EP0931229A1 - Statische abdichtung - Google Patents

Statische abdichtung

Info

Publication number
EP0931229A1
EP0931229A1 EP97954872A EP97954872A EP0931229A1 EP 0931229 A1 EP0931229 A1 EP 0931229A1 EP 97954872 A EP97954872 A EP 97954872A EP 97954872 A EP97954872 A EP 97954872A EP 0931229 A1 EP0931229 A1 EP 0931229A1
Authority
EP
European Patent Office
Prior art keywords
gasket
tube
sealing member
stop
sheet
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP97954872A
Other languages
English (en)
French (fr)
Inventor
Paul Reuben Percival
Vincent Clive Wright
Keith Cunnington
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Federal Mogul Sealing Systems Slough Ltd
Original Assignee
Federal Mogul Sealing Systems Slough Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Federal Mogul Sealing Systems Slough Ltd filed Critical Federal Mogul Sealing Systems Slough Ltd
Publication of EP0931229A1 publication Critical patent/EP0931229A1/de
Withdrawn legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16JPISTONS; CYLINDERS; SEALINGS
    • F16J15/00Sealings
    • F16J15/02Sealings between relatively-stationary surfaces
    • F16J15/06Sealings between relatively-stationary surfaces with solid packing compressed between sealing surfaces
    • F16J15/10Sealings between relatively-stationary surfaces with solid packing compressed between sealing surfaces with non-metallic packing
    • F16J15/12Sealings between relatively-stationary surfaces with solid packing compressed between sealing surfaces with non-metallic packing with metal reinforcement or covering
    • F16J15/121Sealings between relatively-stationary surfaces with solid packing compressed between sealing surfaces with non-metallic packing with metal reinforcement or covering with metal reinforcement
    • F16J15/122Sealings between relatively-stationary surfaces with solid packing compressed between sealing surfaces with non-metallic packing with metal reinforcement or covering with metal reinforcement generally parallel to the surfaces
    • F16J15/123Details relating to the edges of the packing

Definitions

  • This invention is concerned with a gasket comprising at least one sheet having at least one hole therethrough which defines a passage through the gasket.
  • the gasket may for example be a head gasket for an internal combustion engine, in which case the hole corresponds to the position of a cylinder of the engine.
  • Such a compression limiting stop can be provided by a folded over edge of a metal sheet of the gasket, or by metal deposited on a surface of the sheet adjacent to the sealing member. However, in both cases the compression-limiting stop is spaced from the sealing member, thereby reducing its effectiveness .
  • the invention provides a gasket comprising at least one sheet having at least one hole therethrough which defines a passage through the gasket, the gasket also comprising a sealing member formed from sheet metal, the sealing member being mounted on said sheet, characterised in that the sealing member comprises a portion which is in the form of a tube which extends as a closed loop around the periphery of said hole, and the gasket also comprises a compression-limiting stop which is contained within the tube.
  • the sheet of a gasket according to the invention may be a single sheet of plastics material provided with resilient sealing beads on its opposite surfaces.
  • the sheet may be of a multi-layer construction, eg several layers of sheet metal or a metal core with resilient layers on opposite sides thereof.
  • the sealing member may be mounted on any of said layers.
  • the gasket may be a head gasket of an internal combustion engine; in which case, it will have several openings for cylinders and a sealing member associated with each opening.
  • the sealing members for several or all of the openings may be formed from the same piece of sheet metal.
  • the sealing member is in the form of a tube giving increased resilience and the compression-limiting stop is positioned at the point where its effectiveness is greatest, ie at the line of sealing.
  • the compression-limiting stop may be formed as a closed loop within the tube.
  • the stop may be formed from rigid material such as metal, eg steel. Conveniently, the stop is formed from metal wire. Alternatively, however, the stop may be formed from deformable but incompressible material since the compression of the tube will result in such a stop filling the space within the tube entirely so that the material of the stop will resist further compression.
  • the tube may be of substantially circular or ovoid or may be partially circular or ovoid, in transverse cross- section.
  • the compression-limiting stop may be of substantially circular, oval or rectangular transverse cross-section.
  • the width d of the stop is typically in the range from 0.8 to 2.5mm
  • the thickness of the tube wall, t is typically in the range from 0.15 to 0.3mm.
  • the outer cross-sectional distance across the tube at its widest point when uncompressed h 0 would suitably be from 1.6 to 3.2mm, and when compressed, h, , would typically be in the range from 0.5 to 2.0mm.
  • the sealing member also comprises at least one flange by which the sealing member is mounted on said sheet.
  • the sealing member may comprise one or two flanges which extend radially outwardly of the tube.
  • the flanges may be secured to the sheet of the gasket by being embedded in the sheet of the gasket, eg by the sheet being moulded from plastics material around the flange or flanges.
  • the flange or flanges may be clipped over an edge of the sheet.
  • the flanges may be secured together to complete the tube, eg by welding or by embedding in plastics material.
  • the invention also provides a method of manufacturing a gasket according to the invention, characterised in that the method comprises carrying out a bending operation on a piece of sheet metal to form said tube around said stop, the stop being positioned on said piece either before or during said bending.
  • said piece of sheet metal may be an annular portion of said sheet surrounding said hole, or a separate annular piece of metal, or a cylindrical tube.
  • said bending operation may comprise forming an embossed ridge in an annular piece of sheet metal, the ridge extending around the hole through said piece, and bending the portion of the piece bounded by the ridge around the compression-limiting stop so that it contacts the crest of the ridge.
  • the method may further comprise forming a further embossed ridge in said piece of sheet metal, said further ridge extending around said hole nearer thereto than the first-mentioned ridge, said bending operation being carried out so that the crests of the two ridges are brought into contact.
  • said bending operation involves bending the ends of the tube outwardly to form the sealing member around the stop.
  • the tube may be completed by a welding operation or another method of securing the areas bent into contact against displacement from their relative positions.
  • Figures 1 to 6 are cross-sectional views taken through a portion of the first to the sixth illustrative gaskets, respectively;
  • Figures 7a to 7c are cross-sectional views illustrating stages in the first illustrative method.
  • Figures 8a to 8c are cross-sectional views illustrating stages in the second illustrative method.
  • Figure 1 shows the first illustrative gasket 10 which comprises a sheet 12 formed of plastics material.
  • the sheet 12 has a hole 14 therethrough which defines a passage through the gasket 10.
  • the gasket 10 is a head gasket of an internal combustion engine and the hole 14 corresponds to the position of a cylinder of the engine.
  • Figure 1 shows only a portion of the gasket 10 at one edge of the hole 14.
  • the gasket 10 incorporates a plurality of holes 14 corresponding to the cylinders of the engine and also incorporates other holes corresponding to coolant passages, oil passages, and bolt holes as is usual in a head gasket.
  • the gasket 10 incorporates resilient beads (not shown) which are mounted on the surface of the sheet 12 to provide seals around the other holes through the gasket.
  • the gasket 10 also comprises a sealing member 16 providing a bore seal around the hole 14.
  • the sealing member 16 is formed from sheet metal, specifically steel which is 0.2mm in thickness.
  • the sealing member 16 comprises a portion which is in the form of a tube 16a of circular cross-section.
  • the tube 16a extends as a closed loop around the periphery of the hole 14.
  • the sealing member 16 also comprises two flanges 16b and 16c which are integral with the tube 16a and extend parallel to one another away from the tube 16a in a plane which is coincident with the plane of the sheet 12.
  • the flanges 16b and 16c are welded together at 18.
  • the sealing member 16 is mounted on the sheet 12 by the flanges 16b and 16c being embedded in the edge of the sheet 12 which surrounds the hole 14.
  • the gasket 10 also comprises a compression-limiting stop 20 in the form of a metal wire which forms a closed loop and is contained within the tube 16a.
  • the wire forming the stop is of circular transverse cross-section.
  • Figures 7a to 7c illustrate how the first illustrative gasket 10 may be manufactured by the first illustrative method.
  • the first illustrative method commences with a piece of sheet metal in the form of a cylindrical metal tube 22 as shown in Figure 7a.
  • the method comprises carrying out a bending operation on the tube 22 to form the tube 16a around the stop 20.
  • the bottom end portion of the tube 22 is bent outwardly to form the outwardly projecting radial flange 16b which is joined to the undeformed upper portion of the tube 22 by a semi-circular portion 22a which defines an upwardly-opening groove 24 (the portion 22a is destined to form half of the tube 16a) .
  • This bending operation is carried out using, suitable tooling, in successive stages.
  • the stop 20 is positioned in the groove 24 and a further bending operation is carried out on the upper end portion of the tube 22 bending it outwardly to form the outwardly projecting radial flange 16c and a semi-circular portion which cooperates with the portion 22a in forming the tube 16a containing the stop 20.
  • the flanges 16b and 16c are then welded together at 18 to complete the sealing member 16. The welding may be continuous around the tube 16a or may be at intervals.
  • the sealing member 16, and similar sealing members associated with the other cylinder holes of the gasket 10 are assembled in a mould so that they are in the correct relative positions they will occupy in the finished gasket 10. Then, plastics material is injected into the mould so that the material envelopes the flanges 16b and 16c but not the tubes 16a, thereby forming the sheet 12 with the hole 14 having the tube 16a running around its periphery.
  • the second illustrative gasket 30 shown in Figure 2 is similar to the first illustrative gasket 10 except as explained hereinafter and the same reference numerals are used for like parts which are not further described.
  • the sealing member 16 of the gasket 30 has a tube 16a which is of ovoid transverse cross-section, being elongated in a direction normal to the plane of the gasket 30.
  • the transverse cross-sectional shape of the compression- limiting stop 20 of the gasket 30 is also elongated in a direction normal to the plane of the gasket 30.
  • the stop 20 has a generally rectangular cross-sectional shape with curved upper and lower end surfaces.
  • the second illustrative gasket 30 is manufactured by a variation of the first illustrative method in which the shape of the portion 22a and of the portion which completes the tube 16a are half-ovoids.
  • the third illustrative gasket 40 shown in Figure 3 is similar to the first illustrative gasket 10 except as explained hereinafter and the same reference numerals are used for like parts which are not further described.
  • the transverse cross-sectional shape of the compression- limiting stop 20 of the gasket 40 is ovoid being elongated in a direction normal to the plane of the gasket 40.
  • the third illustrative gasket 40 is manufactured by the first illustrative method.
  • the fourth illustrative gasket 50 shown in Figure 4 comprises a sheet 52 formed of plastics material.
  • the sheet 52 has a hole 54 therethrough which defines a passage through the gasket 50.
  • the gasket 50 is a head gasket of an internal combustion engine and the hole 54 corresponds to the position of a cylinder of the engine.
  • Figure 4 shows only a portion of the gasket 50 at one edge of the hole 54.
  • the gasket 50 incorporates resilient beads (not shown) which are mounted on the surface of the sheet 52 to provide seals around other holes through the gasket.
  • the gasket 50 also comprises a sealing member 56 formed from sheet metal, specifically steel 0.15mm in thickness.
  • the sealing member 56 comprises a portion in the form of a tube 56a which extends as a closed loop around the periphery of the hole 54.
  • the tube 56a has a transverse cross-section which is defined by a circular arc and by straight portions at opposite ends of the arc, the straight portions meeting at a point 58 where they are welded together to complete the tube 56a.
  • One of the straight portions continues beyond the point 58 in a straight line to form an annular flange 56b projecting radially outwardly of the hole 54.
  • the other straight portion bends away from the flange 56b before bending to form a flange 56c which extends parallel to the flange 56b but is spaced therefrom.
  • the sealing member 56 is mounted on the sheet 52 by the flanges 56b and 56c being clipped over the edge of the sheet 52.
  • the gasket 50 also comprises a compression-limiting stop 60 in the form of a metal wire which forms a closed loop and is contained within the tube 56a.
  • the wire forming the stop is of circular transverse cross-section.
  • the gasket 50 is manufactured by the second illustrative method which is illustrated by Figures 8a to 8c.
  • the second illustrative method commences with an annular piece of sheet metal 62 (not shown in an undeformed state) .
  • the second illustrative method comprises carrying out a bending operation on the piece 62 to form the tube 56a around the stop 60.
  • Said bending operation comprises forming an embossed ridge 64 extending around the hole through the piece 62 (this is shown in Figure 8a) .
  • the ridge 64 is formed in the outer peripheral edge portion of the piece 62 and has a shape corresponding to that of the straight portion of the tube 56a which bends back on itself to form the flange 58c.
  • the stop 60 is positioned in the groove 68 and the tube 66 is bent outwardly so that it covers the groove 68 completing the tube 56a, contacts the crest of the ridge 64 (at the point 58) , and forms the lange 56b.
  • the crest of the ridge 64 is then welded to the flange 56b.
  • the fifth illustrative gasket 70 is similar to the fourth illustrative gasket 50 except that both flanges 56b and 56c are formed by portions which bend back on themselves after contacting at the point 58.
  • the fifth illustrative gasket 70 is manufactured by a variation of the second illustrative method in which a second embossed ridge is formed nearer to the centre of the piece 62 than the ridge 64 and the bending operation brings the crests of the two ridges into contact at the point 58.
  • the sixth illustrative gasket 80 shown in Figure 6 is similar to the gasket 70 except that there is no weld at the point 58 and the tubular portion 56a is held together by plastics material of the sheet 52 in which the flanges 56b and 56c are embedded.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Gasket Seals (AREA)
EP97954872A 1996-10-10 1997-10-08 Statische abdichtung Withdrawn EP0931229A1 (de)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
GB9621121 1996-10-10
GBGB9621121.4A GB9621121D0 (en) 1996-10-10 1996-10-10 Gasket
PCT/GB1997/002766 WO1998015756A1 (en) 1996-10-10 1997-10-08 Gasket

Publications (1)

Publication Number Publication Date
EP0931229A1 true EP0931229A1 (de) 1999-07-28

Family

ID=10801205

Family Applications (1)

Application Number Title Priority Date Filing Date
EP97954872A Withdrawn EP0931229A1 (de) 1996-10-10 1997-10-08 Statische abdichtung

Country Status (5)

Country Link
EP (1) EP0931229A1 (de)
JP (1) JP2001501718A (de)
AU (1) AU4629497A (de)
GB (1) GB9621121D0 (de)
WO (1) WO1998015756A1 (de)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10354512A1 (de) * 2003-11-21 2005-06-09 Daimlerchrysler Ag Dichtung
CN113431901B (zh) * 2021-07-12 2023-06-23 常熟理工学院 一种金属波纹自密封复合垫片

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1957798A (en) * 1930-12-01 1934-05-08 Victor Mfg & Gasket Co Gasket
FR1120673A (fr) * 1955-01-27 1956-07-10 Joints plastiques ou métallo-plastiques renforcés
DE1943810A1 (de) * 1969-08-28 1971-08-05 Reinz Dichtung Gmbh Dichtungsring
DE3134015C2 (de) * 1981-08-28 1988-04-14 Elring Dichtungswerke Gmbh, 7012 Fellbach Flachdichtung sowie Verfahren zu ihrer Herstellung
JPS6050258A (ja) * 1983-08-29 1985-03-19 Hino Motors Ltd シリンダヘツドガスケツト
US5454574A (en) * 1992-12-18 1995-10-03 Dana Corporation Composite powdered metal combustion seal ring
DE4337757A1 (de) * 1993-11-05 1995-05-11 Goetze Ag Flachdichtung, insbesondere Zylinderkopfdichtung für Verbrennungskraftmaschinen
US5482014A (en) * 1995-01-17 1996-01-09 Fel-Pro Incorporated High output automotive engine gasket assembly and method of making same

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO9815756A1 *

Also Published As

Publication number Publication date
AU4629497A (en) 1998-05-05
GB9621121D0 (en) 1996-11-27
WO1998015756A1 (en) 1998-04-16
JP2001501718A (ja) 2001-02-06

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Legal Events

Date Code Title Description
PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

Free format text: ORIGINAL CODE: 0009012

17P Request for examination filed

Effective date: 19990303

AK Designated contracting states

Kind code of ref document: A1

Designated state(s): DE ES FR GB IT

RAP3 Party data changed (applicant data changed or rights of an application transferred)

Owner name: FEDERAL-MOGUL SEALING SYSTEMS (SLOUGH) LIMITED

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE APPLICATION IS DEEMED TO BE WITHDRAWN

18D Application deemed to be withdrawn

Effective date: 20020501