The present invention relates to a gasket, more particularly to a gasket that is provided with a bolt hole on one side of a bead part, is arranged between flanges and is fastened with a bolt to provide sealing while being supported on one side between the flanges
A gasket has an opening to be sealed, formed in a metallic base material, and a bead part is formed along the circumference of the opening. When the gasket is arranged between flanges and is fastened with a bolt, this bead part is compressed between the flanges to seal the opening against, for example, internal pressure or water from outside. The bead part has functions of increasing contact pressure by forming line contact on a seal surface and also of allowing the seal surface to follow a flatness of a counter surface.
In recent years, particularly in the field of automobiles, it is essential to achieve size and weight reduction of a flange in a housing, for example, of an engine, an auxiliary device, an inverter for EV or HEV, or the like in order to improve fuel efficiency. Therefore, the need for reducing the number of bolts to fasten the flange, as well as reducing the thickness of the flange, is increasing.
When the number of bolts is reduced, a bolt may be arranged only one side of the flange to avoid contact with others such as a housing. This case leads to a so-called overhang state in which the flange is fastened with the bolt only on one side as illustrated in
Since the gasket described above is supported on one side by the bolt, a cover of a housing is inclined downward on the bolt side during fastening with the bolt and an amount of compression of the bead part through the flange is insufficient. Therefore, there is a problem in that sealing properties are degraded. This problem becomes more remarkable as the bead part (opening) is located further away from the bolt. When a plurality of bead parts (openings) are provided, the problem becomes more remarkable in the bead part (opening) that is located further away from the bolt.
Previously, in Patent document 1, a gasket has been disclosed that has a through-hole through which a shaft of a bolt passes and a seat corresponding part which is provided around the circumference of the through-hole and corresponds to the seat of the bolt. The gasket is combined with an annular metal piece arranged on the bolt section so that the metal piece receives a fastening load of the bolt to address reduction in the fastening load due to reduction in rigidity of the flange. However, the document does not disclose the insufficiency of the amount of compression of the bead part through the flange in the overhang state described above, and thus cannot resolve the problem described above.
Patent Document 1: JP-A-2012-219818
Therefore, it is an object of the present invention is to enable an amount of compression of a bead part to be ensured and sealing properties to be improved in a gasket that is supported on one side with a bolt hole provided only on one side of the bead part.
Other problems of the present invention will be apparent from the following description.
The above-described problems are solved by the following respective inventions.
1. A gasket comprising an opening to be sealed, a bead part provided along a circumference of the opening, and a bolt hole arranged on one side of the bead part, and being arranged between a case and a cover and being fastened with a bolt to seal the opening while being supported on one side by the bolt,
According to the present invention, an amount of compression of a bead part can be ensured and sealing properties can be improved in a gasket that is supported on one side with a bolt hole provided only on one side of the bead part.”
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
As illustrated in
As shown in the
The gasket 1 is provided with the appropriate number of bolt holes 13, through each of which a bolt 200 is inserted when the gasket 1 is arranged between the case 101 and the cover 102 and is integrally fastened with the bolt 200. Although this embodiment has two bolt holes 13, the specific number of bolt holes 13 is not limited.
The gasket 1 is formed from a metallic base material, such as a stainless steel, a cold-rolled steel sheet, a galvanized steel sheet or aluminum laminated sheet. A rubber-like elastic body (not shown) is preferably adhered on the surfaces (both front and rear surfaces) of the metallic base material. The elastic close contact of the rubber-like elastic body on the surfaces with the case 101 and the cover 102 enables sealing properties to be improved. As the rubber-like elastic body, for example, a nitrile rubber, a styrene butadiene rubber, a fluororubber, an acrylic rubber or a silicone rubber may be used. For the rubber-like elastic body, one of these rubbers may be used alone, or a synthetic rubber (including an expanded rubber, a foam (formed) rubber) containing any two or more of these rubbers may be used.
The housing 100 is structured such that the case 101 and the cover 102 are fastened with the bolt 200 only on one side of the opening 103. Therefore, the bolt holes 13 of the gasket 1 are also arranged only on one side of the bead part 12 (only on the right side in
The gasket 1 is provided with a height adjusting part 14 in a side edge portion 1a (a right side edge portion in
The height adjusting part 14 is formed so that the side edge portion 1a is locally thicker to regulate the gap 104 between the case 101 and the cover 102 so as to correspond to the thickness of the height adjusting part 14 during fastening with the bolt 200. Consequently, the height adjusting part 14 forms a fulcrum that serves to press the cover 102 into contact with the bead part 12 of the gasket 1.
In other words, the height adjusting part 14 is formed in the side edge portion 1a of the gasket 1 to make it be locally thicker, thereby when the gasket 1 is covered with the cover 102 and is fastened with the bolt 200, the cover 102 is brought into contact with the height adjusting part 14 at about the same time as the bead part 12, as illustrated in
In this way, the cover 102 is pressed into contact with the bead part 12 of the gasket 1, and an amount of compression of the bead part 12 is ensured. This enables the sealing properties for the openings 103 and 11 to be improved even though the gasket 1 is supported on one side by the bolt 200.
On the other hand, with a gasket 1′ not having such a height adjusting part 14, when the gasket 1 is covered with the cover 102 and is fastened with the bolt 200, the cover 102 is firstly brought into contact only with the bead part 12, as illustrated in
The height h1 of the height adjusting part 14 is preferably less than or equal to the height of the lowest bead part 12. In this embodiment that has only one bead part, the height h1 of the height adjusting part 14 is preferably less than or equal to the height h2 of the bead part 12, specifically 0<h1≦h2. If the height h1 of the height adjusting part 14 is greater than the height h2 of the bead part 12, the cover 102 inclines with the height adjusting part 14 side being higher, which makes it difficult to ensure the amount of compression of the bead part 12 through the cover 102. More preferably, (0.5×h2)<h1≦h2 is satisfied.
The height adjusting part 14 may have any structure that enables the side edge portion 1a of the gasket 1 to be locally thicker. For example, another member separate from the gasket 1 may be mounted on the gasket 1 to form the height adjusting part 14. However, the height adjusting part 14 is preferably formed by folding the side edge portion 1a. In this way, since the height adjusting part 14 can be integrally formed only by folding the side edge portion 1a, the gasket 1 has a simple structure and can be manufactured at a low cost.
The folded height adjusting part 14 may be folded so that a folded end portion 14a is overlapped with a gasket body 10 as illustrated in
For the height adjusting part 14 in
The gasket 1 is provided with at least two openings 11; an opening 11a that is located closer to the bolt hole 13 and an opening 11b that is located further away from the bolt hole 13. The bead parts 12 are provided along respective circumferences of openings 11a and 11b, and include a bead part 12a for the opening 11a and a bead part 12b for the opening 11b.
In this case, although the height adjusting part 14 also provides an effect of ensuring the amount of compressions of respective bead parts 12a and 12b through the cover 102 during fastening with the bolt 200 as described above, this embodiment includes the bead parts 12a and 12b having different heights and illustrates a preferable aspect when there are a plurality of bead parts 12. As illustrated in
As the number of the openings 11 (bead parts 12) increases, the size of the cover 102 increases and the end 102a of the cover 102 is located further away from the bolt 200. As a result, during fastening with the bolt 200, a force pressing the cover 102 into contact with the bead part 12 tends to be smaller in a position closer to the end 102a of the cover 102 with the height adjusting part 14 serving as a fulcrum A as illustrated in
When there exist the bead part 12a having the height of h2a and the bead part 12b having the height of h2b, the height h1 of the height adjusting part 14 is preferably less than or equal to the height h2a of the lowest bead part 12a, specifically 0<h1≦h2a. If the height h1 of the height adjusting part 14 is greater than the height h2a of the bead part 12a, it is difficult to ensure the amount of compression of the bead part 12a through the cover 102. More preferably, (0.5×h2)<h1≦h2a is satisfied.
Although the gasket 1 having two bead parts 12a and 12b is illustrated in
Although, in each embodiment described above, the folded height adjusting part 14 is formed so that the end edge 14b, which is located closest to the bead part 12, does not overlap the bolt hole 13, the height adjusting part 14 may be folded so that the end edge 14b protrudes to the bolt hole 13 by an amount of protrusion L that is less than or equal to the radius D of the bolt hole 12 as illustrated in
This enables a portion of the height adjusting part 14 to overlap the seat surface 200a of the bolt 200, therefore loss of the fastening axial force of the bolt 200 due to deflection of the cover 102 can be prevented while the force pressing the end 102a of the cover 102 downward is ensured.
Although, in each embodiment described above, the height adjusting part 14 is folded along the whole length of the side edge portion 1a, the height adjusting part 14 may be partially folded only near the bolt hole 13, for example.
1: gasket
10: gasket body
11, 11a, 11b: opening
12, 12a, 12b: bead part
13: bolt hole
14: height adjusting part
100: housing
200: bolt
A, B: fulcrum
While the preferred embodiments of the devices and methods have been described in reference to the environment in which they were developed, they are merely illustrative of the principles of the inventions. The elements of the various embodiments may be incorporated into each of the other species to obtain the benefits of those elements in combination with such other species, and the various beneficial features may be employed in embodiments alone or in combination with each other. Other embodiments and configurations may be devised without departing from the spirit of the inventions and the scope of the appended claims.
Number | Date | Country | Kind |
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JP2015005423 | Jan 2015 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2016/050884 | 1/13/2016 | WO | 00 |