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Impact Strength and Flexural Properties Enhancement of Methacrylate Silane Treated Oil Palm Mesocarp Fiber Reinforced Biodegradable Hybrid Composites

机译:甲基丙烯酸硅烷处理的油棕中果皮纤维增强可生物降解杂化复合材料的冲击强度和弯曲性能的增强

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摘要

Natural fiber as reinforcement filler in polymer composites is an attractive approach due to being fully biodegradable and cheap. However, incompatibility between hydrophilic natural fiber and hydrophobic polymer matrix restricts the application. The current studies focus on the effects of incorporation of silane treated OPMF into polylactic acid (PLA)/polycaprolactone (PCL)anoclay/OPMF hybrid composites. The composites were prepared by melt blending technique and characterize the composites with Fourier transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), and scanning electron microscopy (SEM). FTIR spectra indicated that peak shifting occurs when silane treated OPMF was incorporated into hybrid composites. Based on mechanical properties results, incorporation of silane treated OPMF enhances the mechanical properties of unmodified OPMF hybrid composites with the enhancement of flexural and impact strength being 17.60% and 48.43%, respectively, at 10% fiber loading. TGA thermogram shows that incorporation of silane treated OPMF did not show increment in thermal properties of hybrid composites. SEM micrographs revealed that silane treated OPMF hybrid composites show good fiber/matrix adhesion as fiber is still embedded in the matrix and no cavity is present on the surface. Water absorption test shows that addition of less hydrophilic silane treated OPMF successfully reduces the water uptake of hybrid composites.
机译:天然纤维作为聚合物复合材料中的增强填料是一种有吸引力的方法,因为它可以完全生物降解且价格便宜。然而,亲水性天然纤维和疏水性聚合物基质之间的不相容性限制了该应用。目前的研究集中于将硅烷处理过的OPMF掺入聚乳酸(PLA)/聚己内酯(PCL)/纳米粘土/ OPMF杂化复合材料中的效果。通过熔融共混技术制备复合材料,并通过傅里叶变换红外光谱(FTIR),热重分析(TGA)和扫描电子显微镜(SEM)对复合材料进行表征。 FTIR光谱表明,将硅烷处理的OPMF掺入杂化复合材料时会发生峰移动。根据机械性能结果,掺入硅烷处理的OPMF可提高未改性OPMF杂化复合材料的机械性能,在10%的纤维负载下,弯曲强度和冲击强度分别提高17.60%和48.43%。 TGA热分析图表明,硅烷处理的OPMF的掺入没有显示出杂化复合材料的热性能的增加。 SEM显微照片显示,硅烷处理的OPMF杂化复合材料显示出良好的纤维/基质粘合性,因为纤维仍嵌入基质中,并且表面上没有空腔。吸水率测试表明,添加较少亲水性硅烷处理的OPMF可成功降低杂化复合材料的吸水率。

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