Root and leaf spraying and three-dimensional rotating planting equipment
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-06
- Publication Date
- 2026-08-11
AI Technical Summary
[0003]虽然上述的淋根旋转植栽装置能达到预期的植栽目的,但是申请人认为整体结构、性能可以再提升,终于有本发明的诞生
[0014]本发明的有益效果在于:利用所述智能控制总成的湿度传感器感测到预设湿度值,就能通过所述淋根控制器控制所述第一泵依不同湿度预设值而间隔预定时间启闭,且对植物根部进行喷雾淋洒,且能通过所述淋叶控制器控制所述第二泵依不同湿度预设值而间隔预定时间启闭,且对植物叶面进行喷雾淋洒,能使植物的生长效率更佳,利用所述照明单元提供照明,以使植物在阴雨天或在夜间均能进行光合作用,以提高生长速度。另外,也通过所述智能控制总成的音乐播放及语音控制单元、无线通信模块,及电源供应单元提供电能需求,能达到科技型智能控制目的。
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Figure CN119096879B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a planting device, and more particularly to a technologically advanced and intelligent three-dimensional rotating planting device that irrigates roots and leaves. Background Technology
[0002] A rotary root-drenching planting device (patent certificate number TWM544768) is available, comprising a frame, a rotating assembly, a power assembly, and a spray assembly. The rotating assembly has an upper bearing seat mounted on an upper beam, a lower bearing seat mounted on a lower beam, and a hollow rotating cylinder pivotally mounted on the upper and lower bearing seats, providing space for plant planting or climbing. The spray assembly has a water tank for storing nutrient solution mounted on the frame, and a pump for drawing the nutrient solution. A pressure pipe is connected to the pump, and a nozzle for atomizing the nutrient solution and dispensing it to the plant roots is also installed on the pressure pipe. By using the power assembly to drive the rotating cylinder and the spray assembly to spray nutrient solution onto the plant roots, the nutrient and sunlight elements can be controlled to promote better plant growth.
[0003] Although the above-mentioned root-drenching rotating planting device can achieve the expected planting purpose, the applicant believes that the overall structure and performance can be further improved, and thus the present invention was born. Summary of the Invention
[0004] The purpose of this invention is to provide a three-dimensional rotating planting device that can achieve technologically advanced intelligent control and improve the efficiency of plant growth by irrigating roots and leaves.
[0005] This invention relates to a three-dimensional rotating planting device for root and leaf irrigation, comprising a frame, at least one rotating drum, a drive unit, a spraying unit, a lighting unit, and an intelligent control assembly. The frame defines a planting space. The rotating drum's rotatable shaft is located within the planting space of the frame. The drive unit is mounted on the frame and drives the rotating drum to rotate. The spraying unit is mounted on the frame and includes at least one water tank for storing nutrient solution, at least one first pump connected to the water tank, at least one first spray nozzle connected to the first pump, at least one second pump connected to the water tank, and at least one second spray nozzle connected to the second pump. The first spray nozzle corresponds to the plant's roots, and the second spray nozzle is positioned within the planting space and relative to the rotating drum, corresponding to the plant's leaves. The lighting unit is mounted on the frame and corresponds to the rotating drum. The intelligent control assembly is mounted on the rack and includes a control unit, a humidity sensor connected to the control unit, a root-drenching controller connected to the control unit and capable of controlling the opening and closing of the first pump, a leaf-drenching controller connected to the control unit and capable of controlling the opening and closing of the second pump, and a light sensor connected to the control unit and capable of controlling the opening and closing of the lighting unit. The humidity sensor detects humidity values that are within several built-in preset humidity values. The root-drenching controller can control the first pump to open and close at predetermined intervals according to different preset humidity values, and the leaf-drenching controller can control the second pump to open and close at predetermined intervals according to different preset humidity values.
[0006] The three-dimensional rotating planting device with root and leaf drenching described in this invention further includes a music playback and voice control unit connected to the control unit via a signal connection.
[0007] The three-dimensional rotating planting device with root and leaf irrigation of the present invention further includes a liquid level sensor connected to the control unit and installed in the water tank, and an alarm connected to the control unit.
[0008] The three-dimensional rotating planting device with root and leaf drenching described in this invention includes an intelligent control assembly that further comprises a wireless communication module and an operation unit connected to the control unit. The operation unit allows users to connect to the Internet via a program and remotely control the device through the wireless communication module.
[0009] The three-dimensional rotating planting device for root and leaf irrigation of the present invention further includes a power supply unit installed on the frame, which provides the electrical energy required by the drive unit, the spraying unit, the lighting unit and the intelligent control assembly.
[0010] The three-dimensional rotating planting device for root and leaf irrigation of the present invention has a power supply unit comprising a solar panel and a battery. The solar panel is fixed to the top of the frame to receive sunlight and convert it into electricity. The battery is fixed to the frame and adjacent to the solar panel. The battery is electrically connected to the solar panel to store the electricity converted by the solar panel.
[0011] The three-dimensional rotating planting device for root and leaf irrigation of the present invention includes a cylinder wall, which has an inner wall surface that defines the atomization chamber, an outer wall surface opposite to the inner wall surface, and a number of planting holes that connect the inner wall surface and the outer wall surface. The number of plants is several, which are planted in the planting holes respectively, and the roots of the plants are located in the atomization chamber.
[0012] The present invention discloses a three-dimensional rotating planting device for root and leaf irrigation, which is used for planting at least one vine-like plant. The plant also has a stem. The frame has several support rods, at least one upper bearing seat installed on the corresponding support rod, at least one lower bearing seat installed on the corresponding support rod and respectively located below the upper bearing seat, and at least one basin located at the bottom and facing the rotating cylinder. The support rods are interconnected and can define the planting space. The basin defines an atomizing chamber for the roots of the plant to extend into. A first spray pipe extends into the atomizing chamber. The rotating cylinder includes a main body for the stem of the plant to climb, an upper adapter connected to the bottom of the main body, and a lower adapter connected to the upper adapter and axially mounted on the lower bearing seat. The upper adapter has a connecting hole for the stem of the plant to pass through, and the lower adapter has a through hole connecting the connecting hole and the atomizing chamber.
[0013] The three-dimensional rotating planting device for root and leaf irrigation of the present invention comprises several rotating cylinders, and a second spray pipe is provided between two rotating cylinders forming a group.
[0014] The beneficial effects of this invention are as follows: By utilizing the humidity sensor of the intelligent control assembly to sense a preset humidity value, the first pump can be controlled by the root spray controller to open and close at predetermined intervals according to different preset humidity values, spraying the plant roots. Similarly, the second pump can be controlled by the leaf spray controller to open and close at predetermined intervals according to different preset humidity values, spraying the plant leaves. This improves plant growth efficiency. The lighting unit provides illumination, enabling the plant to perform photosynthesis on cloudy or rainy days or at night, thus increasing growth rate. Furthermore, the intelligent control assembly provides power through its music playback and voice control unit, wireless communication module, and power supply unit, achieving a technologically advanced intelligent control system. Attached Figure Description
[0015] Figure 1This is a three-dimensional assembly diagram of the first embodiment of the three-dimensional rotating planting device for root and leaf irrigation of the present invention;
[0016] Figure 2 yes Figure 1 A magnified view of a portion of the image;
[0017] Figure 3 yes Figure 2 A three-dimensional exploded view;
[0018] Figure 4 yes Figure 2 Combined sectional view schematic diagram;
[0019] Figure 5 yes Figure 4 Enlarged schematic diagram;
[0020] Figure 6 This is a schematic diagram of the control block of the first embodiment;
[0021] Figure 7 This is a three-dimensional assembly diagram of the second embodiment of the three-dimensional rotating planting device for root and leaf irrigation of the present invention;
[0022] Figure 8 This is a three-dimensional assembly diagram of the third embodiment of the three-dimensional rotating planting device for root and leaf irrigation of the present invention;
[0023] Figure 9 yes Figure 8 A magnified view of a portion of the image;
[0024] Figure 10 yes Figure 9 A three-dimensional exploded view;
[0025] Figure 11 yes Figure 9 A combined sectional view. Detailed Implementation
[0026] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0027] Before the present invention is described in detail, it should be noted that similar components are represented by the same numbers in the following description.
[0028] See Figures 1 to 5 The first embodiment of the three-dimensional rotating planting device for root and leaf irrigation of the present invention is suitable for planting several plants 1, and includes a frame 10, several rotating drums 20, a drive unit 30, a spraying unit 40, a lighting unit 50, an intelligent control assembly 60, and a power supply unit 70.
[0029] The frame 10 has several support poles 11, several upper bearing seats 12 mounted on the corresponding support poles 11, several lower bearing seats 13 mounted on the corresponding support poles 11 and respectively located below the upper bearing seats 12, several casters 15 mounted on the bottom, and a pair of adjustable feet 16 mounted on the bottom. The support poles 11 are interconnected and define a planting space 14. The casters 15 are located around the bottom of the support poles 11 to enable the frame 10 to be moved by hand. The adjustable feet 16 are located on the front bottom of the frame 10 and are respectively located at the left and right ends. The adjustable feet 16 can be used on uneven ground and adjusted accordingly. Additionally, the frame 10 can be covered with a mesh screen (not shown) to provide insect protection for the planting space 14, or a PE membrane (not shown) can be covered to provide greenhouse function for the planting space 14, thereby enabling the control of temperature, humidity, and air quality within the planting space 14. One front side and one rear side of the frame 10 are arranged oppositely along the short axis Y.
[0030] The rotating cylinders 20 are rotatably mounted in the planting space 14 of the frame 10 along a transverse axis X perpendicular to the short axis Y. Each rotating cylinder 20 includes a cylinder wall 21, an upper cover 22 connected to the cylinder wall 21 and mounted on a corresponding upper bearing seat 12, and a lower cover 23 connected to the cylinder wall 21 and mounted on a corresponding lower bearing seat 13. The cylinder wall 21 has an inner wall surface 211 that defines an atomizing chamber 24, an outer wall surface 212 opposite to the inner wall surface 211, and several planting holes 213 connecting the inner wall surface 211 and the outer wall surface 212. In this embodiment, the rotating cylinders 20 are arranged in pairs, so the number of rotating cylinders 20 is even.
[0031] The drive unit 30 is mounted on the frame 10 and can drive the drum 20 to rotate. In this embodiment, the drive unit 30 has a reduction motor 31, a drive gear 32 driven by the reduction motor 31, several driven wheels 33 fixed to the upper cover 22, and a timing belt 34 surrounding the drive gear 32 and the driven wheels 33.
[0032] The spray unit 40 is mounted on the frame 10 and includes several water tanks 41 mounted on the top of the frame 10 for storing nutrient solution, several first pumps 42 respectively connected to the water tanks 41, several first spray pipes 44 respectively connected to the first pumps 42, several recovery pipes 45 respectively connected to the lower cover 23, several second pumps 46 respectively connected to a portion of the water tanks 41, several second spray pipes 48 respectively connected to the second pumps 46, a recovery dish 49 mounted on the bottom of the rotating drum 20, a collecting pipe 43 connected to the recovery pipes 45, and a filter recovery bucket 47 connecting the collecting pipe 43 and the recovery dish 49. Each water tank 41 corresponds to one rotating drum 20. Each first spray pipe 44 passes through the corresponding driven wheel 33 and the upper cover 22 and extends to the corresponding atomizing chamber 24. Each first spray pipe 44 has several first nozzles 441 facing the corresponding inner wall surface 211. Each second spray pipe 48 is disposed in the planting space 14 and is respectively opposite to the two rotating cylinders 20. Each second spray pipe 48 has several second nozzles 481 facing the outer wall surface 212. The number of second spray pipes 48 is half the number of rotating cylinders 20, and a second spray pipe 48 is provided between two rotating cylinders 20 in pairs. The filter recovery tank 47 has a return pump 471 and a return pipe 472 connected to the water tank 41.
[0033] The lighting unit 50 is divided into two rows and symmetrically installed on the front and rear sides of the frame 10 along the short axis Y, respectively corresponding to the rotating drum 20. In this embodiment, the lighting unit 50 has several LED tubes 51 that are spaced apart along the transverse axis X on the front and rear sides of the frame 10.
[0034] Coordination Figure 6The intelligent control assembly 60 is mounted on the frame 10 and includes a housing 61, a control unit 62 installed inside the housing 61, a humidity sensor 63 connected to the control unit 62, a root irrigator 64 connected to the control unit 62 and capable of controlling the opening and closing of the first pump 42, a leaf irrigator 65 connected to the control unit 62 and capable of controlling the opening and closing of the second pump 46, a light sensor 66 connected to the control unit 62 and capable of controlling the opening and closing of the lighting unit 50, a music playback and voice control unit 67 connected to the control unit 62, a liquid level sensor 68 connected to the control unit 62 and installed in the water tank 41, an alarm 69 connected to the control unit 62, a wireless communication module 601 connected to the control unit 62, and an operation unit 602. The humidity sensor 63 senses humidity levels at several built-in preset values. The root-drenching controller 64 controls the first pump 42 to open and close at predetermined intervals according to different humidity preset values, and the leaf-drenching controller 65 controls the second pump 46 to open and close at predetermined intervals according to different humidity preset values. The operating unit 602 allows users to connect to the internet via an application (e.g., a mobile app) and remotely control the humidity sensor 63, the root-drenching controller 64, the leaf-drenching controller 65, the light sensor 66, and the music playback and voice control unit 67 via the wireless communication module 601. The music playback and voice control unit 67 can play music. The liquid level sensor 68 senses the water level in the water tank 41 and generates a reminder message (light or sound) via the alarm 69.
[0035] The power supply unit 70 is mounted on the frame 10 and includes a solar panel 71 located on top of the frame 10 and a battery 72 located inside the housing 61. The solar panel 71 receives sunlight and converts it into electricity. The battery 72 is fixed to the frame 10 and adjacent to the solar panel 71, and is electrically connected to the solar panel 71 to store the electricity converted by the solar panel 71. This electricity is then supplied to the drive unit 30, the spray unit 40, the lighting unit 50, and the intelligent control assembly 60, achieving energy conservation and environmental protection.
[0036] To further understand the effects of the combination of the components of this invention, the technical means employed, and the expected benefits, the following explanation will be provided, which will hopefully lead to a deeper and more specific understanding of this invention.
[0037] like Figure 1 , Figure 2 , Figure 5 and Figure 6As shown, once the entire assembly is complete, the plant 1 (e.g., Chinese herbal medicine, vegetables, flowers, etc.) can be placed in the planting hole 213, and the roots of the plant 1 can extend into the atomization chamber 24 of the rotating cylinder 20.
[0038] When the intelligent control assembly 60 controls and starts the reduction motor 31 of the drive unit 30, and the driving gear 32 drives the timing belt 34, the timing belt 34 drives the driven wheel 33 and the rotating drum 20 to rotate.
[0039] Simultaneously, by sensing the humidity in the air through the humidity sensor 63 and comparing it with the default humidity preset value of the control unit 62, the root-drenching controller 64 can control the first pump 42 to start and stop at predetermined intervals according to different humidity preset values. For example, when the humidity sensor 63 senses that the humidity in the air is below 50%, the root-drenching controller 64 can control the first pump 42 to start every 30 minutes, and the first pump 42 will automatically turn off after a preset time. When the humidity sensor 63 senses that the humidity in the air is between 50% and 55%, the root-drenching controller 64 can control the first pump 42 to start every 45 minutes, and the first pump 42 will automatically turn off after a preset time. When the humidity sensor 63 senses that the humidity in the air is between 55% and 60%, the root-drenching controller 64 can control the first pump 42 to start every 60 minutes, and the first pump 42 will automatically turn off after a preset time.
[0040] During the operation of the first pump 42, the nutrient solution in the water tank 41 is sprayed onto the plant roots in the atomization chamber 24 extending into the rotating drum 20 using the first spray nozzle 44. The nutrient solution that drips to the bottom of the atomization chamber 24 of the rotating drum 20 is finally guided back to the filter recovery tank 47 by the recovery pipe 45 and the collecting pipe 43 for filtration and recovery, and then transported back to the water tank 41 by the return pump 471 and the return pipe 472 for recycling and reuse.
[0041] Simultaneously, the humidity sensor 63 senses the humidity in the air and compares it with the default humidity preset value of the control unit 62. The shower controller 65 can then control the second pump 46 to start and stop at predetermined intervals according to different humidity preset values. For example, when the humidity sensor 63 senses that the humidity in the air is below 50%, the shower controller 65 can control the second pump 46 to start every 30 minutes, and the second pump 46 will automatically turn off after a preset time.
[0042] During the operation of the second pump 46, the nutrient solution in the water tank 41 is sprayed onto the outer wall 212 (i.e., the plant leaves) of the rotating drum 20 using the second nozzle 48. The nutrient solution that drips into the recovery dish 49 can eventually flow back into the water tank 41 for recycling.
[0043] When it is cloudy or dark, the light sensor 66 of the intelligent control assembly 60 senses the light and the control unit 62 controls the LED tube 51 of the lighting unit 50 to emit light so that the plant can carry out photosynthesis and increase its growth rate.
[0044] The music playback and voice control unit 67 of the intelligent control assembly 60 can also play music and perform voice control.
[0045] When the liquid level sensor 68 senses that the nutrient solution in the water tank 41 has reached a low level, the alarm 69 can generate a reminder message (light or sound).
[0046] The above-mentioned root and leaf irrigation settings can be remotely set and controlled through the wireless communication module 601 in conjunction with the operation unit 602, which is quite in line with the needs of technological and intelligent cultivation.
[0047] Furthermore, the power supply unit 70 utilizes a solar panel 71 to receive sunlight and convert it into electricity. The battery 72 is electrically connected to the solar panel 71 to store the electricity converted by the solar panel 71. This provides the necessary power for the drive unit 30, the spray unit 40, the lighting unit 50, and the intelligent control assembly 60, achieving the effect of environmental protection and energy saving.
[0048] Furthermore, by covering the outer periphery of the frame 10 with a mesh (not shown), the planting space 14 can have the insect-proof function of a net chamber. Alternatively, a PE membrane (not shown) can be covered the outer periphery of the frame 10 to make the planting space 14 have the function of a greenhouse, thereby enabling the control of the three elements of temperature, humidity and air in the planting space 14.
[0049] Therefore, the first embodiment of the three-dimensional rotating planting device for root and leaf irrigation of the present invention can be applied to places such as homes, supermarkets, hotels, nursing homes, schools, restaurants and organizations, allowing family members, supermarket consumers, hotel guests, nursing home residents, school teachers and students, and organization members to personally plant, harvest, and collect fresh and safe Chinese herbal medicines, vegetables and flowers. It can also be applied to large-scale plant farms.
[0050] See also Figure 7The second embodiment of the root and leaf foliage rotating planting device of the present invention includes a frame 10', a rotating drum 20', a drive unit 30', a spray unit 40', a lighting unit 50', an intelligent control assembly 60', and a power supply unit 70'. The only differences from the first embodiment are that the length of the frame 10' is smaller, there is only one rotating drum 20', there is only one driven wheel 33' in the drive unit 30', and the length of the timing belt 34' is shorter. The overall configuration still achieves the purpose of intelligent planting. Because the second embodiment of the root and leaf foliage rotating planting device is smaller in size, it is suitable not only for use on balconies in urban homes but also for more flexible and adaptable use in various organizations and institutions.
[0051] See also Figures 8 to 11 The third embodiment of the three-dimensional rotating planting device for root and leaf irrigation of the present invention is suitable for cultivating several vine-like plants 1”, and includes a frame 10”, several rotating drums 20”, a drive unit 30”, a spray unit 40”, a lighting unit 50”, an intelligent control assembly 60”, and a power supply unit 70”. The following only describes the differences from the first embodiment.
[0052] The frame 10” has several support poles 11”, several upper bearing seats 12” mounted on the corresponding support poles 11”, several lower bearing seats 13” mounted on the corresponding support poles 11” and respectively located below the upper bearing seats 12”, and several basins 17” located at the bottom. Each basin 17” defines a misting chamber 171 into which the roots of each plant 1” extend.
[0053] Each rotating cylinder 20” includes a main body 21” for the stem of the plant 1” to climb, an upper adapter 24” connected to the bottom of the main body 21”, a lower adapter 25” connected to the upper adapter 24” and axially mounted on the lower bearing seat 13”, and several spacers 26 sandwiched between the upper adapter 24” and the lower adapter 25”. The upper adapter 24” has a connecting hole 241 for the stem of the plant 1” to pass through, and the lower adapter 25” has a through hole 251 connecting the connecting hole 241” and the atomizing chamber 171”.
[0054] The spray unit 40” is mounted on the frame 10” and includes several water tanks 41” for storing nutrient solution, several first pumps 42” respectively connected to the water tanks 41”, several first spray pipes 44” respectively connected to the first pumps 42”, several recovery pipes 45” respectively connected to the bottom of the corresponding pot 17”, several second pumps 46” respectively connected to the water tanks 41”, and several second spray pipes 48” respectively connected to the second pumps 46”. The bottom end of the first spray pipe 44” extends to the corresponding atomizing chamber 171” and each has several first nozzles 441 facing the roots of the plant 1”. The second spray pipes 48” are disposed in the planting space 14” and are respectively relative to the main body 21 of the rotating cylinder 20”, and each second spray pipe 48 has several second nozzles 481 facing the main body 21”.
[0055] The intelligent control assembly 60” can control the first pump 42” and the second pump 46” to start and stop at predetermined intervals according to different preset humidity values, enabling timed root and leaf watering of the vine-like plant 1”. Therefore, the present invention is applicable to a wide range of plants.
[0056] In summary, the three-dimensional rotating planting equipment with root and leaf drenching of the present invention has a simple overall structure and is easy to manufacture and assemble. It can not only improve planting capacity, but also has the effects of safety, convenience and high technology due to its advanced intelligent device. Therefore, it can indeed achieve the purpose of the present invention.
Claims
1. A three-dimensional rotating planting device for root and leaf spraying, suitable for spraying the roots and leaves of at least one plant, and comprising a frame, at least one rotating drum, a drive unit, a spraying unit, a lighting unit, and an intelligent control assembly, characterized in that: The frame defines the planting space; The rotating drum has a rotatable shaft located in the planting space of the frame; The drive unit is mounted on the frame and can drive the drum to rotate; The spraying unit, installed on the frame, includes at least one water tank for storing nutrient solution, at least one first pump connected to the water tank, at least one first spray pipe connected to the first pump, at least one second pump connected to the water tank, and at least one second spray pipe connected to the second pump. The first spray pipe corresponds to the roots of the plant, and the second spray pipe is disposed in the planting space and relative to the rotating cylinder. The second spray pipe corresponds to the leaves of the plant. There are several rotating cylinders, and second spray pipes are provided between two rotating cylinders in pairs. Each first spray pipe has several first nozzles facing the corresponding inner wall surface and surrounding it in a 360-degree circle. Each first nozzle is staggered from the adjacent first nozzle in the vertical and horizontal directions. Each second spray pipe has several second nozzles facing the outer wall surface and surrounding it in a 360-degree circle. Each second nozzle is staggered from the adjacent second nozzle in the vertical and horizontal directions. The lighting unit is mounted on the frame and corresponds to the rotating drum; The intelligent control assembly is mounted on the rack and includes a control unit, a humidity sensor connected to the control unit, a root-drenching controller connected to the control unit and capable of controlling the opening and closing of the first pump, a leaf-drenching controller connected to the control unit and capable of controlling the opening and closing of the second pump, and a light sensor connected to the control unit and capable of controlling the opening and closing of the lighting unit. The humidity sensor detects humidity values that are within several built-in preset humidity values. The root-drenching controller can control the first pump to open and close at predetermined intervals according to different preset humidity values, and the leaf-drenching controller can control the second pump to open and close at predetermined intervals according to different preset humidity values.
2. The three-dimensional rotating planting device for root and leaf irrigation according to claim 1, characterized in that: The intelligent control assembly also includes a music playback and voice control unit that is connected to the control unit via a signal.
3. The three-dimensional rotating planting device for root and leaf irrigation according to claim 2, characterized in that: The intelligent control assembly also includes a liquid level sensor connected to the control unit and installed in the water tank, and an alarm connected to the control unit.
4. The three-dimensional rotating planting device for root and leaf irrigation according to claim 3, characterized in that: It also includes a power supply unit mounted on the rack, which provides the electrical energy required by the drive unit, the spray unit, the lighting unit and the intelligent control assembly.
5. The three-dimensional rotating planting device for root and leaf irrigation according to claim 4, characterized in that: The power supply unit has a solar panel and a battery. The solar panel is fixed to the top of the frame to receive sunlight and convert it into electricity. The battery is fixed to the frame and adjacent to the solar panel. The battery is electrically connected to the solar panel to store the electricity converted by the solar panel.
6. The three-dimensional rotating planting device for root and leaf irrigation according to claim 1, characterized in that: The rotating cylinder includes a cylinder wall, which has an inner wall surface that defines the atomization chamber, an outer wall surface opposite to the inner wall surface, and a plurality of planting holes that connect the inner wall surface and the outer wall surface. A plurality of plants are planted in the planting holes, and the roots of the plants are located in the atomization chamber.
7. The three-dimensional rotating planting device for root and leaf irrigation according to claim 1, characterized in that: The device provides for planting at least one vine-like plant, the plant also having a stem. The frame has several support rods, at least one upper bearing seat mounted on a corresponding support rod, at least one lower bearing seat mounted on a corresponding support rod and respectively disposed below the upper bearing seat, and at least one basin disposed at the bottom and relative to the rotating cylinder. The support rods are interconnected and can define the planting space. The basin defines an atomizing chamber for the roots of the plant to extend into. The first nozzle extends into the atomizing chamber. The rotating cylinder includes a main body for the stem of the plant to climb, an upper adapter connected to the bottom of the main body, and a lower adapter connected to the upper adapter and axially disposed on the lower bearing seat. The upper adapter has a linkage hole for the stem of the plant to pass through, and the lower adapter has a through hole communicating with the linkage hole and the atomizing chamber.
Citation Information
Patent Citations
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