Ecological planting frame for landscaping
By designing an ecological planting rack with a stepped bracket and a water storage system, the problems of irreversible spacing between planting pots and frequent manual watering are solved, and flexible adjustment of planting pot spacing and automatic water supply are achieved, reducing the cost of landscaping maintenance.
Patent Information
- Application Number
- CN202422891698.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-26
AI Technical Summary
Existing planting racks cannot flexibly adjust the spacing between planting pots according to the sizes of different potted plants, and require manual watering on a regular basis, resulting in high maintenance costs.
An ecological planting rack consisting of a stepped bracket and a water storage system was designed. The spacing between planting pots was adjusted by telescopic pallets, and water storage tanks and absorbent cotton columns were used to automatically supply water, collecting rainwater to meet the growth needs of green plants.
It enables flexible adjustment of the spacing between planting pots according to the growth space of green plants, reduces the need for manual watering, and lowers the cost of landscaping maintenance.
Smart Images

Figure CN223391716U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of garden greening planting, and particularly relates to an ecological planting frame for garden greening. Background Art
[0002] Landscaping is the practice of creating beautiful natural environments and recreational areas by transforming terrain, planting trees, flowers, and plants, constructing buildings, and arranging paths within a specific area through the application of engineering techniques and artistic means. In this process, garden plants, as indispensable plant materials, play a vital role. These plants include not only woody and herbaceous flowering, foliage, and fruiting plants, but also plants that play an important protective role in gardens, green spaces, and scenic spots, as well as economic plants.
[0003] It's worth noting that due to the relatively long growth cycle of large garden plants, the overall landscaping cycle is also quite lengthy. To quickly add greenery and enhance the decorative effect, small potted garden plants are popular due to their ease of care. These small potted plants can not only be grown in large numbers within a limited space, but can also quickly create a pleasant atmosphere. To fully utilize space for the cultivation of large numbers of potted plants, planting racks have become the primary cultivation tool. The use of planting racks allows for more efficient utilization of space resources and facilitates the unified management and maintenance of potted plants.
[0004] However, after the plants are planted on the current planting racks, as the plants grow, the spacing between the planting pots on the planting racks is fixed, and the spacing between the planting pots cannot be flexibly adjusted according to the sizes of different potted plants. Larger plants will encroach on each other's growth space, affecting subsequent growth. At the same time, after the plants are planted, they still need to be watered and irrigated regularly by humans to ensure their normal growth, and the manual maintenance cost is high. Utility Model Content
[0005] In order to solve the above technical problems, the utility model designs an ecological planting rack for landscaping, which can flexibly adjust the spacing and number of planting pots according to the growth space requirements of the planted green plants. At the same time, it does not require manual regular watering, thereby reducing the maintenance cost of landscaping.
[0006] The utility model provides an ecological planting rack for landscaping, comprising a ladder rack, wherein each ladder plate of the ladder rack has a through groove in the center, and a slide rail is provided on the top of the ladder plate, wherein a flower pot rack is clamped in the slide rail, and the flower pot rack comprises two telescopic clamping plates clamped in the slide rail, wherein the two telescopic clamping plates are respectively connected to the mounting ring upward through a connecting column, and the planting pot is mounted in the mounting ring;
[0007] A water storage tank that is connected to the through groove is also connected under each step plate. A water inlet hole and a water outlet hole are provided on the back of the water storage tank. The water inlet hole is located below the water outlet hole. The water inlet hole of the lower water storage tank is connected to the water outlet hole of the upper water storage tank through a water pipe between adjacent water storage tanks. The water inlet hole of the top water storage tank is connected to the water collecting tank installed on the top of the step bracket through a water pipe; a through hole is provided at the bottom of the planting pot, and a water-absorbing cotton column is installed in the through hole. The bottom of the water-absorbing cotton column passes through the through groove and extends into the water storage tank. The top of the water-absorbing cotton column is connected to a liquid-separating cotton disk, and the liquid-separating cotton disk is located inside the planting pot.
[0008] The telescopic clamping plate includes two sleeve columns that are adapted to be clamped with the slide rail, an embedded column is sleeved between the two sleeve columns, and both end surfaces of the embedded column are connected to the inner wall of the sleeve column through springs.
[0009] A water tank is also installed at the bottom of the stepped bracket, which is connected to the water outlet of the lowest water tank through a water pipe. A water pipe is also provided between the water tank and the water collecting tank, and a one-way circulating water pump is connected to the water pipe.
[0010] A filter screen is also installed on the top of the water collecting tank.
[0011] The beneficial effects of the utility model are:
[0012] Compared to existing technologies, the present invention's ecological gardening rack, with its flower pot rack clipped onto the stepped plate, can be installed and removed based on the desired growth space for the plants, allowing for flexible adjustment of the spacing and number of pots. Furthermore, the rack's water collection trough collects rainwater on rainy days, which then flows sequentially into each water storage tank through a water pipe. The water level within the tank is the distance between the water inlet and outlet. A water-absorbing cotton column extends into the tank, evenly absorbing water into the pots to maintain the moisture required for plant growth. This conserves water resources while eliminating the need for regular manual watering, reducing gardening maintenance costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following briefly introduces the drawings required for describing the embodiments.
[0014] Figure 1 2 is a schematic diagram of the overall structure of the planting rack in the embodiment.
[0015] Figure 2 Schematic diagram of the step plate structure in the embodiment.
[0016] Figure 3 Schematic diagram of the internal structure of the connection between the step plate and the planting pot in the embodiment.
[0017] Figure 42 is a schematic diagram of the connection structure between the flower pot rack and the planting pot in the embodiment.
[0018] Figure 5 Schematic diagram of the internal structure of the telescopic card in the embodiment.
[0019] Figure 6 2 is a rear structural schematic diagram of the planting rack in the embodiment.
[0020] Figure 7 Schematic diagram of the structure of the liquid separation cotton disk in the embodiment.
[0021] Figure 8 2 is a side structural schematic diagram of the planting rack in the embodiment.
[0022] In the accompanying drawings, the structural names represented by the reference numerals are:
[0023] 1-Step bracket, 2-Step plate, 201-Through groove, 202-Slide rail, 3-Flower pot rack, 301-Telescopic card plate, 3011-Embedded column, 3012-Sleeve column, 3013-Spring, 302-Connecting column, 303-Mounting ring, 4-Planting pot, 401-Through hole, 5-Water storage tank, 501-Water inlet hole, 502-Water outlet hole, 6-Water guide pipe, 7-Water collection tank, 701-Filter screen, 8-Water-absorbing cotton column, 9-Liquid separation cotton tray, 10-Water storage tank, 1001-Overflow port, 11-Water supply pipe, 12-One-way circulation water pump. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0025] Example 1
[0026] In order to solve the problem that the current garden greening planting racks cannot flexibly adjust the spacing between planting pots according to the size of different potted plants, and that after planting the plants, regular watering and irrigation are still required to ensure the normal growth of the plants, resulting in high labor maintenance costs. Figures 1 to 8As shown, this embodiment proposes an ecological planting rack for landscaping, including a step bracket 1. The step bracket 1 can solve the occlusion restriction of conventional vertical brackets during the vertical growth of green plants. A through groove 201 is provided in the center of each step plate 2 of the step bracket 1, and a slide rail 202 is also provided on the top of the step plate 2. A flower pot rack 3 is clamped in the slide rail 202. The flower pot rack 3 includes two telescopic clamping plates 301 that are horizontally clamped in the slide rail 202. The telescopic clamping plates 301 include two sets of clamping plates that are adapted to be clamped in the slide rail 202. The cylindrical column 3012, the embedded column 3011 is sleeved between the two sleeve cylindrical columns 3012, and the two end surfaces of the embedded column 3011 are respectively connected to the inner wall of the sleeve column 3012 through the spring 3013. When the spring 3013 is in the original length state, the overall length of the telescopic clamp 301 is slightly larger than the width of the slide rail 202; the two embedded columns 3011 are respectively connected to the mounting ring 303 upward through the connecting column 302, and the planting pot 4 is installed in the mounting ring 303. The planting pot 4 is a commonly used frustum-shaped structure with a small bottom and a large top.
[0027] By compressing the spring 3013 on the same side of the telescopic card 301 and sliding the embedded column 3011 into the sleeve column 3012, the telescopic card 301 on the other side can be removed from the slide rail 202, thereby flexibly disassembling and assembling the flower pot rack 3 and flexibly adjusting the number of planting pots 4. At the same time, because the spring 3013 is in its original length, the overall length of the telescopic card 301 is slightly larger than the width of the slide rail 202. When the telescopic card 301 is installed inside the slide rail 202, the outer wall of the sleeve column 3012 is pressed against the inside of the slide rail 202, which plays a certain role in fixing the flower pot rack 3. When no external force is applied to push the flower pot rack 3, it can remain relatively fixed in the slide rail 202, thereby controlling the distance between the planting pots 4. In this way, the spacing between the planting pots 4 can be flexibly adjusted according to the size of different potted plants, so that the growth of the plants can interact with each other.
[0028] A water storage tank 5 connected to the through groove 201 is also connected under each step plate 2. A water inlet hole 501 and a water outlet hole 502 are provided on the back of the water storage tank 5. The water inlet hole 501 is located below the water outlet hole 502, and the water inlet hole 501 and the water outlet hole 502 are not on the same vertical line. The water inlet hole 501 of the lower water storage tank 5 is connected to the water outlet hole 502 of the upper water storage tank 5 through a water pipe 6 between adjacent water storage tanks 5. The water inlet hole 501 of the top water storage tank 5 is connected to the water collecting tank 7 installed on the top of the step bracket 1 through the water pipe 6; on rainy days, the water collecting tank 7 collects rainwater, and the collected rainwater enters the interior of each water storage tank 5 in turn through the water pipe 6. The water level inside the water storage tank 5 is the distance between the water inlet hole 501 and the water outlet hole 502, and the stored water provides moisture for the green plants in the planting pot 4.
[0029] A through hole 401 is formed at the bottom of the planting pot 4, and a water-absorbing cotton column 8 is installed in the through hole 401. The bottom of the water-absorbing cotton column 8 passes through the through slot 201 and extends into the water storage tank 5. The top of the water-absorbing cotton column 8 is connected to a liquid-separating cotton disk 9. The liquid-separating cotton disk 9 is a circular ring bar connected to each other and is located inside the planting pot 4. The water-absorbing cotton column 8 extends into the water storage tank 5 and evenly absorbs water into the planting pot 4 to maintain the moisture required for the growth of green plants. This saves water resources and eliminates the need for regular manual watering, reducing the maintenance cost of landscaping.
[0030] To collect excess rainwater and provide a backup water source for the planting rack, a water tank 10 is installed at the bottom of the stepped support 1. This tank 10 is connected to the water outlet 502 of the lowest water tank 5 via a water conduit 6. When the water in each water tank 5 reaches the water level, excess rainwater enters the tank 10 for storage. A water delivery pipe 11 is also provided between the tank 10 and the water collection tank 7. This water delivery pipe 11 is connected to a one-way circulating water pump 12. When the water level in each water tank 5 drops or is used up, the one-way circulating water pump 12 draws the water stored in the tank 10 into the water collection tank 7 and then flows back into the water collection tank 5 for water supply. An overflow port 1001 is also provided on the upper back of the tank 10.
[0031] In order to prevent debris from entering the water collection tank 7 when collecting rainwater, a filter screen 701 is installed on the top of the water collection tank 7 to block the debris, thereby preventing the pipes of the planting rack from being blocked.
[0032] The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. The preferred embodiments do not exhaustively describe all details, nor do they limit the present invention to the specific embodiments described. Obviously, many modifications and variations are possible based on the content of this specification.
Claims
1. An ecological planting rack for landscaping, characterized in that: The step bracket (1) comprises a through slot (201) at the center of each step plate (2) of the step bracket (1), a slide rail (202) is further provided on the top of the step plate (2), a flower pot rack (3) is clamped in the slide rail (202), and the flower pot rack (3) comprises two telescopic clamping plates (301) clamped in the slide rail (202), the two telescopic clamping plates (301) are respectively connected to the mounting ring (303) upwardly through the connecting column (302), and the planting pot (4) is installed in the mounting ring (303); A water storage tank (5) communicating with the through groove (201) is further connected under each step plate (2). A water inlet hole (501) and a water outlet hole (502) are provided on the back of the water storage tank (5). The water inlet hole (501) is located below the water outlet hole (502). The water inlet hole (501) of the lower water storage tank (5) is connected to the water outlet hole (502) of the upper water storage tank (5) through a water pipe (6) between adjacent water storage tanks (5). The water inlet hole (501) of the water tank (5) is connected to the water collecting tank (7) installed on the top of the step bracket (1) through the water guide pipe (6); the bottom of the planting pot (4) is provided with a through hole (401), and a water-absorbing cotton column (8) is installed in the through hole (401). The bottom of the water-absorbing cotton column (8) passes through the through groove (201) and extends into the water storage tank (5). The top of the water-absorbing cotton column (8) is connected to the liquid separation cotton disk (9), and the liquid separation cotton disk (9) is located inside the planting pot (4).
2. The ecological planting rack for landscaping according to claim 1, characterized in that: The telescopic clamping plate (301) comprises two sleeve columns (3012) adapted to be clamped with the slide rail (202), an embedded column (3011) is sleeved between the two sleeve columns (3012), and both end surfaces of the embedded column (3011) are connected to the inner wall of the sleeve column (3012) via springs (3013).
3. The ecological planting rack for landscaping according to claim 1, characterized in that: A water storage tank (10) is also installed at the bottom of the step bracket (1). The water storage tank (10) is connected to the water outlet (502) of the lowest water storage tank (5) through a water guide pipe (6). A water delivery pipe (11) is also provided between the water storage tank (10) and the water collecting tank (7). A one-way circulating water pump (12) is connected to the water delivery pipe (11).
4. The ecological planting rack for landscaping according to claim 3, characterized in that: A filter screen (701) is also installed on the top of the water collecting tank (7).