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Effect of elastomer type on electrical and mechanical properties of polypropylene/elastomer blends

机译:弹性体类型对聚丙烯/弹性体共混物电气和机械性能的影响

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Thermal plastic material polypropylene (PP) has been considered as a promising candidate for recyclable insulation of power cable. However, the stiffness of PP is higher than that of XLPE which makes it difficult to be used directly as cable insulation. In this work, two kinds of elastomers, i.e. polyolefin elastomer (POE) and propylene-based elastomer (PBE), have been added into isotactic polypropylene (i-PP) to modify its toughness. Effect of the elastomer type on electrical and mechanical properties of the blends has been estimated. It was found that with the increase of the elastomer content from 0wt% to 30wt%, the trap depth appeared to be shallower, and the carrier mobility tended to increase. As compared with the PP/POE blends, the PP/PBE blends showed deeper trap which may be responsible for its higher DC breakdown strength. In addition, with the growth of the elastomer content, the elongation at break was enhanced for both the two blends. The PP/PBE blends had higher elongation at break than PP/POE blends. It is suggested that the better electrical properties of PP/PBE should be attributed to its good compatibility with the base i-PP.
机译:热塑性塑料聚丙烯(PP)被认为是电力电缆可回收绝缘的有前途的候选材料。但是,PP的刚度高于XLPE,因此很难直接用作电缆绝缘层。在这项工作中,两种弹性体,即聚烯烃弹性体(POE)和丙烯基弹性体(PBE),已被添加到全同立构聚丙烯(i-PP)中以改变其韧性。已经估计了弹性体类型对共混物的电气和机械性能的影响。发现随着弹性体含量从0wt%增加到30wt%,陷阱深度似乎变浅,并且载流子迁移率趋于增加。与PP / POE共混物相比,PP / PBE共混物显示出更深的陷阱,这可能是其较高的直流击穿强度的原因。另外,随着弹性体含量的增加,两种共混物的断裂伸长率均得到提高。 PP / PBE共混物比PP / POE共混物具有更高的断裂伸长率。建议将PP / PBE的更好的电性能归因于它与基础i-PP的良好相容性。

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