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Utilisation of Waste Plantain (Musa Paradisiaca) Peels and Waste Polystyrene in the Development of Reinforced Polymer Composites

机译:废植物(Musa Paradisiaca)剥离和废聚苯乙烯在增强聚合物复合材料的开发中的利用

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摘要

Plantain (Musa paradisiaca) is a widely cultivated plant in Nigeria which generates lots of residues (such as its peels) during its consumption. This study investigated the tensile, microstructural and moisture absorption properties of plantain peel reinforced polystyrene composites. The filler composition was varied between 0 wt% and 40 wt% and all analyses were done as per ASTM standards. The force at break and Young's modulus increased with increasing filler content and had maximum values of 405 N and 380 MPa respectively. The elongation at break point of plantain peel powder reinforced bio-composite reduced with increase in filler content, indicating that the biomass fillers led to a reduction in the deformability of the composites due to a poor transfer of stress at the weak fiber-plastic interphase. It was furthermore observed that composites with higher filler content were more susceptible to moisture diffusivity due to the hydrophilic nature of the filler powder. Microstructural analysis revealed that a more uniform distribution of the plantain fiber occurs at 40% fiber content compared to those of higher filler content.
机译:Plantain(Musa Paradisiaca)是尼日利亚的广泛栽培植物,在其消耗期间产生大量的残留物(如果皮)。本研究研究了植物剥离增强聚苯乙烯复合材料的拉伸,微观结构和吸湿性能。填料组合物在0wt%和40wt%之间变化,并根据ASTM标准进行所有分析。断裂和杨氏模量的力随着填料含量的增加而增加,并且分别具有405 n和380mPa的最大值。植物剥离粉末的断裂点的伸长率加强生物复合材料随着填料含量的增加而降低,表明生物质填料导致复合材料的可变形性的降低,由于弱纤维塑料间相互作用不良。此外观察到,由于填料粉末的亲水性质,具有较高填充物含量的复合材料更容易受水分扩散性。微观结构分析显示,与较高填料含量相比,植物纤维的更均匀分布在40%的纤维含量下发生。

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