• DocumentCode
    1773348
  • Title

    Novel polymer crosslinking chemistries for cable insulation

  • Author

    Caronia, Paul J. ; Cogen, Jeffrey M. ; Dluzneski, Peter

  • Author_Institution
    Dow Chem. Co., Spring House, TX, USA
  • fYear
    2014
  • fDate
    8-11 June 2014
  • Firstpage
    392
  • Lastpage
    396
  • Abstract
    Peroxide crosslinked polyethylene is the major insulation material used in today´s electric cables carrying voltages above 5 kV. Peroxide-mediated crosslinking presents cable manufacturing challenges in that there is a propensity for premature crosslinking (scorch) in the extruder. Additionally, peroxide-mediated crosslinking generates byproducts that need to be removed from the cable before final cable construction. Novel organic peroxides and crosslinking coagent technologies have been designed to address these challenges. A novel peroxide, isopropenyl dicumyl peroxide, was found to greatly improve the resistance to scorch. In addition, the novel peroxide reduced the need for degassing, since a significant amount of the crosslinking byproducts became grafted to the polyethylene during crosslinking. A novel coagent, 2-methoxy-4-allylphenyl allyl ether, provided significantly higher scorch retardance at a given level of crosslinking when compared to compositions without coagent. Polyethylene insulation compounds crosslinked using these new additives demonstrated excellent dissipation factor and dielectric constant values, indicating promise for demanding high voltage insulation applications.
  • Keywords
    XLPE insulation; power cable insulation; 2-methoxy-4-allylphenyl allyl ether; cable insulation; electric cables; insulation material; organic peroxides; peroxide crosslinked polyethylene; polyethylene insulation compounds; polymer crosslinking chemistries; Cable insulation; Compounds; Polyethylene; Power cables; coagents; crosslinked polyethylene; peroxide; scorch;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electrical Insulation Conference (EIC), 2014
  • Conference_Location
    Philadelphia, PA
  • Print_ISBN
    978-1-4799-2787-6
  • Type

    conf

  • DOI
    10.1109/EIC.2014.6869416
  • Filename
    6869416