Ogrodowska Karolina, Łuszcz Karolina, Garbacz Andrzej
Faculty of Civil Engineering, Warsaw University of Technology, UL. Armii Ludowej 16, 00-637 Warsaw, Poland.
Polymers (Basel). 2021 Aug 4;13(16):2585. doi: 10.3390/polym13162585.
This paper presents fiber-reinforced polymer composites which were modified by fibers hybridization as well as matrix nanomodifiaction with nanosilica. The article analyzed the nanosilica matrix modification and basalt-carbon hybridization's effect on key properties of composites use as the main reinforcement in concrete structures. The comparative analysis was based on results of bars strength parameters determined in a shear test with the ASTM standard. The tests were performed for three bar diameters at room temperature and pre-heated FRP composites at 80 °C and 200 °C for 2 h with the aim of verifying the influence of the fiber hybridization-basalt-carbon fiber-reinforced polymer (HFRP) bars and the effect of nanosilica modification of the epoxy matrix (nHFRP). The test results were also compared with results of the shear test carried out after the bars were heated to 80 °C for 30 min in order to verify and evaluate the effect of the heating time. These types of tests are relevant to the conditions that occur in FRP composites when exposed to elevated temperatures.
本文介绍了通过纤维混杂以及用纳米二氧化硅对基体进行纳米改性的纤维增强聚合物复合材料。文章分析了纳米二氧化硅基体改性和玄武岩 - 碳混杂对用作混凝土结构主要增强材料的复合材料关键性能的影响。对比分析基于按照ASTM标准在剪切试验中测定的棒材强度参数结果。试验针对三种棒材直径在室温下进行,以及对预热至80°C和200°C并保持2小时的纤维增强聚合物复合材料进行,目的是验证纤维混杂 - 玄武岩 - 碳纤维增强聚合物(HFRP)棒材的影响以及环氧基体纳米二氧化硅改性(nHFRP)的效果。试验结果还与棒材在80°C加热30分钟后进行的剪切试验结果进行了比较,以验证和评估加热时间的影响。这些类型的试验与纤维增强聚合物复合材料在高温下的实际情况相关。