IP Library Granted Patent US 10,541,077
Granted Patent B2
US 10,541,077 · App. 14/414,662 · Granted Jan 21, 2020

Hybrid transformer cores

Inventor: Thomas Fogelberg (Ludvika, SE)
Assignee: ABB Schweiz AG
H01F27/263H01F41/02Y10T29/49004
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Quick Facts
Patent No.
US 10,541,077
App. No.
14/414,662
Granted
Jan 21, 2020
Kind
B2
Abstract

A hybrid transformer core includes a first yoke of amorphous steel and a second yoke of amorphous steel. The hybrid transformer core further includes at least two limbs of grain-oriented steel extending between the first yoke and the second yoke. The first end of each one of the at least two limbs is coupled to a first surface of the first yoke in a first connection plane and wherein a second end of each one of the at least two limbs is coupled to a second surface of the second yoke in a second connection plane. The first surface in all directions along the first connection plane extends beyond the first end of each one of the at least two limbs. The second surface in all directions along the second connection plane extends beyond the second end of each one of the at least two limbs.

Claims (38)

1. A hybrid transformer core, comprising:

a first yoke composed of at least one yoke beam, each yoke beam of the first yoke comprising a first plurality of stacked yoke plates of amorphous steel, and a second yoke composed of at least one yoke beam, each yoke beam of the second yoke comprising a second plurality of stacked yoke plates of amorphous steel; and

at least two limbs of grain-oriented steel extending between the first yoke and the second yoke,

wherein a first end of each one of the at least two limbs is coupled directly to a first surface of the first yoke in a first connection plane defined by the first surface and wherein a second end of each one of the at least two limbs is coupled directly to a second surface of the second yoke in a second connection plane defined by the second surface,

wherein the first yoke along the first connection plane extends in all directions beyond a contour of the first end of each one of the at least two limbs, and

wherein the second yoke along the second connection plane extends in all directions beyond a contour of the second end of each one of the at least two limbs.

2. The hybrid transformer core according to claim 1 , wherein each one of the at least two limbs has a diameter, wherein the first yoke extends perpendicularly from the first connection plane 1.1-1.5 times the diameters of the limbs, and wherein the second yoke extends perpendicularly from the second connection plane 1.1-1.5 times the diameters of the limbs.

3. The hybrid transformer core according to claim 1 , wherein for each one of the first and second yokes, the at least one yoke beam comprises two yoke beams bonded together.

4. The hybrid transformer core according to claim 1 , wherein the first plurality of stacked yoke plates and second plurality of stacked yoke plates are oriented parallel to a first plate plane perpendicular to the first and second connection planes, the first plate plane extending between the at least two limbs.

5. The hybrid transformer core according to claim 1 , wherein at least one of the first yoke and second yoke comprises at least two yoke beams of different lengths, wherein the yoke beam to which the each one of the at least two limbs is coupled is the longest of the at least two yoke beams.

6. The hybrid transformer core according to claim 1 , wherein each one of the at least two limbs are composed of a plurality of stacked limb plates of grain-oriented steel.

7. The hybrid transformer core according to claim 4 , wherein each one of the at least two limbs are composed of a plurality of stacked limb plates of grain-oriented steel, and wherein the limbs are oriented such that the plurality of stacked limb plates are parallel to the first plate plane.

8. The hybrid transformer core according to claim 1 , wherein the first yoke and the second yoke and/or the at least two limbs have circular, ellipsoidal, squared or rectangular shaped cross-sections.

9. The hybrid transformer core according to claim 1 , wherein the first end of each one of the at least two limbs is glued to the first surface of the first yoke, and wherein the second end of each one of the at least two limbs is glued to the second surface of the second yoke.

10. The hybrid transformer core according to claim 1 , wherein the amorphous steel of the first and second yokes has same isotropy in all directions.

11. The hybrid transformer core according to claim 1 , wherein each one of the at least two limbs has a diameter, wherein the first yoke and the second yoke extend in length from the hybrid transformer core a total distance of at least the diameter of one limb.

12. The hybrid transformer core according to claim 1 , wherein each one of the at least two limbs has a diameter, wherein the first yoke and the second yoke extend in width from the hybrid transformer core a total distance of at least the diameter of one limb.

13. The hybrid transformer core according to claim 1 , further comprising at least one winding, each one of the at least one winding being wound around one of the at least two limbs, thereby forming at least one wound limb, the at least one wound limb having a diameter, wherein the first yoke and the second yoke have a width of at least the diameter of the at least one wound limb.

14. The hybrid transformer core according to claim 1 , wherein at least one of the first yoke and second yoke comprises fastening means for fastening the hybrid transformer core to at least one wall of a tank or a box.

15. A reactor comprising:

at least one hybrid transformer core,

wherein said at least one hybrid transformer core includes

a first yoke composed of at least one yoke beam, each yoke beam of the first yoke comprising a first plurality of stacked yoke plates of amorphous steel, and a second yoke composed of at least one yoke beam, each yoke beam of the second yoke comprising a second plurality of stacked yoke plates of amorphous steel; and

at least two limbs of grain-oriented steel extending between the first yoke and the second yoke,

wherein a first end of each one of the at least two limbs is coupled directly to a first surface of the first yoke in a first connection plane defined by the first surface and wherein a second end of each one of the at least two limbs is coupled directly to a second surface of the second yoke in a second connection plane defined by the second surface,

wherein the first yoke along the first connection plane extends in all directions beyond a contour of the first end of each one of the at least two limbs, and

wherein the second yoke along the second connection plane extends in all directions beyond a contour of the second end of each one of the at least two limbs.

16. The reactor according to claim 15 , wherein the reactor is either a shunt reactor or a series reactor.

17. A hybrid transformer core, comprising:

a first yoke composed of at least one yoke beam, each yoke beam of the first yoke comprising a first plurality of stacked yoke plates of amorphous steel, and a second yoke composed of at least one yoke beam, each yoke beam of the second yoke comprising a second plurality of stacked yoke plates of amorphous steel; and

at least two limbs of grain-oriented steel extending between the first yoke and the second yoke,

wherein a first end of each one of the at least two limbs is glued directly to a first surface of the first yoke in a first connection plane defined by the first surface and wherein a second end of each one of the at least two limbs is glued directly to a second surface of the second yoke in a second connection plane defined by the second surface,

wherein the first yoke along the first connection plane extends in all directions beyond a contour of the first end of each one of the at least two limbs,

wherein the second yoke along the second connection plane extends in all directions beyond a contour of the second end of each one of the at least two limbs, and

wherein each one of the at least two limbs has a diameter, the first yoke extends perpendicularly from the first connection plane 1.1-1.5 times the diameters of the limbs, and wherein the second yoke extends perpendicularly from the second connection plane 1.1-1.5 times the diameters of the limbs.

18. The hybrid transformer core according to claim 17 , wherein at locations where the first and second yokes and the at least two limbs are connected, each of the first yoke and the second yoke is wider than the diameters of the limbs and longer than the diameters of the limbs.

19. The hybrid transformer core according to claim 18 , wherein the first yoke has a length such that the first yoke extends beyond the contour of the first end of each one of the at least two limbs by at least half the diameter of one of the limbs, and wherein the second yoke has a length such that the second yoke extends beyond the contour of the second end of each one of the at least two limbs by at least half the diameter of one of the limbs.

20. The hybrid transformer core according to claim 18 , wherein the first yoke has a width such that the first yoke extends beyond the contour of the first end of each one of the at least two limbs by at least half the diameter of one of the limbs, and wherein the second yoke has a width such that the second yoke extends beyond the contour of the second end of each one of the at least two limbs by at least half the diameter of one of the limbs.

Assignments (5)
MERGER Recorded Nov 13, 2023
From: HITACHI ENERGY SWITZERLAND AG
To: HITACHI ENERGY LTD
Reel/Frame 065549/0576 →
CHANGE OF NAME Recorded Dec 31, 2021
From: ABB POWER GRIDS SWITZERLAND AG
To: HITACHI ENERGY SWITZERLAND AG
Reel/Frame 058666/0540 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2020
From: ABB SCHWEIZ AG
To: ABB POWER GRIDS SWITZERLAND AG
Reel/Frame 052916/0001 →
MERGER Recorded Nov 15, 2016
From: ABB TECHNOLOGY LTD.
To: ABB SCHWEIZ AG
Reel/Frame 040622/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2015
From: FOGELBERG, THOMAS
To: ABB TECHNOLOGY LTD
Reel/Frame 034951/0750 →