DocumentCode :
272841
Title :
Large-area dielectric breakdown performance of polymer films ??? Part II: Interdependence of filler content, processing and breakdown performance in polypropylene-silica nanocomposites
Author :
Rytöluoto, I. ; Lahti, K. ; Karttunen, M. ; Koponen, M. ; Virtanen, S. ; Pettersson, M.
Author_Institution :
Dept. of Electr. Eng., Tampere Univ. of Technol., Tampere, Finland
Volume :
22
Issue :
4
fYear :
2015
fDate :
Aug-15
Firstpage :
2196
Lastpage :
2206
Abstract :
In this study, large-area dielectric breakdown performances of various bi-axially oriented polypropylene (BOPP)-silica nanocomposite films are studied by utilizing the self-healing multi-breakdown method presented in the Part I of this publication. In particular, the effects of silica filler content, pre-mixing method, co-stabilizer content and film processing on the large-area breakdown performance are analyzed. Nanostructural and film cross-sectional analyses are correlated to the breakdown responses. The optimum silica filler content is found to reside at the low fill fraction level (~1 wt-%) and automatic pre-mixing of the raw materials and the optimization of the orientation temperature are found to be preferable. The co-stabilizer Irgafos 168 is found to have a significant effect on the breakdown distribution homogeneity of the reference BOPP films. The breakdown response of the silica nanocomposites is found to be not only dependent on the active measurement area but also on the voltage ramp rate, indicating that the silica nanocomposites exhibit altered internal charge behavior under DC electric field. The area- and ramp-rate-dependence results exemplify the importance of careful breakdown strength evaluation of dielectric polymer nanocomposites. Above all, the results emphasize the fact that a thorough understanding and the optimization of the film processing parameters are crucial for achieving improved breakdown response in dielectric polymer nanocomposite films.
Keywords :
electric breakdown; filler metals; nanocomposites; polymer films; raw materials; DC electric field; biaxially oriented polypropylene silica nanocomposite film; breakdown distribution homogeneity; breakdown response; breakdown strength evaluation; costabilizer content; cross-sectional analysis; dielectric polymer nanocomposite film; filler content interdependence; polymer film large-area dielectric breakdown performance; premixing method; raw material; reference BOPP film; self-healing multibreakdown method; Area measurement; Electric breakdown; Films; Nanocomposites; Polymers; Silicon compounds; Voltage measurement; Dielectric polymer nanocomposite; area-dependence; breakdown performance; film processing; polypropylene; pre-mixing; silica;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2015.004764
Filename :
7179183
Link To Document :
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