Department of Mechanical Design and Production, Faculty of Engineering, Cairo University, Giza 12613, Egypt.
Carbohydr Polym. 2014 Jan 30;101:11-9. doi: 10.1016/j.carbpol.2013.08.051. Epub 2013 Aug 28.
The aim of this work is to study the behavior of completely biodegradable starch-based composites containing date palm fibers in the range from 20 to 80 wt%. Hybrid composites containing date palm and flax fibers, 25 wt% each, were also examined. The composites were preheated and then hot pressed at 5 MPa and 160°C for 30 min. SEM investigation showed strong adhesion between fibers and matrix. Density measurements showed very small void fraction (less than 0.142%) for composites containing up to 50 wt% fiber content. Increasing fiber weight fraction up to 50 wt% increased the composite static tensile and flexural mechanical properties (stiffness and strength). Composite thermal stability, water uptake and biodegradation improved with increasing fiber content. The present work shows that starch-based composites with 50 wt% fibers content have the optimum mechanical properties. The hybrid composite of flax and date palm fibers, 25 wt% each, has good properties and provides a competitive eco-friendly candidate for various applications.
本工作旨在研究完全可生物降解的淀粉基复合材料在 20 至 80wt%范围内含有的椰枣纤维的行为。还研究了含有 25wt%椰枣和亚麻纤维的混合复合材料。将复合材料预热,然后在 5MPa 和 160°C 下热压 30 分钟。SEM 研究表明纤维和基体之间具有很强的附着力。密度测量表明,纤维含量高达 50wt%的复合材料的空隙率非常小(小于 0.142%)。将纤维重量分数增加到 50wt%,提高了复合材料的静态拉伸和弯曲力学性能(刚性和强度)。复合材料的热稳定性、吸水性和生物降解性随着纤维含量的增加而提高。本工作表明,含有 50wt%纤维含量的淀粉基复合材料具有最佳的机械性能。25wt%的椰枣纤维和亚麻纤维的混合复合材料具有良好的性能,为各种应用提供了一种具有竞争力的环保候选材料。