The present invention relates to a gasket with dissimilar materials. More particularly, the invention relates to a gasket having dissimilar materials at different sealing locations.
Gaskets are well-known devices for creating a seal between two parts. In some instances, one kind of gasket material is preferable over another material for certain applications. The preference for one material over another might be because of the performance characteristics of the gasket material. In some cases, the higher performing gasket material is more expensive. The resulting gasket is often entirely constructed of the more expensive, higher performing material.
This is disadvantageous because the expensive material might be used in certain locations or applications that does not call for higher performing gasket material. It would be preferable to only selectively use the higher performing, more expensive gasket material only where it is needed in an application and then use a less expensive material where the higher performing material is not needed.
It would also be advantageous to selectively use two different gasket materials for a sealing application and join those materials to one another without having to make accommodations in the mating parts for the joint.
In a first embodiment, a gasket comprises two dissimilar materials. The first material has a first and second profile, which are different from one another, and the second material has a first and a second profile, which are different from one another. The first material first profile and the second material first profile are the same. The first material second profile and the second material second profile combine to form the same shape as the first material first profile or the second material first profile.
In a second embodiment, the two dissimilar materials are provided with complementary joining portions. The first material joining portion uses a series of planes with a male portion extending from two of the planes. The second material joining portion uses a series of complementary planes with a recess between two planes for receiving the male portion.
The inventions 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 herein. Hence, specific dimensions, directions or other physical characteristics relating to the embodiments disclosed are not to be considered as limiting, unless expressly stated otherwise.
Turning now to
As seen in
The air intake 22 portion forms a part of the perimeter wall 26. In this instance, the air intake portion 22 defines three openings 32, each opening 32 is separated by a land 34. The openings 32 are bounded by continuous walls 36.
As can be appreciated from
The air intake openings 32 and the cam cover 20 need to be sealed so a gasket, or seal, is located about the openings 32. Preferably, the air intake openings 32 are sealed with a first material 42 and the cam cover 20 is sealed with a second, different material 44.
The first material 42 that is used about the air intake openings 32 may be such as FKM or FPM. FPM is the international abbreviation according to DIN/ISO, whereas FKM is the short form for the fluoroelastomer category according to the American standard ASTM.
Other fluorinated elastomers are perfluoro-elastomers (FFKM) and tetrafluoro ethylene/propylene rubbers (FEPM). All FKMs contain vinylidene fluoride as a monomer. Fluoroelastomers are more expensive than neoprene or nitrile rubber elastomers. They provide additional heat and chemical resistance. FKMs can be divided into different classes on the basis of their chemical composition, their fluorine content or their crosslinking mechanism.
The second material 44 that is used about the cam cover 20 may be such as AEM or ACM. AEM rubber, also abbreviated AECM (ISO 1629), is an ethylene acrylic rubber. ACM is acrylic rubber, known by the chemical name alkyl acrylate copolymer.
It is a type of rubber that has good resistance to hot oil, ozone and oxidation and it has a low permeability to gases. It has a high continuous working temperature in the range of 300 degrees F.
It is desirable to use the first material 42 about the air intake openings 32 because of its performance characteristics. The first material 42 can be expensive and thus it is undesirable to extend it about the cam cover 20. Instead, it is preferred to use the second material 44 about the cam cover 20 since it is less expensive and it has performance characteristics adequate for the conditions therein.
There is, however, only a single groove 30 extending about the air intake openings 32 and the cam cover 20; the groove 30 has a single, mostly, if not entirely, constant width along its entire course. In order to accommodate two different materials 42, 44 within the groove 30 the gaskets depicted and described herein may be used.
As can be appreciated from
The second profile 48 has a generally T-shaped cross section as seen in
At a land 34, the second profile 48 of the first material 42 transitions to the first profile 46, as seen in
The second material 44 has a first and second profile 68, 70 as well, as shown in
At a land portion 34, the second profile 70 of the second material 44 transitions to the first profile 68, which can be appreciated from
The planar sides 66, 86 of the first material 42 and the second material 44 abut one another in a continuous fashion from the upper tracks 62, 82 and along the base portions 50, 72 of the materials. The planar sides 66, 86 abut one another in a continuous fashion at least along their length in the groove 30 from one land 34 to the next land 34.
In one embodiment, the two second profiles 48, 70 of the two different gasket materials 42, 44 combine to result in a single profile that is the same as the two first profiles 46, 68. In other words, the two second profile 48, 70, when located together, fit within the same single groove 30 as the first profiles 46, 68, and have the same general shape. This can be appreciated from
It is also within the scope of the present invention that the groove 30 be slightly wider where the two materials 42, 44 combine in order to accommodate them, which can be seen in
A mating part 88, or parts, is located against the air intake 22 and cam cover 20 to enclose them, as shown in
The mating part 88 is located in direct contact with the upper track 62 of the first material 42 as it extends around the periphery of the air intake 22, which can be appreciated in
In each of the above-described locations, the mating part 88 compresses the first and second materials 42, 44 so that a seal is created between the materials 42, 44 and the mating part 88. More particularly, a seal is formed between the upper tracks 62, 82 and the mating part 88, as seen in
Compression also results in a seal being formed between an underside surface 90, 92, 94, 96 of each inner and outer arm 52, 54, 74, 76 of the first and second materials 42, 44 and the upper surface 28 of the wall 26 defining the groove 30. Additionally, a bottom surface 98, 100 of each base portion 50, 72 is located in direct contact with a bottom surface 102 of the groove 30 to form a seal.
The gasket is comprised of the first material 42 and the second material 44, as described above. Preferably, the second material 44 extends around the cam cover 20 perimeter. It is desirable to use the first material 42 about the air intake 22 openings 32.
The second material 44 extends to the land area 34 where a joining portion 104 for connecting with the first material 42 is located. In the depicted embodiment, prior to the land area 34, the second material 44 has the same shape and features as described above. Namely, the second material 44 has an upper track 82, inner and outer arms 74,76 and base portion 72. In, or adjacent, the land area 34, the second material 44 widens to form the joining portion 104, as seen in
As seen in
The transitions between planes in the figures are depicted as having radii, but it is permissible to have radii other than as shown, or the transitions may be at sharp angles with respect to one another.
As best seen in
Two feet 122 extend downwardly from beneath the joining portion 104, as shown in
Preferably, the entirety of the second material 44 is one-piece, integrally formed and unitary. It is within the scope of the invention, however, for any of the above-described features of the gasket to be separately formed and then joined together.
The first material 42 has a complementary shaped joining portion 128 to the second material 44 joining portion 104, which can be appreciated from at least
In or adjacent the land area 34, the first material 42 widens to form the joining portion 128, as shown in
At least one, and preferably two, cross-pieces 136 extend across the first recess 134. The cross-pieces 136 extend from the diverged tracks 130, 132 continuously across the first recess 134 equidistant from one another. The cross-pieces 136 are substantially transverse to the diverged tracks 130, 132. The cross-pieces 136 may be the same height as the tracks 130, 132 or they may be a lesser dimension, as shown in
A first downwardly extending plane 138 interrupts the first recess 134 and both tracks 130, 132, as shown in
The transitions between planes in the figures are depicted as having radii, but it is permissible to have radii other than as shown, or the transitions may be at sharp angles with respect to one another.
A male portion 144 is located in the second plane 140 and extends through to the third plane 142, as shown in
A second recess 146 in the first material 42 extends into the third plane, as shown in
Preferably, the entirety of the first material 42 is one-piece, integrally formed and unitary. It is within the scope of the invention, however, for any of the above-described features of the first material 42 to be separately formed and then joined together.
The plane shapes 112, 138, 114, 140, 116, 142 of the first material 42 and the second material 44 increase the surface area of the materials 42, 44 at the joining portions 104, 128. The increased surface area, the resulting zig-zag shape of the joining portions 104, 128, and the male portion 144 and mating recess 118, result in a stable, firm joint that forms a tight and strong seal between the two materials 42, 44. The zig-zag shape created by the planes has the added benefit of permitting the materials 42, 44 to compress against one another for better sealing.
In accordance with the provisions of the patent statutes, the present invention has been described in what is considered to represent its preferred embodiments. However, it should be noted that the invention can be practiced otherwise than as specifically illustrated and described without departing from its spirit or scope.
This application claims the benefit of U.S. Provisional Patent Application Ser. No. 61/900,486 filed on Nov. 6, 2013, which is incorporated by reference herein.
Number | Name | Date | Kind |
---|---|---|---|
3720420 | Jelinek | Mar 1973 | A |
5011162 | Jelinek | Apr 1991 | A |
5536018 | Szott | Jul 1996 | A |
5700017 | Tensor | Dec 1997 | A |
6173969 | Stoll | Jan 2001 | B1 |
6609717 | Hinson | Aug 2003 | B2 |
6730385 | Tanaka | May 2004 | B1 |
7029013 | Yajima et al. | Apr 2006 | B2 |
20040239047 | Kent | Dec 2004 | A1 |
20070210528 | Baber | Sep 2007 | A1 |
20080226862 | Spurrell | Sep 2008 | A1 |
20100018778 | Nanayakkara | Jan 2010 | A1 |
20110227295 | Watanabe | Sep 2011 | A1 |
Number | Date | Country |
---|---|---|
1302707 | Apr 2003 | EP |
2863677 | Jun 2005 | FR |
2007024212 | Mar 2007 | WO |
WO 2007024212 | Mar 2007 | WO |
2011114800 | Sep 2011 | WO |
2013143721 | Oct 2013 | WO |
Number | Date | Country | |
---|---|---|---|
20160131258 A1 | May 2016 | US |
Number | Date | Country | |
---|---|---|---|
61900486 | Nov 2013 | US |