IP Library Granted Patent US 11,692,408
Granted Patent B2
US 11,692,408 · App. 17/127,425 · Granted Jul 4, 2023

Fluid connection assembly

Inventors: Matthew E. Kibler (Grand Junction, CO); Kyle Scholl (Dunlap, IL); Keith C. Johansen (Fruita, CO); Nicolas G. Snoke (Grand Junction, CO)
Assignee: FHE USA LLC
E21B33/038E21B17/046E21B23/02E21B33/06F16L37/002E21B33/0355F16L37/096F16L37/127
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Quick Facts
Patent No.
US 11,692,408
App. No.
17/127,425
Granted
Jul 4, 2023
Kind
B2
Abstract

A remotely-operated fluid connection assembly to hold higher internal pressures in larger diameters. The assembly comprises a fluid connection adapter and a fluid connection housing assembly. When the adapter enters the housing assembly: (A) locking elements on the housing assembly constrict about the adapter; and (B) at least a first seal section on the adapter sealingly contacts a first seal bore on the housing assembly. Progressive engagement of a locking ring upon the locking elements urges the locking elements to tighten against the adapter. Internal pressure encourages adapter displacement, which then further tightens the adapter against the locking elements as now restrained by the locking ring. Internal pressure further encourages the first seal section on the adapter to expand radially to tighten the contact with the first seal bore in the housing assembly.

Claims (42)

1. A fluid connection assembly, comprising:

a fluid connection adapter having first and second adapter ends, the fluid connection adapter providing a tapered lock engagement surface and at least a first seal section;

a fluid connection housing assembly having first and second housing ends, the fluid connection housing assembly providing a displaceable locking ring, a plurality of locking elements, and at least a first seal bore;

wherein each locking element is disposed to constrict radially via rotation about a corresponding pivot pin;

wherein each locking element has a locking element outer surface and a tapered locking element inner surface;

wherein, during entry of the second adapter end into the first housing end: (A) the locking elements are disposed to rotate such that the locking element inner surfaces oppose the lock engagement surface; and (B) the first seal section sealingly contacts the first seal bore;

such that when the locking ring is displaced, progressive engagement of a locking ring inner surface on the locking element outer surfaces maintains opposing tapers between the locking element inner surfaces and the lock engagement surface;

wherein the locking element inner surfaces are disposed to tighten against the lock engagement surface responsive to displacement of the second adapter end towards the first housing end during engagement of the locking ring inner surface on the locking element outer surfaces;

wherein the first seal section is disposed to expand radially responsive to introduction of internal pressure within the second adapter end, such that when the first seal section expands radially, the first seal section further tightens sealing contact against the first seal bore; and

wherein progressive engagement of the locking ring inner surface on the locking element outer surfaces further urges the locking element inner surfaces to tighten against the lock engagement surface.

2. The fluid connection assembly of claim 1 , in which a spring bias ordains a default rotational position for the locking elements about their corresponding pivot pins.

3. The fluid connection assembly of claim 1 , in which the fluid connection housing assembly further provides a quick test port, the quick test port comprising a fluid passageway from a fluid connection housing assembly exterior through to the first seal bore.

4. The fluid connection assembly of claim 1 , in which the second adapter end further includes a strengthening sleeve.

5. The fluid connection assembly of claim 1 , in which at least one remotely-operable actuator assembly energizes displacement of the locking ring.

6. A fluid connection assembly, comprising:

a fluid connection adapter having first and second adapter ends, the fluid connection adapter providing a tapered lock engagement surface and at least a first seal section;

a fluid connection housing assembly having first and second housing ends, the fluid connection housing assembly providing a displaceable locking ring, a plurality of locking elements, and at least a first seal bore;

wherein each locking element is disposed to constrict radially via rotation about a corresponding pivot pin,

wherein each locking element has a locking element outer surface and a tapered locking element inner surface;

wherein, during entry of the second adapter end into the first housing end: (A) the locking elements are disposed to rotate such that the locking element inner surfaces oppose the lock engagement surface; and (B) the first seal section sealingly contacts the first seal bore;

such that when the locking ring is displaced, progressive engagement of a locking ring inner surface on the locking element outer surfaces maintains opposing tapers between the locking element inner surfaces and the lock engagement surface; and

wherein the first seal section is disposed to expand radially responsive to introduction of internal pressure within the second adapter end, such that when the first seal section expands radially, the first seal section further tightens sealing contact against the first seal bore; and

wherein progressive engagement of the locking ring inner surface on the locking element outer surfaces further urges the locking element inner surfaces to tighten against the lock engagement surface.

7. The fluid connection assembly of claim 6 , in which a spring bias ordains a default rotational position for the locking elements about their corresponding pivot pins.

8. The fluid connection assembly of claim 6 , in which the fluid connection housing assembly further provides a quick test port, the quick test port comprising a fluid passageway from a fluid connection housing assembly exterior through to the first seal bore.

9. The fluid connection assembly of claim 6 , in which the second adapter end further includes a strengthening sleeve.

10. The fluid connection assembly of claim 6 , in which at least one remotely-operable actuator assembly energizes displacement of the locking ring.

11. A fluid connection assembly, comprising:

a fluid connection adapter having first and second adapter ends, the fluid connection adapter providing a tapered lock engagement surface and at least a first seal section;

the fluid connection adapter further providing a rib;

a fluid connection housing assembly having first and second housing ends, the fluid connection housing assembly providing a displaceable locking ring, a plurality of locking elements, at least a first seal bore, and a housing notch;

wherein each locking element is disposed to constrict radially via rotation about a corresponding pivot pin;

wherein each locking element has a locking element outer surface and a tapered locking element inner surface;

wherein, during entry of the second adapter end into the first housing end until the rib abuts the housing notch: (A) the locking elements are disposed to rotate such that the locking element inner surfaces oppose the lock engagement surface; and (B) the first seal section sealingly contacts the first seal bore;

such that when the locking ring is displaced, progressive engagement of a locking ring inner surface on the locking element outer surfaces maintains opposing tapers between the locking element inner surfaces and the lock engagement surface; and

wherein the first seal section is disposed to expand radially responsive to introduction of internal pressure within the second adapter end, such that when the first seal section expands radially, the first seal section further tightens sealing contact against the first seal bore;

wherein progressive engagement of the locking ring inner surface on the locking element outer surfaces further urges the locking element inner surfaces to tighten against the lock engagement surface.

12. The fluid connection assembly of claim 11 , in which the locking element inner surfaces are disposed to tighten against the lock engagement surface responsive to displacement of the second adapter end towards the first housing end during engagement of the locking ring inner surface on the locking element outer surfaces.

13. The fluid connection assembly of claim 11 , in which a spring bias ordains a default rotational position for the locking elements about their corresponding pivot pins.

14. The fluid connection assembly of claim 11 , in which the fluid connection housing assembly further provides a quick test port, the quick test port comprising a fluid passageway from a fluid connection housing assembly exterior through to the first seal bore.

15. The fluid connection assembly of claim 11 , in which the second adapter end further includes a strengthening sleeve.

16. The fluid connection assembly of claim 11 , in which at least one remotely-operable actuator assembly energizes displacement of the locking ring.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2021
From: SNOKE, NICOLAS G.
To: FHE USA LLC
Reel/Frame 054859/0192 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2021
From: KIBLER, MATTHEW E.
To: FHE USA LLC
Reel/Frame 054859/0557 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2021
From: JOHANSEN, KEITH C.
To: FHE USA LLC
Reel/Frame 054859/0773 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2021
From: SCHOLL, KYLE
To: FHE USA LLC
Reel/Frame 054859/0864 →
Continuity (4)
Continuation 16677428 · Nov 7, 2019
Continuation 16221279 · Dec 14, 2018
Provisional Application 62649008 · Mar 28, 2018
Related Publication 20210102436A1 · Apr 8, 2021