Claims
- 1. A machine for flaring a pipe end, comprising a forming die mounted on a support, two jaws forming a clamping tool to hold the pipe end to be flared, first driving means providing orbital motion of the forming die, second driving means providing axial motion of the forming die toward the pipe end and means providing axial motion of the forming die away form the pipe end, said jaws disposed in a stationary jaw holder forming a first block of the machine, a second stationary block facing the first block, a mobile block comprising the forming die, the support for the forming die, and the first driving means, and guiding means interconnecting the two stationary blocks for allowing translational movement of the mobile block, wherein said mobile block is driven in translational motion along the guiding means by a hydraulic cylinder, said hydraulic cylinder comprising a cylinder body, and a cylinder chamber disposed in the second stationary block and a cylinder piston forming an integral part of the mobile block, said hydraulic cylinder supplied by a hydraulic pump mounted on the mobile block.
- 2. The machine in accordance with claim 1, wherein said forming die is mounted on an arbor which in turn is mounted by means of roller bearings on an arbor support, said arbor support being driven in rotary motion by the first driving means and imparting an orbital motion to the forming die, with the axis of the forming die and the arbor forming an angle with the axis of rotation of the arbor support.
- 3. The machine in accordance with claim 2, wherein the first driving means for the orbital motion of the forming die comprises a motor having an output shaft provided with a sheave which is linked to the arbor support by a belt.
- 4. The machine in accordance with claim 1, wherein the hydraulic pump comprises a piston acted upon by a cam mounted at the end of the axis of rotation of the support for the forming die.
- 5. The machine in accordance with claim 4, wherein the hydraulic pump supplies the hydraulic cylinder through an interior channel of the cylinder piston.
- 6. The machine in accordance with claim 1, wherein the mobile block comprises at least one stop pin designed, at the end of travel, to abut against at least one of said jaws which clamps pipe end, and wherein a pressure sensitive switch is connected to the cylinder chamber and controls a solenoid valve such that when the pressure in cylinder chamber increases above a predetermined amount, the cylinder chamber is connected with an oil reservoir.
- 7. The machine in accordance with claim 6, wherein the first driving means for the orbital motion of the forming die comprises an electric motor, the power supply of which is interrupted when the pressure sensitive switch actuates the solenoid valve.
- 8. The machine in accordance with claim 1, further including a valve assembly which links the cylinder chamber with an oil reservoir, said valve assembly including a calibrated valve that opens when the pressure in the cylinder chamber exceeds a predetermined value, and a slide, one end of which communicates with the cylinder chamber when the calibrated valve is open, and controls the opening of a passage between the cylinder chamber and the oil reservoir.
- 9. The machine in accordance with claim 1, wherein the guiding means for the translational motion of mobile block comprises two columns connecting the two stationary blocks.
- 10. The machine in accordance with claim 9, further including a pair of bearings in the mobile block, said bearings slidingly receiving the guide columns.
- 11. The machine in accordance with claim 1, wherein the means for moving the forming die away from the pipe end comprises compression springs disposed between the first stationary block and the mobile block.
- 12. The machine in accordance with claim 1, wherein the jaw holder has the shape of a dovetail in which the two jaws have a complementary shape, and engage one another, such that when the forming die presses against the pipe end a wedge effect causes the two jaws to move toward each other and thus to clamp the pipe.
- 13. The machine in accordance with claim 12, wherein the first stationary block comprises a shoe which faces one of said jaws when the jaws are inserted in the jaw holder and can be pushed toward said one jaw by a cam actuated by means of a lever so as to move the two jaws towards each other and thus to hold the pipe end in place.
- 14. The machine in accordance with claim 1, wherein the first stationary block comprises a movable stop against which the pipe end abuts so as to permit proper positioning within the clamping tool, said stop articulated around an axis between a first position where the stop faces the jaws on the side of forming die and a second position where it is remote from the jaws so as not to interfere with the action of the forming die on the pipe end.
- 15. The machine in accordance with claim 14, wherein the movable stop comprises a lever and the mobile block is equipped with a cam having an inclined surface interacting with the lever of the movable stop such as to cause the stop to move to the remote position when forming the die moves in the direction of the first stationary block.
- 16. The machine in accordance with claim 1, further including an atomizer for spraying a lubricant oriented toward the pipe end to be flared, said atomizer being mechanically actuated when the mobile block moves toward the first stationary block.
- 17. The machine in accordance with claim 1, wherein said hydraulic pump supplies the hydraulic cylinder through an interior channel of the cylinder piston.
- 18. The machine in accordance with claim 1, wherein said second stationary block forms the cylinder body of said hydraulic cylinder and includes the cylinder chamber, and the cylinder piston is received in the cylinder chamber of the cylinder body.
- 19. The machine in accordance with claim 1, wherein said guiding means comprises at least one guide column extending between and interconnecting the two stationary blocks, and the mobile block is guided by the at least one guide column.
- 20. The machine in accordance with claim 19, further including a bearing in the mobile block, said bearing slidingly receiving the at least one guide column.
- 21. A machine for flaring a pipe end, comprising a first stationary block including a clamping tool to hold the pipe end to be flared, a stationary block facing the first block, and a mobile block disposed between the first and second blocks, and axially moveable on at least one column extending between and interconnecting the first and second blocks, said mobile block including a forming die mounted on a support and driving means providing an orbital motion of the forming die, and
- a hydraulic cylinder for moving the mobile block toward the first stationary block, said hydraulic cylinder including a cylinder body and a cylinder chamber disposed in the second stationary block, and a cylinder piston forming an integral part of the mobile block, said hydraulic cylinder supplied by a hydraulic pump mounted on the mobile block.
- 22. The machine in accordance with claim 18, wherein said forming die is mounted on an arbor which in turn is mounted by means of roller bearings on an arbor support, said arbor support being driven in rotary motion by the driving means and imparting an orbital motion to the forming die, with the axis of the forming die and the arbor forming an angle with the axis of rotation of the arbor support.
- 23. The machine in accordance with claim 19, wherein the driving means for the orbital motion of the forming die comprises a motor mounted to the mobile block and having an output shaft provided with a sheave which is linked to the arbor support by a belt.
- 24. The machine in accordance with claim 21, wherein the hydraulic pump comprises a piston acted upon by a cam mounted at the end of the axis of rotation of the support.
- 25. The machine in accordance with claim 18, wherein the hydraulic pump supplies the hydraulic cylinder through an interior channel of the cylinder piston.
- 26. The machine in accordance with claim 21, wherein the mobile block comprises at least one stop pin designed, at the end of travel, to abut against the clamping tool and wherein a pressure sensitive switch is connected to the cylinder chamber and controls a solenoid valve such that when the pressure cylinder in the cylinder chamber increases above a predetermined amount, the cylinder chamber is connected with an oil reservoir.
- 27. The machine in accordance with claim 26, wherein the driving means comprises an electrical motor, the power, supply of which is interrupted when the pressure sensitive switch actuates the solenoid valve.
- 28. The machine in accordance with claim 21, further including a valve assembly which links the cylinder chamber with an oil reservoir, said valve assembly including a calibrated valve that opens when the pressure in the cylinder chamber exceeds a predetermined value, and a slide, one end of which communicates with the cylinder chamber when the calibrated valve is open, and controls the opening of a passage between the cylinder chamber and the oil reservoir.
- 29. The machine in accordance with claim 21, further including a compression spring disposed on said at least one column between the first stationary block and the mobile block to move the forming die away from the pipe end.
- 30. The machine in accordance with claim 21, wherein the clamping tool has a jaw holder with first and second jaws, said jaw holder having the shape of a dovetail in which the two jaws have a complementary shape and engage one another, such that when the forming die presses against the pipe end a wedge effect causes the two jaws to move toward each other and thus to clamp the pipe.
- 31. The machine in accordance with claim 30, wherein the first stationary block comprises a shoe which faces one of said jaws when the jaws are inserted in the jaw holder and can be pushed toward said one jaw by a cam actuated by means of a lever so as to move the two jaws toward each other and thus to hold the pipe end in place.
- 32. The machine in accordance with claim 21, wherein the first stationary block comprises a moveable stop against which the pipe end to be flared abuts so as to permit proper positioning within the clamping tool, said stop articulated around an axis between a first position where the stop faces the jaws on the side of the forming die and a second position which is remote from the jaws so as not to interfere with the action of the forming die of the pipe end.
- 33. The machine in accordance with claim 32, wherein the movable stop comprises a lever and the mobile block is equipped with a cam having an inclined surface interacting with the lever of the movable stop such as to cause the stop to move to the remote position when the forming die moves in the direction of the first stationary block.
- 34. The machine in accordance with claim 21, wherein said second stationary block forms the cylinder body of said hydraulic cylinder and includes the cylinder chamber, and the cylinder piston is received in the cylinder chamber of the cylinder body.
- 35. The machine in accordance with claim 21, further including a pair of columns extending between and interconnecting the two stationary guide blocks, and the mobile block is guided by the pair of guide columns.
- 36. The machine in accordance with claim 35, further including a pair of bearings in the mobile block, said bearings slidingly receiving the guide columns.
- 37. The machine in accordance with claim 21, further including a bearing in the mobile block, said bearing slidingly receiving the at least one guide column.
Priority Claims (1)
Number |
Date |
Country |
Kind |
95-01803 |
Feb 1995 |
FRX |
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Parent Case Info
This application is a continuation of International Application PCT/FR/9600222 filed on Dec. 2, 1996 and which designated the U.S.
US Referenced Citations (9)
Foreign Referenced Citations (4)
Number |
Date |
Country |
0 462 719 A3 |
Dec 1991 |
EPX |
2 660 219 |
Oct 1991 |
FRX |
2 730 434 |
Aug 1996 |
FRX |
3-90220 |
Apr 1991 |
JPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
PCT/FR96/00222 |
Dec 1996 |
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