IP Library Granted Patent US 11,834,922
Granted Patent B2
US 11,834,922 · App. 17/633,196 · Granted Dec 5, 2023

Piston and gate assembly for kinetic pressure control apparatus ram

Inventors: Billy J. Gallagher (Houston, TX); Bobby J. Gallagher (Houston, TX); Steven A. Angstmann (Houston, TX); Robert Frith (Queensland, AU)
Assignee: Kinetic Pressure Control Ltd.
E21B33/062
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Quick Facts
Patent No.
US 11,834,922
App. No.
17/633,196
Granted
Dec 5, 2023
Kind
B2
Abstract

A ram for a blowout preventer has a pressure chamber having a piston movably disposed therein, and a charge disposed at one end of the pressure chamber. A gate is coupled to the piston on a side opposed to the charge. The gate is arranged to move across a through bore in a housing disposed at an opposed end of the pressure chamber. A coupling between the piston and the gate has sufficient strength to transfer kinetic energy of the gate to the piston.

Claims (32)

1. A ram for a blowout preventer, comprising:

a pressure chamber having a piston movably disposed therein;

a charge disposed at one end of the pressure chamber;

a one-piece planar gate coupled to the piston on a side of the piston opposed to the charge, the gate arranged to move across a through bore in a blowout preventer housing disposed at an opposed end of the pressure chamber,

wherein the coupling comprises a tongue and groove coupling, the tongue defined by an end of the planar gate having a locking feature and the groove defined by a slot on the piston having a mating locking feature; wherein the tongue locking feature consists of splines and the groove locking feature consists of mating splines in one face of the piston; wherein

the gate is configured to move along a passage transverse to the through bore; and

wherein the coupling between the piston and the gate is configured to transfer deceleration of the piston to the gate.

2. The ram of claim 1 further comprising a locator dowel and a spring disposed in one face of the longitudinal end of the gate and a correspondingly located hole in the slot.

3. The ram of claim 1 wherein the gate comprises a smaller thickness at an end disposed in a slot in the piston than a thickness of a remainder of the gate.

4. The ram of claim 1 wherein the gate comprises a section intermediate the piston and a longitudinal end of the gate opposed to the piston having a thickness greater than a thickness of the gate at the opposed longitudinal end.

5. The ram of claim 1 wherein the piston comprises a negative space on a face opposed to the gate.

6. The ram of claim 1 wherein an energy absorbing element is disposed in the pressure chamber at an end of the pressure chamber opposed to the charge, the energy absorbing element arranged to decelerate the piston upon contact with the energy absorbing element.

7. A method for closing a through bore in a blowout preventer housing, comprising:

actuating a pyrotechnic charge;

applying gas pressure from the actuated charge to a movable piston;

transferring force generated by the gas pressure applied to the piston to a one-piece planar gate to generate kinetic energy

wherein the planar gate is coupled to the piston via a tongue and groove coupling, the tongue defined by an end of the planar gate having a locking feature and the groove defined by a slot on the piston having a mating locking feature; wherein the tongue locking feature consists of splines and the groove locking feature consists of mating splines in one face of the piston; moving

the gate across the through bore along a passage transverse to the through bore;

decelerating the piston proximate the through bore; and

transferring deceleration of the piston to the gate.

8. The method of claim 7 wherein the piston comprises a negative space on a face opposed to the gate.

9. The method of claim 7 further comprising transferring energy from the piston to an energy absorbing element disposed in a path of the movable piston.

10. A blowout preventer, comprising:

a housing having a through bore;

the housing having a passage transverse to the thorough bore;

a pressure chamber having a piston movably disposed therein;

a charge disposed at one end of the pressure chamber;

a one-piece planar gate coupled to the piston and configured to move along the passage and across the through bore in response to activation of the charge,

wherein the coupling comprises a tongue and groove coupling, the tongue defined by an end of the planar gate having a locking feature and the groove defined by a slot on the piston having a mating locking feature; wherein the tongue locking feature consists of splines and the groove locking feature consists of mating splines in one face of the piston; and

wherein the coupling between the piston and the gate is configured to transfer deceleration of the piston to the gate.

11. The blowout preventer of claim 10 further comprising an energy absorbing element configured to decelerate the piston upon contact with the energy absorbing element.

12. The blowout preventer of claim 10 wherein the piston comprises a negative space on a face opposed to the gate.

Assignments (4)
SECURITY INTEREST Recorded Apr 22, 2025
From: SCOUT SURFACE SOLUTIONS LLC; WSI ENTERPRISES, INC.; WSI ACQUISITION, LLC; KINETIC PRESSURE CONTROL LIMITED
To: MAPLEMARK BANK
Reel/Frame 070917/0693 →
RELEASE OF SECURITY INTEREST Recorded Apr 17, 2025
From: LENDER JB, LLC
To: KINETIC PRESSURE CONTROL LTD.
Reel/Frame 070873/0705 →
SECURITY INTEREST Recorded Jun 25, 2024
From: KINETIC PRESSURE CONTROL LIMITED
To: LENDER JB, LLC
Reel/Frame 067832/0898 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2022
From: GALLAGHER, BILLY; GALLAGHER, BOBBY; FRITH, ROBERT; ANGSTMANN, STEVEN
To: KINETIC PRESSURE CONTROL LTD
Reel/Frame 058900/0370 →
Continuity (2)
Provisional Application 62887119 · Aug 15, 2019
Related Publication 20220275697A1 · Sep 1, 2022