DocumentCode :
1344780
Title :
Silica nanofilled varnish designed for electrical insulation of low voltage inverter-fed motors
Author :
Nguyen, Manh Quan ; Malec, David ; Mary, Dominique ; Werynski, Piotr ; Gornicka, Barbara ; Therese, Laurent ; Guillot, Philippe
Author_Institution :
Laplace Lab., Paul Sabatier Univ., Toulouse, France
Volume :
17
Issue :
5
fYear :
2010
fDate :
10/1/2010 12:00:00 AM
Firstpage :
1349
Lastpage :
1356
Abstract :
The resistance to partial discharges of pure, microfilled and nanofilled Polyetherimide varnish for low voltage motors fed by inverters is presented. Micro and nano-sized Silica particles (1.5 % wt) are used as fillers. Experimental results of lifetime versus temperature (-55 to 180°C), frequency (5 to 15 kHz) and level of the applied square voltage (+/- 1 kV to +/- 3 kV) clearly demonstrate that nanofillers are more efficient than microfillers. The lifetime of nanofilled polyetherimide varnish is found to be up to thirty times higher than the standard one. Crucial properties for a varnish such as its electrical conductivity, its dc and ac dielectric strengths and its bonding strength are measured. Due to the presence of aggregates having a micrometric size, the microfilled varnish exhibits the worst characteristics, except for the ac dielectric strength which remains unchanged. These aggregates act as bridges for charge carriers, increasing the conduction current and reducing the resulting dc dielectric breakdown field. They also reduce the mechanical properties of the varnish.
Keywords :
AC motors; adhesion; electrical conductivity; filled polymers; machine insulation; nanocomposites; partial discharges; silicon compounds; varnish; DC dielectric breakdown; SiO2; bonding strength; dielectric strengths; electrical conductivity; electrical insulation; low-voltage inverter-fed motors; microfillers; nanosize silica particles; partial discharges; polyetherimide; silica nanofilled varnish; varnish mechanical properties; Insulation; Partial discharges; Resistance; Silicon compounds; Temperature measurement; Voltage measurement; Nanocomposite, polyetherimide, nanofillers, partial discharges; electrical insulation, adjustable speed drives;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2010.5595535
Filename :
5595535
Link To Document :
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