IP Library Granted Patent US 11,796,106
Granted Patent B2
US 11,796,106 · App. 17/240,465 · Granted Oct 24, 2023

Polyethylene pipe service system including quick connect means for polyethylene pipe tapping, plugging, and completion operations

Inventors: Olivier Zann (Bischheim, FR); Robin Cailloux (Bischheim, FR); Nicolas Horst (Bischheim, FR); Stephane Burgert (Bischheim, FR)
Assignee: TDW Delaware, Inc.
F16L37/256F16K1/308F16L47/34F16L55/07F16L55/1108Y10T137/613Y10T137/6137
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Quick Facts
Patent No.
US 11,796,106
App. No.
17/240,465
Granted
Oct 24, 2023
Kind
B2
Abstract

Embodiments of a polyethylene (“PE”) pipe servicing system of this disclosure may include a fusible PE fitting (F) providing a branch connection to a PE pipeline section or run (P), a valve ( 10 ) connected to the fitting and including quick connect/disconnect means, and a machine connectable to the valve including complementary quick connect/disconnect means. The quick connect means provide for full scope of operation, including cleaning, fusion, cool down, hot tap, plugging, and completion. No squeezing is used. The quick connect/disconnect means may include a first portion 20 of a cam profile and a second portion 40 of the cam profile complementary to that of the first. The machine may be a drilling or hot tapping machine ( 30 T), a plugging machine ( 30 P), or a completion machine ( 30 C), and their associated tools. The valve and machine are more lightweight and faster and easier to use than the prior art.

Claims (51)

1. A polyethylene pipe service system comprising:

a valve ( 10 ) adapted for connection to a saddle branch fitting (F) of a polyethylene pipe run (P), the valve including:

a disk ( 71 ) moveable in an axial direction between an open and a closed position and

a cylindrical-shaped upper end ( 13 ) located above the disk and including a first portion ( 20 or 40 ) of a non-threaded cam profile located on an inner wall ( 23 ) of the cylindrical-shaped upper end; and

a polyethylene pipe service machine ( 30 T, 30 P, or 30 C) including

a cylindrical-shaped lower end ( 33 ) containing a second portion ( 40 or 20 ) of the non-threaded cam profile located on an outer wall ( 67 ) of the cylindrical-shaped lower end; and

wherein when the first and second portions of the cam profile engage with one another, rotation of the polyethylene pipe service machine relative to the valve changes a vertical elevation of the polyethylene pipe service machine relative to the valve and connects the machine to the valve.

2. The polyethylene pipe service system of claim 1 , wherein:

the first portion of the cam profile includes a pair of tabs ( 21 ) located opposite one another; and

the second portion of the cam profile includes a pair of stair-stepped channels ( 41 ) sized to receive a corresponding tab of the pair of tabs.

3. The polyethylene pipe service system of claim 2 , further comprising, each stair-stepped channel including an open end ( 45 ), a closed end ( 47 ), and at least two stairs ( 61 ) located between the open and closed ends.

4. The polyethylene pipe service system of claim 3 , each stair-stepped channel including the open end at is lowest most elevation and the closed end at its highest most elevation.

5. The polyethylene pipe service system of claim 3 , wherein the rotation of the polyethylene pipe service machine relative to the valve causes an end ( 25 ) of the tab to contact the closed end of the stair-shaped channel.

6. The polyethylene pipe service system of claim 1 , further comprising, the polyethylene pipe service machine including a wheel ( 69 ) located toward, and arranged about, the cylindrical-shaped lower end of the polyethylene pipe service machine.

7. The polyethylene pipe service system of claim 1 , wherein:

the second portion of the cam profile includes a pair of tabs ( 21 ) located opposite one another; and

the first portion of the cam profile includes a pair of stair-stepped channels ( 41 ) sized to receive a corresponding tab of the pair of tabs.

8. The polyethylene pipe service system of claim 7 , further comprising, each stair-stepped channel including an open end ( 45 ), a closed end ( 47 ), and at least two stairs ( 61 ) located between the open and closed ends.

9. The polyethylene pipe service system of claim 8 , each stair-stepped channel including the open end at is lowest most elevation and the closed end at its highest most elevation.

10. The polyethylene pipe service system of claim 8 , wherein the rotation of the polyethylene pipe service machine relative to the valve causes an end ( 25 ) of the tab to contact the closed end of the stair-shaped channel.

11. A method for engaging a polyethylene pipe service machine ( 30 T, 30 C, or 30 P) to a valve ( 10 ) connected to a saddle branch fitting (F) of a polyethylene pipe run (P), the method comprising:

securing the valve to the saddle branch fitting, the valve including:

a disk ( 71 ) moveable in an axial direction between an open and a closed position; and

a cylindrical-shaped upper end ( 13 ) located above the disk and including a first portion ( 20 or 40 ) of a non-threaded cam profile located on an inner wall ( 23 ) of the cylindrical-shaped upper end;

positioning the polyethylene pipe service machine above and directly over the valve; the polyethylene pipe service machine including:

a cylindrical-shaped lower end ( 33 ) containing a second portion ( 40 or 20 ) of the non-threaded cam profile located on an outer wall ( 67 ) of the cylindrical-shaped lower end;

aligning the first and second portions of the cam profile to one another;

lowering the polyethylene pipe service machine into the valve until its downward travel is arrested by the first portion of the cam profile;

rotating the polyethylene pipe service machine relative to the valve until the rotation is arrested by the first portion of the cam profile.

12. The method of claim 11 , wherein:

the first portion of the cam profile includes a pair of tabs ( 21 ) located opposite one another; and

the second portion of the cam profile includes a pair of stair-stepped channels ( 41 ) sized to receive a corresponding tab of the pair of tabs.

13. The method of claim 12 , further comprising, each stair-stepped channel including an open end ( 45 ), a closed end ( 47 ), and at least two stairs ( 61 ) located between the open and closed ends.

14. The method of claim 13 , each stair-stepped channel including the open end at is lowest most elevation and the closed end at its highest most elevation.

15. The method of claim 13 , wherein the rotation of the polyethylene pipe service machine relative to the valve causes an end ( 25 ) of the tab to contact the closed end of the stair-shaped channel.

16. The method of claim 11 , further comprising, the polyethylene pipe service machine including a wheel ( 69 ) located toward, and arranged about, the cylindrical-shaped lower end of the polyethylene pipe service machine, the rotation occurring by turning the wheel.

17. The method of claim 11 , wherein:

the second portion of the cam profile includes a pair of tabs ( 21 ) located opposite one another; and

the first portion of the cam profile includes a pair of stair-stepped channels ( 41 ) sized to receive a corresponding tab of the pair of tabs.

18. The method of claim 17 , further comprising, each stair-stepped channel including an open end ( 45 ), a closed end ( 47 ), and at least two stairs ( 61 ) located between the open and closed ends.

19. The method of claim 18 , each stair-stepped channel including the open end at is lowest most elevation and the closed end at its highest most elevation.

20. The method of claim 18 , wherein the rotation of the polyethylene pipe service machine relative to the valve causes an end ( 25 ) of the tab to contact the closed end of the stair-shaped channel.

21. The method of claim 11 , further comprising, after the rotating, securing a collar of the polyethylene pipe service machine to the cylindrical-shaped upper end of the valve.

22. The polyethylene pipe service system of claim 1 , the valve further comprising:

a cylindrical-shaped lower end ( 11 ) located below the disk.

23. The polyethylene pipe service system of claim 22 , the polyethylene pipe service machine further comprising:

a collar ( 37 ) having a diameter greater than the cylindrical-shaped lower end of the polyethylene pipe service machine and adapted for connection to the cylindrical-shaped upper end of the valve.

24. A polyethylene pipe service system comprising:

a valve ( 10 ) adapted for connection to a saddle branch fitting (F), the valve including a disk ( 71 ) moveable in an axial direction between an open and a closed position and a cylindrical-shaped upper end ( 13 ) located above the disk, the cylindrical-shaped upper end containing a first portion ( 20 or 40 ) of a non-threaded cam profile; and

a polyethylene pipe service machine ( 30 T, 30 P, or 30 C) including a cylindrical-shaped lower end ( 33 ) containing a second portion ( 40 or 20 ) of the non-threaded cam profile;

the first and second portions of the cam profile adapted to engage with one another, wherein, when the first and second portions engage, rotation of the polyethylene pipe service machine relative to the valve changes a vertical elevation of the polyethylene pipe service machine relative to the valve.

Assignments (2)
SECURITY INTEREST Recorded Aug 11, 2022
From: TDW DELAWARE, INC.
To: CADENCE BANK
Reel/Frame 061147/0932 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2021
From: ZANN, OLIVIER; CAILLOUX, ROBIN; HORST, NICOLAS; BURGERT, STEPHANE
To: TDW DELAWARE, INC.
Reel/Frame 056042/0096 →
Continuity (4)
Continuation 16812985 · Mar 9, 2020
Provisional Application 62892351 · Aug 27, 2019
Provisional Application 62815207 · Mar 7, 2019
Related Publication 20210388928A1 · Dec 16, 2021