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Field Coating of 765kV Transformer Bushings with RTV HVIC: Planning, Implementation and Results


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1 Epsilon Asia Group, New Delhi – 110024, India
     

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This paper discusses the selection, planning, implementation and performance of RTV Coating on 765kV OIP transformer bushings that are part of a critical transmission grid requiring near-zero downtime performance. After several instances of pollution flashovers on bushings in foggy and humid conditions, various methods of reducing such outages were considered, including the application of two kinds of RTV Coatings – the first a Gen-3 coating and thereafter a Gen-4 RTV with Quartz Silica as the primary filler. Other than RTV Coating, no maintenance methods were successful or viable whereas after the application of RTV, the number of failures had dropped considerably with only one bushing failure reported on the Gen-3 coating and zero failures on the Gen-4 coating.

Keywords

Anti-tracking Coating, Dry Film Thickness (DFT), Epsilon G4, Fillers, Hydrophobicity, PowerGrid, Quartz Filler, RTV Silicone Insulator Coating, Transformer .
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  • Cherney EA. RTV Silicone - A high tech solution for a dirty insulator problem. IEEE Electrical Insulation Magazine. 1995; 11(6):8–14. https://doi.org/10.1109/57.475903
  • Meyer LH, Cherney EA, Jayaram SH. The role of inorganic fillers in silicone rubber for outdoor insulation-alumina tri-hydrate or quartz. IEEE Electrical Insulation Magazine. 2004; 20(4):13–21. https://doi.org/10.1109/MEI.2004.1318835
  • Ilhan S, Cherney EA. Comparative tests on RTV silicone rubber coated porcelain suspension insulator in a salt-fog chamber. IEEE Transactions on Dielectrics and Electrical Insulation. 2018; 25(3):947–53. https://doi.org/10.1109/TDEI.2018.006968
  • El-Hag AH, Jayaram S, Cherney EA. Fundamental and low
  • frequency harmonic components of leakage current as a diagnostic tool to study aging of RTV and HTV silicone rubber in salt-fog. IEEE Transactions on Dielectrics and Electrical Insulation. 2003; 10:128–36. https://doi.org/10.1109/TDEI.2003.1176575
  • Naderian A, Cherney EA, Jayaram SH, Simon LC. Aging characteristics of RTV silicone rubber insulator coatings. IEEE Transactions on Dielectrics and Electrical Insulation. 2008; 15:444–52. https://doi.org/10.1109/TDEI.2008.4483463
  • IEC-TS-62073. Guidance on the measurement of hydrophobicity of insulator surfaces; 2016.
  • IEEE 1523:2018 Guide for the Application, Maintenance, and Evaluation of Room- Temperature Vulcanizing (RTV) silicone rubber coatings for outdoor ceramic insulators sponsored by standards committee of the IEEE Dielectrics and Electrical Insulation Society.

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  • Field Coating of 765kV Transformer Bushings with RTV HVIC: Planning, Implementation and Results

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Authors

Neelesh Arora
Epsilon Asia Group, New Delhi – 110024, India

Abstract


This paper discusses the selection, planning, implementation and performance of RTV Coating on 765kV OIP transformer bushings that are part of a critical transmission grid requiring near-zero downtime performance. After several instances of pollution flashovers on bushings in foggy and humid conditions, various methods of reducing such outages were considered, including the application of two kinds of RTV Coatings – the first a Gen-3 coating and thereafter a Gen-4 RTV with Quartz Silica as the primary filler. Other than RTV Coating, no maintenance methods were successful or viable whereas after the application of RTV, the number of failures had dropped considerably with only one bushing failure reported on the Gen-3 coating and zero failures on the Gen-4 coating.

Keywords


Anti-tracking Coating, Dry Film Thickness (DFT), Epsilon G4, Fillers, Hydrophobicity, PowerGrid, Quartz Filler, RTV Silicone Insulator Coating, Transformer .

References





DOI: https://doi.org/10.33686/prj.v17i1.221847