Shahinur Sweety, Hasan Mahbub, Ahsan Qumrul, Sultana Nayer, Ahmed Zakaria, Haider Julfikar
Department of Testing and Standardization, Bangladesh Jute Research Institute, Manik Mia Avenue, Dhaka 1207, Bangladesh.
Department of Materials and Metallurgical Engineering, Bangladesh University of Engineering and Technology, Dhaka 1000, Bangladesh.
Polymers (Basel). 2021 Aug 1;13(15):2571. doi: 10.3390/polym13152571.
Natural renewable materials can play a big role in reducing the consumption of synthetic materials for environmental sustainability. Natural fiber-reinforced composites have attracted significant research and commercial importance due to their versatile characteristics and multi-dimensional applications. As the natural materials are easily rotten, flammable, and moisture absorbent, they require additional chemical modification for use in sustainable product development. In the present research, jute fibers were treated with rot-, fire-, and water-retardant chemicals and their corresponding polymer composites were fabricated using a compression molding technique. To identify the effects of the chemical treatments on the jute fiber and their polymeric composites, a Fourier transformed infrared radiation (FTIR) study was conducted and the results were analyzed. The presence of various chemicals in the post-treated fibers and the associated composites were identified through the FTIR analysis. The varying weight percentage of the chemicals used for treating the fibers affected the physio-mechanical properties of the fiber as well as their composites. From the FTIR analysis, it was concluded that crystallinity increased with the chemical concentration of the treatment which could be contributed to the improvement in their mechanical performance. This study provides valuable information for both academia and industry on the effect of various chemical treatments of the jute fiber for improved product development.
天然可再生材料在减少合成材料消耗以实现环境可持续性方面可以发挥重要作用。天然纤维增强复合材料因其多功能特性和多维度应用而吸引了大量研究关注并具有重要商业价值。由于天然材料容易腐烂、易燃且吸湿,在可持续产品开发中使用时需要进行额外的化学改性。在本研究中,用防腐烂、防火和防水的化学物质处理黄麻纤维,并使用压缩成型技术制备其相应的聚合物复合材料。为了确定化学处理对黄麻纤维及其聚合物复合材料的影响,进行了傅里叶变换红外辐射(FTIR)研究并分析了结果。通过FTIR分析确定了后处理纤维及其相关复合材料中各种化学物质的存在。用于处理纤维的化学物质的不同重量百分比影响了纤维及其复合材料的物理力学性能。从FTIR分析得出结论,结晶度随着处理的化学浓度增加而提高,这可能有助于其机械性能的改善。本研究为学术界和工业界提供了关于黄麻纤维各种化学处理对改进产品开发的影响的有价值信息。