Ecological agriculture research and display culture tower
By designing an ecological agricultural demonstration and cultivation tower with stepped columns and a rotating and lifting planting tray, the problem of insufficient three-dimensionality in agricultural planting displays has been solved, achieving multi-level dynamic display and uniform irrigation, thus improving the display effect and aesthetics.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ANHUI YUNLIN ECOLOGICAL AGRI TECH CO LTD
- Filing Date
- 2025-05-27
- Publication Date
- 2026-05-29
AI Technical Summary
Existing agricultural planting displays lack a three-dimensional and layered feel, making it difficult to fully showcase the diversity and aesthetics of ecological agriculture.
An ecological agriculture research and demonstration cultivation tower was designed, which adopts a stepped tower column with a rotatable and liftable planting tray. Combined with a drive component and a spraying system, it can realize multi-level display of the planting tray and uniform irrigation.
The multi-layered planting tray structure and dynamic display enhance the three-dimensionality and aesthetics of agricultural planting, meet the growth needs of different plants, and achieve uniform irrigation.
Smart Images

Figure CN224290807U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of agricultural cultivation tower technology, specifically an ecological agricultural research and demonstration cultivation tower. Background Technology
[0002] To help students gain a deeper understanding of ecological agriculture, ecological agricultural study tours are gradually being promoted. However, existing agricultural landscapes are relatively monotonous and lack a sense of depth and dimension. To better showcase agricultural landscapes, an ecological agricultural study tour demonstration and training tower is needed. Utility Model Content
[0003] The technical problem solved by this utility model is to provide an ecological agricultural research and demonstration cultivation tower to solve the problems mentioned in the background art.
[0004] The technical problem solved by this utility model is achieved by the following technical solution: an ecological agricultural research and demonstration cultivation tower, including a tower column and a planting component installed on the outer end of the tower column, wherein the planting component includes a first planting disc rotatably installed at the bottom of the tower column and a number of second planting discs installed at intervals on the upper end of the tower column.
[0005] The lower end of the first planting tray is rotatably mounted on the first rotating component at the bottom of the tower column, and the rotation of the first planting tray is controlled by the first driving component on one side of the tower column.
[0006] The tower column has a stepped structure with column bases spaced apart on it. The second planting tray is mounted on a second rotating component at the outer end of the tower column. The tower column is equipped with a lifting component at the lower end of the second rotating component to adjust the height of the second planting tray. The lifting component is fixedly mounted on the column base. A second driving component for driving the second planting tray to rotate is also provided on one side of the tower column.
[0007] As a further embodiment of this utility model:
[0008] The first planting tray and the second planting tray are both circular disc-shaped structures used for planting vegetation. The first planting tray and several groups of second planting trays are vertically installed on the top of the tower column in sequence. As the height increases, the area of the second planting tray gradually decreases to enhance the sense of layering in the display.
[0009] As a further embodiment of this utility model:
[0010] The bottom of the tower column is integrally provided with a base plate to improve the stability of the tower column installation. The first rotating component includes a first flat bearing installed on the base plate and a first frame installed on the first flat bearing. The first frame has a ring structure and an L-shaped cross-section. The first planting tray is sleeved and installed on the first frame so that the first planting tray can be rotatably set.
[0011] As a further embodiment of this utility model:
[0012] The first driving component includes an internal gear installed on the inner end of the first platform and a driving gear that is connected to the internal gear in a transmission manner. The internal gear has a ring structure. The driving gear is connected to the first driving motor through a gear shaft. The first driving motor is installed on one side of the tower column through a first machine plate.
[0013] As a further embodiment of this utility model:
[0014] The second rotating component includes an annular support plate and a second planar bearing mounted on the support plate. A second frame is fixedly mounted on the upper end of the second planar bearing. The second frame is also an annular structure. The second planting tray is fixedly mounted on the second frame.
[0015] As a further embodiment of this utility model:
[0016] The lifting assembly includes drive cylinders arranged in a ring on the column. The outer end of the output rod of the drive cylinder is fixedly connected to the support plate, thereby controlling the lifting and adjustment of the second planting tray. Personnel can adjust the height of the second planting tray according to the height of the plants to meet the growth needs of different plants and improve aesthetics. The drive cylinder can be an electric cylinder or a hydraulic cylinder.
[0017] As a further embodiment of this utility model:
[0018] The second driving component includes a driven gear mounted on the outer end of the second frame and an adjusting gear disposed on one side of the driven gear. The upper end of the adjusting gear abuts against the lower end of the second planting disc via ball bearings, and the lower end of the adjusting gear is connected to the second drive motor via a telescopic transmission component. The second drive motor is mounted on the second machine plate on one side of the column.
[0019] As a further embodiment of this utility model:
[0020] The telescopic transmission component includes a transmission cylinder and a transmission rod telescopically slidably installed within the transmission cylinder. The transmission rod has a polygonal structure, and the transmission cylinder has a polygonal hole corresponding to the transmission rod for mating with it. A spring is installed inside the transmission rod, with the lower end of the spring abutting against the bottom of the polygonal hole, allowing the transmission rod to elastically insert into the polygonal hole of the transmission cylinder. The lower end of the transmission cylinder is fixedly connected to the output rod of the second drive motor. The second drive motor is connected to an adjusting gear through the telescopic transmission component. The adjusting gear is connected to a driven gear to control the rotation of the second planting disc. When the second planting disc rises or falls, the telescopic transmission component pushes the transmission rod up or down via the spring, preventing the adjusting gear from disengaging from the driven gear.
[0021] As a further embodiment of this utility model:
[0022] A water pipe is also installed in the middle of the tower column, and a spray pipe connected to the water pipe is provided at intervals on the tower column. Several spray pipes are distributed corresponding to the planting components, and nozzles are distributed at the lower end of the spray pipes to irrigate the crops. The water pipe is connected to a water pump on one side of the base plate.
[0023] Compared with existing technologies, the beneficial effects of this utility model are as follows: The first and second planting trays are vertically and alternately installed on the tower column, and the plants are installed on the first and second planting trays, thus forming a three-dimensional cultivation tower structure to enhance the layering and aesthetics of the display. The first and second planting trays can rotate along the tower column, allowing for a gradual and dynamic display of different surfaces. Spray pipes can spray the rotating first and second planting trays, ensuring even watering. The second planting tray is mounted on a lifting assembly via a second rotating component. Personnel can control the height of the second planting tray using a drive cylinder to meet the height requirements of plants of different sizes, further improving the aesthetics and enabling a more comprehensive display. Attached Figure Description
[0024] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0025] Figure 2 This is a front view structural diagram of the present utility model;
[0026] Figure 3 This is a partial cross-sectional view of the present invention.
[0027] Figure 4 for Figure 3 Enlarged structural diagram at point A in the middle;
[0028] The diagram shows the following components: 1. Tower column; 2. First planting tray; 3. Second planting tray; 4. Transmission cylinder; 11. Column base; 12. Base plate; 13. Water pipe; 14. Sprayer pipe; 21. First plane bearing; 22. First frame; 23. Internal gear; 24. Drive gear; 25. First drive motor; 26. First machine plate; 31. Support plate; 32. Second plane bearing; 33. Second frame; 34. Drive cylinder; 35. Driven gear; 36. Adjusting gear; 37. Second drive motor; 38. Second machine plate; 41. Transmission rod; 42. Spring. Detailed Implementation
[0029] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below with reference to specific illustrations.
[0030] like Figures 1-4 As shown,
[0031] This embodiment provides an ecological agriculture research and demonstration cultivation tower, including a tower column 1 and planting components installed on the outer end of the tower column 1. The planting components include a first planting disc 2 rotatably installed at the bottom of the tower column 1 and several sets of second planting discs 3 sequentially and spaced apart on the upper end of the tower column 1.
[0032] The lower end of the first planting disc 2 is rotatably mounted on the first rotating part at the bottom of the tower column 1, and the rotation of the first planting disc 2 is controlled by the first driving part on one side of the tower column 1.
[0033] The tower column 1 has a stepped structure, with column bases 11 spaced apart on the tower column 1. The second planting tray 3 is installed on the second rotating component at the outer end of the tower column 1, and the tower column 1 is provided with a lifting component at the lower end of the second rotating component to adjust the height of the second planting tray 3. The lifting component is fixedly installed on the column base 11, and a second driving component for driving the second planting tray 3 to rotate is also provided on one side of the tower column 1.
[0034] In this embodiment, the first planting tray 2 and the second planting tray 3 are both circular disc-shaped structures for planting vegetation. The first planting tray 2 and several groups of second planting trays are vertically installed on the upper part of the tower column 1 in sequence. As the height increases, the area of the second planting tray 3 gradually decreases to improve the sense of layering in the display.
[0035] In this embodiment, the bottom of the first tower column 1 is integrally provided with a base plate 12 to improve the stability of the tower column 1 installation. The first rotating component includes a first planar bearing 21 installed on the base plate 12 and a first frame 22 installed on the first planar bearing 21. The first frame 22 has an annular structure and an L-shaped cross-section. The first planting tray 2 is sleeved and installed on the first frame 22 so that the first planting tray 2 can be rotatably set.
[0036] The first driving component includes an internal gear 23 installed on the inner end of the first platform 22 and a driving gear 24 that is connected to the internal gear 23 in a transmission manner. The internal gear 23 has a ring structure. The driving gear 24 is connected to the first driving motor 25 in a transmission manner through a gear shaft. The first driving motor 25 is installed on one side of the tower column 1 through the first machine plate 26.
[0037] In this embodiment, the second rotating component includes an annular support plate 31 and a second planar bearing 32 mounted on the support plate 31. A second frame 33 is fixedly mounted on the upper end of the second planar bearing 32. The second frame 33 is also an annular structure. The second planting tray 3 is fixedly mounted on the second frame 33.
[0038] The lifting assembly includes drive cylinders 34 arranged in a ring on the column base 11. The outer end of the output rod of the drive cylinder 34 is fixedly connected to the support plate 31, thereby controlling the lifting and adjustment of the second planting tray 3. Personnel can adjust the height of the second planting tray 3 according to the height of the planted plants to meet the growth needs of different plants and improve aesthetics. The drive cylinder 34 can be an electric cylinder or a hydraulic cylinder.
[0039] The second driving component includes a driven gear 35 mounted on the outer end of the second frame 33 and an adjusting gear 36 disposed on one side of the driven gear 35. The upper end of the adjusting gear 36 abuts against the lower end of the second planting disc 3 via a ball bearing. The lower end of the adjusting gear 36 is connected to the second drive motor 37 via a telescopic transmission component. The second drive motor 37 is mounted on the second machine plate 38 on one side of the column 11.
[0040] The telescopic transmission component includes a transmission cylinder 4 and a transmission rod 41 telescopically slidably installed within the transmission cylinder 4. The transmission rod 41 has a polygonal structure, and the transmission cylinder 4 has a polygonal hole corresponding to the transmission rod 41. A spring 42 is provided inside the transmission rod 41, with its lower end abutting against the bottom of the polygonal hole, so that the transmission rod 41 is elastically inserted into the polygonal hole of the transmission cylinder 4. The lower end of the transmission cylinder 4 is fixedly connected to the output rod of the second drive motor 37. The second drive motor 37 is connected to the adjusting gear 36 through the telescopic transmission component. The adjusting gear 36 is connected to the driven gear 35 to control the rotation of the second planting disc 3. When the second planting disc 3 rises or falls, the telescopic transmission component pushes the transmission rod 41 up or down through the spring 42, so that the adjusting gear 36 does not disengage from the driven gear 35.
[0041] In this embodiment, a water pipe 13 is also installed in the middle of the tower column 1. Spray pipes 14 connected to the water pipes 13 are provided at intervals on the tower column 1. Several spray pipes 14 are distributed corresponding to the planting components, and nozzles are distributed at the lower end of the spray pipes 14 to irrigate the crops. The water pipes are connected to a water pump on one side of the base plate 12.
[0042] Specifically, the first planting tray 2 and the second planting tray 3 are vertically spaced and installed sequentially on the tower column 1. Plants are then placed on the first planting tray 2 and the second planting tray 3, forming a three-dimensional cultivation tower structure to enhance the layering and aesthetics of the display. The first planting tray 2 and the second planting tray 3 can rotate along the tower column 1, allowing for a gradual and dynamic display of different surfaces. Spray pipes can spray the rotating first planting tray 2 and the second planting tray 3 to ensure even watering. The second planting tray 3 is mounted on a lifting assembly via a second rotating component. Personnel can control the height of the second planting tray 3 via a drive cylinder 34 to meet the height requirements of plants of different sizes, further enhancing the aesthetics and allowing for a more comprehensive display.
[0043] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents. It should be noted that, in this document, the use of relational terms such as "first" and "second" is merely used to distinguish one entity or operation from another, and does not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further restrictions, an element defined by the phrase "comprising a..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
Claims
1. An ecological agricultural research and demonstration cultivation tower, characterized in that: It includes a tower column (1) and a planting device installed on the outer end of the tower column (1). The planting device includes a first planting disc (2) rotatably installed at the bottom of the tower column (1) and a number of second planting discs (3) installed at intervals on the upper end of the tower column (1). The lower end of the first planting tray (2) is rotatably mounted on the first rotating part at the bottom of the tower column (1), and the first planting tray (2) is controlled to rotate by the first driving part on one side of the tower column (1); The tower column (1) has a stepped structure, and the tower column (1) is provided with column bases (11) at intervals. The second planting tray (3) is installed on the second rotating part at the outer end of the tower column (1), and the tower column (1) is provided with a lifting component at the lower end of the second rotating part to adjust the height of the second planting tray (3). The lifting component is fixedly installed on the column base (11), and a second driving component is also provided on one side of the tower column (1) to drive the second planting tray (3) to rotate.
2. The ecological agricultural research and demonstration cultivation tower according to claim 1, characterized in that: The first planting tray (2) and the second planting tray (3) are circular disc-shaped structures used for planting vegetation. The first planting tray (2) and several groups of second planting trays are vertically installed on the top of the tower column (1) in sequence, and the area of the second planting tray (3) gradually decreases as the height increases.
3. The ecological agricultural research and demonstration cultivation tower according to claim 2, characterized in that: The tower column (1) has an integral base plate (12) at its bottom. The first rotating component includes a first planar bearing (21) mounted on the base plate (12) and a first frame (22) mounted on the first planar bearing (21). The first frame (22) has an annular structure and an L-shaped cross-section. The first planting tray (2) is fitted onto the first frame (22) so that the first planting tray (2) can be rotatably set.
4. The ecological agricultural research and demonstration cultivation tower according to claim 3, characterized in that: The first driving component includes an internal gear (23) installed on the inner end of the first platform (22) and a driving gear (24) that is connected to the internal gear (23) in a transmission. The internal gear (23) has a ring structure. The driving gear (24) is connected to the first driving motor (25) through a gear shaft. The first driving motor (25) is installed on one side of the tower column (1) through the first machine plate (26).
5. The ecological agricultural research and demonstration cultivation tower according to claim 2, characterized in that: The second rotating component includes an annular support plate (31) and a second planar bearing (32) mounted on the support plate (31). A second frame (33) is fixedly mounted on the upper end of the second planar bearing (32). The second frame (33) is also an annular structure. The second planting tray (3) is fixedly mounted on the second frame (33).
6. The ecological agricultural research and demonstration cultivation tower according to claim 3, characterized in that: The lifting assembly includes a drive cylinder (34) arranged in a ring on the column base (11). The outer end of the output rod of the drive cylinder (34) is fixedly connected to the support plate (31) to control the lifting and lowering adjustment of the second planting tray (3). Personnel can adjust the height of the second planting tray (3) according to the height of the plant to meet the growth needs of different plants and improve the aesthetics.
7. An ecological agricultural research and demonstration cultivation tower according to claim 6, characterized in that: The second driving component includes a driven gear (35) installed on the outer end of the second frame (33) and an adjusting gear (36) disposed on one side of the driven gear (35). The upper end of the adjusting gear (36) is abutted against the lower end of the second planting disc (3) by ball bearings. The lower end of the adjusting gear (36) is connected to the second drive motor (37) through a telescopic transmission component. The second drive motor (37) is installed on the second machine plate (38) on one side of the column (11).
8. The ecological agricultural research and demonstration cultivation tower according to claim 7, characterized in that: The telescopic transmission component includes a transmission cylinder (4) and a transmission rod (41) that is telescopically and slidably installed inside the transmission cylinder (4). The transmission rod (41) has a polygonal structure, and the transmission cylinder (4) has a polygonal hole corresponding to the transmission rod (41) that is configured to cooperate with it. A spring (42) is provided in the inner cavity of the transmission rod (41), and the lower end of the spring (42) abuts against the bottom of the polygonal hole so that the transmission rod (41) is elastically inserted into the polygonal hole of the transmission cylinder (4). The lower end of the transmission cylinder (4) is fixedly connected to the output rod of the second drive motor (37).
9. The ecological agricultural research and demonstration cultivation tower according to claim 1, characterized in that: A water pipe (13) is also installed in the middle of the tower column (1). Spray pipes (14) connected to the water pipes (13) are spaced on the tower column (1). Several spray pipes (14) are distributed corresponding to the planting components, and nozzles are distributed at the lower end of the spray pipes (14) to irrigate the crops. The water pipes are connected to a water pump on one side of the base plate (12).