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Mechanical and Thermal Properties of Polypropylene Composites Reinforced with Lignocellulose Nanofibers Dried in Melted Ethylene-Butene Copolymer

机译:熔融乙烯-丁烯共聚物中干燥的木质纤维素纳米纤维增强聚丙烯复合材料的力学和热性能

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Lignocellulose nanofibers were prepared by the wet disk milling of wood flour. First, an ethylene-butene copolymer was pre-compounded with wood flour or lignocellulose nanofibers to prepare master batches. This process involved evaporating the water of the lignocellulose nanofiber suspension during compounding with ethylene-butene copolymer by heating at 105 °C. These master batches were compounded again with polypropylene to obtain the final composites. Since ethylene-butene copolymer is an elastomer, its addition increased the impact strength of polypropylene but decreased the stiffness. In contrast, the wood flour- and lignocellulose nanofiber-reinforced composites showed significantly higher flexural moduli and slightly higher flexural yield stresses than did the ethylene-butene/polypropylene blends. Further, the wood flour composites exhibited brittle fractures during tensile tests and had lower impact strengths than those of the ethylene-butene/polypropylene blends. On the other hand, the addition of the lignocellulose nanofibers did not decrease the impact strength of the ethylene-butene/polypropylene blends. Finally, the addition of wood flour and the lignocellulose nanofibers increased the crystallization temperature and crystallization rate of polypropylene. The increases were more remarkable in the case of the lignocellulose nanofibers than for wood flour.
机译:木质纤维素纳米纤维是通过木粉的湿式盘磨制备的。首先,将乙烯-丁烯共聚物与木粉或木质纤维素纳米纤维预混以制备母料。该过程涉及在与乙烯-丁烯共聚物混合期间,通过在105℃下加热而蒸发木质纤维素纳米纤维悬浮液的水。将这些母料再次与聚丙烯混合,以获得最终的复合材料。由于乙烯-丁烯共聚物是弹性体,因此添加它可以提高聚丙烯的冲击强度,但会降低刚度。相反,木粉和木质纤维素纳米纤维增强的复合材料比乙烯-丁烯/聚丙烯共混物显示出明显更高的挠曲模量和稍高的挠曲屈服应力。此外,木粉复合材料在拉伸试验中表现出脆性断裂,并且具有比乙烯-丁烯/聚丙烯共混物更低的冲击强度。另一方面,添加木质纤维素纳米纤维不会降低乙烯-丁烯/聚丙烯共混物的冲击强度。最后,木粉和木质纤维素纳米纤维的加入提高了聚丙烯的结晶温度和结晶速率。与木质粉相比,木质纤维素纳米纤维的增加更为显着。

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