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Enhancing the Strengths of Adhesion Bonds between Composite Surface and Coating via UV Treatments

机译:通过紫外线处理增强复合材料表面和涂层之间的粘合强度

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Field of composites is rapidly growing in many industries such as aviation, energy and automotive industries. Composites are known to have a high strength to low weight ratio. Significant improvement in the performance of coatings used in the protection of military and civil aircraft has been achieved the last thirty years. Composite coatings are exposed to many environmental conditions, which can significantly affect their properties. In this research, UV light treatment on the surface of composite was introduced to examine its effects on the adhesion properties between the coating and substrate. A cross-cut test was conducted on the composite panels to assess the adhesion of paint to the substrate after the treatments. Coating performance analyses were also carried out using a Fourier transform infrared spectrometer, water contact angle, and optical microscopic images. The first set of panels was treated with UV radiation for 0,2,4 and, 8 days, and the surface wettability was also assessed using the contact angle test. Two coats of paints, including a primer and top coat, were used, and the panels were exposed to UV radiation and immersed in water for 500 hrs and 1000 hrs. It was found that untreated panels showed a much higher contact angle of 106°, whereas the contact angle of panels treated with UV radiation was reduced to 47°. The cross-cut tests showed considerable flaking of the coating along the edges and squares of panels that were not treated, and very small flakes along the edges and parts of the grid square on panels that were UV treated, thus confirming the enhancement of coating adhesion between composite and coating surfaces by UV treatments. Composite; UV Treatment; Adhesion, Bonding.
机译:在许多行业,例如航空,能源和汽车行业,复合材料领域正在迅速增长。已知复合材料具有高强度与低重量比。在过去的三十年中,用于保护军用和民用飞机的涂料的性能得到了显着改善。复合涂料暴露于许多环境条件下,这可能会严重影响其性能。在这项研究中,引入了对复合材料表面进行紫外线处理的方法,以研究其对涂层与基材之间的粘合性能的影响。在复合板上进行横切测试,以评估处理后涂料对底材的附着力。还使用傅立叶变换红外光谱仪,水接触角和光学显微图像进行了涂层性能分析。第一组面板用UV辐射处理了0、2、4和8天,并且还使用接触角测试评估了表面润湿性。使用两层油漆,包括底漆和面漆,并且将面板暴露于UV辐射下并浸入水中500小时和1000小时。发现未处理的面板显示出更高的106°接触角,而用UV辐射处理的面板的接触角降低至47°。横切测试显示,未经处理的面板的边缘和正方形的涂层有大量的剥落,而经紫外线处理的面板上的网格的边缘和正方形的边缘有很小的剥落,从而确认了涂层附着力的增强通过紫外线处理在复合材料和涂层表面之间合成的;紫外线处理;粘附力,粘接力。

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