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Influence of Manufacture Process Parameters on the Partial Discharge Behavior of a Composite Material for the Use in Dry Type Transformers

Javier Torres, Laureen Stahl, Peter Werle

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Abstract

Dry-type transformers can be manufactured using vacuum cast coil (VCC) or filament winding (FW) process. Coils manufactured using the filament winding technology, in which reinforcing mineral fibers are impregnated with an organic resin, exhibit a high mechanical robustness. The primary objective of this study is to investigate the influence of different manufacturing process parameters on the partial discharge (PD) behavior of a composite insulation material intended for the use on dry type transformers. In addition, it is also an intention of this study to present a contribution to the possibilities and challenges when analyzing the partial discharge behavior of composite materials for general purpose. A method for the production and testing of the necessary specimens, which limit the investigations of this type due to the high costs, is discussed.

OriginalspracheEnglisch
Titel des Sammelwerks14th International Conference on the Properties and Applications of Dielectric Materials, ICPADM 2024
Herausgeber (Verlag)Institute of Electrical and Electronics Engineers Inc.
Seiten202-205
Seitenumfang4
ISBN (elektronisch)9798350374605
ISBN (Print)979-8-3503-8616-5
DOIs
PublikationsstatusVeröffentlicht - 4 Aug. 2024
Veranstaltung14th International Conference on the Properties and Applications of Dielectric Materials, ICPADM 2024 - Phuket, Thailand
Dauer: 4 Aug. 20247 Aug. 2024

Publikationsreihe

NameProceedings of the IEEE International Conference on Properties and Applications of Dielectric Materials
ISSN (Print)2160-9225
ISSN (elektronisch)2160-9241

Konferenz

Konferenz14th International Conference on the Properties and Applications of Dielectric Materials, ICPADM 2024
Land/GebietThailand
OrtPhuket
Zeitraum4 Aug. 20247 Aug. 2024

ASJC Scopus Sachgebiete

  • Elektronische, optische und magnetische Materialien
  • Physik der kondensierten Materie
  • Werkstoffchemie

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