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Fabrication process optimization of hemp fibre-reinforced polypropylene composites

机译:大麻纤维增强聚丙烯复合材料的制备工艺优化

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摘要

Natural fibre-reinforced composites have attracted great research and economic interests because of their outstanding'green' characteristics compared with glass fibre-reinforced composites. It is very important to understand the processing effect on the natural fibre-reinforced composites mechanical properties because of the natural fibre degradation characteristics. Optimizing the fabrication process, especially the compounding process, is effective to achieve the optimal properties of the composites. In this research a natural fibre, noil hemp fibre, was applied to reinforce polypropylene with internal mixing process. The influence of compounding parameters, such as mixing temperature, mixing time and rotor speed, on the mechanical properties (tensile strength, flexural strength and impact strength) of the noil hemp fibre/polypropylene composites was investigated using orthogonal method and the evidence of thermogravimetricanalysis test of fibre and the observation of fibre dispersion in resin. The range analysis and variance of analysis demonstrated that the mixing temperature has significant effect on the three mechanical properties, mixing time has minor influence on the tensile and flexural strengths, and rotor speed mainly affects the impact strength. The thermogravimetric analysis test of noil hemp fibre and the fibre dispersion in resin show that a combination of low mixing temperature, short mixing time and high rotor speed of compounding process is helpful to achieve certain fibre dispersion without serious thermal degradation of fibre. Noil hemp fibre/polypropylene composites with the best comprehensive mechanical properties could be obtained at 165 degree C for 12 min with rotor speed 50 r/min.
机译:天然纤维增强复合材料与玻璃纤维增​​强复合材料相比具有突出的“绿色”特性,因此引起了广泛的研究和经济兴趣。由于天然纤维的降解特性,了解加工过程对天然纤维增强复合材料机械性能的影响非常重要。优化制造工艺,尤其是复合工艺,可以有效地实现复合材料的最佳性能。在这项研究中,采用天然纤维,即麻纤维,通过内部混合工艺来增强聚丙烯。采用正交方法研究了混合温度,混合时间和转子转速等混合参数对罗麻纤维/聚丙烯复合材料力学性能(拉伸强度,弯曲强度和冲击强度)的影响,并进行了热重分析试验。纤维的特性以及纤维在树脂中的分散性观察。范围分析和方差分析表明,混合温度对三种力学性能有显着影响,混合时间对拉伸和弯曲强度影响较小,而转子速度主要影响冲击强度。棉麻纤维的热重分析试验和纤维在树脂中的分散性表明,低混合温度,短混合时间和高混纺过程中的转子转速相结合,有助于实现一定的纤维分散性而不会引起纤维的严重热降解。具有最佳综合机械性能的Noil大麻纤维/聚丙烯复合材料可以在165摄氏度,转子转速50 r / min的条件下保持12分钟。

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