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Composite materials based on low-density polyethylene loaded with date pits: Mechanical and thermal characterizations

机译:基于低密度聚乙烯的复合材料加载日期凹坑:机械和热特性

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This work is devoted to investigate the available agricultural Tunisian waste: the date pits as reinforcing filler for thermoplastic matrix. The chemical composition of this reinforcing filler is found to be comparable to nonwood plants: its content comprises of 13% of extractibles, 22% of lignin, and 61% of holocellulose. Then, the lignocellulosic filler was used to prepare different composites films using Brabender mixing device. A series of composite film was established by different loadings of the date pits waste with 10-50% of the filler in 10% as an interval. The ensuing composites materials were then characterized by several techniques such as the morphology of the composites, which was investigated using scanning electron microscopy. The thermal properties of prepared materials were studied using differential scanning calorimetry and thermogravimetric analysis. Finally, the mechanical and water absorption properties were involved. The obtained results indicated that date pits-based particles enhanced the thermomechanical properties of the thermoplastic matrix and demonstrated that this available lignocellulosic biomass can be considered to be a promising filler material.
机译:这项工作致力于调查可用的农业突尼斯废物:热塑性基质的增强填料的日期凹坑。发现该增强填料的化学成分与非木材植物相当:其含量包含13%的提取物,22%的木质素和61%的全纤维素。然后,使用木质纤维素填料使用Brabender混合装置制备不同的复合材料膜。一系列复合薄膜由日期坑废物的不同载荷建立,10%的填料作为间隔10%。然后,随后的组合材料的特征在于使用诸如复合材料的形态的若干技术,其使用扫描电子显微镜研究进行研究。使用差示扫描量热法和热重分析研究制备材料的热性能。最后,涉及机械和吸水性。所得结果表明,基于日期的凹坑颗粒增强了热塑性基质的热机械性能,并证明了该可用的木质纤维素生物质可以被认为是有前途的填充材料。

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