IP Library › Granted Patent US 12,305,452
Granted Patent B2
US 12,305,452 · App. 18/773,846 · Granted May 20, 2025

Centralizer having internal stop collar

Inventors: Darko Arsoski (Angus, GB); Douglas Brian Farley (Missouri City, TX); Shenal Mekson (Antioch, IL)
E21B17/1078E21B17/006E21B17/1028
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Quick Facts
Patent No.
US 12,305,452
App. No.
18/773,846
Granted
May 20, 2025
Kind
B2
Abstract

A centralizer for mounting onto a downhole tubular incudes a cylindrical body. The body has: a plurality of blades forming a periphery thereof, a first portion with an inner surface, and a second portion having a groove formed in an inner surface thereof for receiving a stop collar. The stop collar includes: a compressible slip ring having teeth formed in an inner surface thereof and a pair of tapered outer surfaces, and a pair of cam rings, each cam ring having a tapered inner surface. An outer diameter of each cam ring is greater than a diameter of the inner surface of the first portion and less than a diameter of the groove. An assembly tool is operable to drive the tapered surfaces together, thereby compressing the slip ring such that the teeth engage a periphery of the downhole tubular.

Claims (64)

1. A centralizer for mounting onto a downhole tubular, comprising:

a cylindrical body having:

a plurality of blades forming a periphery thereof,

a first portion with an inner surface, and

a second portion having a groove formed in an inner surface thereof for receiving a stop collar; and

the stop collar, comprising:

a compressible slip ring having teeth formed in an inner surface thereof and a pair of tapered outer surfaces, and

a pair of cam rings, each cam ring having a tapered inner surface, wherein:

an outer diameter of each cam ring is greater than a diameter of the inner surface of the first portion and less than a diameter of the groove,

an assembly tool is operable to drive the tapered surfaces together, thereby compressing the slip ring such that the teeth engage a periphery of the downhole tubular,

the body further has a third portion having a constant and reduced inner diameter relative to the second portion,

the second portion is located between the first and third portions,

the groove is bounded by a pair of stop shoulders, and

one of the cam rings engages one of the stop shoulders while driving the tapered surfaces together.

2. The centralizer of claim 1 , wherein:

the stop collar further comprises a locking system,

the locking system is operable to engage while the tapered surfaces are driven together, and

the locking system is operable to prevent separation of the tapered surfaces.

3. The centralizer of claim 2 , wherein the locking system comprises a pair of mateable ratchet profiles, each ratchet profile formed adjacent to an end of a respective cam ring.

4. The centralizer of claim 1 , wherein:

a clearance is formed between an outer surface of the cam rings and an inner surface of the groove, and

the clearance is sufficient so that the downhole tubular is freely rotatable relative to the centralizer body.

5. The centralizer of claim 1 , wherein:

a length of the groove is greater than an engaged length of the stop collar, thereby forming a gap between the stop collar and the stop shoulders.

6. The centralizer of claim 1 , wherein:

the body is made from a non-ferrous metal or alloy, and

the stop collar is made from steel.

7. The centralizer of claim 1 , wherein each cam ring has a solid wall without slots and without splits.

8. The centralizer of claim 1 , wherein the blades and the body are constructed as one-piece.

9. The centralizer of claim 1 , wherein:

the first portion of the cylindrical body has a threaded inner surface,

the threaded inner surface has a major diameter and a minor diameter,

an outer diameter of each cam ring is greater than the minor diameter of the threaded inner surface, and

screwing the assembly tool into the threaded surface is operable to drive the tapered surfaces together.

10. The centralizer of claim 9 , wherein:

the centralizer further comprises the assembly tool having a head portion with an enlarged outer diameter and a shank portion with a reduced outer diameter,

the shank portion has a threaded outer surface mateable with the threaded inner surface of the body, and

the assembly tool is cylindrical.

11. The centralizer of claim 1 , wherein:

the centralizer further comprises the assembly tool,

the assembly tool comprises a housing, a mandrel, a sleeve, and a linear actuator,

the sleeve is insertable into the body for engagement with one of the cam rings,

the mandrel has a bore for receiving the body and a cap for engagement with an end of the body,

the housing has a face operable to engage the sleeve,

each of the housing and the mandrel have a flange, and

the linear actuator is operable to drive the flanges toward each other, thereby advancing the sleeve into the body.

12. A centralizer for mounting onto a downhole tubular, comprising:

a cylindrical body having:

a plurality of blades forming a periphery thereof,

a first portion with an inner surface, and

a second portion having a groove formed in an inner surface thereof for receiving a stop collar; and

the stop collar, comprising:

a compressible slip ring having teeth formed in an inner surface thereof and a pair of tapered outer surface, and

a pair of cam rings, each cam ring having a tapered inner surface,

wherein:

an outer diameter of each cam ring is greater than a diameter of the inner surface of the first portion and less than a diameter of the groove,

an assembly tool is operable to drive the tapered surface together, thereby compressing the slip ring such that the teeth engage a periphery of the downhole tubular,

the centralizer further comprises the assembly tool,

the assembly tool comprises a housing, a mandrel, a sleeve, and a linear actuator,

the sleeve is insertable into the body for engagement with one of the cam rings,

the mandrel has a bore for receiving the body and a cap for engagement with an end of the body,

the housing has a face operable to engage the sleeve,

each of the housing and the mandrel have a flange, and

the linear actuator is operable to drive the flanges toward each other, thereby advancing the sleeve into the body.

Continuity (2)
Provisional Application 63587459 · Oct 3, 2023
Related Publication 20250109640A1 · Apr 3, 2025
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