IP Library › Granted Patent US 12,180,794
Granted Patent B2
US 12,180,794 · App. 17/766,418 · Granted Dec 31, 2024

Tool and a method for at least one of gripping, expanding, and penetrating a wall of a bore

Inventor: Thomas Berge (Stavanger, NO)
Assignee: E Holstad Holding AS
E21B23/01E21B33/1291
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Quick Facts
Patent No.
US 12,180,794
App. No.
17/766,418
Granted
Dec 31, 2024
Kind
B2
Abstract

A tool and a method are for at least one of gripping, expanding, and penetrating a wall of a bore. The tool has a first tool part and a second tool part arranged axially movable relative to each other. The first tool part has a solid wedge, whereas the second tool part has at least one wedge arm. The first tool part further has at least one influencing portion configured to be radially movable upon contact with the at least one wedge arm of the second tool part. The at least one wedge arm is configured to be moved axially along the solid wedge so as to be forced radially outwards and thus push the at least one influencing portion radially outwards.

Claims (43)

1. A tool for at least one of gripping, expanding, and penetrating a wall of a bore, the tool comprising a first tool part and a second tool part arranged axially movable relative to each other, wherein the first tool part comprises a solid wedge, whereas the second tool part comprises at least one wedge arm;

wherein the first and second tool parts are aligned so that a tip of the solid wedge is pointed towards a tip of the at least one wedge arm;

wherein the first tool part also comprises at least one influencing portion configured to be radially movable upon contact with the at least one wedge arm of the second tool part;

wherein, when the tool is activated and the first and second tool parts are forced against each other, the at least one wedge arm is configured to be moved axially along the solid wedge so as to be forced radially outwards and thus push the at least one influencing portion radially outwards for at least one of gripping, expanding, and penetrating the wall of the bore, and

wherein a tip of the at least one wedge arm is a double wedge configured to become wedged between the solid wedge and the at least one influencing portion, so that when the first and second tool parts are forced towards each other, the at least one wedge arm is urged radially outwards by the solid wedge and the at least one influencing portion is urged radially outwards by the solid wedge and the at least one wedge arm.

2. The tool according to claim 1 , wherein the double wedge has a first slanted face configured to slide on the solid wedge so that the tip of the at least one wedge arm is urged radially outwards, and a second slanted face opposite the first slanted face and configured to urge the influencing portion radially outwards.

3. The tool according to claim 1 , wherein a finger connects the at least one influencing portion to the first tool part.

4. The tool according to claim 3 , wherein the finger is cantilevered from the first tool part.

5. The tool according to claim 3 , wherein the finger is hingedly connected to the first tool part.

6. The tool according to claim 3 , wherein when the tool is in an inactive position, the finger is positioned in a recess configured for housing the finger.

7. The tool according to claim 1 , wherein when the tool is in an inactive position, a radial extent of the at least one influencing portion is equal to or less than a radial extent of the first tool part.

8. The tool according to claim 1 , wherein the bore is a pipe; and

wherein when the tool is in an active position, the at least one influencing portion is configured for expanding the wall of the pipe.

9. The tool according to claim 1 , wherein the bore is a pipe; and

wherein the at least one influencing portion is configured for penetrating the wall of the pipe.

10. The tool according to claim 6 , wherein the finger comprises two spaced-apart finger portions providing a space for housing a portion of the solid wedge of the first tool part when the tool is in an inactive position.

11. A tool for at least one of gripping, expanding, and penetrating a wall of a bore, the tool comprising a first tool part and a second tool part arranged axially movable relative to each other, wherein the first tool part comprises a solid wedge, whereas the second tool part comprises at least one wedge arm;

wherein the first and second tool parts are aligned so that a tip of the solid wedge is pointed towards a tip of the at least one wedge arm,

wherein the first tool part also comprises at least one influencing portion configured to be radially movable upon contact with the at least one wedge arm of the second tool part,

wherein, when the tool is activated and the first and second tool parts are forced against each other, the at least one wedge arm is configured to be moved axially along the solid wedge so as to be forced radially outwards and thus push the at least one influencing portion radially outwards for at least one of gripping, expanding, and penetrating the wall of the bore,

wherein the bore is a pipe; and wherein the at least one influencing portion is configured for penetrating the wall of the pipe, and

wherein the at least one influencing portion is provided with an aperture being in fluid communication with a conduit configured for receiving an injection fluid from a source of injection fluid.

12. The tool according to claim 11 , wherein a finger connects the at least one influencing portion to the first tool part, and wherein the solid wedge comprises a recess configured for housing the finger when the tool is in an inactive position.

13. A method of at least one of gripping, expanding, and penetrating a wall of a bore, the method comprising:

providing the tool according to claim 1 ;

connecting the tool to a control device configured for operating the tool;

running the tool into the bore and down to a desired location within the bore; and

activating the tool for at least one of gripping, expanding, and penetrating the wall of the bore.

14. A method of at least one of gripping, expanding, and penetrating a wall of a bore, the method comprising:

providing a tool for at least one of gripping, expanding, and penetrating a wall of a bore, the tool comprising:

a first tool part and a second tool part arranged axially movable relative to each other, wherein the first tool part comprises a solid wedge, whereas the second tool part comprises at least one wedge arm;

wherein the first and second tool parts are aligned so that a tip of the solid wedge is pointed towards a tip of the at least one wedge arm,

wherein the first tool part also comprises at least one influencing portion configured to be radially movable upon contact with the at least one wedge arm of the second tool part,

wherein, when the tool is activated and the first and second tool parts are forced against each other, the at least one wedge arm is configured to be moved axially along the solid wedge so as to be forced radially outwards and thus push the at least one influencing portion radially outwards for at least one of gripping, expanding, and penetrating the wall of the bore,

connecting the tool to a control device configured for operating the tool;

running the tool into the bore and down to a desired location within the bore, wherein the bore is a pipe, and wherein the tool is provided with an influencing portion provided with an aperture being in fluid communication with a conduit configured for receiving an injection fluid from a source of injection fluid;

activating the tool for at least one of gripping, expanding, and penetrating the wall of the bore; and

injecting said injection fluid into an annulus defined between an outside of the pipe and a bore surrounding the pipe.

15. The tool according to claim 2 , wherein a finger connects the at least one influencing portion to the first tool part.

16. The tool according to claim 4 , wherein when the tool is in an inactive position, the finger is positioned in a recess configured for housing the finger.

17. The tool according to claim 5 , wherein when the tool is in an inactive position, the finger is positioned in a recess configured for housing the finger.

18. The tool according to claim 1 , wherein the double wedge comprises a wedge face that is slanted upwards with respect to a longitudinal axis of the at least one wedge arm, and a wedge face that is slanted downwards with respect to a longitudinal axis of the at least one wedge arm.

19. The tool according to claim 1 , wherein the double wedge has an arrow-like shape.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2023
From: BERGE, THOMAS
To: E HOLSTAD HOLDING AS
Reel/Frame 065643/0916 →
Priority Claims (1)
NO 20191257 · Oct 21, 2019 · national
Continuity (1)
Related Publication 20240052716A1 · Feb 15, 2024