Assembled flowerpot for three-dimensional greening
Through the innovative design of components such as planting troughs, connecting sleeves, connecting columns, and climbing poles in the modular flower pot, the problems of simple flower pot structure and water loss are solved, realizing the expansion of vertical greening and water management, and improving the practicality and planting efficiency of the flower pot.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-03-10
AI Technical Summary
The existing flower pots have a simple internal structure, lack climbing mechanisms for vertical greening plants, and the lack of a support structure at the bottom leads to water loss and increases the frequency of watering.
The design incorporates planting troughs, connecting sleeves, connecting columns, climbing poles, and load-bearing components, including collection troughs, absorbent sponges, and support plates. Through the combination of these components, vertical greenery can climb and collect water, reducing water loss.
It expands the planting area of vertical greening, reduces the frequency of watering, improves the practicality and multi-functionality of flower pots, keeps the soil moist, and reduces water waste.
Smart Images

Figure CN223979193U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of environmental afforestation, especially relates to a kind of assembled flowerpot for three-dimensional afforestation. BACKGROUND
[0002] Three-dimensional afforestation is the general term of many afforestation forms except plane afforestation, and is one of important forms of urban afforestation, which plays an important role in improving urban ecological environment and enriching urban afforestation landscape. The current common three-dimensional afforestation mainly adopts the following way: selecting climbing plants or other plants for planting, and making the planted plants adhere or paste on various structures and other space structures. Therefore, it is necessary to design an assembled flowerpot for three-dimensional afforestation.
[0003] The internal structure of the existing flowerpot is relatively simple, and the single pot body is not suitable for planting three-dimensional afforestation plants. In addition, the planting needs to rely on the wall to realize the planting and laying of three-dimensional afforestation plants. This planting method is not suitable for open places, which affects the limitation of planting three-dimensional afforestation plants in the later period. At the same time, most of the single pot body does not have a bearing mechanism, which leads to the loss of water irrigation in the pot, and workers need to frequently irrigate the pot. UTILITY MODEL CONTENT
[0004] The utility model aims to provide an assembled flowerpot for three-dimensional afforestation, which solves the problem that the internal structure of the existing flowerpot is relatively simple, most of which do not have a climbing mechanism for planting three-dimensional afforestation plants, which affects the planting range of three-dimensional afforestation in the later period. At the same time, the bottom of the flowerpot does not have a bearing mechanism, which easily leads to the loss of water irrigation in the flowerpot, and increases the irrigation steps in the later period.
[0005] To achieve the above-mentioned purpose, an assembled flowerpot for three-dimensional afforestation is provided, which comprises a planting groove. Two ends of the planting groove on both sides are provided with connecting sleeves. The top of four groups of connecting sleeves is inserted into connecting columns extending to the outside. The bottom of four groups of connecting columns on one side close to each other is provided with a climbing rod. The side close to each other of four groups of climbing rods is connected. The middle position of the bottom of the planting groove is uniformly provided with a drainage port. The bottom of the planting groove is provided with a bearing assembly.
[0006] According to the assembled flowerpot for three-dimensional afforestation, the bearing assembly comprises a collecting groove, an adsorption sponge and a support plate. The support plate is provided with two groups. Two groups of support plates are installed on both sides of the bottom of the planting groove. The bottom of two groups of support plates is commonly provided with a collecting groove, and the collecting groove is matched with the drainage port. The adsorption sponge is provided with multiple groups. Multiple groups of adsorption sponges are installed on both sides of the bottom of the planting groove, and the adsorption sponge extends to the inner bottom of the collecting groove and is matched with it.
[0007] According to the assembled flowerpot for three-dimensional greening, recesses are formed in the top and bottom of the four connecting sleeves, and the recesses are clamped with the connecting columns.
[0008] According to the assembled flowerpot for three-dimensional greening, the inner bottom of the planting groove is formed by a V-shaped inclined surface, and drainage openings are uniformly formed in the middle position of the V-shaped inclined surface, and the two sides of the V-shaped inclined surface are uniformly provided with adsorbing sponges extending to the outside of the planting groove.
[0009] According to the assembled flowerpot for three-dimensional greening, anti-skid sleeves are arranged on the top and bottom of the four connecting columns, and the anti-skid sleeves are made of rubber.
[0010] According to the assembled flowerpot for three-dimensional greening, the inner bottom of the collecting groove is connected with the bottom of the two supporting plates, and the top of the collecting groove is spaced apart from the bottom of the planting groove.
[0011] The above-mentioned scheme has the beneficial effects that: through the structural design of the connecting columns and the climbing rods matched with the assembly design of the connecting sleeves, the planting grooves and the components above the same, the planting grooves can be used to plant planar green plants and three-dimensional green plants in the later period, the three-dimensional green plants can climb outside the connecting columns or the climbing rods, the wall is not needed, the planting is applicable to wide places, the planting range of the three-dimensional greening in the later period is expanded, and the practicality and the multifunctionality of the flowerpot in the later period are increased.
[0012] Meanwhile, through the structural design of the planting grooves, the connecting sleeves and the connecting columns, the combination function of the multiple planting grooves and the components above the same can be realized, so as to further increase the applicability of the three-dimensional greening planting, finally, through the structural design of the drainage openings, the adsorbing sponges, the collecting grooves and the supporting plates, the bearing function of the inner bottom of the planting grooves can be realized, the excess water during watering can be collected and stored, the water source waste is reduced, the water in the collecting grooves can be adsorbed through the adsorbing sponges, the soil in the inner bottom of the planting grooves can be kept wet, and the watering steps of the operators are reduced.
[0013] The additional aspects and advantages of the present application will be partly given in the following description, partly will become obvious from the following description, or will be understood through the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0014] The present application will be further described below in combination with the drawings and embodiments;
[0015] Figure 1 It is a three-dimensional structure view of the planting groove of the assembled flowerpot for three-dimensional greening of the present application;
[0016] Figure 2 It is a three-dimensional structure sectional view of the planting groove of the assembled flowerpot for three-dimensional greening of the present application;
[0017] Figure 3 This is a three-dimensional structural diagram of an assembled flowerpot climbing pole for vertical greening according to the present invention;
[0018] Figure 4 This is a front sectional view of the assembled flowerpot for vertical greening according to the present invention.
[0019] Legend:
[0020] 1. Planting trough; 2. Collection trough; 3. Absorbent sponge; 4. Drainage outlet; 5. Support plate; 6. Connecting column; 7. Climbing pole; 8. Connecting sleeve. Detailed Implementation
[0021] This section will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the present utility model, but they should not be construed as limiting the scope of protection of the present utility model.
[0022] Reference Figures 1-4 This utility model provides an assembled flowerpot for vertical greening, comprising: a planting trough 1, with connecting sleeves 8 installed at both ends of both sides of the planting trough 1, and connecting posts 6 extending to the outside of the top of each of the four sets of connecting sleeves 8. Climbing rods 7 are installed at the bottom of the four sets of connecting posts 6 on the side closest to each other, and the four sets of climbing rods 7 are connected on the side closest to each other. Drainage outlets 4 are evenly distributed in the middle of the bottom of the planting trough 1. The bottom of the planting trough 1 is provided with a support component. This solves the problems of existing flowerpots having a relatively simple internal structure, most of which do not have a climbing mechanism for planting vertical greening plants, thus affecting the planting range of vertical greening in the later stage. At the same time, the lack of a support mechanism at the bottom of the flowerpot makes it easy for the water in the flowerpot to be lost, increasing the number of watering steps in the later stage.
[0023] The supporting components include a collection trough 2, an absorbent sponge 3, and a support plate 5. There are two sets of support plates 5, which are installed on both sides of the bottom of the planting trough 1. The collection trough 2 is installed at the bottom of both sets of support plates 5, and the collection trough 2 is matched with the drain outlet 4. There are multiple sets of absorbent sponges 3, which are installed on both sides of the bottom of the planting trough 1. The absorbent sponges 3 extend to the bottom of the collection trough 2 and match it, so as to facilitate the storage of excess water or external water sources during irrigation. Finally, the water is absorbed by the absorbent sponges 3, so that the absorbent sponges 3 can always keep the soil at the bottom of the planting trough 1 moist.
[0024] The top and bottom of the four sets of connecting sleeves 8 are all provided with grooves, and the grooves engage with the connecting posts 6, which facilitates the insertion and connection design of the connecting posts 6. The inner bottom of the planting trough 1 is made of a V-shaped inclined surface, and the middle of the V-shaped inclined surface is evenly provided with drainage outlets 4. The two sides of the V-shaped inclined surface are evenly installed with absorbent sponges 3 extending to the outside of the planting trough 1. The V-shaped inclined surface design facilitates the drainage of excess water in the later stage, reducing the accumulation of water. The top and bottom of the four sets of connecting posts 6 are provided with anti-slip sleeves, and the anti-slip sleeves are made of rubber material, which facilitates the firmness of the insertion and connection between the connecting posts 6 and the connecting sleeves 8. The two sides of the inner bottom of the collection trough 2 are connected to the bottom of the two sets of support plates 5, and there is a gap between the top of the collection trough 2 and the bottom of the planting trough 1, which facilitates the addition of water to the inside of the collection trough 2 in the later stage.
[0025] Working principle: During use, the operator can directly take the connecting column 6 and insert the climbing rod 7 into the connecting sleeve 8 to complete the assembly of the connecting column 6 and climbing rod 7 with the planting trough 1 and above. This facilitates the subsequent planting of vertical greenery and allows the vertical greenery to climb on the outside of the connecting column 6 and climbing rod 7 without the need for external walls or other easily climbable objects, enabling the planting of vertical greenery in large areas. Finally, by taking another set of planting trough 1 and above and inserting the bottom of the connecting sleeve 8 into the top of the outside of the connecting column 6, the assembly of multiple sets of planting trough 1 can be completed. Figure 4 As shown, this is to facilitate the improvement of the adaptability of vertical greening planting;
[0026] When watering after planting, excess water can flow into the collection trough 2 through the drain outlet 4 for collection and storage. At the same time, the collection trough 2 can also store external water, so that the water inside the collection trough 2 can be absorbed by the absorbent sponge 3 and then enter the bottom of the planting trough 1 to moisturize the soil stored at the bottom of the planting trough 1, reduce the number of watering steps for operators, reduce water loss, and improve the quality of the vertical greening planting.
[0027] 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 scope of 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. An assembled flowerpot for vertical greening, comprising: The utility model provides a kind of planting groove (1), it is characterized in that, the planting groove (1) both sides both ends are equipped with connecting sleeve (8), the top of four groups connecting sleeve (8) is inserted and combined with the connecting column (6) extending to its outside, the bottom of four groups connecting column (6) is equipped with climbing pole (7) in close proximity to one side, and four groups climbing pole (7) are connected in close proximity to one side, the middle position of the bottom of the planting groove (1) is evenly provided with drain (4), and the bottom of the planting groove (1) is equipped with bearing assembly.
2. The assembled flowerpot for the stereoscopic greening according to claim 1, characterized by, The bearing assembly includes collecting groove (2), adsorption sponge (3) and support plate (5), the support plate (5) is equipped with two groups, two groups of support plate (5) are installed on the bottom of planting groove (1) both sides, the bottom of two groups of support plate (5) is equipped with collecting groove (2) in common, and collecting groove (2) is matched with drain (4), the adsorption sponge (3) is equipped with multiple groups, multiple groups of adsorption sponge (3) are installed on the bottom of planting groove (1) both sides, and adsorption sponge (3) extends to the inner bottom of collecting groove (2) and is matched therewith.
3. The assembled flowerpot for the stereoscopic greening according to claim 1, characterized by, The top and bottom of four groups connecting sleeve (8) are provided with grooves, and the grooves are engaged with connecting column (6).
4. The assembled flowerpot for the stereoscopic greening according to claim 1, wherein, The inner bottom of the planting groove (1) is made of V-shaped inclined surface, and the middle position of the V-shaped inclined surface is evenly provided with drain (4), and the two sides of the V-shaped inclined surface are evenly provided with adsorption sponge (3) extending to the outside of the planting groove (1).
5. The assembled flowerpot for stereoscopic greening according to claim 1, wherein, The top and bottom of the outside of four groups connecting column (6) are provided with anti-skid sleeves, and the anti-skid sleeves are made of rubber material.
6. The assembled flowerpot for the stereoscopic greening according to claim 2, characterized by, The two sides of the inner bottom of the collecting groove (2) are connected with the bottom of two groups of support plate (5), and the top of the collecting groove (2) has gap with the bottom of the planting groove (1).