IP Library Granted Patent US 10,215,495
Granted Patent B2
US 10,215,495 · App. 14/900,095 · Granted Feb 26, 2019

Metallurgical apparatus

Inventors: Paul Bosworth (Burton-on-Trent, GB); Jason Dennis Midgley (Burton-on-Trent, GB)
Assignee: PYROTEK, INC.
F27D27/005B01F5/10C21C5/52C21C5/5247C22B9/02C22B21/066F27B9/16F27D3/00F27D2003/0054Y02P10/234
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Quick Facts
Patent No.
US 10,215,495
App. No.
14/900,095
Granted
Feb 26, 2019
Kind
B2
Abstract

A metallurgical apparatus comprises a vessel for holding a body of liquid metal and a circulating apparatus for circulating the body of liquid metal within the vessel. The vessel has a peripheral wall and a base, and the circulating apparatus comprises a launder that provides an open-topped flow channel and a pumping device for pumping liquid metal through the launder. The launder has an inlet end connected to a first opening in the peripheral wall and an outlet end connected to a second opening in the peripheral wall. The pumping device is configured to pump liquid metal through the launder so that liquid metal flows out of the vessel through the first opening and into the vessel through the second opening, thereby causing the body of liquid metal within the vessel to circulate.

Claims (30)

1. A metallurgical apparatus comprising:

a vessel for holding a body of liquid metal, and

a circulating apparatus for circulating the body of liquid metal within the vessel,

wherein the vessel has a peripheral wall and a base, and

wherein the circulating apparatus comprises:

a launder that provides a flow channel, and

a pumping device for pumping liquid metal through the launder,

wherein the launder has an inlet end connected to a first opening in the peripheral wall and an outlet end connected to a second opening in the peripheral wall, each of the inlet end and outlet end being selectively opened and closed by moveable dams adjustable between an open configuration in which the flow of liquid metal between the vessel and the launder is permitted, and a closed configuration in which the flow of liquid metal between the vessel and the launder is prevented, and

wherein the pumping device is configured to pump liquid metal through the launder so that liquid metal flows out of the vessel through the first opening and into the vessel through the second opening, thereby causing the body of liquid metal within the vessel to circulate.

2. The metallurgical apparatus according to claim 1 , wherein the flow channel is open-topped and includes a lid that closes the flow channel and can be opened or removed to provide access to the flow channel.

3. The metallurgical apparatus according to claim 1 , wherein the launder includes a heating system for heating the launder to a desired operating temperature.

4. The metallurgical apparatus according to claim 3 , wherein the heating system includes at least one electrical heating element configured to heat the launder.

5. The metallurgical apparatus according to claim 4 , wherein the launder includes a ceramic trough body that provides the flow channel, and wherein the heating system includes at least one electrical heating element positioned adjacent a side of the ceramic trough body.

6. The metallurgical apparatus according to claim 5 , wherein the launder includes a filler layer of a thermally conductive refractory material between the ceramic trough body and the electrical heating element.

7. The metallurgical apparatus according to claim 1 , wherein the pumping device includes an electromagnetic pump that generates a moving magnetic field within the flow channel to pump liquid metal along the flow channel.

8. The metallurgical apparatus according to claim 7 , wherein the electromagnetic pump comprises a tube pump having a refractory tube and a set of electrical coils arranged around the tube.

9. The metallurgical apparatus according to claim 7 , wherein the electromagnetic pump comprises at least one set of induction elements arranged around a base and one or more sides of the flow channel.

10. The metallurgical apparatus according to claim 9 , wherein the electromagnetic pump comprises a set of U-shaped electrical coils.

11. The metallurgical apparatus according to claim 1 , wherein the pumping device includes a control device that is configured to control a pumping rate of the pumping device.

12. The metallurgical apparatus according to claim 11 , wherein the control device includes a level measuring device for measuring a level of liquid metal within the launder, and is configured to control the pumping rate of the pumping device according to a measured level of liquid metal within the launder.

13. A metallurgical apparatus comprising:

a vessel for holding a body of liquid metal, and

a circulating apparatus for circulating the body of liquid metal within the vessel,

wherein the vessel has a peripheral wall and a base, and

wherein the circulating apparatus comprises:

a launder that provides a flow channel, and

a pumping device for pumping liquid metal through the launder,

wherein the launder has an inlet end connected to a first opening in the peripheral wall and an outlet end connected to a second opening in the peripheral wall, each of the inlet end and outlet end being selectively opened and closed by moveable dams, adjustable between an open configuration in which the flow of liquid metal between the vessel and the launder is permitted, and a closed configuration in which the flow of liquid metal between the vessel and the launder is prevented, and

wherein the pumping device is configured to pump liquid metal through the launder so that liquid metal flows out of the vessel through the first opening and into the vessel through the second opening, thereby causing the body of liquid metal within the vessel to circulate and further including means for dispensing metal at a higher level, said means comprising a second vessel positioned in the launder and rising above said launder walls, wherein closing of one said dams allows molten metal to rise in the vessel for discharge above the launder walls.

14. The metallurgical apparatus according to claim 1 , wherein the launder includes an additional flow leg for guiding a flow of liquid metal to or from a furnace.

Priority Claims (1)
GB 1311078.8 · Jun 21, 2013 · national
Continuity (1)
Related Publication 20160138868A1 · May 19, 2016
Cited By (1)
US 12,418,230