Mahdi Elsadig, Dean Aamir
Department of Mechanical and Industrial Engineering, College of Engineering, Qatar University, Doha, P.O. Box 2713, Qatar.
Institute of Structural Analysis (ISD), Leibniz Universität Hannover, Appelstr. 9A, 30167 Hannover, Germany.
Materials (Basel). 2020 Feb 6;13(3):753. doi: 10.3390/ma13030753.
This paper investigates the effect of filler content on the mechanical properties of cottonfiber (CF) on the CF/PP and CF/PVC composites under quasi-static loading. For this purpose,experimental tensile tests were carried out on dog-bone specimens, cut out from hot and coldpress molded square plates of different fiber weight contents. The results obtained show that thefiller content appears to have a strong influence on mechanical energy absorption, and failurecharacteristics. It was also found that the stiffness for both sets of material increases with theaddition of filler. On the other hand, the ductility for both sets of the material increases with theaddition of filler. The microscopic morphology study indicates that CF/PP possesses a glossysurface appearance compared to CF/PVC, which possesses a porous surface. Micro-scale damagecharacteristics from tensile tests indicate that material experienced shear failure, matrix cracking,fiber breakage, fiber fracture, and fiber pullout. The phenomenon of matrix crazing experienced byCF/PP composites was also observed.
本文研究了在准静态载荷下,填料含量对棉纤维(CF)/聚丙烯(PP)和CF/聚氯乙烯(PVC)复合材料中CF力学性能的影响。为此,对从不同纤维重量含量的热压和冷压成型方板上切割下来的狗骨形试样进行了拉伸试验。所得结果表明,填料含量似乎对机械能吸收和失效特性有很大影响。还发现,两组材料的刚度均随填料添加量的增加而增大。另一方面,两组材料的延展性均随填料添加量的增加而增大。微观形态学研究表明,与具有多孔表面的CF/PVC相比,CF/PP具有光滑的表面外观。拉伸试验的微观损伤特征表明,材料经历了剪切失效、基体开裂、纤维断裂、纤维折断和纤维拔出。还观察到CF/PP复合材料出现基体 crazing 现象。