A modern seedling raising and planting watering equipment
By designing modern seedling planting and irrigation equipment, using the circumferential shrinkage structure and transmission unit, the irrigation effect with high precision and diverse applications is achieved, and the problem that manual operations in the existing technology cannot meet the high precision irrigation, which significantly improves irrigation efficiency.
Patent Information
- Application Number
- CN202510003491.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-01-02
AI Technical Summary
Existing irrigation equipment requires manual adjustment of the irrigation range and cannot meet the needs of high-precision irrigation.
A modern seedling planting and irrigation equipment was designed, and the circumferential shrinkage structure was used to adjust the inclination angle of the spray gun to realize parabolic and fan-shaped jet water flow, combining transmission units and dispersion units to realize remote operation and multi-application status in the spray gun direction.
High-precision irrigation is achieved, which meets the needs of near and long-distance irrigation, improves the irrigation effect, reduces the instability and error caused by manual operations, and significantly improves the overall efficiency of irrigation operations.
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Figure CN119422833B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of agricultural planting, and more specifically to a modern seedling raising, planting and watering equipment. Background Art
[0002] Under the development trend of today's efficient and precise agriculture, modern seedling cultivation and planting irrigation equipment has become a key supporting technology in the field of seedling cultivation. It integrates advanced engineering technology, automated control and a deep understanding of plant growth needs, providing an ideal water management solution for the healthy growth of seedlings. Modern seedling cultivation and planting irrigation equipment came into being, aiming to meet the needs of efficient, precise and intelligent irrigation and to improve the quality and yield of seedling cultivation.
[0003] The existing irrigation equipment has relatively complete functions. During irrigation, the irrigation range of the equipment needs to be adjusted manually. However, manual operation cannot meet the needs of high-precision irrigation and has certain limitations. In view of this, we propose a modern seedling cultivation and irrigation equipment. Summary of the invention
[0004] The purpose of the present invention is to provide a modern seedling raising and planting irrigation equipment to solve the technical problem that manual operation cannot meet the demand for high-precision irrigation.
[0005] In order to solve the above technical problems, the present invention provides the following technical solutions: a modern seedling raising and planting irrigation device, comprising a support pipe, wherein a sprinkler mechanism is provided on the surface of the end of the support pipe;
[0006] The sprinkler mechanism includes a first support ring, the first support ring is movably sleeved on the end surface of the support tube, the second support ring is fixedly sleeved on the side surface of the first support ring, the inner wall of the second support ring is movably sleeved on the inner gear ring, the first support ring and the second support ring are respectively provided with slide grooves in an annular array on the top, and every two of them are connected with tooth plates that slide relative to the inside of the slide grooves and slide together, the top of the upper end plate of the second support ring is movably connected with a gear cylinder through a first plug rod, and the gear cylinder is respectively meshed with the tooth plate and the inner gear ring, the bottom of the upper end plate of the second support ring is fixedly connected with a micro motor, and one of the gear cylinders is transmission-connected with the micro motor, several of the tooth plates are respectively fixedly connected with support plates, each of the support plates is movably connected with a bending rod through a first latch, the end surface of the support tube is movably sleeved with a hinge ring, and One ends of a plurality of bending rods are movably connected to the hinge ring through a second pin, and the other ends of the plurality of bending rods are fixedly connected to a fixing cylinder, a spray gun is fixedly sleeved inside each of the fixing cylinders, a first spring is fixedly connected to the bottom of the hinge ring, and the end of the first spring is fixedly connected to the side surface of the support tube, a transmission unit is fixedly provided at the bottom of the first support ring, and a dispersion unit is fixedly provided at the bottom of the second support ring. The present invention adjusts the inclination angle of the spray gun through a circumferential contraction structure to achieve two usage states of parabolic water jet and fan-shaped water jet, thereby meeting short and long-distance irrigation effects. Compared with the prior art, the present invention has multiple application states, and at the same time, realizes the remote operation function of the spray gun direction, avoids the instability caused by manual operation, effectively reduces the error range during the irrigation process, and significantly improves the overall efficiency of the irrigation operation.
[0007] Preferably, the transmission unit includes a fixed frame and a rotation module, the fixed frame is fixedly connected to the bottom of the first support ring, the bottom of the fixed frame is fixedly connected to an outer gear ring, the side surface of the support tube is fixedly sleeved with a support plate, the bottom of the support plate is fixedly connected to a first motor, the output end of the first motor is fixedly connected to a transmission gear, and the transmission gear is meshingly connected to the outer gear ring, and the rotation module is flexibly arranged on the top of the support tube.
[0008] Preferably, the interior of the slide rail on the support plate is movably connected with first balls in an annular array, and a plurality of first balls are slidably connected to the bottom of the outer gear ring.
[0009] Preferably, the rotating module comprises a diverter tube, which is movably sleeved on the top of the support tube, and the top of the diverter tube is fixedly connected with a plurality of connecting tubes in a circular array, and the connecting tubes are fixedly connected with the spray gun.
[0010] Preferably, a plurality of second balls are movably connected in a circular array at the top of the support tube, and the second balls are in movably contact with the diverter tube. A hose is fixedly connected to the bottom of the diverter tube, and an opening and closing module is fixedly provided on the side surface of the hose.
[0011] Preferably, the opening and closing module includes a fixing plate, which is fixedly sleeved on the side surface of the supporting tube, an air pump is fixedly sleeved in the upper hole of the fixing plate, an air supply pipe is fixedly connected to the output end of the air pump, an air bag tube is fixedly sleeved on the inner wall of the supporting tube, and the air supply pipe is fixedly connected to the air bag tube.
[0012] Preferably, the dispersion unit comprises a plurality of articulated cylinders, which are fixedly connected to the bottom of the second support ring in a circular array, one side of each articulated cylinder is movably connected to a bending rod via a second plug rod, and one side of a plurality of bending rods are movably connected to a dispersion plate via a third plug rod.
[0013] Preferably, the inner walls of the bottom of several of the dispersion plates are fixedly connected with counterweight blocks in a symmetrical structure by first bolts, the other end of the second plug rod is fixedly connected with the first telescopic rod, one side of the bottom of several of the tooth plates is fixedly connected with an articulated frame, and the output end of the first telescopic rod is movably sleeved inside the articulated frame through a fourth plug rod.
[0014] Preferably, a support tube is movably sleeved on the bottom of the support tube, a plurality of electric push rods are fixedly connected to the top of the support tube in a circular array, and the output ends of the plurality of electric push rods are fixedly connected to the bottom of the support tube, and a fixing unit is movably provided on the top of the support tube.
[0015] Preferably, the fixing unit includes three mounting holes, and the three mounting holes are arranged in a circular array at the bottom of the support tube. The three mounting holes are movably connected to a first movable ring through a third pin, each of the first movable rings is movably connected to a second movable ring through a fourth pin, and each of the second movable rings is slidably connected to a spiral pin.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] 1. The present invention adjusts the inclination angle of the spray gun through the circular contraction structure to achieve two usage states of parabolic water jet and fan-shaped water jet, meet the purpose of short-distance and long-distance irrigation, and improve the irrigation effect. Compared with the prior art, the present invention has multiple application states. At the same time, it realizes the remote control function of the spray gun direction, avoids the instability caused by manual operation, effectively reduces the error range during the irrigation process, and significantly improves the overall efficiency of the irrigation operation.
[0018] 2. The present invention arranges a diverter tube to rotate on the top of the support tube so that it can rotate in coordination with the transmission unit, thereby preventing several connecting tubes from becoming entangled and knotted with each other during the rotation of the spray gun, thereby affecting the flow rate of the water in the connecting tubes, thereby reducing the range of the water jet in the spray gun and the irrigation range.
[0019] 3. The present invention uses an air pump to transport gas into the airbag tube, causing the airbag tube to expand inward and squeeze the hose, thereby realizing the water flow opening and closing function. Compared with the existing metal valve, this component can avoid long-term contact with water, causing the component to rust, thereby increasing the service life of the opening and closing module.
[0020] 4. The present invention provides a first movable ring and a second movable ring, so that the spiral pins can be inserted into the ground at multiple angles, so that a plurality of spiral pins are in a cone shape, thereby improving the stability of the device, so as to achieve the fixing function on soft soil, and avoid water and soil mixing, which causes the soil to become wet and soft and affects the stability of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention;
[0022] Figure 2 For the present invention Figure 1 A is an enlarged structural diagram;
[0023] Figure 3 For the present invention Figure 1 The enlarged structural diagram at B in FIG.
[0024] Figure 4 It is a schematic cross-sectional view of the overall structure of the present invention;
[0025] Figure 5 For the present invention Figure 4 The enlarged structural diagram at C in FIG.
[0026] Figure 6 It is a schematic diagram of a three-dimensional partial explosion structure of the present invention, to illustrate the three-dimensional structure of the opening and closing module;
[0027] Figure 7 It is a three-dimensional enlarged structural schematic diagram of the transmission unit of the present invention;
[0028] Figure 8 For the present invention Figure 7 The enlarged structural diagram at D in FIG.
[0029] Fig. 9 It is a schematic diagram of the structure of the spray gun of the present invention in the use state, to show the use state of the spray gun in the form of a fan-shaped water jet;
[0030] Fig.10 It is a schematic diagram of the structure of the spray gun of the present invention in use state, showing the use state of the spray gun spraying water flow in a parabolic shape.
[0031] Explanation of the numbers in the figure: 1. Support tube; 101. Support cylinder; 102. Electric push rod; 2. Sprinkler mechanism; 201. First support ring; 202. Second support ring; 203. Inner gear ring; 204. Slide; 205. Gear plate; 206. Gear cylinder; 207. Micro motor; 208. Support sheet; 209. Bending rod; 210. Articulated ring; 211. Fixed cylinder; 212. Spray gun; 213. First spring; 3. Transmission unit; 301. Fixed frame; 302. Outer gear ring; 303. Support plate; 303a. First ball bearing; 304. First A motor; 305, a transmission gear; 4, a dispersion unit; 401, an articulated tube; 402, a zigzag rod; 403, a dispersion plate; 404, a counterweight; 405, a first telescopic rod; 406, an articulated frame; 5, a rotating module; 501, a diverter tube; 502, a connecting pipe; 503, a second ball bearing; 504, a hose; 6, an opening and closing module; 601, a fixing plate; 602, an air pump; 603, an air pipe; 604, an air bag tube; 7, a fixing unit; 701, a mounting hole; 702, a first movable ring; 703, a second movable ring; 704, a spiral pin. DETAILED DESCRIPTION
[0032] like Figure 2 , Figure 5 and Figure 8 As shown, the present invention relates to a modern seedling raising and planting irrigation device, comprising a support tube 1, and a sprinkler mechanism 2 is provided on the end surface of the support tube 1;
[0033] The sprinkler mechanism 2 includes a first support ring 201, which is movably sleeved on the end surface of the support tube 1, and a second support ring 202 is fixedly sleeved on the side surface of the first support ring 201. An inner gear ring 203 is movably sleeved on the inner wall of the second support ring 202. The tops of the first support ring 201 and the second support ring 202 are respectively provided with slide grooves 204 in an annular array, and a tooth plate 205 is slidably connected inside each two relative slide grooves 204. The top of the upper end plate of the second support ring 202 is movably connected with a gear cylinder 206 through a first plug rod, and the gear cylinder 206 is respectively meshed with the tooth plate 205 and the inner gear ring 203. A micro motor 207 is fixedly connected to the bottom of the upper end plate of the second support ring 202, and One of the gear cylinders 206 is transmission-connected to the micro-motor 207, and the tops of the plurality of tooth plates 205 are respectively fixedly connected with support plates 208, and each support plate 208 is movably connected with a bending rod 209 through a first latch, and a hinge ring 210 is movably sleeved on the surface of the end of the support tube 1, and one end of the plurality of bending rods 209 is movably connected to the hinge ring 210 through a second latch, and the other ends of the plurality of bending rods 209 are respectively fixedly connected with a fixed cylinder 211, and a spray gun 212 is fixedly sleeved inside each fixed cylinder 211. It is worth noting that the spray gun 212 is a conventional component in the prior art, and is a component that can spray liquids such as water or nutrient solution in a direct current jet state, which can accurately irrigate and evenly water. The invention is a key component of irrigation, which can realize near and far distance seedling irrigation. The bottom of the hinged ring 210 is fixedly connected with a first spring 213, and the end of the first spring 213 is fixedly connected to the side surface of the support tube 1. The bottom of the first support ring 201 is fixedly provided with a transmission unit 3, and the bottom of the second support ring 202 is fixedly provided with a dispersion unit 4. The invention adjusts the inclination angle of the spray gun 212 through the circumferential contraction structure to realize two use states of parabolic water jet and fan-shaped water jet, which meets the purpose of near and far distance irrigation and improves the irrigation effect. Compared with the prior art, the invention has multiple application states. At the same time, it realizes the remote operation function of the spray gun 212 direction, avoids the instability caused by manual operation, and effectively shortens the irrigation process. The error range is within the range, which significantly improves the overall efficiency of the irrigation operation. The water flow is then sprayed out through the spray gun 212. When irrigating long-distance seedling cultivation and planting, the micro motor 207 is first operated through the external circuit mechanism. The micro motor 207 drives one of the gear cylinders 206 to rotate, and through the meshing transmission of the inner gear ring 203, a plurality of tooth plates 205 move outward, and the bending rod 209 moves to one side. One end of the bending rod 209 applies a force to the hinge ring 210, so that the hinge ring 210 moves downward on the support tube 1. When the ground of the hinge ring 210 is level with the top surface of the tooth plate 205, the micro motor 207 stops working. Among them, the spray gun 212 rotates through the rotation of the bending rod 209 to change the direction of the injection port, such as Fig.10As shown, the spray gun 212 sprays water in a parabolic shape to irrigate the plants on the ground. When irrigating the plants at a close distance, the gear cylinder 206 is first driven to rotate by the micro motor 207, and the gear meshing transmission is used to make the plurality of tooth plates 205 gather toward the middle, and the support sheet 208 applies a force to the bending rod 209 to move toward the middle, and one end of the support sheet 208 is guided by the first spring 213 to drive the hinge ring 210 to move upward on the support tube 1, wherein the spray gun 212 changes the direction of the spray port by tilting the bending rod 209, as shown in FIG. Fig. 9 shown.
[0034] In an embodiment of the present invention, Figure 6 and Figure 7 As shown, the transmission unit 3 includes a fixed frame 301 and a rotating module 5, the fixed frame 301 is fixedly connected to the bottom of the first support ring 201, the bottom of the fixed frame 301 is fixedly connected with an outer gear ring 302, the side surface of the support tube 1 is fixedly sleeved with a support plate 303, the bottom of the support plate 303 is fixedly connected with a first motor 304, the output end of the first motor 304 is fixedly connected with a transmission gear 305, and the transmission gear 305 is meshingly connected with the outer gear ring 302, the rotating module 5 is movably arranged on the top of the support tube 1, and the interior of the slide rail on the support plate 303 is movably connected with a first ball 303a in an annular array, and a plurality of first balls 303a are slidably connected to the bottom of the outer gear ring 302 together. It is worth noting that the outer gear ring 302 is driven by the first motor 304 to rotate, thereby driving a plurality of spray guns 212 to rotate, so as to achieve the purpose of complete coverage and watering.
[0035] In an embodiment of the present invention, Figure 5 and Figure 6 As shown, the rotating module 5 includes a diverter tube 501, which is movably sleeved on the top of the support tube 1. A plurality of connecting tubes 502 are fixedly connected to the top of the diverter tube 501 in an annular array, and the connecting tubes 502 are fixedly connected to the spray gun 212. A plurality of second balls 503 are movably connected to the top of the support tube 1 in an annular array, and the second balls 503 are in movably contact with the diverter tube 501. A hose 504 is fixedly connected to the bottom of the diverter tube 501, and an opening and closing module 6 is fixedly provided on the side surface of the hose 504. It is worth noting that by arranging the diverter tube 501 to rotate on the top of the support tube 1, it can rotate in conjunction with the rotation of the transmission unit 3, thereby preventing the connecting tubes 502 from entangled and knotted with each other during the rotation of the spray gun 212, affecting the water flow velocity in the connecting tube 502, thereby causing the range of the water jet in the spray gun 212 to be sprayed, thereby reducing the irrigation range.
[0036] In an embodiment of the present invention, Figure 5 and Figure 6As shown, the opening and closing module 6 includes a fixing plate 601, which is fixedly sleeved on the side surface of the support tube 1, and an air pump 602 is fixedly sleeved in the hole on the fixing plate 601. The output end of the air pump 602 is fixedly connected to an air delivery pipe 603, and the inner wall of the support tube 1 is fixedly sleeved with an air bag tube 604. It is worth noting that the air bag tube 604 is made of rubber material. When in use, the air pump 602 is used to transport gas into the air bag tube 604, so that the air bag tube 604 expands inwardly and squeezes the hose 504, thereby realizing the water flow opening and closing function. Compared with the existing metal valve, this component can avoid long-term contact with water. , causing the components to rust, thereby increasing the service life of the opening and closing module 6, and the air pipe 603 is fixedly connected to the air bag tube 604, and the first motor 304 drives the transmission gear 305 to rotate through an external circuit mechanism, and drives the first support ring 201 to rotate through gear meshing transmission, thereby rotating the plurality of spray guns 212, so that the water can be evenly irrigated. In rainy weather, the air pump 602 can be operated through an external control system, and the gas flows into the air bag tube 604 through the air pipe 603, so that the air bag tube 604 expands, and squeezes the hose 504 to close the water flow, thereby saving water resources.
[0037] As another embodiment of the present invention, Figure 8As shown, the dispersion unit 4 includes a plurality of articulated cylinders 401, and the plurality of articulated cylinders 401 are fixedly connected to the bottom of the second support ring 202 in an annular array. One side of each articulated cylinder 401 is movably connected to a bending rod 402 through a second plug rod, and one side of the plurality of bending rods 402 is movably connected to a dispersion plate 403 through a third plug rod. It is worth noting that when the spray gun 212 sprays a direct current water column, the water flow contacts the dispersion plate 403, forming a fan-shaped diffusion to the surroundings, and irrigating a small range around the device. At the same time, the dispersion plate 403 is rotated by the force, so that the water flow repeatedly switches between the parabolic water flow and the fan-shaped water flow, thereby irrigating the places that are not fully irrigated by the parabolic water flow, realizing a completely covered irrigation method, and improving the irrigation efficiency. The inner walls of the bottoms of the plurality of dispersion plates 403 are fixedly connected to counterweight blocks 404 in a symmetrical structure through first bolts. It is worth noting that by setting the counterweight blocks 40 4. When the dispersion plate 403 is not subjected to external force, it is completely perpendicular to the horizontal plane, and when it rotates, the dispersion plate 403 can ensure a stable rotation speed when it is impacted by water flow, so as to avoid the dispersion plate 403 rotating too fast to affect the water flow dispersion effect when it is impacted by water flow. The other end of the second plug rod is fixedly connected to the first telescopic rod 405, and one side of the bottom of the plurality of tooth plates 205 is fixedly connected to the hinge frame 406, and the output end of the first telescopic rod 405 is movably sleeved inside the hinge frame 406 through the fourth plug rod. When the plurality of tooth plates 205 gather toward the middle, the bending rod 402 rotates through the rotation of the first telescopic rod 405, so that the dispersion plate 403 corresponds to the position of the injection port of the spray gun 212. The dispersion plate 403 is impacted by the water flow sprayed by the spray gun 212, so that the dispersion plate 403 rotates. When the water flow contacts the dispersion plate 403, the water flow is fan-shaped, which can irrigate the plants planted at a close distance.
[0038] As another embodiment of the present invention, Figure 1 As shown, a support tube 101 is movably sleeved at the bottom of the support tube 1, a plurality of electric push rods 102 are fixedly connected to the top of the support tube 101 in a circular array, and the output ends of the plurality of electric push rods 102 are fixedly connected to the bottom of the support tube 1, and a fixing unit 7 is movably provided at the top of the support tube 101.
[0039] As another embodiment of the present invention, Figure 3As shown, the fixing unit 7 includes three mounting holes 701, which are arranged in a circular array at the bottom of the support tube 101. The three mounting holes 701 are movably connected to the first movable ring 702 through the third latch, and each first movable ring 702 is movably connected to the second movable ring 703 through the fourth latch, and each second movable ring 703 is slidably connected to the spiral pin 704. It is worth noting that by providing the first movable ring 702 and the second movable ring 703, the spiral pin 704 can be inserted into the ground at multiple angles, so that a plurality of spiral pins 704 present a cone shape, thereby improving the The device is stable so as to achieve the function of fixing on soft soil, avoid water and soil mixing, causing the soil to become wet and soft, and affecting the stability of the device. During installation, the first movable ring 702 and the second movable ring 703 are first rotated to tilt the spiral pin 704, and then the spiral pin 704 is inserted into the soil through an external tool. Among them, several spiral pins 704 are inserted in the soil in an inclined state to make them conical, which can improve the stability of the device. When in use, the water first flows into the hose 504 through the external irrigation system, and then flows into each spray gun 212 through the diversion tube 501.
[0040] Working principle: This embodiment provides a modern seedling raising and planting irrigation device. When installing, first rotate the first movable ring 702 and the second movable ring 703 to tilt the spiral pin 704, and then insert the spiral pin 704 into the soil through an external tool. Among them, a number of spiral pins 704 are inserted into the soil in an inclined state to make it conical, which can improve the stability of the device. When in use, first use the external irrigation system to make the water flow into the hose 504, then flow into each spray gun 212 through the diverter tube 501, and then spray the water through the spray gun 212. When irrigating remote seedlings, the micro motor 207 is first operated through an external circuit mechanism, and the micro motor 207 drives one of the gear cylinders 206 to rotate, and through the meshing transmission of the inner gear ring 203, a plurality of tooth plates 205 move outward, and the bending rod 209 moves to one side, and one end of the bending rod applies a force to the hinge ring 210, so that the hinge ring 210 moves downward on the support tube 1. When the ground of the hinge ring 210 is level with the top surface of the tooth plate 205, the micro motor 207 stops working, and the spray gun 212 rotates through the rotation of the bending rod 209, changing the direction of the spray port, such as Fig.10 As shown, the spray gun 212 sprays water in a parabolic shape to irrigate the plants on the ground. When irrigating the plants at a close distance, the gear cylinder 206 is first driven to rotate by the micro motor 207, and the gear meshing transmission is used to make the plurality of tooth plates 205 gather toward the middle, and the support sheet 208 applies a force to the bending rod 209 to move toward the middle, and one end of the support sheet 208 is guided by the first spring 213 to drive the hinge ring 210 to move upward on the support tube 1, wherein the spray gun 212 changes the direction of the spray port by tilting the bending rod 209, as shown in FIG. Fig. 9 As shown, at the same time, when the plurality of tooth plates 205 gather toward the middle, the zigzag rod 402 rotates through the rotation of the first telescopic rod 405, so that the dispersion plate 403 corresponds to the position of the injection port of the spray gun 212, and the dispersion plate 403 rotates after the impact of the water flow sprayed by the spray gun 212. When the water flow contacts the dispersion plate 403, the water flow is fan-shaped water spray, which irrigates the plants planted at a close distance, and the first motor 304 drives the transmission gear 305 to rotate through the external circuit mechanism, and drives the first support ring 201 to rotate through the gear meshing transmission, thereby rotating the plurality of spray guns 212, so that the water spray can be evenly irrigated. In rainy weather, the air pump 602 can be operated through the external control system, and the gas flows into the air bag tube 604 through the air pipe 603, so that the air bag tube 604 expands, and squeezes the hose 504 to close the water flow, thereby saving water resources.
[0041] The embodiments of the present invention disclose preferred embodiments, but are not limited thereto. A person skilled in the art can easily understand the spirit of the present invention based on the above embodiments and make different extensions and changes. However, as long as they do not deviate from the spirit of the present invention, they are all within the protection scope of the present invention.
Claims
1. A modern seedling raising and planting irrigation equipment, characterized in that: It comprises a support pipe (1), wherein a sprinkler mechanism (2) is movably provided on the surface of the end of the support pipe (1); The sprinkler mechanism (2) comprises a first support ring (201), the first support ring (201) being movably sleeved on the end surface of the support tube (1), a second support ring (202) being fixedly sleeved on the side surface of the first support ring (201), an inner toothed ring (203) being movably sleeved on the inner wall of the second support ring (202), the first support ring (201) and the second support ring (202) being respectively provided with slide grooves (204) in an annular array at the top, and toothed plates (205) being slidably connected to each other in the inside of each of the two slide grooves (204), a gear cylinder (206) being movably connected to the top of the upper end plate of the second support ring (202) via a first insertion rod, and the gear cylinder (206) being respectively meshed and connected to the toothed plate (205) and the inner toothed ring (203), a micro motor (207) being fixedly connected to the bottom of the upper end plate of the second support ring (202), and one of the gear cylinders (206) The plurality of toothed plates (205) are connected to the micro motor (207) in a transmission manner, the tops of the plurality of toothed plates (205) are respectively fixedly connected to support plates (208), each of the support plates (208) is movably connected to a bending rod (209) via a first latch, a hinge ring (210) is movably sleeved on the end surface of the support tube (1), and one end of the plurality of bending rods (209) is respectively movably connected to the hinge ring (210) via a second latch, the other ends of the plurality of bending rods (209) are respectively fixedly connected to a fixing cylinder (211), a spray gun (212) is fixedly sleeved inside each of the fixing cylinders (211), a first spring (213) is fixedly connected to the bottom of the hinge ring (210), and the end of the first spring (213) is fixedly connected to the side surface of the support tube (1), a transmission unit (3) is fixedly provided at the bottom of the first support ring (201), and a dispersion unit (4) is fixedly provided at the bottom of the second support ring (202); The dispersion unit (4) comprises a plurality of hinged cylinders (401), wherein the plurality of hinged cylinders (401) are fixedly connected to the bottom of the second support ring (202) in an annular array, one side of each hinged cylinder (401) is movably connected to a bending rod (402) via a second insertion rod, and one side of the plurality of bending rods (402) is movably connected to a dispersion plate (403) via a third insertion rod; the inner walls of the bottoms of the plurality of dispersion plates (403) are fixedly connected to a counterweight block (404) in a symmetrical structure via first bolts, the other ends of the second insertion rods are fixedly connected to a first telescopic rod (405), one side of the bottoms of the plurality of toothed plates (205) are fixedly connected to an articulated frame (406), and the output end of the first telescopic rod (405) is movably sleeved inside the articulated frame (406) via a fourth insertion rod.
2. A modern seedling raising and planting irrigation equipment according to claim 1, characterized in that: The transmission unit (3) comprises a fixed frame (301) and a rotation module (5); the fixed frame (301) is fixedly connected to the bottom of the first support ring (201); an outer toothed ring (302) is fixedly connected to the bottom of the fixed frame (301); a support plate (303) is fixedly sleeved on the side surface of the support tube (1); a first motor (304) is fixedly connected to the bottom of the support plate (303); a transmission gear (305) is fixedly connected to the output end of the first motor (304); and the transmission gear (305) is meshingly connected to the outer toothed ring (302); and the rotation module (5) is movably arranged on the top of the support tube (1).
3. A modern seedling raising and planting irrigation equipment according to claim 2, characterized in that: The interior of the upper slide rail of the support plate (303) is movably connected with first rolling balls (303a) in a ring array, and a plurality of first rolling balls (303a) are slidably connected to the bottom of the outer gear ring (302).
4. A modern seedling raising and planting irrigation equipment according to claim 3, characterized in that: The rotating module (5) comprises a flow dividing tube (501), the flow dividing tube (501) being movably sleeved on the top of the supporting tube (1), and the top of the flow dividing tube (501) being fixedly connected to a plurality of connecting tubes (502) in a circular array, and the connecting tubes (502) are fixedly connected to the spray gun (212).
5. A modern seedling raising and planting irrigation equipment according to claim 4, characterized in that: A plurality of second balls (503) are movably connected in a ring array at the top of the support tube (1), and the second balls (503) are in movably contact with the diverter tube (501). A hose (504) is fixedly connected to the bottom of the diverter tube (501), and an opening and closing module (6) is fixedly provided on the side surface of the hose (504).
6. A modern seedling raising and planting irrigation device according to claim 5, characterized in that: The opening and closing module (6) comprises a fixing plate (601), the fixing plate (601) being fixedly sleeved on the side surface of the support tube (1), an air pump (602) being fixedly sleeved in the upper hole of the fixing plate (601), an output end of the air pump (602) being fixedly connected to an air supply pipe (603), an air bag tube (604) being fixedly sleeved on the inner wall of the support tube (1), and the air supply pipe (603) being fixedly connected to the air bag tube (604).
7. A modern seedling raising and planting irrigation device according to claim 6, characterized in that: The bottom of the support tube (1) is movably sleeved with a support cylinder (101), the top of the support cylinder (101) is fixedly connected with a plurality of electric push rods (102) in a ring array, and the output ends of the plurality of electric push rods (102) are fixedly connected to the bottom of the support tube (1), and a fixing unit (7) is movably provided on the top of the support cylinder (101).
8. The modern seedling raising and planting irrigation equipment according to claim 7 is characterized in that: The fixing unit (7) comprises three mounting holes (701), the three mounting holes (701) being arranged in a circular array at the bottom of the support tube (101), the interior of the three mounting holes (701) being movably connected to a first movable ring (702) via a third latch, the interior of each of the first movable rings (702) being movably connected to a second movable ring (703) via a fourth latch, and the interior of each of the second movable rings (703) being slidably connected to a spiral pin (704).
Citation Information
Patent Citations
Sprinkling irrigation equipment
CN221615806U