IP Library Granted Patent US 11,131,163
Granted Patent B2
US 11,131,163 · App. 16/152,184 · Granted Sep 28, 2021

Systems and methods for sealing a wellbore

Inventors: Timmothy Alain Lee (Tomball, TX); Joshua Magill (Cypress, TX)
Assignee: G&H Diversified Manufacturing LP
E21B33/1293E21B23/06E21B33/128E21B43/26
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Quick Facts
Patent No.
US 11,131,163
App. No.
16/152,184
Granted
Sep 28, 2021
Kind
B2
Abstract

A plug for sealing a wellbore includes a slip assembly including a plurality of arcuate slip segments, a nose cone coupled to the slip assembly and including a first end and a second end opposite the first end, wherein at least one of the slip assembly and the nose cone includes a plurality of circumferentially spaced pockets, and wherein at least one of the slip assembly and the nose cone includes a plurality of circumferentially spaced protrusions configured to be received in the pockets.

Claims (68)

1. A plug for sealing a wellbore, comprising:

a slip assembly comprising a plurality of arcuate slip segments;

a nose cone coupled to the slip assembly and comprising a first end and a second end opposite the first end; and

a packer comprising a first position configured to permit fluid flow across the plug when the plug is received in the wellbore, and a second position configured to seal the wellbore when the plug is positioned in the wellbore;

wherein one of the slip assembly and the nose cone comprises a plurality of circumferentially spaced pockets;

wherein the other of the slip assembly and the nose cone which does not comprise the pockets comprises a plurality of circumferentially spaced protrusions configured to be received in the pockets, and wherein each of the plurality of protrusions is defined by an outer face that extends orthogonally a central axis of the plug;

wherein the protrusions are received in the pockets to restrict relative rotation between the slip assembly and the nose cone when the packer is in the second position.

2. The plug of claim 1 , wherein:

the slip assembly comprises the pockets, at least one pocket extending into an inner surface of each slip segment of the slip assembly; and

the nose cone comprises the protrusions, the protrusions extending from the first end of the nose cone.

3. The plug of claim 1 , further comprising:

a mandrel comprising a central passage, wherein the packer is disposed about the mandrel;

wherein one of the mandrel and the nose cone comprise an arcuate recess;

wherein the other of the mandrel and the nose cone which does not comprise the arcuate recess comprises an arcuate protrusion.

4. The plug of claim 3 , wherein:

the mandrel comprises the arcuate recess, the arcuate recess extending into an end of the mandrel; and

the nose cone comprises the arcuate protrusion, the arcuate protrusion extending from the second end of the nose cone.

5. The plug of claim 3 , further comprising:

an engagement disk disposed about the mandrel;

a first clamping member disposed about the mandrel;

wherein at least one of the engagement disk and the first clamping member comprises a recess and wherein at least one of the engagement disk and first clamping member comprises a protrusion configured to be received in the recess to restrict relative rotation between the engagement disk and the first clamping member.

6. The plug of claim 5 , wherein:

the engagement disk comprises the protrusion, the protrusion extending from an end of the engagement disk; and

the first clamping member comprises the recess, the recess extending into an end of the first clamping member;

wherein the protrusion of the engagement disk and the recess of the first clamping member are each hexagonal.

7. The plug of claim 5 , further comprising:

a second clamping member disposed about the mandrel, wherein the first and second clamping members each apply a compressive force to the packer in response to the plug being actuated from a first position to a second position;

wherein the second clamping member comprises an outer surface including a plurality of circumferentially spaced planar surfaces;

wherein each slip segment of the slip assembly comprises a planar inner surface in engagement with one of the planar surfaces of the second clamping member.

8. The plug of claim 3 , wherein:

the mandrel comprises a first end, a second end opposite the first end, and an outer surface extending between the first end and the second end;

the outer surface of the mandrel comprises a plurality of circumferentially spaced recesses; and

a plurality of arcuate inserts are received in the plurality of circumferentially spaced recesses of the mandrel.

9. A plug for sealing a wellbore, comprising:

a mandrel comprising a central passage;

a packer disposed about the mandrel, the packer configured to seal the wellbore in response to the plug being actuated from a first position to a second position; and

a nose cone coupled to the mandrel, wherein the nose cone comprises an inner surface including a molded protrusion extending therefrom, wherein the molded protrusion is located on an axially extending portion of the inner surface that extends entirely about a central axis of the plug, wherein the molded portion is configured to prevent a spherical ball from sealing against the inner surface of the nose cone.

10. The plug of claim 9 , wherein the nose cone is molded from a nonmetallic material.

11. The plug of claim 9 , further comprising:

an engagement disk disposed about the mandrel and comprising a protrusion extending from an end of the engagement disk;

a first clamping member disposed about the mandrel and comprising a recess extending into an end thereof, wherein the recess is configured to receive the protrusion of the engagement disk to restrict relative rotation between the engagement disk and the first clamping member.

12. The plug of claim 9 , wherein both the engagement disk and the first clamping member are molded from a nonmetallic material.

13. A plug for sealing a wellbore, comprising:

a mandrel comprising a central passage;

a packer disposed about the mandrel, the packer configured to seal the wellbore in response to the plug being actuated from a first position to a second position; and

a nose cone coupled to the mandrel and comprising a body comprised of a first material, wherein the nose cone comprises an outer surface including an annular fin also comprised of the first material and extending continuously about an entire circumference of the nose cone and which is configured to provide a turbulent fluid flow in response to a fluid flow in the wellbore flowing around the plug.

14. The plug of claim 13 , wherein the fin is configured to increase the surface area of the outer surface of the nose cone.

15. The plug of claim 13 , further comprising:

an engagement disk disposed about the mandrel and comprising a protrusion extending from an end of the engagement disk;

a first clamping member disposed about the mandrel and comprising a recess extending into an end thereof, wherein the recess is configured to receive the protrusion of the engagement disk to restrict relative rotation between the engagement disk and the first clamping member.

16. The plug of claim 15 , further comprising:

a second clamping member disposed about the mandrel, wherein the first and second clamping members each apply a compressive force to the packer in response to the plug being actuated from a first position to a second position;

a slip assembly disposed about the mandrel and comprising a plurality of arcuate slip segments, wherein the slip segments are configured to affix the plug to a string disposed in the wellbore.

17. The plug of claim 13 , wherein the annular fin is monolithically formed with the body of the nose cone.

18. A plug for sealing a wellbore, comprising:

a mandrel comprising an outer surface including a plurality of ratchet teeth; and

a body lock ring assembly comprising a plurality of arcuate lock ring segments, wherein an inner surface of each lock ring segment comprises a plurality of ratchet teeth configured to matingly engage the ratchet teeth of the mandrel;

wherein the mandrel comprises a body to which the plurality of ratchet teeth of the mandrel are coupled, and wherein the body comprises a first material having a shear strength that is less than a shear strength of a second material of which the plurality of ratchet teeth is comprised;

wherein the body lock ring is configured to lock the plug in sealing engagement with an inner surface of a tubular member disposed in the wellbore.

19. The plug of claim 18 , further comprising

a packer disposed about the mandrel; and

a first clamping member disposed about the mandrel and configured to apply a clamping force against the packer;

wherein each arcuate lock ring segment comprises a frustoconical outer surface configured to engage a frustoconical inner surface of the first clamping member.

20. The plug of claim 18 , further comprising an annular lock ring retainer, wherein the lock ring retainer is received in a groove formed in each of the arcuate lock ring segments.

21. The plug of claim 18 , wherein:

the outer surface of the mandrel comprises a plurality of circumferentially spaced recesses formed in the body of the mandrel;

a plurality of arcuate inserts are received in the plurality of circumferentially spaced recesses of the mandrel, and wherein each arcuate insert comprises an outer surface including the plurality of ratchet teeth of the mandrel configured to matingly engage the ratchet teeth of the arcuate ring segments of the body lock ring; and

the plurality of arcuate inserts each comprises the second material having a second shear strength.

Assignments (2)
SECURITY INTEREST Recorded Jun 30, 2025
From: G & H DIVERSIFIED MFG., L.P.
To: PNC BANK, NATIONAL ASSOCIATION
Reel/Frame 071758/0583 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2018
From: LEE, TIMMOTHY ALAIN; MAGILL, JOSHUA
To: G&H DIVERSIFIED MANUFACTURING LP
Reel/Frame 047073/0292 →
Continuity (3)
Provisional Application 62734803 · Sep 21, 2018
Provisional Application 62569447 · Oct 6, 2017
Related Publication 20190106962A1 · Apr 11, 2019
Cited By (2)
US 12,385,351 US 12,607,118