Fixture
The fitting design distributes wind pressure through a metal-molded portion to prevent resin deformation, enhancing heat insulation and airtightness without compromising appearance.
Patent Information
- Application Number
- JP2024000647
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-01-05
- Publication Date
- 2025-07-17
AI Technical Summary
Existing fittings with resin and metal molded portions face deformation or detachment due to wind pressure, compromising heat insulation performance.
A fitting design with a metal-molded portion supporting a panel via a seal member, where the resin-molded portion has a cover portion and the seal member includes inner and outer peripheral seal portions to distribute wind pressure through a protrusion, ensuring the resin portion remains intact.
Improves heat insulation without resin deformation or detachment, maintaining airtightness and watertightness while preventing condensation and preserving appearance quality.
Smart Images

Figure 2025106985000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a fitting considering heat insulation properties.
Background Art
[0002] In FIX windows and shoji screens, a panel support portion is provided on a shaped member such as a frame member or a muntin member, a seal member is attached to the panel support portion, and the panel is supported by the shaped member with the seal member in contact with the surface of the panel such as glass. As the seal member, one having a fin portion having a fin shape for ensuring watertightness and airtightness and a ridge portion for ensuring wind pressure resistance is applied (see, for example, Patent Document 1).
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0004] By the way, in fittings considering heat insulation properties, those having a resin molded portion molded by resin and a metal molded portion molded by metal are applied. Also in the above-described fittings, if the panel support portion of the shaped member molded by metal and the portion exposed indoors are covered with the resin molded portion, it is possible to improve the heat insulation properties. However, when the wind pressure applied to the panel acts on the resin molded portion via the ridge portion, there is a concern that the resin molded portion may be deformed or detached from the metal molded portion.
[0005] An object of the present invention is to provide a fitting capable of improving heat insulation properties without deforming or detaching the resin molded portion in view of the above circumstances.
Means for Solving the Problems
[0006] In order to achieve the above object, the fitting according to the present invention includes a shaped member having a resin-molded portion formed of resin and a metal-molded portion formed of metal, and a panel supported by the shaped member. A panel support portion facing one surface of the panel is provided in the metal-molded portion, and a seal mounting portion for mounting a seal member is provided in the panel support portion. The panel is supported by the shaped member via the seal member mounted on the panel support portion. The resin-molded portion has a cover portion at a portion on the inner peripheral side of the seal mounting portion in the panel support portion. The seal member is configured to have an inner peripheral seal portion interposed between the cover portion and the panel and abutting on the panel via a fin portion, and an outer peripheral seal portion interposed between the metal-molded portion and the panel and abutting on the panel via a protrusion portion.
Advantages of the Invention
[0007] According to the present invention, since the protrusion portion is provided so as to be interposed between the metal-molded portion and the panel, the wind pressure applied to the panel acts on the metal-molded portion via the protrusion portion. As a result, it becomes possible to improve the heat insulation performance without causing a situation where the resin-molded portion is deformed or detached from the metal-molded portion.
Brief Description of the Drawings
[0008]
Figure 1
Figure 2
Figure 3
Figure 4
Figure 5
Figure 6
Figure 7
Embodiments for Carrying out the Invention
[0009] Hereinafter, preferred embodiments of the fitting according to the present invention will be described in detail with reference to the accompanying drawings. For convenience, the terms "prospective direction" and "search direction" may be used hereinafter. The prospective direction is the direction along the depth of the fitting, as indicated by arrow A in the figure. A plane along the prospective direction may be referred to as a prospective plane. The search direction is the direction along the up and down perpendicular to the prospective direction in the case of an object extending horizontally along the lower frame or the like. In the case of an object extending vertically along the vertical frame or the like, the direction along the horizontal perpendicular to the prospective direction is referred to as the search direction. A plane along the search direction may be referred to as a search plane.
[0010] Figs. 1 to 3 show a fitting according to an embodiment of the present invention. The fitting exemplified here is a FIX window including a frame body 10 configured by surrounding a top frame (profile) 11, a bottom frame (profile) 12, and left and right vertical frames (profiles) 13, and a panel 14 such as a double-layer glass disposed inside the frame body 10. The top frame 11, the bottom frame 12, and the left and right vertical frames 13 (hereinafter sometimes referred to as frame members 11, 12, 13 when collectively referred to) that constitute the frame body 10 are all configured to have a metal frame portion (metal molded portion) and a resin frame portion (resin molded portion). The metal frame portion is an extruded profile formed of a metal such as an aluminum alloy, and is configured to have a substantially uniform cross-sectional shape over the entire length along the longitudinal direction. The resin frame portion is an extruded profile formed of a resin, and is configured to have a substantially uniform cross-sectional shape over the entire length along the longitudinal direction. Hereinafter, the configurations of the respective frame members 11, 12, 13 will be described in detail. Note that since the vertical frame 13 has a symmetric shape on the left and right, only one of the vertical frames 13 will be described.
[0011] As shown in FIGS. 2 and 4, the metal frame portion 20 of the upper frame 11 is integrally formed with an upper metal base portion 21, an upper resin mounting portion 22, an upper outer panel support portion (outer panel support portion) 23, and an upper inner panel support portion (inner panel support portion) 24. The upper metal base portion 21 extends substantially horizontally along the prospective direction. The upper resin mounting portion 22 is provided at the edge on the indoor side of the upper metal base portion 21 and forms a groove shape that opens toward the inner circumference. The upper outer panel support portion 23 extends in the finding direction from the edge on the outdoor side of the upper metal base portion 21 toward the inner circumference side. The upper inner panel support portion 24 extends in the finding direction from a position on the indoor side of the upper metal base portion 21 that is closer to the indoor side than the upper outer panel support portion 23 toward the inner circumference side. These upper outer panel support portion 23 and upper inner panel support portion 24 are provided so as to face each other while ensuring a space larger than the plate thickness of the panel 14 therebetween. An upper outer pocket portion 23a protrudes from a portion facing the indoor side at the extending edge of the upper outer panel support portion 23. At the extending edge of the upper inner panel support portion 24, an upper resin frame locking portion 24a and an upper seal mounting portion (seal mounting portion) 24b protrude from a portion facing the outdoor side. The upper resin frame locking portion 24a is provided so as to protrude from the edge on the inner circumference side of the upper inner panel support portion 24 toward the outdoor side. The upper seal mounting portion 24b is configured between the inner engaging piece 24c and the outer engaging piece 24d provided at a portion of the upper inner panel support portion 24 that is on the outer circumference side of the upper resin frame locking portion 24a.
[0012] The resin frame portion 30 of the upper frame 11 is disposed so as to overlap with a portion of the metal frame portion 20 that is on the indoor side of the upper inner panel support portion 24, and has an upper resin base portion 31, an upper cover portion (cover portion) 32, an upper insertion piece portion 33, and a mounting plate portion 34. The upper resin base portion 31 has a hollow rectangular cross-section. The upper cover portion 32 extends in the prospective direction from the corner portion on the outdoor side and the inner peripheral side of the upper resin base portion 31 toward the outside, then bends toward the outer peripheral side, and further bends toward the inside. The upper insertion piece portion 33 extends in the finding direction from the corner portion on the indoor side and the outer peripheral side of the upper resin base portion 31 toward the outside. The mounting plate portion 34 is provided on the indoor side from the corner portion on the indoor side and the outer peripheral side of the upper resin base portion 31 and extends in the prospective direction.
[0013] In the upper frame 11 having the above configuration, by inserting the upper insertion piece portion 33 into the upper resin mounting portion 22 and engaging the upper cover portion 32 with the upper resin frame locking portion 24a, the resin frame portion 30 is in a state of being mounted on the metal frame portion 20. The edge portion on the inner peripheral side of the upper inner panel support portion 24 is covered by the upper cover portion 32 of the resin frame portion 30, and there is no possibility that the metal frame portion 20 is visually recognized from the indoor side. The upper inner panel support portion 24 with the resin frame portion 30 mounted thereon has an inner peripheral side edge position that is substantially the same as that of the upper outer panel support portion 23.
[0014] As shown in FIGS. 2 and 5, the metal frame portion 40 of the lower frame 12 is formed by integrally molding a lower metal base portion 41, a lower resin mounting portion 42, a lower outer panel support portion (outer panel support portion) 43, and a lower inner panel support portion (inner panel support portion) 44. The lower metal base portion 41 extends along the prospective direction. The portion of the lower metal base portion 41 located on the indoor side is inclined so as to gradually become the inner peripheral side toward the indoor. The lower resin mounting portion 42 is provided at the edge portion on the indoor side of the lower metal base portion 41 and forms a groove shape that opens toward the inner periphery. The lower outer panel support portion 43 extends in the finding direction from the edge portion on the outdoor side of the lower metal base portion 41 toward the inner peripheral side. The lower inner panel support portion 44 extends in the finding direction from a position on the indoor side of the lower metal base portion 41 that is closer to the indoor side than the lower outer panel support portion 43 toward the inner peripheral side. These lower outer panel support portion 43 and lower inner panel support portion 44 are provided at positions corresponding to the upper outer panel support portion 23 and the upper inner panel support portion 24 of the upper frame 11. At the extending edge portion of the lower outer panel support portion 43, a lower outer pocket portion 43a is provided so as to protrude at a portion facing the indoor. At the extending edge portion of the lower inner panel support portion 44, a lower resin frame locking portion 44a and a lower seal mounting portion (seal mounting portion) 44b are provided so as to protrude at a portion facing the outdoor. The lower resin frame locking portion 44a is provided so as to protrude from the edge portion on the inner peripheral side of the lower inner panel support portion 44 toward the outdoor. The lower seal mounting portion 44b is configured between each other by providing an inner engaging piece 44c and an outer engaging piece 44d at a portion of the lower inner panel support portion 44 that is on the outer peripheral side of the lower resin frame locking portion 44a.
[0015] The resin frame portion 50 of the lower frame 12 is arranged to overlap with a portion on the indoor side of the lower inner panel support portion 44 in the metal frame portion 40, and has a lower resin base portion 51, a lower cover portion (cover portion) 52, a lower mounting plate portion 53, and a lower insertion piece portion 54. The lower resin base portion 51 extends substantially horizontally along the prospective direction, and the edges located on the outdoor side and the indoor side are curved toward the inner peripheral side, respectively. On the portion on the outer peripheral side of the lower resin base portion 51, two finding wall portions 51a, 51b are provided toward the outer peripheral side, a prospective wall portion 51c is provided between the extending edges of the finding wall portions 51a, 51b, and a hollow portion 51d having a rectangular cross section is formed between these. The lower cover portion 52 extends in the prospective direction toward the outdoor from the edge located on the outdoor side of the lower resin base portion 51, then bends toward the outer peripheral side, and further bends toward the indoor. The lower mounting plate portion 53 extends in the prospective direction toward the indoor from the edge located on the indoor side of the lower resin base portion 51. The lower insertion piece portion 54 extends in the finding direction toward the outer peripheral side from a portion located closer to the outdoor side of the lower mounting plate portion 53. A reinforcing wall 54a is provided between the lower insertion piece portion 54 and the indoor finding wall portion 51b along the prospective direction.
[0016] In the lower frame 12 having the above configuration, by inserting the lower insertion piece portion 54 into the resin mounting portion 42 and engaging the lower cover portion 52 with the lower resin frame locking portion 44a, the resin frame portion 50 is in a state of being mounted on the metal frame portion 40. The edge on the inner peripheral side of the lower inner panel support portion 44 is covered by the lower cover portion 52 of the resin frame portion 50, and there is no possibility that the metal frame portion 40 is visually recognized from the indoor side. The lower inner panel support portion 44 with the resin frame portion 50 mounted has an inner peripheral side edge position substantially the same as that of the lower outer panel support portion 43.
[0017] As shown in FIGS. 3 and 6, the metal frame portion 60 of the vertical frame 13 is integrally formed with a vertical metal base portion 61, a vertical resin support portion 62, and a vertical inner panel support portion (inner panel support portion) 63. The vertical metal base portion 61 has a substantially rectangular cross-sectional shape and is tubular. On the prospective surface on the inner peripheral side of the vertical metal base portion 61, an outer edge mounting portion (edge mounting portion) 61a and an inner edge mounting portion (edge mounting portion) 61b are provided at portions facing the outdoor side. The outer edge mounting portion 61a and the inner edge mounting portion 61b project from the vertical metal base portion 61 toward the inner peripheral side and then bend in a direction approaching each other. An edge 64 is mounted between the outer edge mounting portion 61a and the inner edge mounting portion 61b.
[0018] The edge 64 has an edge main body portion 64a extending in the prospective direction and an edge engaging piece portion 64b that inclines outward from the edge located on the outer peripheral side of the edge main body portion 64a toward the room. On the edge main body portion 64a, a vertical outer pocket portion 64c is provided so as to project at a portion facing the room. An engaging recess 64d is formed at the connection portion between the edge main body portion 64a and the edge engaging piece portion 64b. The edge 64 is mounted on the vertical metal base portion 61 in a state where the edge main body portion 64a projects toward the inner peripheral side by engaging the edge portion located on the indoor side of the edge engaging piece portion 64b with the inner edge mounting portion 61b and engaging the outer edge mounting portion 61a with the engaging recess 64d.
[0019] The vertical resin support portion 62 extends in the prospective direction from a corner on the indoor side and outer peripheral side of the vertical metal base portion 61 into the room. A groove-shaped vertical resin mounting portion 65 that opens toward the inner peripheral side is provided at the extending edge portion of the vertical resin support portion 62. The vertical inner panel support portion 63 extends in the finding direction from a corner on the indoor side and inner peripheral side of the vertical metal base portion 61 toward the inner peripheral side. The pressing edge 64 and the vertical inner panel support portion 63 mounted on the vertical metal base portion 61 are provided at positions corresponding to the upper outer panel support portion 23 and the upper inner panel support portion 24 of the upper frame 11. A vertical resin frame locking portion 63a and a vertical seal mounting portion (seal mounting portion) 63b project from a portion facing the outside of the room at the extending edge portion of the vertical inner panel support portion 63. The vertical resin frame locking portion 63a is provided so as to project from the edge portion on the inner peripheral side of the vertical inner panel support portion 63 toward the outside of the room. The vertical seal mounting portion 63b is configured between the inner engaging piece 63c and the outer engaging piece 63d provided at a portion on the outer peripheral side of the vertical inner panel support portion 63 rather than the vertical resin frame locking portion 63a.
[0020] The resin frame portion 70 of the vertical frame 13 is arranged to overlap a portion on the indoor side of the metal frame portion 60, and has an outer hollow portion 71, an inner hollow portion 72, a vertical cover portion (cover portion) 73, a vertical insertion piece portion 74, and a mounting plate portion 75. The outer hollow portion 71 and the inner hollow portion 72 each have a hollow shape with a rectangular cross-section. In the illustrated example, the inner hollow portion 72 is provided so as to project from a portion on the outer peripheral side of the outer hollow portion 71 toward the room. The vertical cover portion 73 extends in the prospective direction from a corner on the outdoor side and inner peripheral side of the outer hollow portion 71 toward the outside of the room, and then bends toward the outer peripheral side. An engaging protrusion 73a is provided at a portion extending toward the outer periphery of the vertical cover portion 73 and facing the room. The vertical insertion piece portion 74 extends from a corner on the indoor side and outer peripheral side of the inner hollow portion 72 toward the outer peripheral side. The mounting plate portion 75 extends in the prospective direction from a corner on the indoor side and inner peripheral side of the inner hollow portion 72 into the room.
[0021] In the vertical frame 13 having the above-described configuration, the vertical insertion piece portion 74 is inserted into the vertical resin mounting portion 65, and the vertical cover portion 73 is engaged with the vertical resin frame locking portion 63a, so that the resin frame portion 70 is in a state of being mounted on the metal frame portion 60. The edge portion on the inner peripheral side of the vertical inner panel support portion 63 is covered by the vertical cover portion 73 of the resin frame portion 70, and there is no possibility that the metal frame portion 60 is visually recognized from the indoor side. The vertical inner panel support portion 63 with the resin frame portion 70 mounted thereon has the edge position on the inner peripheral side substantially the same as the inner peripheral side edge position of the pressing edge 64 mounted on the vertical metal base portion 61.
[0022] The above-described frame members 11, 12, 13 can be assembled into a four-sided structure by connecting the respective metal frame portions 20, 40, 60 to each other, and the frame body 10 is configured by mounting the resin frame portions 30, 50, 70 on each of them. When the panel 14 is supported by the frame body 10, first, the pressing edges 64 are removed from the left and right vertical frames 13 respectively, and a dry seal member 80 pre-formed is mounted on the seal mounting portions 24b, 44b, 63b of the respective inner panel support portions 24, 44, 63.
[0023] The seal member 80 is applied as a continuous one around the four sides. More specifically, as represented in Fig. 7, the seal member 80 is integrally formed with a mounting portion 81, an outer peripheral seal portion 82, and an inner peripheral seal portion 83. With the inner peripheral seal portion 83 on the inner peripheral side, it is attached to the respective seal mounting portions 24b, 44b, 63b via the mounting portion 81. The outer peripheral seal portion 82 is provided so as to protrude to the outdoor side on the inner peripheral side of the mounting portion 81, and has a ridge portion 82a on the surface facing the outdoor. The ridge portion 82a is a protruding portion with a substantially semi-circular cross section, and is provided along the entire length along the longitudinal direction of each of the frame members 11, 12, 13. As is clear from the figure, the ridge portion 82a is provided at a portion that is an extension in the prospective direction with respect to the inner engaging pieces 24c, 44c, 63c that constitute the seal mounting portions 24b, 44b, 63b. The inner peripheral seal portion 83 is provided at a portion on the inner peripheral side of the outer peripheral seal portion 82, and has a first fin portion 83a and a second fin portion 83b. The first fin portion 83a extends so as to gradually become the inner peripheral side toward the outdoor. The second fin portion 83b extends so as to gradually become the outer peripheral side toward the outdoor from a portion located between the first fin portion 83a and the ridge portion 82a. The extending length of the second fin portion 83b is set to be larger than that of the first fin portion 83a.
[0024] After the seal member 80 is attached to the seal mounting portions 24b, 44b, 63b, the panel 14 can be arranged between the upper outer panel support portion 23 and the upper inner panel support portion 24 of the upper frame 11 and between the lower outer panel support portion 43 and the lower inner panel support portion 44 of the lower frame 12 by moving it up and down. At this time, if the panel 14 is moved in the prospective direction with respect to the seal member 80, as shown in Figs. 4 to 6, the surface 14a of the panel 14 facing the indoor can be brought into contact with the seal member 80. Therefore, there is no risk of the seal member 80 deforming in an unintended direction, and it is possible to surely bring the first fin portion 83a and the second fin portion 83b into contact with the surface 14a of the panel 14 respectively.
[0025] Thereafter, the pressing edge 64 is attached to the vertical frame 13, and the sealing material 90 is filled between the surface 14b of the panel 14 facing the outside and the vertical outer pocket portion 64c of the pressing edge 64, the upper outer pocket portion 23a of the upper frame 11, and the lower outer pocket portion 43a of the lower frame 12, respectively, so that the four sides of the panel 14 are supported by the frame members 11, 12, and 13.
[0026] In the fitting configured as described above, the metal frame portions 20, 40, and 60 of the frame members 11, 12, and 13 constituting the frame body 10 are all covered by the resin frame portions 30, 50, and 70. Therefore, it is advantageous in terms of heat insulation, and it becomes possible to prevent the occurrence of condensation on the indoor side of the frame body 10.
[0027] Moreover, with respect to the sealing member 80 provided between the inner panel support portions 24, 44, and 63 and the panel 14, since the first fin portion 83a and the second fin portion 83b are in contact with the surface 14a of the panel 14, watertightness and airtightness can be ensured. In particular, in the present embodiment, since the second fin portion 83b having a larger extension length than the first fin portion 83a is provided toward the outer peripheral side between the first fin portion 83a and the ridge portion 82a, the second fin portion 83b is not exposed to the outside, and it is possible to improve watertightness and airtightness without causing a situation where the appearance quality is impaired. In addition, since the first fin portion 83a and the second fin portion 83b are provided at portions corresponding to the cover portions 32, 52, and 73 of the resin frame portions 30, 50, and 70, there is no concern that the water will freeze even if condensation occurs.
[0028] Furthermore, since the ridge portion 82a is provided at a portion that is an extension of the inner engaging pieces 24c, 44c, and 63c, the wind pressure applied to the panel 14 acts only on the metal frame portions 20, 40, and 60 via the ridge portion 82a. As a result, there is no risk of the resin frame portions 30, 50, and 70 being deformed or falling off from the metal frame portions 20, 40, and 60.
[0029] In the above-described embodiments, the sealing member 80 provided between the frame 10 of the FIX window and the panel 14 has been exemplified. However, the present invention is not limited thereto. For example, the present invention can be similarly applied to a sealing member provided between a frame member and a panel constituting a shoji. Further, although the inner peripheral sealing portion 83 having the first fin portion 83a and the second fin portion 83b has been exemplified, it is sufficient that at least the first fin portion is provided. Furthermore, although the inner peripheral edge positions of the outer panel support portions 23 and 43 and the inner peripheral side edge positions of the inner panel support portions 24 and 44 are configured to be the same, the present invention is not necessarily limited thereto.
[0030] As described above, the fitting according to the present invention includes a shaped member having a resin-molded portion molded by resin and a metal-molded portion molded by metal, and a panel supported by the shaped member. The metal-molded portion is provided with a panel support portion facing one surface of the panel. The panel support portion is provided with a seal mounting portion to which a sealing member is mounted. The panel is supported by the shaped member via the sealing member mounted on the panel support portion. The resin-molded portion has a cover portion at a portion on the inner peripheral side of the seal mounting portion in the panel support portion. The sealing member includes an inner peripheral sealing portion interposed between the cover portion and the panel and abutting against the panel via a fin portion, and an outer peripheral sealing portion interposed between the metal-molded portion and the panel and abutting against the panel via a protrusion portion. According to the present invention, since the protrusion portion is provided so as to be interposed between the metal-molded portion and the panel, the wind pressure applied to the panel acts on the metal-molded portion via the protrusion portion. As a result, it becomes possible to improve the heat insulation performance without causing a situation where the resin-molded portion is deformed or detached from the metal-molded portion.
[0031] Further, in the fitting according to the present invention, the seal mounting portion is configured between an inner peripheral engaging piece and an outer peripheral engaging piece protruding toward the panel, and the protrusion portion is provided at a portion that is an extended protrusion of the inner peripheral engaging piece. According to the present invention, the wind pressure applied to the panel acts on the inner peripheral engaging piece via the protruding strip portion.
[0032] Further, in the fitting described above, the inner peripheral seal portion is provided with a first fin portion on the inner peripheral side and a second fin portion on the outer peripheral side, and the first fin portion and the second fin portion are provided so that the mutual distance gradually widens toward the panel. According to the present invention, since the inner peripheral seal portion has the first fin portion and the second fin portion, the watertightness and airtightness can be improved.
[0033] Further, in the fitting described above, the second fin portion is characterized in that it extends longer than the first fin portion. According to the present invention, since the second fin portion on the outer peripheral side with respect to the first fin portion is formed long, the watertightness and airtightness can be further improved without impairing the appearance quality.
[0034] Further, in the fitting described above, the panel support portion is provided so as to face the surface of the panel facing the interior of the room, and the metal molding portion is provided with an outer panel support portion facing the surface of the panel facing the exterior of the room, and a sealing material is filled between the outer panel support portion and the panel. According to the present invention, the panel can be supported by the profile with the seal member pre-mounted on the seal mounting portion of the panel support portion, and it is possible to work while checking the contact state with the seal member when supporting the panel.
[0035] Further, in the fitting described above, the metal molding portion is provided with a bead mounting portion on the outdoor side portion, and the outer panel support portion is configured by mounting a bead on the bead mounting portion. According to the present invention, since the bead can be attached to and detached from the bead mounting portion, the work of supporting the panel with the seal member pre-mounted on the seal mounting portion of the panel support portion becomes easier.
Explanation of reference numerals
[0036] 11 Upper frame, 12 Lower frame, 13 Vertical frame, 14 Panel, 14a Surface, 14b Surface, 20, 40, 60 Metal frame parts, 23 Upper outer panel support part, 24 Upper inner panel support part, 24b Upper seal mounting part, 24c, 44c, 63c Inner engaging pieces, 24d, 44d, 63d Outer engaging pieces, 30, 50, 70 Resin frame parts, 32 Upper cover part, 43 Lower outer panel support part, 44 Lower inner panel support part, 44b Lower seal mounting part, 52 Lower cover part, 61a Outer edge pressing mounting part, 61b Inner edge pressing mounting part, 63 Vertical inner panel support part, 63b Vertical seal mounting part, 64 Edge pressing, 73 Vertical cover part, 80 Seal member, 82 Outer peripheral seal part, 82a Ridge part, 83 Inner peripheral seal part, 83a First fin part, 83b Second fin part, 90 Sealing material
Claims
1. A shaped member having a resin-molded portion molded by resin and a metal-molded portion molded by metal, and a panel supported by the shaped member, wherein the metal-molded portion is provided with a panel support portion facing one surface of the panel, the panel support portion is provided with a seal mounting portion to which a seal member is mounted, the panel is supported by the shaped member via the seal member mounted on the panel support portion, the resin-molded portion has a cover portion at a portion on the inner peripheral side of the seal mounting portion in the panel support portion, the seal member is configured to have an inner peripheral seal portion interposed between the cover portion and the panel and abutting on the panel via a fin portion, and an outer peripheral seal portion interposed between the metal-molded portion and the panel and abutting on the panel via a ridge portion. A fitting characterized by this.
2. The seal mounting portion is configured between an inner peripheral engaging piece and an outer peripheral engaging piece protruding toward the panel, The fitting according to claim 1, wherein the ridge portion is provided at a portion that is an extended projection of the inner peripheral engaging piece.
3. The inner peripheral seal portion is provided with a first fin portion on the inner peripheral side and a second fin portion on the outer peripheral side, The fitting according to claim 1, wherein the first fin portion and the second fin portion are provided such that the distance between them gradually widens toward the panel.
4. The fitting according to claim 3, wherein the second fin portion extends longer than the first fin portion.
5. The panel support portion is provided so as to face the surface of the panel facing the interior of the room, the metal-molded portion is provided with an outer panel support portion facing the surface of the panel facing the exterior of the room, The fitting according to claim 1, wherein a sealant is filled between the outer panel support portion and the panel.
6. The metal-molded portion is provided with a bead mounting portion at a portion on the outdoor side, The fitting according to claim 5, wherein the outer panel support portion is configured by mounting a bead on the bead mounting portion.
Citation Information
Patent Citations
Holding structure for glass plate
JP2019143307A