IP Library Patent Application 18178075
Patent Application
App. No. 18/178,075

SINGLE OR MULTI-DUROMETER ELASTOMER, SELF-ACTUATING, DYNAMIC, STRESS SUPPRESSOR FOR HOT TAPPING TOOLS

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Quick Facts
Patent No.
US None
App. No.
18/178,075
Abstract

Embodiments of a plugging tool ( 10 ) of this disclosure a control bar head ( 20 ) and at least one sealing head ( 30 , 40 ) pivotally connected to the control bar head, the control bar head including a stress suppressor ( 50 ) located at a lower end ( 25 ) of the control bar head, the stress suppressor including an elastomeric element ( 51 ). The stress suppressor can act as a dual-stage suppressor, there being a primary (first stage) and a secondary (second stage) stress suppressor or zone ( 50 A, 50 B). The primary stress suppressor has an arched-shaped lowermost end ( 58 ) located between a pair of spaced-apart feet ( 21 ) of the control bar head, the feet having lateral edges ( 23 ) and comprising the secondary stress suppressor. During rotation of the tool into the pipe, stress to the pipe is reduced in a range of 5X to 14X relative to a plugging tool without the stress suppressor.

Claims (25)

1 . A plugging tool ( 10 ) adapted for insertion into a lateral access connection (A) to a pipe (P), the plugging tool including a control bar head ( 20 ) and at least one sealing head ( 30 , 40 ) pivotally connected to the control bar head, the control bar head including:

a stress suppressor ( 50 ) located at a lower end ( 25 ) of the control bar head, the stress suppressor including an elastomeric element ( 51 ).

2 . The plugging tool of claim 1 , the stress suppressor further comprising:

a primary stress suppressor ( 50 A) arranged to lengthen in an axial direction of the pipe when under an applied load; and

a secondary stress suppressor ( 50 B) arranged to widen in a radial direction of the pipe when under the applied load.

3 . The plugging tool of claim 2 , wherein the secondary stress suppressor comprises a pair of spaced-apart feet (21) including curved lateral edges ( 23 ); and wherein the primary stress suppressor comprises an arched-shaped lowermost end ( 58 ) located between the pair of spaced-apart feet.

4 . The plugging tool of claim 3 , the primary stress suppressor having a length greater than that of the secondary stress suppressor.

5 . The plugging tool of claim 1 , wherein the elastomeric element includes a dual durometer elastomeric element.

6 . The plugging tool of claim 1 , further comprising:

the stress suppressor including at least one non-elastomeric element (53) arranged adjacent the elastomeric element.

7 . The plugging tool of claim 6 , wherein the at least one non-elastomeric element and the elastomeric element are arranged as a stack (55).

8 . A method for redistributing the applied force to an inner wall (W) of a pipe (P) during an isolation of the pipe, the method including use of a plugging tool ( 10 ), adapted for insertion into a lateral access connection (A) to the pipe, the plugging tool including a control bar head ( 20 ) and at least one sealing head ( 30 , 40 ) pivotally connected to the control bar head, the control bar head including a stress suppressor ( 50 ) located at a lower end ( 25 ) of the control bar head, the stress suppressor including an elastomeric element ( 51 ), the method comprising:

lowering the plugging tool into a lateral access connection (A) to the pipe;

rotating the sealing head into a position for sealing against the inner wall; and

during at least a portion of the rotating, suppressing stress experienced by the inner wall by compressing the elastomeric element against the inner wall.

9 . The method of claim 8 , wherein the stress suppressor comprises a primary stress suppressor (50A) arranged to lengthen in an axial direction of the pipe when under an applied load; and a secondary stress suppressor ( 50 B) arranged to widen in a radial direction of the pipe when under the applied load.

10 . The method of claim 9 , wherein the secondary stress suppressor comprises

a pair of spaced-apart feet ( 21 ) having curved lateral edges ( 23 ); and

wherein the primary stress suppressor has an arched-shaped lowermost end ( 58 ) located between the pair of spaced-apart feet.

11 . The method of claim 9 , wherein the primary stress suppressor has a length greater than that secondary stress suppressor, the primary stress suppressor during the rotating contacting the inner wall prior to the secondary suppressor contacting the inner wall.

12 . The method of claim 8 , wherein the elastomeric element includes a dual durometer elastomeric element.

13 . The method of claim 8 , wherein the stress suppressor includes at least one non-elastomeric element (53) arranged adjacent the elastomeric element.

14 . The method of claim 12 , wherein the at least one non-elastomeric element and the elastomeric element are arranged as a stack (55).

15 . The method of claim 8 , wherein during the rotating stress to the pipe is reduced in a range of 5X to 14X relative to a plugging tool without the stress suppressor.

16 . The method of claim 8 , wherein the pipe is a schedule 40 or below pipe.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2023
From: POE, ROGER L.; MASLEN, JON; LI, QI; LANDRETH, KOLTON
To: TDW DELAWARE, INC.
Reel/Frame 062875/0316 →