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Reprocessing of wood flour reinforced polypropylene composites: Impact of particle size and coupling agent on composite and particle properties

机译:木粉增强聚丙烯复合材料的后处理:粒度和偶联剂对复合材料和颗粒性能的影响

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摘要

This work aims to understand the degradation induced by multiple injection molding cycles on numerous properties of wood flour reinforced polypropylene (PP) composites. The influence of the initial wood particle size was studied as well as the influence of the addition of polypropylene grafted with maleic anhydride (PPgma) as a coupling agent at a given rate. Biocomposite compounds (20wt% of wood flour) are produced by twin-screw extrusion. Then, multiple injection and grinding cycles were performed (up to 7 cycles) to obtain normalized samples. The evolution of the wood flour particle characteristics is first assessed by SEM observation, size measurements and nanoindentation experiments. Then, the evolution of the PP matrix microstructure is determined by SEC tests (average molecular weight measurements), rheometer tests and DSC (polymer crystallinity). Finally, material mechanical properties are measured at a macro-scale thanks to tensile tests. Our experimental results show that the composite mechanical properties remain quite stable after 7 processing cycles despite wood flour degradation and PP degradation.
机译:这项工作旨在了解由多次注塑成型循环导致的木粉增强聚丙烯(PP)复合材料多种性能的降解。研究了初始木材粒度的影响以及以给定的比例添加接枝了马来酸酐(PPgma)作为偶联剂的聚丙烯的影响。生物复合化合物(木粉的20wt%)是通过双螺杆挤出生产的。然后,执行多次注射和研磨循环(最多7个循环)以获得标准化样品。首先通过SEM观察,尺寸测量和纳米压痕实验评估木粉颗粒特性的演变。然后,通过SEC测试(平均分子量测量),流变仪测试和DSC(聚合物结晶度)确定PP基体微观结构的演变。最后,借助拉伸试验,可以宏观地测量材料的机械性能。我们的实验结果表明,尽管木粉降解和PP降解,复合材料的机械性能在7个加工循环后仍保持稳定。

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