The present application is a national stage application of International Patent Application No. PCT/JP2019/049610 filed on Dec. 18, 2019, which claims the benefit of Japanese Patent Application No. 2019-009634, filed on Jan. 23, 2019. The contents of these applications are incorporated herein by reference in their entirety.
The present disclosure relates to a sealing device and a sealing structure, and particularly relates to a sealing device for static sealing and to a sealing structure including a sealing device for static sealing.
Conventionally, it is known that a gasket acts as a sealing device that is attached to an annular space such as an annular groove formed between a plurality of members placed face-to-face and immobilized relative to each other, such as a housing and a cover, to seal a gap between the members. The gasket and a component to which the gasket is applied forming the annular space to which the gasket is attached make up a sealing structure. Such a conventional gasket, in some cases, includes a tubular reinforcing ring formed annularly around an axis and extending in a direction of the axis and an elastic body part formed from an elastic body that is attached to the reinforcing ring. The elastic body part includes a pair of lip portions each extending along the axis from both end portions of the reinforcing ring in the direction of the axis (for example, see Japanese Utility Model Application Publication No. H6-32834).
In recent years, in response to reductions in size or weight of a component to which the gasket is applied, a cross section of the gasket has been made smaller due to downsizing of the gasket and the component to which the gasket is applied has been developed to be made thinner or to be made of resin. The smaller cross section of the gasket and the development of the component to which the gasket is applied being made thinner or being made of resin decrease a size of the annular space to which the gasket is attached and increase a degree of relative variation in the size of the space caused by manufacturing. As a result, it is conceivable that a gasket cannot provide intended sealing performance because of the variation in the size of the annular space to which the gasket is attached and thus various devices have been made (for example, see International Publication No. WO 2015/137491).
Even a gasket that can prevent a decrease in sealing performance even despite, as described above, a variation in the size of the annular space in the component to which the gasket is attached may be unable to display intended sealing performance due to a lip of the gasket being detached from the annular space in the component to which the gasket is attached if a direction in which the gasket is attached to the annular space in the component to which the gasket is attached in the direction of the axis is not an intended direction. This necessitates checking that the attached gasket faces in the intended direction. If the gasket does not face in the intended direction, the gasket needs to be properly reattached. This causes a decrease in production efficiency in some cases.
Consequently, the static sealing device like the conventional gasket and the sealing structure have been required to be developed into a sealing device and a sealing structure that enable proper attachment of the sealing device to be able to prevent a decrease in sealing performance even despite a variation in the size of an annular space in a component to which the sealing device is attached.
The present disclosure has been made in view of the above-described problem, it is an object of the present disclosure to provide a sealing device and a sealing structure that enable attachment of the sealing device in an intended way.
To achieve the above object, a sealing device according to the present disclosure is a sealing device for sealing an annular space formed by a plurality of members, in the sealing device including a reinforcing ring having an annular shape around an axis and an elastic body part formed from an elastic body, the elastic body part being attached to the reinforcing ring and having an annular shape around the axis, wherein the elastic body part includes a seal lip that is an annular portion projecting toward one side in a direction of the axis, a secondary lip portion that is an annular portion projecting toward another side in the direction of the axis, and an outer peripheral portion that is a portion covering the reinforcing ring from an outer periphery side; the seal lip projects beyond the reinforcing ring toward the one side in the direction of the axis; the secondary lip portion projects beyond the reinforcing ring toward the other side in the direction of the axis; and in the outer peripheral portion, at least one identification part is formed further on the one side or the other side than a middle of the outer peripheral portion in the direction of the axis, the at least one identification part acting as a mark.
In the sealing device according to one aspect of the present disclosure, the at least one identification part is a recessed part.
In the sealing device according to one aspect of the present disclosure, the at least one identification part is formed on an end portion on the one side of the outer peripheral portion.
In the sealing device according to one aspect of the present disclosure, a length of the seal lip in a direction of the projection is greater than a length of the secondary lip portion in a direction of the projection.
To achieve the above object, a sealing structure according to the present disclosure includes an attachment space that is an annular space around an axis formed by a plurality of members, and a sealing device for sealing the attachment space, wherein an engagement portion is formed between the attachment space and the sealing device; and the engagement portion includes a recessed engagement part that is a part formed in the attachment space, the recessed engagement part being recessed to an outer periphery side and a protruding engagement part that is a part formed in the sealing device so as to be housed in the recessed engagement part, the protruding engagement part projecting to the outer periphery side.
In the sealing structure according to one aspect of the present disclosure, the sealing device includes a reinforcing ring having an annular shape around an axis and an elastic body part formed from an elastic body, the elastic body part being attached to the reinforcing ring and having an annular shape around the axis; the elastic body part includes a seal lip that is an annular portion projecting toward one side in a direction of the axis and a secondary lip portion that is an annular portion projecting toward another side in the direction of the axis; the seal lip projects beyond the reinforcing ring toward the one side in the direction of the axis; the secondary lip portion projects beyond the reinforcing ring toward the other side in the direction of the axis; and the protruding engagement part is formed between the seal lip and the secondary lip portion in the direction of the axis.
In the sealing structure according to one aspect of the present disclosure, the reinforcing ring includes a flange portion in an end portion on the one side, the flange portion projecting annularly to the outer periphery side; and the sealing device protrudes to the outer peripheral side in the flange portion so that the protruding engagement part is formed.
In the sealing structure according to one aspect of the present disclosure, the attachment space has sealing surfaces that are a pair of annular surfaces placed face-to-face in the direction of the axis and an outer peripheral wall surface that is a tubular surface extending from one of the pair of the sealing surfaces along the axis; and the recessed engagement part is formed in an end portion of the outer peripheral wall surface on a side opposite to a side of the one of the sealing surfaces.
In the sealing structure according to one aspect of the present disclosure, the recessed engagement part is either of a chamfered part and a counterbored part.
According to the sealing device and the sealing structure according to the present disclosure, it is possible to be attached in an intended way.
Hereinafter, an embodiment of the present disclosure will be described with reference to the drawings.
Hereinafter, a direction directed by an arrow a (see
As illustrated in
The elastic body part 20 is formed so as to cover the reinforcing ring 10 and includes, as described above, the seal lip 21, the secondary lip portion 22, and the outer peripheral portion 23. The elastic body part 20 also includes a base portion 24 that is a portion on the inner periphery side. The base portion 24, as illustrated in
The seal lip 21, as illustrated in
As illustrated in
The secondary lip portion 22 may be an annular protruding part projecting from the inner side end 24a of the base portion 24 to the inner side. Specifically, the secondary lip portion 22 is a circular ring shaped or substantially circular ring shaped protruding part centered about or substantially centered about the axis x. In this case as well, the secondary lip portion 22 projects further to the inner side than the inner side end 11 of the reinforcing ring 10, and the distal end 22a that is an end portion on the inner side of the secondary lip portion 22 is positioned further on the inner side than the inner side end 11 of the reinforcing ring 10 in the direction of the axis x. The secondary lip portion 22 is formed so as to be in contact with the sealing surface on the inner side with a predetermined crush allowance in the usage state described later.
As illustrated in
As illustrated in
The identification part 30 is a part that enables identification of an orientation of the sealing device 1 and is a part designed to ensure that a direction in which the sealing device 1 is attached to an attachment space is an intended proper direction by allowing a worker to certainly know the orientation of the sealing device 1 when the worker attaches the sealing device 1 to the attachment space to put the sealing device 1 in the usage state described later. Specifically, the identification part 30 is a part that makes it possible to identify on which side in the direction of the axis x the seal lip 21 is present in the sealing device 1. The identification part 30 is, for example, formed in the outer peripheral portion 23 of the elastic body part 20 and is formed further on an side of the seal lip 21 than the middle of the outer peripheral portion 23 in the direction of the axis x. The identification part 30 is, for example, formed in the end portion (the outer side end 23a) on the outer side (the one side) of the outer peripheral portion 23, and specifically, the identification part 30 is, as illustrated in
The identification part 30 may be formed in an area further on a side of the secondary lip portion 22 than the middle of the outer peripheral portion 23 in the direction of the axis x. In this case as well, the identification part 30 allows the worker to identify presence of the secondary lip portion 22 in the vicinity of the identification part 30 and properly attach the sealing device 1 to the attachment space. In the present embodiment, as illustrated in
Examples of the elastic body of the elastic body part 20 include various rubber materials. The various rubber materials are, for example, synthetic rubber such as nitrile rubber (NBR), hydrogenated nitrile rubber (H-NBR), acrylic rubber (ACM), and fluororubber (FKM).
The reinforcing ring 10 is manufactured by press working or forging, for example, and the elastic body part 20 is molded with a mold by cross-linking (vulcanization). During the cross-linking, the reinforcing ring 10 is placed in the mold, the elastic body part 20 is bonded to the reinforcing ring 10 by cross-linking bonding, and the elastic body part 20 is integrally molded with the reinforcing ring 10.
Next, the above described sealing device 1 in the usage state will be described.
In the usage state, the sealing device 1 is attached to the attachment space S coaxially or substantially coaxially with respect to the attachment space S. In other words, in the usage state, the axis x and the axis x1 coincide with or slightly diverge from each other. As illustrated in
The seal lip 21 is longer than the secondary lip portion 22 and is, as illustrated in
In this way, when the sealing device 1 is attached to the attachment space S in an intended direction, the sealing device 1 is able to seal the attachment space S and properly seal the attachment space S even with a variation in the size of the attachment space S.
Meanwhile, if the sealing device 1 is not attached to the attachment space S in an intended way, for example, when the sealing device 1 is attached to the attachment space S in a opposite direction in the direction of the axis x1, the seal lip 21 is pressed to the inner-side sealing surface 113b and the secondary lip portion 22 is pressed to the outer-side sealing surface 102a. As illustrated in
By contrast, the sealing device 1, as described above, has the identification part 30 and allows the worker to identify a side of the sealing device 1 in the direction of the axis, where the seal lip 21 is present. This can prevent the sealing device 1 from being attached to the attachment space S in a direction other than the intended direction.
Thus, the sealing device 1 according to the embodiment of the present disclosure is allowed to be attached in an intended way.
Next, a sealing structure 2 according to an embodiment of the present disclosure will be described.
As illustrated in
The sealing device 3 included in the sealing structure 2 differs from the sealing device 1 described above in forms of the reinforcing ring and the outer peripheral portion of the elastic body part. The sealing device 3 includes a reinforcing ring 13 different from the reinforcing ring 10 of the sealing device 1 and an elastic body part 25 different from the elastic body part 20 of the sealing device 1. Hereinafter, components of the sealing device 3 that are identical or similar in function to those of the sealing device 1 are assigned the same reference signs, and descriptions thereof are omitted. Components that differ between the sealing devices will be described.
As illustrated in
As illustrated in
As illustrated in
In the sealing device 3, the reinforcing ring 13 includes the flange portion 15 projecting to the outer periphery side, and the outer peripheral portion 26 of the elastic body part 25, in which the part covering the flange portion 15 projects to the outer periphery side, has the projecting part 26a. In this way, in the sealing device 3, the outer peripheral portion 26 projects to the outer periphery side (the projecting part 26a) in the flange portion 15, and the protruding engagement part 5a is formed by the flange portion 15 and the projecting part 26a.
Note that the flange portion 15 may be made up of a plurality of arcs formed at intervals between the arcs in an intermittently annular shape rather than an endless annular shape as described above. Alternatively, the flange portion 15 may be a single arc extending in a circumference around the axis x. In this case, the projecting part 26a also has a shape corresponding to that of the flange portion 15 and thus the protruding engagement part 5a has a shape corresponding to that of the flange portion 15.
As illustrated in
The attachment space 4 is an annular space defined by the above-described outer-side sealing surface 44, the outer peripheral wall surface 42, and the inner-side sealing surface 43. As illustrated in
In the usage state of the sealing structure 2, the sealing device 3 is attached to the attachment space 4 to seal the attachment space 4 in a similar way to the sealing device 1 described above. In other words, the seal lip 21 and the secondary lip portion 22 of the sealing device 3 are in contact with the outer-side sealing surface 44 and the inner-side sealing surface 43, respectively. The protruding engagement part 5a of the sealing device 3 is housed in the recessed engagement part 5b of the attachment space 4. In this way, in the sealing structure 2, when the sealing device 3 is attached to the attachment space 4 in an intended proper direction, the protruding engagement part 5a is housed in the recessed engagement part 5b. In this state, the seal lip 21 is in contact with the outer-side sealing surface 44 with a desired interference, and the secondary lip portion 22 is in contact with the inner-side sealing surface 43 with a desired interference or crush allowance. Meanwhile, in the sealing structure 2, if the sealing device 3 is to be attached in an improper direction and a direction different from the intended direction, i.e., when the sealing device 3 is to be attached to an interior of the groove portion 41 of the attachment space 4 from the seal lip 21 side, the protruding engagement part 5a is housed in the recessed engagement part 5b but the protruding engagement part 5a is caught in the recessed engagement part 5b such that the sealing device 3 is stopped from advancing into the attachment space 4 further. This can prevent the sealing device 3 from being attached to the attachment space 4 in a direction other than the intended direction.
Thus, according to the sealing structure 2 according to the embodiment of the present disclosure, it is possible to be attached in an intended way.
Next, a modification example of the sealing device 3 in the sealing structure 2 described above will be described.
Next, a modification example of the attachment space 4 in the sealing structure 2 described above will be described.
In the usage state of the sealing structure 2, in the attachment space 7 according to the modification example, the protruding engagement part 5a is, as described above, allowed to be housed in the recessed engagement part 5b. In the sealing structure 2, it is possible to prevent the sealing device 6 from being attached to the attachment space 7 in a way that differs from the intended way. Note that the attachment space 7 acts similarly for the sealing device 3, and in the sealing structure 2, it is possible to prevent the sealing device 3 from being attached to the attachment space 7 in a way that differs from the intended way.
Although the embodiments of the present disclosure has been described above, the present disclosure is not limited to the sealing device or the sealing structure according to the embodiments of the present disclosure, and includes any modes falling within the scope of the concept and claims of the present disclosure. Respective configurations may be appropriately selectively combined to solve at least part of the above-described problems and achieve at least part of the above-described effects. For example, in the above-described embodiments, the shape, material, arrangement, size and the like of each component can be appropriately changed according to a specific use mode of the present disclosure.
Number | Date | Country | Kind |
---|---|---|---|
2019-009634 | Jan 2019 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2019/049610 | 12/18/2019 | WO |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2020/153056 | 7/30/2020 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
4055352 | Allinquant | Oct 1977 | A |
8691358 | Kritzer et al. | Apr 2014 | B2 |
20090032366 | Goto | Feb 2009 | A1 |
20090102142 | Tanaka et al. | Apr 2009 | A1 |
20100330349 | Ewald et al. | Dec 2010 | A1 |
20110059297 | Kritzer et al. | Mar 2011 | A1 |
20170089465 | Yanagi | Mar 2017 | A1 |
20170321831 | Nahrwold | Nov 2017 | A1 |
20180340620 | Wicher | Nov 2018 | A1 |
20190032783 | Yanagi et al. | Jan 2019 | A1 |
20200191273 | Yanagi | Jun 2020 | A1 |
20210172524 | Hagiwara | Jun 2021 | A1 |
Number | Date | Country |
---|---|---|
101952838 | Jan 2011 | CN |
102047273 | May 2011 | CN |
204004152 | Dec 2014 | CN |
204942530 | Jan 2016 | CN |
106133413 | Nov 2016 | CN |
106870732 | Jun 2017 | CN |
208221320 | Dec 2018 | CN |
208393311 | Jan 2019 | CN |
3412941 | Dec 2018 | EP |
H6-32834 | Apr 1994 | JP |
10-26228 | Jan 1998 | JP |
2000-46186 | Feb 2000 | JP |
2009-74642 | Apr 2009 | JP |
2012067790 | Apr 2012 | JP |
3192593 | Jul 2014 | JP |
200706782 | Feb 2007 | TW |
WO 2015137491 | Sep 2015 | WO |
2018193766 | Oct 2018 | WO |
Entry |
---|
English Translation of International Preliminary Report on Patentability, including Translation of the Written Opinion, received in PCT/JP2019/049610, dated Jul. 27, 2021. |
Japan Official Action received in JP Application No. 2020-567428, dated Sep. 6, 2021 and English language translation thereof. |
Communication pursuant to Rule 164(1) EPC issued in European application No. 19911096.6, dated Sep. 21, 2022. |
ISR for PCT/JP2019/049610, dated Feb. 10, 2020. |
China Office Action received in CN application No. 201980070270.0, dated Dec. 2, 2022. |
Extended European Search Report received in EP application No. 19911096.6, dated Dec. 22, 2022. |
Indonesia Office Action received in ID application No. P00202103145, dated Jan. 2, 2023. |
China Office Action in the corresponding CN application No. 201980070270.0, dated May 26, 2023. |
China Office Action received in CN application No. 201980070270.0, dated Aug. 2, 2023. |
China Office Action issued in CN Application No. 201980070270.0, dated Nov. 29, 2023. |
Number | Date | Country | |
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20210404556 A1 | Dec 2021 | US |