IP Library › Granted Patent US 9,506,588
Granted Patent B2
US 9,506,588 · App. 13/943,997 · Granted Nov 29, 2016

High-pressure bi-directional sealing system

Inventors: Craig Joseph Cronin (North Haven, CT); Mark William Armitage (Madison, CT); Dallas Conway (Prospect, CT)
Assignee: American Seal and Engineering Company, Inc.
F16L27/125F16J15/166F16J15/18F16J15/56F16L17/035
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Quick Facts
Patent No.
US 9,506,588
App. No.
13/943,997
Granted
Nov 29, 2016
Kind
B2
Abstract

A high-pressure bi-directional sealing system having outer support rings ( 30, 32 ), annular, axial seals ( 100, 300 ) between the outer support rings ( 30, 32 ), inner support rings ( 150, 160 ) located between the annular, axial seals ( 100, 300 ) and a redundant seal ( 200 ) that is located between the inner support rings ( 150, 160 ). The outer support rings ( 30, 32 ), the seals ( 100, 300 ), the inner support rings ( 150, 160 ) and the redundant seal ( 200 ) are located within a space between an outer tube ( 12 ) and an inner tube ( 14 ) that is telescopically disposed within the outer tube ( 12 ). The seals ( 100, 300 ) are oriented in opposite directions. Specifically, the opening of the seal ( 100 ) is facing in a first direction and the opening of the seal ( 300 ) is facing in a second direction that is opposite the first direction. This configuration enables the high-pressure bi-directional sealing system to handle pressure in both directions.

Claims (28)

1. A sealing apparatus, comprising:

an outer tube ( 12 ) having an interior region and an interior surface ( 18 ) surrounding the interior region;

an inner tube ( 14 ) telescopically disposed within the interior region of the outer tube ( 12 ) such that the inner tube ( 14 ) and the outer tube ( 12 ) can move axially with respect to each other and rotate with respect to each other, the inner tube ( 14 ) having a first portion having a first outer diameter (D1) and a second portion having a second outer diameter (D2) that is less than the first outer diameter (D1), wherein the difference in the diameters (D1) and (D2) forms a circumferentially extending shoulder ( 27 ), a circumferentially extending wall ( 28 ) that is contiguous with the shoulder ( 27 ) and a circumferentially extending space between the shoulder ( 27 ) and the interior surface ( 18 ) of the outer tube ( 12 ), the wall ( 28 ) forming a boundary between the first portion of the inner tube ( 14 ) having the first outer diameter (D1) and the second portion of the inner tube ( 14 ) having the second outer diameter (D2), the inner tube ( 14 ) having an exterior surface ( 26 ) which comprises the shoulder ( 27 );

a first outer support ring ( 30 ) positioned on the shoulder ( 27 ) and abutting the wall ( 28 ), the first outer support ring ( 30 ) having a seal support section ( 33 ) that is shaped so as to form a first space ( 34 ) between the seal support section ( 33 ) and the interior surface ( 18 ) of the outer tube ( 12 ) and a second space ( 35 ) between the seal support section ( 33 ) and the shoulder ( 27 );

a first annular seal ( 100 ) positioned between the interior surface ( 18 ) and the shoulder ( 27 ), the first annular seal ( 100 ) having a first portion ( 132 ) upon which dynamic forces are exerted and which contacts the interior surface ( 18 ) of the outer tube ( 12 ) and a second portion ( 134 ) upon which no dynamic forces are exerted, the second portion ( 134 ) bearing against the shoulder ( 27 ), wherein the first portion ( 132 ) of the first annular seal ( 100 ) is positioned in the first space ( 34 ) between the seal support section ( 33 ) and the interior surface ( 18 ) of the outer tube ( 12 ) and the second portion ( 134 ) of the first annular seal ( 100 ) is positioned in the second space ( 35 ) between the seal support section ( 33 ) and the shoulder ( 27 ), the first annular seal ( 100 ) comprising an arcuate portion ( 107 ) having a curved inner surface ( 107 A), wherein the seal support section ( 33 ) abuts the curved inner surface ( 107 A);

a first circumferentially extending inner support ring ( 150 ) positioned between the shoulder ( 27 ) and the interior surface ( 18 ), the inner support ring ( 150 ) having a first sidewall ( 152 ) and an opposite second sidewall ( 154 ), wherein the first sidewall ( 152 ) has a curvature that extends for the entire circumference of the inner support ring ( 150 ) and is sized and shaped for receiving the arcuate portion ( 107 ) of the seal ( 100 );

a center shock absorbing seal ( 200 ) positioned between the interior surface ( 18 ) and the shoulder ( 27 ) and comprising a first shock absorbing seal sidewall ( 202 ) abutting the opposite second sidewall ( 154 ) of the first circumferentially extending inner support ring ( 150 ) and an opposite second shock absorbing seal sidewall ( 204 );

a second circumferentially extending inner support ring ( 160 ) positioned between the shoulder ( 27 ) and the interior surface ( 18 ), the inner support ring ( 160 ) having a first exterior wall ( 162 ) and an opposite second exterior wall ( 164 ), wherein the first exterior wall ( 162 ) has a curvature that extends for the entire circumference of the second circumferentially extending inner support ring ( 160 ) and the opposite second exterior wall ( 164 ) abuts the opposite second shock absorbing seal sidewall ( 204 );

a second annular seal ( 300 ) positioned between the interior surface ( 18 ) of the outer tube ( 12 ) and the shoulder ( 27 ), the second annular seal ( 300 ) having a first portion ( 304 ) upon which dynamic forces are exerted and which contacts the interior surface ( 18 ) of the outer tube ( 12 ) and a second portion ( 306 ) upon which no dynamic forces are exerted, the second portion ( 306 ) bearing against the shoulder ( 27 ), the second annular seal ( 300 ) further comprising an arcuate portion ( 307 ) that is positioned within the curvature of the first exterior wall ( 162 ) of the second circumferentially extending inner support ring ( 160 ), wherein the arcuate portion ( 307 ) comprises an inner curved surface ( 308 );

a second outer support ring ( 32 ) positioned on the shoulder ( 27 ), the second outer support ring ( 32 ) comprising a seal support section ( 62 ) that abuts the curved inner surface ( 308 ) of the second annular seal ( 300 ), wherein the seal support section ( 62 ) has a structure which forms a first space ( 140 ) between the seal support section ( 62 ) and the interior surface ( 18 ) of the outer tube ( 12 ) and a second space ( 142 ) between the seal support section ( 62 ) and the shoulder ( 27 ), wherein the first portion ( 304 ) of the second annular seal ( 300 ) is positioned in the first space ( 140 ) and the second portion ( 306 ) of the second annular seal ( 300 ) is positioned in the second space ( 142 ) between the seal support section ( 62 ) and the shoulder ( 27 ); and

a retaining member ( 250 ) mounted to the inner tube ( 14 ) such that the first outer support ring ( 30 ), the first annular seal ( 100 ), the first circumferentially extending inner support ring ( 150 ), the center shock absorbing seal ( 200 ), the second circumferentially extending inner support ring ( 160 ), the second annular seal ( 300 ) and the second outer support ring ( 32 ) are positioned between the circumferentially extending wall ( 28 ) and the retaining member ( 250 ), the retaining member ( 250 ) abutting the second outer support ring ( 32 ).

2. The sealing apparatus according to claim 1 wherein the first shock absorbing seal sidewall ( 202 ) has a particular contour and wherein the opposite second sidewall ( 154 ) of the first circumferentially extending inner support ring ( 150 ) comprises a bulge portion ( 156 ) that extends for the entire circumference of the first circumferentially extending inner support ring ( 150 ), wherein the bulge portion ( 156 ) abuts the first shock absorbing seal sidewall ( 202 ) such that the particular contour of the first shock absorbing seal sidewall ( 202 ) receives the bulge portion ( 156 ).

3. The sealing apparatus according to claim 1 wherein the opposite second shock absorbing seal sidewall ( 204 ) has a particular contour and wherein the opposite second exterior wall ( 164 ) comprises a bulge portion ( 166 ) that extends for the entire circumference of the second circumferentially extending inner support ring ( 160 ), wherein the bulge portion ( 166 ) abuts the opposite second shock absorbing seal sidewall ( 204 ) such that the particular contour of the opposite second shock absorbing seal sidewall ( 204 ) receives the bulge portion ( 166 ).

4. The sealing apparatus according to claim 1 wherein the first outer support ring ( 30 ) includes a channel ( 42 ) and a plurality of wiper seals ( 44 , 45 ) disposed within the channel ( 42 ), wherein the channel ( 42 ) is positioned such that the wiper seals ( 44 , 45 ) scrape the interior surface ( 18 ) of the outer tube ( 12 ) when there is relative movement between the outer tube ( 12 ) and the inner tube ( 14 ).

5. The sealing apparatus according to claim 1 wherein the second outer support ring ( 32 ) includes a channel ( 82 ) and a plurality of wiper seals ( 84 , 85 ) disposed within the channel ( 82 ), wherein the channel ( 82 ) is positioned such that the wiper seals ( 84 , 85 ) scrape the interior surface ( 18 ) of the outer tube ( 12 ) when there is relative movement between the outer tube ( 12 ) and the inner tube ( 14 ).

6. The sealing apparatus according to claim 1 wherein the seal support section ( 33 ) has a rounded end ( 41 ) which abuts the curved inner surface ( 107 A) of the first annular seal ( 100 ), and wherein the seal support section ( 62 ) has a rounded end ( 64 ) which abuts the inner curved surface ( 308 ) of the second annular seal ( 300 ).

7. A sealing apparatus, comprising:

an outer tube ( 402 ) having an interior region and an interior surface ( 406 ) surrounding the interior region;

an inner tube ( 404 ) telescopically disposed within the interior region of the outer tube ( 402 ) such that the inner tube ( 404 ) and the outer tube ( 402 ) can move axially with respect to each other and rotate with respect to each other, the inner tube ( 404 ) having an exterior surface ( 408 );

said outer tube ( 402 ) having a first portion having a first inner diameter (D3) and a second portion having a second inner diameter (D4) that is greater than the first inner diameter (D3), wherein the difference between the inner diameters (D3) and (D4) forms a circumferentially extending wall ( 410 ), a circumferentially extending shoulder ( 412 ) that is contiguous with the wall ( 410 ) and a circumferentially extending space between the shoulder ( 412 ) and the exterior surface ( 408 ) of the inner tube ( 404 ), wherein the shoulder ( 412 ) is a portion of the interior surface ( 406 ) of the outer tube ( 402 ) and the wall ( 410 ) forms a boundary between the first portion of the outer tube ( 402 ) having the first inner diameter (D3) and the second portion of the outer tube ( 402 ) having the second inner diameter (D4);

a first outer support ring ( 420 ) positioned between the exterior surface ( 408 ) of the inner tube ( 404 ) and the shoulder ( 412 ) and abutting the wall ( 410 ), the first outer support ring ( 420 ) having a seal support section ( 440 ) that is shaped so as to form a first space ( 444 ) between the seal support section ( 440 ) and the exterior surface ( 408 ) of the inner tube ( 404 ) and a second space ( 445 ) between the seal support section ( 440 ) and the shoulder ( 412 );

a first annular seal ( 500 ) positioned between the exterior surface ( 408 ) of the inner tube ( 404 ) and the shoulder ( 412 ), the first annular seal ( 500 ) having a first portion ( 502 ) upon which dynamic forces are exerted and which contacts the exterior surface ( 408 ) and a second portion ( 504 ) upon which no dynamic forces are exerted, the second portion ( 504 ) bearing against the shoulder ( 412 ), wherein the first portion ( 502 ) is positioned in the first space ( 444 ) between the seal support section ( 440 ) and the exterior surface ( 408 ) and the second portion ( 504 ) is positioned in the second space ( 445 ) between the seal support section ( 440 ) and the shoulder ( 412 ), the first annular seal ( 500 ) comprising an arcuate portion ( 507 ) having a curved inner surface ( 508 ), wherein the seal support section ( 440 ) abuts the curved inner surface ( 508 );

a first circumferentially extending inner support ring ( 700 ) positioned between the shoulder ( 412 ) and the exterior surface ( 408 ) and having a first sidewall ( 702 ) and an opposite second sidewall ( 704 ), wherein the first sidewall ( 702 ) has a curvature that extends for the entire circumference of the inner support ring ( 700 ) and is sized and shaped for receiving the arcuate portion ( 507 ) of the seal ( 500 );

a center shock absorbing seal ( 900 ) positioned between the exterior surface ( 408 ) and the shoulder ( 412 ) and comprising a first shock absorbing seal sidewall ( 902 ) that abuts the opposite second sidewall ( 704 ) of the first circumferentially extending inner support ring ( 700 ) and an opposite second shock absorbing seal sidewall ( 904 );

a second circumferentially extending inner support ring ( 800 ) positioned between the exterior surface ( 408 ) and the shoulder ( 412 ), the second circumferentially extending inner support ring ( 800 ) having a first exterior wall ( 802 ) and an opposite second exterior wall ( 804 ), wherein the first exterior wall ( 802 ) has a curvature that extends for the entire circumference of the second circumferentially extending inner support ring ( 800 ) and the opposite second exterior wall ( 804 ) abuts the shock absorbing seal sidewall ( 904 );

a second annular seal ( 600 ) positioned between the exterior surface ( 408 ) of the inner tube ( 404 ) and the shoulder ( 412 ), the second annular seal ( 600 ) having a first portion ( 602 ) upon which dynamic forces are exerted and which contacts the exterior surface ( 408 ) and a second portion ( 604 ) upon which no dynamic forces are exerted, the second portion ( 604 ) bearing against the shoulder ( 412 ), the second annular seal ( 600 ) further comprising an arcuate portion ( 607 ) that is positioned within the curvature of the sidewall ( 802 ) of the inner support ring ( 800 ), wherein the arcuate portion ( 607 ) comprises a curved inner surface ( 608 );

a second outer support ring ( 422 ) positioned between the exterior surface ( 408 ) and the shoulder ( 412 ), the second outer support ring ( 422 ) comprising a seal support section ( 460 ) that abuts the curved inner surface ( 608 ) of the second annular seal ( 600 ), wherein the seal support section ( 460 ) has a structure that forms a space ( 470 ) between the seal support section ( 460 ) and the exterior surface ( 408 ) and a second space ( 472 ) between the seal support section ( 460 ) and the shoulder ( 412 ), wherein the first portion ( 602 ) of the second annular seal ( 600 ) is positioned in the first space ( 470 ) and the second portion ( 604 ) of the second annular seal ( 600 ) is positioned in the second space ( 472 ); and

a retaining member ( 950 ) attached to the outer tube ( 402 ) such that the first outer support ring ( 420 ), the first annular seal ( 500 ), the first circumferentially extending inner support ring ( 700 ), the center shock absorbing seal ( 900 ), the second circumferentially extending inner support ring ( 800 ), the second annular seal ( 600 ) and the second outer support ring ( 422 ) are positioned between the circumferentially extending wall ( 410 ) and the retaining member ( 950 ), the retaining member ( 950 ) abutting the second outer support ring ( 422 ).

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2020
From: AMERICAN SEAL AND ENGINEERING COMPANY, INC.
To: SAINT-GOBAIN PERFORMANCE PLASTICS CORPORATION
Reel/Frame 051930/0385 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2013
From: CRONIN, CRAIG J., MR.; ARMITAGE, MARK W., MR.; CONWAY, DALLAS, MR.
To: AMERICAN SEAL AND ENGINEERING COMPANY, INC.
Reel/Frame 031416/0674 →
Continuity (1)
Related Publication 20150021908A1 · Jan 22, 2015