Side-wall drainage flower pot
Patent Information
- Application Number
- CN202521902309.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-04
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-09-04
AI Technical Summary
然而,当处于夏季高温环境下,植物的蒸腾作用强,土壤水分蒸发快,花盆的排水孔排水过快会导致植物缺水
[0005]根据本实用新型实施例的侧壁排水花盆,至少具有如下有益效果:植物的土壤需要及时排水时,将内盆从外盆取出,转动内盆后再放入外盆中,令封闭区与排水区错开,确保内盆中的水从排水孔排放到外盆的底部,避免内盆积水造成植物出现闷根现象;当处于夏季高温环境时,将内盆从外盆取出,转动内盆后再放入外盆中,令封闭区正对排水区,则封闭区左右两侧的两个密封块和底部的密封板与内盆的外壁之间形成封闭空间,内盆的排水区的排水孔将土壤的水排放到封闭空间后,由于封闭空间的水位上升使水从排水区最下方的排水孔回流到土壤中,使封闭区和排水区形成蓄水效果,保证土壤的水分充足,避免土壤水分蒸发过快造成植物缺水;因此,采用本实用新型的侧壁排水花盆,通过内盆与外盆的两种不同安装方式,令内盆的排水区与外盆的封闭区错开或正对,能够实现内盆的土壤排水或蓄水,适应不同的浇水场景。
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Figure CN224698404U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of flower pot technology, and in particular to a side-wall drainage flower pot. Background Technology
[0002] Flower pots are used to grow ornamental plants. They are typically equipped with drainage holes so that excess water drains away when watering, preventing water from accumulating at the bottom of the pot and causing root rot. However, in the high temperatures of summer, plants transpire rapidly, causing soil moisture to evaporate quickly. If the drainage holes drain too quickly, the plants may become dehydrated. Utility Model Content
[0003] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a side-wall drainage flowerpot, which, through two different installation methods of the inner and outer pots, allows the drainage area of the inner pot to be staggered or aligned with the closed area of the outer pot, enabling the soil in the inner pot to drain or retain water, adapting to different watering scenarios.
[0004] The side-wall drainage flowerpot according to an embodiment of the present invention includes: The outer basin has multiple spaced closed areas on its inner sidewall. Each closed area has a sealing block protruding towards the axis of the outer basin on its left and right sides. The sealing blocks extend in the vertical direction. Each closed area has a sealing plate protruding towards the axis of the outer basin at its bottom. The left and right ends of the sealing plate are respectively connected to two adjacent sealing blocks. The inner basin has multiple spaced drainage zones on its outer side wall, and each drainage zone has multiple through drainage holes. The inner basin is detachably installed inside the outer basin. All the sealing blocks and all the sealing plates seal against the outer wall of the inner basin. There is a space between the bottom of the inner basin and the bottom inner wall of the outer basin. The drainage area and the closed area are staggered, so that the drainage hole discharges water to the bottom of the outer basin; Alternatively, the drainage area and the enclosed area are arranged opposite each other, so that the drainage area and the enclosed area can store water.
[0005] The side-wall drainage flowerpot according to the embodiments of this utility model has at least the following beneficial effects: When the soil of the plant needs timely drainage, the inner pot is removed from the outer pot, rotated, and then placed back into the outer pot, so that the closed area and the drainage area are staggered, ensuring that the water in the inner pot is discharged from the drainage hole to the bottom of the outer pot, avoiding water accumulation in the inner pot and causing root rot of the plant; When in a high-temperature environment in summer, the inner pot is removed from the outer pot, rotated, and then placed back into the outer pot, so that the closed area is directly opposite the drainage area, and the two sealing blocks on the left and right sides of the closed area and the sealing plate at the bottom form a seal with the outer wall of the inner pot. The inner pot forms a closed space. After the drainage holes in the drainage area of the inner pot drain water from the soil into the closed space, the water level in the closed space rises, causing the water to flow back into the soil from the drainage hole at the bottom of the drainage area. This creates a water storage effect between the closed and drainage areas, ensuring sufficient soil moisture and preventing the plants from drying out due to excessive evaporation of soil moisture. Therefore, by using the side-wall drainage flower pot of this utility model, through two different installation methods of the inner and outer pots, the drainage area of the inner pot and the closed area of the outer pot are staggered or aligned, which can realize the drainage or water storage of the soil in the inner pot and adapt to different watering scenarios.
[0006] According to some embodiments of the present invention, each of the sealing blocks and each of the sealing plates is provided with a sealing strip on the side facing the axis of the outer basin.
[0007] According to some embodiments of the present invention, each drainage zone is provided with a sealing groove on its left and right sides, the sealing groove extending in the vertical direction, and a plurality of sealing strips corresponding to and cooperating with a plurality of sealing grooves.
[0008] According to some embodiments of this utility model, the outer diameter of the inner basin gradually decreases from top to bottom.
[0009] According to some embodiments of the present invention, the distance by which each sealing block protrudes toward the axis of the outer basin gradually increases from top to bottom.
[0010] According to some embodiments of the present invention, a breathable gap is left between the outer side wall of the inner basin and the inner side wall of the outer basin to communicate with the outside.
[0011] According to some embodiments of the present invention, the height of all the drainage holes is not lower than the height of the sealing plate, and the bottom end of at least one of the drainage holes is flush with the top surface of the sealing plate.
[0012] According to some embodiments of the present invention, the sealing plate gradually slopes downward from the side wall of the outer basin toward the axis of the outer basin.
[0013] According to some embodiments of the present invention, the top of the inner basin is higher than the top of the outer basin.
[0014] According to some embodiments of the present invention, the bottom of the outer basin is provided with a drain outlet that communicates with the outside. Attached Figure Description
[0015] Figure 1 This is a cross-sectional schematic diagram of a side-wall drainage flowerpot according to an embodiment of the present invention, showing that the drainage area and the closed area are staggered. Figure 2 This is a cross-sectional schematic diagram of the drainage area and the closed area of a side-wall drainage flowerpot according to an embodiment of the present invention; Figure 3 This is an exploded view of a side-wall drainage flowerpot according to an embodiment of the present invention; Figure 4 This is a schematic diagram of the outer basin in one embodiment of the present invention; Figure 5 This is a schematic diagram of the inner basin in one embodiment of the present invention.
[0016] Reference numerals: outer basin 100, closed area 110, sealing block 120, sealing plate 130, drain outlet 140, inner basin 200, vent gap 201, drainage area 210, drain hole 220, sealing groove 230. Detailed Implementation
[0017] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0018] In the description of this utility model, it should be understood that the terms front, back, up, down, axial, circumferential, etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0019] In the description of this utility model, "multiple" means two or more; "greater than," "less than," and "exceeding" are understood to exclude the stated number; "above," "below," and "within" are understood to include the stated number. The use of "first" and "second" in the description is merely for distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly specifying the number of indicated technical features or their sequential relationship.
[0020] In the description of this utility model, it should be noted that terms such as "setting," "installing," and "connecting" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.
[0021] The technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described below are some embodiments of this utility model, not all embodiments.
[0022] Reference Figures 1 to 5 As shown, this utility model provides a side-wall drainage flower pot.
[0023] The side-wall drainage flowerpot includes an outer pot 100 and an inner pot 200.
[0024] The outer basin 100 is cylindrical in shape and has an open top. The inner sidewall of the outer basin 100 is divided into multiple closed areas 110. The multiple closed areas 110 are arranged in a circular array along the circumference of the outer basin 100, and an open area is provided between every two adjacent closed areas 110. The function of the open area is to separate two adjacent closed areas 110 so that the drainage area 210 can switch to face the open area or the closed area 110 after the inner basin 200 is rotated.
[0025] Each enclosed area 110 has a sealing block 120 on its left and right sides. The sealing block 120 extends in the vertical direction and protrudes towards the axis of the outer basin 100. The protrusion distance of each sealing block 120 gradually increases from top to bottom. Each sealing block 120 has a sealing strip (not shown in the figure) on its side wall facing the axis of the outer basin 100. The sealing strip extends along the sealing block 120.
[0026] Multiple sealing blocks 120 on the inner wall of the outer basin 100 are arranged in a circumferential array.
[0027] Each enclosed area 110 has a sealing plate 130 at its bottom. The sealing plate 130 protrudes towards the axis of the outer basin 100 and extends circumferentially along the outer basin 100. The left and right ends of the sealing plate 130 are respectively connected to two sealing blocks 120. The top surface of each sealing plate 130 gradually slopes downward from the enclosed area 110 towards the axis of the outer basin 100. Each sealing plate 130 has a sealing strip (not shown in the figure) on its side wall facing the axis of the outer basin 100. The sealing strip extends to the two sealing blocks 120 in the left and right direction.
[0028] There is a space between the sealing block 120 and the bottom inner wall of the outer basin 100, and there is a space between the sealing plate 130 and the bottom inner wall of the outer basin 100. The side wall of the outer basin 100 is provided with a drain outlet 140. The height of the drain outlet 140 is lower than the height of the sealing plate 130, and the bottom end of the drain outlet 140 is flush with the bottom inner wall of the outer basin 100.
[0029] The inner basin 200 has a frustum structure that is larger at the top and smaller at the bottom. The top of the inner basin 200 is open, and the diameter of the inner basin 200 gradually decreases from top to bottom. The outer wall of the inner basin 200 is divided into multiple drainage areas 210. The multiple drainage areas 210 are arranged in a circular array along the circumference of the inner basin 200. There is a blank area between every two drainage areas 210. The function of the blank area is to separate two adjacent drainage areas 210 so that the drainage areas 210 can switch to face the open area or the closed area 110 after the inner basin 200 is rotated.
[0030] Each drainage zone 210 is provided with multiple drainage holes 220 that run horizontally through the zone. The multiple drainage holes 220 are distributed at intervals in the vertical direction. Each drainage zone 210 is provided with a sealing groove 230 on its left and right sides. The sealing groove 230 extends vertically and extends upward from the bottom end of the inner basin 200. There is a space between the top of the sealing groove 230 and the top of the inner basin 200.
[0031] There are two installation methods for the outer basin 100 and the inner basin 200: the first is for drainage, and the second is for water storage.
[0032] The installation method for drainage is as follows: the inner basin 200 is placed above the outer basin 100, and the inner basin 200 is rotated around the vertical axis so that the multiple drainage areas 210 of the inner basin 200 are positioned one-to-one above the multiple open areas of the outer basin 100. The multiple sealing grooves 230 on the outer side wall of the inner basin 200 are positioned one-to-one above the multiple sealing blocks 120 of the outer basin 100. Then, the inner basin 200 is inserted into the interior of the outer basin 100, so that the multiple sealing grooves 230 and the multiple sealing blocks 120 are matched one-to-one. The top of the inner basin 200 is higher than the top of the outer basin 100. An air gap 201 is formed between the inner side wall of the outer basin 100 and the outer side wall of the inner basin 200. The air gap 201 connects to the upper space, so that the water discharged from the multiple drainage holes 220 of each drainage area 210 can flow along the open area to the bottom of the outer basin 100.
[0033] The installation method for water storage is as follows: The inner basin 200 is placed above the outer basin 100. The inner basin 200 is rotated around its vertical axis, so that the multiple drainage areas 210 of the inner basin 200 are positioned one-to-one above the multiple closed areas 110 of the outer basin 100. The multiple sealing grooves 230 on the outer wall of the inner basin 200 are positioned one-to-one above the multiple sealing blocks 120 of the outer basin 100. Then, the inner basin 200 is lowered into the outer basin 100, so that the multiple sealing grooves 230 and the multiple sealing blocks 120 are matched one-to-one, allowing the sealing blocks to... The sealing strip of 120 abuts against the sealing groove 230, so that the sealing strip of the sealing plate 130 abuts against the outer wall of the inner basin 200, and the top of the inner basin 200 is higher than the top of the outer basin 100. The ventilation gap 201 connects to the upper space, so the water discharged from the drain hole 220 of each drainage area 210 flows into the closed area 110. The water is stored in the closed space between the drainage area 210 of the inner basin 200 and the closed area 110 of the outer basin 100. The stored water flows into the inner basin 200 from the drain hole 220 at the bottom of the drainage area 210, forming a water storage effect.
[0034] When the soil of the plant needs to be drained in time, remove the inner pot 200 from the outer pot 100, rotate the inner pot 200 and put it back into the outer pot 100, so that the closed area 110 and the drainage area 210 are staggered, so that the water in the inner pot 200 is drained from the drainage hole 220 to the bottom of the outer pot 100, and avoid water accumulation in the inner pot 200, which may cause the plant to suffer from root rot.
[0035] When in a high-temperature environment in summer, remove the inner pot 200 from the outer pot 100, rotate the inner pot 200 and then put it back into the outer pot 100, so that the closed area 110 is directly opposite the drainage area 210. Then, the two sealing blocks 120 on the left and right sides of the closed area 110 and the sealing plate 130 at the bottom form a closed space with the outer wall of the inner pot 200. After the drainage hole 220 of the drainage area 210 of the inner pot 200 drains the water from the soil into the closed space, the water level in the closed space rises, causing the water to flow back into the soil from the drainage hole 220 at the bottom of the drainage area 210. This creates a water storage effect between the closed area 110 and the drainage area 210, ensuring sufficient soil moisture and preventing the plants from drying out due to excessive evaporation of soil moisture.
[0036] Therefore, by using the side-wall drainage flowerpot of this utility model, through two different installation methods of the inner pot 200 and the outer pot 100, the drainage area 210 of the inner pot 200 and the closed area 110 of the outer pot 100 are staggered or directly opposite each other, which can realize the drainage or water storage of the soil in the inner pot 200 and adapt to different watering scenarios.
[0037] A sealing strip is installed between the sealing block 120 and the sealing groove 230, and between the sealing plate 130 and the outer wall of the inner basin 200. This helps to improve the sealing effect. The two sealing blocks 120 on the left and right sides of the closed area 110 and the sealing plate 130 at the bottom form a closed space with the outer wall of the inner basin 200, ensuring the water storage effect of the closed space.
[0038] The sealing groove 230 is set to position the inner basin 200 and the outer basin 100 to ensure that the drainage area 210 of the inner basin 200 and the closed area 110 of the outer basin 100 are staggered or opposite to each other.
[0039] The inner basin 200, which is wider at the top and narrower at the bottom, helps to distribute the weight of the inner basin 200 and the soil along the outer wall of the inner basin 200 to multiple sealing blocks 120 and multiple sealing plates 130, ensuring that the sealing groove 230 of the inner basin 200 can fit tightly against the sealing block 120, and that the outer wall of the inner basin 200 can fit tightly against the sealing plate 130, thereby improving the sealing effect.
[0040] The distance of the inward protrusion of the sealing block 120 gradually increases from top to bottom, so that the sealing block 120 can fit the shape of the inner basin 200 and ensure a uniform seal between the sealing block 120 and the sealing groove 230 of the inner basin 200.
[0041] An air-permeable gap 201 is formed between the inner wall of the outer pot 100 and the outer wall of the inner pot 200. Multiple drainage holes 220 of the inner pot 200 are connected to the air-permeable gap 201 to form an air-permeable channel, reducing the possibility of root suffocation in the plant.
[0042] The height of the drain hole 220 is not lower than the height of the sealing plate 130, and the top surface of the sealing plate 130 is flush with the bottom of the drain hole 220 located at the bottom, which helps the water accumulated on the inclined sealing plate 130 to flow into the soil of the inner pot 200 through the drain hole 220 located at the bottom.
[0043] When the inner basin 200 is lifted, the sealing structure between the inner basin 200 and the closed area 110 of the outer basin 100 is removed, and the water accumulated on the sealing plate 130 flows along the inclined top surface to the bottom of the outer basin 100, thus preventing water from accumulating on the top surface of the sealing plate 130 for a long time.
[0044] The top of the inner basin 200 is higher than the top of the outer basin 100, which helps the user to put the inner basin 200 in and take it out from the top of the inner basin 200.
[0045] The drain outlet 140 at the bottom of the outer basin 100 can drain water, preventing water from accumulating at the bottom of the outer basin 100 for a long time.
[0046] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.
Claims
1. A side-wall drainage flowerpot, characterized in that, include: The outer basin has multiple spaced closed areas on its inner sidewall. Each closed area has a sealing block protruding towards the axis of the outer basin on its left and right sides. The sealing blocks extend in the vertical direction. Each closed area has a sealing plate protruding towards the axis of the outer basin at its bottom. The left and right ends of the sealing plate are respectively connected to two adjacent sealing blocks. The inner basin has multiple spaced drainage zones on its side walls, and each drainage zone has multiple through drainage holes. The inner basin is detachably installed inside the outer basin. All the sealing blocks and all the sealing plates seal against the outer wall of the inner basin. There is a space between the bottom of the inner basin and the bottom inner wall of the outer basin. The drainage area and the closed area are staggered, so that the drainage hole discharges water to the bottom of the outer basin; Alternatively, the drainage area and the enclosed area are arranged opposite each other, so that the drainage area and the enclosed area can store water.
2. The side-wall drainage flowerpot according to claim 1, characterized in that, Each of the sealing blocks and each of the sealing plates has a sealing strip on the side facing the outer basin axis.
3. The side-wall drainage flowerpot according to claim 2, characterized in that, Each of the drainage zones is provided with a sealing groove on its left and right sides. The sealing groove extends in the vertical direction, and multiple sealing strips are matched with multiple sealing grooves one by one.
4. The side-wall drainage flowerpot according to claim 3, characterized in that, The outer diameter of the inner basin gradually decreases from top to bottom.
5. The side-wall drainage flowerpot according to claim 3, characterized in that, The distance by which each of the sealing blocks protrudes toward the axis of the outer basin gradually increases from top to bottom.
6. The side-wall drainage flowerpot according to claim 1, characterized in that, A ventilation gap is left between the outer side wall of the inner basin and the inner side wall of the outer basin to allow air to pass through.
7. The side-wall drainage flowerpot according to claim 6, characterized in that, The height of all the drain holes is not lower than the height of the sealing plate, and the bottom end of at least one drain hole is flush with the top surface of the sealing plate.
8. The side-wall drainage flowerpot according to claim 7, characterized in that, The sealing plate gradually slopes downward from the side wall of the outer basin towards the axis of the outer basin.
9. The side-wall drainage flowerpot according to claim 1, characterized in that, The top of the inner basin is higher than the top of the outer basin.
10. The side-wall drainage flowerpot according to claim 1, characterized in that, The bottom of the outer basin is provided with a drain outlet that connects to the outside.