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首页> 外文期刊>E3S Web of Conferences >Influence of silane on the structure of polystyrene prepared by sol-gel coatings via UV curing
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Influence of silane on the structure of polystyrene prepared by sol-gel coatings via UV curing

机译:硅烷对通过UV固化制备溶胶涂层制备的聚苯乙烯结构的影响

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Light, heat, oxygen, moisture, ozone, atmospheric pollution and biological effects are the most important effectives wreak to chemical degradation in the polymer structure. In result of chemical degradation on the polymer consist of problems such as discoloration, brittleness, surface cracks, perspiration, crumbling, smell, surface acidity. In this work, it is aimed to improve the problem of the polystyrene (PS) material against chemical degradation. For this reason, PS is coated with silica sol-gel hybrid coating. Silica sol-gel was synthesized by using vinyltrimethoxysilane (VTMS) as a cross-linker and tetraethylorthosilicate (TEOS) as a silica source. Firstly, four different pre-treatment technique (oven, vacuum oven, lyophilizer and freezing) was studied to determine the most suitable pre-treatment technique for coating on PS substrate of sol-gel prepared with initial formulation (S1). A freezing technique gave the best results for coating sample. The change of surface colour of coated PS was measured by CIE L*a*b* methods. Secondly, the most suitable curing agent (Irgacure 184, Irgacure 819, Darocur 1173 and TiO2 as crystalline anatase phase) was determined to coat the sol-gel on PS. It was determined to the lowest yellowing of PS surface hybrid coated as UV curing of TEOS sol modified by VTMS and TiO2 as photo-initiators. Finally, the chemical and morphological structure of the coated PS samples was determined by FT-IR and SEM instruments, respectively.
机译:光,热,氧气,水分,臭氧,大气污染和生物效应是最重要的效果在聚合物结构中造成化学降解。在聚合物上的化学降解的结果包括变色,脆性,表面裂缝,汗水,摇摇欲坠,气味,表面酸性等问题。在这项工作中,旨在改善聚苯乙烯(PS)材料对化学降解的问题。因此,PS涂有二氧化硅溶胶 - 凝胶杂化涂层。通过使用乙烯基三甲氧基硅烷(VTM)作为硅胶源作为交联剂和四乙基甲基硅酸盐(TEOS)来合成二氧化硅溶胶 - 凝胶。首先,研究了四种不同的预处理技术(烘箱,真空烘箱,冻干剂和冷冻干燥剂),以确定用初始配方制备的溶胶 - 凝胶的PS基底上最合适的预处理技术(S1)。冷冻技术给出了涂层样品的最佳效果。通过CIE L * A * B *方法测量涂覆PS的表面颜色的变化。其次,测定最合适的固化剂(Irgacure 184,Irgacure 819,Darocur 1173和TiO 2作为结晶锐钛矿相)涂覆溶胶 - 凝胶上ps。确定PS表面杂交的最低黄色,作为由VTM和TiO 2改性的Teos溶胶的UV固化作为光引发剂。最后,涂覆的PS样品的化学和形态学结构分别通过FT-IR和SEM仪器测定。

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