Research on the properties of high thermal conductivity stator bar for large generator
ID:600 View Protection:ATTENDEE Updated Time:2022-08-29 16:23:26 Hits:365 Poster Presentation

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Abstract
The application of high thermal conductivity (HTC) insulation material will reduce the new generator volume, increase the modification unit capacity and reduce the manufacturing cost. The basic research was carried out to optimizate the insulation structure of HTC mica tape and the properties of the HTC mica tape were firstly determined in the China. The HTC mica tapes were compressed into the sheets. The relationship of the adhesive content and the thermal conductivity coefficient was used to determine the tape wrapping layers and hot pressing curing process for the trial bars, the trial bars had good electrical properties. At last, the 13.8kV stator bars was  fabricated by HTC mica tape had also well electrical properties, such as their electrical ageing tests 3Un>10h, 2Un>500h, breakdown voltage >100kV. Conclusions were that the technical problems of HTC insulation material had been preliminarily solved the proplems which had been present for a long time, such as low dielectric strength and short electrical aging. In the next works, the HTC stator bars can be used in generators.
Keywords
large generator,stator bar,high thermal conductivity (HTC) insulation,breakdown voltage,electrical ageing
Speaker
fu qiang
HADONG National Engineering Research Center-Hydropower Equipment Company LTD. (NHEC), Harbin, 15000, China;Harbin Electric Machinery Company Limited, Harbin, 150040, China;Harbin Institute of Large Electric Machinery, Harbin, 150040, China;State key laboratory of hydropower equipment, Harbin, 150040, China;National engineering research center hydropower equipment, Harbin, 150040, China

Submission Author
Gao Hongjun HADONG National Engineering Research Center-Hydropower Equipment Company LTD. (NHEC), Harbin, 15000, China;Harbin Electric Machinery Company Limited, Harbin, 150040, China;Harbin Institute of Large Electric Machinery, Harbin, 150040, China;State key laboratory of hydropower equipment, Harbin, 150040, China;National engineering research center hydropower equipment, Harbin, 150040, China
Shan Zhiduo Harbin University of Science and Technology;State Key Laboratory Breeding Base of Dielectrics Engineering
Wang Xiaohang HADONG National Engineering Research Center-Hydropower Equipment Company LTD. (NHEC), Harbin, 15000, China;Harbin Electric Machinery Company Limited, Harbin, 150040, China;Harbin Institute of Large Electric Machinery, Harbin, 150040, China;State key laboratory of hydropower equipment, Harbin, 150040, China;National engineering research center hydropower equipment, Harbin, 150040, China
fu qiang HADONG National Engineering Research Center-Hydropower Equipment Company LTD. (NHEC), Harbin, 15000, China;Harbin Electric Machinery Company Limited, Harbin, 150040, China;Harbin Institute of Large Electric Machinery, Harbin, 150040, China;State key laboratory of hydropower equipment, Harbin, 150040, China;National engineering research center hydropower equipment, Harbin, 150040, China
Chen Qingguo Harbin University of Science and Technology;State Key Laboratory Breeding Base of Dielectrics Engineering
Hu Chunxiu Harbin Institute of Large Electric Machinery;National engineering research center hydropower equipment;Hadong National Engineering Research Center -Hydropower Equipment Co., LTD;Harbin Electric Machinery Company Limited;State key laboratory of hydropower equipment
Shi Weili Harbin Institute of Large Electric Machinery;National engineering research center hydropower equipment;State key laboratory of hydropower equipment;Harbin Electric Machinery Company Limited, Harbin
Huang Chengwei Harbin Institute of Large Electric Machinery;Harbin Electric Machinery Company Limited
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    Sep 25

    2022

    to

    Sep 29

    2022

  • Aug 15 2022

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  • Sep 10 2022

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  • Nov 10 2022

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  • Nov 30 2022

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