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An Investigation on the Comprehensive Property Assessment and Future Directions of Single Bamboo Fiber Reinforced Polypropylene Composites Fabricated by a Non-Woven Paving and Advanced Molding Process

机译:无纺铺装和高级成型工艺制备的单竹纤维增强聚丙烯复合材料的综合性能评估及未来方向的研究

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摘要

The demand for eco-friendly renewable natural fibers has grown in recent years. In this study, a series of polypropylene-based composites reinforced with single bamboo fibers (SBFs), prepared by non-woven paving and a hot-pressing process, were investigated. The influence of the content of SBF on impact strength, flexural strength, and water resistance was analyzed. The properties of the composites were greatly affected by the SBF content. Impact strength increased as SBF content increased. The modulus of rupture and modulus of elasticity show an optimum value, with SBF contents of 40% and 50%, respectively. The surface morphology of the fractured surfaces of the composites was characterized by scanning electron microscopy. The composites showed poor interfacial compatibility. The water resistance indicates that the composites with higher SBF contents have higher values of water absorption and thickness swelling, due to the hydrophilicity of the bamboo fibers. The thermal properties of the composites were characterized by thermal gravimetric analysis and by differential scanning calorimetry. The thermal stability of the composites was gradually reduced, due to the poor thermal stability of SBFs. In the composites, the maximum decomposition temperature corresponding to SBF shows an increasing trend. However, the maximum decomposition temperature of polypropylene was not influenced by SBF content. The melting point of the polypropylene in the composites was lower relative to pure polypropylene, although it was not affected by increasing SBF content.
机译:近年来,对环保型可再生天然纤维的需求不断增长。在这项研究中,研究了一系列由单层竹纤维(SBFs)增强的聚丙烯基复合材料,这些材料是通过无纺布铺装和热压工艺制备的。分析了SBF含量对冲击强度,抗弯强度和耐水性的影响。 SBF含量极大地影响了复合材料的性能。冲击强度随SBF含量的增加而增加。断裂模量和弹性模量显示最佳值,SBF含量分别为40%和50%。通过扫描电子显微镜表征复合材料的断裂表面的表面形态。该复合材料显示出差的界面相容性。耐水性表明,由于竹纤维的亲水性,具有较高SBF含量的复合材料具有较高的吸水率和厚度溶胀值。通过热重分析和差示扫描量热法表征复合材料的热性能。由于SBF的热稳定性差,复合材料的热稳定性逐渐降低。在复合材料中,对应于SBF的最高分解温度呈上升趋势。但是,聚丙烯的最高分解温度不受SBF含量的影响。尽管不受SBF含量增加的影响,但复合材料中聚丙烯的熔点相对于纯聚丙烯而言较低。

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