FILM-INTEGRATED GASKET
20200096109 ยท 2020-03-26
Inventors
Cpc classification
F16J15/127
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
F16J15/104
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16J15/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A film-integrated gasket is provided in which a gasket body is supported by a gasket support body formed of a resin film and a film thickness t.sub.2 at a position where the gasket body is supported is set to be smaller than a film thickness t.sub.1 at an adjacent position thereto so as to satisfy a demand for low reaction force by reducing the compression ratio in the thickness directional in mounting. The film-integrated gasket can be provided with a portion compressed in the thickness direction at the position where the gasket body is supported, so that the portion sets a thickness difference. The film-integrated gasket can alternatively be provided with a portion where a plurality of resin films is stacked at an adjacent position to the position where the gasket main body is supported, so that the portion sets a thickness difference.
Claims
1. A film-integrated gasket comprising: a gasket body; and a gasket support formed of a resin film, supporting the gasket body, and having a film thickness at a position where the gasket body is supported smaller than a film thickness at an adjacent position to the position.
2. The film-integrated gasket according to claim 1, wherein the gasket support has a portion compressed in a thickness direction at the position where the gasket body is supported, and the portion sets the film thickness at the position where the gasket body is supported to be smaller than the film thickness at the adjacent position to the position.
3. The film-integrated gasket according to claim 1, wherein the gasket support has a portion where a plurality of resin films is stacked at the adjacent position to the position where the gasket body is supported, and the portion sets the film thickness at the position where the gasket body is supported to be smaller than the film thickness at the adjacent position to the position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION
First Embodiment
[0023] As illustrated in
[0024] In the resin film-containing gasket support 21, only the gasket support position 22 is compressed in the thickness direction and the adjacent positions 23 are not compressed. More specifically, a portion compressed in the thickness direction is provided at the position where the gasket body 31 is supported. The portion sets the film thickness t.sub.2 at the gasket support position 22 to be smaller than the film thickness t.sub.1 at the adjacent positions 23 thereto (t.sub.2<t.sub.1).
[0025] The adjacent positions 23 are both a position on the outer periphery of the gasket support position 22 and a position on the inner periphery thereof.
[0026] As the standard of the film thickness, the film thickness t.sub.1 at the adjacent positions 23 is set to be equivalent to a conventional thickness (for example, 0.2 mm or more) which is a value sufficient to support the gasket body 31 and the film thickness t.sub.2 at the gasket support position 22 is set to a thickness (for example, less than 0.1 mm) smaller than the thickness.
[0027] The compression of the portion compressed in the thickness direction is performed by a hot pressing method.
[0028] As materials of the resin film, general-purpose films, such as polypropylene, polyethylene terephthalate, polyethylene naphthalate, a polyimide type, an ester type, an amide type, and an imide type, are usable.
[0029] The gasket support position 22 is disposed along the gasket body 31 and the gasket body 31 is disposed along a seal line of the gasket 11, and therefore the gasket support position 22 is disposed along the seal line of the gasket 11.
[0030] Meanwhile, the gasket body 31 containing a rubber-like elastic body is formed into a shape in which a seal lip 33 having a triangular cross-section is combined with a plate-like gasket base 32.
[0031] As a procedure for manufacturing the gasket 11, the resin film-containing plate-like gasket support 21 having a fixed initial thickness t.sub.1 over the entire surface is prepared as illustrated in
[0032] As illustrated in
[0033] According to the film-integrated gasket 11 having the above-described configuration, when the film thickness at the gasket support position 22 in the gasket support 21 remains t.sub.1, the compression ratio is given by
Compression ratio=c/(at.sub.1)100(%)Expression (3).
On the other hand, the film thickness at the gasket support position 22 is reduced from t.sub.1 to t.sub.2, and the compression ratio is given by
Compression ratio: c/(at.sub.2)100(%)Expression (4),
and therefore the compression ratio decreases due to t.sub.1>t.sub.2. Accordingly, even in the case of the film-integrated gasket 11, the compression ratio in the thickness direction in mounting can be reduced as much as possible, and thus the film-integrated gasket 11 having a low reaction force characteristic can be provided.
[0034]
[0035] It was able to be confirmed from the comparison test results that, in Example, the handling property remained good and moreover about 70% low reaction force was achieved when compared by FEM analysis as illustrated in a graph chart of
Second Embodiment
[0036] As illustrated in
[0037] Herein, the resin film-containing gasket support 21 is formed into a one-sheet structure (monolayer structure) containing a thin resin film (first resin film) at the gasket support position 22 and formed into a multiple-sheet structure (laminated structure) in which a reinforcement body 25 containing a second resin film is stacked and bonded to the thin resin film (first resin film) at the adjacent position 23. More specifically, a portion where a plurality of resin films is stacked is provided at the adjacent position 23 to the position where the gasket body 31 is supported. The portion sets the film thickness t.sub.2 at the gasket support position 22 to be smaller than the film thickness t.sub.1 at the adjacent position 23 thereto (t.sub.2<t.sub.1).
[0038] The adjacent position 23 is set to a position on the outer periphery of the gasket support position 22.
[0039] As the standard of the film thickness, the film thickness t.sub.1 at the adjacent position 23 (laminated structure of the first and second resin films) is set to be equivalent to a conventional thickness (for example, 0.2 mm or more) which is a value sufficient to support the gasket body 31 and the film thickness t.sub.2 at the gasket support position 22 (monolayer structure of the first resin film) is set to a thickness (for example, less than 0.1 mm) smaller than the thickness.
[0040] As materials of the films, general-purpose films, such as polypropylene, polyethylene terephthalate, polyethylene naphthalate, a polyimide type, an ester type, an amide type, and an imide type, are usable. For the first resin film and the second resin film, not only the same type of material but different types of materials can be selected.
[0041] The gasket support position 22 is disposed along the gasket body 31 and the gasket body 31 is disposed along a seal line of the gasket 11, and therefore the gasket support position 22 is disposed along the seal line of the gasket 11.
[0042] Meanwhile, the gasket body 31 containing a rubber-like elastic body is formed into a shape in which a seal lip 33 having a triangular cross-section is combined with the plate-like gasket base 32.
[0043] According to the film-integrated gasket 11 having the above-described configuration, when the film thickness at the gasket support position 22 in the gasket support 21 is t.sub.1, the compression ratio is given by
Compression ratio=c/(at.sub.1)100(%)Expression (3).
On the other hand, the film thickness at the gasket support position 22 is reduced from t.sub.1 to t.sub.2, and the compression ratio is given by
Compression ratio: c/(at.sub.2)100(%)Expression (4),
and therefore the compression ratio decreases due to t.sub.1>t.sub.2. Accordingly, even in the case of the film-integrated gasket 11, the compression ratio in the thickness direction in mounting can be reduced as much as possible, and thus the film-integrated gasket 11 having a low reaction force characteristic can be provided.
[0044] In the above-described second embodiment, although the adjacent position 23, i.e., the position (bonding position) where the reinforcement body 25 containing the second resin film is stacked and bonded to the gasket support 31 containing the first resin film, is disposed over the entire four sides on the outer periphery of the gasket support position 22, the arrangement at the adjacent position 23 can be altered as appropriate.
[0045] In
[0046] In