Double-pillar structured pot stand with high water capacity, visible water level and load bearing capability
Patent Information
- Application Number
- KR2020240001021
- Authority / Receiving Office
- KR · KR
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2024-06-11
- Publication Date
- 2026-08-11
- Estimated Expiration
- 2034-06-11
Smart Images

Figure 112024062967695-UTM00001_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a flowerpot stand used for indoor and outdoor plant cultivation. The flowerpot stand is constructed with a double column of a sliding drawer type to support the flowerpot while maximizing the amount of water flowing down when watering the flowerpot, and features a transparent gauge installed on the outside of the stand to easily check the amount of water contained therein. Background Technology
[0002] Plant saucers are an essential element for growing plants both indoors and outdoors. When watering plants to promote growth, saucers collect the water draining from the pot, preventing excessive moisture from affecting the plant's roots.
[0003] In particular, when growing plants indoors, plant saucers play an important role in protecting the floor or furniture from water.
[0004] Conventional flowerpot stands are mainly composed of a single column structure, and as time passes, they are difficult to support the weight of the flowerpot. In addition, the amount of water contained cannot be accurately checked, so the plant roots may rot due to excessive moisture. Prior art literature
[0005] Korean Published Patent 10-2016-0073794 (Published June 27, 2016) Korean Published Utility Model 20-2017-0003848 (Published November 10, 2017) The problem to be solved
[0007] As described above, the present invention provides a flowerpot stand designed with a double column structure that allows checking the amount of water, in order to solve the structural problems of conventional flowerpot stands and the difficulty in checking the amount of water contained therein. means of solving the problem
[0008] To solve the aforementioned technical problem, the present invention provides a flowerpot stand comprising an outer case that supports a flowerpot, a water tank portion coupled to the outer case to receive water discharged from the flowerpot, and a cover portion coupled to the upper part where the outer case and the water tank portion are combined, wherein the cover portion is configured to include a drainage hole to allow water discharged from the flowerpot to flow into the water tank portion, and the water tank portion has a water level indicator formed therein to check the amount of water contained therein.
[0009] The above-mentioned water tank may be configured to include a water receiving section for holding water, a water tank side wall that forms a closed curved surface by separating the water receiving section from an external space where water is not contained, and a water tank bottom surface formed opposite to the cover section with the water tank side wall between them so that water can be contained without flowing out.
[0010] The above-described outer case is configured to include a water tank receiving portion accommodating the water tank portion, an outer case side wall forming an area of the water tank receiving portion, and an outer case bottom surface formed oppositely with the cover portion and the outer case side wall in between, and the water tank portion can be slidably coupled to the water tank receiving portion of the outer case.
[0011] The water receiving portion of the above-mentioned tank section is configured to include at least one tank section partition formed by connecting one end thereof to the side wall of the tank section, wherein the at least one tank section partition is formed as a double partition with a tank section slit having a predetermined width between them, and one end of the double partition is interconnected, and the other end is connected to the side wall of the tank section with the tank section slit between them, thereby forming an external area separated from the water receiving portion by the space where the slit is formed. The external case is configured to include at least one external case partition that divides the tank section receiving portion, and the external case partition can be fitted into the tank section slit and connected when the external case accommodates and connects the tank section.
[0012] The double partition wall constituting the slit of the water tank section may be formed with a height lower than that of the outer case partition wall to reduce friction when the water tank section and the outer case are connected or disconnected.
[0013] The side wall of the outer case is provided with a cover portion coupling portion to which the cover portion is coupled, and the cover portion may be coupled to the outer case partition wall or at a higher position so that the water tank portion can be easily coupled / detached.
[0014] In a predetermined area of the side wall of the tank section where the slit is not formed, a tank front section is formed having an outer size larger than that of the side wall of the area where the slit is formed by a predetermined value, and the side wall of the outer case is formed with the same outer size as the tank front section so that when the tank section is joined, it comes into contact with the tank front section to form the outer part of the flowerpot stand, and the bottom surface of the outer case can be formed to accommodate the area formed where the tank front section and the outer case side wall come into contact.
[0015] The above-mentioned water level checking unit is configured with a transparent window on the front of the tank to check the amount of water contained in the tank, and the double partition of the tank slit may be configured to include a slit opening into which the outer case partition is fitted and a horizontal beam on which the double partition opposite the slit opening is interconnected when combined with the outer case. Effects of the invention
[0016] The flowerpot stand of the present invention, designed with a double column structure capable of accommodating a large volume of water and allowing the amount of water to be checked, is designed to withstand the weight of the flowerpot, thereby preventing damage to the flowerpot or damage and bending of the flowerpot stand itself.
[0017] In addition, when watering the pot, the water discharged from the pot is stored inside the pot saucer, and the amount of water stored inside the pot saucer can be checked.
[0018] Even when growing plants in pots using hydroponics, you can use water efficiently by checking the amount of water in the saucer. Brief explanation of the drawing
[0019] The following drawings attached to this specification illustrate preferred embodiments of the present invention and serve to further enhance understanding of the technical concept of the present invention in conjunction with the detailed description of the invention described above; therefore, the present invention should not be interpreted as being limited only to the matters described in such drawings. FIG. 1 is a perspective view illustrating a flowerpot stand having a square structure, which is an embodiment of the present invention. FIG. 2 is a perspective view illustrating the separated state of a flowerpot stand having a square structure, which is an embodiment of the present invention. FIG. 3 is a perspective view illustrating the water tank portion of a flowerpot stand having a square structure, which is an embodiment of the present invention. FIG. 4 is a perspective view illustrating the outer case of a flowerpot stand having a square structure, which is an embodiment of the present invention. FIG. 5 is a perspective view illustrating a flowerpot stand having a circular structure, which is another embodiment of the present invention. FIG. 6 is a perspective view illustrating the separated state of a flowerpot stand having a circular structure, which is another embodiment of the present invention. FIG. 7 is a perspective view illustrating a water tank portion of a flowerpot stand having a circular structure, which is another embodiment of the present invention. FIG. 8 is a perspective view illustrating an outer case of a flowerpot stand having a circular structure, which is another embodiment of the present invention. Specific details for implementing the invention
[0020] Hereinafter, embodiments of the present invention will be described in detail with reference to the attached drawings. However, the present invention is not limited to the embodiments disclosed below but may be implemented in various different forms, and these embodiments are provided merely to ensure that the disclosure of the present invention is complete and to fully inform those skilled in the art of the scope of the invention.
[0021] The present invention relates to a flowerpot stand comprising an outer case (300) that supports a flowerpot, a water tank (200) coupled to the outer case (300) to receive water discharged from the flowerpot, and a cover (100) coupled to the upper part where the outer case (300) and the water tank (200) are combined, wherein the cover (100) is configured to include a drain hole (101) to allow water discharged from the flowerpot to flow into the water tank (200), and the water tank (200) has a water level indicator (211) formed therein to check the amount of water contained therein.
[0022] As an embodiment of the present invention, a flowerpot stand having a square structure is described in detail with reference to the drawings.
[0023] 1. Flowerpot stand with a square structure
[0024] As illustrated in FIGS. 1 and 2, the square-structured flowerpot stand of the present invention is formed such that a cover part (100) including a drainage hole (101), a water tank part (200) including a handle (212) and a water level check part (211) on the front, and an outer case (300) can be combined or separated from each other. A detailed description of each component is as follows.
[0025] 1.1. Cover
[0026] As illustrated in FIG. 1, the cover portion (100) of the present invention includes a drainage hole (101) that allows water discharged from a flowerpot to be received into a water tank portion (200) by placing a flowerpot on it.
[0027] The cover portion (100) of the present invention may be manufactured to a size greater than a predetermined size that can stably support a flowerpot. The shape of the cover portion (100) may be manufactured in a square structure according to the combined shape of the water tank portion (200) and the outer case (300) described later.
[0028] The above drain hole (101) allows water discharged through the flowerpot to flow into the water tank (200) through the drain hole (101) when the flowerpot is placed on the cover part (100) and watered. When the flowerpot is used for hydroponic cultivation, the above drain hole (101) can be used as a passage to supply water stored in the water tank (200) to the roots.
[0029] Additionally, the drain hole (101) of the cover portion (100) may serve as a handle for separating the cover portion (100) from the water tank portion (200) and the outer case (300).
[0030] As illustrated in FIG. 1, the cover portion (100) can be mounted at a lower height to prevent water from flowing out of the flowerpot stand in the event of an external impact or an overflow of water capacity.
[0031] This may vary depending on the predetermined height at which the water tank (200) and the outer case (300) described later are combined.
[0032] 1.2. Water tank section
[0033] The water tank (200) of the present invention has a water receiving portion (220) in which water flowing in through the drain hole (101) is contained, and the water receiving portion (220) can contain at least 2 liters of water.
[0034] Since it is designed with a larger capacity compared to the capacity of conventional flowerpot stands, it can prevent water overflow when accommodating water discharged from the flowerpot.
[0035] The material of the above-mentioned water tank (200) can be made of a durable and water-resistant material, and can prevent deformation or damage even with long-term use.
[0036] As described above, the water level checker (211) is included in the front part (210) of the water tank, which is composed of a transparent window, to prevent water from overflowing outside the flowerpot stand and to check the amount of water contained in the water tank (200).
[0037] The amount of water contained in the water receiving section (220) can be checked through the transparent window of the water level checking section (211). The transparent window may have a scale marked to check the water level of at least 2 liters, and the scale may change according to the amount of water contained in the water receiving section (220), and the transparent window may change to a different color so that the water level can be visually checked through the scale.
[0038] Additionally, the front part (210) of the water tank may include a handle (212) for attaching / detaching the outer case (300) and the water tank part (200).
[0039] The handle (212) can prevent water from overflowing when the water tank (200) filled with water is detached from the outer case (300).
[0040] The handle (212) has a structure that is recessed inward by a predetermined length, and the inside may have a concave structure for attaching / detaching the water tank (200).
[0041] As described above, the water tank (200) has a water receiving section (220) in which water flowing in through the drain hole (101) is contained, and the water receiving section (220) can hold at least 2 liters of water.
[0042] As illustrated in FIG. 3, the water tank section (200) may be composed of a water tank section side wall (221) that forms a closed curved surface by separating a water receiving section (220) in which water is contained and an external space in which water is not contained, and a water tank section bottom surface (222) designed to contain water so that it is contained without flowing out.
[0043] The bottom surface (222) of the above-mentioned water tank section is formed by being connected to the side wall (221) of the water tank section and can be formed facing each other with the cover section (100) and the side wall (221) of the water tank section in between.
[0044] The bottom surface (222) of the above-mentioned water tank is connected to the side wall (221) of the water tank and is designed so that water is contained and does not flow out, which increases the stability of the water tank (200) and can absorb the impact when water is contained.
[0045] As described above, the water tank (200), which is composed of a water receiving section (220), a water tank side wall (221), and a water tank bottom surface (222), can be made of a durable and water-resistant material to prevent deformation or damage even after long-term use.
[0046] The flowerpot stand of the present invention is designed with a double column structure to withstand the load of the flowerpot and thereby prevent damage to the flowerpot or damage or bending of the flowerpot stand itself.
[0047] The above double column structure is explained in detail as follows.
[0048] 1.2.1. Double-column structure of the water tank section
[0049] As illustrated in FIG. 3, the water receiving portion (220) of the water tank portion (200) includes at least one water tank partition (223) formed by connecting one end thereof to the water tank portion side wall (221).
[0050] The above-mentioned at least one tank section partition (223) is formed as a double partition with a tank section slit (230) having a predetermined width in between, and one end of the double partition is interconnected, and the other end is connected to the tank section side wall (221) with the tank section slit (230) in between, thereby forming the space where the slit (230) is formed as an external area separated from the water receiving section (220), so that the tank section (200) of the present invention can be designed as a double column structure.
[0051] The structural strength of the water receiving section (220) can be increased through the above-mentioned water tank partition (223). The above-mentioned water tank partition (223) is formed as a double partition with a slit (230) having a predetermined width in between, and is a structure in which two parallel partitions are connected to each other while forming the slit (230).
[0052] Additionally, when the double partition of the above-mentioned tank slit (230) is combined with the outer case (300), it may be configured to include a horizontal crossbeam (224) in which the double partition opposite the slit opening (240) is interconnected with the slit opening (240) to which the outer case partition (312) is combined.
[0053] The flowerpot stand of the present invention can be designed to minimize the contact surface with the floor to which the load is transmitted, in order to minimize the residue on the floor caused by the load.
[0054] Here, the contact area with the floor may refer to the area occupied by the floor surface including the double partition of the slit (230) between the slit opening (240) and the cross beam (224).
[0055] 1.3. External Case
[0056] As illustrated in FIG. 4, the outer case (300) of the present invention may be configured to include a water tank receiving portion (310) that accommodates the water tank portion (200) described above, an outer case side wall (311) that forms an area of the water tank receiving portion (310), and an outer case bottom surface (313) formed opposite the outer case side wall (311) with the cover portion (100) in between.
[0057] The above water tank portion (200) can be slidably coupled to the water tank portion receiving portion (310) of the above outer case (300), and after the coupling, the above cover portion (100) can be covered to form a flowerpot stand having a square structure of the present invention as shown in FIG. 1.
[0058] As illustrated in FIG. 4, the outer case (300) is configured to include at least one outer case partition (312) that divides the water tank receiving portion (310), and the outer case partition (312) can be fitted into the water tank slit (230) described above when the outer case (300) is coupled to receive the water tank portion (200).
[0059] When attaching / detaching the above-mentioned water tank part (200) and the above-mentioned outer case (300), the handle (212) of the water tank front part (210) can be used, and the attachment / detaching can be slidably attached / detached.
[0060] In the above coupling / detachment, the double partition constituting the water tank slit (230) may be formed with a height lower than that of the outer case partition (312) to reduce friction.
[0061] In other words, the slit (230) can more easily find its way into the connection path due to the low height of the partition wall when connected, and can also easily come out when detached.
[0062] As illustrated in FIG. 4, the outer case side wall (311) is provided with a cover portion coupling portion (320) to which the cover portion (100) is coupled, and the cover portion (100) may be coupled to the outer case partition wall (312) or at a higher position so that the water tank portion (200) can be easily coupled / decoupled.
[0063] The outer case side wall (311) may be formed with the same outer size as the front part (210) of the water tank so that when the water tank part (200) is combined, it comes into contact with the front part (210) of the water tank to form the outer part of the flowerpot stand.
[0064] Additionally, the bottom surface of the outer case may be formed to accommodate an area formed where the front part (210) of the water tank and the side wall (311) of the outer case come into contact.
[0065] To this end, in a predetermined area of the side wall (221) of the tank section where the slit (230) is not formed, a tank front section (210) may be formed having an outer size larger by a predetermined value than the side wall of the area where the slit (230) is formed.
[0066] As such, the flowerpot stand of the present invention can solve the aesthetic problem of placing a flowerpot on a conventional flowerpot stand by combining the outer case (300), the water tank part (200), and the cover part (100) to form an integrated exterior.
[0067] The above description relates to a flowerpot stand having a square structure, which is an embodiment of the present invention.
[0068] Below, another embodiment of the present invention, a flowerpot stand having a circular structure, is described in detail with reference to the drawings.
[0069] 2. Flowerpot stand with a circular structure
[0070] As illustrated in FIGS. 5 and 6, the flowerpot stand having a circular structure according to the present invention is in a form in which a cover part (100) including a drainage hole (101), a water tank part (200) including a handle (212) and a water level check part (211) on the front, and an outer case (300) can be combined or separated from each other. A detailed description of each component is as follows.
[0071] 2.1. Cover
[0072] As illustrated in FIG. 5, the cover portion (100) of the present invention includes a drainage hole (101) that allows water discharged from a flowerpot to be received into a water tank portion (200) by placing a flowerpot on it.
[0073] The cover portion (100) of the present invention may be manufactured to a size greater than a predetermined size that can stably support a flowerpot. The shape of the cover portion (100) may be manufactured in a circular structure according to the combined shape of the water tank portion (200) and the outer case (300) described later.
[0074] The above drain hole (101) allows water discharged through the flowerpot to flow into the water tank (200) through the drain hole (101) when the flowerpot is placed on the cover part (100) and watered. When the flowerpot is used for hydroponic cultivation, the above drain hole (101) can be used as a passage to supply water stored in the water tank (200) to the roots.
[0075] Additionally, the drain hole (101) of the cover portion (100) may serve as a handle for separating the cover portion (100) from the water tank portion (200) and the outer case (300).
[0076] As illustrated in FIG. 5, the cover portion (100) can be mounted at a lower height to prevent water from flowing out of the flowerpot stand in the event of an external impact or an overflow of water capacity.
[0077] This may vary depending on the predetermined height at which the water tank (200) and the outer case (300) described later are combined.
[0078] 2.2. Water Tank Section
[0079] The water tank (200) of the present invention has a water receiving portion (220) in which water flowing in through the drain hole (101) is contained, and the water receiving portion (220) can contain at least 2 liters of water.
[0080] Since it is designed with a larger capacity compared to the capacity of conventional flowerpot stands, it can prevent water overflow when accommodating water discharged from the flowerpot.
[0081] The material of the above-mentioned water tank (200) can be made of a durable and water-resistant material, and can prevent deformation or damage even with long-term use.
[0082] As described above, the water level checker (211) is included in the front part (210) of the water tank, which is composed of a transparent window, to prevent water from overflowing outside the flowerpot stand and to check the amount of water contained in the water tank (200).
[0083] The amount of water contained in the water receiving section (220) can be checked through the transparent window of the water level checking section (211). The transparent window may have a scale marked to check the water level of at least 2 liters, and the scale may change according to the amount of water contained in the water receiving section (220), and the transparent window may change to a different color so that the water level can be visually checked through the scale.
[0084] Additionally, the front part (210) of the water tank may include a handle (212) for attaching / detaching the outer case (300) and the water tank part (200).
[0085] The handle (212) can prevent water from overflowing when the water tank (200) filled with water is detached from the outer case (300).
[0086] The handle (212) has a structure that is recessed inward by a predetermined length, and the inside may have a concave structure for attaching / detaching the water tank (200).
[0087] As described above, the water tank (200) has a water receiving section (220) in which water flowing in through the drain hole (101) is contained, and the water receiving section (220) can hold at least 2 liters of water.
[0088] As illustrated in FIG. 7, the water tank section (200) may be composed of a water tank section side wall (221) that forms a closed curved surface by separating a water receiving section (220) in which water is contained and an external space in which water is not contained, and a water tank section bottom surface (222) designed to contain water so that it does not flow out.
[0089] The bottom surface (222) of the above-mentioned water tank section is formed by being connected to the side wall (221) of the water tank section and can be formed facing each other with the cover section (100) and the side wall (221) of the water tank section in between.
[0090] The bottom surface (222) of the above-mentioned water tank is connected to the side wall (221) of the water tank and is designed so that water is contained and does not flow out, which increases the stability of the water tank (200) and can absorb the impact when water is contained.
[0091] As described above, the water tank (200), which is composed of a water receiving section (220), a water tank side wall (221), and a water tank bottom surface (222), can be made of a durable and water-resistant material to prevent deformation or damage even after long-term use.
[0092] The flowerpot stand of the present invention is designed with a double column structure to withstand the load of the flowerpot and thereby prevent damage to the flowerpot or damage or bending of the flowerpot stand itself.
[0093] The above double column structure is explained in detail as follows.
[0094] 2.2.1. Double-column structure of the water tank section
[0095] As illustrated in FIG. 7, the water receiving portion (220) of the water tank portion (200) includes at least one water tank partition (223) formed by connecting one end thereof to the water tank portion side wall (221).
[0096] The above-mentioned at least one tank section partition (223) is formed as a double partition with a tank section slit (230) having a predetermined width in between, and one end of the double partition is interconnected, and the other end is connected to the tank section side wall (221) with the tank section slit (230) in between, thereby forming the space where the slit (230) is formed as an external area separated from the water receiving section (220), so that the tank section (200) of the present invention can be designed as a double column structure.
[0097] The structural strength of the water receiving section (220) can be increased through the above-mentioned water tank partition (223). The above-mentioned water tank partition (223) is formed as a double partition with a slit (230) having a predetermined width in between, and is a structure in which two parallel partitions are connected to each other while forming the slit (230).
[0098] Additionally, when the double partition of the above-mentioned tank slit (230) is combined with the outer case (300), it may be configured to include a horizontal crossbeam (224) in which the double partition opposite the slit opening (240) is interconnected with the slit opening (240) to which the outer case partition (312) is combined.
[0099] The flowerpot stand of the present invention can be designed to minimize the contact surface with the floor to which the load is transmitted, in order to minimize the residue on the floor caused by the load.
[0100] Here, the contact area with the floor may refer to the area occupied by the floor surface including the double partition of the slit (230) between the slit opening (240) and the cross beam (224).
[0101] 2.3. External Case
[0102] As illustrated in FIG. 8, the outer case (300) of the present invention may be configured to include a water tank receiving portion (310) that accommodates the water tank portion (200) described above, an outer case side wall (311) that forms an area of the water tank receiving portion (310), and an outer case bottom surface (313) formed oppositely with the cover portion (100) and the outer case side wall (311) in between, in order to be combined with the water tank portion (200) described above.
[0103] The above water tank portion (200) can be slidably coupled to the water tank portion receiving portion (310) of the above outer case (300), and after the coupling, the above cover portion (100) can be covered to form a flowerpot stand having a square structure of the present invention as shown in FIG. 1.
[0104] As illustrated in FIG. 8, the outer case (300) is configured to include at least one outer case partition (312) that divides the water tank receiving portion (310), and the outer case partition (312) can be fitted into the water tank slit (230) described above when the outer case (300) is combined to receive the water tank portion (200).
[0105] When attaching / detaching the above-mentioned water tank part (200) and the above-mentioned outer case (300), the handle (212) of the water tank front part (210) can be used, and the attachment / detaching can be slidably attached / detached.
[0106] In the above coupling / detachment, the double partition constituting the water tank slit (230) may be formed with a height lower than that of the outer case partition (312) to reduce friction.
[0107] In other words, the slit (230) can more easily find its way into the connection path due to the low height of the partition wall when connected, and can also easily come out when detached.
[0108] As illustrated in FIG. 8, the outer case side wall (311) is provided with a cover portion coupling portion (320) to which the cover portion (100) is coupled, and the cover portion (100) may be coupled to the outer case partition wall (312) or at a higher position so that the water tank portion (200) can be easily coupled / decoupled.
[0109] The outer case side wall (311) may be formed with the same outer size as the front part (210) of the water tank so that when the water tank part (200) is combined, it comes into contact with the front part (210) of the water tank to form the outer part of the flowerpot stand.
[0110] Additionally, the bottom surface of the outer case may be formed to accommodate an area formed where the front part (210) of the water tank and the side wall (311) of the outer case come into contact.
[0111] To this end, in a predetermined area of the side wall (221) of the tank section where the slit (230) is not formed, a tank front section (210) may be formed having an outer size larger by a predetermined value than the side wall of the area where the slit (230) is formed.
[0112] As such, the flowerpot stand of the present invention can solve the aesthetic problem of placing a flowerpot on a conventional flowerpot stand by combining the outer case (300), the water tank part (200), and the cover part (100) to form an integrated exterior.
[0113] Although the technical concept of the present invention as described above has been specifically explained according to the above embodiments, it should be noted that the above embodiments are for illustrative purposes only and are not intended to be limiting. Furthermore, those skilled in the art will understand that various embodiments are possible within the scope of the technical concept of the present invention. Explanation of the symbols
[0114] 100: Cover part 101: Drain hole 200: Aquarium section 210: Aquarium front section 211: Water level indicator 212: Handle 220: Water receiving section 221: Water tank side wall 222: Bottom surface of the tank section 223: Tank section bulkhead 224: Horizontal beam 230: Slit 240: Slit opening 300: External case 310: Water tank receiving section 311: External case side wall 312: External case bulkhead 313: External case bottom surface 320: Cover joint
Claims
Claim 1 It is configured to include: an outer case supporting a flowerpot; a water tank portion coupled to the outer case and receiving water discharged from the flowerpot; and a cover portion coupled to the upper part where the outer case and the water tank portion are combined; wherein the cover portion is configured to include a drainage hole to allow water discharged from the flowerpot to flow into the water tank portion, and the water tank portion is formed with a water level indicator portion to check the amount of water contained therein, and the water tank portion comprises a water receiving portion for holding water; It is configured to include: a water tank side wall of a side portion that forms a closed surface by separating a water receiving portion and an external space that is not filled with water; a water tank bottom surface formed by being connected to the water tank side wall so that water can be contained without flowing out, and formed oppositely with the cover portion and the water tank side wall between them; and the outer case is configured to include: a water tank receiving portion that accommodates the water tank; an outer case side wall that forms an area of the water tank receiving portion; and an outer case bottom surface formed oppositely with the cover portion and the outer case side wall between them; wherein the water tank is slidably coupled to the water tank receiving portion of the outer case, and the water receiving portion of the water tank comprises at least one water tank partition wall formed by having one end coupled to the water tank side wall; A flowerpot stand comprising, wherein at least one water tank partition is formed as a double partition with a water tank slit having a predetermined width between them, one end of the double partition is interconnected, and the other end is each coupled to the water tank side wall with the water tank slit between them to form an external area separated from the water receiving portion in the space where the slit is formed, and the outer case is configured to include at least one outer case partition that divides the water tank receiving portion, and the outer case partition is fitted into the water tank slit and coupled when the outer case accommodates the water tank. Claim 2 delete Claim 3 delete Claim 4 A flowerpot stand according to claim 1, wherein the double partition constituting the slit of the water tank is formed with a height lower than that of the outer case partition, so as to reduce friction when the water tank and the outer case are coupled / decoupled. Claim 5 In claim 4, the outer case side wall is provided with a cover part coupling part to which the cover part is coupled, and the cover part is coupled to the outer case partition wall or at a higher position so that the water tank part is easily coupled / detachable. Claim 6 In claim 5, a front portion of the tank is formed in a predetermined area of the side wall of the tank portion where the slit is not formed, and the outer size of the front portion of the tank is larger by a predetermined value than the side wall of the area where the slit is formed; and the side wall of the outer case is formed with the same outer size as the front portion of the tank so as to come into contact with the front portion of the tank to form the outer portion of the flowerpot stand when the tank portion is combined, and the bottom surface of the outer case is formed to accommodate the area formed where the front portion of the tank and the side wall of the outer case come into contact. Claim 7 In claim 6, the water level checking unit is a flowerpot stand composed of a transparent window on the front of the water tank so as to check the amount of water contained in the water tank. Claim 8 In claim 7, the double partition of the water tank slit comprises: a slit opening into which the outer case partition is fitted when combined with the outer case; and a cross beam to which the double partition opposite the slit opening is interconnected.
Citation Information
Patent Citations
Water stand containing water vessel
KR200353522Y1
flower pot with water tank
KR2019980033153U