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High-density polyethylene/mollusk shell-waste composites: effects of particle size and coupling agent on morphology, mechanical and thermal properties

机译:高密度聚乙烯/软体动物壳废料复合材料:粒径和偶联剂对形态,机械和热性能的影响

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Composites based on high-density polyethylene (HDPE) and mollusk shell-waste (MSW) particles, with several concentrations and two different micro-sizes, were prepared by melt compounding and injection molding. The matrix flow behavior was not altered by the MSW incorporations. SEM analyses revealed weak filler/matrix interfacing and the presence of agglomerates (in the composites with higher particle concentrations). For the 2wt% composites, good filler dispersion and distribution was observed in the HDPE matrix. The crystallinity of the matrix increased approximately 10% when adding lower MSW concentrations. For the composites with higher MSW concentrations and finer particles the thermal degradation temperature of HDPE (at a 20% mass loss) increased by approximately 26°C. The tensile modulus increased by approximately 10% for the 2wt% and 8wt% composites with coarse particles. With lower MSW concentrations and finer particles, the flexural modulus increased by more than 37%. The composites modified with titanate presented properties similar to unmodified composites. Molecular interactions were verified by the presence of a band at 1030cm?1, yet were not sufficient to promote improvements in the mechanical properties of the modified composites.
机译:通过熔融混炼和注塑成型,制备了基于高密度聚乙烯(HDPE)和软体动物壳废料(MSW)颗粒的复合材料,具有多种浓度和两种不同的微尺寸。 MSW并没有改变基质的流动行为。 SEM分析显示填料/基体界面较弱,并且存在团聚体(在颗粒浓度较高的复合材料中)。对于2wt%的复合材料,在HDPE基体中观察到良好的填料分散和分布。当添加较低的MSW浓度时,基质的结晶度增加了约10%。对于具有更高MSW浓度和更细颗粒的复合材料,HDPE的热降解温度(质量损失为20%)提高了约26°C。对于具有粗颗粒的2wt%和8wt%的复合材料,拉伸模量提高了约10%。随着较低的城市固体废弃物浓度和较细的颗粒,弯曲模量增加了37%以上。用钛酸酯改性的复合材料具有与未改性的复合材料相似的性能。分子相互作用通过在1030cm -1处的带的存在进行了验证,但不足以促进改性复合材料的机械性能的改善。

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