• DocumentCode
    2508171
  • Title

    Electrically insulating two-phase cooling system

  • Author

    Agostini, Francesco ; Malinowski, Lukasz

  • Author_Institution
    Corp. Res., ABB Switzerland Ltd., Baden-Dättwil, Switzerland
  • fYear
    2012
  • fDate
    May 30 2012-June 1 2012
  • Firstpage
    1077
  • Lastpage
    1083
  • Abstract
    In this paper a novel insulated cooling system is presented. The work tackles the problem of the cooling of electrical components at different voltage levels by means of the same cooling loop. The system guarantees high thermal performances and electrical insulation enabling a safe and reliable operation of the electrical device. The thermal circuit is based on a two-phase thermosyphon system. The evaporator is made of a round copper tube connected to a natural convection condenser. A common evaporator body provides the cooling of three electric components at different electrical potentials. The condenser is a finned tube type and during operation it is electrically earthed. The evaporator´s diameter is 25.4 mm. The electrically dissipating elements are three copper blocks 80 mm wide, equally spaced over the evaporator´s length. The total power ranges between 100 and 400 W. The system works with gravity driven circulation. The employed fluid is refrigerant R245fa. The electrical insulation is achieved through elements working as interface between each electrical dissipating component and the evaporator. For good cooling efficiency of the system these elements, in addition to the electrical insulation, must have a good thermal conductivity. Different insulation materials are analyzed and presented: thermally conductive polymers in form of shells interposed between the evaporator body and the heat sources. Thermal performances of the described cooler range between 1 to 3 K/W. A comparison of different interface materials will be given: thermally conductive polymers and the system without electrical insulation added for the reference reasons. Several different thermally conductive polymer grades available on the market are part of the investigation.
  • Keywords
    capacitors; conducting polymers; cooling; insulating materials; natural convection; thermal conductivity; R245fa refrigerant; cooling loop; electrical component cooling; electrical device; electrically dissipating elements; electrically insulating two-phase cooling system; evaporator; evaporator body; evaporator length; finned tube type condenser; gravity driven circulation; heat sources; high thermal performances; insulation materials; interface materials; natural convection condenser; power 100 W to 400 W; round copper tube; size 25.4 mm; size 80 mm; thermal circuit; thermal conductivity; thermally conductive polymers; two-phase thermosyphon system; Conductivity; Cooling; Fluids; Plastics; Temperature measurement; Thermal conductivity; Cooling; Electronics; Insulating material; Natural convection; Thermally conductive polymer; Thermosyphon;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Thermal and Thermomechanical Phenomena in Electronic Systems (ITherm), 2012 13th IEEE Intersociety Conference on
  • Conference_Location
    San Diego, CA
  • ISSN
    1087-9870
  • Print_ISBN
    978-1-4244-9533-7
  • Electronic_ISBN
    1087-9870
  • Type

    conf

  • DOI
    10.1109/ITHERM.2012.6231544
  • Filename
    6231544