Gaskets and sealing devices
The metal split gasket with hinges or connectors simplifies the assembly of large gaskets by allowing foldable integration, reducing manufacturing steps and waste, and ensuring effective sealing.
Patent Information
- Application Number
- JP2025537423
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2023-08-03
- Filing Date
- 2024-07-29
- Publication Date
- 2025-12-01
- Estimated Expiration
- 2044-07-29
AI Technical Summary
Existing gaskets for large surface areas, such as oil pans, are cumbersome to handle and manufacture due to their size and require multiple assembly steps, leading to increased costs and environmental waste.
A metal split gasket divided into multiple pieces with elastic coatings and connected by hinges or connectors, allowing for foldable assembly and a single-step integration with components.
Simplifies the manufacturing process, reduces waste, and enhances handling by enabling a single-step assembly of the gasket between components, while maintaining effective sealing.
Smart Images

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Abstract
Description
[Technical Field]
[0001] FIELD OF THE DISCLOSURE The present disclosure relates to gaskets and sealing devices. [Background technology]
[0002] A gasket is placed between two components to be joined, such as a case and a cover, to seal the two components. Gaskets are used to seal between the oil pan (case) used in internal combustion engines and the cylinder block (cover) that covers the opening of the oil pan, or to seal the joints of various pipes. Gaskets have an annular shape in order to seal two components.
[0003] When sealing components with a relatively large surface area, such as oil pans, the gaskets tend to be large, making them difficult to handle from manufacturing to assembly. Furthermore, since gaskets are manufactured by stamping a single sheet of metal, the annular inner part of the gasket becomes waste material, making the larger the gasket, the more undesirable it becomes from both a cost and environmental standpoint.
[0004] Therefore, a divided gasket has been devised in which the gasket is divided into a plurality of pieces that are annular in shape as a whole.
[0005] Japanese Patent Application Laid-Open Publication No. 2007-155043 (hereinafter referred to as "Patent Document 1") discloses an example of a gasket used as an oil pan gasket for an automobile engine (see paragraph 0014 and Figure 1). This gasket is divided into two pieces (components 5a and 5b), which are joined by laser spot welding (see paragraph 0015 and Figures 2-3). After joining, the two pieces are pressure-treated and smoothed (see paragraph 0016, Figures 3, and 7(a) and (b)). After that, an elastic body (rubber compound sheet 30) is adhesively fixed to the pieces (see paragraph 0017, Figures 3, and 6), forming a gasket (oil pan gasket 1).
[0006] Japanese Patent Application Laid-Open No. 2020-076467 (hereinafter referred to as "Patent Document 2") also divides a gasket into two pieces, a first segment (100A) and a second segment (100B), and joins the pieces to form a gasket (gasket 100) (see paragraphs 0020-0021 and Figures 1-2). The gasket differs from the gasket described in Patent Document 1 in the method for joining the pieces and the method for fixing the elastic body to each piece.
[0007] In Patent Document 2, the two pieces that make up the gasket, i.e., the first divided piece (100A) and the second divided piece (100B), are fixed together with a liquid gasket (FIPG) (see paragraph 0020). Unlike Patent Document 1, they are not joined by laser spot welding.
[0008] The first divided piece (100A) and the second divided piece (100B) are made by punching rubber-coated metal (RCM), which is a metal plate with a rubber membrane on both sides (see paragraph 0022). Therefore, the elastic body is not fixed to the two pieces after joining, but is pre-formed on the two pieces. [Prior art documents] [Patent documents]
[0009] [Patent Document 1] Japanese Patent Application Laid-Open No. 2007-155043 [Patent Document 2] Japanese Patent Publication No. 2020-076467 Summary of the Invention [Problem to be solved by the invention]
[0010] In both of the gaskets described in Patent Documents 1 and 2, pieces are joined together to produce an annular gasket, which is then placed between two components that are joined together. Therefore, when viewed as a sealing device in which a gasket is interposed between two components, a process of connecting the two pieces to produce the gasket is required prior to the process of joining the two components with the gasket in between, making the manufacturing process complicated. Improvements are needed.
[0011] An object of the present disclosure is to obtain a sealing device that can reduce the number of manufacturing steps and simplify manufacturing. [Means for solving the problem]
[0012] One aspect of the gasket comprises a metal split gasket that is divided into multiple pieces having flat sealing surfaces coated with an elastic material on the front and back sides and that forms an annular shape when assembled, and a hinge that is fixed across the sealing surfaces of two adjacent pieces in a straight line and rotates around an axis perpendicular to the longitudinal direction of the two pieces, connecting the two pieces in a foldable manner.
[0013] Another aspect of the gasket comprises a metal segmented gasket that is divided into multiple pieces having flat sealing surfaces coated with an elastic material on the front and back sides and that form an annular shape when assembled, and a connecting device that connects the ends of two adjacent pieces so that they can rotate around an axis perpendicular to the sealing surfaces.
[0014] One aspect of the sealing device comprises a metal split gasket divided into multiple pieces having flat sealing surfaces coated with an elastic material on the front and back sides, which form an annular shape when assembled; a hinge that is fixed across the sealing surfaces of two adjacent pieces in a straight line and rotates around an axis perpendicular to the longitudinal direction of the two pieces to foldably connect the two pieces; two members that are joined to each other across the sealing surfaces of the split gasket; a recess provided in at least one of the two members to accommodate the hinge that protrudes from the sealing surfaces; and a liquid gasket that is filled in the recess and covers the connecting portion of the two pieces.
[0015] Another aspect of the sealing device comprises a metal split gasket divided into multiple pieces having flat sealing surfaces coated with an elastomer on the front and back sides, which form an annular shape when assembled, a connector that rotatably connects the ends of two adjacent pieces around an axis perpendicular to the sealing surfaces, two members that are joined to each other across the sealing surfaces of the split gasket, and a liquid gasket filled in the gap between the facing ends of the two pieces. [Effects of the Invention]
[0016] According to the present disclosure, the number of steps required to manufacture a sealing device can be reduced, and manufacturing can be simplified. [Brief explanation of the drawings]
[0017] [Figure 1] FIG. 4 is an exploded perspective view showing a split gasket and a case. [Figure 2] FIG. 2 is a plan view showing an example of a split gasket according to the first embodiment. [Figure 3] FIG. 10 is a plan view showing another example of a split gasket. [Figure 4] FIG. 10 is an enlarged plan view showing the state in which the ends of adjacent pieces of the split gasket are connected by hinges. [Figure 5] FIG. 10 is an enlarged front view showing the state in which the ends of adjacent pieces of the split gasket are connected by hinges. [Figure 6] FIG. 10 is an enlarged front view showing the state in which each piece of the split gasket is folded by a hinge. [Figure 7] FIG. 10 is a left side view showing the folded state of each piece of the split gasket. [Figure 8] FIG. 10 is an enlarged front view of the sealing device in the process of assembly, with a gasket interposed between a cover having a groove-shaped recess and a case, at the hinge position. [Figure 9] FIG. 10 is an enlarged front view showing the sealing device in the process of assembly, with a gasket interposed between a cover having a hole-shaped recess and a case, at the hinge position. [Figure 10] 8 and 9. FIG. 9 is a cross-sectional view taken along line AA in FIG. [Figure 11] FIG. 2 is an enlarged longitudinal front view of the sealing device at the hinge position before assembly. [Figure 12] FIG. 10 is an enlarged longitudinal front view of the assembled sealing device at the hinge position. [Figure 13] FIG. 10 is a plan view showing an example of a split gasket according to a second embodiment. [Figure 14] FIG. 10 is an enlarged plan view showing the state in which the ends of adjacent pieces of the split gasket are connected by a connector. [Figure 15] Cross-sectional view of line BB in Figure 14. [Figure 16] FIG. 10 is an enlarged plan view of the assembled sealing device at the connector location. [Figure 17] Cross-sectional view taken along line CC in Figure 16. DETAILED DESCRIPTION OF THE INVENTION
[0018] An embodiment of the sealing device will be described. The items to be described are as follows. [overview] [First embodiment] 1. Configuration (1) Gasket (1-1) Split gasket (a) An example of a split gasket (b) Another example of a split gasket (1-2) Hinge (2) Sealing device (2-1) Recess (2-2) Liquid gasket 2. Assembly of the sealing device 3. Effects 4. Variations [Second embodiment] 1. Configuration (1) Gasket (1-1) Split gasket (1-2) Connector (2) Sealing device 2. Assembly of the sealing device 3. Effects 4. Variations
[0019] [overview] 1, 12, and 17, the sealing device 11 of this embodiment is configured by interposing the gasket 12 between two members 101 (101A, 101B) that are joined together. The two members 101 are, for example, a case 101A and a cover 101B.
[0020] The gasket 12 has a structure in which the main body is split gaskets 21, 31 that are split into multiple pieces P, and the individual pieces P are connected in advance. The individual pieces P are connected by hinges 41 (first embodiment) or connectors 51 (second embodiment).
[0021] As an example, the sealing device 11 is used to seal between an oil pan and a cylinder block used in an internal combustion engine. In this case, the oil pan serves as the case 101A, and the cylinder block serves as the cover 101B. The case 101A is one of two members 101, and is provided with an oil reservoir 102 for storing oil (not shown) inside, and has an opening 103 on the top surface. The cover 101B is the other of the two members 101, and covers the opening 103 provided in the case 101A.
[0022] Fig. 1 shows an example of the gasket 12 shown in Fig. 2, among the gaskets 12 of the first embodiment. The hinges 41 and connectors 51 are not shown directly, but are represented schematically by circles. Another example of a split gasket 21 shown in Fig. 3 and a split gasket 31 of the second embodiment have different shapes from the split gasket 21 shown in Fig. 1, and the positions of the hinges 41 and connectors 51 are also different. Please refer to the explanation below.
[0023] [First embodiment] The first embodiment will be described with reference to FIGS.
[0024] 1. Configuration (1) Gasket
[0025] (1-1) Split gasket Two embodiments will be introduced. (a) An example of a split gasket As shown in Figure 2, the first gasket 12 includes a split gasket 21 divided into eight pieces P1 to P8, each having a flat sealing surface 23 coated with an elastic body 22 on its front and back surfaces. The split gasket 21 has an annular shape that becomes a rectangle when assembled. The eight pieces P1 to P8 are provided four on the long and short sides and four at the corners. Pieces P1, P3, P5, and P7 are bent at right angles to form the four corners CR of the rectangle.
[0026] Each of the pieces P1 to P8 of the split gasket 21 has adjacent end portions E at both ends. The adjacent end portions E of the eight pieces P1 to P8 that make up the split gasket 21 form pairs. In more detail, (a) End E11 of piece P1 and end E22 of piece P2 (b) End E21 of piece P2 and end E32 of piece P3 (c) End E31 of piece P3 and end E42 of piece P4 (d) End E41 of piece P4 and end E52 of piece P5 (e) End E51 of piece P5 and end E62 of piece P6 (f) End E61 of piece P6 and end E72 of piece P7 (g) End E71 of piece P7 and end E82 of piece P8 (h) End E81 of piece P8 and end E12 of piece P1 These eight types of ends E are paired together.
[0027] The individual pieces P1 to P8 of the split gasket 21 are made of a metal material such as stainless steel, cold-rolled steel, galvanized steel, or aluminum alloy, and are coated in advance with the elastic body 22, for example.
[0028] The elastic body 22 is a rubber compound containing rubber as a main component. For example, at least one type of synthetic rubber selected from nitrile rubber, styrene butadiene rubber, fluororubber, acrylic rubber, and silicone rubber can be used as the material for the elastic body 22. The rubber compound using these materials may be foamed rubber.
[0029] (b) Another example of a split gasket As shown in Figure 3, the second gasket 12 includes a split gasket 21 divided into two pieces P1 and P2, each having a flat sealing surface 23 coated with an elastic body 22 on its front and back sides. The split gasket 21 has an annular shape that becomes a rectangle when assembled. Each of the two pieces P1 and P2 has a U-shape with two corners CR. The two corners CR bend the individual pieces P1 and P2 at right angles.
[0030] Each of the pieces P1 and P2 of the split gasket 21 has adjacent end portions E at both ends. The adjacent end portions E of the two pieces P1 and P2 that make up the split gasket 21 form a pair. (i) End E11 of piece P1 and end E21 of piece P2 (j) End E12 of piece P1 and end E22 of piece P2 These two types of ends E are paired together.
[0031] The individual pieces P1 to P2 of the split gasket 21 are made of a metal material such as stainless steel, cold-rolled steel sheet, galvanized steel sheet, or aluminum alloy, and are coated in advance with an elastic body 22, for example.
[0032] The elastic body 22 is a rubber compound containing rubber as a main component. For example, at least one type of synthetic rubber selected from nitrile rubber, styrene butadiene rubber, fluororubber, acrylic rubber, and silicone rubber can be used as the material for the elastic body 22. The rubber compound using these materials may be foamed rubber.
[0033] (1-2) Hinge 4 to 7, the individual pieces P that make up the split gasket 21 are connected by hinges 41. The hinge 41 is fixed across the sealing surfaces 23 of two linearly adjacent pieces P, and rotates around an axis perpendicular to the longitudinal direction of the two adjacent pieces P, connecting the two pieces P in a foldable manner.
[0034] In the split gasket 21 shown in FIG. 2, the hinge 41 is bridged across two adjacent pieces P at the pair of end portions E of (a) to (h).
[0035] In the split gasket 21 shown in FIG. 3, the hinge 41 is bridged across two adjacent pieces P at the pair of end portions E of (i) and (j).
[0036] As shown in Fig. 5, hinge 41 rotatably connects a pair of arms 42 with a pin 43. The pair of arms 42 are respectively fixed to the sealing surfaces 23 on one side of two adjacent pieces P. Therefore, as shown in Fig. 6, the two pieces P connected by hinge 41 rotate around an axis whose axis is the pin 43.
[0037] Each side of the split gasket 21 shown in Fig. 2 is divided into three. In Fig. 2, the top and bottom sides are divided into three: a set of pieces P1 and P7, a set of pieces P2 and P6, and a set of pieces P3 and P5. The left and right sides are divided into three: a set of pieces P1 and P3, a set of pieces P8 and P4, and a set of pieces P7 and P5. In this embodiment, hinges 41 are provided so that the three sets of pieces on the top and bottom sides and the three sets of pieces on the left and right sides can be folded alternately.
[0038] FIG. 7 is a left side view illustrating the folded states of the set of pieces P1 and P3, the set of pieces P8 and P4, and the set of pieces P7 and P5. Because FIG. 2 is viewed from the left side, only pieces P1, P8, and P7 appear, and pieces P3, P4, and P5 do not appear. As shown in FIG. 7, adjacent hinges 41 are disposed on one side and the opposite side of the sealing surface 23, respectively. That is, the hinge 41 connecting pieces P7 and P8 is fixed to the sealing surface 23 on the upper side in FIG. 7, and the hinge 41 connecting pieces P1 and P8 is fixed to the sealing surface 23 on the lower side in FIG. 7. This causes the set of pieces P1 and P3, the set of pieces P8 and P4, and the set of pieces P7 and P5 to be folded alternately.
[0039] (2) Sealing device (2-1) Recess As shown in FIGS. 8 to 10, the two members 101 are provided with recesses 104 for accommodating the hinges 41 in the areas where the two pieces P of the split gasket 21 are adjacent to each other.
[0040] 2, eight hinges 41 are provided and appropriately arranged on both sealing surfaces 23. Therefore, a total of eight recesses 104 are provided in both case 101A and cover 101B.
[0041] 3, two hinges 41 are fixed only to the upper sealing surface 23 facing the cover 101B. Therefore, two recesses 104 are provided only in the cover 101B.
[0042] The recess 104 has a groove shape as an example (see FIG. 8) and a hole shape as another example (see FIG. 9). In either shape, the recess 104 is provided with a size that can completely cover the hinge 41 protruding from the sealing surface 23. In the case of the groove shape shown in FIG. 8, the size of the recess 104 is determined by the groove width and groove depth. In the case of the hole-shaped recess 104 shown in FIG. 9, the size of the recess 104 is determined by the diameter of the hole.
[0043] (2-2) Liquid gasket As shown in Figures 11 and 12, the sealing device 11 fills the recess 104 with a liquid gasket 61. The liquid gasket 61 is, for example, a gasket made of one-component, room-temperature curing silicone called a FIPG (Formed-In-Place Gasket). The liquid gasket 61 is initially fluid and can be applied to various parts. When it reacts with moisture in the air, the liquid gasket 61 hardens.
[0044] The liquid gasket 61 filled in the recess 104 penetrates between the ends E of the adjacent pieces P, and also flows between the sealing surface 23 of the split gasket 21 and the case 101A, and between the sealing surface 23 and the cover 101B. The liquid gasket 61 that has penetrated and flowed into each part reacts with moisture in the air and hardens.
[0045] 2. Assembly of the sealing device To join the two members 101 (101A, 101B) via the split gasket 21 and assemble the sealing device 11, a liquid gasket 61 is applied to the recess 104. If necessary, the liquid gasket 61 is also applied to the case 101A or the cover 101B at a position facing the recess 104.
[0046] Before or after the application of the liquid gasket 61, the folded split gasket 21 is opened and restored to the shape of the gasket 12.
[0047] Thereafter, gasket 12 is placed in a predetermined position on case 101A. Case 101A and cover 101B are aligned so as to cover opening 103 of case 101A, and the two are joined together with split gasket 21, which has been restored to the shape of gasket 12, sandwiched between them. This operation is performed at a stage before liquid gasket 61 hardens and maintains its fluidity.
[0048] Once the liquid gasket 61 has hardened, the sealing device 11 is completed.
[0049] 3. Effects The sealing device 11 exerts a sealing effect by the elastic body 22 of the gasket 12 sandwiched between the joined case 101A and cover 101B. The hardened liquid gasket 61 also fills the space within the recess 104 that houses the hinge 41 and the gaps that occur between the ends E of the pieces P of the adjacent split gasket 21. Since the hardened liquid gasket 61 retains a certain degree of elasticity even after hardening, it also exerts a sealing effect on these spaces and gaps.
[0050] Therefore, according to this embodiment, case 101A and cover 101B, which are joined together, can be sealed.
[0051] According to this embodiment, each piece P of the split gasket 21 is connected in advance by a hinge 41. Therefore, when assembling the seal device 11, it is not necessary to manufacture the gasket 12 by connecting multiple pieces P. The assembly of the seal device 11 can be completed in a single process by simply joining the two members 101 with the gasket 12 sandwiched between them.
[0052] Therefore, according to this embodiment, the number of steps required to manufacture the sealing device 11 can be reduced, and the manufacturing process can be simplified.
[0053] According to this embodiment, the split gasket 21 can be folded, which allows the gasket 12 to be made smaller before use, thereby reducing the space required for storage and transportation.
[0054] According to this embodiment, the elastic body 22 is coated on the seal surface 23, so that the seal surface 23 coated with the elastic body 22 can be easily obtained, and manufacturing can be simplified.
[0055] 4. Variations Various modifications and variations are possible in implementation.
[0056] For example, the folding manner of split gasket 21 is not limited to the examples shown in Figures 2 and 3, and any manner can be adopted. Hinge 41 only needs to be provided on at least one pair of opposite sides forming the rectangular shape.
[0057] A base treatment layer may be provided between the liquid gasket 61 and the sealing surface 23 of each piece P of the split gasket 21 .
[0058] In the process of assembling the sealing device 11, in this embodiment, the operation of aligning the case 101A and the cover 101B and joining them with the split gasket 21 sandwiched therebetween is illustrated as being performed at a stage before the liquid gasket 61 hardens. This timing between the hardening of the liquid gasket 61 and the above operation is merely an example, and in practice, the above operation may be performed at a stage after the liquid gasket 61 hardens.
[0059] The liquid gasket 61 is not limited to a formed-in-place gasket (FIPG), but may also be liquid rubber (rubber glue) or a cured-in-place gasket (CIPG). An unvulcanized, glue-like rubber is used as the liquid rubber. CIPG is an ultraviolet-curing silicone, and while FIPG cures by absorbing moisture in the air, CIPG cures in place when exposed to ultraviolet light or light.
[0060] To assemble the sealing device 11 using liquid rubber as the liquid gasket 61, the liquid rubber is applied to the recess 104. If necessary, the liquid rubber is also applied to the case 101A or the cover 101B at a position facing the recess 104.
[0061] The folded split gasket 21 is opened before or after the liquid rubber application operation and restored to the shape of the gasket 12.
[0062] Gasket 12, which has been restored to its original shape, is placed in a predetermined position on case 101A. Case 101A and cover 101B are then aligned so as to cover opening 103 of case 101A, and the two are joined together with split gasket 21, which has been restored to the shape of gasket 12, sandwiched between them.
[0063] The liquid rubber in paste form hardens by drying or vulcanization (heating). When liquid gasket 61, which is liquid rubber, is hardened by drying, the operation of sandwiching split gasket 21 between case 101A and cover 101B and joining them may be performed before or after the liquid rubber hardens. When liquid gasket 61 is hardened by vulcanization (heating), the above operation is performed while the liquid rubber is hardening or after it has hardened.
[0064] To assemble the seal device 11 using CIPG as the liquid gasket 61, the CIPG is applied to the recess 104. If necessary, the CIPG is also applied to a position facing the recess 104 in the case 101A or the cover 101B.
[0065] The CIPG is then hardened by exposure to ultraviolet light or light.
[0066] The folded split gasket 21 is opened before or after the CIPG application operation and restored to the shape of the gasket 12.
[0067] Gasket 12, which has been restored to its original shape, is placed in a predetermined position on case 101A. Case 101A and cover 101B are then aligned so as to cover opening 103 of case 101A, and the two are joined together with split gasket 21, which has been restored to the shape of gasket 12, sandwiched between them. The joining operation is performed while the CIPG, which is liquid gasket 61, is hardening or after it has hardened.
[0068] Any other variations or modifications are possible.
[0069] [Second embodiment]
[0070] The second embodiment will be described with reference to Figures 13 to 17. The same parts as those in the first embodiment are denoted by the same reference numerals, and the description thereof will be omitted where appropriate.
[0071] 1. Configuration (1) Gasket (1-1) Split gasket As shown in Figure 13, gasket 12 of this embodiment includes a split gasket 31 that is split into four pieces P1 to P4, each having flat sealing surfaces 23 coated with elastic body 22 on its front and back surfaces. Split gasket 31 has an annular shape that becomes a rectangle when assembled. The four pieces P1 to P4 are a pair of pieces P1 and P3 that form the long sides of the rectangle, and a pair of pieces P2 and P4 that form the short sides. These four pieces P1 to P4 are combined to form split gasket 31 in its rectangular shape.
[0072] The four pieces P1 to P4 of the split gasket 31 have adjacent end portions E at both ends. The adjacent end portions E of the four pieces P1 to P4 that make up the split gasket 31 form pairs. In more detail, (k) End E11 of piece P1 and end E22 of piece P2 (l) End E21 of piece P2 and end E32 of piece P3 (m) End E31 of piece P3 and end E42 of piece P4 (n) End E41 of piece P4 and end E12 of piece P1 These four types of ends E are paired together.
[0073] The individual pieces P1 to P4 of the split gasket 31 are made of a metal material such as stainless steel, cold-rolled steel sheet, galvanized steel sheet, or aluminum alloy, and are coated in advance with the elastic body 22, for example.
[0074] The elastic body 22 is a rubber compound containing rubber as a main component. For example, at least one type of synthetic rubber selected from nitrile rubber, styrene butadiene rubber, fluororubber, acrylic rubber, and silicone rubber can be used as the material for the elastic body 22. The rubber compound using these materials may be foamed rubber.
[0075] (1-2) Connector The four pieces P1 to P4 of the split gasket 31 are connected by connectors 51 at positions that form the four corners CR of the rectangular shape. The four corners CR are located at four locations: between pieces P1 and P2, between pieces P2 and P3, between pieces P3 and P4, and between pieces P4 and P1.
[0076] 14, the end faces E of the pieces P that are adjacent to each other at the four corners CR face each other with their end faces ES facing each other. The end faces ES are not perpendicular to the longitudinal direction of the piece P, but are angled at 45 degrees.
[0077] 14 shows that end E11 of piece P1 and end E22 of piece P2 face each other with their end faces ES at a 45-degree angle, forming a right angle CR. The end faces ES do not contact each other, leaving a gap G. This arrangement of adjacent pieces P is not limited to pieces P1 and P2, but is also the same for pieces P2 and P3, pieces P3 and P4, and pieces P4 and P1.
[0078] 13 to 15, the four pieces P1 to P4 of the split gasket 31 are provided with circular connecting pieces 52 with connecting holes 52a at both end parts E that form corners CR of the rectangular shape. The connecting pieces 52 are provided at positions that are further outward from the rectangular shape than the end faces ES.
[0079] 14 and 15, adjacent pieces P1 and P2 have their connecting pieces 52 overlapping each other, and a connecting device 51 passes through the connecting hole 52a. The connecting device 51 is, for example, a rivet, and passes through the connecting holes 52a provided in the two connecting pieces 52 and is prevented from coming off by the large diameter portions 51a at both ends. This connects the pieces P1 and P2 to be rotatable around an axis perpendicular to the sealing surface 23.
[0080] When connector 51 is a rivet, one of large diameter portions 51a is a head portion provided in advance, and the other is a portion whose diameter is enlarged by being crushed. This type of connection structure between adjacent pieces P is not only between pieces P1 and P2, but also between pieces P2 and P3, pieces P3 and P4, and pieces P4 and P1.
[0081] Due to the structure of constituting the gasket 12, the sealing surfaces 23 on both sides of the individual pieces P of the split gasket 31 must be positioned in the same plane. In contrast, the connecting piece 52 overlaps two adjacent pieces P in the axial direction of the connector 51. Therefore, in this embodiment, the connecting piece 52 is thinned to half its original thickness so that the thickness of each piece P matches the thickness of the two overlapping connecting pieces 52.
[0082] Please refer to Figure 15, which is a cross-sectional view taken along line BB in Figure 14. In Figure 15, the thinned connecting piece 52 of piece P1 is shown at the top, and the thinned connecting piece 52 of piece P2 is shown at the bottom.
[0083] The individual pieces P1 to P4 of the split gasket 31 are made of a metal material such as stainless steel, cold-rolled steel sheet, galvanized steel sheet, or aluminum alloy, and are coated in advance with the elastic body 22, for example.
[0084] The elastic body 22 is a rubber compound containing rubber as a main component. For example, at least one type of synthetic rubber selected from nitrile rubber, styrene butadiene rubber, fluororubber, acrylic rubber, and silicone rubber can be used as the material for the elastic body 22. The rubber compound using these materials may be foamed rubber.
[0085] When two adjacent pieces P are connected with a connector 51, these pieces P are connected so as to be able to rotate freely around the axis of the connector 51, but the amount of rotation is small because the non-thinned portions collide with each other. The four pieces P1 to P4 are in a state where they are loosely connected, so that gaps G are formed between the mutually facing end faces ES provided on each end E.
[0086] (2) Sealing device As shown in Figures 16 and 17, the sealing device 11 sandwiches a gasket 12 between two members 101 (101A, 101B). The gasket 12 fills a gap G between the ends E of two adjacent pieces P with a liquid gasket 61. As an example, the liquid gasket 61 is a gasket that uses a one-component, room-temperature curing type silicone called an FIPG (Formed-In-Place Gasket). The liquid gasket 61 is initially fluid and can be applied to various parts. When it reacts with moisture in the air, the liquid gasket 61 hardens.
[0087] 2. Assembly of the sealing device To join two components 101 (101A, 101B) via split gasket 31 and assemble sealing device 11, gasket 12 is placed in a predetermined position on case 101A. Then, liquid gasket 61 is filled into gap G between the end faces ES of two adjacent pieces P. After that, case 101A and cover 101B are aligned so as to cover opening 103 of case 101A, and the two are joined together with split gasket 31 in between. This operation is performed before liquid gasket 61 hardens and maintains its fluidity.
[0088] Once the liquid gasket 61 has hardened, the sealing device 11 is completed.
[0089] 3. Effects The sealing device 11 exerts a sealing effect by the elastic body 22 of the gasket 12 sandwiched between the joined case 101A and cover 101B. The hardened liquid gasket 61 also fills the gap G between the end faces ES of two adjacent pieces P. Since the hardened liquid gasket 61 retains a certain degree of elasticity even after hardening, it also exerts a sealing effect on the gap G.
[0090] Therefore, according to this embodiment, case 101A and cover 101B, which are joined together, can be sealed.
[0091] According to this embodiment, the pieces P of the split gasket 31 are connected in advance by the connectors 51. Therefore, when assembling the seal device 11, it is not necessary to manufacture the gasket 12 by connecting multiple pieces P. The assembly of the seal device 11 can be completed in a single process by simply joining the two members 101 with the gasket 12 sandwiched between them.
[0092] Therefore, according to this embodiment, the number of steps required to manufacture the sealing device 11 can be reduced, and the manufacturing process can be simplified.
[0093] According to this embodiment, the elastic body 22 is coated on the seal surface 23, so that the seal surface 23 coated with the elastic body 22 can be easily obtained, and manufacturing can be simplified.
[0094] 4. Variations Various modifications and variations are possible in implementation.
[0095] For example, the connector 51 is not limited to a rivet, and any other rotary connection structure may be used, such as a pin or a recessed / protruding fitting structure that rotatably connects two members.
[0096] The connecting positions of the individual pieces P of the split gasket 31 by the connecting members 51 are not limited to the corners CR, but may also be positions where two pieces P are adjacent to each other on a straight line.
[0097] A base treatment layer may be provided between the liquid gasket 61 and the sealing surface 23 of each piece P of the split gasket 31 .
[0098] In the process of assembling the sealing device 11, in this embodiment, the operation of aligning the case 101A and the cover 101B and joining them with the split gasket 31 sandwiched therebetween is illustrated as being performed at a stage before the hardening of the liquid gasket 61. This timing between the hardening of the liquid gasket 61 and the above operation is merely an example, and in practice, the above operation may be performed at a stage after the hardening of the liquid gasket 61.
[0099] The liquid gasket 61 is not limited to a formed-in-place gasket (FIPG), but may also be liquid rubber (rubber glue) or a cured-in-place gasket (CIPG). An unvulcanized, glue-like rubber is used as the liquid rubber. CIPG is an ultraviolet-curing silicone, and while FIPG cures by absorbing moisture in the air, CIPG cures in place when exposed to ultraviolet light or light.
[0100] To assemble the sealing device 11 using liquid rubber as the liquid gasket 61, the gasket 12 is placed in a predetermined position on the case 101A.
[0101] Next, the gap G between the end faces ES of the two adjacent pieces P is filled with liquid rubber.
[0102] Thereafter, case 101A and cover 101B are aligned so as to cover opening 103 of case 101A, and the two are joined together with split gasket 31 sandwiched therebetween.
[0103] The liquid rubber in paste form hardens by drying or vulcanization (heating). When liquid gasket 61, which is liquid rubber, is hardened by drying, the operation of sandwiching split gasket 31 between case 101A and cover 101B and joining them may be performed before or after the liquid rubber has hardened. When liquid gasket 61 is hardened by vulcanization (heating), the above operation is performed while the liquid rubber is hardening or after it has hardened.
[0104] To assemble the sealing device 11 using the CIPG as the liquid gasket 61, the gasket 12 is placed in a predetermined position on the case 101A.
[0105] Next, CIPG is filled into the gap G between the end faces ES of two adjacent pieces P, and the CIPG is cured by irradiating it with ultraviolet light or light.
[0106] Thereafter, case 101A and cover 101B are aligned so as to cover opening 103 of case 101A, and the two are joined together with split gasket 31 in between. The joining operation is performed while the CIPG, which is liquid gasket 61, is curing or after it has cured.
[0107] Any other variations or modifications are possible. [Explanation of symbols]
[0108] 11 Sealing device 12 Gasket 21 Split gasket 22 Elastic Body 23 Sealing surface 31 Split gasket 41 Hinge 42 Arm 43 pin 51 Connector 51a Large diameter part 52 Connecting piece 52a Connection hole 61 Liquid gasket 101 Two parts 101A Case 101B Cover 102 Oil puddle 103 Opening 104 Recess CR angle E(E11, E12, E21, E22, ..., E81, E82) End E(E11, E12, E21, E22) End E(E11, E12, E21, E22, ..., E41, E42) End ES end face G Gap P(P1~P8) Piece P(P1, P2) Piece P(P1~P4) Piece
Claims
1. a metal segmented gasket that is divided into a plurality of pieces having flat sealing surfaces coated with an elastic body on the front and back sides, and that forms an annular shape when assembled; a hinge that is fixed across the sealing surfaces of two linearly adjacent pieces and rotates around an axis perpendicular to the longitudinal direction of the two pieces to foldably connect the two pieces; A gasket comprising:
2. The combined split gaskets have a rectangular shape, The hinge is provided on at least one pair of opposite sides of the rectangular shape. The gasket of claim 1.
3. The adjacent hinges are respectively arranged on one side of the sealing surface and on the opposite side thereof.
3. The gasket of claim 2.
4. The elastic body is coated on the sealing surface.
4. The gasket according to claim 1.
5. a metal segmented gasket that is divided into a plurality of pieces having flat sealing surfaces coated with an elastic body on the front and back sides, and that forms an annular shape when assembled; a connector that connects the ends of two adjacent pieces rotatably around an axis perpendicular to the seal surface; A gasket comprising:
6. The combined split gaskets have a rectangular shape, The connectors are provided at the four corners of the rectangular shape.
6. The gasket of claim 5.
7. The elastic body is coated on the sealing surface.
7. The gasket according to claim 5 or 6.
8. a metal segmented gasket that is divided into a plurality of pieces having flat sealing surfaces coated with an elastic body on the front and back sides, and that forms an annular shape when assembled; a hinge that is fixed across the sealing surfaces of two linearly adjacent pieces and rotates around an axis perpendicular to the longitudinal direction of the two pieces to foldably connect the two pieces; two members joined to each other with the sealing surface of the split gasket in between; a recess provided in at least one of the two members for accommodating the hinge protruding from the sealing surface; a liquid gasket filled in the recess and covering the connecting portion of the two pieces; A sealing device comprising:
9. the sealed surfaces of the two members and the split gasket have a rectangular shape; The hinge is provided on at least one pair of opposite sides of the rectangular shape. The sealing device according to claim 8.
10. The adjacent hinges are respectively arranged on one side of the sealing surface and on the opposite side thereof. The sealing device according to claim 8.
11. The recess has a groove shape. The sealing device according to claim 8.
12. The recess has the shape of a hole. The sealing device according to claim 8.
13. The elastic body is coated on the sealing surface. The sealing device according to claim 8.
14. one of the two members is a case, The other of the two members is a cover that covers the opening of the case.
14. A sealing device according to any one of claims 8 to 13.
15. a metal segmented gasket that is divided into a plurality of pieces having flat sealing surfaces coated with an elastic body on the front and back sides, and that forms an annular shape when assembled; a connector that connects the ends of two adjacent pieces rotatably around an axis perpendicular to the seal surface; two members joined to each other with the sealing surface of the split gasket in between; a liquid gasket filled in the gap between the opposing ends of the two pieces; A sealing device comprising:
16. the sealed surfaces of the two members and the split gasket have a rectangular shape; The connectors are provided at the four corners of the rectangular shape. The sealing device of claim 15.
17. The elastic body is coated on the sealing surface. The sealing device of claim 15.
18. one of the two members is a case, The other of the two members is a cover that covers the opening of the case.
18. A sealing device according to any one of claims 15 to 17.
Citation Information
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