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首页> 外文期刊>Journal of Materials Science >Development and morphological characterization of wood pulp reinforced biocomposite fibers
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Development and morphological characterization of wood pulp reinforced biocomposite fibers

机译:木浆增强生物复合纤维的发展及其形态表征

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摘要

Biocomposite fiber has been developed from wood pulp and polypropylene (PP) by an extrusion process and the generated biocomposite fibers were characterized to understand the nature of interaction between wood pulp reinforcement and PP matrix. The use of maleated polypropylene (MAPP) as a compatibilizer was investigated in relation to the fiber microstructure. Fiber length analysis showed that most of the fiber lengths lie within the range of 0.2-1.0 mm. Changes in absorption peaks were observed in Fourier transform infrared spectroscopy of biocomposite fibers as compared to the virgin wood pulp, which indicated possible chemical linkages between the fiber and polymer matrix. SEM study was carried out to observe fiber-matrix adhesion at the interface within the composite and MAPP treatment was found to be effective in increasing reinforcing fibers-matrix compatibility. X-ray computed tomography was conducted to understand the internal architecture of the biocomposite fiber and the results showed that with incorporation of additional wood pulp content, the fiber becomes more aligned along length axis possibly due to compression and die geometry of the extruder.
机译:生物复合纤维是通过挤压工艺从木浆和聚丙烯(PP)中开发出来的,其生成的生物复合纤维的特征在于了解木浆增强材料和PP基质之间相互作用的性质。研究了马来酸化聚丙烯(MAPP)作为增容剂与纤维微结构的关系。纤维长度分析表明,大多数纤维长度在0.2-1.0mm的范围内。与原始木浆相比,在生物复合纤维的傅立叶变换红外光谱中观察到吸收峰的变化,这表明纤维与聚合物基质之间可能存在化学键。进行SEM研究以观察复合材料内界面处的纤维-基质粘附,并且发现MAPP处理可有效地增强增强纤维-基质的相容性。进行了X射线计算机断层扫描,以了解生物复合纤维的内部结构,结果表明,掺入额外的木浆含量,纤维可能会沿长度轴更加对齐,这可能是由于挤出机的压缩和模头几何形状所致。

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