Claims
- 1. A device (B) for connecting a branch pipe (54) on a fluid transporting system (C), said device comprising:a support portion (12) on a wall (10) of the fluid transporting-system (C); a connection piece (28) for the branch pipe (54); a perforating member (20) having a smooth external face(6) and fitted with a cutter (70) for perforating the wall (10), the perforating member (20) having a cylindrical portion (71 ) surmounting the cutter; a cylindrical shaft (16) along an axis (51) dimensioned for receiving the perforating member (20) and in which the perforating member is able to move from a perforation position from the wall (10) to a retracted position in the shaft (16); sealing means (E, 30) between the shaft (16) and the perforating member (20), the support portion (12), the connection piece (28), the shaft (16) and the sealing means (E) being rendered integral by one of moulding and cast-moulding, the sealing means resting and enclosing said external smooth face of the perforating member (20), and the support portion (12), the connection piece (28), the shaft (16) and the sealing means (E) forming a single moulded part; wherein the shaft (16) comprises an internal threaded portion (61) for screwing the perforator, the shaft thus being without any threaded tubular insert.
- 2. Device according to claim 1 wherein the passage diameter (64) of the sealing means in its free state is smaller than the diameter (72) of said external smooth face (60) of the perforating member (20).
- 3. Device according to claim 2 wherein the difference of said diameters (64, 72) is within a range of between 0.4 mm and 0.8 mm.
- 4. Device according to claim 1 wherein the sealing means (E) comprise a torus-shaped annular flange having its axis approximately merged with the longitudinal axis (51) of the shaft and having an approximately semi-circular section.
- 5. Device according to claim 4 wherein the annular flange is made of the same material as that constituting the walls (73) of the shaft and obtained by moulding, the profile of the section of the torus of said flange being flattened in its central portion (65).
- 6. Device according to claim 1 wherein the perforating member (20) has no gasket.
- 7. Device according to claim 1 wherein the sealing means (E) comprise an annular flange (3) coaxial to the shaft and placed at the lower extremity of the shaft.
- 8. Device according to claim 1 wherein the perforating member (20) has no gasket.
- 9. Device according to claim 1 wherein the support portion (12), the connection piece (28), the shaft (16) and the sealing means (E, 30) form a single moulded polyethylene part in a single operation.
- 10. Device according to claim 1 wherein the support portion (12), the connection piece (28), the shaft (16) and the sealing means (E, 30) form a single moulded polyethylene part in a single operation.
- 11. A method of making, by means of plastic injection, a device (B) for connecting a branch pipe (54) on a fluid-transporting pipe system (C), said device (B) comprising:a support portion or sole (12) on a wall (10) of the fluid transporting pipe system (C); a connection piece (28) for the pipe (54); a cylindrical shaft (16) along an axis (51) which is intended to receive a perforating member (20) and in which the perforator can be moved by means of screwing; sealing means (E, 30) between the shaft (16) and the perforating member (20); said method being implemented with a device (mould) comprising an extended core (100) (mould portion) able to be separated from other portions of the mould and which receives or is used to form said sealing means (E, 30); wherein the core (100) is extracted from the moulded part by provoking an elastic and/or plastic deformation of the sealing means, the extraction being carried out by unscrewing the externally threaded core from the shaft whose screw thread has been obtained by moulding in contact with a threaded portion (104) of the core.
- 12. Device Method according to claim 11 in which the core (100) comprises an annular torus-shaped throat (101) coaxial with the longitudinal axis (102) of the core.
- 13. Method according to claim 11 wherein the core (100) is extracted from the moulded part after the moulded piece and the core (100) have left the mould.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 99 01077 |
Jan 1999 |
FR |
|
PRIORITY CLAIM
The is a U.S. national stage of application No. PCT/FR00/00078, filed on Jan. 14, 2000. Priority is claimed on that application and on the following application: Country: France, Application Ser. No. 99/01077 filed on Jan. 18, 1999.
PCT Information
| Filing Document |
Filing Date |
Country |
Kind |
| PCT/FR00/00078 |
|
WO |
00 |
| Publishing Document |
Publishing Date |
Country |
Kind |
| WO00/42342 |
7/20/2000 |
WO |
A |
US Referenced Citations (8)
| Number |
Name |
Date |
Kind |
|
4059291 |
Acda et al. |
Nov 1977 |
A |
|
4284459 |
Patel et al. |
Aug 1981 |
A |
|
4455482 |
Grandclement |
Jun 1984 |
A |
|
4551292 |
Fletcher et al. |
Nov 1985 |
A |
|
4684417 |
Grandclement |
Aug 1987 |
A |
|
5975117 |
Schweitzer et al. |
Nov 1999 |
A |
|
6012475 |
Taylor et al. |
Jan 2000 |
A |
|
6274073 |
Schafstein |
Aug 2001 |
B1 |
Foreign Referenced Citations (8)
| Number |
Date |
Country |
| 195 12 591 |
Oct 1996 |
DE |
| 196 30 029 |
Jan 1998 |
DE |
| 197 05 265 |
Aug 1998 |
DE |
| 726 419 |
Feb 1996 |
EP |
| 0 736 718 |
Oct 1996 |
EP |
| 0 821 193 |
Jan 1998 |
EP |
| 2 519 578 |
Apr 1982 |
FR |
| 2 757 442 |
Jun 1998 |
FR |