Bazan Patrycja, Kozub Barbara, Łach Michał, Korniejenko Kinga
Institute of Material Engineering, Faculty of Material Engineering and Physics, Cracow University of Technology, Jana Pawła II 37, 31-864 Cracow, Poland.
Materials (Basel). 2020 Dec 5;13(23):5548. doi: 10.3390/ma13235548.
This study investigated the influence of the steel and melamine fibers hybridization on the flexural and compressive strength of a fly ash-based geopolymer. The applied reinforcement reduced the geopolymer brittleness. Currently, there are several types of polymer fibers available on the market. However, the authors did not come across information on the use of melamine fibers in geopolymer composites. Two systems of reinforcement for the composites were investigated in this work. Reinforcement with a single type of fiber and a hybrid system, i.e., two types of fibers. Both systems strengthened the base material. The research results showed the addition of melamine fibers as well as steel fibers increased the compressive and flexural strength in comparison to the plain matrix. In the case of a hybrid system, the achieved results showed a synergistic effect of the introduced fibers, which provided better strength results in relation to composites reinforced with a single type of fiber in the same amount by weight.
本研究调查了钢纤维与三聚氰胺纤维混杂对粉煤灰基地质聚合物抗折强度和抗压强度的影响。所采用的增强方式降低了地质聚合物的脆性。目前市场上有几种类型的聚合物纤维。然而,作者未找到有关在地质聚合物复合材料中使用三聚氰胺纤维的信息。本研究工作中对复合材料的两种增强体系进行了研究。一种是使用单一类型纤维的增强方式,另一种是混杂体系,即使用两种类型的纤维。两种体系均增强了基体材料。研究结果表明,与素基体相比,添加三聚氰胺纤维以及钢纤维均提高了抗压强度和抗折强度。在混杂体系的情况下,所取得的结果表明引入的纤维具有协同效应,与相同重量的单一类型纤维增强的复合材料相比,其强度结果更佳。