Seam-welded air hardenable steel constructions
The present invention provides seam-welded, air hardenable steel tubes, methods of manufacturing seam-welded air hardenable steel tubes, tube mills for practicing such methods and applications for using seam-welded, air hardenable steel tubing of the present invention.
1. A method of forming a steel structure comprising the steps of:
providing a first surface of an air hardenable martensitic stainless steel;
providing a second surface of an air hardenable martensitic stainless steel;
said martensitic stainless steels having a carbon content equal or greater than 0.08% by weight;
positioning said first surface adjacent to said second surface;
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 weld;
applying a second heat source said weld immediately after said step of welding so as to be prior to said weld cooling below the lower critical temperature for said martensitic stainless steels, said second heat source being at a temperature lower than said first heat source but at a sufficiently high temperature and maintained for sufficient long time period so as to reduce the hardness of said weld.
2. 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 and applying a second heat source to said weld.
3. The method of forming a steel structure of claim 1 wherein the steel structure is a tube and said first surface defines a first edge of a roll formed strip of martensitic stainless steel and second surface defines a second edge of roll formed strip of martensitic stainless steel.
4. The method of forming a steel structure of claim 1 wherein each of said martensitic stainless steels are type 410.
5. The method of forming a steel structure of claim 1 wherein each of said martensitic stainless steels are type 420.
6. The method of forming a steel structure of claim 1 wherein the martensitic stainless steels have has a carbon content substantially equal or greater than 0.08% by weight and a chromium content substantially equal or greater than 11.5% by weight.
7. The method of forming a steel structure of claim 1 wherein the martensitic stainless steels have has a carbon content substantially between 0.08% by weight and 0.75% by weight and a chromium content substantially between 11.5% by weight and 18% by weight.