IP Library Granted Patent US 10,731,849
Granted Patent B2
US 10,731,849 · App. 15/172,430 · Granted Aug 4, 2020

Apparatus and method for welding a waterwall panel

Inventors: Ronald Francis Konopacki (Suffield, CT); Russell Brumfield (Cleveland, TN)
Assignee: General Electric Technology GmbH
F22B37/201B23K13/025B23K26/26B23K31/02C21D1/42C21D9/50F22B37/04F22B37/104H05B6/101H05B6/40B23K2101/08B23K2101/14C21D2221/00C21D2221/10Y02P10/253
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Quick Facts
Patent No.
US 10,731,849
App. No.
15/172,430
Granted
Aug 4, 2020
Kind
B2
Abstract

A waterwall panel welding apparatus is provided. The apparatus includes an inlet assembly, a welding assembly, an outlet assembly, and a heating system. The inlet assembly is for receiving a plurality of tubes. The welding assembly is for receiving the tubes from the inlet assembly and for allowing the tubes to be welded together to form a waterwall panel. The outlet assembly is for receiving the waterwall panel from the welding assembly. The heating system heats the tubes and operates via magnetic induction.

Claims (29)

1. A shaped inductive heater for heating one or more fins of a plurality of tubes used to form a waterwall panel, the shaped inductive heater comprising:

one or more raised portions and one or more wells configured to matchingly align with one or more valleys and one or more peaks of the tubes, respectively, the valleys defined by the fins and the peaks defined by one or more outer diameters of the tubes, wherein each of the one or more wells has a first curved surface corresponding to a second curved surface at a peak of the one or more peaks of the tubes, wherein the first curved surface has a radius of curvature extending between adjacent raised portions of the one or more raised portions; and

wherein the tubes are welded together via the fins to form the waterwall panel, and

the shaped inductive heater heats the fins via magnetic induction.

2. The shaped inductive heater of claim 1 , wherein the raised portions comprise an alloyed magnetic ceramic material.

3. The shaped inductive heater of claim 1 , wherein the raised portions extend into the valleys when the one or more raised portions and the one or more wells are matchingly aligned with the one or more valleys and the one or more peaks of the tubes, respectively.

4. The shaped inductive heater of claim 1 , wherein the shaped inductive heater comprises a controller configured to control at least one of preheating prior to welding of the fins to form the waterwall panel from the tubes, or post weld heat treating after the welding of the fins to form the waterwall panel from the tubes.

5. The shaped inductive heater of claim 1 , wherein the radius of curvature changes.

6. The shaped inductive heater of claim 1 , wherein the first curved surface is configured to conform to the second curved surface.

7. The shaped inductive heater of claim 1 , wherein the shaped inductive heater is configured to enable lateral adjustment of the one or more raised portions, or one or more wells, or a combination thereof, based on a geometry or spacing of the plurality of tubes.

8. The shaped inductive heater of claim 1 , wherein the shaped inductive heater is configured to enable adjustment of a first spacing between adjacent raised portions of the one or more raised portions, or a second spacing between adjacent wells of the one or more wells, or a combination thereof.

9. The shaped inductive heater of claim 1 , wherein the shaped inductive heater is configured to enable adjustment of a depth or intensity of the heating via an adjustment of a tube gap between the one or more wells and the one or more peaks of the tubes, an adjustment of an air gap between the one or more raised portions and the one or more valleys, or a combination thereof.

10. The shaped inductive heater of claim 1 , wherein the shaped inductive heater comprises a static mode and a pulsed mode, the static mode is configured to apply a static magnetic field, and the pulsed mode is configured to apply a series of magnetic pulses.

11. The shaped inductive heater of claim 1 , comprising a controller and at least one sensor, the at least one sensor is configured to monitor a temperature of the tubes, and the controller is configured to control the heating by the shaped inductive heater to facilitate a welding process by a welding assembly.

12. The shaped inductive heater of claim 1 , wherein the first curved surface extends an entire distance between, and directly to, the adjacent raised portions of the one or more raised portions.

13. A shaped inductive heater for heating one or more fins of a plurality of tubes used to form a waterwall panel, the shaped inductive heater comprising:

one or more raised portions and one or more wells configured to matchingly align with one or more valleys and one or more peaks of the tubes, respectively, the valleys defined by the fins and the peaks defined by one or more outer diameters of the tubes, wherein each of the one or more wells has a first curved surface corresponding to a second curved surface at a peak of the one or more peaks of the tubes, wherein the first curved surface is configured to conform to the second curved surface; and

wherein the tubes are welded together via the fins to form the waterwall panel, and

the shaped inductive heater heats the fins via magnetic induction.

14. The shaped inductive heater of claim 13 , wherein the shaped inductive heater is configured to enable adjustment of a first spacing between adjacent raised portions of the one or more raised portions, or a second spacing between adjacent wells of the one or more wells, or a combination thereof.

15. The shaped inductive heater of claim 13 , wherein the first curved surface extends between adjacent raised portions of the one or more raised portions.

16. The shaped inductive heater of claim 15 , wherein the first curved surface extends an entire distance between, and directly to, the adjacent raised portions of the one or more raised portions.

17. A shaped inductive heater for heating one or more fins of a plurality of tubes used to form a waterwall panel, the shaped inductive heater comprising:

one or more raised portions and one or more wells configured to matchingly align with one or more valleys and one or more peaks of the tubes, respectively, the valleys defined by the fins and the peaks defined by one or more outer diameters of the tubes, wherein each of the one or more wells has a first curved surface corresponding to a second curved surface at a peak of the one or more peaks of the tubes, wherein the shaped inductive heater is configured to enable adjustment of a first spacing between adjacent raised portions of the one or more raised portions, or a second spacing between adjacent wells of the one or more wells, or a combination thereof; and

wherein the tubes are welded together via the fins to form the waterwall panel, and

the shaped inductive heater heats the fins via magnetic induction.

18. The shaped inductive heater of claim 17 , wherein the first curved surface has a radius of curvature that changes.

19. The shaped inductive heater of claim 17 , wherein the first curved surface extends between adjacent raised portions of the one or more raised portions.

20. The shaped inductive heater of claim 19 , wherein the first curved surface extends an entire distance between, and directly to, the adjacent raised portions of the one or more raised portions.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ADDRESS FOR THE RECEIVING PARTY PREVIOUSLY RECORDED ON REEL 71296 FRAME 986. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 13, 2025
From: GENERAL ELECTRIC TECHNOLOGY GMBH
To: GE VERNOVA INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 071861/0940 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2025
From: GENERAL ELECTRIC TECHNOLOGY GMBH
To: GE VERNOVA INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 071296/0986 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2016
From: KONOPACKI, RONALD FRANCIS; BRUMFIELD, RUSSELL
To: GENERAL ELECTRIC TECHNOLOGY GMBH
Reel/Frame 039343/0552 →
Continuity (1)
Related Publication 20170350588A1 · Dec 7, 2017