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ELECTRICAL PROPERTIES OF RECYCLED PLASTIC NANOCOMPSITES PRODUCED BY INJECTION MOLDING

机译:注塑成型生产再生塑料纳米培养物的电气性能

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Plastic recycling is a recovery process of waste plastics to make new products into different forms. Plastics are usually sorted based on their resin identification codes before the recycling and melting processes. Although the recycling rate of plastics is significantly high, properties and economical value of the recycled plastics are fairly low, which in turn limits the use of recycled plastics in the market. In the present study, high density polyethylene (HDPE) in the form of pellets was dissolved in toluene, and then nanoscale graphene inclusions at different loadings (e.g., 0%, 0.25%, 0.5%, 1%, 2% and 4%) were added into the polymeric solutions. The remaining solvent was removed from the nanocomposite before the injection molding process. The injection molding process was conducted on the chopped recycled plastics associated with graphene loadings. The dielectric and electric properties of plastic nanocomposites were studied in detail. The test results showed that the dielectric properties were slightly improved by the addition of inclusions, which may be due to the non-polar nature of HDPE and/or residues in the recycled plastics. However, electrical conductivities of nanocomposites were significantly increased because of the improved electrical conduction, polarization and electron mobility at room temperature.
机译:塑料回收是废塑料的恢复过程,使新产品成为不同的形式。通常基于回收和熔化过程之前的树脂识别码来分类塑料。虽然塑料的回收率显着高,但再生塑料的性质和经济价值相当低,这反过来限制了在市场上使用回收的塑料。在本研究中,粒料形式的高密度聚乙烯(HDPE)溶解在甲苯中,然后在不同载荷(例如0%,0.25%,0.5%,1%,2%和4%)下纳米级石墨烯夹杂物加入聚合物溶液中。在注射成型过程之前将剩余的溶剂从纳米复合中除去。在与石墨烯载荷相关的切碎的再循环塑料上进行注射成型方法。详细研究了塑料纳米复合材料的电介质和电性能。测试结果表明,通过添加夹杂物略微改善介电性质,这可能是由于HDPE和/或再循环塑料中残留物的非极性性质。然而,由于在室温下改善的导电,极化和电子迁移率,纳米复合材料的电导率显着增加。

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