Claims
- 1. A method for deforming a tube having a longitudinal axis, near its end is placed in an openable die with an impression corresponding, to the desired final exterior shape, and a free end of the tube protruding from the die, said method comprising:introducing the end of the tube that protrudes from the die into a cavity of a form piece, the cavity having an end wall, a side wall of a shape tailored to the tube and to the desired deformation, and an opening opposite the end wall; pressing the end of the tube against the end wall of the cavity such that some clearance remains between the opening of the cavity and the die; applying an essentially axial force to the end of the tube via the form piece, the force being exerted locally on a periphery of the tube and its area of application rotating about the longitudinal axis of the tube, thereby causing the tube to be deformed gradually; and withdrawing the end of the deformed tube from the cavity of the form piece and from the die.
- 2. The deforming method according to claim 1, wherein the form piece is built into a tool having a longitudinal axis that is inclined with respect to the axis of the tube and more or less secant therewith, and in that the essentially axial force is exerted on the end of the tube by rotating the tool, the latter then being given an orbital movement with respect to the axis of the tube, and by simultaneously bringing the tool and the die closer together.
- 3. The tool for implementing the deforming method according to claim 2, wherein the form piece is of a more or less cylindrical component, at the end of which is made an open cavity having an axis of revolution and having an end wall arranged more or less in a transverse plane and conical region near the end wall and narrowing in the direction away from the wall.
- 4. The deforming method according to claim 2, wherein an angle of inclination between an axis of revolution of the cavity and the axis of the tube is between 2 and 5 degrees.
- 5. The tool for implementing the deforming method according to claim 4, wherein the form piece is of a more or less cylindrical component, at the end of which is made an open cavity having an axis of revolution and having an end wall arranged more or less in a transverse plane and conical region near the end wall and narrowing in the direction away from the wall.
- 6. The deforming method according to claim 4, further comprising a die bar which is intended to rest against the interior wall of the tube to be deformed is introduced into the latter when the end of the tube is introduced into the cavity of the tool.
- 7. The deforming method according to claim 2, further comprising a die bar which is intended to rest against the interior wall of the tube to be deformed is introduced into the latter when the end of the tube is introduced into the cavity of the tool.
- 8. The tool for implementing the deforming method according to claim 7, wherein the form piece is of a more or less cylindrical component, at the end of which is made an open cavity having an axis of revolution and having an end wall arranged more or less in a transverse plane and a conical region near the end wall, and in that it also comprises a die bar mounted to pivot with respect to a transverse axis of the cavity.
- 9. The tool for implementing the deforming method according to claim 8, wherein the cavity is made in a tubular piece into which the die bar fits, the end wall of the cavity being formed by the base of the die bar, these two parts being mounted in a housing of more or less circular cylindrical shape, having an end wall and open at the opposite end.
- 10. The deforming method according to claim 1, wherein the form piece is placed on the end of the tube in such a way that the longitudinal axis of the cavity more or less corresponds to the longitudinal axis of the tube, and in that an external tool presses against an opposite face of the form piece to the face in which the cavity is made.
- 11. The deforming method according to claim 10, wherein the external tool is a tool with an axis inclined with respect to the longitudinal axis of the tube, and in that the tool is given an orbital movement with respect to the longitudinal axis of the tube, combined with a movement of translation toward the die.
- 12. The tool for implementing a deforming method according to claim 1, wherein the form piece is of a more or less cylindrical component, at the end of which is made an open cavity having an axis of revolution and having an end wall arranged more or less in a transverse plane and a conical region near the end wall and narrowing in the direction away from the wall.
- 13. The tool for implementing the deforming method according to claim 12, wherein the cavity has, at its open end, a second conical region connecting to the first and widening toward the open end.
- 14. The tool for implementing the deforming method according to claim 13, wherein the cavity has an annular groove.
- 15. The tool for implementing the deforming method according to claim 13, wherein the cavity has an annular rib.
- 16. The tool for implementing the deforming method according to claim 12, wherein the cavity has an annular groove.
- 17. The tool for implementing the deforming method according to claim 16, wherein the cavity has an annular rib.
- 18. The tool for implementing the deforming method according to claim 12, wherein the cavity has an annular rib.
Priority Claims (1)
Number |
Date |
Country |
Kind |
99 15111 |
Nov 1999 |
FR |
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Parent Case Info
This is a Continuation of application Ser. No. 09/869,915 filed Jul. 23, 2001, now abandoned which in turn is a U.S. National Stage of PCT/FR00/03232 filed Nov. 21, 2000, which claims the benefit of foreign priority FR 99.15111 filed Nov. 30, 1999. The entire disclosure of the prior applications is hereby incorporated by reference herein in its entirety.
US Referenced Citations (11)
Foreign Referenced Citations (1)
Number |
Date |
Country |
295 21 617 |
Nov 1997 |
DE |
Continuations (1)
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Number |
Date |
Country |
Parent |
09/869915 |
|
US |
Child |
10/423968 |
|
US |