Mounting structure

By designing long grooves and recessed claws on the PET resin louver panel as mounting components, and combining them with screw fixing, the problem of unstable installation of PET resin louver panels on buildings is solved, achieving both stable and convenient installation.

JP3255749UActive Publication Date: 2026-05-07SEALEX JAPAN CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
SEALEX JAPAN CO LTD
Filing Date
2026-03-05
Publication Date
2026-05-07

AI Technical Summary

Technical Problem

In the existing technology, venetian blinds made of PET resin are difficult to install securely on buildings and are prone to deformation or cracking due to stress concentration.

Method used

An installation component comprising a long groove and a recessed claw is used. The end of the louver panel is inserted into the groove and fixed by the recessed claw. The installation component is then fixed to the building base with screws or other fasteners, avoiding stress concentration caused by point fixing.

Benefits of technology

This method enables the stable installation of PET resin louver panels, preventing deformation and cracking, and improving installation convenience and reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides a mounting structure that allows PET resin louver panels to be easily and securely attached to buildings. [Solution] The mounting structure 1 comprises a louver panel 10 made of PET resin and a mounting member 20. The mounting member 20 has a groove 21 extending in the longitudinal direction, and a claw portion 22 is formed on the inner wall surface 21a of the groove 21. The end of the louver panel 10 is inserted into the groove 21 and held by the claw portion 22, and the mounting member 20 is fixed to the base member of the building via a fixing member.
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Description

Technical Field

[0001] The present invention relates to an attachment structure of a louver panel made of PET resin that can be used for, for example, the exterior or interior decoration of a building.

Background Art

[0002] Conventionally, louver panels may be provided for the exterior or interior decoration of a building for purposes such as adjusting daylighting, ventilation, screening, and decoration. As materials for louver panels, metals such as aluminum and wood are widely used, and these louver panels are attached to the building by fixing means such as screwing or bolt fastening.

[0003] On the other hand, in recent years, from the viewpoints of reducing environmental impact and improving recyclability, using PET (polyethylene terephthalate) resin as a material for louver panels has been studied. PET resin has the advantages of being lightweight, easy to recycle, and less likely to generate toxic gases during combustion.

[0004] Also, as a structure for attaching a panel member to a building, for example, a suspended ceiling structure is known in which a field edge rail is attached to a suspension bolt extending from a ceiling slab and a ceiling board is held by the field edge rail (see, for example, Patent Document 1). In the suspended ceiling structure described in Patent Document 1, a non-combustible lightweight viscoelastic ceiling board is held via a field edge rail attached to the suspension bolt.

Prior Art Documents

Patent Documents

[0005]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0006] However, the conventional suspended ceiling structure described above was primarily intended for holding ceiling panels in place and was not intended for direct application to the installation of louver panels. Furthermore, while conventional methods of attaching louver panels, such as screw fastening and bolting, are suitable for metal or wooden louver panels, when applied to PET resin louver panels, stress can concentrate at the fixing points due to the flexibility of PET resin compared to metal, potentially causing deformation or cracking of the louver panel.

[0007] This invention has been made in view of the above points, and aims to provide a mounting structure that allows PET resin louver panels to be easily and reliably attached to buildings. [Means for solving the problem]

[0008] (1) A mounting structure comprising a louver panel made of PET resin and a mounting member for attaching the louver panel to a building, The mounting member has a groove that extends in the longitudinal direction, The inner wall surface of the groove is formed with claws that protrude inward. The end of the louver panel is inserted into the groove and held by the claw, The mounting member is fixed to the base member of the building via a fixing member. A mounting structure characterized by the following features.

[0009] In the invention of (1), the mounting member has a groove that extends in the longitudinal direction, and a claw portion that protrudes inward is formed on the inner wall surface of the groove. When the end of a PET resin louver panel is inserted into the groove, the claw portion locks into and holds the end of the louver panel. This makes it possible to hold the louver panel to the mounting member without processing the louver panel with bolt holes or the like. The mounting member is fixed to the base member of the building via a fixing member.

[0010] According to the invention of (1), the louver panel made of PET resin can be held in place simply by inserting its end into the groove, eliminating the need for point fixing to the louver panel and preventing deformation or cracking of the louver panel due to stress concentration. Furthermore, because it is held in place by the claw portion, the installation of the louver panel is easy, improving workability.

[0011] (2) The mounting member has a flange portion extending in the longitudinal direction above the groove portion, The fixing member is an engaging member that engages the flange portion and the base member. The mounting structure described in (1), characterized by the above.

[0012] According to the invention of (2), since the fixing member is an engaging member that engages the flange portion of the mounting member with the base member, the mounting member can be easily fixed to the base member. Because the fixing structure is based on the engagement between the flange portion and the base member, the position of the mounting member in the longitudinal direction can be easily adjusted, and the workability is excellent.

[0013] (3) The fixing member is a screw-type member that screws into a suspension bolt extending from the building, The mounting member has a rail portion extending longitudinally above the groove portion, which slidably holds the screw member. The mounting structure described in (1), characterized by the above.

[0014] According to the invention of (3), the fixing member is a screw-type member that screws onto a suspension bolt extending from the building, and by slidably holding the screw-type member on the rail portion of the mounting member, the mounting member can be suspended and fixed from the building. Since the screw-type member is slidable along the rail portion, the mounting position can be easily adjusted to match the position of the suspension bolt.

[0015] (4) The fixing member is a fastening member that penetrates the upper surface of the groove and fixes to the base member, thereby directly fixing the mounting member to the building. The mounting structure according to (1), characterized in that...

[0016] According to the invention of (4), since the fixing member is a fastening member that penetrates the upper surface of the groove portion and is fixed to the base member, the mounting member can be reliably fixed to the building (base member) with a simple configuration.

Effect of the Invention

[0017] According to the present invention, it is possible to provide a mounting structure that can easily and reliably attach a louver panel made of PET resin to a building.

Brief Description of the Drawings

[0018] [Figure 1] It is a view of the mounting structure according to the first embodiment of the present invention seen from the end side. [Figure 2] It is an exploded perspective view of the mounting structure according to the first embodiment of the present invention. [Figure 3] It is a view for explaining a construction example of attaching the mounting structure according to the first embodiment of the present invention to the base member of a building. [Figure 4] It is a view of the mounting structure according to the second embodiment of the present invention seen from the end side. [Figure 5] It is an exploded perspective view of the mounting structure according to the second embodiment of the present invention. [Figure 6] It is a view for explaining a construction example of attaching the mounting structure according to the second embodiment of the present invention to the base member of a building. [Figure 7] It is a view of the mounting structure according to the third embodiment of the present invention seen from the end side. [Figure 8] It is an exploded perspective view of the mounting structure according to the third embodiment of the present invention. <00关于本发明的描述部分,以下是逐句翻译:- 句子1:ことを特徴とする(1)に記載の取付構造。 - 翻译:The mounting structure according to (1), characterized in that... - 句子2: - 翻译: - 句子3:

[0016] - 翻译:

[0016] - 句子4:(4)の考案によれば、固定部材が、溝部の上面を貫通して下地部材に固定される締結部材であるため、簡易な構成で取付部材を建築物(下地部材)に確実に固定することができる。 - 翻译:According to the invention of (4), since the fixing member is a fastening member that penetrates the upper surface of the groove portion and is fixed to the base member, the mounting member can be reliably fixed to the building (base member) with a simple configuration. -句00100> - 翻译: - 句子5: - 翻译: - 句子6:

発明の効果

Effect of the Invention

[0017] - 翻译:

[0017] - 句子10: - 翻译: - 句子知11:本考案によれば、PET樹脂製のルーバーパネルを建築物に対して容易かつ確実に取り付けることができる取付構造を提供できる。 - 翻译:According to the present invention, it is possible to provide a mounting structure that can easily and reliably attach a louver panel made of PET resin to a building. - 句子12: - 翻译: - 句子13:

図面の簡単な説明

Brief Description of the Drawings

[0018] - 翻译:

[0018] - 句子17: - 翻译: - 句子18: [Figure 1] - 翻译: [Figure 1] - 句子19:本考案の第1実施形態に係る取付構造を端部側から見た図である。 - 翻译:It is a view of the mounting structure according to the first embodiment of the present invention seen from the end side. - 句子20: - 翻译: - 句子21: [Figure 2] - 翻译: [Figure 2] - 句子22:本考案の第1実施形態に係る取付構造の分解斜視図である。 - 翻译:It is an exploded perspective view of the mounting structure according to the first embodiment of the present invention. - 句子23: - 翻译: - 句子24: [Figure 3] - 翻译: [Figure 3] - 句子25:本考案の第1実施形態に係る取付構造を建築物の下地部材に取り付ける施工例を説明する図である。 - 翻译:It is a view for explaining a construction example of attaching the mounting structure according to the first embodiment of the present invention to the base member of a building. - 句子26: - 翻译: - 句子27: [Figure 4] - 翻译: [Figure 4] - 句子28:本考案の第2実施形態に係る取付構造を端部側から見た図である。 - 翻译:It is a view of the mounting structure according to the second embodiment of the present invention seen from the end side. - 句子29: - 翻译: - 句子30: [Figure 5] - 翻译: [Figure 5] - 句子31:本考案の第2実施形態に係る取付構造の分解斜視図である。 - 翻译:It is an exploded perspective view of the mounting structure according to the second embodiment of the present invention. - 句子句子32: - 翻译: - 句子33: [Figure 6] - 翻译: [Figure 6] - 句子34:本考案の第2実施形態に係る取付構造を建築物の下地部材に取り付ける施工例を説明する図である。 - 翻译:It is a view for explaining a construction example of attaching the mounting structure according to the second embodiment of the present invention to the base member of a building. - 句子35: - 翻译: - 句子36: [Figure 7] - 翻译: [Figure 7] -句子37:本考案の第3実施形態に係る取付構造を端部側から見た図である。 - 翻译:It is a view of the mounting structure according to the third embodiment of the present invention seen from the end side. - 句子38: - 翻译: - 句子39: [Figure 8] - 翻译: [Figure 8] - 句子40:本考案の第3実施形態に係る取付構造の分解斜視図である。 - 翻译:It is an exploded perspective view of the mounting structure according to the third embodiment of the present invention. - 句子41: - 翻译: - 句子42: [Figure 9] - 翻译: [Figure 9] - 句子43:本考案の第3実施形態に係る取付構造を建築物の下地部材に取り付ける施工例を説明する図である。 - 翻译:It is a view for explaining a construction example of attaching the mounting structure according to the third embodiment of the present invention to the base member of a building. - 句子44: - 翻译: - 句子45: - 翻译: - 句子46:

発明を実施するための形態

Mode for Carrying Out the Invention

[0019] - 翻译:

[0019] -句子50: - 翻译: The embodiments of this invention will be described below with reference to the drawings. In each drawing, the same or corresponding components are denoted by the same reference numerals, and redundant explanations will be omitted as appropriate. <First Embodiment>

[0020] The mounting structure 1 according to the first embodiment of the present invention will be described with reference to Figures 1 to 3. Figure 1 is a view of the mounting structure 1 from the end side, Figure 2 is an exploded perspective view of the mounting structure 1, and Figure 3 is a diagram illustrating an example of installation in which the mounting structure 1 is attached to a base member 100 of a building. In this description of the actual embodiment, the base member 100 is a suspension bolt 110 or the like that is included in the building and extends from a structure such as a ceiling slab.

[0021] As shown in Figures 1 and 2, the mounting structure 1 comprises a louver panel 10 made of PET resin and a mounting member 20 for attaching the louver panel 10 to a building.

[0022] The louver panel 10 is a plate-like member made of PET (polyethylene terephthalate) resin, formed in a rectangular flat plate shape extending in the longitudinal direction. More specifically, the louver panel 10 is a felt-like building panel made of PET resin, formed to a thickness of, for example, 9 mm or 12 mm, with a maximum dimension of approximately 1,220 mm × 2,440 mm. The density of the louver panel 10 is, for example, 220 kg / m³. 3 It is to that extent.

[0023] The louver panel 10 is lightweight and possesses sound absorption, heat insulation, and moisture and mold resistance. Furthermore, PET resin is easily recyclable and has the advantage of producing few toxic gases when burned, thus contributing to a reduction in environmental impact. In addition, the louver panel 10 is easy to cut and process on-site, offering high flexibility in installation. The louver panel 10 can be used, for example, in the exterior or interior of buildings for purposes such as adjusting daylighting, ventilation, privacy, decoration, and sound absorption.

[0024] The mounting member 20 is a rail-shaped member that extends along the longitudinal direction of the louver panel 10, and has a groove portion 21 that extends in the longitudinal direction and a flange portion 23 provided above the groove portion 21.

[0025] The groove 21 is a U-shaped groove with an open bottom, extending longitudinally and formed in the lower part of the mounting member 20. The groove 21 is formed with a width and depth that can accommodate the area around the upper end of the louver panel 10. A claw portion 22 that protrudes inward is formed on the inner wall surface 21a of the groove 21.

[0026] The claw portion 22 is a projection that protrudes from the inner wall surface 21a of the groove portion 21 toward the inside (towards the center) of the groove portion 21. The claw portion 22 locks and holds the end of the louver panel 10 when it is inserted into the groove portion 21. The claw portion 22 protrudes gently inward from the bottom, which is the open side of the groove portion 21, toward the top, so as to allow the insertion of the louver panel 10 while preventing it from coming loose. This allows the louver panel 10 to be held by the mounting member 20 without processing the louver panel 10 with bolt holes or the like.

[0027] The flange portion 23 is formed in a substantially T-shape and, above the groove portion 21, has a vertical member extending from the upper surface of the mounting member 20 and a horizontal member connected to the upper end of the vertical member and formed to protrude horizontally, extending continuously along the longitudinal direction. The flange portion 23 is used to fix the mounting member 20 to the base member 100 of the building.

[0028] An example of the dimensions of the mounting member 20 is shown. The overall height of the mounting member 20 in cross-section is, for example, about 30.5 mm. The inner width of the groove 21 (distance between opposing inner wall surfaces 21a) is, for example, 9.0 mm, and the depth of the groove 21 is, for example, 15.0 mm. The protrusion amount of the claw portion 22 is, for example, 1.0 mm to 1.5 mm, and the width of the narrowest part of the groove 21 at the position where the claw portions 22 face each other is, for example, 6.0 mm to 7.0 mm. The width of the lateral member of the flange portion 23 is, for example, 7.0 mm, and the plate thickness of the flange portion 23 is, for example, 1.2 mm. The wall thickness of the side wall forming the groove portion 21 is, for example, 1.2 mm. Note that these dimensions are just examples and can be appropriately changed according to the plate thickness of the louver panel 10 and design conditions.

[0029] As shown in Figure 2, by inserting the upper end of the louver panel 10 into the groove 21 of the mounting member 20 from below, the claw portion 22 locks and holds the end side of the louver panel 10. In this way, the louver panel 10 can be held by the mounting member 20 simply by inserting the end side of the louver panel 10 into the groove 21, resulting in excellent workability.

[0030] Next, with reference to Figure 3, an example of installation of the mounting structure 1 to the base member 100 of a building will be described. In this example, the base member 100 includes a suspension bolt 110 extending from the ceiling slab of the building and a channel 120 attached to the suspension bolt 110.

[0031] The suspension bolt 110 is a fully threaded bolt that hangs downward from a structural element such as a ceiling slab of a building. The channel 120 is a channel steel (C-channel) supported by the suspension bolt 110 and extends horizontally.

[0032] By inserting the upper end of the louver panel 10 into the groove 21 of the mounting member 20 from below, the claw portion 22 locks and holds the end side of the louver panel 10. As a result, the louver panel 10 is attached to the mounting member 20 in the mounting structure 1.

[0033] In this state, the mounting member 20 is fixed to the channel 120 via the engaging member 31, which acts as a fixing member 30. The engaging member 31 is a member that engages the flange portion 23 of the mounting member 20 with the channel 120, and is formed in a roughly U-shape with the bottom open in a side view, and has a hook at its lower end, for example, a clip-shaped metal fitting. The engaging member 31 is placed over the channel 120 from above, and in that state, the hook at the lower end engages with the lateral member of the flange portion 23, thereby fixing the mounting member 20 to the channel 120.

[0034] Thus, in the first embodiment, a series of support structures are formed in which a suspension bolt 110 hangs down from the ceiling slab, a channel 120 is attached to the suspension bolt 110, a mounting member 20 is fixed to the channel 120 via an engaging member 31, and a louver panel 10 is held in the groove 21 of the mounting member 20. Because the fixing structure is based on the engagement between the flange portion 23 and the channel 120, the position of the mounting member 20 in the longitudinal direction is easily adjusted, resulting in excellent workability.

[0035] The effects and advantages of the mounting structure 1 according to the first embodiment will now be described. With mounting structure 1, the end side of the louver panel 10 is inserted into the groove 21 of the mounting member 20 and held by the claw portion 22, so there is no need to process the louver panel 10 with bolt holes or the like. Therefore, stress concentration at the fixing part due to the flexibility of the PET resin can be avoided, and deformation and cracking of the louver panel 10 can be prevented. In addition, since holding by the claw portion 22 is completed only by inserting into the groove 21, the installation of the louver panel 10 is easy, and workability can be improved. Furthermore, the engagement of the flange portion 23 and the channel 120 by the engaging member 31 facilitates the longitudinal position adjustment of the mounting member 20 and enables flexible installation according to the arrangement of the suspension bolts 110. <Second Embodiment>

[0036] The mounting structure 1A according to the second embodiment of the present invention will be described with reference to Figures 4 to 6. Figure 4 is a view of the mounting structure 1A from the end side, Figure 5 is an exploded perspective view of the mounting structure 1A, and Figure 6 is a diagram illustrating an example of installation in which the mounting structure 1A is attached to the base member 100 of a building. Components common to the first embodiment are denoted by the same reference numerals, and their descriptions are omitted as appropriate.

[0037] The second embodiment differs from the first embodiment mainly in that, instead of the flange portion 23 of the first embodiment, a rail portion 24 that slidably holds the screw member 32 is provided on the mounting member 20A, and the mounting member 32 is directly fixed to the suspension bolt 110 extending from the building via the screw member 32.

[0038] As shown in Figures 4 and 5, the mounting structure 1A comprises a louver panel 10 made of PET resin and a mounting member 20A. The louver panel 10 is a plate-shaped member made of PET resin, similar to that of the first embodiment.

[0039] The mounting member 20A has a groove 21 extending in the longitudinal direction and a rail portion 24 provided above the groove 21. The groove 21 is a U-shaped groove, similar to the first embodiment, and a claw portion 22 is formed on the inner wall surface 21a. The end of the louver panel 10 is inserted into the groove 21 and held by the claw portion 22.

[0040] The rail section 24 is provided above the groove section 21, and its cross-sectional shape is formed in a roughly C-shape with an open top, forming a hollow rail shape that extends in the longitudinal direction. That is, the rail section 24 has a slit-shaped opening extending in the longitudinal direction on its upper surface, and a screw member 32, which serves as a fixing member 30, is slidably held in its internal space.

[0041] The threaded member 32 is a nut-shaped member that screws onto the suspension bolt 110 extending from the building. The threaded member 32 screws onto the lower end of the suspension bolt 110, which protrudes into the rail section 24, through a slit-shaped opening.

[0042] Next, with reference to Figure 6, an example of installation of the mounting structure 1A to the building's base member 100 will be described. In this example, the suspension bolt 110 hangs downward from a structural element such as the building's ceiling slab.

[0043] Similar to the first embodiment, the upper end of the louver panel 10 is inserted from below into the groove 21 of the mounting member 20A, causing the claw portion 22 to lock and hold the end of the louver panel 10. As a result, the louver panel 10 is attached to the mounting member 20A in the mounting structure 1A.

[0044] In this state, the mounting member 20A is fixed to the suspension bolt 110 via a screw-in member 32 that is slidably held inside the rail section 24. Specifically, the lower end of the suspension bolt 110, which extends downward from the ceiling slab or the like, protrudes into the rail section 24 through a slit-shaped opening on the upper surface, and the protruding lower end of the suspension bolt 110 is screwed into the screw-in member 32 located inside the rail section 24, thereby suspending and fixing the mounting member 20A from the suspension bolt 110.

[0045] Thus, according to the second embodiment, since the screw-in member 32 is slidable along the rail portion 24, the mounting position of the mounting member 20A can be easily adjusted in the longitudinal direction to match the position of the suspension bolts 110. Therefore, it is possible to flexibly accommodate situations where the spacing between the suspension bolts 110 is not constant.

[0046] The effects and advantages of the mounting structure 1A according to the second embodiment will now be described. According to the mounting structure 1A, similar to the first embodiment, a holding structure for the louver panel 10 is provided by the groove portion 21 and the claw portion 22, so point fixing to the louver panel 10 is unnecessary, preventing deformation and cracking due to stress concentration, and making installation easy and improving workability. Furthermore, in the second embodiment, since the screw member 32 is slidable within the rail portion 24, it is easy to adjust the mounting position according to the position of the suspension bolt 110. In addition, since the structure is directly fixed by the suspension bolt 110 and the screw member 32 instead of the structure that was fixed via the channel 120 and the engaging member 31 in the first embodiment, the number of components is reduced and the structure is simplified. <Third Embodiment>

[0047] The mounting structure 1B according to the third embodiment of the present invention will be described with reference to Figures 7 to 9. Figure 7 is a view of the mounting structure 1B from the end side, Figure 8 is an exploded perspective view of the mounting structure 1B, and Figure 9 is a diagram illustrating an example of installation in which the mounting structure 1B is attached to the base member 100 of a building. Components common to the first and second embodiments are denoted by the same reference numerals, and their descriptions are omitted as appropriate.

[0048] The third embodiment differs from the first and second embodiments mainly in that it does not provide the flange portion 23 of the first embodiment or the rail portion 24 of the second embodiment, and a through hole 25 is provided on the upper surface of the groove portion 21, and the mounting member 20B is directly fixed to the building's base member 100 by fastening members 33 (screws, etc.).

[0049] As shown in Figures 7 and 8, the mounting structure 1B comprises a louver panel 10 made of PET resin and a mounting member 20B. The louver panel 10 is a plate-shaped member made of PET resin, similar to that of the first embodiment.

[0050] The mounting member 20B has a groove 21 that extends in the longitudinal direction. Similar to the first embodiment, the groove 21 has a U-shaped cross-section, and a claw portion 22 is formed on the inner wall surface 21a. The end of the louver panel 10 is inserted into the groove 21 and held by the claw portion 22. The mounting member 20B does not have the flange portion 23 of the first embodiment or the rail portion 24 of the second embodiment, and is configured in a relatively simple shape.

[0051] Through holes 25 are provided on the upper surface (top surface) of the groove 21 of the mounting member 20B. The through holes 25 are holes for inserting fastening members 33 (screws, etc.) as fixing members 30, and are provided at multiple locations along the longitudinal direction at predetermined intervals (for example, the same pitch as the base bar member 130 (for example, 600 mm, etc.)).

[0052] The fastening member 33 is a screw or bolt that passes through the through hole 25 and is fixed to the base member 100 of the building, and is made of countersunk screws, for example. The shaft portion of the fastening member 33 extends upward toward the base member 100 through the through hole 25, and the head portion is prevented from protruding into the groove 21, so as not to obstruct the insertion path of the louver panel 10. This allows the mounting member 20B to be fixed directly to the building.

[0053] Next, with reference to Figure 9, an example of installation of the mounting structure 1B to the base member 100 of a building will be described. In this example, the base member 100 includes a base bar member 130 extending horizontally in the space above the ceiling, and a board member 140 attached to the lower surface of the base bar member 130.

[0054] The mounting member 20B is directly fixed to the base bar member 130 via fastening members 33. Specifically, the fastening members 33 pass through the through hole 25 on the upper surface of the groove 21 of the mounting member 20B and the board member 140, and are screwed into the upper base bar member 130, thereby directly fixing the mounting member 20B to the base bar member 130. Multiple fastening members 33 are arranged at predetermined intervals along the longitudinal direction to stably fix the mounting member 20B.

[0055] In this state, the upper end of the louver panel 10 is inserted from below into the groove 21 of the mounting member 20B, causing the claw portion 22 to lock and hold the end of the louver panel 10. This completes the mounting structure 1B being attached to the building.

[0056] Thus, in the third embodiment, unlike the first and second embodiments, the mounting member 20B can be directly fixed to the base bar member 130 with screws using the fastening member 33, without the need for suspension bolts 110 or channels 120.

[0057] The effects and advantages of the mounting structure 1B according to the third embodiment will now be described. According to the mounting structure 1B, similar to the first embodiment, a holding structure for the louver panel 10 is provided by the groove portion 21 and the claw portion 22, so point fixing to the louver panel 10 is unnecessary, preventing deformation and cracking due to stress concentration, and making installation easy and improving workability. Furthermore, in the third embodiment, since the mounting member 20B is directly fixed to the base bar member 130 by the fastening member 33, the suspension bolts 110 and channels 120 are unnecessary, and the mounting member 20B can be securely fixed to the building with the simplest configuration.

[0058] It should be noted that the present invention is not limited to the embodiments described above, and various modifications are possible without departing from the spirit of the invention. For example, in each embodiment, the specific structure of the building's base member 100 is not limited to the examples described above and can be appropriately modified according to the structure and use of the building. Also, the shape and dimensions of the louver panel 10 can be appropriately set according to the use and design conditions. Furthermore, the first to third embodiments can be combined in part, as long as they do not contradict each other. [Explanation of Symbols]

[0059] 1,1A,1B Mounting Structure 10 Louver Panels 20, 20A, 20B Mounting components 21 Groove 21a Inner wall surface 22 Nail part 23 Flange section 24 Rail section 25 Through holes 30 Fixing member 31 Engaging member 32 Threaded Member 33 Fastening members 100 Substrate material 110 Suspension bolts 120 channels 130 Base bar component 140 Board components

Claims

1. A mounting structure comprising a PET resin louver panel and a mounting member for attaching the louver panel to a building, The mounting member has a groove that extends in the longitudinal direction, The inner wall surface of the groove is formed with claws that protrude inward. The end of the louver panel is inserted into the groove and held by the claw, The mounting member is fixed to the base member of the building via a fixing member. A mounting structure characterized by the following features.

2. The mounting member has a flange portion extending in the longitudinal direction above the groove portion, The fixing member is an engaging member that engages the flange portion and the base member. The mounting structure according to feature 1.

3. The aforementioned fixing member is a screw-type member that screws into a suspension bolt extending from the building. The mounting member has a rail portion extending longitudinally above the groove portion, which slidably holds the screw member. The mounting structure according to feature 1.

4. The aforementioned fixing member is a fastening member that penetrates the upper surface of the groove and is fixed to the base member, thereby directly fixing the mounting member to the building. The mounting structure according to feature 1.

Citation Information

Patent Citations

  • Noncombustible lightweight viscoelastic ceiling board member constituted in vibration absorption suspended ceiling

    JP2015200152A