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Pretreatment of Microfibrillated Cellulose on Polylactide Composites

机译:对聚丙烯复合材料上的微纤化纤维素的预处理

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摘要

Microfibrillated cellulose (MFC) in polymer has attracted increasing applications with the fully bioderived nanocomposites. Polymer composites from polylactide (PLA) and MFC were prepared using two different fiber preparations. Freezedried MFC was prepared and directly mixed with PLA in an internal mixer. The MFC premixed with PLA in an organic solvent was prepared, followed by an internal mixer for another composite. In addition, grafting cellulose on PLA using a compatibilizer was performed. In this research, composites containing 10 wt% MFC were used to investigate the influence of processing and compatibilizer on the mechanical and thermal properties. The processing procedure had a great influence on the mechanical and physical properties. The tensile strength was increased with filler loading and showed different values depending on the premixing step prior to processing. The storage modulus and loss tangent confirmed that the compatibilizer acted as the role of a bridge between filler and matrix, enhancing the mechanical properties. This experiment was conducted to compare the effect of pretreatment on the change of mechanical and thermal properties by using freeze-dried cellulose and cellulose suspension substituted with an organic solvent.
机译:聚合物中的微纤化纤维素(MFC)吸引了具有完全生物化的纳米复合材料的增加的应用。使用两种不同的纤维制剂制备来自聚丙环(PLA)和MFC的聚合物复合材料。制备FreezedRied MFC并在内部混合器中直接与PLA混合。制备在有机溶剂中预混合PLA的MFC,然后用于另一个复合材料的内部混合器。此外,进行使用增容剂的PLA接枝纤维素。在该研究中,使用含有10wt%MFC的复合材料来研究加工和增容剂对机械和热性能的影响。加工程序对机械和物理性质有很大影响。填料加载增加拉伸强度,并根据加工之前的预混合步骤显示不同的值。储存模量和损耗切线证实,增容剂作为填料与基质之间的桥梁的作用,增强了机械性能。进行该实验以比较通过使用用溶剂取代的冷冻干燥的纤维素和纤维素悬浮液来比较预处理对机械和热性能变化的影响。

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