Processing type potato green synergistic high-yield cultivation device
By designing a potato cultivation device that includes planting, feeding and restraining mechanisms, the difficulty and waste problems caused by different sizes and shapes in potato processing are solved, and efficient and practical potato processing is achieved.
Patent Information
- Application Number
- CN202510486093.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2025-06-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During potato processing, due to the different sizes and shapes of potatoes, it is difficult to process and produces a large amount of corner waste, which is poor in practicality.
A processed potato green efficiency and high yield cultivation device is designed including a planting mechanism, a feeding mechanism and a restraining mechanism. The potato is pressed through a restraining mechanism, limiting its growth shape, and adjusting its height through the planting mechanism, the feeding mechanism provides nutrients to ensure that the potato grows into the required shape.
It improves the practicality of potato processing equipment, reduces the production of edge and corner waste, facilitates subsequent processing, and promptly detects diseases through surveillance cameras and data analysis, reducing losses.
Smart Images

Figure CN120202846A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of potato cultivation, and particularly to a processing-type potato green efficiency and high-yield cultivation device. Background Art
[0002] Potatoes, also known as potatoes, yams, ground beans, etc., are tuber crops widely planted and consumed globally. Moreover, potatoes can be processed into many foods such as potato chips and French fries. To increase the yield of potatoes, generally, potato soilless cultivation chambers based on the Internet of Things disclosed in a patent with the publication number CN212436791U and a vertical potato cultivation device for agriculture disclosed in a patent with the publication number CN218244776U, etc., are used for potato cultivation.
[0003] However, it is found in the planting process that since food processing is generally completed by assembly-line automated equipment, and most potatoes are of different sizes and shapes, it causes great difficulties in the processing process, and a lot of scraps are generated during the processing, resulting in poor practicability. Therefore, there is an urgent need for a processing-type potato green efficiency and high-yield cultivation device to improve the above problems. Summary of the Invention
[0004] To solve the above technical problems, the present invention provides a processing-type potato green efficiency and high-yield cultivation device that plants potatoes in a restraint mechanism, provides nutrients for potato seedlings through a nutrient supply mechanism, adjusts the height of potato seedlings through a planting mechanism after the potatoes grow to an appropriate size, and then cooperates with the restraint mechanism to apply pressure to the potatoes to limit the growth shape of the potatoes. After that, as the potatoes continue to grow, the potatoes grow into the required shape, thereby improving the practicability of the device.
[0005] A processing-type potato green efficiency and high-yield cultivation device of the present invention includes a planting mechanism; it also includes a nutrient supply mechanism and a restraint mechanism, and both the nutrient supply mechanism and the restraint mechanism are installed on the planting mechanism;
[0006] The planting mechanism cooperates with the restraint mechanism to cultivate potato seedlings, and the nutrient supply mechanism provides nutrients for potato seedlings;
[0007] Plant potatoes in a restraint mechanism, provide nutrients for potato seedlings through a nutrient supply mechanism, adjust the height of potato seedlings through a planting mechanism after the potatoes grow to an appropriate size, and then cooperate with the restraint mechanism to apply pressure to the potatoes to limit the growth shape of the potatoes. After that, as the potatoes continue to grow, the potatoes grow into the required shape, thereby improving the practicability of the device.
[0008] Preferably, the planting mechanism includes a support mechanism and a shading mechanism, and the shading mechanism is installed on the support mechanism; the potato seedlings are cultivated by the cooperation of the support mechanism and the restraint mechanism, and the roots of the potato seedlings are shaded by the shading mechanism to provide a suitable growth environment for the potatoes, thereby improving the practicability of the equipment.
[0009] Preferably, the support mechanism includes a frame, a driving motor, a lifting frame, a lead screw and a monitoring mechanism. The driving motor is installed on the top of the frame. The lifting frame is slidably installed on the frame. One end of the lead screw is installed on the output shaft of the driving motor, and the other end of the lead screw passes through the lifting frame and is rotatably connected to the bottom of the frame. The surface of the lead screw is threadedly connected to the lifting frame. The monitoring mechanism is installed on the lifting frame; the plant growth lamp is installed on the top of the frame to provide a suitable growth environment for the potato seedlings. Then, the frame is opened, and through the transmission of the lead screw, the lifting frame is raised or lowered to adjust the height of the potato seedlings, thereby improving the practicability of the equipment.
[0010] Preferably, the monitoring mechanism includes an electric slider I, a camera and a supplementary light. The electric slider I is slidably installed on the lifting frame, and both the camera and the supplementary light are installed on the electric slider I; the shooting position is adjusted by the sliding of the electric slider I on the lifting frame, the supplementary light is used to supplement light for the camera, and the potatoes are photographed and analyzed by the camera to judge the growth status of the potatoes, thereby improving the practicability of the equipment.
[0011] Preferably, the shading mechanism includes a shading sleeve, a zipper and a magnet. The shading sleeve is installed on the lifting frame, the magnet is installed on the top of the shading sleeve, and the zipper is installed on the front of the shading sleeve; the roots of the potato seedlings are shaded by the magnet to provide a suitable growth environment for the potatoes. During the growth of the potatoes, the staff can observe the potatoes by opening the zipper. After adjusting the height of the lifting frame, some magnets are attracted together to adjust the height of the shading sleeve, thereby improving the practicability of the equipment.
[0012] Preferably, the feeding mechanism includes a circulation mechanism and a recycling mechanism. The circulation mechanism is installed on the frame, and the recycling mechanism is installed on the circulation mechanism; the soil in the restraint mechanism is recycled by the recycling mechanism, and the potatoes are aeroponically cultivated by the cooperation of the circulation mechanism and the restraint mechanism, thereby improving the practicability of the equipment.
[0013] Preferably, the circulation mechanism includes a slide rail, an electric slider II, a storage tank, a circulation pump, a delivery pipe, a dispersion seat, a bracket, an electronically controlled high-pressure spray head, an electronically controlled atomizing spray head, and a filter mesh plate. The slide rail is installed at the bottom of the frame, the electric slider II is slidably installed on the slide rail, the storage tank is fixedly installed on the electric slider II, both the circulation pump and the dispersion seat are installed inside the storage tank, the delivery pipe is installed at the drain outlet of the circulation pump, the electronically controlled high-pressure spray head is installed on the dispersion seat through the bracket, the electronically controlled atomizing spray head is installed on the top of the electronically controlled high-pressure spray head, and both the electronically controlled high-pressure spray head and the electronically controlled atomizing spray head are communicated with the delivery pipe. The filter mesh plate is installed on the top of the storage tank; Pour water and nutrient solution or other drugs into the storage tank, turn on the circulation pump to make the water and nutrient solution or other drugs enter the delivery pipe, turn on the bracket to spray the water and nutrient solution or other drugs into the dispersion seat, and after spraying, the water and nutrient solution or other drugs diffuse around. Repeat the above steps to evenly mix the water and nutrient solution or other drugs to form a mixed solution. Then, the circulation pump runs continuously, turn on the electronically controlled atomizing spray head to spray the mixed solution into the restraint mechanism to provide nutrients for the growing potatoes, and the excess mixed solution sprayed into the restraint mechanism drips back into the storage tank. At the same time, the impurities in the dripping mixed solution are filtered through the filter mesh plate, thereby improving the practicability of the equipment.
[0014] Preferably, the recovery mechanism includes a recovery box, a drain pipe, a spray head, and an electronically controlled connection valve. The recovery box is installed on the electric slider II, a heating element is provided at the bottom of the recovery box, and the drain pipe is connected to the drain outlet of the circulation pump through the electronically controlled connection valve. The drain pipe is installed inside the recovery box, and the spray head is installed on the drain pipe; Pour water into the storage tank, turn on the circulation pump and the electronically controlled connection valve to drain the water into the drain pipe, spray the water into the restraint mechanism through the spray head, wash the soil in the restraint mechanism into the recovery box, and then heat the inside of the recovery box to dry the soil, which is convenient for the staff to recover the soil, thereby improving the practicability of the equipment.
[0015] Preferably, the binding mechanism includes a planting box, a bottom cover, a guiding frame, a bolt and a pressing mechanism. The planting box is installed on the lifting frame. There is a planting opening at the top of the planting box and a reserved opening at the bottom of the planting box. The bottom cover is covered on the bottom of the planting box, and there are several openings on the bottom cover. The guiding frame is installed on the bottom cover. The bolt is slidably installed on the guiding frame, and a first permanent magnet block is arranged at one end of the bolt. There is a jack at the bottom of the side end of the planting box, and a second permanent magnet block is arranged in the jack. The pressing mechanism is installed in the planting box. Soil is discharged into the planting box through the planting opening of the planting box, and then potato seedlings are planted into the soil, so that potatoes grow in the soil in the planting box. When the potatoes in the soil grow to an appropriate size, the bolt is pulled, the bolt is pulled out of the planting box, then the bottom cover is removed, the soil in the planting box is discharged, and the potatoes in the planting box are placed neatly. Then, the neatly arranged potatoes are pressed by the pressing mechanism, the bottom cover is reset, and the bolt is inserted into the jack of the planting box. Then, as the potatoes continue to grow, adjacent potatoes are squeezed and grow together. At the same time, through the cooperation of the planting box and the pressing mechanism, the potatoes grow into a square shape, thereby improving the practicability of the equipment.
[0016] Preferably, the pressing mechanism includes an airbag, a pressing plate, a pressure relief valve and an air inlet valve. The pressing plate is installed in the planting box through the airbag. The pressure relief valve and the air inlet valve are both installed on the airbag. Air is discharged into the airbag through the air inlet valve, so that the airbag expands to squeeze the potatoes in the planting box. During the growth of the potatoes, the potatoes increase in size and squeeze the pressing plate. As the potatoes grow, the air in the airbag is gradually discharged through the pressure relief valve, thereby improving the practicability of the equipment.
[0017] Preferably, a convolutional neural network analysis module is arranged inside the camera, which is used to analyze the image data captured by the camera and send it to the monitoring device to assist the staff in analyzing and preventing the disease situation of the potatoes.
[0018] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0019] 1. By combining soil cultivation with aeroponic cultivation, it not only ensures the stimulation of the soil to the potatoes, making the potatoes increase in size, but also facilitates the management of the potatoes in the later stage;
[0020] 2. By pressing the potatoes on the same plant, it is convenient to make multiple potatoes on the same plant grow into one, and they grow into a square shape under the restriction of the binding mechanism, which is convenient for subsequent processing. Even if some potatoes are difficult to grow into one, they can grow into an approximate square shape under the restriction of the binding mechanism, which is also convenient for subsequent processing;
[0021] 3. During the growth process, monitoring cameras are used and data analysis is carried out, which is convenient for timely discovering the diseases of the potatoes and reducing losses. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 is the first axonometric structural schematic diagram of the present invention;
[0023] Figure 2 is the second axonometric structural schematic diagram of the present invention;
[0024] Figure 3 is the first axonometric sectional structural schematic diagram of the present invention;
[0025] Figure 4 is the second axonometric sectional structural schematic diagram of the present invention;
[0026] Figure 5 is the front view structural schematic diagram of the present invention;
[0027] Figure 6 is the front view sectional structural schematic diagram of the light-shielding sleeve of the present invention;
[0028] Figure 7 is the front view sectional structural schematic diagram of the present invention;
[0029] Figure 8 is the front view sectional structural schematic diagram of structures such as the dispersion seat and the electric control atomizing nozzle of the present invention;
[0030] Figure 9 is the axonometric structural schematic diagram of structures such as the storage box and the recycling box of the present invention;
[0031] Figure 10 is the state structural schematic diagram after the filter screen plate is installed in the storage box of the present invention;
[0032] Figure 11 is the axonometric structural schematic diagram of the monitoring mechanism of the present invention.
[0033] Reference numerals in the drawings: 1, frame; 2, drive motor; 3, lifting frame; 4, lead screw; 5, electric slider one; 6, camera; 7, fill light; 8, light-shielding sleeve; 9, zipper; 10, magnet; 11, slide rail; 12, electric slider two; 13, storage box; 14, circulation pump; 15, delivery pipe; 16, dispersion seat; 17, bracket; 18, electric control high-pressure nozzle; 19, electric control atomizing nozzle; 20, recycling box; 21, drain pipe; 22, nozzle; 23, electric control connection valve; 24, planting box; 25, bottom cover; 26, guide frame; 27, bolt; 28, airbag; 29, pressing plate; 30, pressure relief valve; 31, intake valve; 32, filter screen plate. DETAILED DESCRIPTION OF THE INVENTION
[0034] To facilitate the understanding of the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided to make the disclosure of the present invention more thorough and comprehensive.
[0035] Embodiment 1: As Figures 1 to 11 shown, a processing-type potato green efficiency and high-yield cultivation device includes a planting mechanism; it also includes a feeding mechanism and a binding mechanism, and both the feeding mechanism and the binding mechanism are installed on the planting mechanism;
[0036] The planting mechanism cooperates with the binding mechanism to cultivate potato seedlings, and the feeding mechanism provides nutrients for the potato seedlings;
[0037] The planting mechanism includes a support mechanism and a light-shielding mechanism, and the light-shielding mechanism is installed on the support mechanism;
[0038] The support mechanism includes a frame 1, a driving motor 2, a lifting frame 3, a lead screw 4, and a monitoring mechanism. The driving motor 2 is installed on the top of the frame 1. The lifting frame 3 is slidably installed on the frame 1. One end of the lead screw 4 is installed on the output shaft of the driving motor 2, and the other end of the lead screw 4 passes through the lifting frame 3 and is rotatably connected to the bottom of the frame 1. Moreover, the surface of the lead screw 4 is threadedly connected to the lifting frame 3, and the monitoring mechanism is installed on the lifting frame 3;
[0039] The monitoring mechanism includes an electric slider 5, a camera 6, and a fill light 7. The electric slider 5 is slidably installed on the lifting frame 3, and both the camera 6 and the fill light 7 are installed on the electric slider 5;
[0040] The light-shielding mechanism includes a light-shielding sleeve 8, a zipper 9, and a magnet 10. The light-shielding sleeve 8 is installed on the lifting frame 3, the magnet 10 is installed on the top of the light-shielding sleeve 8, and the zipper 9 is installed on the front of the light-shielding sleeve 8;
[0041] The feeding mechanism includes a circulation mechanism and a recycling mechanism. The circulation mechanism is installed on the frame 1, and the recycling mechanism is installed on the circulation mechanism;
[0042] The circulation mechanism includes a slide rail 11, an electric slider two 12, a storage tank 13, a circulation pump 14, a delivery pipe 15, a dispersion seat 16, a bracket 17, an electronically controlled high-pressure spray head 18, an electronically controlled atomizing spray head 19, and a filter mesh plate 32. The slide rail 11 is installed at the bottom of the frame 1. The electric slider two 12 is slidably installed on the slide rail 11. The storage tank 13 is fixedly installed on the electric slider two 12. Both the circulation pump 14 and the dispersion seat 16 are installed inside the storage tank 13. The delivery pipe 15 is installed at the drain outlet of the circulation pump 14. The electronically controlled high-pressure spray head 18 is installed on the dispersion seat 16 through the bracket 17. The electronically controlled atomizing spray head 19 is installed on the top of the electronically controlled high-pressure spray head 18, and both the electronically controlled high-pressure spray head 18 and the electronically controlled atomizing spray head 19 communicate with the delivery pipe 15. The filter mesh plate 32 is installed on the top of the storage tank 13;
[0043] The restraint mechanism includes a planting box 24, a bottom cover 25, a guide frame 26, a plug 27, and a pressing mechanism. The planting box 24 is installed on the lifting frame 3. A planting opening is provided at the top of the planting box 24, and a reserved opening is provided at the bottom of the planting box 24. The bottom cover 25 is covered on the bottom of the planting box 24, and a number of openings are provided on the bottom cover 25. The guide frame 26 is installed on the bottom cover 25. The plug 27 is slidably installed on the guide frame 26, and a first permanent magnet block is provided at one end of the plug 27. A jack is provided at the bottom of the side end of the planting box 24, and a second permanent magnet block is provided in the jack. The pressing mechanism is installed in the planting box 24;
[0044] The pressing mechanism includes an airbag 28, a pressing plate 29, a pressure relief valve 30, and an air inlet valve 31. The pressing plate 29 is installed in the planting box 24 through the airbag 28. Both the pressure relief valve 30 and the air inlet valve 31 are installed on the airbag 28;
[0045] The soil is discharged into the planting box 24 through the planting opening of the planting box 24, and then the potato seedlings are planted into the soil. The frame 1 is opened, and through the transmission of the lead screw 4, the lifting frame 3 is raised or lowered to adjust the height of the potato seedlings, so that the potatoes grow in the soil in the planting box 24. After the potatoes in the soil grow to an appropriate size, the bolt 27 is pulled, and the bolt 27 is pulled out of the planting box 24, and then the bottom cover 25 is removed. The soil in the planting box 24 is discharged, and then the potatoes in the planting box 24 are arranged neatly. Air is discharged into the airbag 28 through the air inlet valve 31, so that the airbag 28 expands to squeeze the potatoes in the planting box 24. The bottom cover 25 is reset, and the bolt 27 is inserted into the jack of the planting box 24. Water and nutrient solution or other drugs are poured into the storage tank 13, the circulation pump 14 is turned on, so that the water and nutrient solution or other drugs enter the delivery pipe 15, the bracket 17 is opened, and the water and nutrient solution or other drugs are sprayed into the dispersion seat 16. After spraying, the water and nutrient solution or other drugs diffuse around, and then the above steps are repeated to uniformly mix the water and nutrient solution or other drugs to form a mixed solution. Then the circulation pump 14 continues to operate, the electric control atomizing nozzle 19 is opened to spray out the mixed solution, so that the mixed solution passes through the opening on the bottom cover 25 and enters the planting box 24 to provide nutrients for the growing potatoes, and aerosol distribution is carried out on the potatoes. And during the cultivation process, the roots of the potato seedlings are blocked by the magnet 10 to provide a suitable growth environment for the potatoes. At the same time, the electric slider 1 5 slides on the lifting frame 3 to adjust the shooting position, the fill light 7 provides supplementary light for the camera 6, and the camera 6 shoots and analyzes the potatoes to judge the growth condition of the potatoes. During the growth process of the potatoes, the potato body becomes larger and squeezes the pressure plate 29, and the air in the airbag 28 is gradually discharged through the pressure relief valve 30 as the potatoes grow. After the potatoes are mature, the bottom cover 25 is removed from the bottom of the planting box 24, and the potatoes in the planting box 24 are harvested, thereby improving the practicability of the equipment.
[0046] Example 2: As Figures 1 to 11 shown, a processing-type potato green efficiency and high-yield cultivation device further includes, on the basis of Example 1:
[0047] The recycling mechanism includes a recycling box 20, a drain pipe 21, a spray head 22 and an electric control connection valve 23. The recycling box 20 is installed on the electric slider 2 12. A heating element is arranged at the bottom of the recycling box 20, and the drain pipe 21 is connected to the drain port of the circulation pump 14 through the electric control connection valve 23. The drain pipe 21 is installed inside the recycling box 20, and the spray head 22 is installed on the drain pipe 21;
[0048] Discharge the soil into the planting box 24 through the planting opening of the planting box 24, then plant the potato seedlings into the soil. Open the frame 1, and drive through the lead screw 4 to raise or lower the lifting frame 3 to adjust the height of the potato seedlings, so that the potatoes grow in the soil in the planting box 24. When the potatoes in the soil grow to an appropriate size, pull the bolt 27 and pull out the bolt 27 from the planting box 24, then remove the bottom cover 25. Slide the electric slider two 12 on the slide rail 11 to move the recycling box 20 below the planting box 24. Pour water into the storage box 13, open the circulation pump 14 and the electric control connection valve 23, discharge the water into the drain pipe 21, and spray the water into the planting box 24 through the nozzle 22 to wash the soil in the planting box 24 into the recycling box 20. Then arrange the potatoes in the planting box 24 neatly. Discharge air into the airbag 28 through the air inlet valve 31 to make the airbag 28 expand and squeeze the potatoes in the planting box 24. Reset the bottom cover 25, insert the bolt 27 into the jack of the planting box 24. Slide the electric slider two 12 on the slide rail 11 to move the storage box 13 below the planting box 24. Pour water and nutrient solution or other drugs into the storage box 13, open the circulation pump 14 to make the water and nutrient solution or other drugs enter the delivery pipe 15. Open the bracket 17 to spray the water and nutrient solution or other drugs into the dispersion seat 16. After spraying, the water and nutrient solution or other drugs diffuse around, and then repeat the above steps to evenly mix the water and nutrient solution or other drugs to form a mixed solution. Then the circulation pump 14 runs continuously, open the electric control atomizing nozzle 19 to spray out the mixed solution, so that the mixed solution passes through the opening on the bottom cover 25 and enters the planting box 24 to provide nutrients for the growing potatoes, and perform aerosol distribution on the potatoes. And during the cultivation process, block the roots of the potato seedlings through the magnet 10 to provide a suitable growth environment for the potatoes. At the same time, slide the electric slider one 5 on the lifting frame 3 to adjust the shooting position, supplement light for the camera 6 through the supplementary light lamp 7, and shoot and analyze the potatoes through the camera 6 to judge the growth status of the potatoes. During the growth of the potatoes, the potato body becomes larger and squeezes the pressure plate 29. Gradually discharge the air in the airbag 28 through the pressure relief valve 30 as the potatoes grow. At the same time, heat the inside of the recycling box 20 to dry the soil and humidify the surrounding environment, which is convenient for the staff to recycle the soil. When the potatoes are mature, remove the bottom cover 25 from the bottom of the planting box 24 to harvest the potatoes in the planting box 24, thereby improving the practicability of the equipment.
[0049] The main functions achieved by the present invention are:
[0050] 1. By combining soil cultivation with aeroponic cultivation, it not only ensures the stimulation of the soil to the potatoes, making the potato body size increase, but also facilitates the later management of the potatoes;
[0051] 2. By applying pressure to the potatoes on the same plant, it is convenient to make multiple potatoes on the same plant grow into one, and restricted by the restraint mechanism to grow into a square shape, which is convenient for subsequent processing. Even if some potatoes are difficult to grow into one, they can grow into an approximate square shape under the restriction of the restraint mechanism, which is also convenient for subsequent processing;
[0052] 3. During the growth process, monitoring cameras are used and data analysis is carried out to facilitate the timely discovery of potato diseases and reduce losses.
[0053] For a processing-type potato green efficiency and high-yield cultivation device of the present invention, its installation method, connection method or setting method are all common mechanical methods, and any method that can achieve its beneficial effects can be implemented; an electromagnetic control valve is provided on the electromagnetic control connection valve 23; the planting box 24 and the bottom cover 25 are both made of transparent materials; the data mechanism, the magnet 10, the dispersion seat 16, the electromagnetic control high-pressure nozzle 18, the electromagnetic control atomizing nozzle 19, and the nozzle 22 are all in multiple groups, and the quantity can be adjusted according to the planting situation; the driving motor 2 and the lead screw 4 are at least two groups, and the models of the driving motors 2 are the same; the driving motor 2, the electric slider one 5, the camera 6, the electric slider two 12, the circulation pump 14, the electromagnetic control high-pressure nozzle 18, the electromagnetic control atomizing nozzle 19, the electromagnetic control connection valve 23, the pressure relief valve 30 and the air inlet valve 31 of a processing-type potato green efficiency and high-yield cultivation device of the present invention are purchased on the market, and those skilled in the art only need to install and operate according to the attached operation manual, without the need for those skilled in the art to make creative efforts.
[0054] The above are only the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present invention, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present invention.
Claims
1. A processing-type green and efficient high-yield potato cultivation device, comprising a planting mechanism; characterized in that: It also includes a feeding mechanism and a restraining mechanism, both of which are installed on the implanting mechanism; The planting mechanism cooperates with the binding mechanism to cultivate the potato seedlings, and the feeding mechanism provides nutrients for the potato seedlings.
2. A processing-type potato green efficiency-enhancing high-yield cultivation device as claimed in claim 1, characterized in that: The planting mechanism comprises a supporting mechanism and a shading mechanism, and the shading mechanism is installed on the supporting mechanism.
3. A processing-type potato green efficiency-enhancing high-yield cultivation device as claimed in claim 2, characterized in that: The support mechanism comprises a frame (1), a driving motor (2), a lifting frame (3), a lead screw (4) and a monitoring mechanism, wherein the driving motor (2) is mounted on the top of the frame (1), the lifting frame (3) is slidably mounted on the frame (1), one end of the lead screw (4) is mounted on the output shaft of the driving motor (2), the other end of the lead screw (4) passes through the lifting frame (3) and is rotatably connected to the bottom of the frame (1), and the surface of the lead screw (4) is threadedly connected to the lifting frame (3), and the monitoring mechanism is mounted on the lifting frame (3).
4. A processing-type potato green efficiency-enhancing high-yield cultivation device as claimed in claim 3, characterized in that: The monitoring mechanism comprises an electric slider (5), a camera (6) and a fill light (7); the electric slider (5) is slidably mounted on the lifting frame (3); and the camera (6) and the fill light (7) are both mounted on the electric slider (5).
5. A processing-type potato green efficiency-enhancing high-yield cultivation device as claimed in claim 2, characterized in that: The shading mechanism comprises a shading sleeve (8), a zipper (9) and a magnet (10); the shading sleeve (8) is mounted on a lifting frame (3); the magnet (10) is mounted on the top of the shading sleeve (8); and the zipper (9) is mounted on the front of the shading sleeve (8).
6. A processing-type potato green efficiency-enhancing high-yield cultivation device as claimed in claim 2, characterized in that: The feeding mechanism comprises a circulation mechanism and a recovery mechanism, wherein the circulation mechanism is mounted on a frame (1), and the recovery mechanism is mounted on the circulation mechanism.
7. A processing-type potato green efficiency-enhancing high-yield cultivation device as claimed in claim 6, characterized in that: The circulation mechanism comprises a slide rail (11), an electric slide block (12), a storage box (13), a circulation pump (14), a delivery pipe (15), a dispersion seat (16), a bracket (17), an electric-controlled high-pressure nozzle (18), an electric-controlled atomizing nozzle (19) and a filter screen (32); the slide rail (11) is installed at the bottom of the frame (1); the electric slide block (12) is slidably installed on the slide rail (11); the storage box (13) is fixedly installed on the electric slide block (12); the circulation pump (14) is The electric control high pressure nozzle (18) and the electric control atomizing nozzle (19) are installed on the top of the electric control high pressure nozzle (18), and the electric control high pressure nozzle (18) and the electric control atomizing nozzle (19) are both connected to the delivery pipe (15), and the filter screen (32) is installed on the top of the storage box (13).
8. A processing-type green efficiency-enhancing high-yield potato cultivation device as claimed in claim 7, characterized in that: The recycling mechanism comprises a recycling box (20), a drainage pipe (21), a nozzle (22) and an electrically controlled connecting valve (23); the recycling box (20) is mounted on the electric slider (12); a heating element is arranged at the bottom of the recycling box (20); the drainage pipe (21) is connected to the drainage port of the circulation pump (14) through the electrically controlled connecting valve (23); the drainage pipe (21) is mounted inside the recycling box (20); and the nozzle (22) is mounted on the drainage pipe (21).
9. A processing-type potato green efficiency-enhancing high-yield cultivation device as claimed in claim 2, characterized in that: The restraining mechanism comprises a planting box (24), a bottom cover (25), a guide frame (26), a latch (27) and a pressure mechanism. The planting box (24) is installed on the lifting frame (3). The top of the planting box (24) is provided with a planting opening. The bottom of the planting box (24) is provided with a reserved opening. The bottom cover (25) is installed on the bottom of the planting box (24), and a plurality of openings are provided on the bottom cover (25). The guide frame (26) is installed on the bottom cover (25). The latch (27) is slidably installed on the guide frame (26), and a permanent magnet block 1 is provided at one end of the latch (27). A plug hole is provided at the bottom of the side end of the planting box (24), and a permanent magnet block 2 is provided in the plug hole. The pressure mechanism is installed in the planting box (24).
10. A processing-type potato green efficiency-enhancing high-yield cultivation device as claimed in claim 9, characterized in that: The pressure mechanism comprises an air bag (28), a pressure plate (29), a pressure relief valve (30) and an air intake valve (31); the pressure plate (29) is installed in the planting box (24) through the air bag (28); and the pressure relief valve (30) and the air intake valve (31) are both installed on the air bag (28).
Citation Information
Patent Citations
Potato soilless culture culture culture room based on Internet of Things
CN212436791U
Agricultural vertical potato cultivation device
CN218244776U