Birleanu Corina, Cioaza Mircea, Serdean Florina, Pustan Marius, Bere Paul, Contiu Glad
MicroNano Systems Laboratory, Technical University from Cluj-Napoca, 400641 Cluj-Napoca, Romania.
Department of Manufacturing Engineering, Technical University from Cluj-Napoca, 400641 Cluj-Napoca, Romania.
Polymers (Basel). 2023 Dec 23;16(1):62. doi: 10.3390/polym16010062.
Fibers play an important role when studying the tribological behavior of reinforced friction composites. The purpose of the current research is to develop a glass fiber reinforced polymer (GFRP) recipe with improved tribological properties as well as to find the composites with the optimal tribological behavior. A ball-on-disc tribometer was used to perform dry sliding friction testing, the obtained results were then analyzed with the ELECTRE (ELimination Et Choix Traduisant la REalite-elimination and choice translating the reality) method based on a utility matrix having process parameters the applied load, sliding velocity, and weight percentage of the fiber content. The ELECTRE method was chosen to find the optimal tribological parameters, with respect to more performance criteria, because it is one of the best multiple criteria decision-making methods. The optimal combination of parameters for the multi-response characteristics of the investigated friction composite was at an applied load of 10 N, a sliding velocity of 0.1 ms and a 54% weight fiber content. The results showed that the addition of glass fiber (GF) content did not considerably improve the tribological behavior of the friction composites. In addition, from the nano focus-optical 3D scanning electron microscopy, images of the friction, tested friction and wear composites, plate formation, fiber-matrix delamination, fiber pull-out, and matrix cracking and damage, various wear mechanisms were identified.
在研究增强摩擦复合材料的摩擦学行为时,纤维起着重要作用。当前研究的目的是开发一种具有改进摩擦学性能的玻璃纤维增强聚合物(GFRP)配方,并找到具有最佳摩擦学行为的复合材料。使用销盘摩擦磨损试验机进行干滑动摩擦测试,然后基于具有工艺参数(施加的载荷、滑动速度和纤维含量的重量百分比)的效用矩阵,采用ELECTRE(消除与选择,即消除和选择以转化现实)方法对获得的结果进行分析。选择ELECTRE方法是为了在更多性能标准方面找到最佳摩擦学参数,因为它是最佳的多标准决策方法之一。所研究的摩擦复合材料多响应特性的参数最佳组合为:施加载荷10 N、滑动速度0.1 m/s和纤维含量重量百分比为54%。结果表明,玻璃纤维(GF)含量的增加并没有显著改善摩擦复合材料的摩擦学行为。此外,通过纳米聚焦光学三维扫描电子显微镜,观察了摩擦、测试摩擦和磨损复合材料、板材形成、纤维 - 基体分层、纤维拔出以及基体开裂和损坏的图像,识别出了各种磨损机制。