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VERY LOW FREQUENCY BREAKDOWN PROPERTIES OF ELECTRICAL INSULATION MATERIALS AT CRYOGENIC TEMPERATURES...

Publication Type
Conference Paper
Journal Name
AIP Conference Proceedings
Publication Date
Page Numbers
68 to 74
Volume
1219
Issue
10.1063/
Conference Name
Joint Cryogenic Engineering Conference/International Cryogenic Materials Conference
Conference Location
Tucson, Arizona, United States of America
Conference Sponsor
Adv Res Syst; Amuneal Mfg Corp; Cryofab; Cryomech; Cryocomp, DLH Ind; Essex Cryogen Mo Inc; GE Globa
Conference Date
-

For long cables or equipment with large capacitance it is not always possible to conduct high voltage withstand at tests at 60 Hz due to limitations in charging currents of the power supply. Very low frequency (typically at a frequency of 0.1 Hz) has been used for conventional cables as a way of getting around the charging current limitation. For superconducting grid applications the same issues apply. However there is very little data at cryogenic temperatures on how materials perform at low frequency compared to 60 Hz and whether higher voltages should be applied when performing a high voltage acceptability test. Various materials including G10 (fiberglass reinforced plastic or FRP), Cryoflex™ (a tape insulation used in some high temperature superconducting cables), kapton (commonly used polyimide), polycarbonate, and polyetherimide, and in liquid nitrogen alone have been tested using a step method for frequencies of 60 Hz, 0.1 Hz, and dc. The dwell time at each step was chosen so that the aging factor would be the same in both the 60 Hz and 0.1 Hz tests. The data indicated that, while there is a small frequency dependence for liquid nitrogen, there are significant differences for the solid materials studied. Breakdown data for these materials and for model cables will be shown and discussed.