Ornament holder
The support device allows for flexible positioning and connection of bases and upright members to create diverse display arrangements, enhancing the variety of display positions and improving water flow and light reflection for ornamental objects.
Patent Information
- Application Number
- JP2024105498
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2026-01-16
AI Technical Summary
Existing structures for supporting ornamental objects, such as corals, lack the ability to display them in various positions and offer limited variety in display configurations.
A support device comprising a base, upright members, and support members that can be attached and detached, allowing for flexible positioning and connection of multiple bases, upright members of varying heights, and beam members to create diverse display arrangements.
Enables three-dimensional utilization of space for displaying objects, increasing the variety of display positions and configurations, and facilitating efficient water flow and light reflection for aquatic environments.
Smart Images

Figure 2026006490000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a support for an ornamental object. [Background technology]
[0002] Various proposals have been made in the past for structures that support ornamental objects such as corals. Patent Documents 1 and 2 disclose structures for attaching or implanting corals. Patent Documents 3 and 4 disclose structures for growing marine life, including aquatic plants. Patent Document 5 discloses a structure for supporting ornaments to be placed in an aquarium.
[0003] However, the structures disclosed in Patent Documents 1 to 4 only present structures for directly fixing corals and the like. There is no disclosure or suggestion of a structure for displaying corals and the like in an attractive manner as ornamental objects. Specifically, there is no mention of a structure for displaying ornamental objects in various positions within a space. Furthermore, the structure disclosed in Patent Document 5 only covers the entire structure, and there is little variety in displaying decorative items. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Patent No. 5683429 [Patent Document 2] Patent Publication No. 2021-83434 [Patent Document 3] Japanese Patent Application Laid-Open No. 2008-17775 [Patent Document 4] Japanese Patent Application Laid-Open No. 2005-6655 [Patent Document 5] Special Publication No. 2020-512012 Summary of the Invention [Problem to be solved by the invention]
[0005] An object of the present invention is to provide a support for an object of appreciation that allows the object of appreciation to be displayed in various positions within a space. [Means for solving the problem]
[0006] As a means for solving the above problem, the present invention provides an object support device comprising: a base that can be placed on a mounting portion; an upright member that is attached to the base and extends upward; and a support member that is attached to the upright member and supports the object.
[0007] According to this configuration, a support member is attached to the base via an upright member, and the object of display is supported on this support member. Therefore, by changing the shape and size of the upright member, the object of display can be placed in various desired positions, thereby increasing the variety of display positions.
[0008] The base is preferably flat and has a connecting structure that allows a plurality of bases to be connected to each other when arranged on the same plane.
[0009] According to this configuration, the number of bases can be freely increased while still being connected to one another in an integrated structure, depending on the installation location, the number of objects to be exhibited, and other factors.
[0010] It is preferable that the connecting structure comprises a recess formed on the bottom surface of the base from the side edge and having an engaging portion, and a connecting member that is positioned in the recess of the base without protruding from the bottom surface of the base, has an engaging receiving portion formed to engage with the engaging portion, and connects multiple adjacent bases.
[0011] According to this configuration, the bases can be connected to each other with a simple configuration, and the configuration is particularly suitable for placing a plurality of bases on a flat mounting portion.
[0012] The upright member preferably has a detachable structure that allows it to be attached to and detached from the base.
[0013] This configuration allows the standing members to be easily changed to various types with different sizes and shapes.
[0014] The detachable structure preferably comprises a recess formed on the upper surface of the base, a portion of which extends in a planar direction or penetrates to the lower surface, and a lower end of the upright member which is detachably attached to the recess.
[0015] This configuration allows the upright member to be easily attached to and detached from the recess of the base. Furthermore, when used underwater, water that has entered the recess can be prevented from remaining there, thereby keeping the inside of the recess clean.
[0016] It is preferable that the upright member is rod-shaped with a rectangular cross section and has a recessed portion on its outer surface, and that the recessed portion of the base is rectangular in plan view in which the lower end of the upright member is disposed.
[0017] With this configuration, when used in a water tank, the recessed portion can smooth the flow of water generated by a pump or the like. The recessed portion is rectangular in plan view, and the standing member can be integrated while being prevented from moving in the rotational direction.
[0018] It is preferable that the upright members are made up of a plurality of members having different heights.
[0019] This configuration allows objects to be placed at various heights according to the needs of the user.
[0020] It is preferable that the device further comprises a beam member connecting at least two of the standing members arranged side by side.
[0021] According to this configuration, the attachment state of the standing member can be made more secure.
[0022] It is preferable that the upright member and the beam member are provided with connection receiving portions, and that a connecting body is further provided which is connected to the upright member and the beam member connection receiving portion, the connection receiving portion having a plurality of rotation stop receiving portions, the connecting body having a rotation stop portion which is positioned on one of the rotation stop receiving portions, and the positional relationship of the beam member to the upright member can be changed depending on which of the rotation stop receiving portions the rotation stop portion is positioned on.
[0023] According to this configuration, by selecting the rotation stop receiving portion and positioning the rotation stop portion, the extension direction of the beam member relative to the upright member, i.e., the mounting angle, can be freely set.
[0024] It is preferable that at least one of the upright members and the beam members is formed with a fixing receiver for fixing an object to be viewed.
[0025] This configuration allows for a greater variety of display positions for the objects of interest.
[0026] The object of appreciation may be coral, and the support member may be a coral flag stand that supports the coral. [Effects of the Invention]
[0027] According to the present invention, since the display is constructed from a base, standing members, and support members, it is possible to effectively utilize the space three-dimensionally to arrange objects for display, thereby increasing the variety of display positions. [Brief explanation of the drawings]
[0028] [Figure 1] FIG. 2 is a perspective view of the object support device according to the embodiment. [Figure 2] FIG. 2 is an exploded perspective view of FIG. 1. [Figure 3] Front view of Figure 1. [Figure 4] Cross-sectional view of line AA in Figure 3. [Figure 5] FIG. 2 is a front view of the upright member of FIG. 1; [Figure 6] 5. Top or bottom view of FIG. [Figure 7] FIG. 10 is a perspective view showing a state in which upright members attached to different bases are connected by a beam member. [Figure 8] FIG. 8 is an exploded perspective view of FIG. 7. DETAILED DESCRIPTION OF THE INVENTION
[0029] Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings. In the following description, terms indicating specific directions or positions (e.g., terms including "upper," "lower," "side," and "end") will be used as necessary. However, the use of these terms is intended to facilitate understanding of the invention with reference to the drawings, and the meanings of these terms do not limit the technical scope of the present invention. Furthermore, the following description is merely exemplary in nature and is not intended to limit the present invention, its applications, or its uses. Furthermore, the drawings are schematic, and the ratios of dimensions may differ from those of the actual objects.
[0030] 1 shows a support device 1 for an object of appreciation according to this embodiment. This support device 1 for an object of appreciation comprises a base 2, an upright member 3, and a support member 4.
[0031] The base 2 is rectangular in plan view and is made of aluminum with anodized surface. As shown in FIG. 2, a plurality of (six in this example) connecting recesses 5 are formed on the top surface of the base 2. Each connecting recess 5 is rectangular in plan view and inclined at 45 degrees relative to the rectangular shape of the base 2. That is, the sides of each connecting recess 5 form a 45-degree angle with the sides of the base 2. As shown in FIG. 3, at the four corners of each connecting recess 5, arc-shaped relief portions 5a are formed that expand outward in the planar direction. Furthermore, a through-hole 5b that penetrates the bottom surface of the base 2 is formed at the center of the bottom surface of each connecting recess 5.
[0032] As shown in FIG. 4, recesses 6 are formed on the bottom surface of the base 2, each extending from the outer edge of each of the four sides. Protrusions 7, which serve as engagement sections, are formed on both ends of the bottom surface of each recess 6. Near the protrusions 7, arc-shaped extensions 6a are formed on the opposite side of the side edges of the base 2. Multiple bases 2 can be connected to each other using connecting members 8, as shown in FIG. 2. The connecting members 8 are made of rectangular plate material and, like the bases 2, are made of aluminum with an anodized surface. Engagement holes 9, which serve as engagement receiving sections, are formed near each of the four corners of the connecting members 8. When connecting two bases 2, the connecting members 8 are placed in the continuous recesses 6 from the bottom side, with the end faces of one side in surface contact. At this time, the protrusions 7 of the recesses 6 are engaged with the engagement holes 9 of the connecting members 8. In this connected state, the surface of the connecting members 8 is flush with the bottom surface of the bases 2. Therefore, the integrally connected base 2 can be placed on a flat surface with no gaps in surface contact. It is preferable that the engagement state of the protrusion 7 into the engagement hole 9 is press-fitted to the extent that it will not come loose during use and can be removed later. In addition, the presence of the expansion portion 6a formed in the recess 6 makes it easy to remove the connecting member 8.
[0033] As shown in FIG. 5, the standing member 3 is a straight rod-like body with a rectangular cross section. Like the base 2, the standing member 3 is made of aluminum with an anodized surface. Referring further to FIG. 6, the standing member 3 has mounting recesses 10 formed in the center of each of its upper and lower end faces. Multiple anti-rotation recesses 11 extend radially outward from the inner edge of the mounting recesses 10 (here, six anti-rotation recesses 11 are formed at equal intervals). The standing member 3 has recesses 12 formed at each of its four corners, each with a curved surface that gradually deepens from top to bottom and then becomes shallower again (FIGS. 1 and 2 show a standing member 3 with only one recess 12 missing). One end face (first end face 3a) of the standing member 3 is perpendicular to the axis, i.e., is positioned horizontally when attached to the base, while the other end face (second end face 3b) is inclined. When the upper surface of the support member 4 attached to the upper end of the standing member 3 is positioned in a horizontal plane, the standing member 3 is positioned relative to the base 2 so that the first end face 3a is the upper end face. When the upper surface of the support member 4 is inclined, the standing member 3 is positioned relative to the base 2 so that the second end face 3b is the upper end face (in Figures 1 and 2, the standing member 3 is positioned so that the second end face 3b is the upper end face). Furthermore, the standing member 3 is available in various lengths. The standing member 3 is integrated with the base 2 by positioning the lower end thereof in the connecting recess 5 of the base 2. Note that the positioning of the lower end of the standing member 3 in the connecting recess 5 of the base 2 is preferably press-fit to an extent that it will not come loose during use but will still be removable later.
[0034] Returning to Figure 2, the support member 4 is composed of a disk-shaped main body 13 and a shaft 14 fixed to its center. The main body 13 and shaft 14 can be made of ceramic, aragonite, or synthetic resin materials such as polyvinyl chloride, acrylic, or epoxy resin. The illustrated example is made of ceramic. The main body 13 has a lattice-like groove (not shown) formed on its upper surface. An ornamental object, such as coral, is fixed to the upper surface of the main body 13 by adhesive or other means. The lattice-like groove stabilizes the fixation of the ornamental object. The support member 4 is attached to the standing member 3 by positioning the lower end of the shaft 14 in the mounting recess 10 of the standing member 3. In this case, the relationship between the mounting recess 10 and the shaft 14 is preferably press-fit to the extent that the shaft 14 can be later removed from the mounting recess 10.
[0035] As shown in Fig. 7, a beam member 15 can be attached to the upper end of the standing member 3 in place of the support member 4. As shown in Fig. 8, the beam member 15 has a rectangular parallelepiped shape and is made of the same material (e.g., ceramic) as the support member 4. Three through holes 15a are formed in the beam member 15 at equal intervals on a center line along the longitudinal direction. A plurality of anti-rotation recesses 15b extend radially outward from the inner edges of the through holes 15a located on both sides on the bottom surface of the beam member 15 (here, the anti-rotation recesses 15b are formed at six equal intervals).
[0036] The standing member 3 and the beam member 15 are connected by a connecting rod 16, which is an example of a connector. A protrusion 16a, which serves as a rotation prevention portion, is formed on the outer periphery of the connecting rod 16. The connecting rod 16 is inserted into the mounting recess 10 of the standing member 3 and the through hole 15a of the beam member 15. At this time, the protrusion 16a is positioned in the rotation prevention recesses 15a of both the standing member 3 and the beam member 15. This makes it possible to position the beam member 15 in the rotation direction relative to the axial direction of the standing member 3. The upper end surfaces of the connecting rod 16 are positioned in the middle of the through holes 15a on both sides of the beam member 15, and together they form a recess 15b (see Figure 7) on the upper surface of the beam member 15. The shaft portion 14 of the support member 4 is positioned in this recess 15b.
[0037] The beam member 15 is used to connect a pair of side-by-side upright members 3 and to attach the support member 4. FIG. 7 shows an example in which the upright members 3 are attached to a base 2 having four connecting recesses 5 formed on its upper surface and connected by the beam member 15. Connecting the upright members 3 improves structural strength. Connecting the upright members 3 to each other at their upper ends increases overall strength compared to fixing the upright members 3 to the base 2 only at their lower ends. Furthermore, when connecting the bases 2, connecting the upright members 3 on each base 2 with the beam member 15 can further strengthen the connection between the bases 2. The support member 4 can be attached to the beam member 15 to which the upright members 3 are connected. The shaft 14 of the support member 4 can be inserted into one of the through holes 15a. All or some of the through holes 15a may be used to attach the support member 4.
[0038] The beam member 15 can also be used alone without connecting the upright member 3. That is, the beam member 15 can simply be attached to the upper end of the upright member 3 via the connecting rod 16. In this case, it is possible to freely select which of the through holes 15a of the beam member 15 to connect to. When connecting to one of the through holes 15a on either end, a so-called cantilever beam state can be achieved. When connecting to the central through hole 15a, the beam member 15 protrudes evenly on both sides relative to the upright member 3. In this case, it is preferable to form a rotation prevention recess 15b in the central through hole 15a as well so that it can be positioned in the rotation direction. Note that if the beam member 15 is used to connect the upright member 3, the rotation prevention recess 15b is not necessarily required (if the rotation prevention recess 15b is not provided, the protrusion of the connecting rod 16 is also unnecessary).
[0039] The support device 1 for ornaments having the above-described structure can be assembled as follows, and can be used to support corals as ornaments, for example, by placing it in an aquarium.
[0040] First, the bases 2 are connected. To connect the bases 2, an appropriate number of bases 2 are arranged upside down with no gaps between them, based on the size of the installation location (for example, the bottom surface of an aquarium). Recesses 6 are formed continuously at the boundary between adjacent bases 2, and connecting members 8 are placed there. At this time, the protrusions 7 in the recesses 6 engage with the engaging holes 9 of the connecting members 8, connecting the adjacent bases 2 to each other.
[0041] Once all the bases 2 have been connected in this way, the standing members 3 are attached upside down. The standing members 3 are attached by inserting their lower ends into the connecting recesses 5. When installing the artefact support 1 in an aquarium, the shorter end is placed on the front side of the aquarium, and the longer end is placed on the back side. In addition, a support member 4 or beam member 15 is attached to the upper end of the standing member 3.
[0042] When attaching the support member 4, the shaft 14 is integrated into the main body 13, and the lower end of the shaft 14 is inserted into the attachment recess 10 formed on the upper end surface of the standing member 3. When attaching the beam member 15, the connecting rod 16 is inserted into the attachment recess 10 of the standing member 3 and into the through hole 15a on one end side of the beam member 15. In this case, it is selected which of the rotation prevention recesses 15b the protrusion 16a of the connecting rod 16 should be positioned in depending on whether the beam member 15 is to be used alone or whether the standing members 3 are to be connected together. The support member 4 is then attached to the beam member 15.
[0043] Once the ornamental object support device 1 is completed in the above manner, coral (not shown) is glued to the support member 4. It is then placed in an aquarium (not shown) and filled with water. However, the assembly procedure is not limited to this; for example, it may be placed in the aquarium once the base 2 has been connected, and then the standing member 3, support member 4, or beam member 15 may be attached. In this case, an ornamental object may be attached to the support member 4 in advance.
[0044] The aquarium is equipped with lights that emit ultraviolet and blue light. When the coral receives this light, its green fluorescent protein emits green light, making it easier for it to gather zooxanthellae. The surface of the standing member 3 has a curved surface that forms a depression 12, which reflects the received light in various directions, increasing the amount of light that reaches the coral. In other words, it is possible to provide an environment that makes it even easier to gather zooxanthellae.
[0045] A pump (not shown) is also installed in the aquarium to generate a water current. This allows liquid nutrients to be supplied to the corals. In this case, the recessed portion 12 formed in the standing member 3 makes the water flow smoother, improving circulation efficiency. This ensures that sufficient nutrients are supplied to the corals. Because the recessed portion 12 is formed with a curved surface, there is no need to worry about harming the fish even when keeping them in the aquarium.
[0046] The support device for artefact 1 having the above-described structure can provide the following effects. (1) By combining a plurality of bases 2, it is possible to make an appropriate combination depending on the shape and size of the installation location. (2) By attaching the standing member 3 to the base 2, the display location of the object can be freely set. In particular, by varying the height of the standing member 3, the variety of display options can be increased. Furthermore, by changing the inclination of the support member 4 attached to the standing member 3, the variety of display options can be further increased. (3) The standing member 3 is provided with a separate support member 4 suitable for supporting corals. This allows for inexpensive production. Also, it is relatively easy to modify the structure of the support member 4 to make it more suitable for supporting corals. Furthermore, it is also possible to use a commercially available coral flag stand for the support member 4 (in this case, it is preferable that the standing member 3 be configured to be suitable for attaching a coral flag stand). (4) The beam members 15 can be attached to the standing members 3 to connect them to nearby standing members 3, making the assembly stronger. In addition, if the beam members 15 are attached to the standing members 3 in a cantilevered manner, it becomes possible to further diversify the display state of the objects to be displayed.
[0047] The present invention is not limited to the configurations described in the above embodiments, and various modifications are possible.
[0048] In the above embodiment, the shape of the base 2 is rectangular in plan view, but other shapes are also possible. For example, it can be circular or elliptical, or it can be polygonal, such as triangular, pentagonal, or hexagonal, so that they can be arranged side by side without gaps. In addition, the size can be freely set, and it is possible to combine various sizes and shapes, large and small.
[0049] Furthermore, although six connecting recesses 5 are formed on the upper surface of the base 2, the number and locations thereof can be freely set. A tapered surface may be formed on the upper inner edge of the connecting recess 5 to facilitate insertion of the lower end of the support member 4. The shape of the connecting recess 5 in plan view is not limited to a rectangular shape, and various shapes such as a circle, a triangle, a pentagon, or a hexagon can be used.
[0050] In the above embodiment, the bases are connected to each other by the connecting member 8, but they can also be connected by other methods. For example, a dovetail may be formed on one side wall of the base 2 and a dovetail groove may be formed on the other side wall, so that they can be connected to each other.
[0051] In the above embodiment, the standing member 3 is formed in a straight rod shape, but it can also be bent, or its cross section can be enlarged or reduced along the way. The cross section can also take various forms. For example, the cross section can be circular, triangular, or other polygonal.
[0052] Furthermore, the recessed portions 12 formed in the standing members 3 are not limited to those described above and may have various sizes and shapes. For example, although all of the recessed portions shown in the drawings are the same size, they may be different sizes, and the shape may be a bent flat surface instead of a curved surface.
[0053] Furthermore, the upright member 3 is made of aluminum with anodized surfaces, but the surface can be made mirror-finished or uneven to diffuse reflection, allowing for various settings for the light reflection state.
[0054] In the above embodiment, the support member 4 is composed of the disk-shaped main body 13 and the shaft portion 14, but these may also be integrated into a conical shape. That is, the mounting recess 10 formed on the upper end surface of the standing member 3 may also be formed in a conical shape, and the pointed tip of the cone may be connected. Furthermore, the main body 13 is not limited to being disk-shaped, and may have various shapes in plan view, such as a rectangular, triangular, or star-shaped shape.
[0055] Furthermore, the support member 4 is arranged to completely cover the upper end of the standing member 3, but it can also be configured so that a portion of the standing member 3 protrudes from the support member 4 when viewed in a plane. For example, the upper end surface of the standing member 3, which is rectangular when viewed in a plane, can protrude from the circular main body 13 of the support member 4. This increases the variety and allows for a configuration with excellent design.
[0056] Furthermore, the support member 4 is configured so that the top surface of the main body 13 is positioned in a horizontal plane relative to the upright member 3 that extends vertically, but the top end surface of the upright member 3 may be configured as an inclined surface, or the main body 13 may be configured so that it is attached at an angle relative to the shaft 14, so that the top surface of the main body 13 is inclined relative to the horizontal plane. This makes it possible to make all of the objects supported by the support member 4 easy to view from the same direction, or to provide a variety of views.
[0057] Furthermore, although the support member 4 is provided at the upper end of the standing member 3, it can also be provided at the middle part. For example, a mounting recess can be formed in the middle part of the standing member 3, and the shaft 14 of the support member 4 can be placed in this mounting recess. This further increases the variety of exhibits for the objects of appreciation.
[0058] In the above embodiment, the beam member 15 has a rectangular parallelepiped shape, but it is not limited to this and can be formed into various shapes such as a cylindrical shape, a cloud shape, etc. Furthermore, the number and positions of the through holes formed in the beam member 15 can be freely set.
[0059] Furthermore, although the beam member 15 is attached to the upper end of the standing member 3, it may be attached at any position in the height direction. For example, a mounting recess 10 may be formed in the middle of the standing member 3, and the connecting rod 16 may be positioned there. The beam member 15 may be formed so that the through-hole 15a opens on the side and be arranged along the side of the standing member 3. However, if the connecting rod 16 is bent (for example, in a roughly L-shape), the through-hole 15a may be formed to penetrate the top and bottom surfaces, as described above, and the beam member 15 may be attached. This is preferable because it makes it easier to attach the support member 4 and allows the display object to be placed on the top surface of the support member 4. In this way, by freely setting the mounting position of the beam member 15, the variety of display objects can be further increased.
[0060] Furthermore, although the beam member 15 is configured to connect a pair of upright members 3, it is also possible to configure it so that it can connect three or more upright members 3. This makes it possible to obtain an even stronger assembled structure.
[0061] Furthermore, although the beam member 15 is configured to support the object of appreciation via the support member 4, the object of appreciation may also be supported directly on the beam member 15. This reduces the number of parts while increasing the variety of objects to be displayed. In this case, the through-holes 15a used to attach the support member 4 may be used as fixing receptacles to support the object of appreciation. Furthermore, the surface of the beam member 15 may be processed (for example, by forming grooves) to be suitable for supporting the object of appreciation.
[0062] In the above embodiment, the object for viewing is supported directly on the support member 4 or the beam member 15, but it is also possible to support the object for viewing directly on the base 2 or the standing member 3. That is, a fixing receiver can be formed on the base 2 or the standing member 3, and the object for viewing can be supported on this fixing receiver. When the object for viewing is coral, it is preferable to make a part of the base 2 or the standing member 3 out of ceramic to serve as the fixing receiver.
[0063] In the above embodiment, the ornamental object support device 1 is described as supporting coral and placing it in an aquarium, but ornamental objects are not limited to coral, and may be aquatic plants, stones, etc. Furthermore, in addition to being placed in an aquarium, it can also be used by placing it on a table or the like. In this case, the objects supported by the support member 4 and beam member 15 are not limited to underwater objects, and various objects such as moss and clocks can be displayed according to the user's preferences. [Explanation of symbols]
[0064] 1...Support device for artwork 2...Foundation 3...Standing member 4...Support member 5...Connecting recess 6...Recess 7...Convex part 8...Connecting member 9...Engagement hole 10...Mounting recess 11...Rotation stop recess 12...Recessed part 13...Main body 14...Shaft 15...Beam member 16…Connecting rod
Claims
1. a base that can be placed on the placement portion; an upright member provided on the base and extending upward; a support member provided on the upright member to support an object to be viewed; An object support device comprising:
2. 2. The support device for an object to be viewed according to claim 1, wherein the base is flat and has a connecting structure that allows a plurality of bases to be connected to each other when arranged on the same plane.
3. The connecting structure is a recess formed on the bottom surface of the base from a side edge and having an engagement portion; a connecting member that is disposed in the recess of the base without protruding from the bottom surface of the base, that has an engagement receiving portion that engages with the engagement portion, and that connects a plurality of adjacent bases; The support for an object of appreciation according to claim 2 .
4. 2. The support device for an object to be displayed according to claim 1, wherein the standing member has a detachable structure that allows it to be attached to and detached from the base.
5. The detachable structure includes: a recess formed on the upper surface of the base, the recess having a portion extending in a planar direction or penetrating to a lower surface; A lower end portion of the standing member that is detachably attached to the recessed portion; The support for an object of appreciation according to claim 4, comprising:
6. The upright member is rod-shaped with a rectangular cross section and has a recessed portion on its outer surface, 6. The support device for an object to be viewed as claimed in claim 5, wherein the recess of the base is rectangular in plan view and receives the lower end of the standing member.
7. 2. The support device for an object to be displayed according to claim 1, wherein the upright members are made up of a plurality of members having different heights.
8. 2. The support device for an object to be displayed according to claim 1, further comprising a beam member capable of connecting at least two of the standing members that are arranged side by side.
9. The upright member and the beam member are provided with connection receiving portions, a connector connected to the upright member and the connection receiving portion, The connecting receiving portion has a plurality of rotation stop receiving portions, The connecting body has a rotation stop portion that is positioned on any one of the rotation stop receiving portions, 9. The support device for an object of appreciation according to claim 8, wherein the positional relationship of the beam member with respect to the upright member can be changed by determining which of the rotation stop receiving portions the rotation stop portion is positioned on.
10. 9. The support device for an object of appreciation according to claim 8, wherein at least one of the upright member and the beam member is formed with a fixing receiving portion for fixing an object of appreciation.
11. The object of appreciation is coral, The support device for an ornamental object according to claim 1 , wherein the support member is a coral flag base that supports the coral.
Citation Information
Patent Citations
Treatment of aqueous solution of resorcinol
JP1981083429A
Support for culture by proliferating especially aquatic animal for aquarium and apparatus equipped with the same
JP2005006655A
Marine organism-growing tool and method for growing marine organism
JP2008017775A
Ornament Assembly
JP2020512012A
Coral implantation base, and manufacturing method thereof
JP2021083434A