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Thermoplastic Processing of PLA/Cellulose Nanomaterials Composites

机译:PLA /纤维素纳米材料复合材料的热塑性加工

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摘要

Over the past decades, research has escalated on the use of polylactic acid (PLA) as a replacement for petroleum-based polymers. This is due to its valuable properties, such as renewability, biodegradability, biocompatibility and good thermomechanical properties. Despite possessing good mechanical properties comparable to conventional petroleum-based polymers, PLA suffers from some shortcomings such as low thermal resistance, heat distortion temperature and rate of crystallization, thus different fillers have been used to overcome these limitations. In the framework of environmentally friendly processes and products, there has been growing interest on the use of cellulose nanomaterials viz. cellulose nanocrystals (CNC) and nanofibers (CNF) as natural fillers for PLA towards advanced applications other than short-term packaging and biomedical. Cellulosic nanomaterials are renewable in nature, biodegradable, eco-friendly and they possess high strength and stiffness. In the case of eco-friendly processes, various conventional processing techniques, such as melt extrusion, melt-spinning, and compression molding, have been used to produce PLA composites. This review addresses the critical factors in the manufacturing of PLA-cellulosic nanomaterials by using conventional techniques and recent advances needed to promote and improve the dispersion of the cellulosic nanomaterials. Different aspects, including morphology, mechanical behavior and thermal properties, as well as comparisons of CNC- and CNF-reinforced PLA, are also discussed.
机译:在过去几十年中,研究升级了使用聚乳酸(PLA)作为石油基聚合物的替代品。这是由于其有价值的特性,如可再生,可降解性,生物相容性和良好的热性能。尽管具有与常规石油基聚合物相当的良好的机械性能,但PLA具有一些缺点,例如低热电阻,热变形温度和结晶速率,因此已经使用不同的填料来克服这些限制。在环保流程和产品的框架中,对使用纤维素纳米材料QIZ的兴趣日益增长。纳米微晶纤维素(CNC)和纳米纤维(CNF)作为实现不是短期的包装和生物医药等先进应用天然填料的PLA。纤维素纳米材料在性质中可再生,可生物降解,环保,它们具有高强度和刚度。在环保过程的情况下,已经使用各种常规的处理技术,例如熔融挤出,熔融纺丝和压缩成型来生产PLA复合材料。本次综述通过使用常规技术和近期前进所需的促进和改善纤维素纳米材料的分散所需的近期进步来解决PLA纤维素纳米材料中的关键因素。不同方面,包括形态,机械性能和热性能,以及CNC-和CNF增强PLA的比较,进行了讨论。

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