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Continuous Surface Modification Process With Ultraviolet/Ozone for Improving Interfacial Adhesion of Poly(ethylene terephthalate)/Epoxy Composites

机译:紫外线/臭氧的连续表面改性工艺可改善聚对苯二甲酸乙二醇酯/环氧树脂复合材料的界面粘合力

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摘要

This study proposed a continuous UV/ozone surface modification process for the production of polymeric fiber-reinforced polymer composite.A gas phase pho-toreactor using the conventional low-pressure mercury UV lamps and the economically made ozone generators were designed and constructed.Poly(ethylene tereph-thalate) (PET) fibers and epoxy resin were chosen as a reinforcement and a matrix,respectively.The synergis-tic effects of UV and various gas species (nitrogen,air,oxygen,air/ozone,and oxygen/ozone) exposure as well as the effects of exposure time,i.e.,2,5,and 10 min,on the morphology and chemistry of PET-fiber surfaces were investigated by using a scanning electron micro-scope coupled with energy dispersive x-ray analysis (SEM/EDX).The tensile testing and analysis of fractog-raphy of the resulted composites were performed to evaluate the effectiveness of the process.The SEM/EDX results showed that the effects of the treatment were dependent on both the concentration of reactive species present in the gases and the exposure time.The PET fibers treated under UV/O_2+O_3 exposure for 5 min yielded the resulting composite with the highest tensile strength value.Under this condition,the tensile strength of the composite can be increased up to 63% in comparison with that of the untreated PET fiber/epoxy composite.The results are of interest for application as an in-line surface modification for composite productions.
机译:这项研究提出了一种连续的UV /臭氧表面改性工艺,用于生产聚合物纤维增强的聚合物复合材料。设计并建造了一种使用常规低压汞UV灯和经济型臭氧发生器的气相光反应器。分别选择了对苯二甲酸乙二酯(PET)纤维和环氧树脂作为增强材料和基质。紫外线和各种气体种类(氮气,空气,氧气,空气/臭氧和氧气/臭氧)的协同效应通过扫描电子显微镜和能量色散X射线分析(SEM)研究了暴露以及暴露时间(2、5和10分钟)对PET纤维表面形态和化学性质的影响/ EDX)。对所得复合材料进行拉伸测试并进行分形分析以评估该工艺的有效性.SEM / EDX结果表明,处理效果取决于反应性s的浓度。在紫外线/ O_2 + O_3暴露下处理5分钟的PET纤维产生的复合材料具有最高的拉伸强度值。在此条件下,复合材料的拉伸强度可以提高到与未处理的PET纤维/环氧树脂复合材料相比,该比例为63%。该结果对于在复合材料生产中作为在线表面改性应用感兴趣。

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