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April 27, 2026Journal of Polymer Science1 citations

Effect of Maleic Anhydride Grafting Modification on the Dielectric Properties of PP / SEBS Based High Voltage Cable Materials

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XLXuejing Li隗隗含涛MWMeng Wang

Key Points

  • This research aims to investigate the effects of maleic anhydride grafting on the dielectric properties of polypropylene/seBS composites for high voltage cables.
  • Utilized maleic anhydride grafted polypropylene (MAH-g-PP) as a compatibilizer for PP/SEBS composites.
  • Conducted experiments alongside simulations to verify results.
  • Measured parameters included elongation at break, low-frequency permittivity, and breakdown strength.
  • The highest breakdown strength of 148.14 kV/mm was achieved with 3.5 wt% MAH-g-PP, a 46.12% increase over PP/SEBS composites.
  • The low-frequency permittivity increased, while high-frequency values remained at 2.32.
  • The band gap of MAH-g-PP was found to be 4.06 eV, with findings indicating energy levels that impede charge transport.

Abstract

ABSTRACT Polypropylene (PP) is currently the most promising polymer material used in cable insulation, because of its excellent electrical insulation properties and heat resistance. Now, the dynamic changes in composition and properties of multi‐component composites with PP are being studied. In this paper, maleic anhydride grafted polypropylene (MAH‐g‐PP) is used as a compatibilizer to modify the comprehensive properties of PP/SEBS, particularly the mechanical and electrical properties. The method of mutual verification between experiments and simulations is adopted. The elongation at break of the composites decreases slightly. The low‐frequency permittivity increases gradually, and the high frequency is basically maintained at 2.32. The breakdown strength increases first and then decreases, and the composite with 3.5 wt% MAH‐g‐PP content is the highest, 148.14 kV/mm, an increase of 46.12% compared with PP/SEBS. The MS results show that the E int absolute value of SEBS to MAH‐g‐PP is 6.29 times of SEBS and PP, being −313.08 kcal/mol. In addition, the band gap of MAH‐g‐PP is the narrowest, at 4.06 eV, but there are two distinct localized energy levels, which hindered the transport of charge carriers. This work has significant promoting significance for the application of new environmentally friendly polypropylene cables.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69eefd64fede9185760d4148https://doi.org/10.1002/pola.70128
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