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Thermal properties and spectral characterization of wood pulp reinforced bio-composite fibers

机译:木浆增强生物复合纤维的热性能和光谱表征

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摘要

Bio-composite fibers were developed from wood pulp and polypropylene (PP) by an extrusion process. The thermo-physical and mechanical properties of wood pulp-PP composite fibers, neat PP and wood pulp were studied using thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), and dynamic mechanical analysis (DMA). The thermal stability of bio-composite fibers was found to be significantly higher than pure wood pulp. An understanding into the melting behaviour of the composite system was obtained which would assist in selecting a suitable temperature profile for the extruder during processing. The visco-elastic properties of bio-composite fibers were also revealed from the study. The generated bio-composite fibers were also characterized using Fourier transform infrared spectroscopy (FTIR) to understand the nature of chemical 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. Changes in absorption peaks were observed in FTIR spectra of bio-composite fibers as compared to the pure wood pulp which indicated possible chemical linkages between the fiber and polymer matrix.
机译:生物复合纤维是由木浆和聚丙烯(PP)通过挤压工艺制成的。使用热重分析(TGA),差示扫描量热法(DSC)和动态力学分析(DMA)研究了木浆-PP复合纤维,纯PP和木浆的热物理性质。发现生物复合纤维的热稳定性明显高于纯木浆。了解了复合系统的熔融行为,这将有助于在加工过程中为挤出机选择合适的温度曲线。该研究还揭示了生物复合纤维的粘弹性。还使用傅里叶变换红外光谱(FTIR)对生成的生物复合纤维进行了表征,以了解木浆增强材料和PP基质之间化学相互作用的性质。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。与纯木浆相比,在生物复合纤维的FTIR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。

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