IP Library Granted Patent US 9,131,596
Granted Patent B2
US 9,131,596 · App. 13/407,396 · Granted Sep 8, 2015

Plasma cutting tip with advanced cooling passageways

Inventors: Christopher J. Conway (Wilmont, NH); Daniel Wayne Barnett (Plainfield, NH); Nakhleh Hussary (Grantham, NH)
Assignee: Victor Equipment Company
H05H1/34H05H1/28H05H2001/3442Y10T29/49002Y10T29/49117Y10T29/49204Y10T29/49218Y10T29/49222
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Quick Facts
Patent No.
US 9,131,596
App. No.
13/407,396
Granted
Sep 8, 2015
Kind
B2
Abstract

A plasma arc torch is provided that includes a tip having an improved life. The tip defines a first set of fluid passageways, a second set of fluid passageways and an internal cavity in fluid communication with the first and second fluid passageways. The internal cavity includes a base portion disposed proximate and surrounding a central orifice of the tip. A first set of fluid passageways allow for entry of a cooling fluid into the tip and a second set of fluid passageways allow for exit of the cooling fluid from the tip.

Claims (47)

1. A tip for a plasma arc torch comprising:

a proximal portion adapted for connection to an adjacent anode member of the plasma arc torch, the proximal portion including a first annular flange defining a first set of fluid passageways having a radial inlet extending radially through the first annular flange for entry of a cooling fluid into the tip and a second flange in contact with the first annular flange and defining a second set of fluid passageways having a radial outlet extending radially through the second annular flange for exit of the cooling fluid from the tip; and

a tapered distal portion extending from the proximal portion to an exit orifice of the tip, the tapered distal portion defining an internal cavity in fluid communication with the first set of fluid passageways and the second set of fluid passageways, wherein the internal cavity is configured to define a base portion that surrounds the exit orifice.

2. The tip according to claim 1 , wherein the tip includes a two-piece structure.

3. The tip according to claim 1 , wherein the tapered distal portion includes an inner tapered wall extending distally from the proximal portion and an outer tapered wall opposing and surrounding the inner tapered wall, the internal cavity defined between the inner tapered wall and the outer tapered wall.

4. The tip according to claim 3 , wherein the tapered distal portion further includes an orifice portion extending distally from the inner tapered wall and defining the exit orifice.

5. The tip according to claim 1 , wherein the tapered distal portion further includes an orifice portion including a cup-shaped body and a protrusion disposed at a center of the cup-shaped body.

6. The tip according to claim 5 , wherein the exit orifice is defined in the protrusion.

7. The tip according to claim 5 , wherein the cup-shaped body includes a peripheral bottom surface surrounding the protrusion and defining the base portion of the internal cavity.

8. The tip according to Claim 1 , wherein the first flange defines a plurality of cutout portions to form the first set of fluid passageways and the second flange defines a plurality of cutout portions to form the second set of fluid passageways.

9. The tip according to claim 8 , wherein the first set of fluid passageways and the second set of fluid passageways are alternately arranged.

10. The tip according to claim 1 , wherein the tip has a three-piece structure and includes a central member, an intermediate member surrounding the central member to define a first internal cavity therebetween, and an outer member surrounding the intermediate member to define a second internal cavity therebetween.

11. The tip according to claim 10 , wherein the first and second internal cavity each define a base portion surrounding and adjacent to the exit orifice.

12. A tip for a plasma arc torch, comprising:

a central member adapted for connection to an adjacent anode member of the plasma arc torch, the central member defining an exit orifice and a first annular flange defining a first fluid passageway having an inlet extending radially through the first annular flange for entry of a cooling fluid into the tip; and

an outer member disposed around the central member and defining a second annular flange in contact with the first annular flange and defining a second fluid passageway having an outlet extending radially through the second annular flange for exit of the cooling fluid from the tip.

13. The tip according to claim 12 , wherein the central member defines a proximal portion and a tapered distal end portion, the outer member surrounding the tapered distal end portion.

14. The tip according to claim 13 , wherein the tapered distal end portion includes an outer peripheral wall section, the outer member defining an inner peripheral wall section, an internal cavity defined between the outer peripheral wall section and the inner peripheral wall section.

15. The tip according to claim 14 , wherein the internal cavity is in fluid communication with the first fluid passageway and the second fluid passageway.

16. The tip according to claim 14 , wherein the internal cavity defines a base portion surrounding the exit orifice.

17. The tip according to claim 12 , the first and second flanges jointly defining the inlet to the first fluid passageway and the outlet to the second fluid passageway.

18. The tip according to claim 17 , wherein the first flange defines at least one cutout portion to form the first fluid passageway and the second flange defines at least one cutout portion to form the second fluid passageway.

19. The tip according to claim 18 , wherein the at least one cutout portion of the first flange and the at least one cutout portion of the second flange are alternately arranged.

20. The tip according to claim 13 , wherein the tapered distal end portion includes an orifice portion defining the exit orifice.

21. The tip according to claim 13 , wherein the orifice portion includes a protrusion and a cup-shaped body surrounding the protrusion.

22. The tip according to claim 21 , wherein the cup-shaped body defines a base portion of an internal cavity and the protrusion defines the exit orifice.

23. The tip according to claim 12 , wherein the central member and the outer member are joined by a process selected from a group consisting of brazing, soldering, conductive adhesive, press-fit, non-conductive adhesive, and welding.

24. A tip for a plasma arc torch, comprising:

a central member adapted for connection to an adjacent anode member of the plasma arc torch, the central member defining:

a first annular flange defining a first set of fluid passageways for entry of a cooling fluid into the tip, the first fluid passageway having an inlet extending radially through the first annular flange;

a tapered distal end portion having an outer peripheral wall section; and

an exit orifice; and

an outer member disposed around the central member and defining:

a second annular flange in contact with the first annular flange and defining a second set of fluid passageways for exit of the cooling fluid from the tip, the second fluid passageway having an outlet extending radially through the second annular flange; and

an inner peripheral wall section, wherein the outer peripheral wall section of the central member and the inner peripheral wall section of the outer member define an internal cavity in fluid communication with the first set of fluid passageways and the second set of fluid passageways, and a base portion of the internal cavity surrounds the exit orifice.

25. A plasma arc torch comprising:

a cathode member;

an electrode electrically connected to the cathode member;

a tip surrounding the electrode to define a plasma chamber therebetween and comprising:

a central member adapted for connection to an adjacent anode member of the plasma arc torch, the central member defining:

a first annular flange defining a first set of fluid passageways for entry of a cooling fluid into the tip, the first fluid passageway having an inlet extending radially through the first annular flange;

a tapered distal end portion having an outer peripheral wall section; and

an exit orifice; and

an outer member disposed around the central member and defining:

a second annular flange in contact with first annular flange and defining a second set of fluid passageways for exit of the cooling fluid from the tip, the second fluid passageway having an outlet extending radially through the second annular flange; and

an inner peripheral wall section, wherein the outer peripheral wall section of the central member and the inner peripheral wall section of the outer member define an internal cavity in fluid communication with the first set of fluid passageways and the second set of fluid passageways, and a base portion of the internal cavity surrounds the exit orifice; and

a cap member surrounding the tip to define a secondary gas chamber between the tip and the cap member, the secondary gas chamber allowing a secondary gas to flow through, wherein the internal cavity is disposed between the exit orifice and the secondary gas chamber.

Assignments (4)
MERGER Recorded Jul 1, 2015
From: THERMAL DYNAMICS CORPORATION
To: VICTOR EQUIPMENT COMPANY
Reel/Frame 035997/0717 →
RELEASE OF SECURITY INTEREST Recorded Jun 12, 2015
From: DEUTSCHE BANK AG NEW YORK BRANCH
To: COLFAX CORPORATION; CONSTELLATION PUMPS CORPORATION; CLARUS FLUID INTELLIGENCE, LLC; ALCOTEC WIRE CORPORATION; ALLOY RODS GLOBAL INC.; ANDERSON GROUP INC.; ESAB AB; EMSA HOLDINGS INC.; THE ESAB GROUP INC.; DISTRIBUTION MINING & EQUIPMENT COMPANY, LLC; HOWDEN GROUP LIMITED; HOWDEN COMPRESSORS, INC.; HOWDEN NORTH AMERICA INC.; IMO INDUSTRIES INC.; HOWDEN AMERICAN FAN COMPANY; SHAWEBONE HOLDINGS INC.; STOODY COMPANY; TOTAL LUBRICATION MANAGEMENT COMPANY; VICTOR EQUIPMENT COMPANY; VICTOR TECHNOLOGIES INTERNATIONAL, INC.
Reel/Frame 035903/0051 →
SECURITY INTEREST Recorded Sep 26, 2014
From: VICTOR TECHNOLOGIES INTERNATIONAL INC.; VICTOR EQUIPMENT COMPANY; THERMAL DYNAMICS CORPORATION; STOODY COMPANY; VISOTEK, INC.
To: DEUTSCHE BANK AG NEW YORK BRANCH
Reel/Frame 033831/0404 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2012
From: CONWAY, CHRISTOPHER J.; BARNETT, DANIEL WAYNE; HUSSARY, NAKHLEH
To: THERMAL DYNAMICS CORPORATION
Reel/Frame 028458/0012 →
Continuity (2)
Provisional Application 61447560 · Feb 28, 2011
Related Publication 20120248073A1 · Oct 4, 2012