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An investigation of the potential of ethylene vinyl acetate/polyethylene blends for use in recyclable high voltage cable insulation systems

机译:对可回收高压电缆绝缘系统中使用的乙烯乙酸乙烯酯/聚乙烯共混物的潜力的研究

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Ethylene vinyl acetate (EVA) co-polymers can potentially provide novel materials for inclusion into extruded high voltage cable systems, providing a degree of electrical conductivity whilst avoiding the dispersion problems associated with conventional particulate fillers or conducting polymers. Although a degree of conductivity can decrease the electrical breakdown performance, it can help to suppress the development of space charge and increase the tree initiation voltage leading to enhanced dielectric properties. In addition, novel two phase morphologies can be formulated leading to the ability to control key thermal and mechanical properties and the ability to tailor these to suit the application. In addition, one of the problems with conventional cross-linked polyethylene (XLPE) is that it cannot easily be recycled; therefore, in this time of increasing environmental awareness, it is prudent to begin investigations into alternative recyclable materials to replace XLPE in extruded cables for the medium to long term. The current article focuses on the crystallisation behaviour, morphology, mechanical and dielectric properties of a range of polymeric insulation systems based on an EVA co-polymer together with a high density polyethylene (HDPE) component. The morphology was controlled by choosing co-polymers containing different vinyl acetate contents together with appropriate crystallisation routes. The relationships between the morphology and the mechanical and dielectric properties were explored. Blends containing a low vinyl acetate content co-polymer combined with HDPE have significant potential to replace XLPE in cable systems and have the advantage of being easily recycled at the end of their service life.
机译:乙烯乙酸乙烯酯(EVA)共聚物可以潜在地提供新颖的材料,以包含在挤出的高压电缆系统中,提供一定程度的导电性,同时避免与常规颗粒状填料或导电聚合物相关的分散问题。尽管一定程度的导电性可以降低电击穿性能,但它可以帮助抑制空间电荷的产生并增加树引发电压,从而提高介电性能。此外,可以配制新颖的两相形态,从而具有控制关键的热和机械性能的能力,并可以调整这些热性能以适应应用的能力。另外,传统的交联聚乙烯(XLPE)的问题之一是它不容易回收利用。因此,在这个环境意识日益增强的时代,谨慎地开始研究替代的可回收材料,以替代中长期的挤压电缆中的XLPE。当前的文章集中在一系列基于EVA共聚物和高密度聚乙烯(HDPE)组分的聚合物绝缘体系的结晶行为,形态,机械和介电性能。通过选择含有不同乙酸乙烯酯含量以及适当的结晶途径的共聚物来控制形态。探索了形态与机械性能和介电性能之间的关系。含有低乙酸乙烯酯含量的共聚物和HDPE的共混物具有取代电缆系统中XLPE的巨大潜力,并且具有在使用寿命结束时易于回收的优点。

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