IP Library Granted Patent US 8,529,828
Granted Patent B2
US 8,529,828 · App. 12/264,416 · Granted Sep 10, 2013

Molten metal pump components

Inventor: Paul V. Cooper (Chesterland, OH)
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Quick Facts
Patent No.
US 8,529,828
App. No.
12/264,416
Granted
Sep 10, 2013
Kind
B2
Abstract

Improved components for a molten metal pump include a coupling for connecting a rotor shaft to a motor shaft, a rotor shaft and a rotor. The rotor shaft has a first end and a second end wherein the first end optionally has a vertical keyway formed in the outer surface of the shaft. The second end optionally has flat, shallow threads. The coupling can be one-piece or multi-piece, includes a cavity for receiving the first end of the rotor shaft and, if the first end of the rotor shaft has a keyway, the coupling includes a projection in the cavity for being received at least partially in the keyway. The rotor includes a connective portion that connects to the second end of the rotor shaft. If the second end of the rotor shaft includes flat, shallow threads, the connective portion is essentially a bore having flat, shallow threads configured to receive the second end of the rotor shaft. Optionally, the first end of the rotor shaft may have flat, shallow threads in which case the coupling would have a cavity that receives the first end of the rotor shaft, wherein the cavity has flat, shallow threads.

Claims (37)

1. A rotor shaft for use in a molten metal pump, the rotor shaft comprising:

graphite;

an annular, outer surface;

a diameter;

a first end for connecting to a coupling that couples the rotor shaft to a motor shaft; and

a second end for connecting to a rotor of the molten metal pump, the second end having threads for being threadingly received into an opening in the rotor;

wherein the first end of the rotor shaft is comprised of graphite, includes a vertically-extending keyway formed in the annular, outer surface, the keyway comprising a groove that is ⅓ or less the diameter of the rotor shaft, the groove configured for receiving a projection attached to and extending from an inner wall of the coupling, whereby the projection can apply driving force to the rotor shaft through the keyway; and

wherein the rotor shaft is configured to be removed from the coupling in order to replace the rotor.

2. The rotor shaft of claim 1 wherein the first end does not include threads.

3. The rotor shaft of claim 1 wherein the keyway has a length of 3″-4″.

4. The rotor shaft of claim 1 wherein the keyway has a depth of ⅜″.

5. The rotor shaft of claim 3 wherein the keyway has a depth of ⅜″.

6. The rotor shaft of claim 1 wherein the rotor shaft has a longitudinal axis and the keyway is formed at a 45 degree angle relative the longitudinal axis.

7. The rotor shaft of claim 1 wherein the second end includes flat, shallow threads to connect to the rotor.

8. The rotor shaft of claim 1 that further includes a ceramic sleeve.

9. The rotor shaft of claim 1 wherein the second end includes a taper for centering the shaft in a bore in the rotor.

10. The rotor shaft of claim 7 wherein the second end includes threads that are about 0.495″ wide and 0.100″ deep.

11. The rotor shaft of claim 7 wherein the threads are not pointed.

12. The rotor shaft of claim 10 wherein the threads are not pointed.

13. A rotor shaft for use in a molten metal pump, the rotor shaft comprising:

graphite;

an annular, outer surface;

a diameter;

a first end for being received in a coupling that couples the rotor shaft to a motor shaft;

a second end for connecting to a rotor of the molten metal pump;

the first end of the rotor shaft including a vertical keyway means formed in the annular, outer surface, the keyway means extending into the rotor shaft up to ⅓ or less of the rotor shaft diameter, the keyway means configured for receiving a projection attached to and extending from an inner wall of the coupling whereby the projection can apply driving force to the rotor shaft;

and

wherein the rotor shaft is configured to be removed from the coupling in order to replace the rotor.

14. The rotor shaft of claim 13 wherein the keyway means has a length of between 3″-4″.

15. The rotor shaft of claim 13 wherein the rotor shaft has a longitudinal axis and the keyway means is formed parallel to the longitudinal axis.

16. The rotor shaft of claim 13 wherein the keyway means has a depth of ⅜″.

17. The rotor shaft of claim 1 wherein the keyway extends along the longitudinal axis.

18. The rotor shaft of claim 1 wherein the keyway is 3″ or less in width.

19. The rotor shaft of claim 1 that includes at least one other keyway.

20. The rotor shaft of claim 8 wherein the ceramic sleeve is beneath the keyway.

21. The rotor shaft of claim 1 that further included a through-bolt hole that vertically aligns the shaft.

22. The rotor shaft of claim 13 wherein the first end does not include threads.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Sep 21, 2012
From: COOPER, PAUL V.
To: MOLTEN METAL EQUIPMENT INNOVATIONS, INC.
Reel/Frame 029006/0307 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2012
From: MOLTEN METAL EQUIPMENT INNOVATIONS, INC.
To: MOLTEN METAL EQUIPMENT INNOVATIONS, LLC
Reel/Frame 029006/0458 →
Continuity (5)
Division 10773105 · Feb 4, 2004
Continuation 10619405 · Jul 14, 2003
Continuation 10620318 · Jul 14, 2003
Provisional Application 60395471 · Jul 12, 2002
Related Publication 20090054167A1 · Feb 26, 2009