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Improvement of Space Charge Behaviors of PP/ULDPE Blends by Nano Graphene for HVDC Cable

机译:HVDC电缆纳米石墨烯的PP / ULDPE混合物的空间电荷行为的改进

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Polypropylene (PP) with excellent dielectric properties will make a further progress for its application in HVDC cables, if its poor toughness can be improved. Besides, the space charge accumulation is still an important issue for HVDC cable polymer insulation, which can cause a distortion of electric field, accelerate the ageing of insulation. In this paper, PP is blended with the elastomer of ultralow density polyethylene (ULDPE) content of 15wt% by melt blending method to modify its stiffness and brittleness. The graphene nanoplatelets with different content of 0, 0.005, 0.01wt% are introduced into the PP/ULDPE (15 wt%) blends to improve its dielectric properties. The dc conductivity, space charge behaviors and breakdown strength of PP/ULDPE/graphene nanocomposites are then investigated. Experimental results show that PP/ULDPE/graphene nanocomposites with the nanofiller content of 0.01 wt%, have lower dc conductivity, less space charge amount and higher breakdown strength. The improved dielectric properties can be attributed to the interfacial zones between graphene nanoplatelets and PP/ULDPE blends, which can restrict the carrier injection and transportation in polymer.
机译:聚丙烯(PP)具有优良的介电性能将其在HVDC缆线应用进一步的进展,如果它的韧性差可以提高。此外,空间电荷积累仍然是用于HVDC缆线的聚合物绝缘材料的一个重要问题,这可能会导致电场的畸变,加速绝缘的老化。在本文中,PP与的超低密度聚乙烯(ULDPE)的15%重量的通过熔融共混方法内容的弹性体共混以改变其刚性和脆性。用0,0.005,0.01重量%不同含量的石墨烯纳米片被引入到PP / ULDPE(15重量%)的共混物,以提高其介电性能。然后PP / ULDPE /石墨烯的纳米复合材料的直流电导率,空间电荷行为和击穿强度进行了研究。实验结果表明,以0.01重量%的所述纳米填料含量PP / ULDPE /石墨烯的纳米复合材料,具有较低的直流电导率,更小的空间电荷量和更高的击穿强度。改进的介电特性可以归因于石墨烯纳米薄片和PP / ULDPE共混物之间的界面区,这可以限制在聚合物的载流子注入和运输。

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