A flight control supply station
By designing fertilization barrels, motors, mixing leaves and flow plates in the flight prevention and control supply station, the time-consuming and labor-intensive preparation of fertilization raw materials in traditional supply stations is solved, and efficient fertilizer preparation and work efficiency are achieved.
Patent Information
- Application Number
- CN202211411329.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-11
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2042-11-11
AI Technical Summary
The traditional flight prevention and control supply station lacks mixing facilities, which makes the preparation of fertilization raw materials time-consuming and labor-intensive, and the mixing efficiency is poor.
A flight prevention and control supply station is designed, including fertilization barrels, motors, mixing leaves and flow-circulating plates. The stirring leaves are driven to rotate and stir the materials through the motor, and the flow-circulating plates are used to prevent the materials from rotating at the same speed, thereby improving the stirring efficiency.
It realizes efficient stirring and forming fertilizer materials into fertilizers, simplifies the preparation process and improves work efficiency.
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Figure CN115532111B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of flight control and prevention supply stations, in particular to a flight control and prevention supply station. Background Art
[0002] The flying control supply station is a facility for supplying drones used for irrigation and fertilization and flying control operations in fields, orchards and greenhouses. Under the operation of staff, it can supply drones through corresponding pipelines so that they can perform fertilization and irrigation work. In view of this, traditional devices are not perfect enough and there is no facility to mix the fertilizer raw materials into fertilizers, which makes fertilizer preparation time-consuming, labor-intensive and troublesome. A flying control supply station can provide convenience for staff.
[0003] The defects of existing flight control supply stations and their use methods are:
[0004] 1. The traditional flight prevention and control supply is not perfect, and there is no facility to mix the fertilizing materials into fertilizers, which makes the fertilizer preparation time-consuming, labor-intensive and troublesome.
[0005] 2. The traditional flight control supply station is not perfect. The effect of blocking materials with only the bypass plate is not good enough. There is no facility to prevent the materials from rotating at the same speed as the stirring blades, which leads to poor efficiency in stirring materials and is more troublesome. Summary of the invention
[0006] The purpose of the present invention is to provide a flight control supply station to solve the problems raised in the above-mentioned background technology.
[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solution: a flight control supply station, comprising a base, a group of well plates are installed on the top of the base through a fixing component.
[0008] Preferably, a shell is installed on the top of the base, a group of support frames are installed on the inner side of the shell, and a weak current control box is installed between two of the support frames.
[0009] Preferably, a group of fixing holes are opened through one side of the well plate, bolts are installed through threads in the fixing holes, a double-disc elbow is installed through the inside of the well plate, a check valve is installed at one end of the double-disc elbow, a serpentine tube is installed through the outer shell at one end of the check valve, a centrifugal filter is installed at one end of the serpentine tube, the input end of the centrifugal filter is connected to the serpentine tube, a delivery pipe is installed at the output end of the centrifugal filter, an automatic inlet and exhaust valve is installed on the top of the delivery pipe, an automatic sand discharger is installed at the bottom of the centrifugal filter, a mesh filter is installed at one end of the delivery pipe, and a flange pipe is installed at the output end of the mesh filter.
[0010] Preferably, a protective shell is installed on the top of the base, a support is installed on the inner side of the protective shell, and the support is located at the top of the base, a fixing frame is installed on the top of the support, a weak-current operation box is installed on the top of the fixing frame, a touch screen is installed on the back of the weak-current operation box, a fertilizer pump is installed on the top of the support, the fertilizer pump is located on the front of the fixing frame, a connecting pipe is installed on the output end of one side of the fertilizer pump, and a connecting pipe is installed on the other end of the fertilizer pump. Connecting pipe 2 is installed on the output end of the other side of the fertilizer pump, a fertilizer valve is installed on one end of connecting pipe 2, and water filling pipe 2 is installed on the top of the flange pipe, and a water filling pipe is installed on one end of water filling pipe 2.
[0011] Preferably, a dosing tube is installed at one end of the connecting tube, and a group of Y-type filters are installed at one end of the dosing tube in end-to-end connection. A solenoid valve is installed at one end of the Y-type filter near the frontmost position through a pipeline, a quantitative dosing device is installed at the output end of the solenoid valve, and a one-way valve is installed at one end of the pipeline connected to the solenoid valve.
[0012] Preferably, a support plate is installed on the front side of the base, a support pole is installed on the top of the support plate, a drone charging box is installed on the top of the support pole, and a drone medicine barrel is placed on the top of the support plate.
[0013] Preferably, a support foot is installed on the top of the base, a fertilizer bucket is installed on the top of the support foot, a motor is installed on the top of the fertilizer bucket, a filling port is installed through the top of the fertilizer bucket, a threaded cover is installed on the outer thread of the filling port, a discharge port is installed through the bottom of the fertilizer bucket, a discharge pipe is installed at the bottom of the discharge port, and the discharge pipe is connected to the pipeline connected to the Y-type filter near the front position, a flow bypass plate is installed on the inner side of the top wall of the fertilizer bucket, and a through hole is opened inside the flow bypass plate.
[0014] Preferably, a rotating rod is installed at the output end of the motor through a bearing penetrating the top of the fertilizer barrel, and a stirring blade is installed on the outer side of the rotating rod.
[0015] Preferably, a group of support rods are installed on the inner side of the bottom wall of the fertilizer barrel, a storage shell is installed on the top of the support rods, a motor is installed on the inner side of the storage shell, the output end of the motor passes through the shaft seal and a turntable is installed on the top of the storage shell, four inclined plates are installed on the top of the turntable, and fixed plates are installed between two of the inclined plates.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] 1. The present invention is provided with supporting feet, which can stably support the fertilizer bucket under the support of the base, and the fertilizer bucket can stably support the motor under the support of the supporting feet. The staff can start the fertilizer pump according to the actual needs, so that the fertilizer pump can transport water to the inner side of the fertilizer bucket through the water filling pipe. Then the staff can rotate the threaded cover to remove it from the outer side of the filling port to open the filling port by the action of the thread, and then inject the fertilizer raw material into the inner side of the fertilizer bucket from the filling port, and then start the motor to drive the stirring blade to rotate clockwise through the rotating rod to stir the material and water. After the stirring is completed, the staff can operate the one-way valve according to the actual needs to open the channel, so that the fertilizer in the fertilizer bucket can pass through the discharge port and the discharge pipe into one of the Y-type filters, and be discharged to the outside through the one-way valve after filtering, so that the device can conveniently stir the fertilizer raw material into fertilizer.
[0018] 2. The present invention is equipped with a support rod, which can firmly support the storage shell under the support of the fertilizer barrel, and the storage shell can provide support and protection for the motor. After the motor is started, it will drive the turntable to rotate through the output end. At the same time, the motor is started under the support of the support rod and the protection of the storage shell, so that the motor drives the turntable to rotate counterclockwise through the output end, and the turntable drives the inclined plate and the fixed plate to rotate together under the action of the rotating power. Under the action of the rotating power, the inclined plate and the fixed plate rotate in the opposite direction to the stirring blade to the material in the fertilizer barrel, thereby more effectively preventing the material from rotating at the same speed, improving the stirring efficiency, and providing convenience for the staff. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 A perspective view of the present invention;
[0020] Figure 2 It is a schematic diagram of the three-dimensional structure of the touch screen of the present invention;
[0021] Figure 3 It is a schematic diagram of the three-dimensional structure of the delivery pipe of the present invention;
[0022] Figure 4 It is a schematic diagram of the three-dimensional structure of the fertilizer barrel of the present invention;
[0023] Figure 5 It is a schematic diagram of the three-dimensional structure of the well tray of the present invention;
[0024] Figure 6 It is a schematic diagram of the three-dimensional structure of the turntable of the present invention;
[0025] Figure 7 It is a schematic diagram of the structure of the fertilizer pump of the present invention;
[0026] Figure 8 It is a schematic diagram of the connecting pipe structure of the present invention;
[0027] Fig. 9 A top view of the present invention;
[0028] Fig.10 It is a schematic diagram of the stirring blade structure of the present invention.
[0029] In the figure: 1. Base; 2. Shell; 3. Support frame; 4. Weak current control box; 5. Well plate; 6. Fixing hole; 7. Bolt; 8. Double-disc elbow; 9. Check valve; 10. Serpentine pipe; 11. Centrifugal filter; 12. Delivery pipe; 13. Automatic air inlet and outlet valve; 14. Automatic sand remover; 15. Mesh filter; 16. Flange pipe; 17. Protective shell; 18. Support; 19. Fixed frame; 20. Weak current operation box; 21. Touch screen; 22. Fertilizer pump; 23. Connecting pipe; 24. Connecting pipe 2; 25. Fertilizer valve; 26. Connecting pipe; 27. Add water pipe; 28. Water supply pipe 2; 29. Dosing pipe; 30. Y-type filter; 31. Solenoid valve; 32. Quantitative dosing device; 33. One-way valve; 34. Support plate; 35. Support rod; 36. UAV charging box; 37. Support foot; 38. Fertilizer bucket; 39. Motor; 40. Filling port; 41. Threaded cover; 42. Discharge port; 43. Discharge pipe; 44. Flow bypass plate; 45. Through hole; 46. Rotating rod; 47. Stirring blade; 48. Support rod; 49. Storage shell; 50. Motor; 51. Turntable; 52. Inclined plate; 53. Fixed plate; 54. UAV medicine barrel. DETAILED DESCRIPTION
[0030] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0031] In the description of the present invention, it should be noted that the terms "upper", "lower", "inner", "outer", "front end", "rear end", "two ends", "one end", "the other end" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance.
[0032] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "provided with", "connected", etc. should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0033] See also Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 7 , Figure 8 and Fig. 9 , an embodiment provided by the present invention: a flight control supply station;
[0034] Embodiment 1 includes a base 1, a shell 2 is installed on the top of the base 1, a group of brackets 3 are installed on the inner side of the shell 2, and a weak current control box 4 is installed between the two brackets 3. The base 1 can provide stable support for the shell 2, and the shell 2 can provide protection and support for all devices installed inside it. The bracket 3 can stably support the weak current control box 4 under the support of the shell 2, and the weak current control box 4 can control the operation of all electrical facilities of the device under the operation of the staff. A group of well trays 5 are installed on the top of the base 1 through a fixing component, and a group of fixing holes 6 are opened through one side of the well tray 5. Bolts 7 are installed through the threads in the fixing holes 6. A double-disc elbow 8 is installed through the inside of the well tray 5, and a check valve 9 is installed at one end of the double-disc elbow 8. The check valve 9 One end of the casing 2 is penetrated by a serpentine tube 10, one end of the serpentine tube 10 is installed with a centrifugal filter 11, the input end of the centrifugal filter 11 is connected to the serpentine tube 10, the output end of the centrifugal filter 11 is installed with a delivery pipe 12, the top of the delivery pipe 12 is installed with an automatic air inlet and outlet valve 13, the bottom of the centrifugal filter 11 is installed with an automatic sand remover 14, one end of the delivery pipe 12 is installed with a mesh filter 15, the output end of the mesh filter 15 is installed with a flange pipe 16, the well plate 5 can provide a space for the fixing hole 6 to be opened under the support of the base 1, the fixing hole 6 can provide a threaded penetration channel for the bolt 7, and the base 1 can provide a penetration channel for the double-disc elbow 8, the double-disc elbow 8 can be connected to the Yangcheng pipe and the submersible pump in the water well, and the well plate 5 can be The double-disc elbow 8 provides a through passage, which can provide a passage for the liquid to enter the check valve 9, and the check valve 9 can provide a passage for the liquid to enter the serpentine pipe 10, and the pipeline flow between the double-disc elbow 8 and the serpentine pipe 10 can be controlled under the operation of the staff. The liquid in the serpentine pipe 10 can enter the centrifugal filter 11, and the centrifugal filter 11 will filter the liquid and discharge it into the delivery pipe 12. The automatic air intake and exhaust valve 13 will open and close according to the actual needs to perform air intake and exhaust work. At the same time, the impurities filtered by the centrifugal filter 11 will enter the automatic sand discharger 14 and be discharged at a fixed time. The delivery pipe 12 can provide a passage for the liquid to enter the mesh filter 15, so that the mesh filter 15 can further filter the liquid. Step filtration, the staff can use the fixing parts to connect the main pipe of the irrigation pipe connected to the root of the crop with the flange pipe 16, so that the fertilizer can enter the pipeline through the flange pipe 16, a protective shell 17 is installed on the top of the base 1, a support 18 is installed on the inner side of the protective shell 17, and the support 18 is located at the top of the base 1, a fixing frame 19 is installed on the top of the support 18, a weak current operation box 20 is installed on the top of the fixing frame 19, a touch screen 21 is installed on the back of the weak current operation box 20, a fertilizer pump 22 is installed on the top of the support 18, the fertilizer pump 22 is located on the front of the fixing frame 19, a connecting pipe 23 is installed on the output end of one side of the fertilizer pump 22, a connecting pipe 26 is installed on the other end of the fertilizer pump 22, and a connecting pipe 24 is installed on the output end of the other side of the fertilizer pump 22,A fertilizer valve 25 is installed at one end of the connecting pipe 24, a water supply pipe 28 is installed on the top of the flange pipe 16, and a water supply pipe 27 is installed at one end of the water supply pipe 28. The protective shell 17 can provide stable support and protection for all devices installed inside it under the support of the base 1. The support 18 can stably support the fixing frame 19 under the support of the base 1. The fixing frame 19 can provide stable support for the weak current operation box 20. The staff can control the operation of the fertilizer pump 22 through the weak current operation box 20 by operating the touch screen 21. After the fertilizer pump 22 is started, it will Under the operation of the operator, liquid is transported to the inner side of the connecting pipe 23 and the connecting pipe 24. The fertilizer valve 25 can control the pipeline flow of the connecting pipe 24. The water adding pipe 28 can transport water to the inner side of the fertilizer bucket 38 after the fertilizer pump 22 is started. A dosing pipe 29 is installed at one end of the connecting pipe 23. A group of Y-type filters 30 are installed at one end of the dosing pipe 29 in a head-to-tail connection. A solenoid valve 31 is installed at one end of the Y-type filter 30 near the most front position through a pipeline. A quantitative dosing device 32 is installed at the output end of the solenoid valve 31. The solenoid valve 31 is connected to the output end of the solenoid valve 31. A one-way valve 33 is installed at one end of the pipeline. The fertilizer mixed in the fertilizer bucket 38 will pass through the drain pipe 43 into the Y-type filter 30 near the back for filtration, and then flow into the dosing pipe 29, and pass through the dosing pipe 29 into the connecting pipe 23 near the bottom, and under the action of the fertilizer pump 22, the fertilizer enters the input end of the mesh filter 15 through the connecting pipe 24. A support plate 34 is installed on the front of the base 1, and a support rod 35 is installed on the top of the support plate 34. A drone charging box 36 is installed on the top of the support rod 35, and a drone medicine barrel 5 is placed on the top of the support plate 34. 4. The support plate 34 can provide a stable support for the support pole 35, so that the support pole 35 can stably support the drone charging box 36. The staff can connect the drone to the drone charging box 36 with a charging line, so that the drone charging box 36 can charge the drone. The fertilizer bucket, centrifugal filter, and mesh filter can filter the fertilizer and water delivered under the support of the delivery pipe. The quantitative dosing device injects water and fertilizer into the drone medicine barrel or turnover medicine barrel for field operations. The drone charging box provides a stable power supply for charging the batteries of drones and other equipment.
[0035] See also Figure 1 and 10 , an embodiment provided by the present invention: a flight control supply station;
[0036] Embodiment 2 includes a base 1, a support leg 37 is installed on the top of the base 1, a fertilizer bucket 38 is installed on the top of the support leg 37, a motor 39 is installed on the top of the fertilizer bucket 38, a filling port 40 is installed through the top of the fertilizer bucket 38, a threaded cover 41 is installed on the outer side of the filling port 40, a discharge port 42 is installed through the bottom of the fertilizer bucket 38, a discharge pipe 43 is installed at the bottom of the discharge port 42, and the discharge pipe 43 is connected to the pipeline connected to the Y-type filter 30 near the front position, a bypass plate 44 is installed on the inner side of the top wall of the fertilizer bucket 38, a through hole 45 is opened inside the bypass plate 44, a rotating rod 46 is installed on the output end of the motor 39 through the bearing through the top of the fertilizer bucket 38, and a stirring blade 47 is installed on the outer side of the rotating rod 46, the support leg 37 can stably support the fertilizer bucket 38 under the support of the base 1, and the fertilizer bucket 38 can stably support the motor 39 under the support of the support leg 37. The staff can start the fertilizer pump 22 according to the actual needs, so that the fertilizer pump 22 can transport water to the inner side of the fertilizer barrel 38 through the water filling pipe 27. Then the staff can rotate the threaded cover 41 to remove it from the outer side of the filling port 40 by the thread action to open the filling port 40, and then inject the fertilizer raw material into the inner side of the fertilizer barrel 38 from the filling port 40, and then start the motor 39, so that the motor 39 drives the stirring blade 47 to rotate clockwise through the rotating rod 46 to stir the material and water. When the stirring is completed, the staff can operate the one-way valve 33 according to the actual needs to open the channel, so that the fertilizer in the fertilizer barrel 38 can pass through the discharge port 42 and the discharge pipe 43 into one of the Y-type filters 30, and after being filtered, it is discharged to the outside through the one-way valve 33, so that the device can conveniently stir the fertilizer raw material into fertilizer.
[0037] See also Figure 1 , Figure 6 and Fig.10 , an embodiment provided by the present invention: a flight control supply station;
[0038] Embodiment 3 includes a fertilizer barrel 38, a group of support rods 48 are installed on the inner side of the bottom wall of the fertilizer barrel 38, a storage shell 49 is installed on the top of the support rods 48, and a motor 50 is installed on the inner side of the storage shell 49). The output end of the motor 50 passes through the top of the storage shell 49 through a shaft seal and a turntable 51 is installed. Four inclined plates 52 are installed on the top of the turntable 51, and fixed plates 53 are installed between two of the inclined plates 52. The support rods 48 can stably support the storage shell 49 under the support of the fertilizer barrel 38, and the storage shell 49 can provide support and protection for the motor 50. After starting, the turntable 51 will be driven to rotate through the output end. At the same time, the motor 50 is started under the support of the support rod 48 and the protection of the storage shell 49, so that the motor 50 drives the turntable 51 to rotate counterclockwise through the output end, so that the turntable 51 drives the inclined plate 52 and the fixed plate 53 to rotate together under the action of the rotating power, so that the inclined plate 52 and the fixed plate 53 are driven by the rotating power and in the opposite direction of the stirring blade 47 to the material in the fertilizer barrel 38, thereby more effectively preventing the material from rotating at the same speed, improving the stirring efficiency, and providing convenience for the staff.
[0039] Working principle: Before using the flight control supply station, the staff needs to check whether there are any problems that affect the use of the device. When the staff needs to use the device, the device can be installed at the work site, and ensure that the bottom end of the double-disc elbow 8 is inserted into the well through the lift pipe and the submersible pump, and then use the charging cable to charge the drone from the drone charging box 36, and then open the threaded cover 41 to add fertilizer raw materials from the filling port 40 to the inner side of the fertilizer barrel 38, and start the fertilizer pump 22 to make the water filling pipe 27 add water to the fertilizer barrel 38, and then start the motor 39 and the motor 50 to stir and discharge the fertilizer, and then open the fertilizer valve 25 to control the fertilizer pump 22 to perform fertilization and irrigation, and at the same time open the solenoid valve 31 to add fertilizer to the drone from the quantitative dosing device 32, or add fertilizer to the drone medicine barrel 54 according to actual needs.
[0040] It is obvious to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or essential features of the present invention. Therefore, the embodiments should be regarded as exemplary and non-limiting from any point of view, and the scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims are included in the present invention, and any reference numerals in the claims should not be regarded as limiting the claims involved.
Claims
1. A flight control supply station, comprising a base (1), characterized in that: A group of well plates (5) are installed on the top of the base (1) via a fixing component; a group of fixing holes (6) are opened through one side of the well plate (5); bolts (7) are installed through the threads in the fixing holes (6); a double-disc elbow (8) is installed through the inside of the well plate (5); a check valve (9) is installed at one end of the double-disc elbow (8); a serpentine tube (10) is installed through one end of the check valve (9) passing through the housing (2); a centrifugal filter (11) is installed at one end of the serpentine tube (10); an input end of the centrifugal filter (11) is connected to the serpentine tube (10); a delivery tube (12) is installed at the output end of the centrifugal filter (11); an automatic air inlet and outlet valve (13) is installed on the top of the delivery tube (12). ), an automatic sand discharger (14) is installed at the bottom of the centrifugal filter (11), a mesh filter (15) is installed at one end of the delivery pipe (12), and a flange pipe (16) is installed at the output end of the mesh filter (15); a protective shell (17) is installed at the top of the base (1), a support (18) is installed on the inner side of the protective shell (17), and the support (18) is located at the top of the base (1), a fixing frame (19) is installed on the top of the support (18), a weak current operation box (20) is installed on the top of the fixing frame (19), and a touch screen (21) is installed on the back of the weak current operation box (20), and a fertilizer pump (22) is installed on the top of the support (18), and the fertilizer pump (22) is located on the fixing frame (1 9), a connecting pipe (23) is installed at the output end of one side of the fertilizer pump (22), a connecting pipe 2 (24) is installed at the output end of the other side of the fertilizer pump (22), a fertilizer valve (25) is installed at one end of the connecting pipe 2 (24), a water supply pipe 2 (28) is installed at the top of the flange pipe (16), and a water supply pipe (27) is installed at one end of the water supply pipe 2 (28); a dosing pipe (29) is installed at one end of the connecting pipe (23), a group of Y-type filters (30) are connected and installed at one end of the dosing pipe (29), a solenoid valve (31) is installed at one end of the Y-type filter (30) through a pipeline, and a quantitative dosing device (32) is installed at the output end of the solenoid valve (31), which is connected to the solenoid valve (31) A one-way valve (33) is installed at one end of the pipeline; a support foot (37) is installed on the top of the base (1); a fertilizer bucket (38) is installed on the top of the support foot (37); a motor (39) is installed on the top of the fertilizer bucket (38); a filling port (40) is installed through the top of the fertilizer bucket (38); a threaded cover (41) is installed on the outer side of the filling port (40); a discharge port (42) is installed through the bottom of the fertilizer bucket (38); a discharge pipe (43) is installed at the bottom of the discharge port (42); and the discharge pipe (43) is connected to the pipeline of the Y-type filter (30); a bypass plate (44) is installed on the inner side of the top wall of the fertilizer bucket (38); and a through hole (45) is opened inside the bypass plate (44).
2. A flight control supply station according to claim 1, characterized in that: A shell (2) is installed on the top of the base (1), a group of support frames (3) are installed on the inner side of the shell (2), and a weak current control box (4) is installed between two of the support frames (3).
3. A flight control supply station according to claim 1, characterized in that: A support plate (34) is installed on the front of the base (1), a support rod (35) is installed on the top of the support plate (34), a drone charging box (36) is installed on the top of the support rod (35), and a drone medicine barrel (54) is placed on the top of the support plate (34).
4. A flight control supply station according to claim 1, characterized in that: The output end of the motor (39) passes through the top of the fertilizer barrel (38) through a bearing and is equipped with a rotating rod (46), and a stirring blade (47) is installed on the outer side of the rotating rod (46).
5. A flight control supply station according to claim 1, characterized in that: A group of support rods (48) are installed on the inner side of the bottom wall of the fertilizer barrel (38), a storage shell (49) is installed on the top of the support rods (48), a motor (50) is installed on the inner side of the storage shell (49), the output end of the motor (50) passes through the storage shell (49) through a shaft seal, and a rotating disk (51) is installed on the top of the rotating disk (51), four inclined plates (52) are installed on the top of the inclined plates (52), and fixed plates (53) are installed between two of the inclined plates (52).
Citation Information
Patent Citations
Assembly type agricultural water and fertilizer integrated irrigation equipment
CN115152395A
Water and fertilizer integrated irrigation and fertilization device for agricultural intelligent greenhouse
CN216087649U