A detachable device for hydroponic cultivation of leeks in turtle ponds
By designing a detachable hydroponic leek cultivation device for turtle ponds, the leeks are used to purify the water and reduce diseases, solving the problem of poor performance of existing devices, achieving water quality improvement and disease control, and forming an ecological cycle aquaculture model.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- INST OF BIOLOGICAL RESOURCES JIANGXI ACAD OF SCI
- Filing Date
- 2025-04-03
- Publication Date
- 2026-05-26
Smart Images

Figure CN119999568B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of hydroponic devices, and more particularly to a detachable device for hydroponic cultivation of leeks in a turtle pond. Background Technology
[0002] Soft-shelled turtles are rich in high-quality protein and are considered a premium aquaculture species. However, in China's current high-density farming model, issues such as high nitrogen and phosphorus levels in the water and severe diseases result in the excessive use of antibiotics and disinfectants. Although microbial preparations and traditional Chinese medicine products are sometimes used in soft-shelled turtle farming, their effects are inconsistent and not obvious.
[0003] Some turtle farming ponds cultivate lotus, rice, and aquatic vegetables (such as water bamboo), which can improve the water quality environment, but the effect on controlling turtle diseases is generally limited. Correspondingly, the hydroponic equipment is also limited and simple, without taking into account the characteristics of turtles and the farming environment. Summary of the Invention
[0004] The purpose of this invention is to provide a detachable hydroponic leek cultivation device for turtle ponds, which solves the problems of poor water quality improvement and mediocre disease control of existing hydroponic devices.
[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0006] The present invention discloses a detachable hydroponic leek cultivation device for turtle ponds, comprising several floating plates, each floating plate having multiple fixed baskets for planting leeks, adjacent floating plates being connected together by a splicing mechanism, protective plates being provided on the outer side of the floating plates by a vertical connecting mechanism, and a horizontal connecting mechanism being provided on the top of adjacent protective plates.
[0007] Furthermore, the fixed basket includes a fixed basket body, the floating plate is provided with a through hole that matches the fixed basket body, the fixed basket body is disposed in the through hole, and a limit frame is provided above the fixed basket body, the limit frame being connected to the floating plate by bolts.
[0008] Furthermore, the splicing mechanism includes a fixing seat, which is disposed on both sides of the floating plate. The top surface of the fixing seat is provided with a first mounting groove, and a connecting plate is disposed inside the first mounting groove. A first limiting block for limiting the connecting plate is disposed on one inner wall of the first mounting groove. The connecting plate is disposed on the other two sides of the floating plate by means of support blocks.
[0009] Furthermore, the top surface of the fixing base is also provided with a second mounting groove, which is located on both sides of the first mounting groove. A locking plate is provided inside the second mounting groove, and second limiting blocks for limiting the locking plate are provided on the inner walls of both sides of the second mounting groove. A limiting groove is provided on the locking plate near the connecting plate.
[0010] Furthermore, the vertical connection mechanism includes a lower connecting seat and an upper connecting seat. The lower connecting seat is disposed on the top surface of the floating plate, and the upper connecting seat is disposed on the bottom of the protective plate. The lower connecting seat and the upper connecting seat are detachably connected together by a first connecting assembly.
[0011] Furthermore, a first mounting hole is provided on the front of the lower connecting seat, a second mounting hole is provided on the right side of the lower connecting seat, and a third mounting hole is provided on the top surface of the lower connecting seat.
[0012] Furthermore, a fourth mounting hole is provided on the front of the upper connecting seat, and a fifth mounting hole is provided on the bottom surface of the upper connecting seat.
[0013] Furthermore, the first connecting assembly includes a first connecting frame and a second connecting frame, which are connected together by a connecting shaft, and a locking frame is provided on the front side of the second connecting frame;
[0014] The first connecting frame includes a first frame, the top of the first frame is provided with a first protrusion that matches the fourth mounting hole, the bottom rear side of the first frame is provided with a fixing plate, the top surface of the fixing plate is provided with a second protrusion that matches the fifth mounting hole, and the bottom surface of the fixing plate is provided with a fifth protrusion that matches the third mounting hole.
[0015] The second connecting frame includes a second frame, a third frame is vertically arranged on the right side of the second frame, the second frame is arranged below the first frame, a third protrusion matching the first mounting hole is provided on the rear side of the second frame, and a fourth protrusion matching the second mounting hole is provided on the left side of the third frame.
[0016] The locking frame includes a locking part and an operating part connected together. A mounting shaft is provided at the front of the second frame, and the locking part is provided on the mounting shaft. A limiting part that cooperates with the operating part is provided on the front side of the third frame.
[0017] Furthermore, the horizontal connecting mechanism includes a first connecting block and a second connecting block, which are disposed on the top surfaces of two adjacent protective plates, and are detachably connected together by a second connecting assembly.
[0018] Furthermore, the second connecting component includes a mounting shell, a rotating shaft is provided at the center of the interior of the mounting shell, two limiting brackets are symmetrically arranged on the rotating shaft, the two limiting brackets are arranged vertically, moving blocks are provided on the left and right sides of the limiting brackets, and through slots are provided on the moving blocks. Limiting posts are provided on the mounting shell, and the limiting posts are located in the through slots.
[0019] Compared with the prior art, the beneficial technical effects of the present invention are as follows:
[0020] This invention proposes a detachable and combinable hydroponic leek device. When placed in a turtle farming environment, this device purifies water and controls diseases. Hydroponic leek cultivation improves the aquatic environment, enhances turtle immunity, and allows for regular leek harvesting, achieving a true ecological farming cycle. The number of floating boards can be determined based on the size of the turtle pond, and these boards are connected together using a splicing mechanism. Protective plates are installed on the outer sides of the floating boards via vertical and horizontal connecting mechanisms. These protective plates are detachable, with smooth, vertical edges to prevent turtles from climbing. The hydroponic leek device occupies 10%-20% of the pond area. The entire device is reusable, durable, and will not age even after prolonged exposure to ultraviolet light. The leeks grow quickly, significantly regulate water quality, and their secretions reduce turtle diseases, forming a replicable ecological circular aquaculture model. Attached Figure Description
[0021] The present invention will be further described below with reference to the accompanying drawings.
[0022] Figure 1 This is a front view of the detachable turtle pond hydroponic leek cultivation device of the present invention;
[0023] Figure 2 This is a top view of the detachable turtle pond hydroponic leek cultivation device of the present invention;
[0024] Figure 3 This is a front view of the four floating panels of the present invention in their assembled state;
[0025] Figure 4 This is a top view of the four floating panels of the present invention in their assembled state;
[0026] Figure 5 This is a three-dimensional structural diagram of the fixed basket of the present invention;
[0027] Figure 6 This is a three-dimensional structural diagram of the splicing mechanism of the present invention;
[0028] Figure 7 This is a three-dimensional structural diagram of the fixing base of the present invention;
[0029] Figure 8 This is a three-dimensional structural diagram of the splicing mechanism with locking plate of the present invention;
[0030] Figure 9 This is a three-dimensional structural diagram of the vertical connection mechanism of the present invention;
[0031] Figure 10 This is a three-dimensional structural diagram of the lower connector of the present invention;
[0032] Figure 11 This is a three-dimensional structural diagram of the connecting seat of the present invention;
[0033] Figure 12 This is a three-dimensional structural diagram of the first connecting component of the present invention;
[0034] Figure 13 This is a three-dimensional structural diagram of the first connecting component of the present invention from another angle;
[0035] Figure 14 This is a three-dimensional structural diagram of the first connecting frame of the present invention;
[0036] Figure 15 This is a three-dimensional structural diagram of the second connecting frame of the present invention;
[0037] Figure 16 This is a three-dimensional structural diagram of the locking frame of the present invention;
[0038] Figure 17 This is a three-dimensional structural diagram of the horizontal connecting mechanism of the present invention in an unlocked state;
[0039] Figure 18 This is a three-dimensional structural diagram of the horizontal connecting mechanism of the present invention in the locked state;
[0040] Figure 19 This is a three-dimensional structural diagram of the internal structure of the second connecting component of the present invention;
[0041] Figure 20 This is a three-dimensional structural diagram of the second connecting component of the present invention; (the mounting shell is omitted).
[0042] Figure 21 This is a top view of the six floating panels of the present invention in their assembled state;
[0043] Figure 22 This is a front view of the protective plate A of the present invention;
[0044] Figure 23 This is a front view of the protective plate B of the present invention;
[0045] Figure 24 This is a front view of the protective plate C of the present invention.
[0046] Explanation of reference numerals in the attached drawings: 1. Floating board; 2. Fixed basket; 3. Splicing mechanism; 4. Vertical connection mechanism; 5. Protective plate; 6. Horizontal connection mechanism; 2-1. Fixed basket body; 2-2. Limiting frame; 3-1. Fixed base; 3-1-1. First mounting slot; 3-1-2. First limiting block; 3-1-3. Second mounting slot; 3-1-4. Second limiting block; 3-2. Connecting plate; 3-2-1. Limiting edge; 3-3. Support block; 3 -4. Locking plate; 3-4-1. Limiting groove; 4-1. Lower connecting seat; 4-1-1. First mounting hole; 4-1-2. Second mounting hole; 4-1-3. Third mounting hole; 4-2. Upper connecting seat; 4-2-1. Fourth mounting hole; 4-2-2. Fifth mounting hole; 4-3. First connecting assembly; 4-3-1. First connecting frame; 4-3-1-1. First frame body; 4-3-1-2. First protrusion; 4-3-1-3 4-3-1-4, Fixed plate; 4-3-1-5, Fifth protrusion; 4-3-2, Second connecting frame; 4-3-2-1, Second frame body; 4-3-2-2, Third protrusion; 4-3-2-3, Third frame body; 4-3-2-4, Fourth protrusion; 4-3-2-5, Mounting shaft; 4-3-2-6, Limiting part; 4-3-3, Locking frame; 4-3-3-1, Locking part; 4-3-3-2, Operation 4-3-4, Connecting shaft; 5-1, Protective plate A; 5-2, Protective plate B; 5-3, Protective plate C; 5-4, Clearance groove; 6-1, First connecting block; 6-2, Second connecting block; 6-3, Second connecting assembly; 6-3-1, Mounting shell; 6-3-1-1, Limiting post; 6-3-2, Rotating shaft; 6-3-3, Limiting frame; 6-3-3-1, Extrusion part; 6-3-4, Moving block; 6-3-4-1, Through groove. Detailed Implementation
[0047] like Figure 1-24As shown, a detachable hydroponic leek cultivation device for turtle ponds includes several floating boards 1. These floating boards 1 can be disassembled and combined according to the size of the turtle pond. Multiple fixed baskets 2 for planting leeks are connected to each floating board 1. The fixed baskets 2 have sponge sleeves inside, which are arranged at intervals on the floating boards 1 to secure the leek roots. Adjacent floating boards 1 are connected together by a splicing mechanism 3. Protective plates 5 are installed on the outer side of each floating board 1 via a vertical connecting mechanism 4. A horizontal connecting mechanism 6 is installed on the top of adjacent protective plates 5. The protective plates 5 are detachable, are made of smooth, vertically oriented board, and are 30-50cm high to prevent turtles from climbing into the hydroponic device and eating the leeks. Each floating board 1 is a 1×2m unit; multiple floating boards 1 can be freely assembled as needed. When not in use, they can be disassembled to form a single floating board 1 for easy stacking. This design reduces space requirements and facilitates transportation and storage. The floating board 1 is made of non-toxic, harmless, corrosion-resistant materials that do not release harmful substances, such as polystyrene foam board (EPS / XPS) or EVA ethylene-vinyl acetate copolymer. Floating boards made from these materials are inexpensive and possess excellent waterproofing, chemical corrosion resistance, and weather resistance. They are not prone to aging under sunlight and have a long service life. The leeks growing in this device can absorb high levels of nitrogen, phosphorus, and other nutrients from the turtle farming water, removing eutrophic substances and promoting leek growth. The leeks can be harvested periodically. Furthermore, during the leek growth process, the leek roots release organic acids such as oxalic acid, sulfides, and flavonoids, which can address the problem of high nitrogen and phosphorus levels in the turtle farming environment, inhibit pathogenic microorganisms, reduce turtle disease incidence, and improve turtle quality.
[0048] like Figure 5 As shown, the fixed basket 2 includes a fixed basket body 2-1. The floating plate 1 has a through hole that matches the fixed basket body 2-1. The fixed basket body 2-1 is placed in the through hole. A limiting frame 2-2 is provided above the fixed basket body 2-1. The limiting frame 2-2 is connected to the floating plate 1 by bolts. The limiting frame 2-2 presses down on the fixed basket body 2-1, making the fixed basket body 2-1 more stable and preventing the fixed basket body 2-1 from accidentally falling or shifting.
[0049] like Figure 6-7As shown, the splicing mechanism 3 includes a fixed base 3-1, which is connected to both sides of the floating plate 1. A first mounting groove 3-1-1 is formed on the top surface of the fixed base 3-1. A connecting plate 3-2 is inserted into the first mounting groove 3-1-1. A first limiting block 3-1-2 for limiting the position of the connecting plate 3-2 is connected to one inner wall of the first mounting groove 3-1-1. The connecting plate 3-2 is connected to the other two sides of the floating plate 1 via support blocks 3-3. The limiting edge 3-2-1 of the connecting plate 3-2 is located below the first limiting block 3-1-2. The first limiting block 3-1-2 restricts the position of the connecting plate 3-2, preventing the connecting plate 3-2 from separating from the fixed base 3-1. Specifically, as shown... Figure 2 As shown, the left and rear sides of the floating plate 1 are connected to two fixed seats 3-1 respectively, and the front and right sides of the floating plate 1 are connected to two connecting plates 3-2 through support blocks 3-3 respectively. In the actual production process, the position and number of fixed seats 3-1 and connecting plates 3-2 can be adjusted as needed to ensure that two adjacent floating plates 1 can be spliced together.
[0050] like Figure 7-8 As shown, the top surface of the fixing base 3-1 is also provided with two second mounting grooves 3-1-3. The two second mounting grooves 3-1-3 are arranged on both sides of the first mounting groove 3-1-1. A locking plate 3-4 is installed inside the second mounting groove 3-1-3. Second limiting blocks 3-1-4 for limiting the locking plate 3-4 are connected to the inner walls on both sides of the second mounting groove 3-1-3. A limiting groove 3-4-1 is provided on the locking plate 3-4 near the connecting plate 3-2. The limiting groove 3-4-1 presses against the limiting edge 3-2-1 on the other side of the connecting plate 3-2, further improving the connection strength of the connecting plate 3-2.
[0051] like Figure 9-16 As shown, the vertical connecting mechanism 4 includes a lower connecting seat 4-1 and an upper connecting seat 4-2. The lower connecting seat 4-1 is connected to the top surface of the floating plate 1, and the upper connecting seat 4-2 is connected to the bottom of the protective plate 5. The lower connecting seat 4-1 and the upper connecting seat 4-2 are detachably connected together by a first connecting assembly 4-3.
[0052] like Figure 10 As shown, the lower connecting seat 4-1 has a first mounting hole 4-1-1 on its front side, a second mounting hole 4-1-2 on its right side, and a third mounting hole 4-1-3 on its top surface.
[0053] like Figure 11As shown, a fourth mounting hole 4-2-1 is provided on the front of the upper connecting seat 4-2, and a fifth mounting hole 4-2-2 is provided on the bottom surface of the upper connecting seat 4-2.
[0054] like Figure 12-13 As shown, the first connecting component 4-3 includes a first connecting frame 4-3-1 and a second connecting frame 4-3-2. The first connecting frame 4-3-1 and the second connecting frame 4-3-2 are connected together by a connecting shaft 4-3-4. A locking frame 4-3-3 is connected to the front side of the second connecting frame 4-3-2.
[0055] like Figure 14 As shown, the first connecting frame 4-3-1 includes a first frame 4-3-1-1. The right side of the first frame 4-3-1-1 is rotatably connected to the connecting shaft 4-3-4. The top of the first frame 4-3-1-1 is connected to a first protrusion 4-3-1-2 that matches the fourth mounting hole 4-2-1. The bottom rear side of the first frame 4-3-1-1 is connected to a fixing plate 4-3-1-3. The top surface of the fixing plate 4-3-1-3 is connected to a second protrusion 4-3-1-4 that matches the fifth mounting hole 4-2-2. The bottom surface of the fixing plate 4-3-1-3 is connected to a fifth protrusion 4-3-1-5 that matches the third mounting hole 4-1-3.
[0056] like Figure 15 As shown, the second connecting frame 4-3-2 includes a second frame 4-3-2-1. A third frame 4-3-2-3 is vertically connected to the right side of the second frame 4-3-2-1. The second frame 4-3-2-1 and the third frame 4-3-2-3 are integrally formed. A connecting shaft 4-3-4 is fixedly connected at the corner of the second frame 4-3-2-1 and the third frame 4-3-2-3. The second frame 4-3-2-1 is located below the first frame 4-3-1-1. A third protrusion 4-3-2-2 that matches the first mounting hole 4-1-1 is connected to the rear side of the second frame 4-3-2-1. A fourth protrusion 4-3-2-4 that matches the second mounting hole 4-1-2 is connected to the left side of the third frame 4-3-2-3.
[0057] like Figure 16 As shown, the locking frame 4-3-3 includes a locking part 4-3-3-1 and an operating part 4-3-3-2 connected together. The second frame 4-3-2-1 has a mounting shaft 4-3-2-5 at its front. The locking part 4-3-3-1 is rotatably mounted on the mounting shaft 4-3-2-5. The front side of the third frame 4-3-2-3 is connected to a limiting part 4-3-2-6 that cooperates with the operating part 4-3-3-2. Figure 16The position shown is the unlocked state. At this time, the operating part 4-3-3-2 is in contact with the right side of the limiting part 4-3-2-6. When locked, rotating the operating part 4-3-3-2 causes the locking part 4-3-3-1 to rotate clockwise. The left end of the locking part 4-3-3-1 moves upward and blocks the first frame 4-3-1-1, preventing the first frame 4-3-1-1 from rotating forward. At this time, the locking part 4-3-3-1 rotates to the vertical position and is in contact with the left side of the limiting part 4-3-2-6.
[0058] During installation, insert the third protrusion 4-3-2-2 into the first mounting hole 4-1-1 and the fourth protrusion 4-3-2-4 into the second mounting hole 4-1-2, thereby mounting the second connecting bracket 4-3-2 onto the lower connecting seat 4-1; then, place the upper connecting seat 4-2 above the lower connecting seat 4-1, and rotate the first connecting bracket 4-3-1 so that the fifth protrusion 4-3-1-5 is inserted into the third mounting hole 4-1-3, and the first protrusion 4-3-1-2... Insert the second protrusion 43-1-4 into the fourth mounting hole 4-2-2; finally, rotate the operating part 43-3-2, causing the locking part 43-3-1 to rotate clockwise, and the left end of the locking part 43-3-1 moves upward to block the first frame 43-1-1, thereby connecting the lower connecting seat 4-1 and the upper connecting seat 4-2 together through the first connecting assembly 4-3, and then installing the protective plate 5 on the floating plate 1.
[0059] like Figure 17-20 As shown, the horizontal connecting mechanism 6 includes a first connecting block 6-1 and a second connecting block 6-2. The first connecting block 6-1 and the second connecting block 6-2 are connected to the top surfaces of two adjacent protective plates 5. The first connecting block 6-1 and the second connecting block 6-2 are shells with open tops. The first connecting block 6-1 and the second connecting block 6-2 are provided with slots on their sides that are close to each other. The first connecting block 6-1 and the second connecting block 6-2 are detachably connected together by a second connecting assembly 6-3.
[0060] The second connecting assembly 6-3 includes a mounting shell 6-3-1. A rotating shaft 6-3-2 is connected to the center of the mounting shell 6-3-1. Two limiting brackets 6-3-3 are symmetrically mounted on the rotating shaft 6-3-2, arranged vertically. Two pressing parts 6-3-3-1 are connected to both ends of each limiting bracket 6-3-3, with opposite directions. Moving blocks 6-3-4 are provided on the left and right sides of each limiting bracket 6-3-3. Each moving block 6-3-4 has a through groove 6-3-4-1. The mounting shell 6-3-... 1. A limiting post 6-3-1-1 is connected to the upper part, and the limiting post 6-3-1-1 is located in the through groove 6-3-4-1. During installation, the mounting shell 6-3-1 is inserted into the slot, and the moving block 6-3-4 moves into the mounting shell 6-3-1, thereby installing the mounting shell 6-3-1 into the first connecting block 6-1 and the second connecting block 6-2. Both moving blocks 6-3-4 move into the mounting shell 6-3-1 and approach each other. The moving blocks 6-3-4 press against the limiting frame 6-3-3, and the two limiting frames 6-3-3 rotate in opposite directions until they reach the specified position. Figure 18 As shown, the right side wall of the first connecting block 6-1 and the left side wall of the second connecting block 6-2 are located between the two pressing parts 6-3-3-1 of the lower limiting frame 6-3-3. The two pressing parts 6-3-3-1 clamp the right side wall of the first connecting block 6-1 and the left side wall of the second connecting block 6-2, connecting the first connecting block 6-1 and the second connecting block 6-2 together, thereby preventing the two protective plates 5 from separating in the horizontal direction.
[0061] like Figure 22-24 As shown, a clearance groove 5-4 is provided at the lower right corner of the protective plate A5-1, a clearance groove 5-4 is provided at the lower left corner of the protective plate B5-2, and clearance grooves 5-4 are provided at the lower left and right corners of the protective plate C5-3. The positions of the clearance grooves 5-4 on the protective plate 5 correspond to the positions of the splicing mechanism 3. By setting the clearance grooves 5-4, the bottom surface of the protective plate 5 is made to fit with the floating plate 1, preventing turtles from crawling onto the floating plate 1 through the gaps.
[0062] The installation process of this invention is as follows:
[0063] First, multiple floating boards 1 are connected together by splicing mechanism 3. Then, chives are planted in fixed basket 2. Finally, a protective board 5 is installed on the outermost floating board 1 by vertical connection mechanism 4, and a horizontal connection mechanism 6 is installed on the top of two adjacent protective boards 5.
[0064] This invention allows for the planting and harvesting of chives at any time. Each fixed basket can be planted with 1-2 chive roots. Chives can grow from April to October each year. This invention also has the functions of regulating water quality and controlling diseases.
[0065] This invention can be used not only for hydroponic chives, but also for growing some Chinese medicinal herbs and vegetables suitable for hydroponics.
[0066] The embodiments described above are merely preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Various modifications and improvements made by those skilled in the art to the technical solutions of the present invention without departing from the spirit of the present invention should fall within the protection scope defined by the claims of the present invention.
Claims
1. A detachable device for hydroponic cultivation of leeks in turtle ponds, characterized in that: It includes several floating boards (1), and multiple fixed baskets (2) for planting chives are provided on the floating boards (1). Two adjacent floating boards (1) are connected together by a splicing mechanism (3). A protective plate (5) is provided on the outside of the floating board (1) through a vertical connecting mechanism (4). A horizontal connecting mechanism (6) is provided on the top of two adjacent protective plates (5). The splicing mechanism (3) includes a fixed seat (3-1), which is disposed on both sides of the floating plate (1). The top surface of the fixed seat (3-1) is provided with a first mounting groove (3-1-1), and a connecting plate (3-2) is disposed inside the first mounting groove (3-1-1). A first limiting block (3-1-2) for limiting the connecting plate (3-2) is disposed on one side of the inner wall of the first mounting groove (3-1-1). The connecting plate (3-2) is disposed on the other two sides of the floating plate (1) by means of a support block (3-3). The vertical connecting mechanism (4) includes a lower connecting seat (4-1) and an upper connecting seat (4-2). The lower connecting seat (4-1) is disposed on the top surface of the floating plate (1), and the upper connecting seat (4-2) is disposed on the bottom of the protective plate (5). The lower connecting seat (4-1) and the upper connecting seat (4-2) are detachably connected together by a first connecting assembly (4-3). The horizontal connecting mechanism (6) includes a first connecting block (6-1) and a second connecting block (6-2). The first connecting block (6-1) and the second connecting block (6-2) are disposed on the top surfaces of two adjacent protective plates (5). The first connecting block (6-1) and the second connecting block (6-2) are detachably connected together by a second connecting assembly (6-3).
2. The detachable turtle pond hydroponic leek cultivation device according to claim 1, characterized in that: The fixed basket (2) includes a fixed basket body (2-1), and the floating plate (1) is provided with a through hole that matches the fixed basket body (2-1). The fixed basket body (2-1) is disposed in the through hole, and a limiting frame (2-2) is provided above the fixed basket body (2-1). The limiting frame (2-2) is connected to the floating plate (1) by bolts.
3. The detachable turtle pond hydroponic leek cultivation device according to claim 1, characterized in that: The top surface of the fixed base (3-1) is also provided with a second mounting groove (3-1-3). The second mounting groove (3-1-3) is provided on both sides of the first mounting groove (3-1-1). A locking plate (3-4) is provided inside the second mounting groove (3-1-3). A second limiting block (3-1-4) for limiting the locking plate (3-4) is provided on the inner walls of both sides of the second mounting groove (3-1-3). A limiting groove (3-4-1) is provided on the locking plate (3-4) near the connecting plate (3-2).
4. The detachable turtle pond hydroponic leek cultivation device according to claim 1, characterized in that: The lower connecting seat (4-1) has a first mounting hole (4-1-1) on its front side, a second mounting hole (4-1-2) on its right side, and a third mounting hole (4-1-3) on its top surface.
5. The detachable turtle pond hydroponic leek cultivation device according to claim 4, characterized in that: The upper connecting seat (4-2) has a fourth mounting hole (4-2-1) on its front side and a fifth mounting hole (4-2-2) on its bottom surface.
6. The detachable turtle pond hydroponic leek cultivation device according to claim 5, characterized in that: The first connecting component (4-3) includes a first connecting frame (4-3-1) and a second connecting frame (4-3-2). The first connecting frame (4-3-1) and the second connecting frame (4-3-2) are connected together by a connecting shaft (4-3-4). A locking frame (4-3-3) is provided on the front side of the second connecting frame (4-3-2). The first connecting frame (4-3-1) includes a first frame (4-3-1-1), the top of the first frame (4-3-1-1) is provided with a first protrusion (4-3-1-2) that matches the fourth mounting hole (4-2-1), the bottom rear side of the first frame (4-3-1-1) is provided with a fixing plate (4-3-1-3), the top surface of the fixing plate (4-3-1-3) is provided with a second protrusion (4-3-1-4) that matches the fifth mounting hole (4-2-2), and the bottom surface of the fixing plate (4-3-1-3) is provided with a fifth protrusion (4-3-1-5) that matches the third mounting hole (4-1-3). The second connecting frame (4-3-2) includes a second frame (4-3-2-1), a third frame (4-3-2-3) is vertically arranged on the right side of the second frame (4-3-2-1), the second frame (4-3-2-1) is arranged below the first frame (4-3-1-1), a third protrusion (4-3-2-2) matching the first mounting hole (4-1-1) is provided on the rear side of the second frame (4-3-2-1), and a fourth protrusion (4-3-2-4) matching the second mounting hole (4-1-2) is provided on the left side of the third frame (4-3-2-3). The locking frame (4-3-3) includes a locking part (4-3-3-1) and an operating part (4-3-3-2) connected together. The second frame (4-3-2-1) has a mounting shaft (4-3-2-5) on its front side. The locking part (4-3-3-1) is mounted on the mounting shaft (4-3-2-5). The third frame (4-3-2-3) has a limiting part (4-3-2-6) on its front side that cooperates with the operating part (4-3-3-2).
7. The detachable turtle pond hydroponic leek cultivation device according to claim 1, characterized in that: The second connecting component (6-3) includes a mounting shell (6-3-1). A rotating shaft (6-3-2) is provided at the center of the interior of the mounting shell (6-3-1). Two limiting brackets (6-3-3) are symmetrically arranged on the rotating shaft (6-3-2). The two limiting brackets (6-3-3) are arranged vertically. Moving blocks (6-3-4) are provided on the left and right sides of the limiting brackets (6-3-3). A through groove (6-3-4-1) is provided on the moving block (6-3-4). A limiting post (6-3-1-1) is provided on the mounting shell (6-3-1). The limiting post (6-3-1-1) is located in the through groove (6-3-4-1).