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Development and Evaluation of Nano-Silica Dispersed Polyurethane Based Coatings for Improved Anti-Graffiti and Scratch Resistance

机译:纳米二氧化硅分散聚氨酯基涂料的改进抗涂鸦性和耐划伤性的开发和评估

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Polyurethane based anti-graffiti coatings have been developed by incorporating varying amounts of OH-functional Silicone modified polyacrylate. Optimization of Silicone polyacrylate concentration in neat PU was done by testing its performance for graffiti resistance. Tests which include static contact angle measurements with water and spray paint, visual inspection of stain removal and color change measurements were performed. It was observed that 5 wt % of Silicone polyacrylate in the neat PU showed 95% stain removability. These coatings showed excellent graffiti resistance but poor mechanical properties. Hence modification of these coatings was done by nano-particle incorporation. Nano-silica particle concentration was optimized for surface mechanical properties such as surface hardness, elastic modulus and scratch resistance. FEG-TEM revealed that nano-silica particles were uniformly distributed over the surface. 5 wt % nano-silica particle additions in PU-5 wt % silicone polyacrylate base showed superior mechanical properties than other concentrations. Color change measurements showed that nano-silica particle addition had no effect on its graffiti resistance. Hence PU-5 wt % silicone polyacrylate, 5 wt % nano-silica showed excellent graffiti resistance and mechanical properties.
机译:通过掺入不同数量的OH-官能的有机硅改性聚丙烯酸酯,开发出了基于聚氨酯的抗涂鸦涂料。通过测试其耐涂鸦性的性能,可以优化纯聚氨酯中有机硅聚丙烯酸酯的浓度。测试包括水和喷漆的静态接触角测量,目测去污和颜色变化测量。观察到在纯净的PU中5wt%的有机硅聚丙烯酸酯显示出95%的去污性。这些涂料显示出优异的抗涂鸦性,但机械性能差。因此,这些涂层的改性是通过纳米粒子的结合进行的。针对表面机械性能(例如表面硬度,弹性模量和耐刮擦性)优化了纳米二氧化硅颗粒的浓度。 FEG-TEM表明,纳米二氧化硅颗粒均匀地分布在表面上。在PU-5 wt%的有机硅聚丙烯酸酯基料中添加5 wt%的纳米二氧化硅粒子显示出比其他浓度优异的机械性能。颜色变化测量表明,纳米二氧化硅颗粒的添加对其抗涂鸦性没有影响。因此,PU-5重量%的有机硅聚丙烯酸酯,5重量%的纳米二氧化硅显示出优异的抗涂鸦性和机械性能。

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