IP Library Granted Patent US 7,618,503
Granted Patent B2
US 7,618,503 · App. 12/009,279 · Granted Nov 17, 2009

Method for improving the performance of seam-welded joints using post-weld heat treatment

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Quick Facts
Patent No.
US 7,618,503
App. No.
12/009,279
Granted
Nov 17, 2009
Kind
B2
Abstract

The present invention provides a method for heat-treating seam-welded constructions of hardenable steel and ferrous alloys with reduced weld-zone hardness and improved weld-zone ductility and toughness. This method consists of heating the seam weld rapidly with a secondary heat source to a temperature greater than the martensitic start temperature but not greater than the lower critical temperature, followed by immediately allowing the seam weld to air-cool. The rapid tempering of this invention is particularly suited to the production of high strength hardenable alloy seam-welded pipe and tubing and other structures.

Claims (25)

1. A method of forming a steel structure comprising the steps of:

providing a first surface of a hardenable ferrous alloy having a carbon content equal or greater than 0.08% by weight;

providing a second surface of a hardenable ferrous alloy having a carbon content equal or greater than 0.08% by weight;

positioning said first surface adjacent to said second surface;

seam welding said first surface to said second surface by applying a first heat source to said first surface and said second surface at a sufficiently high temperature to said first surface and said second surface above their melting points to form a seam weld;

allowing said seam weld to cool to below the martensitic start temperature for said hardenable ferrous alloys;

tempering said seam weld subsequent to said step of allowing said seam weld to cool to below the martensitic start temperature for said hardenable ferrous alloys, said tempering including heating said seam weld at a rate of 10° C. per second or greater to above the martensitic start temperature but not to above the lower critical temperature for said hardenable ferrous alloys; and

air cooling said seam weld at a rate of 15° C. per minute or greater after said step of tempering said seam weld.

2. The method of forming a steel structure of claim 1 wherein said step of tempering said seam weld is conducted at a rate of between 10° C. per second and 200° C. per second and said step of air cooling said seam weld is conducted at between 15° C. per minute and 200° C. per second.

3. The method of forming a steel structure of claim 1 wherein said step of tempering said seam weld includes utilizing a localized heat source to heat said seam weld.

4. The method of forming a steel structure of claim 3 wherein said step of tempering said seam weld is conducted at a rate of between 10° C per second and 200° C. per second and said step of air cooling said seam weld is conducted at between 15° C. per minute and 200° C. per second.

5. The method of forming a steel structure of claim 1 wherein each of said hardenable ferrous alloys are martensitic stainless steels of type 410, 420 or 440.

6. The method of forming a steel structure of claim 1 further comprising roller forming the steel structure into a desired shape, said step of roller forming occurring after the steps of welding said first and second surfaces together and tempering said weld.

7. The method of forming a steel structure of claim 6 wherein the steel structure is a tube and said first surface defines a first edge of a roll formed strip of a ferrous alloy and said second surface defines a second edge of the roll formed strip of ferrous alloy.

8. A method of forming a steel structure comprising the steps of:

providing a first surface of a hardenable ferrous alloy having a carbon content equal or greater than 0.08% by weight;

providing a second surface of a hardenable ferrous alloy having a carbon content equal or greater than 0.08% by weight;

positioning said first surface adjacent to said second surface;

seam welding said first surface to said second surface by applying a first heat source to said first surface and said second surface at a sufficiently high temperature to said first surface and said second surface above their melting points to form a seam weld;

allowing said seam weld to cool to below the martensitic start temperature for said hardenable ferrous alloys;

tempering said seam weld subsequent to said step of allowing said seam weld to cool to below the martensitic start temperature for said hardenable ferrous alloys, said tempering including heating said seam weld with a localized heat source at a rate of between 10° C. per second and 200° C. per second to above the martensitic start temperature but not to above the lower critical temperature for said hardenable ferrous alloys; and

immediately air cooling said seam weld at a rate of between 15° C. per minute and 200° C. per second after said step of tempering said seam weld.

9. The method of forming a steel structure of claim 8 wherein each of said hardenable ferrous alloys are martensitic stainless steels of type 410, 420 or 440.

10. The method of forming a steel structure of claim 8 further comprising roller forming the steel structure into a desired shape, said step of roller forming occurring after the steps of welding said first and second surfaces together and tempering said weld.

11. The method of forming a steel structure of claim 10 wherein the steel structure is a tube and said first surface defines a first edge of a roll formed strip of a ferrous alloy and said second surface defines a second edge of the roll formed strip of ferrous alloy.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 4, 2016
From: KVA, INC.
To: CODD, DANIEL SHAWN
Reel/Frame 037400/0105 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2008
From: MCCRINK, EDWARD J.
To: KVA, INC.
Reel/Frame 021345/0792 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2008
From: CODD, DANIEL S.
To: KVA, INC.
Reel/Frame 021346/0105 →
Continuity (6)
Continuation In Part 1154297000 · Oct 4, 2006
Continuation In Part 1151933100 · Sep 11, 2006
Continuation In Part 1051991000
Provisional Application 6088075700 · Jan 17, 2007
Provisional Application 6030197000 · Jun 29, 2001
Related Publication 20080115863A1 · May 22, 2008