Ecological art flower stand for garden landscape
By designing a universal wheel mobile rack and an ecological art flower rack with automatic circulating nutrient solution supply system, the problems of bulkiness and inconvenience of updates and changes in hydroponic biological equipment in the garden landscape are solved, flexible movement and efficient nutrient supply are achieved, and the beauty and diversity of the garden landscape are enhanced.
Patent Information
- Application Number
- CN202421699348.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-07-17
AI Technical Summary
The prior art is difficult to adapt to the bulkiness of hydroponic biological equipment and inconvenient update changes in garden landscapes, resulting in hydroponic biological organisms being excluded in garden landscape design.
An ecological art flower stand including a mobile rack and a nutrient solution supply mechanism is designed. The mobile rack adopts a universal wheel design to facilitate movement and rearrangement. The nutrient solution supply mechanism realizes automatic circulation of nutrient solution through a water pump and a pipeline system.
It realizes flexible movement of ecological art flower stands and automatic circulation of nutrient solution, meets the changing needs of garden landscape design, improves the absorption efficiency of plant nutrients, and enhances the visual effect of garden landscape.
Smart Images

Figure CN222869599U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of garden landscape, and specifically is an ecological art flower stand used for garden landscape. Background Art
[0002] Garden landscapes usually arrange soil-grown organisms as outdoor scenery. Hydroponic organisms are usually excluded from garden landscape designs because the hydroponic equipment is bulky and cannot adapt to the requirements of frequent updates and changes in garden landscapes. Utility Model Content
[0003] In order to overcome the above-mentioned shortcomings, the utility model provides an ecological art flower stand for garden landscape.
[0004] The technical solution adopted by this utility model:
[0005] The invention discloses an ecological art flower stand for garden landscape, comprising a mobile stand and a nutrient solution supply mechanism, wherein the side of the mobile stand is a triangular frame, the front and the back of the mobile stand are both square frames, the front and the back of the mobile stand are square frame one and square frame two respectively, the bottom of the mobile stand is square frame three, the square frame one is fixedly connected to the upper part of the square frame two, the bottoms of the square frame one and the square frame two are respectively fixedly connected to the upper two sides of the square frame three, the bottom of the square frame three is rotatably connected to a plurality of universal wheels, the square frame one has a plurality of hydroponic tubes, the plurality of hydroponic tubes are arranged up and down, the two ends of each hydroponic tube are respectively fixedly connected to the two side walls of the square frame one, the front side of the hydroponic tube is inlaid with a plurality of culture containers, the culture containers are equidistantly distributed, the openings of the culture containers face the upper front side, and the hydroponic tubes are hydroponic tube one, hydroponic tube two, hydroponic tube three, hydroponic tube four, hydroponic tube five and hydroponic tube five from top to bottom. Tube 9, the right end bottom of hydroponic tube 1 is connected to the right end outer wall of hydroponic tube 2 through a connecting tube, the left end bottom of hydroponic tube 2 is connected to the left end outer wall of hydroponic tube 3 through a connecting tube, the right end bottom of hydroponic tube 3 is connected to the right end side wall of hydroponic tube 4 through a connecting tube, and the left end bottom of hydroponic tube 4 is connected to the left end bottom side wall of hydroponic tube 5 through a connecting tube; a battery and several storage barrels are placed on the top of square frame 3, the battery is located on the right side of the storage barrel, a water pump is fixedly connected to the top of square frame 3, the water pump is located between the battery and the storage barrel, the input end of the water pump is fixedly connected to an extraction pipe, the extraction pipe extends to the rightmost storage barrel, the output end of the water pump is fixedly connected to a delivery pipe, the delivery pipe extends upward along the right side wall of the mobile frame and is connected to the top right end of hydroponic tube 1, and the bottom right end of the lowest hydroponic tube 9 is fixedly connected to a return pipe, which extends to the leftmost storage barrel. The battery and the water pump are electrically connected.
[0006] The front side of each hydroponic tube is provided with a transverse fixing plate, the left and right ends of the transverse fixing plate are respectively fixedly connected to the two ends of the square frame one, the outer wall of the transverse fixing plate is provided with a plurality of oblique grooves, the oblique grooves correspond to the culture container, and the inclination angle of the oblique grooves is the same as that of the culture container, the front side wall of the transverse fixing plate is fixedly connected with a longitudinal fixing plate, the longitudinal fixing plates are closely distributed on the left and right and cover the front side wall of the square frame one, the front side wall of the longitudinal fixing plate is provided with oblique holes, the oblique holes correspond to the oblique grooves, and the inclination angle of the oblique holes is the same as that of the oblique grooves.
[0007] The nutrient solution supply mechanism includes a storage barrel, a feeding port is provided at the top rear end of the storage barrel, several storage barrels are connected to each other, an exchange tube is fixedly connected to the top front end of the storage barrel, a handle is fixedly connected to the top of the storage barrel, the handle is located between the feeding port and the exchange tube, a faucet is fixedly connected to the bottom of the rear side wall of the storage barrel, an extraction tube passes through the exchange tube of the right storage barrel and extends to the bottom of the storage barrel, and a reflux tube passes through the exchange tube of the left storage barrel and extends into the storage barrel.
[0008] Beneficial effects of the utility model:
[0009] The utility model adopts a universal wheel design, so that the entire ecological art flower stand can be easily moved and rearranged to meet the changing needs of garden landscape design. The automatic circulation of nutrient solution is realized through the water pump and pipeline system to ensure that the plants can continuously obtain sufficient nutrients. The design of the serpentine tubular path increases the contact area between the nutrient solution and the plants and improves the nutrient absorption efficiency. The combination of the horizontal fixing plate and the longitudinal fixing plate not only provides a stable growth environment for the plants, but also forms a flower wall with artistic beauty, enhancing the visual effect of the garden landscape. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 It is a schematic diagram of the structure of the utility model;
[0011] Figure 2 This is a schematic diagram of the structure of the utility model from a rear side perspective;
[0012] Figure 3 It is a distribution diagram of the hydroponic pipes and the connecting pipes of the utility model;
[0013] Figure 4 It is a structural schematic diagram of the nutrient solution supply mechanism of the utility model;
[0014] Figure 5 It is a structural schematic diagram of the storage barrel of the utility model;
[0015] Figure 6 It is a structural schematic diagram of the transverse fixing plate of the utility model;
[0016] Figure 7 It is a cross-sectional view of the present utility model.
[0017] The specific reference numerals in all the drawings are: 1. mobile rack; 101. square frame one; 101. square frame two; 103. square frame three; 2. universal wheel; 3. hydroponic tube; 301. hydroponic tube one; 302. hydroponic tube two; 303. hydroponic tube three; 304. hydroponic tube four; 305. hydroponic tube five; 309. hydroponic tube nine; 4. culture container; 5. connecting pipe; 6. storage barrel; 7. water pump; 8. extraction pipe; 9. delivery pipe; 10. return pipe; 11. battery; 12. horizontal fixing plate; 13. inclined groove; 14. longitudinal fixing plate; 15. inclined hole; 61. feeding port; 62. exchange pipe; 63. handle; 64. faucet. DETAILED DESCRIPTION
[0018] like Figure 1-7 As shown: an ecological art flower stand for garden landscape, including a mobile frame 1 and a nutrient solution supply mechanism, the side of the mobile frame 1 is a triangular frame, the front and back of the mobile frame 1 are square frames, the front and back of the mobile frame 1 are square frame 101 and square frame 2 102 respectively, the bottom of the mobile frame 1 is square frame 3 103, the square frame 1 101 and the square frame 2 102 are fixedly connected at the top, the bottoms of the square frame 1 101 and the square frame 2 102 are fixedly connected to the upper sides of the square frame 3 103 respectively, and the square frame The bottom of the frame 103 is rotatably connected to a plurality of universal wheels 2. The square frame 101 has a plurality of hydroponic tubes 3, which are arranged up and down. The two ends of each hydroponic tube 3 are respectively fixedly connected to the two side walls of the square frame 101. The front side of the hydroponic tube 3 is inlaid with a plurality of culture containers 4, which are evenly distributed. The opening of the culture container 4 faces the upper front side. The hydroponic tubes 3 are hydroponic tube 1 301, hydroponic tube 2 302, hydroponic tube 3 303, hydroponic tube 4 304, hydroponic tube 5 305 and hydroponic tube 6 from top to bottom. Nine 309, the right end bottom of the hydroponic tube 1 301 is connected to the right end outer wall of the hydroponic tube 2 302 through a connecting pipe 5, the left end bottom of the hydroponic tube 2 302 is connected to the left end outer wall of the hydroponic tube 3 303 through a connecting pipe 5, the right end bottom of the hydroponic tube 3 303 is connected to the right end side wall of the hydroponic tube 4 304 through a connecting pipe 5, and the left end bottom of the hydroponic tube 4 304 is connected to the left end bottom side wall of the hydroponic tube 5 305 through a connecting pipe 5; a battery 11 and a plurality of storage barrels 6 are placed on the top of the square frame 3 103, and the battery 11 is located On the right side of the storage barrel 6, the top of the square frame 3 103 is fixedly connected with a water pump 7, which is located between the storage battery 11 and the storage barrel 6. The input end of the water pump 7 is fixedly connected with an extraction pipe 8, which extends into the rightmost storage barrel 6. The output end of the water pump 7 is fixedly connected with a delivery pipe 9, which extends upward along the right side wall of the mobile frame 1 and is connected with the top right end of the hydroponic tube 1 301. The bottom right end of the lowest hydroponic tube 9 309 is fixedly connected with a return pipe 10, which extends into the leftmost storage barrel 6. The storage battery 11 and the water pump 7 are electrically connected.
[0019] The front side of each hydroponic tube 3 is provided with a transverse fixing plate 12, and the left and right ends of the transverse fixing plate 12 are fixedly connected to the two ends of the square frame 101 respectively. The outer wall of the transverse fixing plate 12 is provided with a plurality of inclined grooves 13, and the inclined grooves 13 correspond to the culture container 4, and the inclination angle of the inclined grooves 13 is the same as that of the culture container 4. The front side wall of the transverse fixing plate 12 is fixedly connected with a longitudinal fixing plate 14, and the longitudinal fixing plates 14 are closely distributed on the left and right and cover the front side wall of the square frame 101. The front side wall of the longitudinal fixing plate 14 is provided with an inclined hole 15, and the inclined hole 15 corresponds to the inclined groove 13, and the inclination angle of the inclined hole 15 is the same as that of the inclined groove 13.
[0020] The nutrient solution supply mechanism includes a storage barrel 6, which has a feeding port 61 at the top rear end of the storage barrel 6. Several storage barrels 6 are connected to each other, and an exchange tube 62 is fixedly connected to the top front end of the storage barrel 6. A handle 63 is fixedly connected to the top of the storage barrel 6, and the handle 63 is located between the feeding port 61 and the exchange tube 62. A faucet 64 is fixedly connected to the bottom of the rear side wall of the storage barrel 6. The extraction tube 8 passes through the exchange tube 62 of the right storage barrel 6 and extends to the bottom of the storage barrel 6. The reflux tube 10 passes through the exchange tube 62 of the left storage barrel 6 and extends into the storage barrel 6.
[0021] The required nutrient solution is added into the storage barrel 6 through the feed port 61, and the battery 11 provides power to the water pump 7 to ensure that the water pump 7 can work normally. The mobile frame 1 is moved to the position specified by the garden landscape design through the universal wheel 2, and the direction or position can be adjusted as needed.
[0022] The water pump 7 starts to work and extracts nutrient solution from the rightmost storage barrel 6 through the extraction pipe 8. The nutrient solution is transported to the top hydroponic tube 3 through the delivery pipe 9 and flows through each hydroponic tube 3 in sequence along the serpentine tubular path. When the nutrient solution flows through each hydroponic tube 3, it provides nutrients to the plants through the culture container 4 inside it. Finally, the nutrient solution flows from the bottom hydroponic tube 3 through the return pipe 10 back to the leftmost storage barrel 6, completing a cycle.
[0023] The plants are placed in the culture container 4 and continuously obtain nutrients through the nutrient solution supply system. The horizontal fixing plate 12 and the longitudinal fixing plate 14 together form a stable support structure, ensuring that the plants can grow steadily and form a beautiful flower wall. The design of the inclined groove 13 and the inclined hole 15 allows the plants to stretch out and the roots have good ventilation.
[0024] When new nutrient solution or medicine needs to be added, it can be directly added to the storage barrel 6 through the feed port 61. If too much nutrient solution or waste liquid accumulates in the storage barrel 6, it can be discharged through the faucet 64. The design of the exchange tube 62 allows the nutrient solution to be supplemented or the waste liquid to be discharged by connecting an external device without moving the device. The utility model only protects the mechanical part, and the functions related to it realized by the software control part are not within the protection scope of the utility model.
Claims
1. An ecological art flower stand for garden landscape, characterized in that: The mobile frame (1) comprises a mobile frame and a nutrient solution supply mechanism. The side of the mobile frame (1) is a triangular frame. The front and rear of the mobile frame (1) are both square frames. The front and rear of the mobile frame (1) are respectively a square frame one (101) and a square frame two (102). The bottom of the mobile frame (1) is a square frame three (103). The square frame one (101) and the square frame two (102) are fixedly connected at the top. The bottoms of the square frame one (101) and the square frame two (102) are respectively fixedly connected to the upper sides of the square frame three (103). The bottom of the square frame three (103) is rotatably connected to a plurality of universal wheels (2). The frame (101) has a plurality of hydroponic tubes (3) arranged vertically, and the two ends of each hydroponic tube (3) are respectively fixedly connected to the two side walls of the square frame (101). The front side of the hydroponic tube (3) is inlaid with a plurality of culture containers (4), and the culture containers (4) are evenly distributed. The openings of the culture containers (4) face the upper front side. The hydroponic tubes (3) are, from top to bottom, hydroponic tube one (301), hydroponic tube two (302), hydroponic tube three (303), hydroponic tube four (304), hydroponic tube five (305), and hydroponic tube nine (309). The bottom of the right end of the hydroponic tube one (301) is connected to the hydroponic tube one (301). The outer wall of the right end of the second tube (302) is connected through a connecting pipe (5), the left end bottom of the second hydroponic tube (302) is connected to the outer wall of the left end of the third hydroponic tube (303) through a connecting pipe (5), the right end bottom of the third hydroponic tube (303) is connected to the right end side wall of the fourth hydroponic tube (304) through a connecting pipe (5), and the left end bottom of the fourth hydroponic tube (304) and the left end bottom side wall of the fifth hydroponic tube (305) are connected through a connecting pipe (5); a storage battery (11) and a plurality of storage barrels (6) are placed on the top of the third square frame (103), the storage battery (11) is located on the right side of the storage barrel (6), and the top of the third square frame (103) is fixed A water pump (7) is connected, and the water pump (7) is located between the storage battery (11) and the storage barrel (6). The input end of the water pump (7) is fixedly connected to an extraction pipe (8), and the extraction pipe (8) extends into the rightmost storage barrel (6). The output end of the water pump (7) is fixedly connected to a delivery pipe (9), and the delivery pipe (9) extends upward along the right side wall of the mobile frame (1) and is connected to the top right end of the hydroponic tube 1 (301). The bottom right end of the lowest hydroponic tube 9 (309) is fixedly connected to a return pipe (10), and the return pipe (10) extends into the leftmost storage barrel (6). The storage battery (11) and the water pump (7) are electrically connected.
2. The ecological art flower stand for garden landscape according to claim 1, characterized in that: The front side of each hydroponic tube (3) is provided with a transverse fixing plate (12), the left and right ends of the transverse fixing plate (12) are respectively fixedly connected to the two ends of the square frame (101), the outer wall of the transverse fixing plate (12) is provided with a plurality of inclined grooves (13), the inclined grooves (13) correspond to the culture container (4), the inclination angle of the inclined grooves (13) is the same as that of the culture container (4), the front side wall of the transverse fixing plate (12) is fixedly connected with a longitudinal fixing plate (14), the longitudinal fixing plates (14) are closely distributed on the left and right and cover the front side wall of the square frame (101), the front side wall of the longitudinal fixing plate (14) is provided with an inclined hole (15), the inclined hole (15) corresponds to the inclined groove (13), and the inclination angle of the inclined hole (15) is the same as that of the inclined groove (13).
3. The ecological art flower stand for garden landscape according to claim 1, characterized in that: The nutrient solution supply mechanism comprises a storage barrel (6), a feeding port (61) is provided at the top rear end of the storage barrel (6), a plurality of storage barrels (6) are interconnected, an exchange tube (62) is fixedly connected to the top front end of the storage barrel (6), a handle (63) is fixedly connected to the top of the storage barrel (6), the handle (63) is located between the feeding port (61) and the exchange tube (62), a faucet (64) is fixedly connected to the bottom of the rear side wall of the storage barrel (6), an extraction pipe (8) passes through the exchange tube (62) of the right storage barrel (6) and extends to the bottom of the storage barrel (6), and a return pipe (10) passes through the exchange tube (62) of the left storage barrel (6) and extends into the storage barrel (6).