IP Library Granted Patent US 6,868,896
Granted Patent B2
US 6,868,896 · App. 10/251,030 · Granted Mar 22, 2005

Method and apparatus for melting titanium using a combination of plasma torches and direct arc electrodes

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 6,868,896
App. No.
10/251,030
Granted
Mar 22, 2005
Kind
B2
Abstract

A method and apparatus for optimizing melting of titanium for processing into ingots or end products. The apparatus provides a main hearth, a plurality of optional refining hearths, and a plurality of casting molds or direct molds whereby direct arc electrodes melt the titanium in the main hearth while plasma torches melt the titanium in the refining chambers and/or adjacent the molds. Each of the direct arc electrodes and plasma torches is extendable and retractable into the melting environment and moveable in a circular pivoting or side to side linear motion.

Claims (108)

1. An apparatus for optimally melting metal and metal alloys, the apparatus comprising:

a main hearth defining a melting cavity therein with at least one overflow;

at least one mold aligned respectively with the overflow to be in fluid communication therewith;

at least one non-consumable direct arc electrode for selective heating;

at least one plasma torch for selective heating; and

the at least one direct arc electrode and the at least one plasma torch being disposed for heating within a single chamber; and the hearth and at least one mold being disposed within the chamber during heating.

2. The apparatus of claim 1 wherein the at least one mold includes a first mold adjacent a first end of the main hearth and aligned with a first one of the at least one overflow of the main hearth, and a second mold adjacent a second end of the main hearth and aligned with a second one of the at least one overflow of the main hearth.

3. The apparatus of claim 2 wherein the at least one direct arc electrode includes a first direct arc electrode overhead of the main hearth for selective heating of the contents of the main hearth.

4. The apparatus of claim 2 wherein the at least one plasma torch includes a first plasma torch overhead of each mold for selective heating of the contents of mold.

5. The apparatus of claim 3 wherein the at least one plasma torch includes a plasma torch overhead of each mold for selective heating of the contents of mold.

6. The apparatus of claim 2 wherein the at least one direct arc electrode includes a first and a second direct arc electrode overhead of the main hearth for selective heating of the contents of the main hearth.

7. The apparatus of claim 6 wherein the at least one plasma torch includes a first plasma torch overhead of the first mold for selective heating of the contents of the first mold, and a second plasma torch overhead of the second mold for selective heating of the contents of the second mold.

8. The apparatus of claim 7 wherein each of the direct arc electrodes are extendable and retractable into and out of proximity to the main hearth, and each of the plasma torches are extendable and retractable into and out of proximity to the molds.

9. An apparatus for optimally melting metal and metal alloys, the apparatus comprising:

a main hearth defining a melting cavity therein with at least one overflow;

a first mold adjacent a first end of the main hearth and aligned with a first overflow so as to be in fluid communication therewith, and a second mold adjacent a second end of the main hearth and aligned with a second overflow so as to be in fluid communication therewith;

a first and a second direct arc electrode overhead of the main hearth for selective heating of the contents of the main hearth;

a first plasma torch overhead of the first mold for selective heating of the contents of the first mold, and a second plasma torch overhead of the second mold for selective heating of the contents of the second mold;

at least one of the direct arc electrodes being pivotable in a circular manner such that an ignition end thereof moves in a circle during ignition.

10. An apparatus for optimally melting metal and metal alloys, the apparatus comprising:

a main hearth defining a melting cavity therein with at least one overflow;

a first mold adjacent a first end of the main hearth and aligned with a first overflow so as to be in fluid communication therewith, and a second mold adjacent a second end of the main hearth and aligned with a second overflow so as to be in fluid communication therewith;

a first and a second direct arc electrode overhead of the main hearth for selective heating of the contents of the main hearth;

a first plasma torch overhead of the first mold for selective heating of the contents of the first mold, and a second plasma torch overhead of the second mold for selective heating of the contents of the second mold;

at least one of the direct arc electrodes and plasma torches being moveable side to side such that an ignition end thereof moves linearly back and forth during ignition.

11. The apparatus of claim 1 wherein the metal and metal alloys being melted include titanium and titanium alloys.

12. The apparatus of claim 2 wherein the at least one plasma torch includes a first plasma torch overhead of the main hearth for selective heating of the contents of the main hearth.

13. The apparatus of claim 2 wherein the at least one direct arc electrode includes a first direct arc electrode overhead of each mold for selectively heating of the contents of the respective molds.

14. An apparatus for optimally melting metal and metal alloys, the apparatus comprising:

a main hearth defining a melting cavity therein with a first and second overflow;

a first refining hearth having a first refining overflow and a second refining hearth having a second refining overflow, the first refining hearth aligned respectively with the first main overflow to be in fluid communication therewith and the second refining hearth aligned respectively with the second main overflow to be in fluid communication therewith;

a first mold and a second mold, the first mold aligned respectively with the first refining overflow to be in fluid communication therewith and the second mold aligned respectively with the second refining overflow to be in fluid communication therewith;

at least one heating source adjacent each of the main hearth, refining hearths, and molds for selective heating of the contents of the main hearth, refining hearths and molds respectively;

at least one non-consumable direct arc electrode adjacent the main hearth for selective heating of the contents of the main hearth; and

at least one plasma torch adjacent each of the refining hearths and each of the molds for selective heating of the contents thereof.

15. The apparatus of claim 14 wherein each of the direct arc electrodes are extendable and retractable into and out of proximity to the main hearth, and each of the plasma torches are extendable and retractable into and out of proximity to the molds.

16. An apparatus for optimally melting metal and metal alloys, the apparatus comprising:

a main hearth defining a melting cavity therein with a first and second overflow;

a first refining hearth having a first refining overflow and a second refining hearth having a second refining overflow, the first refining hearth aligned respectively with the first main overflow to be in fluid communication therewith and the second refining hearth aligned respectively with the second main overflow to be in fluid communication therewith;

a first mold and a second mold, the first mold aligned respectively with the first refining overflow to be in fluid communication therewith and the second mold aligned respectively with the second refining overflow to be in fluid communication therewith;

at least one direct arc electrode adjacent the main hearth for selective heating of the contents of the main hearth; at least one of the direct arc electrodes being pivotable in a circular manner such that an ignition end thereof moves in a circle during ignition; and

at least one plasma torch adjacent each of the refining hearths and each of the molds for selective heating of the contents thereof.

17. An apparatus for optimally melting metal and metal alloys, the apparatus comprising:

a main hearth defining a melting cavity therein with a first and second overflow;

a first refining hearth having a first refining overflow and a second refining hearth having a second refining overflow, the first refining hearth aligned respectively with the first main overflow to be in fluid communication therewith and the second refining hearth aligned respectively with the second main overflow to be in fluid communication therewith;

a first mold and a second mold, the first mold aligned respectively with the first refining overflow to be in fluid communication therewith and the second mold aligned respectively with the second refining overflow to be in fluid communication therewith;

at least one direct arc electrode adjacent the main hearth for selective heating of the contents of the main hearth; and

at least one plasma torch adjacent each of the refining hearths and each of the molds for selective heating of the contents thereof;

at least one of the direct arc electrodes and plasma torches being moveable side to side such that an ignition end thereof moves linearly back and forth during ignition.

18. An apparatus for optimally melting metal and metal alloys, the apparatus comprising:

a main hearth defining a melting cavity therein with a first and second overflow;

a first refining hearth having a first refining overflow and a second refining hearth having a second refining overflow, the first refining hearth aligned respectively with the first main overflow to be in fluid communication therewith and the second refining hearth aligned respectively with the second main overflow to be in fluid communication therewith;

a first mold and a second mold, the first mold aligned respectively with the first refining overflow to be in fluid communication therewith and the second mold aligned respectively with the second refining overflow to be in fluid communication therewith;

at least one heating source adjacent each of the main hearth, refining hearths, and molds for selective heating of the contents of the main hearth, refining hearths and molds respectively;

at least one direct arc electrode adjacent each of the main hearth and refining hearths for selective heating of the contents of the main hearth and refining hearths; and

at least one plasma torch adjacent each of the molds for selective heating of the contents thereof.

19. An apparatus for optimally melting metal and metal alloys, the apparatus comprising:

a main hearth defining a melting cavity therein with a first and second overflow;

a first refining hearth having a first refining overflow and a second refining hearth having a second refining overflow, the first refining hearth aligned respectively with the first main overflow to be in fluid communication therewith and the second refining hearth aligned respectively with the second main overflow to be in fluid communication therewith;

a first mold and a second mold, the first mold aligned respectively with the first refining overflow to be in fluid communication therewith and the second mold aligned respectively with the second refining overflow to be in fluid communication therewith;

at least one heating source adjacent each of the main hearth, refining hearths, and molds for selective heating of the contents of the main hearth, refining hearths and molds respectively;

at least one direct arc electrode adjacent each of the main hearth and the molds for selective heating of the contents of the main hearth and the molds, respectively; and

at least one plasma torch adjacent each of the refining hearths for selective heating of the contents thereof.

20. The apparatus of claim 1 wherein the at least one direct arc electrode is positioned for selective heating of the main hearth; the at least one plasma torch is positioned for selective heating of the at least one mold; and no plasma torch is positioned for selective heating of the main hearth.

21. The apparatus of claim 20 wherein there is no heat source other than the at least one direct arc electrode which is positioned for selective heating of the main hearth.

22. The apparatus of claim 1 wherein at least one of the direct arc electrodes and plasma torches is movable in a circular manner such that an ignition end thereof moves in a circle during ignition.

23. The apparatus of claim 22 wherein the at least one of the direct arc electrodes and plasma torches is pivotable such that an ignition end thereof moves in a circle during ignition.

24. The apparatus of claim 22 wherein a direct arc electrode which is movable in a circular manner is positioned above the main hearth for selective heating of the contents of the main hearth.

25. The apparatus of claim 1 wherein at least one of the direct arc electrodes and plasma torches is movable side to side such that an ignition end thereof moves linearly back and forth during ignition.

26. The apparatus of claim 2 wherein a feed chute is disposed above the main hearth for adding material to the main hearth melting cavity; the feed chute being movable from side to side between a position distal the first overflow and a position distal the second overflow.

27. An apparatus for optimally melting metal and metal alloys, the apparatus comprising:

a main hearth defining a melting cavity therein with a first and second overflow;

a first refining hearth having a first refining overflow and a second refining hearth having a second refining overflow, the first refining hearth aligned respectively with the first main overflow to be in fluid communication therewith and the second refining hearth aligned respectively with the second main overflow to be in fluid communication therewith;

a first mold and a second mold, the first mold aligned respectively with the first refining overflow to be in fluid communication therewith and the second mold aligned respectively with the second refining overflow to be in fluid communication therewith;

at least one heating source adjacent each of the main hearth, refining hearths, and molds for selective heating of the contents of the main hearth, refining hearths and molds respectively; and

a feed chute disposed above the main hearth for adding material to the main hearth melting cavity; the feed chute being movable from side to side between a position distal the first overflow and a position distal the second overflow.

28. An apparatus for optimally melting metal and metal alloys, the apparatus comprising:

a main hearth defining a melting cavity therein with a first and second overflow; the main hearth being tiltable in a first direction to allow pouring from the first overflow and tiltable in a second direction to allow pouring from the second overflow;

a first refining hearth having a first refining overflow and a second refining hearth having a second refining overflow, the first refining hearth aligned respectively with the first main overflow to be in fluid communication therewith and the second refining hearth aligned respectively with the second main overflow to be in fluid communication therewith;

a first mold and a second mold, the first mold aligned respectively with the first refining overflow to be in fluid communication therewith and the second mold aligned respectively with the second refining overflow to be in fluid communication therewith; and

at least one heating source adjacent each of the main hearth, refining hearths, and molds for selective heating of the contents of the main hearth, refining hearths and molds respectively.

29. The apparatus of claim 28 wherein the first and second directions are opposite to one another.

30. The apparatus of claim 1 wherein the apparatus is free of electron beam heat sources.

31. An apparatus for optimally melting metal and metal alloys, the apparatus comprising:

a main hearth defining a melting cavity therein with at least one overflow;

at least one mold aligned respectively with the overflow to be in fluid communication therewith;

at least one non-consumable direct arc electrode for selective heating;

at least one plasma torch for selective heating; and

the apparatus being free of electron beam heat sources.

32. The apparatus of claim 31 wherein the at least one mold includes a first mold adjacent a first end of the main hearth and aligned with a first one of the at least one overflow of the main hearth, and a second mold adjacent a second end of the main hearth and aligned with a second one of the at least one overflow of the main hearth.

33. The apparatus of claim 32 wherein the at least one direct arc electrode includes a first direct arc electrode overhead of the main hearth for selective heating of the contents of the main hearth.

34. The apparatus of claim 32 wherein the at least one plasma torch includes a first plasma torch overhead of each mold for selective heating of the contents of mold.

35. The apparatus of claim 33 wherein the at least one plasma torch includes a plasma torch overhead of each mold for selective heating of the contents of mold.

36. The apparatus of claim 32 wherein the at least one direct arc electrode includes a first and a second direct arc electrode overhead of the main hearth for selective heating of the contents of the main hearth.

37. The apparatus of claim 36 wherein the at least one plasma torch includes a first plasma torch overhead of the first mold for selective heating of the contents of the first mold, and a second plasma torch overhead of the second mold for selective heating of the contents of the second mold.

38. The apparatus of claim 37 wherein each of the direct arc electrodes are extendable and retractable into and out of proximity to the main hearth, and each of the plasma torches are extendable and retractable into and out of proximity to the molds.

39. The apparatus of claim 31 wherein the metal and metal alloys being melted include titanium and titanium alloys.

40. The apparatus of claim 32 wherein the at least one plasma torch includes a first plasma torch overhead of the main hearth for selective heating of the contents of the main hearth.

41. The apparatus of claim 32 wherein the at least one direct arc electrode includes a first direct arc electrode overhead of each mold for selectively heating of the contents of the respective molds.

42. The apparatus of claim 31 wherein the at least one direct arc electrode is positioned for selective heating of the main hearth; the at least one plasma torch is positioned for selective heating of the at least one mold; and no plasma torch is positioned for selective heating of the main hearth.

43. The apparatus of claim 42 wherein there is no heat source other than the at least one direct arc electrode which is positioned for selective heating of the main hearth.

44. The apparatus of claim 31 wherein at least one of the direct arc electrodes and plasma torches is movable in a circular manner such that an ignition end thereof moves in a circle during ignition.

45. The apparatus of claim 44 wherein the at least one of the direct arc electrodes and plasma torches is pivotable such that an ignition end thereof moves in a circle during ignition.

46. The apparatus of claim 44 wherein a direct arc electrode which is movable in a circular manner is positioned above the main hearth for selective heating of the contents of the main hearth.

47. The apparatus of claim 31 wherein at least one of the direct arc electrodes and plasma torches is movable side to side such that an ignition end thereof moves linearly back and forth during ignition.

48. The apparatus of claim 32 wherein a feed chute is disposed above the main hearth for adding material to the main hearth melting cavity; the feed chute being movable from side to side between a position distal the first overflow and a position distal the second overflow.

49. The apparatus of claim 32 wherein the main hearth is tiltable in a first direction to allow pouring from the first overflow and tiltable in a second direction to allow pouring from the second overflow.

50. The apparatus of claim 49 wherein the first and second directions are opposite to one another.

Assignments (7)
RELEASE OF SECURITY INTEREST Recorded Jul 16, 2015
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: AJAX TOCCO MAGNETHERMIC CORPORATION
Reel/Frame 036113/0206 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2015
From: AJAX TOCCO MAGNETHERMIC CORP.
To: RETECH SYSTEMS LLC
Reel/Frame 035502/0386 →
SECURITY AGREEMENT Recorded Mar 26, 2012
From: AJAX TOCCO MAGNETHERMIC CORPORATION; ILS TECHNOLOGY LLC; PARK-OHIO INDUSTRIES, INC.; RB&W MANUFACTURING LLC; SNOW DRAGON LLC; TOCCO, INC.; RB&W LTD.; FLUID ROUTING SOLUTIONS, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 027923/0635 →
RELEASE OF ASSIGNMENT FOR SECURITY OF PATENTS Recorded Apr 8, 2011
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: AJAX TOCCO MAGNETHERMIC CORPORATION; ATBD, INC.; BLUE FALCON TRAVEL, INC.; COLUMBIA NUT & BOLT LLC; CONTROL TRANSFORMER, INC.; FECO, INC.; FORGING PARTS & MACHINING COMPANY; GATEWAY INDUSTRIAL SUPPLY LLC; GENERAL ALUMINUM MFG. COMPANY; ILS TECHNOLOGY LLC; INDUCTION MANAGEMENT SERVICES, LLC; INTEGRATED HOLDING COMPANY; INTEGRATED LOGISTICS HOLDING COMPANY; INTEGRATED LOGISTICS SOLUTIONS, INC.; LALLEGRO, INC.; LEWIS & PARK SCREW & BOLT COMPANY; PARK OHIO FORGED & MACHINED PRODUCTS LLC.; PARK-OHIO INDUSTRIES, INC.; PARK-OHIO PRODUCTS, INC.; PHARMACEUTICAL LOGISTICS, INC.; PHARMACY WHOLESALE LOGISTICS, INC.; P-O REALTY LLC; PRECISION MACHINING CONNECTION LLC; RB&W MANUFACTURING LLC; RED BIRD, INC.; SNOW DRAGON LLC; SOUTHWEST STEEL PROCESSING LLC; ST HOLDING CORP.; STMX, INC.; SUMMERSPACE, INC.; SUPPLY TECHNOLOGIES LLC; SUPPLY TECHNOLOGIES (NY), INC.; THE AJAX MANUFACTURING COMPANY; THE CLANCY BING COMPANY; TOCCO, INC.; WB&R ACQUISITION COMPANY, INC.; RB&W LTD.; TW MANUFACTURING CO.; POVI L.L.C.
Reel/Frame 026100/0611 →
SECURITY AGREEMENT Recorded Mar 15, 2010
From: AJAX TOCCO MAGNETHERMIC CORPORATION; ATBD, INC.; BLUE FALCON TRAVEL, INC.; COLUMBIA NUT & BOLT LLC; CONTROL TRANSFORMER, INC.; FECO, INC.; FORGING PARTS & MACHINING COMPANY; GATEWAY INDUSTRIAL SUPPLY LLC; GENERAL ALUMINUM MFG. COMPANY; ILS TECHNOLOGY LLC; INDUCTION MANAGEMENT SERVICES, LLC; INTEGRATED HOLDING COMPANY; INTEGRATED LOGISTICS HOLDING COMPANY; INTEGRATED LOGISTICS SOLUTIONS, INC.; LALLEGRO, INC.; LEWIS & PARK SCREW & BOLT COMPANY; PARK-OHIO FORGED & MACHINED PRODUCTS LLC; PARK-OHIO INDUSTRIES, INC.; PARK-OHIO PRODUCTS, INC.; PHARMACEUTICAL LOGISTICS, INC.; PHARMACY WHOLESALE LOGISTICS, INC.; P-O REALTY LLC; PRECISION MACHINING CONNECTION LLC; RB&W MANUFACTURING LLC; RED BIRD, INC.; SNOW DRAGON LLC; SOUTHWEST STEEL PROCESSING LLC; ST HOLDING CORP.; STMX, INC.; SUMMERSPACE, INC.; SUPPLY TECHNOLOGIES LLC; SUPPLY TECHNOLOGIES (NY), INC.; THE AJAX MANUFACTURING COMPANY; THE CLANCY BING COMPANY; TOCCO, INC.; WB&R ACQUISITION COMPANY, INC.; POVI L.L.C.; RB&W LTD.; TW MANUFACTURING CO.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 024079/0136 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2006
From: LECTROTHERM, INC.
To: AJAX TOCCO MAGNETHERMIC CORPORATION
Reel/Frame 017586/0624 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2002
From: JACKSON, EDWARD S.; WARREN, DAVID O.
To: LECTROTHERM, INC.
Reel/Frame 013497/0637 →