Condenser core with grounded conductive foils in a capacitive layer
US-2022415544-A1 · Dec 29, 2022 · US
US11942742B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11942742-B2 |
| Application number | US-201917288895-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 18, 2019 |
| Priority date | Oct 31, 2018 |
| Publication date | Mar 26, 2024 |
| Grant date | Mar 26, 2024 |
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A condenser core for being positioned around a high voltage main electrical conductor, the condenser core including an electrically insulating body; a longitudinal through hole for accommodating the main electrical conductor; a plurality of electrically conductive foils encircling the through hole and being surrounded by the body such that each foil is insulated from any other of the foils; a potential electrical conductor for establishing an electrical connection between one of the foils and the main electrical conductor when the main electrical conductor is accommodated in the through hole; and a fastening device configured to mechanically connect the potential electrical conductor to the main electrical conductor when the main electrical conductor is accommodated in the through hole. A bushing, a high voltage application and a method of producing a bushing are also provided.
Opening claim text (preview).
The invention claimed is: 1. A condenser core for being positioned around a high voltage main electrical conductor, the condenser core comprising: an electrically insulating body; a longitudinal through hole for accommodating the main electrical conductor; a plurality of electrically conductive foils encircling the through hole and being surrounded by the body such that each foil is insulated from any other of the foils; and a potential electrical conductor for establishing an electrical connection between one of the foils and the main electrical conductor when the main electrical conductor is accommodated in the through hole; wherein the condenser core further comprises a fastening device, wherein the fastening device is configured to mechanically connect the potential electrical conductor to the main electrical conductor when the main electrical conductor is accommodated in the through hole and wherein the fastening device comprises a fastener and a washer for being pressed by the fastener such that the washer presses the potential electrical conductor against the main electrical conductor and the washer is countersunk. 2. The condenser core according to claim 1 , wherein the washer comprises a laterally outer rounded edge. 3. The condenser core according to claim 1 , further comprising an electrically insulating compressive layer which comprises cork rubber and Teflon, wherein the body is wound onto and around the compressive layer and wherein the potential electrical conductor passes through the compressive layer. 4. The condenser core according to claim 1 , wherein the body comprises resin impregnated paper or resin impregnated synthetics. 5. A bushing for a high voltage application, the bushing comprising a condenser core according to claim 1 and a main electrical conductor, wherein the potential electrical conductor is electrically connected between one of the foils and the main electrical conductor, and wherein the potential electrical conductor is mechanically connected to the main electrical conductor by means of the fastening device. 6. The bushing according to claim 5 , wherein the body is shrink-fitted around the main electrical conductor. 7. A high voltage application comprising a condenser core according to claim 1 . 8. The condenser core according to claim 1 , wherein the fastener comprises at least one of a screw, rivet, bolt, nail and pin. 9. A method of producing a bushing for a high voltage application, the method comprising: providing a main electrical conductor in a through hole of an electrically insulating body; and establishing an electrical connection between an electrically conductive foil and the main electrical conductor using a potential electrical conductor; mechanically connecting the potential electrical conductor to the main electrical conductor; arranging the foil to encircle the through hole; winding at least one sheet of an insulating material over the foil; and impregnating the body to form a condenser core wherein the mechanical connection comprises connecting the potential electrical conductor to the main electrical conductor using a fastening device; and a washer, the fastener pressing the washer such that the washer presses the potential electrical conductor against the main electrical conductor; and the washer is countersunk. 10. The method according to claim 9 , further comprising cutting through an inner portion of the body to the main electrical conductor, opening the inner portion of the body, electrically and mechanically connecting the potential electrical conductor to the main electrical conductor, and closing the inner portion of the body over the connection between the potential electrical conductor and the main electrical conductor. 11. The method according to claim 9 , further comprising electrically connecting the potential electrical conductor to the main electrical conductor using electrically conductive glue prior to mechanically connecting the potential electrical conductor to the main electrical conductor. 12. The method according to claim 9 , further comprising pressing the potential electrical conductor against the main electrical conductor using a washer. 13. The method according to claim 9 , wherein the fastener comprises at least one of a screw, rivet, bolt, nail, and pin. 14. The method according to claim 9 , wherein the washer comprises a laterally outer rounded edge. 15. The method according to claim 9 , further comprising winding the body onto and around a compressive layer comprising an electrically insulating compressive layer which comprises cork rubber and Teflon, wherein the potential electrical conductor passes through the compressive layer. 16. The method according to claim 9 , wherein the body comprises resin impregnated paper or resin impregnated synthetics. 17. A condenser core for being positioned around a high voltage main electrical conductor, the condenser core comprising: an electrically insulating body; a longitudinal through hole for accommodating the main electrical conductor; a plurality of electrically conductive foils encircling the through hole and being surrounded by the body such that each foil is insulated from any other of the foils; a potential electrical conductor for establishing an electrical connection between one of the foils and the main electrical conductor when the main electrical conductor is accommodated in the through hole; and electrically conductive glue electrically connecting the potential electrical conductor to the main electrical conductor; wherein the condenser core further comprises a fastening device, wherein the fastening device is configured to mechanically connect the potential electrical conductor to the main electrical conductor when the main electrical conductor is accommodated in the through hole and wherein the fastening device comprises a fastener and a washer for being pressed by the fastener such that the washer presses the potential electrical conductor against the main electrical conductor and the washer is countersunk. 18. The condenser core according to claim 17 , wherein the washer comprises a laterally outer rounded edge. 19. The condenser core according to claim 17 , further comprising an electrically insulating compressive layer which comprises cork rubber and Teflon, wherein the body is wound onto and around the compressive layer and wherein the potential electrical conductor passes through the compressive layer. 20. The condenser core according to claim 17 , wherein the body comprises resin impregnated paper or resin impregnated synthetics.
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