Exhaust Manifold Gasket
An exhaust manifold gasket assembly having at least two layers and a series of tabs and slots. The gasket has a first outer layer with an outer surface, an inner surface, two bolt hole flanges, and a central aperture. The surfaces are bounded by an outer perimeter portion, with foldable tabs. A first inner layer and a second inner layer each with an outer surface, an inner surface, two bolt hole flanges, a central aperture, and internal slots. The surfaces are bounded by an outer perimeter portion with locator tabs. Each inner layer has a bead circumferentially extending around the central aperture. A second outer layer may be provided having an outer surface, an inner surface, two bolt hole flanges, a central aperture, and internal slots. The surfaces are bounded by an outer perimeter portion.
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This application is a non-provisional application filed off of U.S. patent application Ser. No. 61/458,852 filed on Dec. 2, 2010, which is incorporated by reference in its entirety herein. This non-provisional application is being filed during the pendency of U.S. patent application Ser. No. 61/458,852.
FIELD OF THE INVENTIONThe present invention relates to an exhaust manifold gasket for use in internal combustion engines.
BACKGROUND OF THE INVENTIONGaskets essentially are used to seal and prevent leakage between two parts. Exhaust manifold gaskets for internal combustion engines seal any gaps and prevent leakage when the mating surfaces of the cylinder head and the exhaust manifold are bolded together. The gaskets may be made of layers and one or more of the layers may include a bead. Sealing the joined area between the parts can be difficult because the cylinder head, manifold and gasket all move due to pressure and temperature fluctuations. There are also problems due to thermal expansion and thermal contraction, which occurs when the temperature varies in the cylinder head and the manifold.
Thermal motion, resulting from hot exhaust gases, increasing combustion pressure and steep thermal swings, and sheer stresses are created in the joined area between the cylinder head and the exhaust manifold increasing the risk of horizontal motion and shifting of the gasket layers, such as in a multi-layer steel (MLS) gasket. When this occurs, the layers shift and the mechanical beads in the gasket layers can become misaligned. This reduces the sharing capabilities of the beads located on the various layers, and the misaligned beads may induce unusual stress concentrations.
There are also multiple openings in the head and the manifold for exhaust gases and bolts holes. The areas around these openings are known to be put under additional stresses and leakage is common due to movement and misalignment of the gasket layers.
Traditionally, the various gasket layers are aligned and held in place during gasket assembly by welding, eyeleting or form-locking. The eyeleting and form-locking methods both add thickness to the gasket and therefore must be located outside of the joined area, which is not ideal. While welding does not necessarily add thickness to the gasket, the weld spots may crack and/or break due to horizontal hardware motion which allows the gasket layers to shift.
In view of the foregoing disadvantages of the prior art, it would be advantageous for a MLS gasket to be able to prevent or resist horizontal motion and misalignment of the layers to the extent that it negatively affects performance of the gasket.
SUMMARY OF THE INVENTIONThe present invention is directed toward an exhaust manifold gasket assembly having at least two or more layers, and utilizing a series of tabs and slots to maintain alignment of the layers. The exhaust manifold gasket assembly has a first outer layer comprising an outer surface, an inner surface, two bolt hole flanges with bolt holes therethrough, and a central aperture between the flanges. The surfaces are bounded by an outer perimeter portion. At least two foldable tabs are nested within the outer perimeter portion with a cut-out on each side of the foldable tab. A first inner layer and a second inner layer each comprise an outer surface, an inner surface, two bolt hole flanges with bolt holes therethrough, and a central aperture between the flanges, and at least two internal slots. The surfaces are bounded by an outer perimeter portion, wherein at least one locator tab is located. Each of the inner layers also has a bead circumferentially extending about the central aperture inboard the outer perimeter portion of each of the inner layers. A second outer layer may be provided and comprises an outer surface, an inner surface, two bolt hole flanges with bolt holes therethrough, a central aperture between the flanges, and at least two internal slots. The surfaces are bounded by an outer perimeter portion.
In accordance with the present invention, it has been discovered that once the layers are assembled together, horizontal movement between the layers is significantly decreased, and the beads located on the inner layers remain aligned reducing unusual stress concentrations.
The above, as well as other advantages of the present invention, will become readily apparent to those skilled in the art from the following detailed description when considered in the light of the accompanying drawings in which:
It is to be understood that the invention may assume various alternative orientations and step sequences, except where expressly specified to the contrary. It is also to be understood that the specific devices and processes illustrated in the attached drawings, and described in the following specification are simply exemplary embodiments of the inventive concepts defined in the appended claims. Hence, specific dimensions, directions or other physical characteristics relating to the embodiments disclosed are not to be considered as limiting, unless the claims expressly state otherwise.
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Exhaust manifold gasket assemblies are manufactured in accordance with the various shapes of cylinder heads and exhaust manifolds, and include numerous openings, such as exhaust gasket openings and bolt holes.
The embodiment of the exhaust manifold gasket assembly 10, as depicted in
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The surfaces 22, 24 of the first outer layer 20 are bounded by an outer perimeter portion 36, wherein unitary foldable tabs 38, 40, 42, 44 are nested within the outer perimeter portion 36. A rectangular shaped cut-out 46, 48, 50, 52, 54, 56, 58, 60 is adjacent each side of each foldable tab 38, 40, 42, 44, and an outer edge 62 of each of the foldable tabs 38, 40, 42, 44 is substantially even with an outer edge 64 of the outer perimeter portion 36. While as depicted in
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The surfaces 68, 70, 98, 100 of each of the inner layers 66, 96 are bounded by an outer perimeter portion 88, 120. The outer perimeter portion 88, 120 is generally oval in shape and includes locator tabs 90, 92, 122, 124. As shown in
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The internal slots 144, 146, 148, 150 are located inboard of the outer perimeter portion 152, and generally located toward the narrow ends of the oval outer perimeter portion 151 between the bolt hole flanges 134, 136 and the central aperture 142. The internal slots 144, 146, 148, 150 are oriented parallel with and adjacent the outer perimeter portion 152. The width of each internal slot is less than the length. As depicted in
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The use of the series of foldable tabs and internal slots in the various gasket layers that align during assembly eliminates the ability of the layers to slide independently if the welds or other means of attachment that may have been used fails. The foldable tabs act as limiters to the horizontal movement of the layers within the joint. This combination of tabs and slots does not add additional thickness to the gasket in the region between the joint. The ability to locate these features within the joint eliminates the horizontal motion from “unfolding” the tabs that are acting as the motion limiters.
Claims
1. An exhaust manifold gasket, comprising:
- a first outer layer comprising an outer surface, an inner surface, two bolt hole flanges with bolt holes therethrough, and a central aperture between said flanges, said surfaces bounded by an outer perimeter portion, wherein at least two tabs are nested within said outer perimeter portion and wherein a cut-out is adjacent each side of said foldable tab; and
- a first inner layer and a second inner layer each comprising an outer surface, an inner surface, two bolt hole flanges with bolt holes therethrough, and a central aperture between said flanges, and at least two internal slots, said surfaces bounded by an outer perimeter portion, wherein at least two locator tabs extend from said perimeter portion of each of said first inner layer and said second inner layer, and a bead circumferentially extending about said central aperture inboard said outer perimeter portion of said first inner layer and said second inner layer; and
- a second outer layer comprising an outer surface, an inner surface, two bolt hole flanges with bolt holes therethrough, a central aperture between said flanges, and at least two internal slots, said surfaces bounded by an outer perimeter portion.
2. An exhaust manifold gasket according to claim 1, wherein said internal slots on each of said first inner layer and said second inner layer are aligned with one another.
3. An exhaust manifold gasket according to claim 1, wherein said foldable tabs on said first outer layer are aligned with said internal slots on each of said first inner layer, second inner layers and said second outer layer.
4. An exhaust manifold gasket according to claim 1, wherein said locator tabs on each of said first inner layer and said second inner layer are opposite and diagonal from each other.
5. An exhaust manifold gasket according to claim 1, wherein said central apertures of all said layers are aligned with one another and have a complimentary shape to one another.
6. An exhaust manifold gasket according to claim 1, wherein said beads of said inner layers are radially aligned with one another.
7. An exhaust manifold gasket according to claim 1, wherein said inner and outer surfaces of said outer layers are planar and parallel and define between them a substantially constant thickness.
8. An exhaust manifold gasket according to claim 1, wherein four foldable tabs extend from said outer perimeter portion of said first outer layer.
9. An exhaust manifold gasket according to claim 1, wherein two locator tabs extend from said outer perimeter portion of each of said first inner layer and said second inner layer.
10. An exhaust manifold gasket according to claim 1, wherein said inner surface of said first inner layer is directly adjacent said inner surface of said first outer layer.
11. An exhaust manifold gasket according to claim 1, wherein said outer surface of said second inner layer is directly adjacent said inner surface of said second outer layer.
12. An exhaust manifold gasket according to claim 1, wherein said outer surface of said first inner layer is directly adjacent said inner surface of said second inner layer.
13. An exhaust manifold gasket according to claim 1, wherein said foldable tabs on said first outer layer fold to a 90 degree angle and align with said internal slots on each of said first inner layer, said second inner layer and said second outer layer.
14. An exhaust manifold gasket, comprising:
- a first layer comprising an outer surface, an inner surface, two bolt hole flanges with bolt holes therethrough, and a central aperture between said flanges, said surfaces bounded by an outer perimeter portion, wherein at least two tabs are nested within said outer perimeter portion and wherein a cut-out is adjacent each side of said foldable tab; and
- a second layer comprising an outer surface, an inner surface, two bolt hole flanges with bolt holes therethrough, and a central aperture between said flanges, and at least two internal slots, said surfaces bounded by an outer perimeter portion, wherein at least two locator tabs extend from said perimeter portion, and a bead circumferentially extending about said central aperture inboard said outer perimeter portion.
15. An exhaust manifold gasket according to claim 14, wherein said foldable tabs on said first layer are aligned with said internal slots on said second layer.
16. An exhaust manifold gasket according to claim 14, wherein said locator tabs on said second layer are opposite and diagonal from each other.
17. An exhaust manifold gasket according to claim 14, wherein said central apertures of said layers are aligned with one another and have a complimentary shape to one another.
18. An exhaust manifold gasket according to claim 14, wherein four foldable tabs extend from said outer perimeter portion of said first layer.
19. An exhaust manifold gasket according to claim 14, wherein two locator tabs extend from said outer perimeter portion of said second layer.
20. An exhaust manifold gasket according to claim 14, wherein said foldable tabs on said first layer fold to a 90 degree angle and align with said internal slots on said second layer.
Type: Application
Filed: Nov 22, 2011
Publication Date: Jun 7, 2012
Applicant: Dana Automotive Systems Group, LLC (Maumee, OH)
Inventor: David J. Schweiger (Pewaukee, WI)
Application Number: 13/301,912
International Classification: F02F 11/00 (20060101);