Flowerpot stand
The flower pot stand's dual-position design with adjustable height and lattice pattern addresses the limitations of conventional stands by enabling versatile, long-lasting use and improved drainage/ventilation.
Patent Information
- Application Number
- JP2024023417
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-02-20
- Publication Date
- 2025-09-01
AI Technical Summary
Conventional flower pot stands lack versatility in usage and require replacement if damaged or if the desired height or atmosphere of pot placement changes, leading to financial and environmental burdens.
A flower pot stand that can be used in two positions, allowing the flower pot to be placed on either surface in either position, with supports extending perpendicularly to each surface and having different lengths, enabling reversible use and adjustable height, and featuring a lattice pattern for improved water drainage and ventilation.
Enables extended use of the stand by allowing damage-side concealment, varied usage through position switching, and adjustable height, while enhancing water drainage and ventilation, reducing the need for frequent replacements.
Smart Images

Figure 2025126988000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a flower pot stand that can hold a flower pot in two positions. [Background technology]
[0002] There have been conventional stands for flowerpots to place flowerpots on. For example, Patent Document 1 listed below discloses a stand for horticultural plant pots, which has a pot placing section (table) for placing the pot body and a tray placing section (base) for placing a tray that receives drainage from the pot body, and is arranged by supports at positions separated by a space in the vertical direction. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Publication No. 10-286157
[0004] However, the stand for horticultural plant pots described in Patent Document 1 has the problem that there are few variations in the manner in which a single stand can be used, limiting the situations in which it can be used. That is, with conventional stands for horticultural plant pots, if you want to change the height or atmosphere at which the pot is placed, or if the stand is damaged, you need to purchase a new stand to replace the one you were using, which creates a financial burden on the user and an environmental burden for producing the stands.
[0005] The present invention has been made to address the above-mentioned problems, and its object is to provide a stand for flower pots that can increase the variety of ways in which a single stand for flower pots can be used. Summary of the Invention
[0006] In order to achieve the above-mentioned object, the present invention is characterized in that it is a flower pot stand for placing flower pots, comprising a base on which flower pots can be selectively placed on a first surface and a second surface formed on opposite sides, and a support body that supports the base horizontally at a position spaced apart from the installation surface, and the base can selectively take a first position in which the second surface faces the installation surface and the first surface faces upward, and a second position in which the first surface faces the installation surface and the second surface faces upward.
[0007] According to the features of the present invention configured in this manner, the flower pot stand is reversible, meaning that a flower pot can be placed on either the first or second surface in either the first or second position (i.e., a position in which the flower pot stand is inverted upside down compared to the first position), thereby increasing the variety of ways in which the flower pot stand can be used.
[0008] Specifically, even if the flowerpot stand is damaged by scratches or dirt, it can be turned over so that the undamaged, clean side faces outward, allowing the same flowerpot stand to be used for a longer period of time. Also, by periodically switching the flowerpot stand between the first and second positions, the texture of the flowerpot stand, which changes due to scratches or discoloration, can be enjoyed in each position.
[0009] Another feature of the present invention is that in the flower pot stand, the support comprises a first support extending in a direction perpendicular to the first surface on the side where the first surface is provided, and a second support extending in a direction perpendicular to the second surface on the side where the second surface is provided, on the opposite side to the first support.
[0010] According to another feature of the present invention configured in this manner, the flower pot stand has a first support and a second support that extend in a direction perpendicular to the first or second surface on the side where the support is provided, respectively, so that the stand can support the mounting base at a position spaced apart from the installation surface in the first and second positions. This allows the flower pot to be placed at a position spaced apart from the installation surface in either the first or second position. Furthermore, the flower pot stand can also be used in either the first or second position by using the space formed between the mounting base and the installation surface as a storage space for storing items.
[0011] Another feature of the present invention is that in the flowerpot stand, the first support and the second support are formed to have different lengths.
[0012] According to another feature of the present invention configured in this manner, the first support and the second support of the flowerpot stand are formed to have different lengths, so that the height of the stand from the installation surface can be changed between the first and second positions. As a result, the flowerpot stand can place flowerpots at different heights in the first and second positions, so the height at which the flowerpots are placed can be selected depending on the height (height) of the flowerpots, the growth pattern of the plants in the flowerpots, the environment of the installation location, the appearance when in use, etc.
[0013] Another feature of the present invention is that in the flowerpot stand, the stand on which the flowerpot is placed is constructed by arranging round bars in a lattice pattern.
[0014] According to another feature of the present invention, the flowerpot stand has a portion on which the flowerpot is placed that is constructed of round bars arranged in a grid pattern. Therefore, in both the first and second positions, the underside of the flowerpot and the portion on which the flowerpot is placed, which is made of round bars, are in linear contact with each other, making it difficult to block the hole in the bottom of the flowerpot for draining water (hereinafter referred to as the "drainage hole"). This allows the flowerpot stand to improve the ease with which water can pass between the inside and outside of the flowerpot (hereinafter referred to as "water permeability") and breathability. Furthermore, in both the first and second positions, water draining from the flowerpot easily flows down the round bars and collects at the bottom of the bars, improving drainage in the portion of the stand on which the flowerpot is placed.
[0015] In order to achieve the above-mentioned object, the present invention is characterized in that it is a flower pot stand for placing flower pots, comprising a first placing stand having a first surface for placing the flower pot and a second surface formed on the opposite side of the first surface, a second placing stand having a third surface for placing the flower pot and a fourth surface formed on the opposite side of the third surface, and a support that supports the first placing stand horizontally at a position spaced apart from the installation surface and supports the second placing stand horizontally with the fourth surface facing the second surface, and the first placing stand and the second placing stand can selectively take a third position in which the third surface faces the installation surface and the first surface faces upward, and a fourth position in which the first surface faces the installation surface and the third surface faces upward.
[0016] According to the features of the present invention configured as described above, the flower pot stand has a first and second stand each having a mounting surface for placing a flower pot, which are arranged side by side in the height direction of the flower pot stand, so that a flower pot can be placed on either the first or third surface in either the third or fourth position (i.e., a position in which the flower pot stand is inverted upside down from the third position). In other words, the flower pot stand can be used in a so-called reversible manner, which increases the variety of ways in which the flower pot stand can be used.
[0017] Specifically, even if the flowerpot stand is damaged by scratches or dirt, it can be turned over so that the undamaged, clean side faces outward, allowing the same flowerpot stand to be used for a longer period of time. Also, by periodically switching between the third and fourth positions, the flowerpot stand can be enjoyed in each position, with the texture of the flowerpot stand changing due to scratches or discoloration.
[0018] Another feature of the present invention is that, in the flower pot stand, the second surface of the first mounting stand is capable of placing an item on it in a fourth position, and the fourth surface of the second mounting stand is capable of placing an item on it in a third position.
[0019] In this flower pot stand, the second surface is configured so that an item can be placed thereon when in the fourth position, and the fourth surface is configured so that an item can be placed thereon when in the third position. According to another feature of the present invention configured in this way, in the third position, the flower pot stand can have a flower pot placed on the first surface and various items (e.g., flower pots or gardening tools) placed on the fourth surface, while in the fourth position, a flower pot can be placed on the third surface and various items can be placed on the second surface.
[0020] Another feature of the present invention is that in the flower pot stand, the support comprises a third support extending in a direction perpendicular to the first surface on the side where the first surface is provided, and a fourth support extending in a direction perpendicular to the third surface on the side where the third surface is provided and on the opposite side to the third support.
[0021] According to another feature of the present invention configured in this manner, the flower pot stand has a third support on the first surface side and a fourth support on the third surface side extending opposite the third support, so that the first and second support stands can be supported at positions spaced apart from the installation surface in the third and fourth positions. This allows the flower pot stand to place flower pots at positions spaced apart from the installation surface in both the third and fourth positions. The flower pot stand can also store items in the space between the second support stand and the installation surface in the third position and the space between the first support stand and the installation surface in the fourth position.
[0022] Another feature of the present invention is that in the flowerpot stand, the third support and the fourth support are formed to have different lengths.
[0023] According to another feature of the present invention configured in this manner, the flowerpot stand has the third support and the fourth support formed to have different lengths, so that the height of the first surface from the installation surface in the third position and the height of the third surface from the installation surface in the fourth position can be made different. As a result, the flowerpot stand can place flowerpots at different heights in the third and fourth positions, so the height at which the flowerpots are placed can be selected depending on the height (height) of the flowerpot, the growth pattern of the plant in the flowerpot, the environment of the installation location, the appearance when in use, etc.
[0024] Another feature of the present invention is that, in the flower pot stand, the first and second stands each have a through portion that penetrates in the thickness direction and allows water to pass through in the same thickness direction.
[0025] According to another feature of the present invention configured in this manner, the flower pot stand has a through-hole that penetrates the first and second mounting stands in the thickness direction and allows water to pass through in the same thickness direction, so that in both the third and fourth positions, water drained from the drainage holes of the flower pots is guided below the mounting stands through the through-hole.
[0026] Normally, a flowerpot with drainage holes is placed on a water tray to catch the water drained through the drainage holes. However, the flowerpot stand of the present invention has a through-hole that allows the water drained from the drainage holes to be guided below the stand, and by placing the water tray below the stand, the flowerpot and the water tray can be used with a vertical separation between them.
[0027] Specifically, in the third position, the flowerpot stand can have a flowerpot placed on the first surface and a water tray placed on the fourth surface, while in the fourth position, a flowerpot can be placed on the third surface and a water tray placed on the second surface. This allows the flowerpot stand to easily discard water collected in the water tray without having to move the flowerpot from above the water tray. In this case, the through-holes should preferably be large enough (for example, larger than the size (width) of the drainage holes) to allow the state of the drainage holes to be visible from the underside of the stand on which the flowerpot is placed.
[0028] Furthermore, when the flowerpot stand is configured with a space between the installation surface and the support base facing the installation surface, a water tray can be placed on the support base facing the installation surface and another water tray can be placed in the space to further prevent water from spilling onto the installation surface.
[0029] Another feature of the present invention is that in the flowerpot stand, the through-holes are formed discontinuously over the entire surfaces of the first and second stands.
[0030] According to another feature of the present invention configured in this manner, the flowerpot stand has through-holes formed intermittently over the entire surface of the first and second stands, so that when placing a flowerpot in either the third or fourth position, it is not necessary to precisely align the positions of the drainage holes and the through-holes, making it easy to place the flowerpot. Also, because the flowerpot stand has through-holes formed intermittently over the entire surface of the first and second stands, water drained from the drainage holes of the flowerpot can be quickly guided below the stand, and water that leaks outside the flowerpot can also be guided below the stand.
[0031] Another feature of the present invention is that in the flowerpot stand, the first and second stands have portions on which flowerpots are placed that are constructed by arranging rods in a lattice pattern.
[0032] According to another feature of the present invention configured in this way, the flowerpot stand has a structure in which the portions of the first and second stands on which the flowerpots are placed are configured by arranging rods in a lattice pattern, which simplifies the configuration of the portions on which the flowerpots are placed. In this case, a lattice pattern refers to a state in which multiple rods are arranged parallel to one another at intervals (i.e., a lattice pattern extending in one direction) or a state in which multiple rods are arranged so that they cross each other.
[0033] Another feature of the present invention is that in the flower pot stand, the portion on which the flower pots are placed is constructed by arranging rods in a grid pattern extending in one direction, and the rods constituting the portion on which the flower pots are placed of the first mounting stand and the rods constituting the portion on which the flower pots are placed of the second mounting stand are arranged to extend in directions that intersect with each other when viewed in a plane.
[0034] According to another feature of the present invention configured in this manner, the flower pot stand is arranged so that the rod material constituting the part of the first mounting stand where the flower pot is placed and the rod material constituting the part of the second mounting stand where the flower pot is placed each extend in directions that intersect in a plan view, so that fallen objects such as leaves or branches from the placed plants can be captured by the part of the first mounting stand or the second mounting stand where the flower pot is placed, making them less likely to fall onto the installation surface.
[0035] Another feature of the present invention is that in the flowerpot stand, the rod material is made of a round rod.
[0036] According to another feature of the present invention, the rods constituting the portions of the first and second flowerpot stands on which flowerpots are placed are made of round rods. Therefore, in both the third and fourth positions, the underside of the flowerpot and the portions made of round rods on which the flowerpots are placed are in linear contact, making it difficult for the drainage holes to become blocked. This allows the flowerpot stand to improve water permeability and ventilation between the inside and outside of the flowerpot. Furthermore, in both the third and fourth positions, water draining from the flowerpots easily flows down the round rods and collects at the bottom of the round rods, improving drainage in the portions of the first and second flowerpot stands on which the flowerpots are placed. [Brief explanation of the drawings]
[0037] [Figure 1] 1 is a perspective view showing a schematic outline of the external configuration of a flowerpot stand according to a first embodiment of the present invention; [Figure 2] 2 is a perspective view showing a schematic outline of the external configuration of the flowerpot stand shown in FIG. 1 in a second position. FIG. [Figure 3] 2A to 2C are front views each showing a schematic external configuration of the flowerpot stand shown in FIG. 1 with a flowerpot placed thereon in each position when the position of the flowerpot stand is changed from a first position to a second position. [Figure 4] FIG. 10 is a perspective view schematically showing the outline of the external configuration of a flowerpot stand according to a modified example of the present invention. [Figure 5] 5A to 5C are front views each showing a schematic external configuration of the flowerpot stand shown in FIG. 4 with a flowerpot placed thereon in each position when the position of the flowerpot stand is changed from a first position to a second position. [Figure 6] FIG. 10 is a perspective view showing a schematic outline of the external configuration of a flowerpot stand according to a second embodiment of the present invention. [Figure 7]7A to 7D are front views each showing a schematic external configuration of the flowerpot stand shown in FIG. 6 with a flowerpot placed thereon in each position when the position of the flowerpot stand is changed from the third position to the fourth position. [Figure 8] FIG. 7 is a perspective view schematically illustrating the outline of the external configuration of the flowerpot stand shown in FIG. 6 with a flowerpot and a water tray placed on it. [Figure 9] FIG. 10 is a perspective view schematically showing the outline of the external configuration of a flowerpot stand according to another modified example of the present invention. [Figure 10] 10A to 10D are front views each showing a schematic external configuration of the flowerpot stand shown in FIG. 9 with a flowerpot placed thereon in each of the positions when the position of the flowerpot stand is changed from the third position to the fourth position. DETAILED DESCRIPTION OF THE INVENTION
[0038] (First embodiment) A first embodiment of a flowerpot stand 100 according to the present invention will be described below with reference to the drawings. FIG. 1 is a perspective view schematically illustrating the outline of the external configuration of the flowerpot stand 100 according to the first embodiment of the present invention. FIG. 2 is a perspective view schematically illustrating the outline of the external configuration of the flowerpot stand 100 shown in FIG. 1 in a second position. FIG. 3 is a front view schematically illustrating the external configuration of the flowerpot stand 100 shown in FIG. 1 in a state where a flowerpot P is placed in each position when the position of the flowerpot stand 100 shown in FIG. 1 is changed from the first position to the second position. Note that the drawings referred to in this specification are schematic, with some components exaggerated to facilitate understanding of the present invention. Therefore, the dimensions and ratios of the components may differ.
[0039] This flower pot stand 100 is a stand that can support a flower pot P on a mounting surface G in two positions, a first position and a second position. Before describing the flower pot stand 100, we will first explain the flower pot P and the water tray T that are placed on this flower pot stand 100.
[0040] The flowerpot P is a container for planting plants, and the size, shape, weight, material, etc. can be selected appropriately depending on the plant to be planted inside or the location where the flowerpot P is to be placed. In this embodiment, the flowerpot P is configured as a container filled with soil, but it may also be a container for hydroponic cultivation filled with water.
[0041] In this embodiment, a circular drainage hole P1 is formed in the center of the bottom of the flowerpot P, penetrating through the thickness direction. The drainage hole P1 is a through-hole that allows excess water to drain out of the flowerpot P when watering, and allows air to circulate between the inside and outside of the flowerpot P.
[0042] The water tray T is a container for receiving water drained from the drainage holes P1 of the flowerpot P. This water tray T is generally used with the flowerpot P placed directly on the bottom surface. In this embodiment, the water tray T is configured as a dish-shaped container with an opening facing upward and larger than the bottom surface of the flowerpot P.
[0043] (Configuration of flower pot stand 100) 1, this flowerpot stand 100 is formed by joining rods in a roughly H-shape when viewed horizontally and extending vertically. This flowerpot stand 100 is mainly composed of a mounting base 101 and a support 110.
[0044] The stand 101 is a part for placing the flowerpot P thereon, and is configured as a flat plate. The stand 101 is mainly configured of an outer frame part 102 and a mounting body 107.
[0045] The outer frame portion 102 constitutes the outer frame of the mounting table 101 and supports the installation body 107, and is configured to have a rectangular shape in a plan view. In this embodiment, the outer frame portion 102 is formed to have a square shape in a plan view. The outer frame portion 102 is mainly configured of a first member 103, a second member 104, a third member 105, and a fourth member 106.
[0046] The first member 103, the second member 104, the third member 105, and the fourth member 106 are members that form the respective sides of the square-shaped outer frame portion 102, and are made by forming various materials such as wood, metal, or resin into a rod shape. In this embodiment, the first member 103, the second member 104, the third member 105, and the fourth member 106 are each made of wooden lumber with a square cross section.
[0047] In this case, tenons (not shown) are formed at both longitudinal ends of each of the first member 103, the second member 104, the third member 105, and the fourth member 106 so as to protrude convexly in the longitudinal direction. The tenons are portions for connecting supports 110 to both longitudinal ends of the first member 103, the second member 104, the third member 105, and the fourth member 106. That is, the first member 103, the second member 104, the third member 105, and the fourth member 106 are connected to each other via the supports 110 to form an outer frame 102 that is square in plan view. In this embodiment, the first member 103 and the second member 104 are assembled in an arrangement in which the first member 103 and the second member 104 face each other, and the third member 105 and the fourth member 106 face each other.
[0048] Furthermore, among the first member 103, the second member 104, the third member 105 and the fourth member 106, the third member 105 and the fourth member 106 have four bottomed holes formed at equal intervals along the longitudinal direction on each of their opposing inner surfaces, and four erection bodies 107 are supported via these holes.
[0049] The installation body 107 is a part on which the flowerpot P is placed, supports the flowerpot P from below, and is a member for reinforcing the outer frame portion 102, and is made of a round metal bar (for example, stainless steel). In this embodiment, the round bar that makes up the installation body 107 is formed with a diameter smaller than the diameter of the drainage hole P1 formed in the flowerpot P, and with a length shorter than the thickness of the outer frame portion 102.
[0050] The installation body 107 is arranged in a unidirectional grid pattern within an area surrounded by the first member 103, fourth member 106, second member 104, and third member 105 that constitute the outer frame 102. In this embodiment, the installation body 107 is formed by arranging multiple round bars extending parallel to the first member 103 and the second member 104 at predetermined intervals. Both ends of the installation body 107 are bonded to the bottomed holes in the third member 105 and the fourth member 106 with an adhesive. The predetermined interval is a distance shorter than the width of the bottom of the flowerpot P (i.e., a distance that allows the flowerpot P to be supported on the installation body 107) and that allows water to pass through in a vertical direction relative to the mounting base 101. In the installation body 107 configured in this manner, the spaces formed between the round bars in the thickness direction of the mounting base 101 correspond to the through-holes 108.
[0051] Furthermore, in this embodiment, the installation body 107 is configured such that the upper surface of the installation body 107 is located lower than the upper surface of the outer frame portion 102 in the height direction of the flowerpot stand 100, and the lower surface of the installation body 107 is located higher than the lower surface of the outer frame portion 102. In other words, the installation body 107 is supported on the inner surface of the outer frame portion 102 at a position inside the upper and lower ends in the thickness direction.
[0052] In the mounting table 101 configured in this manner, the surface facing away from the installation surface G corresponds to the first surface 101a according to the present invention. In addition, the surface of the mounting table 101 facing the installation surface G corresponds to the second surface 101b according to the present invention.
[0053] The support 110 is a component for horizontally supporting the mounting table 101 at a position spaced apart from the installation surface G, and is formed in the shape of a column that stands upright on the installation surface G. In this embodiment, the support 110 is configured by placing rods extending perpendicular to the installation surface G at each corner of the rectangular mounting table 101. The support 110 is made up of four members: a first support member 111, a second support member 112, a third support member 113, and a fourth support member 114.
[0054] The first support member 111, the second support member 112, the third support member 113, and the fourth support member 114 are each disposed at each corner of the outer frame portion 102, and are members that support the mounting table 101 while constituting part of the mounting table 101, and are made by forming various materials such as wood, metal, or resin into a rod shape. In this embodiment, the first support member 111, the second support member 112, the third support member 113, and the fourth support member 114 are each made of wooden square timbers with a square cross section.
[0055] In this case, concave mortises (not shown) into which the tenons fit are formed between both longitudinal ends of the first support member 111, the second support member 112, the third support member 113, and the fourth support member 114. In this embodiment, these mortises are formed at the same height position, biased toward one of the longitudinal end ends of the first support member 111, the second support member 112, the third support member 113, and the fourth support member 114.
[0056] As a result, the support 110 horizontally supports the mounting table 101 at a position biased toward one of both longitudinal ends. The first support member 111, the second support member 112, the third support member 113, and the fourth support member 114 are joined with adhesive to the tenons formed in the first member 103, the second member 104, the third member 105, and the fourth member 106 within the respective mortises.
[0057] In the support 110 configured in this manner, the portion extending perpendicular to the first surface 101a on the side where the first surface 101a is provided corresponds to the first support 110a according to the present invention. In addition, the portion extending perpendicular to the second surface 101b on the side where the second surface 101b is provided corresponds to the second support 110b according to the present invention. In this embodiment, the first support 110a is formed to be longer than the second support 110b because the mounting table 101 is supported at a position biased toward one of both end portions of the support 110.
[0058] (Operation of the flower pot stand 100) Next, the operation of the flower pot stand 100 configured as described above will be described. First, a user who intends to use this flower pot stand 100 prepares the flower pot stand 100, the flower pot P, and the water tray T. Specifically, the user prepares the flower pot P of an appropriate size and shape according to the plant to be planted in the flower pot P and the size of the stand 101. The user also prepares the water tray T of an appropriate size and shape according to the size of the stand 101.
[0059] Here, the flowerpot stand 100 is equipped with a mounting base 101 on which a flowerpot P can be selectively placed on either the first surface 101a or the second surface 101b, and can selectively take a first position (Fig. 1) in which the second surface 101b faces the installation surface G and the first surface 101a faces upward, or a second position (Fig. 2) in which the first surface 101a faces the installation surface G and the second surface 101b faces upward. Therefore, the flowerpot stand 100 can be used reversibly, with the flowerpot P being able to be placed on either the first surface 101a or the second surface 101b in either the first position or the second position.
[0060] Furthermore, the flowerpot stand 100 is formed so that the first support 110a and the second support 110b of the support 110 are different lengths. As a result, the height position at which the flowerpot stand 100 supports the mounting base 101 changes between the first and second positions, as shown in Fig. 3, and therefore the height position at which the flowerpot P is placed can be changed.
[0061] Therefore, after preparing the flowerpot stand 100, the flowerpot P, and the water tray T, the user decides the position in which to place the flowerpot stand 100. Specifically, the user selects either the first position or the second position, which differ in the height of the stand 101. In this case, the user selects the desired first or second position based on the height (height) of the flowerpot P, the growth pattern of the plant planted in the flowerpot P, the environment of the installation location, the appearance when in use, etc.
[0062] Next, the user places the flowerpot stand 100 on the installation surface G so that it is in the selected position. For example, if the user selects the first position, the second support 110b is made to stand on the installation surface G in a position where the first surface 101a of the mounting stand 101 faces upward and the second surface 101b faces the installation surface G. On the other hand, if the user selects the second position, the first support 110a is made to stand on the installation surface G in a position where the second surface 101b of the mounting stand 101 faces upward and the first surface 101a faces the installation surface G.
[0063] Next, the user places the flowerpot P and the water saucer T on the stand 101. For example, when the flowerpot stand 100 is installed in the first position, the user moves the water saucer T and the flowerpot P onto the first surface 101a in this order, placing the water saucer T and the flowerpot P one above the other. The same applies to the second position, where the user moves the water saucer T and the flowerpot P onto the second surface 101b in this order, placing them one above the other. In this case, the user can place the flowerpot P and the water saucer T on the installation body 107, but they can also be placed on the outer frame portion 102.
[0064] In this case, the flower pot stand 100 is formed such that the first support 110a extends in the height direction of the flower pot stand 100 on the first surface 101a side. In other words, the first support 110a is formed to extend upward above the upper surface of the mounting stand 101. As a result, when the flower pot stand 100 is in the first position, the first support 110a restricts the horizontal movement of the flower pot P and water tray T placed on the first surface 101a. The same is true for the second position, where the flower pot stand 100 is formed such that the second support 110b restricts the horizontal movement of the flower pot P and water tray T placed on the second surface 101b.
[0065] Furthermore, in the flower pot stand 100, the round rods that make up the mounting body 107 are formed with a diameter that is shorter than the thickness of the outer frame portion 102. Therefore, regardless of whether the flower pot stand 100 is in the first position or the second position, the upper surface of the outer frame portion 102 is located higher than the upper surface of the mounting body 107. In other words, the upper surface of the outer frame portion 102 protrudes upward above the upper surface of the mounting body 107. As a result, in the flower pot stand 100, if the size of the lower surface of a flower pot P is smaller than the area surrounded by the outer frame portion 102, the flower pot P will be placed on the mounting body 107, and the inner peripheral surface of the outer frame portion 102 that protrudes upward around the mounting body 107 will restrict the flower pot P from moving horizontally.
[0066] Next, the user waters the plant planted in the flowerpot P. The water poured into the flowerpot P flows through the flowerpot P and out of the drainage hole P1 into the water tray T. Next, the user discards the water that has accumulated in the water tray T. Specifically, the user lifts up and moves the flowerpot P placed on the water tray T, then picks up the water tray T from the stand 101 and discards the accumulated water. The user then returns the flowerpot P and the water tray T to the stand 101 in the same manner as when placing the flowerpot P and the water tray T.
[0067] On the other hand, in the flower pot stand 100, the mounting body 107 that constitutes the portion of the mounting stand 101 on which the flower pot P is placed is constructed by arranging round bars in a lattice pattern, and through-holes 108 (gaps between the round bars) that penetrate vertically between the round bars are formed to allow water to pass through vertically. Therefore, in both the first and second positions, the user can direct water drained from the drainage holes P1 to below the mounting stand 101 through the through-holes 108, and by placing the water tray T below the mounting stand 101, the flower pot stand 100 can be used with the flower pot P and the water tray T spaced apart in the vertical direction.
[0068] Specifically, a user first places a flowerpot P on the stand 101. In this case, the stand 101 has through-holes 108 formed intermittently across the entire surface thereof by gaps between the round bars arranged in a grid pattern. Therefore, when placing the flowerpot P on the stand 101, the user does not need to precisely align the positions of the drainage holes P1 and the through-holes 108, and can easily place the flowerpot P. Furthermore, in this case, the through-holes 108 are formed to be large enough that the state of the drainage holes P1 can be seen from the underside of the stand 101 on which the flowerpot P is placed. Therefore, the user can insert a hand mirror below the stand 101 and check the state of the drainage holes P1 while deciding where to place the flowerpot P.
[0069] Furthermore, the flower pot stand 100 allows the underside of the placed flower pot P to be in linear contact with the mounting body 107 made of a round bar, making it difficult for the drainage hole P1 to be blocked, thereby improving the water permeability and breathability between the inside and outside of the placed flower pot P.
[0070] Next, the user places the water tray T on the installation surface G opposite the installation stand 101. For example, when the flower pot stand 100 is installed in the first position, the user inserts the water tray T through the gaps between the support members constituting the second support 110b and places the water tray T below the drainage hole P1. The same applies to the second position, where the user inserts the water tray T through the gaps between the support members constituting the first support 110a and places the water tray T below the drainage hole P1.
[0071] Next, the user waters the plant planted in the flowerpot P. The water poured into the flowerpot P flows out through the drainage holes P1. In this case, because the flowerpot stand 100 has a mounting body 107 configured by arranging round bars in a lattice pattern, the water that flows out easily flows down the round bars and collects at the bottom of the round bars, improving drainage on the mounting body 107.
[0072] Next, the user discards the water that has accumulated in the water tray T. For example, when the flower pot stand 100 is installed in the first position, the user pulls out the water tray T from the gaps between the support members that make up the second support 110b and discards the water that has accumulated in the water tray T. The same applies to the second position, where the user pulls out the water tray T from the gaps between the support members that make up the first support 110a and discards the water that has accumulated in the water tray T. Then, the user returns the water tray T to a position below the drainage hole P1.
[0073] In this way, the user can use the flowerpot stand 100 with the flowerpot P and the water saucer T spaced apart from each other, which makes it easier to handle the water saucer T than when the flowerpot P and the water saucer T are placed one above the other. The user can also insert a hand mirror below the stand 101 and check the condition of the drainage hole P1, such as the condition of the plant roots, through the drainage hole P1.
[0074] In the above description of the operation of the first embodiment, the flowerpot stand 100 is described as being used with a flowerpot P and a water tray T. However, the flowerpot stand 100 can be used by placing only the flowerpot P thereon, omitting the water tray T.
[0075] On the other hand, the user can also place items other than the water tray T on the installation surface G facing the mounting base 101. Specifically, like the water tray T, the user can insert or pull out various items such as gardening tools through the gaps between the support members constituting the first support 110a or the second support 110b, and use the gaps as a storage space.
[0076] As can be understood from the above operation description, according to the first embodiment, the flower pot stand 100 is reversible, meaning that a flower pot P can be placed on either the first surface 101a or the second surface 101b in either the first or second position, thereby increasing the variety of ways in which the flower pot stand 100 can be used.
[0077] Furthermore, the present invention is not limited to the first embodiment, and various modifications are possible without departing from the scope of the present invention. In the following explanations of the modifications, the same components as those of the flowerpot stand 100 in the first embodiment are given the same reference numerals, and the explanation of the overlapping parts will be omitted.
[0078] For example, in the first embodiment, the support 110 is configured to include the first support 110a and the second support 110b extending vertically from the first surface 101a and the second surface 101b, respectively. However, as shown in Fig. 4, the support 110 may be configured without either the first support 110a or the second support 110b. In other words, the support 110 may be configured to support the mounting table 101 at either one of both vertical end portions.
[0079] Specifically, when the first support 110a is omitted, the flowerpot stand 100 takes a first posture in which the first surface 101a faces upward and the second surface 101b faces the installation surface G while being spaced apart, as shown in Fig. 5, and a second posture in which the second surface 101b faces upward and the first surface 101a is placed on the installation surface G. On the other hand, when the second support 110b is omitted, the flowerpot stand 100 takes a first posture in which the first surface 101a faces upward and the second surface 101b is placed on the installation surface G, and a second posture in which the second surface 101b faces upward and the first surface 101a faces the installation surface G while being spaced apart.
[0080] (Second embodiment) Next, a second embodiment of a flowerpot stand 100 according to the present invention will be described with reference to FIGS. 6 and 7. FIG. 6 is a perspective view schematically illustrating the outline of the external configuration of a flowerpot stand 200 according to the second embodiment of the present invention. FIG. 7 is a front view schematically illustrating the external configuration of the flowerpot stand 200 shown in FIG. 6 when the position is changed from the third position to the fourth position, with a flowerpot P placed on it in each position. In describing this second embodiment, differences from the first embodiment will be mainly described, and common parts will be denoted by common reference numerals and their description will be omitted as appropriate. The flowerpot stand 200 according to the second embodiment differs from the flowerpot stand 100 according to the first embodiment in that it includes a second placement stand 220.
[0081] (Configuration of flower pot stand 200) As shown in Fig. 6, the flowerpot stand 200 comprises a first mounting stand 201, a second mounting stand 220, and a support 230. Of these, the first mounting stand 201 and the second mounting stand 220 correspond to the mounting stand 101 in the first embodiment, and are configured similarly to the mounting stand 101. The first mounting stand 201 and the second mounting stand 220 are provided at different height positions in the height direction of the flowerpot stand 200. The support 230 is a component corresponding to the support 110 in the first embodiment, and is configured similarly to the support 110, supporting the first mounting stand 201 and the second mounting stand 220 at different height positions.
[0082] Specifically, the first mounting table 201 includes an outer frame portion 202, a first member 103, a second member 104, a third member 105, a fourth member 106, a mounting body 107, a through portion 108, a first surface 201a, and a second surface 201b, which correspond to the outer frame portion 102, a first member 103, a second member 204, a third member 205, a fourth member 206, a mounting body 207, a through portion 208, a first surface 201a, and a second surface 201b, respectively, of the mounting table 101.
[0083] The second mounting table 220 includes an outer frame portion 222 and a mounting body 227 that correspond to the outer frame portion 102 and the mounting body 107 of the mounting table 101, respectively.
[0084] Specifically, the outer frame portion 222 includes a first member 223, a second member 224, a third member 225, and a fourth member 226, which correspond to the first member 103, the second member 104, the third member 105, and the fourth member 106, respectively, of the mounting table 101.
[0085] In this case, the first member 223, the second member 224, the third member 225, and the fourth member 226 are respectively arranged below the first member 203, the second member 204, the third member 205, and the fourth member 206 on the first mounting table 201. Of these, the first member 223 and the second member 224 have four bottomed holes formed at equal intervals along the longitudinal direction on their inner surfaces facing each other, and support four mounting bodies 227 via these holes. In other words, the mounting bodies 227 are arranged to extend in a direction perpendicular to the mounting body 207 in a plan view.
[0086] In addition, the second mounting table 220 has round bars that make up the bridge 227 arranged in a lattice pattern, with gaps formed between the round bars. These gaps correspond to the through-holes 228 that correspond to the through-holes 108 in the mounting table 101.
[0087] In the second mounting table 220 configured in this manner, the surface facing the second surface 201b corresponds to the fourth surface 220b according to the present invention. Also, in the second mounting table 220, the surface facing the installation surface G corresponds to the third surface 220a according to the present invention.
[0088] The support 230 includes a first support member 231, a second support member 232, a third support member 233, and a fourth support member 234, which correspond to the first support member 111, the second support member 112, the third support member 113, and the fourth support member 114, respectively, on the mounting table 101.
[0089] Specifically, the first support member 231, the second support member 232, the third support member 233, and the fourth support member 234 horizontally support the second mounting table 220 at a height position that is lower than the height at which the first mounting table 201 is assembled and that is spaced apart from the installation surface G. The first support member 231, the second support member 232, the third support member 233, and the fourth support member 234 support the second mounting table 220 at a height position that provides a distance between the second surface 201b and the fourth surface 220b such that a water tray T or other various items can be placed thereon. In this case, the first support member 231, the second support member 232, the third support member 233, and the fourth support member 234 and the respective members that constitute the outer frame portion 222 are joined to each other by a method similar to the joining method (so-called tenon joint) used between the support body 110 and the outer frame portion 102 in the first embodiment described above.
[0090] In the support 230 configured in this manner, the portion extending perpendicular to the first surface 201a on the side where the first surface 201a is provided corresponds to the third support 230a according to the present invention. Also, the portion of the support 230 extending perpendicular to the third surface 220a on the side where the third surface 220a is provided corresponds to the fourth support 230b according to the present invention. In this embodiment, the third support 230a is formed to have a length longer than the fourth support 230b.
[0091] (Operation of the flower pot stand 200) Next, we will explain the operation of the flowerpot stand 200 configured as above. In explaining the operation of this second embodiment, we will mainly explain the parts that are different from the first embodiment, and will appropriately omit explanations of the parts that are common to both.
[0092] 7, the flowerpot stand 200 is in a position corresponding to the third position according to the present invention, in which the first surface 201a of the first mounting stand 201 faces upward, the third surface 220a of the second mounting stand 220 faces the mounting surface G, and the fourth support 230b is erected on the mounting surface G. Also, the flowerpot stand 200 is in a position corresponding to the fourth position according to the present invention, in which the third surface 220a faces upward, the first surface 201a faces the mounting surface G, and the third support 230a is erected on the mounting surface G.
[0093] This flower pot stand 200 can be used in the same way as the flower pot stand 100. Specifically, in the third position, a user can place a flower pot P and a water tray T on the first surface 201a of the first stand 201, while in the fourth position, a flower pot P and a water tray T can be placed on the third surface 220a of the second stand 220. In other words, the flower pot stand 200 can be used reversibly, with the flower pot P and the water tray T being placed on either the first surface 201a or the third surface 220a in either the third or fourth position.
[0094] Furthermore, the flowerpot stand 200 is configured so that the second surface 201b can accommodate an item when in the fourth position, and so that the fourth surface 220b can accommodate an item when in the third position. Therefore, in the third position, a user can place a flowerpot P and a water tray T on the first surface 201a, and various items such as the flowerpot P or gardening tools on the fourth surface 220b. On the other hand, in the fourth position, a user can place a flowerpot P and a water tray T on the third surface 220a, and various items on the second surface 201b.
[0095] Specifically, when the flowerpot stand 100 is set in the third position, the user places the flowerpot P and the water tray T on the first surface 201a, and then places various items on the fourth surface 220b by inserting them through the gaps between the support members that make up the support body 230. The same is true for the fourth position, where the user places the flowerpot P and the water tray T on the third surface 220a, and then places various items on the second surface 201b by inserting them through the gaps between the support members that make up the support body 230.
[0096] Meanwhile, the flowerpot stand 200 has through-holes 208, 228 that penetrate the first and second stands 201, 220 in the thickness direction, respectively, to allow water to pass through in the same thickness direction. Therefore, in either the third or fourth position, the user can direct water drained from the drainage hole P1 through the through-holes 208, 228 to below the stand (first stand 201 or second stand 220) on which the flowerpot P is placed, and by placing the water tray T below the stand (first stand 201 or second stand 220) on which the flowerpot P is placed, the user can use the flowerpot stand 200 with the flowerpot P and the water tray T spaced apart in the vertical direction.
[0097] Specifically, as shown in Fig. 8, in the third position, the user can place water tray T on fourth surface 220b and / or on installation surface G opposite third surface 220a. On the other hand, in the fourth position, the user can place water tray T on second surface 201b and / or on installation surface G opposite first surface 201a. In these cases, the user places water tray T on each installation surface through the gaps between the support members that make up support body 230.
[0098] The flowerpot stand 200 can be used by placing only the flowerpot P thereon without the water tray T, as in the operation of the first embodiment.
[0099] On the other hand, the flowerpot stand 200 has the first stand 201 and the second stand 220 supported at a distance from the installation surface G. Therefore, in either the third or fourth position, the user can place items other than the water tray T on the installation surface G facing the first stand 201 or the second stand 220. Specifically, like the water tray T, the user can insert or pull out various items such as gardening tools through the gaps between the support members constituting the third support 230a or the fourth support 230b, and use the gaps as a storage space.
[0100] As can be understood from the above operation description, according to the second embodiment, the flower pot stand 200 is reversible, meaning that a flower pot P can be placed on either the first surface 201a or the third surface 220a in either the third or fourth position, thereby increasing the variety of ways in which the flower pot stand 200 can be used.
[0101] Furthermore, the present invention is not limited to the second embodiment, and various modifications are possible without departing from the scope of the present invention. In the following explanations of the modifications, the same components as those of the flowerpot stand 200 in the second embodiment are given the same reference numerals, and the explanation of the overlapping parts will be omitted.
[0102] For example, in the second embodiment described above, the support 230 is configured to include the third support 230a and the fourth support 230b extending vertically from the first surface 201a and the third surface 220a, respectively. However, as shown in Fig. 9, the support 230 may be configured without either the third support 230a or the fourth support 230b. In other words, the support 230 may be configured to support the first mounting table 201 or the second mounting table 220 at either one of its two vertical end portions.
[0103] Specifically, when the third support 230a is omitted, the flowerpot stand 200 has a third posture in which the first surface 201a faces upward and the third surface 220a and the installation surface G face each other but are spaced apart, and a fourth posture in which the third surface 220a faces upward and the first surface 201a is placed on the installation surface G. On the other hand, when the fourth support 230b is omitted, as shown in Fig. 10, the flowerpot stand 200 has a third posture in which the first surface 201a faces upward and the third surface 220a is placed on the installation surface G, and a fourth posture in which the third surface 220a faces upward and the first surface 201a and the installation surface G face each other but are spaced apart.
[0104] In the second embodiment, the second surface 201b and the fourth surface 220b are configured so that an item can be placed on them when the stand is in the third or fourth position. Thus, in the third position, the flowerpot stand 200 can place a flowerpot P on the first surface 201a and various items on the fourth surface 220b, while in the fourth position, the flowerpot P can be placed on the third surface 220a and various items on the second surface 201b. However, the flowerpot stand 200 does not necessarily need to be configured with a gap between the first and second stands 201 and 220 large enough to allow an item to be placed on them. The first and second stands 201 and 220 may be positioned so close together that an item cannot be placed between them, i.e., the first and second stands 201 and 220 may be positioned back-to-back.
[0105] In the second embodiment, the first stand 201 and the second stand 220 are each configured with the through-holes 208, 228. This allows the flowerpot stand 200 to be used in the third and fourth positions with the flowerpot P and the water tray T placed thereon and spaced apart from each other. However, the flowerpot stand 200 may have the through-holes 208, 228 formed in only one of the first stand 201 and the second stand 220.
[0106] In the second embodiment, the mounting bodies 207 and 227 are arranged to intersect with each other in a plan view. This allows the flowerpot stand 200 to capture leaves or branches that have fallen from the placed plant using the first mounting stand 201 or the second mounting stand 220, preventing them from falling onto the installation surface G. However, the flowerpot stand 200 may also be arranged in a lattice pattern, with the mounting bodies 207 and 227 extending in the same direction. Furthermore, the mounting bodies 207, 227 may be arranged to extend parallel to the diagonals of the first mounting stand 201 or the second mounting stand 220, which are formed in a square shape in a plan view.
[0107] In the second embodiment, the mounting members 207 and 227 are arranged to intersect with each other in a plan view. However, the flower pot stand 200 may have the mounting members 207 and 227 arranged in different lattices. Specifically, the mounting members 207 may be arranged in a lattice pattern in which the rods intersect with each other, and the mounting members 227 may be arranged in a lattice pattern in which the rods extend in one direction. This allows the flower pot stand 200 to have different sizes of the through-holes 208, 228 in the first mounting stand 201 and the second mounting stand 220. Therefore, the third or fourth position can be selected based on the size (width) of the bottom surface of the flower pot P, the shape of the bottom surface of the flower pot P, the size (width) of the drainage hole P1, the size (width) of the bottom surface of the water tray T, the shape of the bottom surface of the water tray T, etc.
[0108] In the above embodiments, the first support 110a and the second support 110b, and the third support 230a and the fourth support 230b are configured to have different lengths. This allows the flowerpot stand 100 to change the height position at which the flowerpot P is placed between the first and second positions. Similarly, the flowerpot stand 200 allows the height position at which the flowerpot P is placed to change between the third and fourth positions. However, the first support 110a and the second support 110b, and the third support 230a and the fourth support 230b can also be configured to have the same length.
[0109] In each of the above-described embodiments, the stand 101, the first stand 201, and the second stand 220 (hereinafter also referred to as "stands for placing the flowerpot P") each have through-holes 108, 208, and 228 formed intermittently over the entire surface. This allows the flowerpot stand 100 to easily place the flowerpot P in the first and second positions without needing to precisely align the drainage holes P1 with the through-holes 108. Similarly, the flowerpot stand 200 also allows the flowerpot P to be easily placed in the third and fourth positions. However, the stand for placing the flowerpot P only needs to have the through-holes 108 formed in at least a portion of the surface (first surface 101a, second surface 101b, first surface 201a, and third surface 220a) on which the flowerpot P is placed. Therefore, the stand on which the flowerpot P is placed may be configured, for example, by forming one or more circular through-holes 108, 208, 228 that penetrate vertically in the center of the placing surface on which the flowerpot P is placed.
[0110] In each of the above embodiments, the stand on which the flowerpot P is placed is configured to include the through-holes 108, 208, and 228. This allows the flowerpot stand 100 to be used in the first and second positions with the flowerpot P and the water tray T spaced apart from each other. Similarly, the flowerpot stand 200 can be used in the third and fourth positions with the flowerpot P and the water tray T spaced apart from each other. However, the stand on which the flowerpot P is placed can also be configured without the through-holes 108, 208, and 228. For example, the entire surface of the stand on which the flowerpot P is placed can be made of a wooden, metal, or resin plate.
[0111] In each of the above embodiments, the stand on which the flowerpot P is placed is configured by arranging the support members 107, 207, 227 made of round bars in a lattice pattern on which the flowerpot P is placed. This allows the flowerpot stand 100 to improve water permeability and ventilation between the inside and outside of the flowerpot P in the first and second positions, as the underside of the flowerpot P is in linear contact with the support members 107, 207, 227 made of round bars, making it difficult for the drainage hole P1 to be blocked. Similarly, the flowerpot stand 200 can improve water permeability and ventilation between the inside and outside of the flowerpot P in the third and fourth positions. However, the support members 107, 207, 227 on which the flowerpot P is placed may be configured by arranging rods other than round bars in a lattice pattern. For example, the installation bodies 107, 207, 227 can be made of rectangular timbers with a cross section of a square, triangle, hexagon, or the like, or can be made of oval rods arranged in a grid pattern. The portion of the mounting base on which the flowerpot P is placed can also be made of wires, strings, or other linear materials arranged in a grid pattern. It goes without saying that the flowerpot P or water tray T may be placed on the outer frame portion 102, 202, 222 of the mounting base instead of or in addition to the installation bodies 107, 207, 227. [Explanation of symbols]
[0112] G...Installation surface, P...flower pot, P1...drainage hole, T...water tray, 100...flower pot stand, 101...Placement table, 101a...First surface, 101b...Second surface, 102... outer frame portion, 103... first member, 104... second member, 105... third member, 106...fourth member, 107...erecting body, 108...penetration portion, 110...support body, 110a...first support body, 110b...second support body, 111...first support material, 112...second support material, 113...third support material, 114...fourth support material, 200...flower pot stand, 201...first mounting table, 201a...first surface, 201b...second surface, 202... outer frame portion, 203... first member, 204... second member, 205... third member, 206...fourth member, 207...erecting body, 208...penetration portion, 220...second mounting table, 220a...third surface, 220b...fourth surface, 222... outer frame portion, 223... first member, 224... second member, 225... third member, 226...fourth member, 227...erecting body, 228...penetration portion, 230...Support, 230a...Third support, 230b...Fourth support, 231...first support material, 232...second support material, 233...third support material, 234...fourth support material.
Claims
1. A flowerpot stand for placing flowerpots, a stand on which the flowerpot can be selectively placed on a first surface and a second surface formed on opposite sides of the stand; a support that horizontally supports the mounting table at a position spaced apart from an installation surface, The mounting table is A flowerpot stand characterized in that it can selectively take a first position in which the second surface faces the installation surface and the first surface faces upward, and a second position in which the first surface faces the installation surface and the second surface faces upward.
2. The flowerpot stand according to claim 1, The support is a first support member extending in a direction perpendicular to the first surface on the side where the first surface is provided; A flowerpot stand characterized in that it is provided with a second support extending on the side where the second surface is provided in a direction perpendicular to the second surface and opposite to the first support.
3. The flowerpot stand according to claim 2, The flowerpot stand is characterized in that the first support and the second support are formed to have different lengths.
4. The flowerpot stand according to any one of claims 1 to 3, The mounting table is The flowerpot stand is characterized in that the portion on which the flowerpot is placed is constructed by arranging round bars in a lattice pattern.
5. A flowerpot stand for placing flowerpots, a first table having a first surface for placing the flowerpot thereon and a second surface formed on the opposite side of the first surface; a second table having a third surface for placing the flowerpot thereon and a fourth surface formed on the opposite side of the third surface; a support that horizontally supports the first mounting table at a position separated from an installation surface and horizontally supports the second mounting table with the fourth surface facing the second surface, The first and second mounting tables are A flowerpot stand characterized in that it can selectively take a third position in which the third surface faces the installation surface and the first surface faces upward, and a fourth position in which the first surface faces the installation surface and the third surface faces upward.
6. 6. The flowerpot stand according to claim 5, The second surface of the first mounting table is An article can be placed on the fourth position, The fourth surface of the second mounting table is A flowerpot stand capable of placing an item thereon in the third position.
7. 6. The flowerpot stand according to claim 5, The support is a third support member extending in a direction perpendicular to the first surface on the side where the first surface is provided; A flowerpot stand characterized in that it is provided with a fourth support extending on the side on which the third surface is provided in a direction perpendicular to the third surface and opposite to the third support.
8. 8. The flowerpot stand according to claim 7, The flowerpot stand is characterized in that the third support and the fourth support are formed to have different lengths.
9. The flowerpot stand according to any one of claims 6 to 8, The first and second mounting tables are This flowerpot stand is characterized by having through-holes that penetrate in the thickness direction and allow water to pass through in the thickness direction.
10. 10. The flowerpot stand according to claim 9, The through portion is A flowerpot stand characterized in that the first and second stands are formed discontinuously over the entire surfaces thereof.
11. The flowerpot stand according to claim 10, The first and second mounting tables are The flowerpot stand is characterized in that the portion on which the flowerpot is placed is constructed by arranging rods in a grid pattern.
12. 12. The flowerpot stand according to claim 11, The part on which the flower pot is placed is The rods are arranged in a lattice pattern extending in one direction, The rod constituting the portion of the first stand on which the flowerpot is placed and the rod constituting the portion of the second stand on which the flowerpot is placed are A flowerpot stand characterized in that the flowerpot stands are arranged so as to extend in directions that intersect with each other in a plan view.
13. 13. The flowerpot stand according to claim 12, The rod material is A flowerpot stand characterized by being made of round bars.
Citation Information
Patent Citations
Placement stand of gardening plant pot
JP1998286157A