辉光放电功率和沉积时间)的相应样品。在实验中,通过直流辉光放电从单体蒸气中获得了等离子体聚合的HMDSO薄膜。然后通过环境实验分析其腐蚀防护性能。为了分析沉积参数影响保护性能的原因,分析了薄膜的化学结构和组成。

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