Monjon Alice, Santos Paulo, Valvez Sara, Reis Paulo N B
Department of Aeronautic Engineering, University of Beira Interior, 6201-100 Covilhã, Portugal.
Department of Electromechanical Engineering, C-MAST, University of Beira Interior, 6201-100 Covilhã, Portugal.
Materials (Basel). 2022 Feb 10;15(4):1302. doi: 10.3390/ma15041302.
Fiber-reinforced composites are gradually replacing the traditional materials in many engineering applications. However, for many applications these materials are still unsuitable, due to their lack of toughness. In this context, hybridization is a promising strategy in which two or more types of fiber are combined to obtain a better balance of mechanical properties compared to non-hybrid composites. Therefore, the main goal of this work is to study the hybridization effect on the static performance and interlaminar shear strength. For this purpose, carbon, glass, and Kevlar fibers were used and combined in different proportions. It was possible to conclude that there is an ideal value of fiber content to maximize both properties and, depending on the type of fiber, they should be placed specifically on the compression or tensile side. For example, for composites involving carbon and glass fibers the latter must be placed on the compression side, and for a value of 17% by weight the flexural strength decreases by only 2.8% and the bending modulus by around 19.8%. On the other hand, when Kevlar fibers are combined with glass or carbon fibers, the Kevlar ones must always be placed on the tensile side and with an ideal value of 13% by weight.
纤维增强复合材料在许多工程应用中正在逐渐取代传统材料。然而,对于许多应用来说,由于这些材料缺乏韧性,它们仍然不合适。在这种情况下,混杂是一种很有前景的策略,即把两种或更多类型的纤维结合起来,以获得比非混杂复合材料更好的力学性能平衡。因此,这项工作的主要目标是研究混杂对静态性能和层间剪切强度的影响。为此,使用了碳纤维、玻璃纤维和芳纶纤维,并按不同比例进行组合。可以得出结论,存在一个理想的纤维含量值,可使两种性能都最大化,并且根据纤维类型的不同,它们应分别放置在压缩侧或拉伸侧。例如,对于包含碳纤维和玻璃纤维的复合材料,后者必须放置在压缩侧,当玻璃纤维含量为17%(重量)时,弯曲强度仅降低2.8%,弯曲模量降低约19.8%。另一方面,当芳纶纤维与玻璃纤维或碳纤维结合时,芳纶纤维必须始终放置在拉伸侧,理想含量为13%(重量)。