Patent · US2010270745A1 · A1 · US
Lateral sealing gasket and method
- (11) Publication number
- US2010270745A1
- (21) Application number
- US-83075810-A
- (22) Filing date
- 2010-07-06
- (30) Priority date
- 2007-08-15
- (43) Publication date
- 2010-10-28
- (52) CPC
- F16J Pistons {}; cylinders; sealings: 15/125, 15/121
- (73) Assignee
- FEDERAL MOGUL WORLD WIDE INC
- (54) Title
- Lateral sealing gasket and method
- (57) Abstract
An elongated elastomeric gasket (10) seals a pair of opposing flanges (12, 14) against the passage of liquid without compressing the flanges (12, 14) together. A reinforcing spring (32) is embedded within the elastomeric gasket (10) and is shaped so as to react when deflected by the operation of installing the gasket (10) into an operative position between the flanges (12, 14). A strategically located U-shaped bend (34) formed in the reinforcing spring (32) causes, in a preferred embodiment, contact pressure to be increased between opposed sealing beads at the other end of the gasket. More specifically, lateral contact pressure between a first pair of sealing beads (24) and their associated contact faces (38) is increased as a direct result of the reinforcing spring (32) being displaced during the assembly process. Likewise, lateral contact pressure between a second pair of beads (28) and their respective contact faces (42) is increased in direct response to the lateral displacement of the reinforcing spring (32) in the region of the first beads (24) during assembly.
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Claims (1)
- A gasket for sealing a pair of opposing flanges together against the passage of liquid without compressing the flanges together, said gasket comprising: an elongated elastomeric gasket body defining a generally continuous length; said gasket body including an integral first sealing member extending in a first lateral direction relative to said length, and an integral second sealing member extending in a second lateral direction generally opposite to said first lateral direction, each of said first and second sealing members extending continuously and uninterrupted along said length of said gasket body; a first pair of opposing beads protruding laterally from said first sealing member, said first opposing pair of beads extending continuously and uninterrupted along said length for establishing a laterally directed contact seal against a first one of the opposing flanges; a second pair of opposing beads protruding laterally from said second sealing member, said second opposing pair of beads extending continuously and uninterrupted along said length for establishing a laterally directed contact seal against a second one of the opposing flanges; an elongated reinforcing spring embedded within said gasket body and extending within each of said first and second sealing members, said reinforcing spring having at least one U-shaped bend for continuously urging said respective first and second pairs of beads laterally relative to said length to enhance the contact pressure of said beads against their respective opposing flanges, whereby said gasket maintains a liquid impervious seal between the opposing flanges through self-generated lateral contact pressure on each of the flanges without compressive force; and said resilient spring being defined by a pair of spaced-apart legs embedded within said first sealing member, said U-shaped bend adjoining said legs. 2. The gasket of claim 1 wherein said first pair of opposing beads protruding laterally toward one another. 3. The gasket of claim 1 wherein said first pair of opposing beads protruding laterally away from one another. 4. A gasket system for sealing a pair of opposing flanges together against the passage of liquid without compressing the flanges together, said gasket system comprising: an elongated elastomeric gasket body defining a generally continuous length; a first flange extending parallel to said gasket body, said first flange having a pair of oppositely facing contact faces; a second flange extending parallel to said gasket body and opposing said first flange, said second flange having a pair of oppositely facing contact faces; said gasket body including an integral first sealing member extending laterally toward said first flange, and an integral second sealing member extending laterally toward said second flange, each of said first and second sealing members extending continuously and uninterrupted along said length of said gasket body; a first pair of opposing beads protruding laterally from said first sealing member, said first opposing pair of beads extending continuously and uninterrupted along said length for establishing laterally directed contact seals against said respective contact faces of said first flange; a second pair of opposing beads protruding laterally from said second sealing member, said second opposing pair of beads extending continuously and uninterrupted along said length for establishing a laterally directed contact seals against said respective contact faces of said second flange; an elongated reinforcing spring embedded within said gasket body and extending within each of said first and second sealing members, said reinforcing spring having at least one U-shaped bend for continuously urging said respective first and second pairs of beads laterally relative to said length to enhance the contact pressure of said beads against the respective said contact faces of said first and second flanges, whereby said gasket maintains a liquid impervious seal between said first and second flanges through self-generated lateral contact pressure on each of the respective said contact faces; and wherein said resilient spring is defined by a pair of spaced-apart legs embedded within said first sealing member, said U-shaped bend adjoining said legs 5. The gasket system of claim 4 wherein said first flange is defined by a continuously extending tongue with said pair of oppositely facing contact faces presenting laterally away from one another on opposite sides of said tongue, said first pair of opposing beads protruding laterally toward one another for directly engaging said contact faces. 6. The gasket system of claim 4 wherein said first flange is defined by a continuously extending trough with said pair of oppositely facing contact faces presenting laterally toward one another on opposing sides of said trough, said first pair of opposing beads protruding laterally away from one another for directly engaging said contact faces. 7. A method of maintaining a sealed interface between a pair of opposing flanges without compressing the flanges together, said method comprising the steps of: providing a first flange having a pair of oppositely facing contact faces; providing a second flange having a pair of oppositely facing contact faces; interposing an elongated elastomeric gasket body between the first and second flanges; forming a first pair of opposing beads on the gasket body that bear in lateral pressing contact against the respective contact faces of the first flange; forming a second pair of opposing beads on the gasket body that bear in lateral pressing contact against the respective contact faces of the second flange; embedding an elongated reinforcing spring within the gasket body backing each of the first and second pairs of beads; and increasing the lateral contact pressure between the second pair of beads and the respective contact faces in the second flange in direct response to laterally displacing the reinforcing spring in the region of the first beads and simultaneously increasing the lateral contact pressure between the first pair of beads and the respective contact faces in the first flange in direct response to laterally displacing the reinforcing spring in the region of the second beads, whereby the gasket maintains a liquid impervious seal between the first and second flanges through self-generated lateral contact pressure on each of the respective contact faces. 8. The method of claim 7 wherein said step of increasing contact pressure includes urging the first pair of opposing beads laterally away from one another while simultaneously urging the second pair of opposing beads laterally toward one another.
Citations (26)
- US1924555A
- US2005115532A1
- US2005193972A1
- US2005205033A1
- US2006118073A1
- US2430836A
- US2475836A
- US3083023A
- US3833228A
- US3901517A
- US4159828A
- US4222576A
- US4298204A
- US4313609A
- US4398731A
- US4582330A
- US4585238A
- US5050764A
- US5687975A
- US6561522B1
- US6691667B2
- US6868820B2
- US6962338B2
- US7004477B2
- US7029013B2
- US7441525B2
Record as JSON
{
"publication_number": "US2010270745A1",
"country": "US",
"kind": "A1",
"title": "Lateral sealing gasket and method",
"abstract": "An elongated elastomeric gasket (10) seals a pair of opposing flanges (12, 14) against the passage of liquid without compressing the flanges (12, 14) together. A reinforcing spring (32) is embedded within the elastomeric gasket (10) and is shaped so as to react when deflected by the operation of installing the gasket (10) into an operative position between the flanges (12, 14). A strategically located U-shaped bend (34) formed in the reinforcing spring (32) causes, in a preferred embodiment, contact pressure to be increased between opposed sealing beads at the other end of the gasket. More specifically, lateral contact pressure between a first pair of sealing beads (24) and their associated contact faces (38) is increased as a direct result of the reinforcing spring (32) being displaced during the assembly process. Likewise, lateral contact pressure between a second pair of beads (28) and their respective contact faces (42) is increased in direct response to the lateral displacement of the reinforcing spring (32) in the region of the first beads (24) during assembly.",
"claims": [
"1. A gasket for sealing a pair of opposing flanges together against the passage of liquid without compressing the flanges together, said gasket comprising: an elongated elastomeric gasket body defining a generally continuous length; said gasket body including an integral first sealing member extending in a first lateral direction relative to said length, and an integral second sealing member extending in a second lateral direction generally opposite to said first lateral direction, each of said first and second sealing members extending continuously and uninterrupted along said length of said gasket body; a first pair of opposing beads protruding laterally from said first sealing member, said first opposing pair of beads extending continuously and uninterrupted along said length for establishing a laterally directed contact seal against a first one of the opposing flanges; a second pair of opposing beads protruding laterally from said second sealing member, said second opposing pair of beads extending continuously and uninterrupted along said length for establishing a laterally directed contact seal against a second one of the opposing flanges; an elongated reinforcing spring embedded within said gasket body and extending within each of said first and second sealing members, said reinforcing spring having at least one U-shaped bend for continuously urging said respective first and second pairs of beads laterally relative to said length to enhance the contact pressure of said beads against their respective opposing flanges, whereby said gasket maintains a liquid impervious seal between the opposing flanges through self-generated lateral contact pressure on each of the flanges without compressive force; and said resilient spring being defined by a pair of spaced-apart legs embedded within said first sealing member, said U-shaped bend adjoining said legs. 2. The gasket of claim 1 wherein said first pair of opposing beads protruding laterally toward one another. 3. The gasket of claim 1 wherein said first pair of opposing beads protruding laterally away from one another. 4. A gasket system for sealing a pair of opposing flanges together against the passage of liquid without compressing the flanges together, said gasket system comprising: an elongated elastomeric gasket body defining a generally continuous length; a first flange extending parallel to said gasket body, said first flange having a pair of oppositely facing contact faces; a second flange extending parallel to said gasket body and opposing said first flange, said second flange having a pair of oppositely facing contact faces; said gasket body including an integral first sealing member extending laterally toward said first flange, and an integral second sealing member extending laterally toward said second flange, each of said first and second sealing members extending continuously and uninterrupted along said length of said gasket body; a first pair of opposing beads protruding laterally from said first sealing member, said first opposing pair of beads extending continuously and uninterrupted along said length for establishing laterally directed contact seals against said respective contact faces of said first flange; a second pair of opposing beads protruding laterally from said second sealing member, said second opposing pair of beads extending continuously and uninterrupted along said length for establishing a laterally directed contact seals against said respective contact faces of said second flange; an elongated reinforcing spring embedded within said gasket body and extending within each of said first and second sealing members, said reinforcing spring having at least one U-shaped bend for continuously urging said respective first and second pairs of beads laterally relative to said length to enhance the contact pressure of said beads against the respective said contact faces of said first and second flanges, whereby said gasket maintains a liquid impervious seal between said first and second flanges through self-generated lateral contact pressure on each of the respective said contact faces; and wherein said resilient spring is defined by a pair of spaced-apart legs embedded within said first sealing member, said U-shaped bend adjoining said legs 5. The gasket system of claim 4 wherein said first flange is defined by a continuously extending tongue with said pair of oppositely facing contact faces presenting laterally away from one another on opposite sides of said tongue, said first pair of opposing beads protruding laterally toward one another for directly engaging said contact faces. 6. The gasket system of claim 4 wherein said first flange is defined by a continuously extending trough with said pair of oppositely facing contact faces presenting laterally toward one another on opposing sides of said trough, said first pair of opposing beads protruding laterally away from one another for directly engaging said contact faces. 7. A method of maintaining a sealed interface between a pair of opposing flanges without compressing the flanges together, said method comprising the steps of: providing a first flange having a pair of oppositely facing contact faces; providing a second flange having a pair of oppositely facing contact faces; interposing an elongated elastomeric gasket body between the first and second flanges; forming a first pair of opposing beads on the gasket body that bear in lateral pressing contact against the respective contact faces of the first flange; forming a second pair of opposing beads on the gasket body that bear in lateral pressing contact against the respective contact faces of the second flange; embedding an elongated reinforcing spring within the gasket body backing each of the first and second pairs of beads; and increasing the lateral contact pressure between the second pair of beads and the respective contact faces in the second flange in direct response to laterally displacing the reinforcing spring in the region of the first beads and simultaneously increasing the lateral contact pressure between the first pair of beads and the respective contact faces in the first flange in direct response to laterally displacing the reinforcing spring in the region of the second beads, whereby the gasket maintains a liquid impervious seal between the first and second flanges through self-generated lateral contact pressure on each of the respective contact faces. 8. The method of claim 7 wherein said step of increasing contact pressure includes urging the first pair of opposing beads laterally away from one another while simultaneously urging the second pair of opposing beads laterally toward one another."
],
"cpc": [
"F16J 15/125",
"F16J 15/121"
],
"assignees": [
"FEDERAL MOGUL WORLD WIDE INC"
],
"filing_date": "2010-07-06",
"publication_date": "2010-10-28",
"priority_date": "2007-08-15",
"application_number": "US-83075810-A",
"family_id": "40351490",
"citations": [
"US1924555A",
"US2005115532A1",
"US2005193972A1",
"US2005205033A1",
"US2006118073A1",
"US2430836A",
"US2475836A",
"US3083023A",
"US3833228A",
"US3901517A",
"US4159828A",
"US4222576A",
"US4298204A",
"US4313609A",
"US4398731A",
"US4582330A",
"US4585238A",
"US5050764A",
"US5687975A",
"US6561522B1",
"US6691667B2",
"US6868820B2",
"US6962338B2",
"US7004477B2",
"US7029013B2",
"US7441525B2"
]
}
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