High-calcium sedum aizoon planting medium culture device and method

By designing a high-calcium carnivorous planting medium culture device, using soaking, vibration, ventilation and intermittent ventilation, the problems of low respiration efficiency and disease risk of carnivorous cells caused by mulch covering are solved, and the seed germination rate and healthy growth are achieved.

CN120548822AInactive Publication Date: 2025-08-29YUNNAN WANGNUOCUO AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202510984352.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-17
Publication Date
2025-08-29
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

While the existing cabbage cultivation technology increases yield, the mulch covering leads to a decrease in contact with the air of cabbage, which reduces cell respiration efficiency, affects germination rate and increases disease risk.

Method used

A high-calcium carnivorous seed planting medium cultivation device is designed, including a clean water tank, a hot water tank, an air intake box and a lifting mechanism. Through soaking, vibration, ventilation and intermittent ventilation, the carnivorous seeds are fully in contact with water and air, maintain a humid state, and prevent an overwet environment.

Benefits of technology

It improves the breathing efficiency of cabbage seeds, promotes germination, reduces disease risks, and ensures healthy growth.

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Abstract

The invention discloses a high-calcium sedum aizoon planting medium culture device and method, and relates to the technical field of sedum aizoon planting. An isolation box is fixedly connected to the top of a shell, a plurality of sealing doors are rotationally connected to the two sides of the isolation box respectively, and a clear water tank is fixedly connected to the upper surface of one end of the shell; a discharging port is formed in one end of the clear water tank, a hot water tank is fixedly connected to the top of the clear water tank, and a feeding port is formed in the upper surface of the hot water tank. According to the high-calcium sedum aizoon planting medium culture device and method, the culture nets enable the upper surfaces and the lower surfaces of sedum aizoon seeds to make full contact with air, the sponge balls absorb water, the water is transferred into the water containing cavity through the fiber pipes through the capillarity phenomenon, the top ends of the capillary tubes enable the water to drop on the upper surfaces of the sedum aizoon seeds, and the water content in the sedum aizoon seeds is increased. Meanwhile, the upper and lower surfaces of the sedum aizoon seeds are kept wet, and the effects of keeping the surfaces of the sedum aizoon seeds wet and improving the breathing efficiency of the sedum aizoon seeds are achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of heart-nourishing vegetable planting, and in particular to a high-calcium heart-nourishing vegetable planting medium cultivation device and method. Background Art

[0002] Yangxincai, as a nutritious green vegetable, has received widespread attention in recent years. Its cultivation technology has been continuously developing, adopting advanced methods combining hydroponics and soil cultivation. In the growth process of Yangxincai, capillary phenomenon and siphon effect play an important role. Capillary phenomenon refers to the ability of water to transport upward through the roots of plants. Water moves in the capillary channels in the soil or culture medium, ensuring that the plants obtain the required water and nutrients, while the siphon effect realizes the automatic flow of water through the water level difference, effectively keeping the roots moist.

[0003] Although the existing technology for growing heart-raising vegetables has improved the yield to a certain extent, there are still some problems in the cultivation process. Many growers use mulch to cover the heart-raising vegetables to maintain humidity. This practice reduces the contact between the heart-raising vegetables and the air, thereby reducing the respiratory efficiency of its cells. Plant cells require oxygen for photosynthesis and respiration. The lack of sufficient gas exchange will inhibit the normal growth of heart-raising vegetables and reduce their germination rate. The mulch may lead to an overly humid environment, increase the risk of disease, further affect the health of the heart-raising vegetables, and cannot meet the requirements for heart-raising vegetable cultivation. Summary of the Invention

[0004] The present invention discloses a high-calcium heart-nourishing vegetable planting base cultivation device and method, aiming to solve the technical problem that the existing heart-nourishing vegetable planting technology has improved the yield to a certain extent, but still has some problems in the cultivation process. Many growers use mulch to cover the heart-nourishing vegetable to maintain humidity. This practice reduces the contact between the heart-nourishing vegetable and the air, thereby reducing the respiratory efficiency of its cells. Plant cells require oxygen for photosynthesis and respiration. Lack of sufficient gas exchange will inhibit the normal growth of the heart-nourishing vegetable and reduce its germination rate. The mulch may cause an overly humid environment, increase the risk of disease, and further affect the health of the heart-nourishing vegetable.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions: A high-calcium heart-nourishing vegetable planting medium cultivation device, comprising a shell, an isolation box fixedly connected to the top of the shell, a plurality of sealing doors being rotatably connected to both sides of the isolation box, a clean water tank being fixedly connected to the upper surface of one end of the shell, a discharge port being provided at one end of the clean water tank, a hot water tank being fixedly connected to the top of the clean water tank, a feed port being provided on the upper surface of the hot water tank, a water inlet being provided at the other end of the clean water tank, an air intake box being provided at one end of the isolation box, a flow port being provided at one end of the air intake box, a plurality of ventilation slots being provided on both side surfaces of the air intake box, a water storage tank being provided on the bottom inner wall of the shell, a heating rod being provided on the bottom inner wall of the hot water tank, an isolation cover being provided on the outside of the heating rod, a plurality of heating holes being provided on the surface of the isolation cover, and a temperature sensor being provided inside the hot water tank; A lifting mechanism is provided on the top of the water tank, and a lifting plate is provided on the top of the lifting mechanism, and the lifting mechanism is used to change the height of the lifting plate; The lower surface of the lifting plate is provided with a plurality of soaking mechanisms, and the inside of the soaking mechanisms is provided with yangxincai seeds, and the soaking mechanisms are used to keep the surface of the yangxincai seeds moist; A vibration mechanism is installed inside the hot water tank, and the vibration mechanism is used to ensure that the radish seeds are fully in contact with water; Auxiliary mechanisms are installed inside the clean water tank and the hot water tank to assist in moving the heart-nourishing vegetable seeds; A ventilation mechanism is installed inside the air inlet box, and the ventilation mechanism is used for intermittent ventilation to reduce the evaporation rate of water inside the isolation box.

[0006] The lifting mechanism includes two threaded rods rotatably connected to the bottom surface of the water tank, one end of the threaded rod is threadedly connected to a connecting seat, the connecting seat is fixedly connected to the lifting plate, and a first material plate is provided at the top of the threaded rod.

[0007] In a preferred embodiment, the immersion mechanism includes a plurality of culture shells fixedly connected to the bottom of the lifting plate, a culture net is provided inside the culture shell, a dripping end is provided at the bottom of the culture net, a water holding cavity is provided at the bottom of the culture shell at the bottom of the dripping end, a fiber tube is provided at the bottom of the culture shell, a sponge ball is provided at the bottom end of the fiber tube, capillaries are provided on both sides of the fiber tube, an auxiliary tube is provided on one side of the top end of the capillary, and the other end of the culture shell is plugged into one side of the culture shell.

[0008] In a preferred embodiment, the vibration mechanism includes a motor fixedly connected to the bottom of the hot water tank, the top end of the motor output shaft is fixedly connected to an extrusion plate, one end of the motor output shaft is located at the bottom of the extrusion plate and is slidably connected to the vibration plate, an extrusion block is provided on the upper surface of the vibration plate, the bottom inner wall of the hot water tank is fixedly connected to a base, and the base and the vibration plate are slidably connected.

[0009] One end of the motor output shaft is located at the bottom of the vibration disk and is sleeved with a return spring. A slide groove is provided at the bottom of the extrusion block. A pressing cover is fixedly connected to the outer wall of the vibration disk, and a mounting cover is fixedly connected to the edge of the feed port.

[0010] In a preferred embodiment, the auxiliary mechanism includes a material rod fixedly connected to one side of the clean water tank, one end of the material rod is fixedly connected to the first material plate and the second material plate respectively, and the other end of the material rod is provided with a third handle, and the bottom inner wall of the hot water tank is provided with a filter cover, and the bottom inner wall of the hot water tank is located at the bottom position of the filter cover and is plugged with a drain pipe, and the bottom end of the drain pipe is provided with a solenoid valve, and isolation plates are slidably connected to both sides of the clean water tank.

[0011] The upper surface of the isolation plate is provided with multiple ventilation holes, and isolation handles are respectively provided at both ends of the isolation plate. The other end of the clean water tank is located at the bottom of the water inlet and is slidably connected to the first handle. One end of the first handle is fixedly connected to a pushing block, and the pushing block is slidably connected to the clean water tank. One end of the clean water tank is located above the discharge port and is slidably connected to the second handle. The bottom end of the second handle is fixedly connected to the isolation plate.

[0012] In a preferred embodiment, the ventilation mechanism includes a flip plate rotatably connected to the edge of the other end of the air intake box, a torsion spring is provided at the connection between the flip plate and the air intake box, a guide tube is rotatably connected to the interior of the air intake box, and a vent is provided at one end of the outer shell near the isolation handle.

[0013] A starting ball shell is provided at the top of the guide tube, a heat dissipation block is fixedly connected to the outer wall of the starting ball shell, a fixing block is fixedly connected to the bottom of the starting ball shell, and an impact ball is fixedly connected to one side of the fixing block.

[0014] A method for using a high-calcium heart-nourishing vegetable planting medium culture device comprises the following steps: S1. Soaking in hot water: Place multiple radish seeds into a hot water tank through a feed port, fill the hot water tank with water, start a heating rod to heat the water in the hot water tank to 50 degrees Celsius, and stop heating. Since the radish seeds float on the water surface, press the multiple radish seeds on the water surface into the water, and immerse the radish seeds in the hot water for 20 minutes, thereby achieving the effect of thoroughly soaking the radish seeds in hot water; S2. Transfer: After the soaking is completed, the solenoid valve is activated to drain the water in the hot water tank into the water storage tank through the drain pipe. The multiple heart-raising vegetable seeds follow the water flow and gather near the filter cover. The filter cover has the effect of separating the water and the heart-raising vegetable seeds. The sealing door is turned and the isolation handles on both sides of the clean water tank are pulled at the same time, so that the two isolation plates slide to the sides respectively. The third handle is pulled by hand, so that the feed rod drives the first and second feed plates to move back and forth, and all the heart-raising vegetable seeds are pushed into the clean water tank; S3. Water absorption: Add a large amount of clean water to the inside of the clean water tank through the water inlet, push the isolation plates on both sides of the clean water tank to cover the water surface inside the clean water tank again, use the isolation plates to press multiple heart-raising vegetable seeds into the clean water, and soak them in the clean water for six hours. After each hour, pull the isolation handles on both sides of the clean water tank back and forth, thereby driving the isolation plates to move back and forth inside the clean water tank, so that all the heart-raising vegetable seeds are thoroughly in contact with the water and fully absorb water; S4. Cultivation: Place a single Chinese cabbage seed into the culture shell. The function of the culture net is to ensure that the upper and lower surfaces of the Chinese cabbage seed are fully in contact with the air. The sponge ball contacts the water surface at the bottom of the water tank. The sponge ball transfers water to the inside of the water storage chamber through the fiber tube. The water is introduced into the interior of the culture shell through the capillaries on both sides of the fiber tube. The top of the capillary drips water onto the upper surface of the Chinese cabbage seed. Keep it for three to five days. When the Chinese cabbage seed germinates, take it out and transplant it into the soil.

[0015] From the above, it can be seen that the high-calcium heart-nourishing vegetable planting base cultivation device provided by the present invention has the following technical effects.

[0016] First, a single heart-raising vegetable seed is placed inside a culture shell so that the heart-raising vegetable seed is located on the upper surface of a culture net. The culture net ensures that the upper and lower surfaces of the heart-raising vegetable seed are fully in contact with the air. The sponge ball contacts the water surface at the bottom of the water storage tank. The sponge ball absorbs water through a capillary phenomenon and transfers the water to the inside of a water-containing cavity through a fiber tube. The water is introduced into the culture shell through capillaries on both sides of the fiber tube. The top end of the capillary drips water onto the upper surface of the heart-raising vegetable seed, and the auxiliary tube drips water onto the inside of the water-containing cavity. At the same time, the upper and lower surfaces of the heart-raising vegetable seed are kept moist, thereby maintaining the surface of the heart-raising vegetable seed moist and improving the respiratory efficiency of the heart-raising vegetable seed.

[0017] Secondly, a plurality of heart-raising vegetable seeds are placed into the interior of a hot water tank through a feed port, and the interior of the hot water tank is filled with water. Since the heart-raising vegetable seeds float on the water surface, the extrusion block on the top of the extrusion plate slides in the slide groove at the bottom of the extrusion plate, thereby squeezing the vibrating plate to slide downward and squeeze the return spring. The vibrating plate slides upward due to the elastic force of the return spring, and the vibrating plate drives the pressing cover to move up and down, thereby pressing the plurality of heart-raising vegetable seeds on the water surface into the water, so that the heart-raising vegetable seeds are immersed in the hot water for twenty minutes, thereby achieving the effect of thoroughly soaking the heart-raising vegetable seeds in the hot water.

[0018] Third: air enters the interior of the air intake box through the circulation port and ventilation gap, the heat sink accelerates the heat loss inside the starting sphere shell, and the temperature inside the starting sphere shell drops. The water inside the gravity sphere shell flows upward through the guide pipe through the siphon effect, and the water enters the interior of the starting sphere shell, thereby changing the center of gravity of the starting sphere shell and the gravity sphere shell, thereby driving the guide pipe to rotate, causing the flip plate to rotate, so that the air inside the isolation box and the inside of the air intake box circulate, and the guide pipe inside the starting sphere shell flows back to the interior of the gravity sphere shell, so that the impact ball and the starting sphere shell return to their original positions, which has the effect of intermittent ventilation inside the isolation box. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the axonometric structure proposed by the present invention.

[0020] Figure 2 This is a schematic cross-sectional structural diagram of the present invention.

[0021] Figure 3 This is a schematic diagram of the overall local structure proposed by the present invention.

[0022] Figure 4 This is a schematic diagram of the internal structure proposed by the present invention.

[0023] Figure 5 This is a schematic diagram of the partial cross-sectional structure proposed by the present invention.

[0024] Figure 6 This is a schematic diagram of the extrusion block structure proposed in the present invention.

[0025] Figure 7 This is a structural schematic diagram of the sliding state of the material rod proposed in the present invention.

[0026] Figure 8 This is a schematic structural diagram of the impact ball in the rotating state proposed by the present invention.

[0027] Figure 9 This is a schematic diagram of the culture network structure proposed by the present invention.

[0028] In the figure: 1, shell; 2, clean water tank; 3, hot water tank; 4, installation cover; 5, sealing door; 6, isolation box; 7, air inlet box; 8, lifting plate; 9, water storage tank; 10, isolation plate; 11, vent; 12, isolation handle; 13, first handle; 14, water inlet; 15, heating rod; 16, isolation cover; 17, motor; 18, filter cover; 19, second handle; 20, first feed plate; 21, drain pipe; 22, threaded rod; 23, discharge port; 24, isolation plate; 25, third handle; 26, feed rod; 27, push block; 28, second Material plate; 29. ​​Ventilation hole; 30. Flip plate; 31. Torsion spring; 32. Impact ball; 33. Start ball shell; 34. Heat sink; 35. Ventilation gap; 36. Flow port; 37. Guide tube; 38. Gravity ball shell; 39. Return spring; 40. Extrusion plate; 41. Press cover; 42. Feed port; 43. Extrusion block; 44. Vibration plate; 45. Base; 46. Culture shell; 47. Yangxincai seeds; 48. Culture net; 49. Auxiliary tube; 50. Capillary tube; 51. Sponge ball; 52. Fiber tube; 53. Water chamber; 54. Drip end. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0030] The high-calcium heart-nourishing vegetable planting base cultivation device disclosed in the present invention is mainly applied to the existing heart-nourishing vegetable planting technology to improve the yield to a certain extent, but there are still some problems in the cultivation process. Many growers use mulch to cover the heart-nourishing vegetables to maintain humidity. This practice reduces the contact between the heart-nourishing vegetables and the air, thereby reducing the respiratory efficiency of their cells. Plant cells require oxygen for photosynthesis and respiration. Lack of sufficient gas exchange will inhibit the normal growth of the heart-nourishing vegetables and reduce their germination rate. The mulch may lead to an overly humid environment, increase the risk of disease, and further affect the health of the heart-nourishing vegetables.

[0031] Reference Figure 1 — Figure 9, a high-calcium heart-nourishing vegetable planting medium cultivation device, comprising a shell 1, an isolation box 6 is fixedly connected to the top of the shell 1, and a plurality of sealing doors 5 are rotatably connected to both sides of the isolation box 6, a clean water tank 2 is fixedly connected to the upper surface of one end of the shell 1, and a discharge port 23 is provided at one end of the clean water tank 2, a hot water tank 3 is fixedly connected to the top of the clean water tank 2, a feed port 42 is provided on the upper surface of the hot water tank 3, and a water inlet 14 is provided at the other end of the clean water tank 2, an air intake box 7 is provided at one end of the isolation box 6, a flow port 36 is provided at one end of the air intake box 7, and a plurality of ventilation slots 35 are respectively provided on the two side surfaces of the air intake box 7, a water storage tank 9 is provided on the bottom inner wall of the shell 1, a heating rod 15 is provided on the bottom inner wall of the hot water tank 3, an isolation cover 16 is provided on the outside of the heating rod 15, a plurality of heating holes are provided on the surface of the isolation cover 16, and a temperature sensor is provided inside the hot water tank 3; A lifting mechanism is provided on the top of the water storage tank 9, and a lifting plate 8 is provided on the top of the lifting mechanism. The lifting mechanism is used to change the height of the lifting plate 8; The lower surface of the lifting plate 8 is provided with a plurality of soaking mechanisms, and the inner part of the soaking mechanism is provided with the heart-nourishing vegetable seeds 47, and the soaking mechanism is used to keep the surface of the heart-nourishing vegetable seeds 47 moist; A vibration mechanism is installed inside the hot water tank 3, and the vibration mechanism is used to make the heart-raising vegetable seeds 47 fully contact with water; Auxiliary mechanisms are installed inside the fresh water tank 2 and the hot water tank 3 to assist in moving the heart-raising vegetable seeds 47; A ventilation mechanism is installed inside the air inlet box 7, and the ventilation mechanism is used for intermittent ventilation to reduce the evaporation rate of water inside the isolation box 6.

[0032] The lifting mechanism includes two threaded rods 22 rotatably connected to the bottom surface of the water tank 9 , one end of the threaded rod 22 is threadedly connected to a connecting seat, the connecting seat is fixedly connected to the lifting plate 8 , and a first material plate 20 is provided at the top of the threaded rod 22 .

[0033] In this embodiment, when the vegetable seeds 47 are pushed out from the inside of the clean water tank 2, the threaded rod 22 is driven to rotate by rotating the first material plate 20. In the process of pushing the vegetable seeds 47 out of the clean water tank 2, the vegetable seeds 47 are piled on the upper surface of the lifting plate 8, which prevents the vegetable seeds 47 from being wasted.

[0034] Reference Figure 1 、 Figure 2 、 Figure 4 and Figure 9In a preferred embodiment, the immersion mechanism includes a plurality of culture shells 46 fixedly connected to the bottom of the lifting plate 8, a culture net 48 is provided inside the culture shell 46, a dripping end 54 is provided at the bottom of the culture net 48, a water holding chamber 53 is provided at the bottom of the culture shell 46 at the bottom of the dripping end 54, a fiber tube 52 is provided at the bottom of the culture shell 46, a sponge ball 51 is provided at the bottom end of the fiber tube 52, capillaries 50 are provided on both sides of the fiber tube 52, an auxiliary tube 49 is provided on one side of the top of the capillary 50, and the other end of the culture shell 46 is plugged into one side of the culture shell 46.

[0035] In this embodiment, a single heart vegetable seed 47 is placed inside the culture shell 46 so that the heart vegetable seed 47 is located on the upper surface of the culture net 48. The function of the culture net 48 is to make the upper and lower surfaces of the heart vegetable seed 47 fully contact with the air, thereby improving the respiration efficiency of the cells in the heart vegetable seed 47. The first material plate 20 is rotated to drive the threaded rod 22 to rotate, so that the lifting plate 8 and multiple sponge balls 51 are lowered until the sponge ball 51 contacts the water surface at the bottom of the water tank 9. The sponge ball 51 absorbs water through capillary action and transfers the water to the inside of the water holding chamber 53 through the fiber tube 52.

[0036] Furthermore, water is introduced into the interior of the culture shell 46 through the capillaries 50 on both sides of the fiber tube 52, and the top of the capillary 50 drops water on the upper surface of the vegetable seeds 47, and the auxiliary tube 49 drops water on the inside of the water holding chamber 53, while keeping the upper and lower surfaces of the vegetable seeds 47 moist, thereby keeping the surface of the vegetable seeds 47 moist and improving the respiratory efficiency of the vegetable seeds 47. This is maintained for three to five days, and when the vegetable seeds 47 germinate, the vegetable seeds 47 are taken out and transplanted into the soil, achieving the effect of transplanting the vegetable seeds 47.

[0037] Reference Figure 1 、 Figure 2 、 Figure 6 and Figure 7 In a preferred embodiment, the vibration mechanism includes a motor 17 fixedly connected to the bottom of the hot water tank 3, the top end of the output shaft of the motor 17 is fixedly connected to the extrusion plate 40, one end of the output shaft of the motor 17 is located at the bottom position of the extrusion plate 40 and is slidably connected to the vibration plate 44, the upper surface of the vibration plate 44 is provided with an extrusion block 43, the bottom inner wall of the hot water tank 3 is fixedly connected to the base 45, and the base 45 and the vibration plate 44 are slidably connected.

[0038] One end of the output shaft of the motor 17 is located at the bottom of the vibration disk 44 and is sleeved with a return spring 39. A slide groove is provided at the bottom of the extrusion block 43. A pressing cover 41 is fixedly connected to the outer wall of the vibration disk 44, and a mounting cover 4 is fixedly connected to the edge of the feed port 42.

[0039] In this embodiment, a plurality of heart-raising vegetable seeds 47 are placed into the interior of the hot water tank 3 through the feed port 42, the interior of the hot water tank 3 is filled with water, the heating rod 15 is started to heat the water inside the hot water tank 3 to fifty degrees, and the heating is stopped. Since the heart-raising vegetable seeds 47 float on the water surface, the motor 17 is started to drive the extrusion plate 40 to rotate, and the extrusion block 43 on the top of the vibration plate 44 is used to slide in the slide groove at the bottom of the extrusion plate 40, thereby squeezing the vibration plate 44 to slide downward and squeeze the return spring 39.

[0040] Furthermore, the vibration plate 44 slides upward by the elastic force of the return spring 39, and the vibration plate 44 drives the pressing cover 41 to move up and down, thereby pressing the multiple heart-nutrition vegetable seeds 47 on the water surface into the water, so that the heart-nutrition vegetable seeds 47 are immersed in hot water for twenty minutes, which has the effect of completely soaking the heart-nutrition vegetable seeds 47 in hot water.

[0041] Reference Figure 1 、 Figure 2 、 Figure 3 and Figure 4 In a preferred embodiment, the auxiliary mechanism includes a material rod 26 fixedly connected to one side of the clean water tank 2, one end of the material rod 26 is fixedly connected to the first material plate 20 and the second material plate 28, respectively, and the other end of the material rod 26 is provided with a third handle 25, and the bottom inner wall of the hot water tank 3 is provided with a filter cover 18, and the bottom inner wall of the hot water tank 3 is located at the bottom position of the filter cover 18 and is plugged with a drain pipe 21, and the bottom end of the drain pipe 21 is provided with a solenoid valve, and isolation plates 10 are respectively slidably connected to both sides of the clean water tank 2.

[0042] A plurality of ventilation holes 29 are provided on the upper surface of the isolation plate 10, and isolation handles 12 are respectively provided at both ends of the isolation plate 10. The other end of the clean water tank 2 is located at the bottom of the water inlet 14 and is slidingly connected to the first handle 13. One end of the first handle 13 is fixedly connected to a pushing block 27. The pushing block 27 is slidingly connected to the clean water tank 2. One end of the clean water tank 2 is located above the discharge port 23 and is slidingly connected to the second handle 19. The bottom end of the second handle 19 is fixedly connected to the isolation plate 24.

[0043] In this embodiment, after the soaking is completed, the solenoid valve is started to discharge the water inside the hot water tank 3 into the water storage tank 9 through the drain pipe 21, and multiple heart-raising vegetable seeds 47 follow the water flow and gather near the filter cover 18. The filter cover 18 has the effect of separating water and heart-raising vegetable seeds 47. The sealing door 5 is rotated and the isolation handles 12 on both sides of the clean water tank 2 are pulled at the same time, so that the two isolation plates 10 slide to both sides respectively. The third handle 25 is pulled by hand, so that the material rod 26 drives the first material plate 20 and the second material plate 28 to move forward and backward, and the multiple heart-raising vegetable seeds 47 near the filter cover 18 are pushed into the interior of the clean water tank 2.

[0044] Furthermore, a portion of the heart-nutrition vegetable seeds 47 adhere to the surfaces of the first material plate 20 and the second material plate 28, and continuously hit the extrusion plate 40 during the process of the vibration plate 44 sliding up and down, causing the vibration of the first material plate 20 and the second material plate 28 to vibrate and drop the heart-nutrition vegetable seeds 47 on their surfaces into the clean water tank 2 and the hot water tank 3. Continuing to pull the third handle 25 pushes all the heart-nutrition vegetable seeds 47 into the clean water tank 2, thereby thoroughly cleaning the heart-nutrition vegetable seeds 47 inside the hot water tank 3.

[0045] In this embodiment, a large amount of clean water is added to the interior of the clean water tank 2 through the water inlet 14, and the isolation plates 10 on both sides of the clean water tank 2 are pushed to cover the water surface inside the clean water tank 2 again. The isolation plates 10 are used to press multiple heart-raising vegetables seeds 47 into the clean water and soak them in the clean water for six hours. Every hour, the isolation handles 12 on both sides of the clean water tank 2 are pulled back and forth, thereby driving the isolation plates 10 to move back and forth inside the clean water tank 2, so that all the heart-raising vegetables seeds 47 are completely in contact with water, allowing the heart-raising vegetables seeds 47 to fully absorb water.

[0046] Furthermore, after the vegetable seeds 47 have finished absorbing water and expanding, the auxiliary tube 49 is pulled to drive the isolation plate 24 to slide upward, and at the same time, the first handle 13 is pushed to drive the pushing block 27 to push the water and vegetable seeds 47 inside the clean water tank 2 into the upper surface of the lifting plate 8 through the discharge port 23, thereby achieving the effect of allowing the vegetable seeds 47 to completely absorb water and expand.

[0047] Reference Figure 1 、 Figure 2 、 Figure 5 and Figure 8 In a preferred embodiment, the ventilation mechanism includes a flip plate 30 rotatably connected to the edge of the other end of the air intake box 7, a torsion spring 31 is provided at the connection between the flip plate 30 and the air intake box 7, a guide tube 37 is rotatably connected to the interior of the air intake box 7, and a vent 11 is provided at one end of the outer shell 1 near the isolation handle 12.

[0048] A starting ball shell 33 is provided at the top of the guide tube 37, a heat dissipation block 34 is fixedly connected to the outer wall of the starting ball shell 33, a fixing block is fixedly connected to the bottom of the starting ball shell 33, and an impact ball 32 is fixedly connected to one side of the fixing block.

[0049] In this embodiment, during the cultivation of the heart-nourishing vegetable seeds 47, it is necessary to maintain ventilation inside the isolation box 6. Air enters the interior of the air intake box 7 through the circulation port 36 and the ventilation slit 35. The heat dissipation block 34 accelerates the heat loss inside the starting spherical shell 33, causing the temperature inside the starting spherical shell 33 to drop. Through the siphon effect, the water inside the gravity spherical shell 38 flows upward through the guide tube 37.

[0050] Furthermore, water enters the interior of the starting ball shell 33, thereby changing the center of gravity of the starting ball shell 33 and the gravity ball shell 38, thereby driving the guide tube 37 to rotate, so that the impact ball 32 is installed on the side surface of the flip plate 30, causing the flip plate 30 to rotate, thereby allowing the air inside the isolation box 6 and the inside of the air intake box 7 to circulate. At the same time that the impact ball 32 hits the flip plate 30, the guide tube 37 inside the starting ball shell 33 flows back to the interior of the gravity ball shell 38, so that the impact ball 32 and the starting ball shell 33 return to their original positions, thereby achieving the effect of intermittent ventilation inside the isolation box 6.

[0051] Working principle: When in use, multiple heart-raising vegetable seeds 47 are put into the interior of the hot water tank 3 through the feed port 42, the interior of the hot water tank 3 is filled with water, the heating rod 15 is started to heat the water in the hot water tank 3 to 50 degrees, and the heating is stopped. Since the heart-raising vegetable seeds 47 float on the water surface, the motor 17 is started to drive the extrusion plate 40 to rotate, and the extrusion block 43 on the top of the vibration plate 44 slides in the slide groove at the bottom of the extrusion plate 40, thereby squeezing the vibration plate 44 to slide downward and squeeze the return spring 39. Further, the vibration plate 44 slides upward by the elastic force of the return spring 39, and the vibration plate 44 drives the pressing cover 41 to move up and down, thereby pressing the multiple heart-raising vegetable seeds 47 on the water surface into the water, so that the heart-raising vegetable seeds 47 are immersed in hot water for 20 minutes, which plays a role. The vegetable seeds 47 are thoroughly immersed in hot water. After the soaking is completed, the solenoid valve is activated to discharge the water inside the hot water tank 3 into the water storage tank 9 through the drain pipe 21. Multiple vegetable seeds 47 follow the water flow and gather near the filter cover 18. The filter cover 18 has the effect of separating water and vegetable seeds 47. The sealing door 5 is rotated and the isolation handles 12 on both sides of the clean water tank 2 are pulled at the same time, so that the two isolation plates 10 slide to both sides respectively. The third handle 25 is pulled by hand to make the material rod 26 drive the first material plate 20 and the second material plate 28 to move back and forth, and the multiple vegetable seeds 47 near the filter cover 18 are pushed into the interior of the clean water tank 2. Some of the vegetable seeds 47 adhere to the surface of the first material plate 20 and the second material plate 28 and slide up and down on the vibration plate 44. During the movement, the squeezing plate 40 is continuously hit, causing the first material plate 20 and the second material plate 28 to vibrate and cause the vegetable seeds 47 on their surface to vibrate and fall into the inside of the clean water tank 2 and the hot water tank 3. The third handle 25 is continuously pulled to push all the vegetable seeds 47 into the clean water tank 2, thereby thoroughly cleaning the vegetable seeds 47 inside the hot water tank 3. A large amount of clean water is added to the clean water tank 2 through the water inlet 14, and the isolation plates 10 on both sides of the clean water tank 2 are pushed to cover the water surface inside the clean water tank 2 again. The isolation plates 10 are used to press multiple vegetable seeds 47 into the clean water and soak them in the clean water for six hours. Every hour, the isolation handles 12 on both sides of the clean water tank 2 are pulled back and forth, thereby driving the isolation plates 10 inside the clean water tank 2. The first handle 13 is pushed to drive the pushing block 27 to push the water and the vegetable seeds 47 inside the clean water tank 2 into the upper surface of the lifting plate 8 through the discharge port 23, thereby making the vegetable seeds 47 absorb water and expand completely. When the vegetable seeds 47 are pushed out from the clean water tank 2, the first material plate 20 is rotated to drive the threaded rod 22 to rotate, so that the upper surface of the lifting plate 8 is located at the bottom edge of the discharge port 23. In the process of pushing the vegetable seeds 47 out of the clean water tank 2, the vegetable seeds 47 are piled on the upper surface of the lifting plate 8.It plays an effect of preventing the waste of the vegetable seeds 47. A single vegetable seed 47 is placed inside the culture shell 46 so that the vegetable seed 47 is located on the upper surface of the culture net 48. The function of the culture net 48 is to make the upper and lower surfaces of the vegetable seed 47 fully contact with the air, thereby improving the respiration efficiency of the cells in the vegetable seed 47. The first material plate 20 is rotated to drive the threaded rod 22 to rotate, so that the lifting plate 8 and the multiple sponge balls 51 are lowered until the sponge balls 51 touch the water surface at the bottom of the water tank 9. 51 absorbs water through capillary action, transfers water to the inside of the water holding chamber 53 through the fiber tube 52, and introduces water into the interior of the culture shell 46 through the capillaries 50 on both sides of the fiber tube 52. The top of the capillary 50 drops water on the upper surface of the vegetable seed 47, and the auxiliary tube 49 drops water on the inside of the water holding chamber 53, while keeping the upper and lower surfaces of the vegetable seed 47 moist, which plays a role in keeping the surface of the vegetable seed 47 moist and improving the respiratory efficiency of the vegetable seed 47. Keep it for three to five days until the vegetable seed is The seeds 47 germinate, and the heart-nourishing vegetable seeds 47 are taken out and transplanted into the soil, which has the effect of transplanting the heart-nourishing vegetable seeds 47. In the process of cultivating the heart-nourishing vegetable seeds 47, it is necessary to maintain ventilation inside the isolation box 6. Air enters the interior of the air intake box 7 through the flow port 36 and the ventilation slit 35. The heat dissipation block 34 accelerates the heat loss inside the starting ball shell 33, so that the temperature inside the starting ball shell 33 drops. The water inside the gravity ball shell 38 flows upward through the guide pipe 37 through the siphon effect, and the water enters the interior of the starting ball shell 33. This changes the center of gravity of the starting ball shell 33 and the gravity ball shell 38, driving the guide tube 37 to rotate, causing the impact ball 32 to be installed on one side of the flip plate 30, causing the flip plate 30 to rotate, thereby allowing air to circulate between the interior of the isolation box 6 and the interior of the air intake box 7. At the same time that the impact ball 32 hits the flip plate 30, the guide tube 37 inside the starting ball shell 33 flows back into the interior of the gravity ball shell 38, causing the impact ball 32 and the starting ball shell 33 to return to their original positions, achieving the effect of intermittent ventilation inside the isolation box 6.

[0052] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. A high-calcium heart-nourishing vegetable planting medium culture device, comprising a housing (1), characterized in that: The top of the shell (1) is fixedly connected to an isolation box (6), and both sides of the isolation box (6) are rotatably connected to a plurality of sealing doors (5), the upper surface of one end of the shell (1) is fixedly connected to a clean water tank (2), and one end of the clean water tank (2) is provided with a discharge port (23), the top of the clean water tank (2) is fixedly connected to a hot water tank (3), and the upper surface of the hot water tank (3) is provided with a feed port (42), and the other end of the clean water tank (2) is provided with a water inlet (14), one end of the isolation box (6) is provided with an air inlet box (7), one end of the air inlet box (7) is provided with a flow port (36), and both sides of the air inlet box (7) are provided with a plurality of ventilation slots (35), the bottom inner wall of the shell (1) is provided with a water storage tank (9), the bottom inner wall of the hot water tank (3) is provided with a heating rod (15), the outside of the heating rod (15) is provided with an isolation cover (16), and the surface of the isolation cover (16) is provided with a plurality of heating holes; A lifting mechanism is provided on the top of the water storage tank (9), and a lifting plate (8) is provided on the top of the lifting mechanism. The lifting mechanism is used to change the height of the lifting plate (8); A plurality of soaking mechanisms are provided on the lower surface of the lifting plate (8), and heart-raising vegetable seeds (47) are provided inside the soaking mechanisms. The soaking mechanisms are used to keep the surface of the heart-raising vegetable seeds (47) moist; A vibration mechanism is installed inside the hot water tank (3), and the vibration mechanism is used to ensure that the radish seeds (47) are fully in contact with water; Auxiliary mechanisms are installed inside the clean water tank (2) and the hot water tank (3), and the auxiliary mechanisms assist in moving the heart-nourishing vegetable seeds (47).

2. The high-calcium heart-nourishing vegetable planting medium cultivation device according to claim 1, characterized in that: The lifting mechanism comprises two threaded rods (22) rotatably connected to the bottom surface of the water storage tank (9), one end of the threaded rod (22) is threadedly connected to a connecting seat, the connecting seat is fixedly connected to the lifting plate (8), and the top end of the threaded rod (22) is provided with a first material plate (20).

3. The high-calcium heart vegetable planting medium cultivation device according to claim 2, characterized in that: The immersion mechanism includes a plurality of culture shells (46) fixedly connected to the bottom of the lifting plate (8), a culture net (48) is provided inside the culture shell (46), a dripping end (54) is provided at the bottom of the culture net (48), a water storage cavity (53) is provided at the bottom of the culture shell (46) at the bottom of the dripping end (54), a fiber tube (52) is provided at the bottom of the culture shell (46), a sponge ball (51) is provided at the bottom end of the fiber tube (52), capillaries (50) are provided on both sides of the fiber tube (52), an auxiliary tube (49) is provided on one side of the top end of the capillary tube (50), and the other end of the culture shell (46) is plugged into one side of the culture shell (46).

4. The high-calcium nutritious vegetable planting medium cultivation device according to claim 3, characterized in that: The vibration mechanism comprises a motor (17) fixedly connected to the bottom of the hot water tank (3); the top end of the output shaft of the motor (17) is fixedly connected to an extrusion disk (40); one end of the output shaft of the motor (17) is located at the bottom of the extrusion disk (40) and is slidably connected to a vibration disk (44); an extrusion block (43) is provided on the upper surface of the vibration disk (44); a base (45) is fixedly connected to the inner wall of the bottom of the hot water tank (3); and the base (45) and the vibration disk (44) are slidably connected.

5. The high-calcium heart-nourishing vegetable planting medium cultivation device according to claim 4, characterized in that: One end of the output shaft of the motor (17) is located at the bottom of the vibration disk (44) and is sleeved with a return spring (39). A slide groove is provided at the bottom of the extrusion block (43). A pressing cover (41) is fixedly connected to the outer wall of the vibration disk (44). A mounting cover (4) is fixedly connected to the edge of the feed port (42).

6. The high-calcium heart-nourishing vegetable planting medium cultivation device according to claim 5, characterized in that: The auxiliary mechanism comprises a material rod (26) fixedly connected to one side of the clean water tank (2), one end of the material rod (26) being fixedly connected to a first material plate (20) and a second material plate (28), and the other end of the material rod (26) being provided with a third handle (25). A filter cover (18) is provided on the bottom inner wall of the hot water tank (3), a drain pipe (21) is plugged into the bottom inner wall of the hot water tank (3) at the bottom position of the filter cover (18), and a solenoid valve is provided at the bottom end of the drain pipe (21). Isolation plates (10) are slidably connected to both sides of the clean water tank (2).

7. The high-calcium heart-nourishing vegetable planting medium cultivation device according to claim 6, characterized in that: The upper surface of the isolation plate (10) is provided with a plurality of ventilation holes (29), and isolation handles (12) are respectively provided at both ends of the isolation plate (10). The other end of the clean water tank (2) is located at the bottom of the water inlet (14) and is slidably connected to a first handle (13), one end of the first handle (13) is fixedly connected to a pusher block (27), and the pusher block (27) is slidably connected to the clean water tank (2). One end of the clean water tank (2) is located above the discharge port (23) and is slidably connected to a second handle (19), and the bottom end of the second handle (19) is fixedly connected to the isolation plate (24).

8. The high-calcium heart-nourishing vegetable planting medium cultivation device according to claim 7, characterized in that: A ventilation mechanism is installed inside the air inlet box (7), and the ventilation mechanism is used for intermittent ventilation to reduce the evaporation rate of water inside the isolation box (6); The ventilation mechanism comprises a flip plate (30) rotatably connected to the edge of the other end of the air intake box (7), a torsion spring (31) is provided at the connection between the flip plate (30) and the air intake box (7), a guide tube (37) is rotatably connected inside the air intake box (7), and a vent (11) is provided at one end of the housing (1) near the isolation handle (12).

9. The high-calcium heart-nourishing vegetable planting medium cultivation device according to claim 8, characterized in that: A starting ball shell (33) is provided at the top end of the guide tube (37), a heat dissipation block (34) is fixedly connected to the outer wall of the starting ball shell (33), a fixing block is fixedly connected to the bottom of the starting ball shell (33), and an impact ball (32) is fixedly connected to one side of the fixing block.

10. The method for using the high-calcium nutritious vegetable planting medium cultivation device according to claim 9, characterized in that: The following steps are involved: S1. Soaking in hot water: putting a plurality of heart-raising vegetable seeds (47) into the interior of the hot water tank (3) through the feed port (42), filling the interior of the hot water tank (3) with water, starting the heating rod (15) to heat the water in the hot water tank (3) to 50 degrees, stopping the heating, and since the heart-raising vegetable seeds (47) float on the water surface, pressing the plurality of heart-raising vegetable seeds (47) on the water surface into the water, so that the heart-raising vegetable seeds (47) are immersed in the hot water for 20 minutes, thereby achieving the effect of thoroughly soaking the heart-raising vegetable seeds (47) in the hot water; S2. Transfer: After the soaking is completed, the electromagnetic valve is activated to discharge the water in the hot water tank (3) into the water storage tank (9) through the drain pipe (21). The plurality of heart-raising vegetables seeds (47) follow the water flow and gather near the filter cover (18). The filter cover (18) has the effect of separating the water and the heart-raising vegetables seeds (47). The sealing door (5) is rotated and the isolation handles (12) on both sides of the clean water tank (2) are pulled at the same time, so that the two isolation plates (10) slide to both sides respectively. The third handle (25) is pulled by hand, so that the material rod (26) drives the first material plate (20) and the second material plate (28) to move forward and backward, and all the heart-raising vegetables seeds (47) are pushed into the interior of the clean water tank (2); S3, water absorption: a large amount of clean water is added to the inside of the clean water tank (2) through the water inlet (14), and the isolation plates (10) on both sides of the clean water tank (2) are pushed to cover the water surface inside the clean water tank (2) again, and a plurality of heart-raising vegetable seeds (47) are pressed into the clean water by the isolation plates (10), and soaked in the clean water for six hours. After each hour, the isolation handles (12) on both sides of the clean water tank (2) are pulled back and forth, thereby driving the isolation plates (10) to move back and forth inside the clean water tank (2), so that all the heart-raising vegetable seeds (47) are completely in contact with the water, so that the heart-raising vegetable seeds (47) fully absorb water; S4. Cultivation: A single radish seed (47) is placed inside the culture shell (46). The function of the culture net (48) is to allow the upper and lower surfaces of the radish seed (47) to fully contact the air. The sponge ball (51) contacts the water surface at the bottom of the water storage tank (9). The sponge ball (51) transfers water to the inside of the water storage chamber (53) through the fiber tube (52). The water is introduced into the inside of the culture shell (46) through the capillaries (50) on both sides of the fiber tube (52). The top of the capillary (50) drips water on the upper surface of the radish seed (47) for three to five days. When the radish seed (47) germinates, the radish seed (47) is taken out and transplanted into the soil.