Watering equipment convenient for corn germination and seedling raising
By designing watering equipment that facilitates corn germination and seedling cultivation, the problems of moisture management during corn seedling cultivation are solved by using the functions of diversion, atomization, spraying and stirring, uniform deep irrigation is achieved, and the seedling cultivation effect is improved.
Patent Information
- Application Number
- CN202511061645.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-31
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2045-07-31
AI Technical Summary
During the corn seedling cultivation process, the water conditions are strictly required during the germination period. Insufficient or excessive moisture will affect the germination rate and seedling quality. It is difficult for existing equipment to achieve uniform, deep irrigation and frequent small amounts of water replenishment, resulting in poor seedling cultivation results.
A watering equipment for corn germination and seedling cultivation was designed, including flow guide components, atomization components, spraying components, telescopic components and agitating devices. Through heating, atomization, movement and stirring functions, uniform watering of different areas and depths can be achieved to avoid irrigation blind spots.
The uniform irrigation of the surface and bottom layers during corn seedling cultivation is achieved, the germination rate and seedling quality are improved, the seedling problems caused by insufficient or excessive moisture are avoided, and the irrigation needs are adapted to the irrigation needs under different environmental conditions.
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Figure CN120548962A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of watering, in particular to a watering device for facilitating corn germination and seedling raising. Background Art
[0002] As an important global food, feed, and industrial raw material crop, corn's high and stable yields are crucial to ensuring food security. Seedling transplanting is an effective cultivation technique for increasing corn yields, accelerating market launch, combating adverse weather conditions (such as low temperatures in early spring), and conserving seeds. During the corn seedling cultivation process, germination is a critical stage in determining the success and quality of seedlings. This stage is extremely sensitive and demanding on moisture conditions. Germinating corn seeds require sufficient water (approximately 35-50% of the seed's air-dried weight) to initiate internal physiological and biochemical activities. Insufficient water can lead to delayed germination, reduced germination rates, or even complete failure of germination. Excessive water can cause soil hypoxia and seed rot (rot).
[0003] Corn seeds are sown at a shallow depth (usually 2-4 cm), and the water required for germination depends primarily on the soil in the sowing layer and the surrounding soil. Deep seepage not only wastes water but can also lower soil temperatures, hindering germination. Newly sown or newly whitened seeds and their young roots are extremely fragile. Strong water impact can wash away the soil, exposing the seeds, damaging the seedlings, or causing root displacement. The seedling medium (or soil) has limited water retention capacity and is prone to water loss, especially in temperature-controlled seedling greenhouses (rooms). Frequent, but small, supplemental watering is required to keep the medium moist but not waterlogged. Summary of the Invention
[0004] To achieve the above objectives, the present invention is implemented through the following technical solutions: a watering device for facilitating corn germination and seedling raising, comprising a main bracket, a fixed shaft fixedly connected to one side of the top of the main bracket, a push handle fixedly connected to the top of the fixed shaft, a spraying device sleeved and rotatably connected to the side of the fixed shaft, a stirring device fixedly connected to the center position of the top of the main bracket, and a moving device fixedly connected to the side of the top of the main bracket away from the fixed shaft; The spraying device includes a connecting ring, a side of the connecting ring is fixedly connected to a flow guide component, a bottom side of the flow guide component is connected to an atomizing component, a bottom side of the flow guide component away from the atomizing component is connected to a spraying component, a side of the flow guide component is fixedly connected to a telescopic component, a side of the telescopic component away from the flow guide component is fixedly connected to a rotating seat, the side of the connecting ring is sleeved on the side of the fixed shaft and is rotatably connected to the fixed shaft, and the side of the rotating seat is threadedly connected to the side of the moving device.
[0005] Preferably, the diversion assembly includes a diversion shell, the bottom of the inner wall of the diversion shell is fixedly connected to a diversion tube, the top of the diversion tube is fixedly connected to a heating wire, one side of the inner wall of the diversion shell is fixedly connected to an inclined diversion tube, the side of the inner wall of the diversion shell away from the inclined diversion tube is fixedly connected to an inclined plate, the top of the diversion shell is connected to a water inlet joint, the side of the diversion shell is fixedly connected to the side of the connecting ring, the side of the diversion shell away from the connecting ring is fixedly connected to the side of the rotating seat, the connecting ring fixes the diversion assembly, the diversion assembly heats and guides water, and changes the coverage area through the cooperation between the telescopic assembly and the rotating seat, so as to adapt to different areas for watering, and takes into account the irrigation of the surface and the bottom layer through the atomization watering of the atomization assembly and the vertical watering of the spraying assembly, thereby increasing the effect of seedling cultivation.
[0006] Preferably, the atomizing assembly includes a rotary joint, the top of the rotary joint is connected to a water inlet pipe, the side of the rotary joint is connected to a water outlet pipe, the bottom of the water outlet pipe is connected to a strip nozzle, and the top of the water inlet pipe is connected to the bottom of the inclined plate. In various scenarios involving atomization operations, an atomizing assembly with excellent performance plays a key role. Preferably, the atomizing assembly we are concerned about is exquisitely designed and practical in function. The core part of the atomizing assembly is the rotary joint, which plays the role of a hub in the entire atomizing assembly. It has flexible rotation performance and can adapt to the needs of different angles and directions, laying the foundation for subsequent water flow delivery and atomization operations. The top of the rotary joint is connected to the water inlet pipe, which is like the "throat" of the entire atomizing system. Clear water flows continuously into the rotary joint from here. The diameter of the water inlet pipe has been carefully designed to ensure that water enters the rotary joint at a suitable flow rate and pressure, which not only ensures the water supply The strip nozzle is the key to achieving atomization. When water reaches the strip nozzle through the outlet pipe, the nozzle will disperse the water into fine droplets in a specific way to form a uniform atomization effect. This strip design makes the atomization range wider and can cover a larger area. The top of the water inlet pipe is connected to the bottom of the inclined plate. The existence of the inclined plate is of great significance. It can adjust the angle of the water inlet pipe according to actual conditions so that water can flow into the water inlet pipe more smoothly. At the same time, it also facilitates the connection and coordination of the entire atomization assembly with other equipment. Such a well-designed atomization assembly will bring efficient and stable atomization effect to related operations.
[0007] Preferably, the spray assembly includes a connecting pipe, the bottom of which is connected to a V-shaped nozzle, the top of the connecting pipe is connected to the bottom of the oblique guide pipe, and the water flows through the water inlet joint into the interior of the guide shell, and is heated by the heating wire to increase the solubility of the water body, thereby avoiding the decrease in the solubility of the water body in a low temperature environment, which leads to the dissociation of the fertilizer and the water body, and facilitates the irrigation operation in the greenhouse in winter by heating, and guides the water flow through the oblique guide pipe and the inclined plate, and enters the interior of the rotary joint through the water inlet pipe, and enters the interior of the water outlet pipe through the rotary joint, and Atomization spraying is performed through the strip nozzle, and the linear atomization spraying of the strip nozzle increases the coverage area, and the recoil force during the spraying of the strip nozzle drives the water outlet pipe to rotate on the side of the rotary joint, so as to realize the self-angle rotation during the spraying process, thereby avoiding the occurrence of irrigation dead corners. At the same time, the water flows through the connecting pipe, and the water flows through the connecting pipe into the interior of the V-shaped nozzle, and is sprayed downward through the bottom of the V-shaped nozzle, thereby realizing deep irrigation of the ground, thereby realizing the watering depth, and avoiding the uneven irrigation caused by the atomization spray under the obstruction of the leaves.
[0008] Preferably, the telescopic assembly includes a movable bracket, a movable tube is fixedly connected to the side of the movable bracket, an inner wall bottom of the movable tube is connected to an atomizing nozzle, the side of the movable tube extends into the inner wall of the guide tube and is slidably connected to the guide tube, the side of the movable bracket is fixedly connected to the side of the rotating seat, and when the movable device moves, it drives the rotating seat to move, the movement of the rotating seat drives the movable bracket to move, the movable bracket drives the movable tube to move, and the movement of the movable tube drives the atomizing nozzle to move, and the water flows through the interior of the guide tube into the interior of the movable tube and is sprayed out through the atomizing nozzle, thereby spraying the water flow, thereby changing the coverage area, thereby realizing irrigation needs for different cross-sectional areas.
[0009] Preferably, the stirring device includes a stirring tank, the bottom of the stirring tank is fixedly connected to a first motor, the driving shaft of the first motor is fixedly connected to a stirring blade, the side of the stirring blade is provided with a turbulent hole, the bottom of the stirring blade is fixedly connected to an oblique blade, the side of the stirring tank is connected with an outlet pipe, the outlet pipe is connected to the top of the water inlet joint at one end away from the stirring tank, in industrial production and many related fields, the performance of the stirring device is of great importance, preferably, the stirring device we are discussing includes a carefully designed stirring tank, which is like the core container of the entire device, providing a stable space for the mixing of various substances, the bottom of the stirring tank is firmly fixedly connected to the first motor, and this first motor is the power source of the entire stirring process, it has a strong and stable driving force, and its driving shaft is firmly connected to the stirring blade. When the motor is started, the driving shaft drives the stirring blade to rotate rapidly. Observe the stirring blade carefully again, its side The surface is cleverly provided with spoiler holes, which play a big role. When the stirring blades rotate at high speed, they can break the original flow state of the liquid and make the liquid form more turbulence, thereby greatly enhancing the stirring effect and allowing the substances to be mixed more fully. The bottom of the stirring blade is also fixedly connected with an oblique blade. The existence of the oblique blade further optimizes the stirring method. It can turn over the substance at the bottom of the stirring tank more forcefully to avoid the sedimentation of the bottom substance and insufficient mixing. On the side of the stirring tank, there is a guide pipe, which is the conveying channel for the stirred substance. It connects the stirring tank with the water inlet joint. The end of the guide pipe away from the stirring tank is connected to the top of the water inlet joint. In this way, the fully stirred substance can be smoothly transported to the water inlet joint through the guide pipe, preparing for subsequent processes. The design of the entire stirring device is compact and reasonable. Each component plays an indispensable role and together provides a guarantee for an efficient stirring process.
[0010] Preferably, the moving device includes a rotating wheel, the top of the rotating wheel is fixedly connected to a rotating handle, the side of the rotating wheel is fixedly connected to a stud, the bottom of the rotating wheel is rotatably connected to the fixed end of the main hydraulic rod, the movable end of the main hydraulic rod is fixedly connected to the first roller, the fixed end of the main hydraulic rod is connected to a shunt pipe, the end of the shunt pipe away from the main hydraulic rod is connected to the fixed end of the auxiliary hydraulic rod, the movable end of the auxiliary hydraulic rod is fixedly connected to the second roller, the top of the auxiliary hydraulic rod is fixedly connected to the bottom of the rotating seat, the side of the stud is threadedly connected to the side of the rotating seat, and the side of the rotating wheel is rotatably connected to the top of the main bracket through the bracket. When stirring, the first motor drives the stirring blade to rotate, the stirring blade drives the water flow to stir, and the turbulent hole drives the water flow to generate turbulence, thereby promoting the dissolution of fertilizer, and the inclined The paddle drives the water to rise, thereby avoiding different water concentrations caused by the fertilizer sinking to the bottom, and rotates in the opposite direction after stirring, thereby driving the water to be discharged along the outlet pipe, which is convenient for pushing the water flow, and scraping the inner wall of the mixing tank under the action of the scraper, thereby avoiding the fertilizer from sticking to the inner wall of the mixing tank. Manually rotate the turning handle, the turning handle drives the turning wheel to rotate, the turning wheel rotation drives the stud rotation, the stud rotation drives the turning seat to move, the turning seat movement drives the diversion shell to open and close at different angles, thereby achieving different coverage ranges, and through the oil pressure balance between the first roller and the auxiliary hydraulic rod, the position of the second roller is automatically compensated when the first roller moves up and down, thereby achieving stability of the device, thereby maintaining the stability of the equipment, and reducing the occurrence of irrigation dead angles.
[0011] The present invention provides a watering device that facilitates corn germination and seedling cultivation. It has the following beneficial effects: 1. The watering equipment for corn germination and seedling raising is provided with a diversion component, which is fixed by a connecting ring. The diversion component heats and guides water, and changes the coverage area through the cooperation between the telescopic component and the rotating seat, so as to adapt to different areas for watering. The atomization watering of the atomization component and the vertical watering of the spraying component take into account the irrigation of the surface and the bottom layer, thereby increasing the effect of seedling raising.
[0012] 2. The watering device for corn germination and seedling raising is provided with a water inlet joint. Water flows through the water inlet joint into the interior of the guide shell and is heated by the heating wire to increase the solubility of the water body, thereby avoiding the dissociation of fertilizer and water due to the decrease in water solubility in a low temperature environment. The heating method facilitates irrigation operations in the greenhouse in winter, and guides the water flow through the inclined guide pipe and the inclined plate. The water enters the interior of the rotary joint through the water inlet pipe and then enters the interior of the water outlet pipe through the rotary joint. It is atomized and sprayed through the strip nozzle. The linear atomization spray of the strip nozzle increases the coverage area, and the recoil force of the strip nozzle during spraying drives the water outlet pipe to rotate on the side of the rotary joint, thereby achieving self-angle rotation during the spraying process, thereby avoiding the occurrence of irrigation dead corners. At the same time, the water flows through the connecting pipe and enters the interior of the V-shaped nozzle through the connecting pipe. It is sprayed downward through the bottom of the V-shaped nozzle, thereby achieving deep irrigation of the ground, thereby achieving watering depth, and avoiding the situation where the atomized spray is blocked by leaves and causes uneven irrigation.
[0013] 3. The watering equipment for corn germination and seedling raising is provided with a movable bracket. When the movable device moves, it drives the rotating seat to move. The movement of the rotating seat drives the movable bracket to move. The movable bracket drives the movable pipe to move. The movement of the movable pipe drives the atomizing nozzle to move. The water flows through the interior of the guide pipe into the interior of the movable pipe and is sprayed out through the atomizing nozzle, thereby spraying the water flow, thereby changing the coverage area, thereby realizing the irrigation needs of different cross-sectional areas.
[0014] 4. The watering device for facilitating corn germination and seedling cultivation is provided with a first motor. When stirring, the first motor drives the stirring blade to rotate, and the stirring blade drives the water flow to stir. The flow disturbance hole drives the water flow to generate turbulence, thereby promoting the dissolution of fertilizer. The oblique blade drives the water flow to rise, thereby avoiding different water concentrations caused by the fertilizer sinking to the bottom. After stirring, the device rotates in the opposite direction, thereby driving the water flow to be discharged along the outlet pipe, thereby facilitating the propulsion of the water flow. Under the action of the scraper plate, the inner wall of the stirring tank is scraped, thereby preventing the fertilizer from sticking to the inner wall of the stirring tank. The manual rotation of the turning handle drives the turning wheel to rotate, the rotation of the turning wheel drives the stud to rotate, and the rotation of the stud drives the rotating seat to move. The movement of the rotating seat drives the guide shell to open and close at different angles, thereby achieving different coverage areas. The oil pressure balance between the first roller and the auxiliary hydraulic rod is used to automatically compensate for the position of the second roller when the first roller moves up and down, thereby achieving stability of the device, thereby maintaining the stability of the equipment, and reducing the occurrence of irrigation dead angles. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the structure of the watering equipment for corn germination and seedling raising according to the present invention; Figure 2 Schematic diagram of the structure of the spraying device of the present invention; Figure 3 This is a schematic structural diagram of the flow guide assembly of the present invention; Figure 4 This is a schematic diagram of the structure of the atomization assembly of the present invention; Figure 5 This is a schematic diagram of the spray assembly structure of the present invention; Figure 6 This is a schematic diagram of the telescopic assembly structure of the present invention; Figure 7 Schematic diagram of the structure of the stirring device of the present invention; Figure 8 Schematic diagram of the structure of the mobile device of the present invention.
[0016] In the figure: 1, main bracket; 2, fixed axis; 3, push handle; 4, spray device; 5, stirring device; 6, moving device; 401, connecting ring; 402, guide assembly; 403, atomizing assembly; 404, spray assembly; 405, telescopic assembly; 406, rotating seat; 4021, guide housing; 4022, guide pipe; 4023, heating wire; 4024, oblique guide pipe; 4025, inclined plate; 4026, water inlet joint; 4031, rotary joint; 4032, water inlet pipe; 4033, water outlet pipe; 40 34. Strip nozzle; 4041. Connecting pipe; 4042. V-shaped nozzle; 4051. Mobile bracket; 4052. Mobile pipe; 4053. Atomizing nozzle; 501. Mixing tank; 502. First motor; 503. Mixing blade; 504. Turbine hole; 505. Scraper; 506. Oblique blade; 507. Outlet pipe; 601. Rotating wheel; 602. Rotating handle; 603. Stud; 604. Main hydraulic rod; 605. First roller; 606. Diverter pipe; 607. Auxiliary hydraulic rod; 608. Second roller. DETAILED DESCRIPTION
[0017] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. 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 making creative efforts are within the scope of protection of the present invention.
[0018] See also Figure 1-Figure 2The present invention provides a technical solution: a watering device that is convenient for corn germination and seedling raising, comprising a main bracket 1, a fixed shaft 2 is fixedly connected to one side of the top of the main bracket 1, a pushing handle 3 is fixedly connected to the top of the fixed shaft 2, a spraying device 4 is sleeved on the side of the fixed shaft 2 and rotatably connected, a stirring device 5 is fixedly connected to the center position of the top of the main bracket 1, and a moving device 6 is fixedly connected to the side of the top of the main bracket 1 away from the fixed shaft 2.
[0019] The main bracket 1 supports the equipment as a whole, the fixed shaft 2 and the pushing handle 3 move the equipment, the spraying device 4 sprays and heats the water, which is conducive to operations in the greenhouse in winter, and the fertilizer is stirred and mixed by the stirring device 5, and the water is driven by the stirring device 5 to move into the spraying device 4 for spraying. The moving device 6 supports and moves the equipment, thereby facilitating overall movement and realizing scanning watering.
[0020] The spraying device 4 includes a connecting ring 401, and the side of the connecting ring 401 is fixedly connected to the guide component 402, the bottom side of the guide component 402 is connected to the atomizing component 403, the bottom side of the guide component 402 away from the atomizing component 403 is connected to the spraying component 404, the side of the guide component 402 is fixedly connected to the telescopic component 405, and the side of the telescopic component 405 away from the guide component 402 is fixedly connected to the rotating seat 406, the side of the connecting ring 401 is sleeved on the side of the fixed shaft 2 and is rotatably connected to the fixed shaft 2, and the side of the rotating seat 406 is threadedly connected to the side of the moving device 6.
[0021] The connecting ring 401 fixes the guide component 402, the guide component 402 heats and guides the water, and changes the coverage area through the cooperation between the telescopic component 405 and the rotating seat 406, so as to adapt to different areas for watering, and takes into account the irrigation of the surface and bottom layers through the atomization watering of the atomization component 403 and the vertical watering of the spraying component 404, thereby increasing the effect of seedling cultivation.
[0022] See also Figure 1-Figure 5 The present invention provides a technical solution: the diversion assembly 402 includes a diversion shell 4021, the bottom of the inner wall of the diversion shell 4021 is fixedly connected to a diversion pipe 4022, the top of the diversion pipe 4022 is fixedly connected to a heating wire 4023, one side of the inner wall of the diversion shell 4021 is fixedly connected to an inclined diversion pipe 4024, the side of the inner wall of the diversion shell 4021 away from the inclined diversion pipe 4024 is fixedly connected to an inclined plate 4025, the top of the diversion shell 4021 is connected to a water inlet joint 4026, the side of the diversion shell 4021 is fixedly connected to the side of the connecting ring 401, and the side of the diversion shell 4021 away from the connecting ring 401 is fixedly connected to the side of the rotating seat 406.
[0023] The atomizing assembly 403 includes a rotating joint 4031 , the top of the rotating joint 4031 is connected to a water inlet pipe 4032 , the side of the rotating joint 4031 is connected to a water outlet pipe 4033 , the bottom of the water outlet pipe 4033 is connected to a strip nozzle 4034 , and the top of the water inlet pipe 4032 is connected to the bottom of the inclined plate 4025 .
[0024] The spray assembly 404 includes a connecting pipe 4041 . The bottom of the connecting pipe 4041 is connected to a V-shaped nozzle 4042 . The top of the connecting pipe 4041 is connected to the bottom of the oblique flow guide pipe 4024 .
[0025] The water flows into the interior of the guide shell 4021 through the water inlet joint 4026, and is heated by the heating wire 4023 to increase the solubility of the water body, thereby preventing the solubility of the water body from decreasing in a low temperature environment, resulting in the dissociation of fertilizer and water body, and facilitating irrigation operations in the greenhouse in winter by heating. The water flow is guided by the inclined guide pipe 4024 and the inclined plate 4025, and the water flows into the interior of the rotary joint 4031 through the water inlet pipe 4032, and then into the interior of the water outlet pipe 4033 through the rotary joint 4031, and is atomized and sprayed through the strip nozzle 4034, and then sprayed through the strip nozzle 403 4's linear atomization spray increases the coverage area, and the recoil force of the strip nozzle 4034 during spraying drives the water outlet pipe 4033 to rotate on the side of the rotary joint 4031, thereby realizing self-angle rotation during the spraying process, thereby avoiding the occurrence of irrigation dead corners. At the same time, the water flows through the connecting pipe 4041, and the water flows through the connecting pipe 4041 into the interior of the V-shaped nozzle 4042, and is sprayed downward through the bottom of the V-shaped nozzle 4042, thereby realizing deep irrigation of the ground, thereby realizing the realization of watering depth, and avoiding the uneven irrigation caused by the atomization spray under the obstruction of the leaves.
[0026] See also Figures 1-6 The present invention provides a technical solution: the telescopic component 405 includes a movable bracket 4051, the side of the movable bracket 4051 is fixedly connected to a movable tube 4052, the bottom of the inner wall of the movable tube 4052 is connected to an atomizing nozzle 4053, the side of the movable tube 4052 extends into the inner wall of the guide tube 4022 and is slidably connected to the guide tube 4022, and the side of the movable bracket 4051 is fixedly connected to the side of the rotating seat 406.
[0027] When the mobile device 6 moves, it drives the rotating seat 406 to move, the movement of the rotating seat 406 drives the mobile bracket 4051 to move, the mobile bracket 4051 drives the mobile tube 4052 to move, the movement of the mobile tube 4052 drives the atomizing nozzle 4053 to move, and the water flows through the interior of the guide tube 4022 into the interior of the mobile tube 4052 and is sprayed out through the atomizing nozzle 4053, thereby spraying the water flow, thereby changing the coverage area, thereby realizing the irrigation needs of different cross-sectional areas.
[0028] See also Figures 1-8 The present invention provides a technical solution: the stirring device 5 includes a stirring tank 501, a first motor 502 is fixedly connected to the bottom of the stirring tank 501, a stirring blade 503 is fixedly connected to the driving shaft of the first motor 502, a turbulent hole 504 is opened on the side of the stirring blade 503, an oblique blade 506 is fixedly connected to the bottom of the stirring blade 503, and an outlet pipe 507 is connected to the side of the stirring tank 501, and the end of the outlet pipe 507 away from the stirring tank 501 is connected to the top of the water inlet joint 4026.
[0029] The moving device 6 includes a rotating wheel 601, the top of the rotating wheel 601 is fixedly connected to a rotating handle 602, the side of the rotating wheel 601 is fixedly connected to a stud 603, the bottom of the rotating wheel 601 is rotatably connected to the fixed end of the main hydraulic rod 604, the movable end of the main hydraulic rod 604 is fixedly connected to the first roller 605, the fixed end of the main hydraulic rod 604 is connected to a diversion pipe 606, the end of the diversion pipe 606 away from the main hydraulic rod 604 is connected to the fixed end of the auxiliary hydraulic rod 607, the movable end of the auxiliary hydraulic rod 607 is fixedly connected to the second roller 608, the top of the auxiliary hydraulic rod 607 is fixedly connected to the bottom of the rotating seat 406, the side of the stud 603 is threadedly connected to the side of the rotating seat 406, and the side of the rotating wheel 601 is rotatably connected to the top of the main bracket 1 through the bracket.
[0030] During stirring, the first motor 502 drives the stirring blade 503 to rotate, and the stirring blade 503 drives the water flow to stir, and the flow-turbulating hole 504 drives the water flow to generate turbulence to promote the dissolution of the fertilizer, and the oblique blade 506 drives the water flow to rise, thereby avoiding the different water concentrations caused by the fertilizer sinking to the bottom, and after stirring, it rotates in the opposite direction, thereby driving the water flow to be discharged along the outlet pipe 507, thereby facilitating the promotion of the water flow, and under the action of the scraper 505, the inner wall of the stirring tank 501 is scraped, thereby avoiding the fertilizer from sticking to the inner wall of the stirring tank 501, and manually rotating Turn the rotating handle 602, and the rotating handle 602 drives the rotating wheel 601 to rotate. The rotation of the rotating wheel 601 drives the stud 603 to rotate. The rotation of the stud 603 drives the rotating seat 406 to move. The movement of the rotating seat 406 drives the diversion shell 4021 to open and close at different angles, thereby achieving different coverage ranges, and through the oil pressure balance between the first roller 605 and the auxiliary hydraulic rod 607, the position of the second roller 608 is automatically compensated when the first roller 605 moves up and down, thereby achieving stability of the device, thereby maintaining the stability of the equipment, and reducing the occurrence of irrigation dead angles.
[0031] Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field and related fields without making creative efforts should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention shall be implemented in accordance with conventional means in the field unless otherwise specified or limited.
Claims
1. A watering device for facilitating corn germination and seedling cultivation, characterized by: The invention comprises a main bracket (1), a fixed shaft (2) is fixedly connected to one side of the top of the main bracket (1), a push handle (3) is fixedly connected to the top of the fixed shaft (2), a spraying device (4) is sleeved on the side of the fixed shaft (2) and is rotatably connected thereto, a stirring device (5) is fixedly connected to the center position of the top of the main bracket (1), and a moving device (6) is fixedly connected to the side of the top of the main bracket (1) away from the fixed shaft (2); The spraying device (4) comprises a connecting ring (401), a side of the connecting ring (401) is fixedly connected to a flow guide assembly (402), a bottom side of the flow guide assembly (402) is connected to an atomizing assembly (403), a side of the bottom of the flow guide assembly (402) away from the atomizing assembly (403) is connected to a spraying assembly (404), a side of the flow guide assembly (402) is fixedly connected to a telescopic assembly (405), a side of the telescopic assembly (405) away from the flow guide assembly (402) is fixedly connected to a rotating seat (406), a side of the connecting ring (401) is sleeved on a side of the fixed shaft (2) and is rotatably connected to the fixed shaft (2), and a side of the rotating seat (406) is threadedly connected to a side of the moving device (6).
2. A watering device for facilitating corn germination and seedling raising according to claim 1, characterized in that: The flow guide assembly (402) comprises a flow guide housing (4021), a flow guide pipe (4022) is fixedly connected to the bottom of the inner wall of the flow guide housing (4021), a heating wire (4023) is fixedly connected to the top of the flow guide pipe (4022), an inclined flow guide pipe (4024) is fixedly connected to one side of the inner wall of the flow guide housing (4021), an inclined plate (4025) is fixedly connected to the side of the inner wall of the flow guide housing (4021) away from the inclined flow guide pipe (4024), a water inlet joint (4026) is connected to the top of the flow guide housing (4021), a side of the flow guide housing (4021) is fixedly connected to a side of the connecting ring (401), and a side of the flow guide housing (4021) away from the connecting ring (401) is fixedly connected to a side of the rotating seat (406).
3. The watering device for facilitating corn germination and seedling raising according to claim 1, characterized in that: The atomizing assembly (403) comprises a rotary joint (4031), the top of the rotary joint (4031) is connected to a water inlet pipe (4032), the side of the rotary joint (4031) is connected to a water outlet pipe (4033), the bottom of the water outlet pipe (4033) is connected to a strip-shaped spray nozzle (4034), and the top of the water inlet pipe (4032) is connected to the bottom of the inclined plate (4025).
4. The watering device for facilitating corn germination and seedling raising according to claim 1, characterized in that: The spray assembly (404) comprises a connecting pipe (4041), the bottom of the connecting pipe (4041) is connected to a V-shaped nozzle (4042), and the top of the connecting pipe (4041) is connected to the bottom of the oblique flow guide pipe (4024).
5. The watering device for facilitating corn germination and seedling raising according to claim 1, characterized in that: The telescopic assembly (405) comprises a movable bracket (4051), a movable tube (4052) being fixedly connected to a side surface of the movable bracket (4051), and an atomizing nozzle (4053) being connected to the bottom of the inner wall of the movable tube (4052).
6. The watering device for facilitating corn germination and seedling raising according to claim 5, characterized in that: The side surface of the movable tube (4052) extends into the inner wall of the guide tube (4022) and is slidably connected to the guide tube (4022), and the side surface of the movable bracket (4051) is fixedly connected to the side surface of the rotating seat (406).
7. The watering device for facilitating corn germination and seedling raising according to claim 2, characterized in that: The stirring device (5) comprises a stirring tank (501), a first motor (502) is fixedly connected to the bottom of the stirring tank (501), a stirring blade (503) is fixedly connected to the driving shaft of the first motor (502), a turbulent hole (504) is opened on the side of the stirring blade (503), an oblique blade (506) is fixedly connected to the bottom of the stirring blade (503), and a side of the stirring tank (501) is connected to an outlet pipe (507), and an end of the outlet pipe (507) away from the stirring tank (501) is connected to the top of the water inlet joint (4026).
8. The watering device for facilitating corn germination and seedling raising according to claim 1, characterized in that: The moving device (6) comprises a rotating wheel (601), the top of the rotating wheel (601) is fixedly connected to a rotating handle (602), the side of the rotating wheel (601) is fixedly connected to a stud (603), the bottom of the rotating wheel (601) is rotatably connected to the fixed end of a main hydraulic rod (604), the movable end of the main hydraulic rod (604) is fixedly connected to a first roller (605), the fixed end of the main hydraulic rod (604) is connected to a shunt pipe (606), the end of the shunt pipe (606) away from the main hydraulic rod (604) is connected to the fixed end of a secondary hydraulic rod (607), and the movable end of the secondary hydraulic rod (607) is fixedly connected to a second roller (608).
9. The watering device for facilitating corn germination and seedling raising according to claim 8, characterized in that: The top of the auxiliary hydraulic rod (607) is fixedly connected to the bottom of the rotating seat (406), the side of the stud (603) is threadedly connected to the side of the rotating seat (406), and the side of the rotating wheel (601) is rotatably connected to the top of the main bracket (1) through a bracket.
Citation Information
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