• DocumentCode
    2440939
  • Title

    New injection moldable ESD compounds based on very low carbon black loadings

  • Author

    Narkis, Moshe ; Lidor, Gershon ; Vaxman, Anita ; Zuri, Lima-

  • Author_Institution
    Dept. of Chem. Eng., Technion-Israel Inst. of Technol., Haifa, Israel
  • fYear
    1998
  • fDate
    6-8 Oct. 1998
  • Firstpage
    1
  • Lastpage
    9
  • Abstract
    The electrical resistivity, mechanical properties, outgassing, ion contamination and particle-shedding characteristics of new electrostatic dissipative (ESD) injection moldable thermoplastic composites containing carbon black and glass fibers were studied. The results for polypropylene, polybutylene terephthalate and polycarbonate based compounds were compared to typical carbon black and carbon fiber filled materials. Injection moldable composites with desired resistivities in the static dissipative range (10/sup 6/-10/sup 9/ /spl Omega//sq) for conveying in production lines, storage, shipment and for cleanroom applications, having good and balanced mechanical properties can be prepared by combining a number of polymeric materials with glass fibers and less than 2 wt% carbon black.
  • Keywords
    carbon; clean rooms; electrical resistivity; electrostatic discharge; filled polymers; glass fibre reinforced composites; materials handling; moulding; packaging; protection; static electrification; surface contamination; C; carbon black; carbon black filled materials; carbon black loadings; carbon fiber filled materials; cleanroom applications; electrical resistivity; electrostatic dissipative injection moldable thermoplastic composites; glass fibers; injection moldable ESD compounds; injection moldable composites; ion contamination; mechanical properties; outgassing; particle-shedding characteristics; polybutylene terephthalate based compounds; polycarbonate based compounds; polymeric materials; polypropylene based compounds; production line conveying; shipment; static dissipative range; storage; Carbon compounds; Conductivity; Contamination; Electric resistance; Electrostatic discharge; Glass; Material storage; Mechanical factors; Organic materials; Production;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electrical Overstress/Electrostatic Discharge Symposium Proceedings, 1998
  • Conference_Location
    Reno, NV, USA
  • Print_ISBN
    1-878303-91-0
  • Type

    conf

  • DOI
    10.1109/EOSESD.1998.737012
  • Filename
    737012