Alshammari Basheer A, Saba Naheed, Alotaibi Majed D, Alotibi Mohammed F, Jawaid Mohammad, Alothman Othman Y
Materials Science Institute, King Abdulaziz City for Science and Technology (KACST), Riyadh 11442, Saudi Arabia.
Department of Bio Composite Technology, Institute of Tropical Forestry and Forest Products, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia.
Materials (Basel). 2019 Jul 3;12(13):2145. doi: 10.3390/ma12132145.
The present study deals with the fabrication of epoxy composites reinforced with 50 wt% of date palm leaf sheath (G), palm tree trunk (L), fruit bunch stalk (AA), and leaf stalk (A) as filler by the hand lay-up technique. The developed composites were characterized and compared in terms of mechanical, physical and morphological properties. Mechanical tests revealed that the addition of AA improves tensile (20.60-40.12 MPa), impact strength (45.71-99.45 J/m), flexural strength (32.11-110.16 MPa) and density (1.13-1.90 g/cm). The water absorption and thickness swelling values observed in this study were higher for AA/epoxy composite, revealing its higher cellulosic content, compared to the other composite materials. The examination of fiber pull-out, matrix cracks, and fiber dislocations in the microstructure and fractured surface morphology of the developed materials confirmed the trends for mechanical properties. Overall, from results analysis it can be concluded that reinforcing epoxy matrix with AA filler effectively improves the properties of the developed composite materials. Thus, date palm fruit bunch stalk filler might be considered as a sustainable and green promising reinforcing material similarly to other natural fibers and can be used for diverse commercial, structural, and nonstructural applications requiring high mechanical resistance.
本研究通过手糊工艺制备了以50 wt%的枣椰叶鞘(G)、棕榈树干(L)、果串茎(AA)和叶柄(A)作为填料增强的环氧复合材料。对所制备的复合材料的力学、物理和形态性能进行了表征和比较。力学测试表明,添加AA可提高拉伸强度(20.60 - 40.12 MPa)、冲击强度(45.71 - 99.45 J/m)、弯曲强度(32.11 - 110.16 MPa)和密度(1.13 - 1.90 g/cm)。本研究中观察到,与其他复合材料相比,AA/环氧复合材料的吸水率和厚度膨胀值更高,这表明其纤维素含量更高。对所制备材料的微观结构和断裂表面形态中的纤维拔出、基体裂纹和纤维位错进行检查,证实了力学性能的趋势。总体而言,通过结果分析可以得出结论,用AA填料增强环氧基体可有效改善所制备复合材料的性能。因此,枣椰果串茎填料与其他天然纤维一样,可被视为一种可持续且有前景的绿色增强材料,可用于需要高机械抗性的各种商业、结构和非结构应用。