IP Library Patent Application 17926491
Patent Application
App. No. 17/926,491

BIDIRECTIONAL PRESSURE-INTENSIFIED SEAL

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Quick Facts
Patent No.
US None
App. No.
17/926,491
Abstract

A pressure-energized bidirectional seal having a main body having a first end and a second end and a pair of legs extending from the second end of the main body, the pair of legs having an inner surface and an outer surface, the inner surface forming a hollow interior opening in a first direction. The bidirectional seal includes at least one rib extending from the outer surfaces and configured to sealingly engage a mating surface of a mating body the at least one rib forming a sealing zone opening in a second direction opposite of the first direction.

Claims (31)

1 . A pressure-energized bidirectional seal, comprising:

a main body having a first end and a second end;

a pair of legs extending from the second end of the main body, the pair of legs having an inner surface and an outer surface, the inner surface forming a hollow interior opening in a first direction; and

at least one rib extending from the outer surfaces and forming a sealing zone opening in a second and generally opposite direction from the first direction, the at least one rib configured to sealingly engage a mating surface of a mating body.

2 . The seal of claim 1 , wherein the at least one rib extends toward the first end.

3 . The seal of claim 1 , wherein the at least one rib is formed having a tip to sealingly engage the mating surface, the tip having a planar surface.

4 . The seal of claim 1 , wherein the at least one rib comprises three spaced apart ribs extending from the outer surfaces to sealingly engage the mating surface.

5 . The seal of claim 4 , wherein the three spaced apart ribs form spaced apart sealing zones therebetween opening in the second direction.

6 . The seal of claim 1 , wherein the seal is formed of a non-metallic material.

7 . The seal of claim 1 , wherein the seal is formed of a polytetrafluoroethylene-based (PTFE) material, a polyether ether ketone-based (PEEK) material, or an elastic polymer material.

8 . The seal of claim 1 , wherein the seal is formed of nickel-copper alloys, carbon steels, stainless steels, chromium steels, high-nickel chromium steels, nickel-chromium alloys, nickel-molybdenum-chromium alloys, nickel-chromium-cobalt alloys, cobalt-chromium-nickel alloys, cobalt-nickel-chromium-tungsten alloys, nickel-chromium-tungsten-molybdenum alloys, nickel-chromium-aluminum-iron alloys, or nickel-chromium-cobalt alloys.

9 . The seal of claim 1 , wherein the main body of the seal is formed of a first material and the legs are formed of a second and different material.

10 . The seal of claim 1 , wherein the main body and legs are formed of a first material and the plurality of ribs are formed of a second material.

11 . The seal of claim 1 , wherein the at least one rib comprises three spaced apart ribs extending from the outer surfaces to sealingly engage the mating surface, at least one of the ribs formed of a material different from the other ribs.

12 . The seal of claim 1 , further comprising a coating covering at least a portion of the at least one rib.

13 . A bidirectional pressure-energized seal comprising:

a main body formed having a first upper surface and an opposed bottom second surface, an inner and an outer sidewall extending between the first and second surfaces;

an inner leg and an outer leg extending from the second surface, the inner and outer legs having an outer surface and an inner surface, the inner surfaces forming a hollow interior opening in a first direction; and

a plurality of spaced apart ribs extending from the outer leg outer surface and sized to sealingly engage a surface of a mating body, at least one of the plurality of ribs angularly extending toward the upper surface of the main body and forming a sealing zone opening in a second direction generally opposite to the first direction.

14 . The bidirectional pressure-energized seal of claim 13 wherein the seal is formed of a polytetrafluoroethylene-based (PTFE) material, a polyether ether ketone-based (PEEK) material, or an elastic polymer material.

15 . The bidirectional pressure-energized seal of claim 13 wherein the seal is formed of nickel-copper alloys, carbon steels, stainless steels, chromium steels, high-nickel chromium steels, nickel-chromium alloys, nickel-molybdenum-chromium alloys, nickel-chromium-cobalt alloys, cobalt-chromium-nickel alloys, cobalt-nickel-chromium-tungsten alloys, nickel-chromium-tungsten-molybdenum alloys, nickel-chromium-aluminum-iron alloys, or nickel-chromium-cobalt alloys.

16 . The bidirectional pressure-energized seal of claim 13 wherein the plurality of ribs are formed having a planar end surface to sealingly engage the mating surface.

17 . The bidirectional pressure-energized seal of claim 13 wherein the plurality of ribs comprises three ribs.

18 . The bidirectional pressure-energized seal of claim 13 further comprising a coating disposed over the plurality of ribs.

19 . The bidirectional pressure-energized seal of claim 13 wherein each rib of the plurality of ribs is of a constant thickness.

20 . A method of installing a bidirectional pressure-energized seal, the method comprising:

providing a bi-directional pressure-energized seal having a main body having a first upper surface and a second lower surface and a pair of legs extending from the second surface of the main body, the legs having an inner surface and an outer surface, the inner surface form a hollow interior opening into a first direction, and further including a plurality ribs extending from the outer surface in a direction toward the first upper surface, the plurality of ribs forming sealing zones opening in a second direction generally opposite the first direction;

providing a fluid conduit with an outer surface;

providing a valve, the valve being configured to receive a portion of the fluid conduit and having a mating surface for engaging a seal;

seating the bidirectional seal on the outer surface of the fluid conduit; and

inserting a portion of the fluid conduit into the valve such that the bidirectional seal sealingly engages the mating surface of the valve.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2023
From: NASH, DAVID HUGH; GORASH, YEVGEN; ANWAR, ALI AHMED; MANN, MICHAEL L.
To: SPM OIL & GAS PC LLC
Reel/Frame 062689/0896 →