IP Library Granted Patent US 11,146,053
Granted Patent B2
US 11,146,053 · App. 15/010,790 · Granted Oct 12, 2021

Bushing for a transformer

Inventor: Sizwe Magiya Dhlamini (Reston, CA)
Assignee: Power HV Inc.
H02G15/013H01F27/04
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Quick Facts
Patent No.
US 11,146,053
App. No.
15/010,790
Granted
Oct 12, 2021
Kind
B2
Abstract

A bushing for a transformer is provided, the bushing comprising an elongate enclosure body to accommodate a conductor extending along a longitudinal axis, the conductor having a first terminal end a second terminal end, the ends extending from opposite sides of the enclosure body; and a mounting flange fitted to the enclosure body to enable the bushing to be mounted to an enclosure of the transformer. The enclosure body comprises two electrically insulating layers partially surrounding the conductor, a first layer of the insulating layers being substantially provided by a first polymeric material, and a second layer of the insulating layers being substantially provided by a second polymeric material, the layers being arranged about the conductor in such a manner that the bushing is substantially cavity-free. In an embodiment, the first layer defines an inner core, with the second layer providing an outer cover which at least partially covers the inner core.

Claims (19)

1. A bushing for a transformer, the bushing comprising:

an elongate enclosure body to accommodate a conductor extending along a longitudinal axis, the conductor having a first terminal end and a second terminal end, the ends extending from opposite sides of the enclosure body;

a mounting flange fitted to the enclosure body to enable the bushing to be mounted to an enclosure of the transformer;

the enclosure body comprising a first electrically insulating layer surrounding the conductor and a second electrically insulating layer surrounding a substantial portion of the conductor in the bushing, the first electrically insulating layer being substantially provided by a first polymeric material and the second electrically insulating layer being substantially provided by a second polymeric material, the electrically insulating layers being arranged about the conductor in such a manner that the bushing is substantially cavity-free and the first electrically insulating layer being substantially covered by the second electrical insulating layer and a portion of the first electrically insulating layer being surrounded by the mounting flange; and

a condenser screen arrangement disposed within the first electrically insulating layer, the condenser screen arrangement comprising a plurality of fine layers of longitudinally continuous metallic screens arranged so that a longitudinal midpoint of each fine layer of longitudinally continuous metallic screen is substantially aligned along a transverse axis perpendicular to each fine layer of longitudinally continuous metallic screen, the transverse axis being spaced apart from the mounting flange, wherein each fine layer of longitudinally continuous metallic screen is ungrounded.

2. The bushing of claim 1 , wherein the two electrically insulating layers are attached directly to the conductor, thereby providing a substantially cavity-free bushing.

3. The bushing of claim 2 , wherein the first electrically insulating layer is moulded directly onto the conductor and the second electrically insulating layer is moulded directly onto the first layer.

4. The bushing of claim 1 , wherein the first electrically insulating layer is substantially provided by epoxy and the second electrically insulating layer is substantially provided by a hydrophobic material.

5. The bushing of claim 4 , wherein the hydrophobic material is an elastic polymer.

6. The bushing of claim 4 , wherein the first electrically insulating layer is substantially provided by epoxy resin and the second electrically insulating layer is substantially provided by silicone rubber.

7. The bushing of claim 1 , wherein the coefficient of thermal expansion of the conductor and the first electrically insulating layer is selected so as to be closely aligned to thereby reduce the possibility or extent of delamination due to mechanical stress caused by a temperature gradient between the conductor and the first electrically insulating layer, in use.

8. The bushing of claim 1 , wherein the second electrically insulating layer includes a plurality of coaxial sheds spaced apart along the length of the bushing.

9. The bushing of claim 1 , wherein the conductor comprises a tube.

10. The bushing of claim 1 , wherein the conductor comprises a solid, rod-like conductor.

11. The bushing of claim 1 , wherein the first terminal end of the conductor is connectable to an electrically active component of the transformer and the second terminal end of the conductor is connectable to an electrically active external component.

12. The bushing of claim 1 , wherein the bushing is a high voltage bushing, for use in phase-to-phase voltages greater than 100 kV and in current ratings ranging from approximately 1250 A to 2700 A.

13. The bushing of claim 1 , wherein the bushing includes a condition monitoring sensor, the condition monitoring sensor being arranged to monitor one or more predefined condition parameters associated with the bushing and to communicate values of one or more monitored parameters to a receiving module remote from the bushing.

14. The bushing of claim 13 , wherein the measured condition parameter is leakage current in both of the two electrically insulating layers, with the sensor taking the form of a coupling capacitor.

15. The bushing of claim 13 , wherein the sensor includes a transmitter to transmit the measured condition parameter to a remote controller, in an online manner.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2018
From: LUDZELUDZE TRADING AND PROJECTS (PTY) LTD
To: POWER HV INC.
Reel/Frame 047665/0764 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2016
From: DHLAMINI, SIZWE MAGIYA
To: LUDZELUDZE TRADING AND PROJECTS (PTY) LTD
Reel/Frame 037622/0986 →
Continuity (1)
Related Publication 20170222420A1 · Aug 3, 2017