Methods and systems for reducing tensile residual stresses in compressed tubing and metal tubing products produced from same
Methods and systems for reducing the stress state of compressed ends of compressed tubes are disclosed. The methods and systems may provide a reduced tensile residual stress state, or even a compressive residual stress state. Tube products produced from the same are also provided.
1. A method comprising:
providing an expander comprising a head and a rod rigidly interconnected with the head;
inserting the head of the expander into a tube, the tube having a first end portion;
compressing the first end portion of the tube via a swaging die after the inserting step, thereby producing a compressed end of the tube;
removing the swaging die from the first end portion;
extracting the expander from the tube through the compressed end, after the removing step; and
moving, concomitant to the extracting step, internal surfaces of the compressed end via the expander, thereby creating a stress-relieved end of the tube.
2. The method of claim 1 , wherein, after the compressing step, the compressed end comprises a first residual stress, and wherein, after the extracting step, the stress-relieved end portion comprises a second residual stress, wherein the second residual stress is less than the first residual stress.
3. The method of claim 1 , wherein, after the compressing step, the stress-relieved end comprises a residual hoop stress of less than 0 ksi.
4. The method of claim 3 , wherein the stress-relieved end has a residual hoop stress of less than about −1.75 ksi.
5. The method of claim 1 , wherein the extracting step comprises:
applying force to the rod of the expander, wherein at least a portion of the rod of the expander is accessible after the compressing step;
wherein, prior to the applying force step, at least a portion of the rod is located outside the tube;
wherein the head is adapted to complete the moving internal surfaces step; and
wherein the inserting the head of the expander step is completed without restrictively engaging the internal surfaces of the first end portion of the tube.