Gasket and method for mounting same
10865881 ยท 2020-12-15
Assignee
Inventors
Cpc classification
F16J15/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/106
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E60/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16J15/108
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/102
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/104
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/061
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B32B2581/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16J15/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A gasket is provided which is configured so that a gasket body is easily separated from a carrier film and the positional shift of the gasket body in stacking can be prevented. The gasket has a combination of a gasket body which contains only a rubber-like elastic body and which, in order to seal a gap between one member and the other member, is mounted in the other member and a carrier film separably stuck to one surface side in the thickness direction of the gasket body, in which an engagement portion is formed in the other surface in the thickness direction of the gasket body at a position corresponding to a portion to be engaged formed in the other member, and the gasket body is mounted in the other member by engagement of the engagement portion and the portion to be engaged.
Claims
1. A gasket comprising: an elastic gasket body; and a removable carrier film attached to one surface in a thickness direction of the elastic gasket body, wherein the elastic gasket body includes a pair of recesses formed in another surface of the elastic gasket body that is opposite to the one surface in the thickness direction of the elastic gasket body, the pair of recesses being located at positions that correspond to a pair of projections that are formed on a member to be sealed with the gasket, the pair of recesses are configured to receive the pair of projections, and the pair of recesses each have a depth that is less than a thickness of the elastic gasket body.
2. The gasket according to claim 1, wherein the pair of recesses extend along an entire periphery of the elastic gasket body.
3. The gasket according to claim 1, wherein the pair of recesses are spaced apart and parallel to one another.
4. A method for mounting the gasket according to claim 1, comprising: mounting the elastic gasket body on the member to be sealed by engaging the pair of recesses with the pair of protections that are formed on the member to be sealed, and then separating the carrier film from the elastic gasket body.
5. A method for mounting the gasket according to claim 2, comprising: mounting the elastic gasket body on the member to be sealed by engaging the pair of recesses with the pair of projections that are formed on the member to be sealed, and then separating the carrier film from the elastic gasket body.
6. A method for mounting the gasket according to claim 3, comprising: mounting the elastic gasket body on the member to be sealed by engaging the pair of recesses with the pair of projections that are formed on the member to be sealed, and then separating the carrier film from the elastic gasket body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(9) Hereinafter, a gasket 10 according to this embodiment is described in detail with reference to the drawings.
(10) As illustrated in
(11) The gasket body 20 is molded into a planar shape (plate shape) as a whole. An outer peripheral seal portion 21 sealing the periphery of the reaction surface of a fuel cell over the entire periphery is provided in a planar rectangular frame shape. Moreover, in order to divide the reaction surface of a fuel cell and each manifold portion, inside seal portions (seal portion for manifolds) 22 are integrally provided in both end portions in the longitudinal direction of the outer peripheral seal portion 21. As the cross-sectional shape of the gasket body 20, a seal base portion 23 forming a rectangular cross-sectional shape is formed and a seal lip portion 24 having a substantially arc-shaped cross-sectional shape or a projection shape is formed in the center of one surface in the thickness direction of the seal base portion 23 as illustrated in
(12) In the seal base portion 23, the cross section forms a rectangular shape and a carrier film 30 described later is stuck to one surface 23a side in the thickness direction and a side surface 23c of the seal base portion 23. In the other surface 23b in the thickness direction of the seal base portion 23, recessed portions 25 are formed.
(13) The recessed portions 25 are formed into a groove shape over the entire periphery of the outer peripheral seal portion 21 and the inside seal portions 22 as illustrated in
(14) The seal lip portion 24 projects toward the one surface 23a side from the center of the seal base portion 23. To the outer surface of the seal lip portion 24, the carrier film 30 described later is stuck.
(15) The carrier film 30 contains a resin film forming a planar rectangular shape one size larger than the entire gasket body 20. In a part on the plane of the carrier film 30, a gasket holding portion 31 holding the gasket body 20 by being stuck to the one surface 23a and the side surface 23c of the seal base portion 23 and the outer surface of the seal lip portion 24 in the gasket body 20 is provided and a carrier film piece 32 which is not stuck to the gasket body 20 is provided. As the resin film, a 0.2 mm thick polypropylene film is used, for example, and is cut into a predetermined planar shape for use. As the resin film, common resin materials other than polypropylene, such as polyethylene and polystyrene, are usable. The thickness of the film is preferably set to about 0.1 mm to 0.3 mm depending on the wire diameter or the cross-sectional shape of the gasket body 20.
(16) The separator 40 is a conductive plate dividing the reaction surfaces of a fuel cell. In the separator 40, the projection portions 41 for engagement with the recessed portions 25 are formed over the entire periphery at positions corresponding to the recessed portions 25 formed in the other surface 23b of the seal base portion 23 of the gasket body 20 as illustrated in
(17) For the planar shape and the arrangement of the recessed portions 25 formed in the other surface 23b of the seal base portion 23 in the gasket body 20, various aspects can be considered depending on the use conditions and the like of the gasket body 20 and the following aspects may be acceptable, for example.
(18) In an example illustrated in
(19) In an example illustrated in
(20) A recessed portion may be provided in the separator 40 and a projection portion may be provided in the other surface 23b of the seal base portion 23 in the gasket body 20.
(21) Next, a method for producing the gasket 10 according to this embodiment is described. In the production, a die (rubber molding die) injection molding the gasket body 20 containing a rubber-like elastic body is used.
(22) First, the carrier film 30 of a planar shape cut into a planar shape of a predetermined size is prepared, and then the carrier film 30 is mold clamped in a state of being inserted into the die (not illustrated). The die contains a combination of an upper die and a lower die. Both the dies are provided with one cavity (not illustrated) corresponding to each other. Subsequently, a molding material for molding the gasket body 20 is charged into the cavities, and then heated or the like to mold the gasket body 20. When the molding material is charged into the cavities, one part on the plane of the carrier film 30 is pressed against the inner surface of the cavity of the lower die by the molding material charging pressure to be deformed along the inner surface of the cavity (plastic deformation), so that the gasket holding portion 31 is molded. Then, after the molding of the gasket body 20, the die is opened, and then the gasket body 20 and the carrier film 30 are simultaneously removed from the die.
(23) Thus, the gasket 10 is brought into a combined state in which the gasket body 20 is held by the carrier film 30 and products are conveyed, stored, and the like in the combined state.
(24) Next, a method for mounting the gasket 10 according to this embodiment is described with reference to the drawings.
(25) First, positioning is performed so that the recessed portions 25 formed in the other surface 23b of the seal base portion 23 in the gasket body 20 and the projection portions 41 formed in the separator 40 are arranged on the same line as illustrated in
(26) Next, the carrier film 30 is separated from the gasket body 20 by tearing off, for example, the carrier film piece 32 in the carrier film 30 stuck to the gasket body 20 as illustrated in
(27) As described above, the gasket 10 according to this embodiment is brought into the combined state in which the gasket body 20 is held by the carrier film 30 and products can be conveyed, stored, and the like in the combined state. Therefore, a twist or the like is hard to occur in the gasket body 20 held by the carrier film 30, and thus the workability can be further improved than that in a case where the gasket body 20 alone is handled.
(28) Moreover, according to the gasket 10 of this embodiment, the recessed portions 25 formed in the other surface 23b of the seal base portion 23 in the gasket body 20 and the projection portions 41 formed in the separator 40 are engaged with each other, whereby the gasket body 20 is firmly mounted in the separator 40. Therefore, the carrier film 30 in the gasket 10 can be stably separated from the gasket body 20.
(29) Moreover, a procedure for separating the carrier film 30 from the gasket body 20 according to this embodiment includes only tearing off the carrier film piece 32 in the carrier film 30 after the gasket body 20 is mounted in the separator 40. Therefore, an operation of removing the gasket body 520 by the suction jig 553 after the carrier film 530 is fixed with the adsorption portion 552 in the evacuation device 551 as in the gasket 510 in reference examples illustrated in
(30) Moreover, the gasket body 20 in the gasket 10 according to this embodiment is firmly mounted in the separator 40 also after the carrier film 30 is separated, and therefore the positional shift of the gasket body 20 in stacking does not occur.
(31) Moreover, the gasket 10 according to this embodiment is free from the necessity of separating the carrier film 30 before the gasket body 20 is mounted in the separator 40. Therefore, the process of mounting the gasket body 20 in the separator 40 and the process of separating the carrier film 30 from the gasket body 20 can be almost simultaneously performed.
(32) In other words, the above-described matter means that the recessed portions 25 formed in the gasket body 20 and the projection portions 41 formed in the separator 40 have both a function of fixing the gasket body 20 when separating the carrier film 30 and a function of preventing the positional shift of the gasket body 20 in stacking after separating the carrier film 30.