Partition structure
The partition structure addresses the aesthetic issue of visible support rails by using a detachable and rotatable support member integrated into the ceiling slit, enhancing both appearance and functionality.
Patent Information
- Application Number
- JP2023200337
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-11-28
- Publication Date
- 2025-06-09
AI Technical Summary
Conventional partition structures for indoor spaces have a fixed rail that remains visible when the partition plate is not in use, detracting from the aesthetic appearance.
A partition structure featuring a ceiling with a slit and a detachable support member that can be rotated relative to the ceiling, allowing the partition to be easily positioned and hidden when not in use, thereby improving aesthetics.
The solution enhances the aesthetic appeal by concealing the support members when not in use and allows for flexible partitioning configurations to suit various space needs.
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Abstract
Description
Technical Field
[0001] The present invention relates to a partition structure technology for partitioning an indoor space.
Background Art
[0002] Conventionally, the technology of partition structures for partitioning indoor spaces is known. For example, it is as described in Patent Document 1.
[0003] The movable partition described in Patent Document 1 includes a storage part, a rail, and a partition plate. The storage part is for storing the partition plate. The rail is provided on the ceiling and slidably supports the partition plate. The partition plate can be pulled out from the storage part along the rail to partition the indoor space.
[0004] However, since the rail of Patent Document 1 remains fixed to the ceiling surface even when the partition plate is not used, the rail may be visible from the indoor space when the partition plate is not used, which may deteriorate the aesthetic appearance.
Prior Art Documents
Patent Documents
[0005]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0006] The present invention has been made in view of the above circumstances, and the problem to be solved is to provide a partition structure capable of improving the aesthetic appearance.
Means for Solving the Problems
[0007] The problem to be solved by the present invention is as described above. Next, the means for solving this problem will be described.
[0008] That is, in claim 1, it includes a partition for partitioning an indoor space, a ceiling in which a slit is formed, and a support member that supports the partition and is detachably provided on the ceiling through the slit.
[0009] In claim 2, the ceiling includes a holding member that holds the support member on the back side of the ceiling surface.
[0010] In claim 3, the partition is rotatable relative to at least one of the ceiling or the support member.
[0011] In claim 4, a plurality of the partitions are provided and are individually rotatable relative to at least one of the ceiling or the support member.
[0012] In claim 5, a plurality of the support members are provided so as to be connectable to each other, and the partition is slidable so as to straddle the plurality of support members connected to each other.
[0013] In claim 6, the support member is rotatable relative to the ceiling.
[0014] In claim 7, the support member includes a holding portion held by the ceiling and a support portion that supports the partition and is rotatable relative to the holding portion.
[0015] In claim 8, the holding portion is held by the ceiling by magnetic force.
[0016] In claim 9, the ceiling includes a plurality of ceiling members forming the ceiling surface, and the slit is formed between two adjacent ceiling members.
Advantages of the Invention
[0017] As an effect of the present invention, the following effects are achieved.
[0018] In claim 1, the aesthetic appearance can be improved.
[0019] In claim 2, since the holding member can be made less visible, the aesthetic appearance can be improved.
[0020] In claim 3, since the orientation of the partition portion can be changed, the indoor space can be appropriately partitioned.
[0021] In claim 4, since the orientations of the plurality of partition portions can be individually changed, the indoor space can be partitioned more appropriately.
[0022] In claim 5, by connecting the support members, the movable range of the partition portion can be easily expanded.
[0023] In claim 6, the orientation of the wall of the partition space formed by the partition portion can be easily changed.
[0024] In claim 7, the support member can be relatively rotated with respect to the ceiling with a simple configuration.
[0025] In claim 8, when the support member is removed from the ceiling, it is possible to make it difficult for a trace to remain on the ceiling.
[0026] In claim 9, the slit can be easily formed.
Brief Description of the Drawings
[0027]
Figure 1
Figure 2
Figure 3
Figure 4
Figure 5
Figure 6
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Figure 9
Figure 10
Mode for Carrying Out the Invention
[0028] In the following description, the vertical direction, the horizontal direction, and the front-rear direction are respectively defined according to the arrows shown in the figures.
[0029] Hereinafter, the partition structure 1 according to an embodiment of the present invention will be described. The partition structure 1 shown in FIGS. 1 and 2 is for partitioning the indoor space K. Note that the partition structure 1 of the present embodiment is for partitioning the indoor space K of a house, but the type of building to which the partition structure 1 is applied is not limited to a house and can be arbitrarily changed. For example, the partition structure 1 may be for partitioning the indoor space K of an office. The partition structure 1 includes a ceiling 10, a rail 20, and a partition part 30.
[0030] The ceiling 10 is a part that partitions the upper side of the indoor space K. The ceiling 10 is provided so as to be able to support the rail 20. The ceiling 10 includes a ceiling material 11, a reinforcing material 12, and an adsorption member 13.
[0031] The ceiling member 11 is a member that forms the ceiling surface. The ceiling member 11 is formed in a longitudinal shape extending in a predetermined direction (the left - right direction in this embodiment). As shown in FIG. 2, the ceiling member 11 is formed in an L - shape in side view by a first plate portion 11a with the plate surface facing in the vertical direction and a second plate portion 11b extending upward from the first plate portion 11a. The first plate portion 11a is arranged to face the indoor space K. Also, a plurality of the ceiling members 11 are arranged side by side in the front - rear direction (the short - hand direction). The ceiling surface is formed by the lower surfaces of the first plate portions 11a of the plurality of ceiling members 11.
[0032] The reinforcing member 12 shown in FIGS. 1 and 2 is a member for reinforcing the ceiling member 11. For example, the reinforcing member 12 is formed in a longitudinal shape extending in the same direction as the ceiling member 11, and one reinforcing member 12 is provided for one ceiling member 11. The reinforcing member 12 is arranged at the corner of the ceiling member 11 and fixed to at least one of the first plate portion 11a and the second plate portion 11b. By means of the reinforcing member 12, it is possible to suppress the first plate portion 11a from bending downward. Note that the configuration of the reinforcing member 12 is not limited to this embodiment and can be arbitrarily changed. For example, a plurality of reinforcing members 12 may be arranged along the left - right direction so that a plurality of them are provided for one ceiling member 11.
[0033] The adsorption member 13 is a member (magnetic body) for adsorbing the magnet 22e of the rail 20 described later. The adsorption member 13 is composed of a steel plate with the plate surface facing in the vertical direction. For example, the adsorption member 13 is formed in a longitudinal shape extending in the same direction as the ceiling member 11, and one adsorption member 13 is provided for one ceiling member 11. The adsorption member 13 is placed on the rear side of the first plate portion 11a (the side opposite to the corner of the ceiling member 11). Also, the adsorption member 13 is provided so as to span from the left end to the right end of the first plate portion 11a. Note that the configuration of the adsorption member 13 is not limited to this embodiment and can be arbitrarily changed. For example, a plurality of adsorption members 13 may be arranged along the left - right direction so that a plurality of them are provided for one ceiling member 11.
[0034] In the ceiling 10 configured as described above, a slit S is formed. The slit S is a gap extending in a predetermined direction on the ceiling surface. In this embodiment, the ceiling members 11 adjacent to each other in the front-rear direction are arranged so as not to contact each other (with a gap of about 3 mm to 5 mm), and thus the slit S is formed between the ceiling members 11 adjacent to each other in the front-rear direction. In this way, a plurality of slits S extending in the left-right direction are formed in the ceiling 10.
[0035] The rail 20 is for supporting the partition portion 30. The rail 20 is attached to the ceiling 10 via the slit S. More specifically, at least a part of the rail 20 is inserted into the slit S and arranged at a position higher than the ceiling surface, and the portion higher than this ceiling surface is attached to a member (the adsorption member 13 in this embodiment) constituting the ceiling 10. Also, a plurality of rails 20 are attached to the ceiling 10. As shown in FIGS. 3 and 4, the rail 20 includes a rail main body 21 and a ceiling attachment portion 22.
[0036] The rail main body 21 is a part forming the main structure of the rail 20. The rail main body 21 is formed so as to be able to guide the partition portion 30. In this embodiment, the rail main body 21 is formed in a substantially box shape with both left and right sides open. Also, the rail main body 21 is formed in a substantially C shape with the opening facing downward in side view (see FIG. 5). The rail main body 21 includes a hole portion 21a, a guide portion 21b, and a connecting portion 21c.
[0037] The hole portion 21a shown in FIGS. 3(b) and 4(a) is a hole penetrating the upper surface of the rail 20. The hole portion 21a is formed in a substantially circular shape in plan view. The guide portion 21b shown in FIGS. 3(b), 4(b), and 5 is a portion for guiding the partition portion 30. The guide portion 21b is formed so as to penetrate the lower surface of the rail 20 in the vertical direction. Also, the guide portion 21b is formed in a straight line extending in the left-right direction and is formed from the left end face to the right end face of the rail main body 21.
[0038] The connecting portion 21c is a part for connecting a plurality of rail bodies 21 to each other. The connecting portion 21c is formed so as to protrude rightward from the right end surface of the rail body 21. The connecting portion 21c is formed at the front end portion and the rear end portion of the rail body 21. Although not shown, an insertion portion into which the connecting portion 21c of another rail body 21 can be inserted is formed at the left end surface of the rail body 21. With the connecting portion 21c and the insertion portion, a plurality of rail bodies 21 arranged side by side left and right can be connected so as not to be relatively rotatable (see Fig. 5). Also, a plurality of rail bodies 21 can be linearly arranged along the left-right direction so that the guide portions 21b are continuous.
[0039] The ceiling mounting portion 22 shown in Figs. 3 and 4(a) is a part for mounting the rail body 21 to the ceiling material 11. The ceiling mounting portion 22 is provided at the upper part of the rail body 21. In Fig. 5, for the sake of convenience of explanation, the description of the ceiling mounting portion 22 is omitted. The ceiling mounting portion 22 includes a contact portion 22a, a rotating portion 22b, a first plate portion 22c, a second plate portion 22d, and a magnet 22e.
[0040] The contact portion 22a is a portion that contacts the rail body 21. The contact portion 22a is formed in a disc shape having an outer diameter larger than the inner diameter of the hole portion 21a. The contact portion 22a is housed in the rail body 21. Also, the contact portion 22a is arranged concentrically with the hole portion 21a and contacts the inner side surface of the rail body 21.
[0041] The rotating portion 22b is a portion that rotatably supports the contact portion 22a. The rotating portion 22b is arranged between the first plate portion 22c and the contact portion 22a. The rotating portion 22b can rotate the contact portion 22a with respect to the first plate portion 22c with the vertical direction as the rotation axis direction. Also, the rotating portion 22b can hold the contact portion 22a every predetermined angle (for example, 90°). The rail body 21 rotates integrally with the rotation of the contact portion 22a. Thereby, the rail body 21 rotates relative to the ceiling 10, and the directions of the guide portion 21b and the connecting portion 21c are changed.
[0042] The first plate portion 22c and the second plate portion 22d are flat plate-shaped portions. The first plate portion 22c is disposed above the hole portion 21a of the rail body 21. The second plate portion 22d is disposed above the first plate portion 22c. The second plate portion 22d can rotate relative to the first plate portion 22c with the left-right direction as the rotation axis direction. For example, the second plate portion 22d can be connected to the first plate portion 22c via a hinge (not shown) and thus rotate relative to the first plate portion 22c. By rotating relative to the first plate portion 22c, the second plate portion 22d can be switched between a first state in which the plate surface faces the front-rear direction as shown in FIG. 3 and a second state in which the plate surface faces the up-down direction as shown by the solid line in FIG. 6(b).
[0043] The magnet 22e is adsorbed to the adsorption member 13 on the ceiling 10. The magnet 22e is formed in a flat plate shape and fixed to the second plate portion 22d. The magnet 22e is located below the second plate portion 22d when the second plate portion 22d is in the second state.
[0044] The partition portion 30 shown in FIGS. 1 and 2 is for partitioning the indoor space K. A plurality of partition portions 30 are provided. The partition portion 30 includes a partition main body 31 and a rail attachment portion 32.
[0045] The partition main body 31 is a portion forming the main structure of the partition portion 30. The partition main body 31 is formed in a flat plate shape extending vertically. The upper end portion of the partition main body 31 is disposed below the rail 20. Also, the lower end portion of the partition main body 31 is disposed with a slight gap above the floor portion F of the building.
[0046] The rail attachment portion 32 is a portion for attaching the partition main body 31 to the rail 20. The rail attachment portion 32 is provided at the lower portion of the rail body 21. As shown in FIGS. 3(b) and 5, the rail attachment portion 32 includes a placement portion 32a, a rotation portion 32b, and an attachment portion 32c.
[0047] The placement part 32a is the part placed on the inner surface of the rail body 21. The placement part 32a is formed in a flat plate shape with the plate surface facing in the vertical direction. The front-rear width of the placement part 32a is larger than the front-rear width of the guide part 21b of the rail body 21.
[0048] The rotation part 32b is the part that rotatably supports the attachment part 32c. The rotation part 32b is arranged between the placement part 32a and the attachment part 32c. The rotation part 32b can rotate the attachment part 32c with respect to the placement part 32a with the vertical direction as the rotation axis direction. Also, the rotation part 32b can hold the attachment part 32c at every predetermined angle.
[0049] The attachment part 32c is the part to which the partition body 31 is attached. The attachment part 32c is arranged below the guide part 21b of the rail body 21. The upper end part of the partition body 31 is fixed to the attachment part 32c. Therefore, when the attachment part 32c rotates with respect to the placement part 32a, the partition body 31 rotates relative to the ceiling 10 and the rail 20, and the orientation of the plate surface of the partition body 31 is changed.
[0050] As configured as described above, the partition part 30 can be attached to the rail body 21 from the left and right outer sides as shown in FIG. 5. More specifically, the partition part 30 is supported so as to be suspended from the rail body 21 by moving the placement part 32a of the rail attachment part 32 into the rail body 21 from the left and right outer sides of the rail body 21. The partition part 30 can be guided by the guide part 21b and move in the left-right direction as the placement part 32a slides with respect to the rail 20. Also, the partition part 30 can move so as to straddle between the rails 20 connected to each other.
[0051] Hereinafter, with reference to FIGS. 1, 6, and 7, the procedure for attaching the rail 20 to the ceiling material 11 will be described.
[0052] As shown in Fig. 6(a), the second plate portion 22d of the rail 20 is inserted downward into the slit S of the ceiling 10 in a state where the plate surface faces the front and back (the first state). The magnet 22e fixed to the second plate portion 22d is attracted to the attracting member 13 by magnetic force. As a result, as shown in Fig. 6(b), the second plate portion 22d rotates with respect to the first plate portion 22c, and the magnet 22e is attracted to the attracting member 13.
[0053] In this way, the ceiling mounting portion 22 of the rail 20 is held by the attracting member 13 on the back side of the ceiling surface (the upper surface of the first plate portion 22c). According to this configuration, the members (the attracting member 13 and the ceiling mounting portion 22) for holding the rail 20 can be arranged on the back side of the ceiling surface so as to be difficult to be seen from the indoor space K, so that the aesthetic appearance can be improved. In addition, by inserting the rail 20 (the magnet 22e, etc.) into the slit S, the resident can easily install the rail 20. For this reason, it is not necessary to request a professional to install the rail 20 and perform construction work (for example, work for fixing the rail 20 to the ceiling surface).
[0054] As shown in Fig. 1, for example, a plurality of rails 20 can be installed along the left-right direction (the longitudinal direction of the slit S) on the ceiling material 11. At this time, the rails 20 are connected to each other by the connecting portion 21c. Thereby, the partition portions 30 can be arranged along the left-right direction to partition the indoor space K. In addition, by adjusting the number of the partition portions 30, the length (partition wall length) for partitioning the indoor space K can be finely adjusted.
[0055] Here, in the present embodiment, by rotating the contact portion 22a shown in FIG. 3(b), the orientations of the guide portion 21b and the connecting portion 21c can be changed. Therefore, as shown in FIG. 7, by changing the orientations of the guide portion 21b and the like so that the connecting portion 21c faces the front-rear direction, the rails 20 fixed to different slits S can be connected to each other, and the partition portions 30 can be arranged along the front-rear direction. As a result, the orientation of the wall of the partition space formed by the plurality of partition portions 30 can be changed. Further, by combining the left and right rails 20 and the front and rear rails 20, the partition portions 30 along the front-rear direction and the partition portions 30 along the left-right direction can be continuously arranged. Thereby, the corner portions of the partition space can be formed.
[0056] In this way, in the present embodiment, the rails 20 and the partition portions 30 can be arranged regardless of the orientations of the plurality of slits S. As a result, the needs of the occupants can be flexibly met. For example, when there is a shortage of rooms due to reasons such as telecommuting or an increase in the family, the partition space can be divided or a new partition space can be added to the indoor space K to increase the number of rooms (partition spaces) to meet the needs of the occupants.
[0057] Note that the rail 20 is removed from the ceiling member 11 when the magnet 22e is pulled away from the adsorption member 13. For example, as shown in FIG. 8, when the bar magnet M is brought closer to the ceiling member 11, the magnet 22e is pulled away from the adsorption member 13 by the repulsive force. In this way, in the present embodiment, since the rail 20 can be attached to and detached from the ceiling member 11 by magnetic force, it is possible to prevent the ceiling member 11 from being damaged. Further, when the partition portion 30 is not used, the rail 20 can be removed from the ceiling member 11 (so that the rail 20 is not visible from the indoor space K), and the aesthetic appearance can be improved.
[0058] Also, by attaching and detaching the rail 20, the size of the partition space can be easily fine-tuned. For example, by removing the left and right rails 20 shown in FIG. 1 and attaching them to the adjacent slits S, the size of the partition space can be fine-tuned.
[0059] Also, as described above, in the present embodiment, by rotating the attachment portion 32c shown in FIG. 3(b), the orientation (partition angle) of the partition body 31 can be changed. According to this configuration, the partition body 31 can be appropriately arranged according to the purpose of the partition or the like. Hereinafter, with reference to FIG. 9, an example of the arrangement of the partition body 31 will be described. In FIG. 9, the partition bodies 31 are arranged side by side left and right and partition the indoor space K into front and rear.
[0060] The partition body 31 shown in FIG. 9(a) is adjusted so as to generally face in the front-rear direction, and both left and right end portions are arranged so as to overlap with other partition bodies 31 in the front-rear direction. In this way, by arranging a plurality of partition bodies 31 without gaps, the line of sight from the outside can be blocked.
[0061] The partition body 31 shown in FIG. 9(b) faces obliquely (for example, is inclined at 45 degrees in plan view with respect to the front-rear direction) and is arranged so as not to overlap with other partition bodies 31 in the front-rear direction. Thereby, the ventilation of the partition space can be improved.
[0062] FIG. 9(c) is an example of the arrangement of the partition body 31 in which the range of overlap in the front-rear direction of the partition body 31 is wider than that in FIG. 9(a). The partition body 31 in FIG. 9(c) is arranged such that the right half overlaps with the partition body 31 adjacent to the right and the left half overlaps with the partition body 31 adjacent to the left. Thereby, the wall of the partition space can be thickened to improve the sound insulation.
[0063] Also, the plurality of partition bodies 31 of the present embodiment are not connected to each other and can rotate relative to each other individually. Therefore, by changing the orientation of some of the partition bodies 31, the partition bodies 31 can be appropriately arranged according to the purpose of the partition or the like.
[0064] For example, as shown in FIG. 10(a), by directing a plurality of partition bodies 31 located in the middle of the left and right in the left-right direction and arranging the partition bodies 31 apart from each other, an opening K1 can be provided in the partition space using the partition bodies 31.
[0065] Also, for example, as shown in FIG. 10(b), by orienting the partition main bodies 31 located at both the left and right ends in the left-right direction and sandwiching other partition main bodies 31 with the partition main bodies 31, the partition main bodies 31 at both the left and right ends can be treated like a pillar H. As a result, it is possible to suppress the swaying of the partition main bodies 31.
[0066] As described above, the partition structure 1 according to the present embodiment includes a partition portion 30 for partitioning the indoor space K, a ceiling 10 in which a slit S is formed, and a rail 20 (supporting member) that supports the partition portion 30 and is detachably provided on the ceiling 10 via the slit S.
[0067] By configuring in this way, the rail 20 can be removed when the partition portion 30 is not used. Further, since the rail 20 is provided via the slit S, a member (adsorbing member 13) for supporting the rail 20 can be made difficult to be seen from the indoor space K. As a result, the aesthetic appearance can be improved.
[0068] Further, the ceiling 10 includes an adsorbing member 13 (holding member) that holds the rail 20 on the back side of the ceiling surface.
[0069] By configuring in this way, the adsorbing member 13 for holding the rail 20 can be hidden on the back side of the ceiling surface, and the aesthetic appearance can be improved.
[0070] Further, the partition portion 30 is relatively rotatable with respect to at least one of the ceiling 10 or the rail 20. In the present embodiment, the partition portion 30 (partition main body 31) is relatively rotatable with respect to each of the ceiling 10 and the rail 20 by a rotating portion 32b.
[0071] By configuring in this way, since the orientation of the partition portion 30 can be changed, the indoor space K can be appropriately partitioned (see FIG. 9).
[0072] In addition, a plurality of partition portions 30 are provided and are individually rotatable relative to at least one of the ceiling 10 and the rail 20.
[0073] By configuring in this way, since the orientations of the plurality of partition portions 30 can be individually changed, the indoor space K can be partitioned more appropriately (see FIG. 10). In addition, by partitioning the indoor space K with the plurality of partition portions 30, the size of the partition main body 31 can be reduced, so it is difficult to take up space when storing the partition portions 30.
[0074] In addition, a plurality of the rails 20 are provided so as to be connectable to each other, and the partition portion 30 is slidable so as to straddle the plurality of rails 20 connected to each other.
[0075] By configuring in this way, the range in which the partition portion 30 can move can be easily expanded.
[0076] In addition, the rail 20 is rotatable relative to the ceiling 10.
[0077] By configuring in this way, the orientation of the wall of the partition space formed by the partition portion 30 can be easily changed.
[0078] In addition, the rail 20 includes a ceiling attachment portion 22 (holding portion) held by the ceiling 10 and a rail main body 21 (support portion) that supports the partition portion 30 and is rotatable relative to the ceiling attachment portion 22.
[0079] By configuring in this way, the rail 20 can be rotated relative to the ceiling 10 with a simple configuration.
[0080] In addition, the ceiling attachment portion 22 is held by the ceiling 10 by magnetic force (see FIG. 6).
[0081] By configuring it in this way, when the rail 20 is removed from the ceiling 10, it is possible to make it difficult for a mark to remain on the ceiling 10. Also, in the present embodiment, the suction member 13 (magnetic body) that holds the ceiling attachment portion 22 is partially provided on the back side of the ceiling surface. More specifically, as shown in FIG. 2, the suction member 13 is not provided so as to be continuous from the front end to the rear end of the ceiling surface, but is provided at intervals in the front-rear direction. Thereby, the installation range of the suction member 13 (magnetic body) can be made relatively narrow. For example, since the installation range can be made narrower than the case where the suction member 13 is provided over the entire ceiling surface, the influence on home appliances and the like can be mitigated.
[0082] Also, the ceiling 10 includes a plurality of ceiling members 11 that form the ceiling surface, and the slit S is formed between two adjacent ceiling members 11 (see FIG. 2).
[0083] By configuring it in this way, the slit S can be easily formed.
[0084] Note that the rail 20 according to the present embodiment is one embodiment of the support member according to the present invention. Also, the ceiling attachment portion 22 according to the present embodiment is one embodiment of the holding portion according to the present invention. Also, the rail main body 21 according to the present embodiment is one embodiment of the support portion according to the present invention.
[0085] Although the embodiments of the present invention have been described above, the present invention is not limited to the above configuration, and various modifications are possible within the scope of the invention described in the claims.
[0086] For example, although the ceiling member 11 is formed in a longitudinal shape, the shape of the ceiling member 11 is not particularly limited and can be arbitrarily changed.
[0087] Also, in this embodiment, the partition portion 30 is supported by a plurality of rails 20. However, the number of rails 20 does not necessarily have to be plural. For example, the partition portion 30 may be supported by one rail 20 that is longer than that in this embodiment.
[0088] Also, in this embodiment, the indoor space K is partitioned by a plurality of partition main bodies 31. However, the number of partition portions 30 does not necessarily have to be plural. For example, the indoor space K may be partitioned by one partition main body 31 that is larger than that in this embodiment.
[0089] Also, the rail 20 is held by the ceiling 10 by magnetic force. However, the means for holding the rail 20 is not limited to magnetic force and can be arbitrarily changed.
[0090] Also, the slit S is formed between the ceiling materials 11. However, the method for forming the slit S is not limited to this embodiment and can be arbitrarily changed. For example, the slit S may be formed by making linear holes in the ceiling surface.
[0091] Also, in this embodiment, the orientation of the partition main body 31 is changed by the relative rotation of the partition main body 31 with respect to the ceiling 10 and the rail 20. However, the configuration for changing the orientation of the partition main body 31 is not limited to this embodiment and can be arbitrarily changed. For example, the partition main body 31 may be supported so as not to be relatively rotatable with respect to the rail main body 21 and may be relatively rotatable only with respect to the ceiling 10 as the rail main body 21 rotates by the rotating portion 22b.
Explanation of Reference Numerals
[0092] 1 Partition Structure 10 Ceiling 20 Rail 30 Partition Portion K Indoor Space S Slit
Claims
1. A partition part for partitioning an indoor space, A ceiling in which slits are formed, A support member that supports the partition part and is detachably provided on the ceiling via the slit, Comprising, Partition structure.
2. The ceiling, Comprises a holding member for holding the support member on the back side of the ceiling surface, The partition structure according to claim 1.
3. The partition part, Is relatively rotatable with respect to at least one of the ceiling or the support member, The partition structure according to claim 1 or claim 2.
4. The partition part, A plurality are provided and are individually relatively rotatable with respect to at least one of the ceiling or the support member, The partition structure according to claim 3.
5. The support member, A plurality are provided so as to be connectable to each other, The partition part, Is slidable so as to straddle a plurality of the support members connected to each other, The partition structure according to claim 1 or claim 2.
6. The support member, Is relatively rotatable with respect to the ceiling, The partition structure according to claim 5.
7. The support member, A holding part held by the ceiling, A support part that supports the partition part and is relatively rotatable with respect to the holding part, Comprising, The partition structure according to claim 6.
8. The holding part, Is held by the ceiling by magnetic force, The partition structure according to claim 7.
9. The ceiling, Comprises a plurality of ceiling members forming the ceiling surface, The slit, Is formed between two adjacent ceiling members, The partition structure according to claim 1 or claim 2.
Citation Information
Patent Citations
Structure for residential floor change
JP2008081974A