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支链结构对流延和双向拉伸聚丙烯薄膜介电储能特性的影响

Translated title of the contribution: Impact of Branch Chain Structure on the Crystallization and Dielectric Energy Storage Properties of Polypropylene Film
  • Shihu Yu
  • , Peiyan Liu
  • , Xiangyang Peng
  • , Bin Zhou
  • , Yinge Li
  • , Yang Feng
  • , Shengtao Li
  • China Southern Power Grid
  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

Abstract

As the core material in film capacitors, graft modification has a significant impact on the properties of polypropylene (PP). In order to study the influence of branched chain structure on the crystallization and dielectric energy storage properties of PP, maleic anhydride (MAH) and polyetherimide (PEI) were grafted by a solid-phase grafting method, and cast films and biaxial films were prepared based on the production process of capacitor films. The results show that the introduction of polar groups can enhance the polarity of PP and increase the dielectric constant. Meanwhile, the branched chain structure introduced by grafting modification can reduce the interplanar spacing of cast films, while the long branched chain structure after grafting PEI makes the entanglement of PP’s molecule chains tighter and keeps the interplanar spacing at the minimum. After biaxial stretching, PP’s molecular chains can untangle and be arranged more orderly, causing an increase in crystallinity, which is manifested as an increase in the DC breakdown strength. Under the tensile stress, the long branched chain structure after grafting PEI leads to the presence of entanglement sites in PP’s molecular chains, causing them to break and the arrangement to loose. As a result, the interplanar spacing increases, which makes the increase of DC breakdown strength relatively small. Considering the variations of dielectric constant and DC breakdown strength, the biaxially oriented film grafted with MAH exhibits the optimal energy storage properties. Its discharge energy density is increased by 29.8% compared to PP, and the charge and discharge efficiency remains above 90%. This research provides a certain guidance for the selection of grafting modification groups for PP.

Translated title of the contributionImpact of Branch Chain Structure on the Crystallization and Dielectric Energy Storage Properties of Polypropylene Film
Original languageChinese (Traditional)
Pages (from-to)2545-2553
Number of pages9
JournalGaodianya Jishu/High Voltage Engineering
Volume52
Issue number6
DOIs
StatePublished - 30 Jun 2026

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