Chinese Journal of Applied Chemistry ›› 2022, Vol. 39 ›› Issue (11): 1672-1679.DOI: 10.19894/j.issn.1000-0518.210557

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Preparation and Flame Retardancy of the Irradiation‑crosslinked PE‑based Composites Containing a Cyclophosphazene Derivative

Bing-Bing LENG1, Chun-Hui ZHU2, Cheng-Ying SHI3, Zhi-Peng WANG1, Yang LIU, Hong-Yan ZHANG, Wen-Ge XU, Bai-Jun LIU3()   

  1. 1.(Changchun Power Supply Company,State Grid (Jilin Province) Electric; Power Co. ,Ltd. ,Changchun 130000,China )
    2.(Economic and Technological Research Institute,State Grid (Jilin Province) Electric; Power Co. ,Ltd. ,Changchun 130000,China )
    3.College of Chemistry,Jilin University,Changchun 130012,China
    4.Changchun Radiation Technology Co. ,Ltd. ,China Isotope & Radiation Corporation (CIRC),Changchun 130000,China
  • Received:2021-12-04 Accepted:2022-04-20 Published:2022-11-01 Online:2022-11-09
  • Contact: Bai-Jun LIU
  • About author:liubj@jlu.edu.cn
  • Supported by:
    the Science and Technology Project of State Grid Jilin Electric Power Co., Ltd., China(SGJLCC00KJJS2101813)

Abstract:

An allyl functionalized cyclotriphosphazene, which is expected to serve as flame retardant and irradiation sensitizer, is introduced into the matrix composed of low-density polyethylene and ethylene vinyl acetate copolymer by melt blending. Based on the organic-inorganic complex flame retardants, a family of new halogen-free flame retardant insulating composites is prepared. Furthermore, the irradiation crosslinking of the composites is conducted by electron-beam irradiation at the irradiation doses of 100~190 kGy, and the relationship between irradiation dose and properties is investigated. The results indicate that the irradiation crosslinked composites containing functional cyclotriphosphazene have excellent mechanical strength, flame retardancy and electrical insulation properties, and they may be promising for wire and cable applications.

Key words: Irradiation crosslinking, Cyclophosphazene, Cross-linked networks, Flame retardancy

CLC Number: