The invention relates to a gasket used at a connecting area between two tubes, and having a sealing capability that prevents gas or fluid flowing through tubes from leaking out, and further preventing external gas and fluid from entering into tubes.
Two tubes have been conventionally connected to each other in such a way as illustrated in
The gasket has been conventionally composed of a mixture of asbestos as a primary component and rubber or carbon, because gas or fluid flowing through a tube has a high temperature or a high pressure or is intensively alkaline or acidic. However, since the use of asbestos was absolutely prohibited since the year 2008, a gasket composed of a material other than asbestos is suggested. One of them is disclosed in the patent reference 1.
As illustrated in
The above-mentioned gasket has superior sealing performance, and can be expected to have superior sealing capability also to gas and fluid in high temperature or pressure, or intensively alkaline or acidic gas and fluid, by providing corrosion resistance to a surface thereof. However, the gasket has an accompanied with a problem in that since it is necessary to form the annular groove 205 at the peripheral wall 204 of the annular plate 203 by cutting, a great number of fabrication steps is unavoidable with high fabrication costs, Furthermore, since the sealing capability can be accomplished only by the annular projection 207 formed on a surface of the annular plate 203 in the vicinity of a peripheral end of the close contact portions 206, for instance, as illustrated in
The patent reference 2 suggests another conventional gasket. The gasket is comprised of a metal plate having a curved portion 211 comprised of a primary curved portion 212 and subsidiary curved portions 213 and 214. As illustrated in
When the gasket 210 comprised of a metal plate having the curved portion 211 comprised of the primary curved portion 212 and the subsidiary curved portions 213 and 214 is used for joining the tubes 101 and 102 to each other, as illustrated in
Patent reference 1: Japanese Patent Application Publication No. 11-22826
Patent reference 2: Japanese Patent Application Publication No. 11-230355
In accordance with the present invention in the first aspect, since the gasket is comprised of a plate centrally formed with a hole, and composed of metal having elasticity, the plate including two or more first annular raised portions formed outside of the hole on one of surfaces thereof, an annular recessed portion(s) formed in association with the first annular raised portions on the other surface thereof, a second annular raised portion formed between the adjacent first annular raised portions and portions associated with the first annular raised portions on the other surface such that the second annular raised portion do not overlap the first annular raised portions, an annular recessed portion(s) formed in association with the second annular raised portion on the one of surfaces, and a an annular connection portion formed between the first and second annular raised portions, the annular connection portion being at least partially planar, and being capable of being elastically deformed, wherein the annular connection portion is elastically deformed at opposite ends of a planar portion thereof in opposite directions when the gasket is sandwiched and compressed between the flanges, and summits of the first annular raised portions and the second annular raised portion make contact with surfaces of the flanges by virtue of a reaction force caused by the elastic deformation to thereby hermetically seal a space defined by the summits of the first annular raised portions and the second annular raised portion and the surfaces of the flanges, ensuring enhancement in sealing performance. In addition, the structure as mentioned above makes it possible to fabricate the gasket in a single step in press working, ensuring reduction in fabrication costs.
In accordance with the present invention in the second aspect, since the central hole is circular, quadrangular or polygonal, the gasket may be used for joining circular, quadrangular or polygonal tubes to each other.
In accordance with the present invention in the third aspect, since the plate includes an anticorrosive coating layer on a surface thereof, the gasket can preferably be used for joining tubes to each other in which corrosive gas or fluid passes.
In accordance with the present invention in the fourth aspect, since the anticorrosive coating layer is composed of a material having flexibility, it is possible to enhance the sealing performance.
In view of the above-mentioned problems, it is an object of the present invention to provide a gasket which is capable of, even if tightened at opposite sides thereof by flanges, elastically deforming to produce a reaction force against a force generated due to tightening the gasket, thereby ensuring enhancement in sealing performance, and being fabricated through pressing work, thereby ensuring low fabrication costs.
In order to accomplish the above-mentioned object, the present invention provides, in a first aspect, a gasket to be sandwiched between a pair of flanges disposing in facing relation, the gasket being comprised of a plate centrally formed with a hole, and composed of metal having elasticity, the plate including two or more first annular raised portions formed outside of the hole on one of surfaces thereof, an annular recessed portion(s) formed in association with the first annular raised portions on the other surface thereof, a second annular raised portion formed between the adjacent first annular raised portions and portions associated with the first annular raised portions on the other surface such that the second annular raised portion do not overlap the first annular raised portions, an annular recessed portion(s) formed in association with the second annular raised portion on the one of surfaces, and a an annular connection portion formed between the first and second annular raised portions, the annular connection portion being at least partially planar, and being capable of being elastically deformed, wherein the annular connection portion is elastically deformed at opposite ends of a planar portion thereof in opposite directions when the gasket is sandwiched and compressed between the flanges, and summits of the first annular raised portions and the second annular raised portion make contact with surfaces of the flanges by virtue of a reaction force caused by the elastic deformation to thereby hermetically seal a space defined by the summits of the first annular raised portions and the second annular raised portion and the surfaces of the flanges.
The present invention in a second aspect is characterized in that the hole is circular, quadrangular, or polygonal in the gasket in accordance with the present invention in the first aspect.
The present invention in a third aspect is characterized in that the plate includes an anticorrosive coating layer on a surface thereof in the gasket in accordance with the present invention in the first aspect.
The present invention in a fourth aspect is characterized in that the plate includes on a surface thereof an anticorrosive coating layer composed of material having flexibility in the gasket in accordance with the present invention in the first aspect.
The present invention in a fifth aspect is characterized in that the annular connection portion has a planar surface, is step-wise, and can be elastically deformed in the gasket in accordance with the present invention in the first aspect.
Hereinbelow, embodiments in accordance with the present invention are explained in detail with reference to drawings.
As illustrated in
In the above-mentioned embodiment, though the gasket is designed to include the single second annular raised portion 16, the gasket may be designed to include two second annular raised portions 16 such that they do not overlap the first annular raised portions 12 and 13, in which case, the second annular raised portions 16 and the first annular raised portions 12 and 13 may be connected to each other through planar connection portions. The gasket may be designed to include two or more first annular raised portions and/or second annular raised portions, in which case, each of the first annular raised portions and each of the second annular raised portions is connected to each other through a planar connection portion.
Since the reaction force “F” of the gasket 10 is dependent on the elastic force of the plate 27, the plate 27 is composed of metal having elasticity, such as steel, in order to have a strong sealing force. Furthermore, since the gasket 10 is comprised of the plate 27 centrally formed with the circular hole 11, and including one or more first annular raised portions 12 and 13 formed outside of the hole 11 on the front surface thereof, one or more second annular raised portion(s) 16 formed outside the hole 11 on the rear surface, and the connection portions 18 and 19 formed between the first annular raised portions 12 and 13 and the second annular raised portion(s) 16, the gasket can be readily formed by press working. Thus, it is possible to fabricate a mass of gaskets accomplishing superior sealing performance, at low costs.
In the case that the plate 27 of the gasket 10 is composed of steel, an anticorrosive treatment is applied to the gasket 10 in order to allow the gasket to be used in a corrosive environment such as strong-alkaline or strong-acidic environment. In the case where the gasket may be covered with an anticorrosive coating layer composed of, for instance, a Teflon (Registered trademark) coating layer, an anticorrosive rubber coating layer, a copper-plated layer or a zinc-plated layer. In the case that the anticorrosive coating layer is composed of flexible material such as a Teflon (Registered trademark) coating layer or an anticorrosive rubber coating layer, even if the flanges 23 and 24 have recessed and raised portions such as flaws at surfaces thereof, the coating layer deforms in accordance with the recessed and raised portions of the surfaces of the flanges 23 and 24, and makes close contact with the surfaces, ensuring enhancement in sealing performance. In addition, the plate 27 may be composed of stainless steel such as SUS. As an alternative, the plate 27 may be composed of anticorrosive non-metal material having elasticity, for instance, plastic such as polyethylene terephthalate or polyimide.
In the above-mentioned embodiment, the first annular raised portions 12 and 13 and the second annular raised portions 16 are designed to have a circular cross-section, however, the cross-section is not to be limited to an arcuate one. For instance, as illustrated in
It is not always necessary that the connection portions 18 and 19 are entirely planar. For instance, as illustrated in
In the above-mentioned gasket 10, the plate 27 is designed to centrally have the circular hole 11. The central hole is not to be limited to a circular hole. The hole may be designed to be polygonal such as a quadrangle in dependence on a cross-section of tubes to be joined to each other. Furthermore, the first annular raised portions 12 and 13 and the second annular raised portions 16 are designed to be analogous with the central hole, however, it is not always necessary for the first annular raised portions 12 and 13 and the second annular raised portions 16 to be analogous with the central hole, if the first annular raised portions 12 and 13 and the second annular raised portions 16 are annular so as to surround the central hole therein.
As mentioned above, since the first annular raised portions 12 and 13 and the second annular raised portions 16 in the gasket 10 are joined to each other through the connection portions 18 and 19 both capable of elastically deforming, the gasket 10 is not buckled (is not plastically deformed) unlike the gasket 210 suggested in the patent reference 2 (see
Furthermore, since the gasket 210 suggested in the patent reference 2 attempts to accomplish the hermeticity only by the summits of the primary curved portion 212 and the subsidiary curved portions 213 and 214, the summits of the primary curved portion 212 and the subsidiary curved portions 213 and 214 of the gasket 210, and a portion of the flanges 103 and 104 with which the summits make contact have to be finished (mirror-finished) with high accuracy. In contrast, since the hermeticity is accomplished by the elastic deformation of both the summits of the first annular raised portions 12 and 13 and the second annular raised portions 16 and the connection portions 18 and 19 in the gasket 10, it is not necessary to finish the summits of the first annular raised portions 12 and 13 and the second annular raised portions 16, and surfaces of the flanges 23 and 24 with high accuracy.
While the present invention has been described in connection with certain preferred embodiments, it is to be understood that the subject matter encompassed by way of the present invention is not to be limited to those specific embodiments. On the contrary, it is intended for the subject matter of the present invention to include all alternatives, modifications and equivalents as described in the claims, specification and drawings. Even if not explicitly described in the specification and/or drawings, any shapes and materials are included within the spirit and scope of the present invention, if they provide the same functions and performances as those provided by the present invention.
As has been explained so far, the gasket being comprised of a plate centrally formed with a hole, and composed of metal having elasticity, the plate including two or more first annular raised portions formed outside of the hole on one of surfaces thereof, an annular recessed portion(s) formed in association with the first annular raised portions on the other surface thereof, a second annular raised portion formed between the adjacent first annular raised portions and portions associated with the first annular raised portions on the other surface such that the second annular raised portion(s) do not overlap the first annular raised portions, an annular recessed portion(s) formed in association with the second annular raised portion on the one of surfaces, and a an annular connection portion formed between the first and second annular raised portions, the annular connection portion being at least partially planar, and being capable of being elastically deformed, wherein the annular connection portion is elastically deformed at opposite ends of a planar portion thereof in opposite directions when the gasket is sandwiched and compressed between the flanges, and summits of the first annular raised portions and the second annular raised portion make contact with surfaces of the flanges by virtue of a reaction force caused by the elastic deformation to thereby hermetically seal a space defined by the summits of the first annular raised portions and the second annular raised portion and the surfaces of the flanges, ensuring enhancement in sealing performance. In addition, the structure as mentioned above makes it possible to fabricate the gasket in a single step in press working, ensuring reduction in fabrication costs.
Furthermore, since the plate includes an anticorrosive coating layer on a surface thereof, the gasket can preferably be used for joining tubes to each other in which corrosive gas or fluid passes such as high-temperature, high-pressure, strong-alkaline, and strong-acid gas or fluid.
Furthermore, since the anticorrosive coating layer is composed of a material having flexibility, it is possible to enhance the sealing performance, because even if the flanges have recessed and raised portions such as flaws at surfaces thereof, the coating layer makes close contact with the recessed and raised portions.
Furthermore, since the annular plate is composed of a non-metal anticorrosive material having elasticity, the gasket can preferably be used for joining tubes to each other in which corrosive gas or fluid passes.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2006/319195 | 9/27/2006 | WO | 00 | 3/24/2009 |