DocumentCode :
1338449
Title :
Dielectric properties of XLPE/Sio2 nanocomposites based on CIGRE WG D1.24 cooperative test results
Author :
Tanaka, Toshikatsu ; Bulinski, Alexander ; Castellon, Jérôme ; Fréchette, Michel ; Gubanski, Stanislaw ; Kindersberger, Josef ; Montanari, Gian Carlo ; Nagao, Masayuki ; Morshuis, Peter ; Tanaka, Yasuhiro ; Pélissou, Serge ; Vaughan, Alun ; Ohki, Yoshimic
Author_Institution :
Waseda Univ., Kitakyushu, Japan
Volume :
18
Issue :
5
fYear :
2011
fDate :
10/1/2011 12:00:00 AM
Firstpage :
1482
Lastpage :
1517
Abstract :
A comprehensive experimental investigation of XLPE and its nanocomposite with fumed silica (SiO2) has been performed by CIGRE Working Group D1.24, in cooperative tests conducted by a number of members; covering materials characterization, real and imaginary permittivity, dc conductivity, space charge formation, dielectric breakdown strength, and partial discharge resistance. The research is unique, since all test samples were prepared by one source, and then evaluated by several expert members and their research organizations. The XLPE used for preparation of the nanocomposites was a standard commercial material used for extruded power cables. The improved XLPE samples, based on nanocomposite formulations with fumed silica, were prepared specifically for this study. Results of the different investigations are summarized in each section; conclusions are given. Overall, several important improvements over unfilled XLPE are confirmed, which augur well for future potential application in the field of extruded HV and EHV cables. Some differences/discrepancies in the data of participants are thought to be the result of instrumental and individual experimental technique differences.
Keywords :
electric breakdown; electric strength; electrical conductivity; filled polymers; nanocomposites; nanofabrication; permittivity; silicon compounds; space charge; CIGRE WG D1.24 cooperative test results; SiO2; XLPE-silica nanocomposites; augur well; dc conductivity; dielectric breakdown strength; dielectric properties; extruded power cables; partial discharge resistance; permittivity; space charge formation; Annealing; Dielectrics; Heating; Nanocomposites; Plastics; Silicon compounds; Nanocomposite; XLPE; characterization; cooperative test; dielectric performance; dielectrics; electrical insulation; fumed silica; nano filler;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2011.6032819
Filename :
6032819
Link To Document :
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