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Oil palm microfiber-reinforced handsheet-molded thermoplastic green composites for sustainable packaging applications

机译:用于可持续包装应用的油棕超细纤维增强牙齿模制的热塑性绿色复合材料

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摘要

The forestry and agricultural market have been perceiving outstanding growth due to the advantages of green composites, such as cost effective in nature, environment friendly, excellent mechanical properties, and so on. Various researchers had studied the reinforcement efficiency of various natural fibers in the diverse polymer matrices. Herein, we reported the characterization of microfiber handsheet-molded thermoplastic green composites developed from the combination of oil palm empty fruit bunch (OPEFB)-based microfiber pulp as filler and polyester PP based as matrix. Refined alkaline extracted OPEFB pulp fiber was mixed at different layered composition of the composite of grafted polypropylene. The physical properties and mechanical properties were conducted according to the ASTM standard and showed substantial improvement of the handsheet-molded composite. The scanning electron microgram showed that, as the addition of OPEFB fiber loading increased, there was improved interfacial bonding except for 50% fiber loading which experience fiber pullout. The result also showed improved thermal stability compared with the neat composite. This study will be an effective platform to develop the packaging materials using polymer handsheet composite.
机译:由于绿色复合材料的优势,林业和农业市场一直感受到出色的增长,如性质,环境友好,优良的机械性能等成本效益。各种研究人员研究了各种聚合物基质中各种天然纤维的增强效率。在此,我们报道了从油棕空果束(OPEFB)的微纤维浆组合为填料的微纤维手抄料模塑热塑性绿色复合材料的表征,作为基质的填充剂和聚酯PP。将精制碱性提取的OPEFB纸浆纤维混合在接枝聚丙烯的复合物的不同层组合物中。根据ASTM标准进行物理性质和机械性能,并显示出握手模塑复合材料的显着改善。扫描电子微图示出,随着OPEFB纤维负载的增加,除了50%纤维负载外,还存在改善的界面键合,这些纤维负载是纤维拉伸的。与整齐复合材料相比,该结果还显示出改善的热稳定性。本研究将使用聚合物手抄本开发包装材料的有效平台。

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