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Utilization of Waste Bamboo Fibers in Thermoplastic Composites: Influence of the Chemical Composition and Thermal Decomposition Behavior

机译:废竹纤维在热塑性复合材料中的利用:化学成分和热分解行为的影响

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摘要

In this study, four types of waste bamboo fibers (BFs), Makino bamboo ( ), Moso bamboo ( ), Ma bamboo ( ), and Thorny bamboo ( ), were used as reinforcements and incorporated into polypropylene (PP) to manufacture bamboo–PP composites (BPCs). To investigate the effects of the fibers from these bamboo species on the properties of the BPCs, their chemical compositions were evaluated, and their thermal decomposition kinetics were analyzed by the Flynn–Wall–Ozawa (FWO) method and the Criado method. Thermogravimetric results indicated that the Makino BF was the most thermally stable since it showed the highest activation energy at various conversion rates that were calculated by the FWO method. Furthermore, using the Criado method, the thermal decomposition mechanisms of the BFs were revealed by diffusion when the conversion rates (α) were below 0.5. When the α values were above 0.5, their decomposition mechanisms trended to the random nucleation mechanism. Additionally, the results showed that the BPC with Thorny BFs exhibited the highest moisture content and water absorption rate due to this BF having high hemicellulose content, while the BPC with Makino BFs had high crystallinity and high lignin content, which gave the resulting BPC better tensile properties.
机译:在这项研究中,四种废竹纤维(BFs),牧野竹(),毛竹(),麻竹()和棘手竹()被用作增强材料,并掺入聚丙烯(PP)中来制造竹子– PP复合材料(BPC)。为了研究这些竹种类的纤维对BPCs性能的影响,评估了它们的化学成分,并通过Flynn-Wall-Ozawa(FWO)方法和Criado方法分析了它们的热分解动力学。热重分析结果表明,Makino BF具有最高的热稳定性,因为它在通过FWO方法计算的各种转化率下均显示出最高的活化能。此外,使用Criado方法,当转化率(α)低于0.5时,通过扩散揭示了高炉的热分解机理。当α值大于0.5时,它们的分解机理趋向于随机成核机理。另外,结果表明,由于Thorny BFs的半纤维素含量高,因此含Thorny BFs的BPC具有最高的水分含量和吸水率,而Makino BFs的BPC具有高结晶度和木质素含量,这使得所得的BPC具有更好的拉伸强度属性。

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