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Characterization of a Polymer Composite from Treated Kaolin and Unsaturated Polyester Based on PET Waste

机译:基于PET废料的高岭土与不饱和聚酯处理后的聚合物复合材料的表征

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Polymer composites filled with mineral clays are becoming attractive because of their wide applications and low cost. In this study, polymeric composite produced from unsaturated polyester (UP) based on the glycolysis of poly (ethylene terephthalate) (PET) waste with diethylene glycol (DG) and untreated or treated kaolin was tested. Characterization of the unsaturated polyester was carried out using FT-IR and ~1HNMR techniques. Thermal and chemical methods for treatment of kaolin were performed. The chemical treatment was carried out using different ammonium molybdate (dopant) concentrations to convert the alumina naturally present in kaolin from γ-alumina to α-aiumina phase, which is a more stable one. These treatments affected positively for both mechanical and electrical properties of the polymer composites. The data obtained revealed that as the concentration of dopant used for chemical treatment of kaolin increased an enhancement in the properties of the composite is achieved, up to the value of 4mol%. Moreover the composite containing kaolin. The composite containing kaolin doped with 4mol% shows promising mechanical and dielectric properties which validate its use for insulating purposes.
机译:填充有矿物粘土的聚合物复合材料因其广泛的应用和低成本而变得有吸引力。在这项研究中,测试了由聚对苯二甲酸乙二醇酯(PET)废料与二甘醇(DG)的糖酵解和不处理或处理过的高岭土制成的不饱和聚酯(UP)制成的聚合物复合材料。不饱和聚酯的表征是使用FT-IR和〜1HNMR技术进行的。进行了热和化学方法处理高岭土。化学处理是使用不同浓度的钼酸铵(掺杂剂)进行的,以将高岭土中天然存在的氧化铝从γ-氧化铝转变为α-氧化铝层,这是一种更稳定的相。这些处理对聚合物复合材料的机械和电气性能均产生积极影响。所获得的数据表明,随着用于高岭土化学处理的掺杂剂浓度的增加,复合材料的性能得以提高,最高可达4mol%。而且该复合材料含有高岭土。包含掺杂有4mol%高岭土的复合材料显示出令人鼓舞的机械和介电性能,这证明了其可用于绝缘目的。

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