Lesiak Piotr, Bednarska Karolina, Małkowski Krzysztof, Kozłowski Łukasz, Wróblewska Anna, Sobotka Piotr, Dydek Kamil, Boczkowska Anna, Osuch Tomasz, Anuszkiewicz Alicja, Lewoczko-Adamczyk Wojciech, Schröder Henning, Woliński Tomasz Ryszard
Faculty of Physics, Warsaw University of Technology, 00-662 Warszawa, Poland.
Centre for Advanced Materials and Technologies CEZAMAT, 02-822 Warszawa, Poland.
Sensors (Basel). 2020 Sep 24;20(19):5468. doi: 10.3390/s20195468.
Polymer-matrix composites degrade under the influence of UV radiation in the range of the 290-400 nm band. The degradation of polymer-matrix composites exposed to UV radiation is characterized by extensive aging of the epoxy matrix, resulting in deterioration of their mechanical properties. Glass fibers/epoxy resin composites were made by an out-of-autoclave method whereas a fiber optic sensor was placed between different layers of laminates. In our work, we used a fiber Bragg grating sensor covered with graphene oxide and embedded in a polymer matrix composite to monitor UV radiation intensity. Measurements of UV radiation may allow monitoring the aging process of individual components of the polymer composite. In order to estimate the number of microcracks of epoxy resin, microstructure observations were carried out using a scanning electron microscope.
聚合物基复合材料在290 - 400纳米波段的紫外线辐射影响下会降解。暴露于紫外线辐射的聚合物基复合材料的降解特征是环氧基体发生广泛老化,导致其机械性能恶化。玻璃纤维/环氧树脂复合材料采用非热压罐法制成,而光纤传感器置于层压板的不同层之间。在我们的工作中,我们使用了一个覆盖有氧化石墨烯并嵌入聚合物基复合材料中的光纤布拉格光栅传感器来监测紫外线辐射强度。紫外线辐射的测量可以监测聚合物复合材料各个组分的老化过程。为了估计环氧树脂的微裂纹数量,使用扫描电子显微镜进行了微观结构观察。