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Preparation and characterization of oil palm fiber reinforced poly(e-caprolactone)/poly(lactic acid) composites

机译:油棕纤维增强聚己内酯/聚乳酸复合材料的制备与表征

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摘要

Palm press fibers of Tenera and Dura palm oil species of Malaysia and Nigeria respectively were used to prepare poly(e-caprolactone)/poly(lactic acid) blend composites. All the blends and composites were produced using the twin screw extruder and the test specimens were fabricated using the injection molding machine. The morphology, mechanical, thermal, water absorption and biodegradation properties of the composites were studied. Fourier Transforms Infrared (FTIR) revealed that the hemicelluloses were completely removed after alkali fiber treatment. Field Emission Scanning Electron Microscope (FESEM) showed the improvement of fiber/matrix adhesion and the confirmation of compatibilization in the blend and composites. X-ray Diffraction (XRD) confirmed the increase in crystallinity of the fibers after alkali treatment. Compatibilization and fiber reinforcement significantly enhanced the mechanical and thermal properties, biodegradation and char yield of the composites. The Tenera composites exhibited higher mechanical properties than the Dura composites, while the Dura composites were thermally more stable than the Tenera composites. The Dura fibers also increased the percentage crystallinity of the composites more than the Tenera fibers. Compatibilization and fiber reinforcement increased the rate of biodegradation of the blend and composites. There was no significant difference in the biodegradation rate between the Tenera and Dura composites. The optimum properties were obtained for Tenera and Dura composites at 15 wt. % fiber loading. In view of the above, the composite was adjudged as the best formulation for both fiber reinforcements.
机译:分别使用马来西亚和尼日利亚的Tenera和Dura棕榈油种类的棕榈压榨纤维制备聚(ε-己内酯)/聚(乳酸)共混物。所有的共混物和复合材料均使用双螺杆挤出机生产,而测试样品则使用注塑机生产。研究了复合材料的形貌,力学,热学,吸水率和生物降解性能。傅立叶变换红外光谱(FTIR)显示,半纤维素在碱纤维处理后已完全去除。场发射扫描电子显微镜(FESEM)显示了纤维/基质粘合性的改善,并证实了共混物和复合物中的相容性。 X射线衍射(XRD)证实了碱处理后纤维的结晶度增加。相容性和纤维增强显着提高了复合材料的机械和热性能,生物降解性和炭收率。 Tenera复合材料比Dura复合材料显示出更高的机械性能,而Dura复合材料比Tenera复合材料在热稳定性方面更高。与Tenera纤维相比,Dura纤维还增加了复合材料的结晶度百分比。相容性和纤维增强提高了共混物和复合材料的生物降解速度。 Tenera和Dura复合材料之间的生物降解率没有显着差异。 Tenera和Dura复合材料在15 wt。纤维负载百分比。鉴于上述情况,将复合材料确定为两种纤维增强材料的最佳配方。

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    Ibrahim Akos Noel;

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  • 年度 2013
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