DocumentCode :
56143
Title :
Polyester-imide solventless impregnating resin and its nano-silica modified varnishes with excellent corona resistance and thermal stability
Author :
Yu Xia ; Cheng Zhou ; Guozheng Liang ; Aijuan Gu ; Wen Wang
Author_Institution :
Jiangsu Key Lab. of Adv. Functional Polymer Design & Applic., Soochow Univ., Suzhou, China
Volume :
22
Issue :
1
fYear :
2015
fDate :
Feb. 2015
Firstpage :
372
Lastpage :
379
Abstract :
A novel polyester-imide solventless impregnating resin, coded as PEI, has been fabricated using a propoxylated neopentyl glycol dimethyl acrylic ester as the reactive crosslinking monomer. It is shown that the PEI resin is nontoxic and has a volatile content of 0.8%, far lower than 24.6 and 7.5% of the traditional unsaturated polyester impregnating resins containing styrene and vinyl toluene as the reactive diluents. The investigations on its curing behavior indicate that the PEI resin exhibits a low curing temperature at about 130 °C and has excellent storage stability. Furthermore, nanosilica has been dispersed into the PEI resin to prepare nano-modified impregnating varnishes. The obtained nano-PEI resins not only have excellent storage stability and show no obvious changes after having been applied in practice for one year, but also exhibit improved corona resistance, bond strength, thermal stability, and electrical insulating properties. The corona resistant life and breakdown voltage strength of the nano-PEI resin containing 12% of nano-silica are 1608 min and 28.1 kV/mm, about 45.9 and 1.2 times of that of the PEI resin, respectively. The excellent electrical insulation properties, processing characteristics, and storage stability make the nano- PEI resins promise for use as the impregnating varnishes for variable frequency motors and high voltage motors.
Keywords :
corona; curing; impregnated insulation; resins; thermal stability; PEI resin; bond strength; corona resistance; curing behavior; electrical insulating properties; high voltage motors; nanosilica modified varnishes; polyester-imide solventless impregnating resin; processing characteristics; propoxylated neopentyl glycol dimethyl acrylic ester; reactive crosslinking monomer; reactive diluents; storage stability; styrene toluene; thermal stability; unsaturated polyester impregnating resins; variable frequency motors; vinyl toluene; Corona; Curing; Resins; Temperature measurement; Thermal stability; Viscosity; Impregnating resin; corona resistance; nano-silica; polyester-imide;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2014.004251
Filename :
7033407
Link To Document :
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