Agricultural environment-friendly water-saving irrigation equipment

By introducing arc-shaped hollow shafts, water storage tanks and other structures and servo motors into the irrigation equipment, the angle and circumference adjustment of the nozzle are realized, which solves the problem of convenient adjustment of the irrigation equipment and improves the irrigation range and efficiency.

CN223080718UActive Publication Date: 2025-07-11NINGJIN COUNTY AGRI & RURAL AFFAIRS BUREAU
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Patent Information

Application Number
CN202422380714.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-07-11
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

The existing irrigation equipment is inconvenient for convenient angle rotation adjustment, which affects the irrigation range and efficiency, and is not convenient for height and circumferential rotation irrigation, resulting in low equipment adjustment convenience and irrigation efficiency.

Method used

The arc-shaped hollow shaft, water storage tank, walking frame, connecting arm, movable arm, nozzle, telescopic sleeve and other structures are adopted, combined with servo motor and electric push rod to adjust the angle and circumference of the nozzle, and irrigation at multiple angles and positions is achieved through the control panel.

Benefits of technology

It improves the adjustment convenience and efficiency of irrigation equipment, increases the flexibility of irrigation range and location, and realizes convenient angle and circumferential rotation irrigation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The agricultural environment-friendly water-saving irrigation equipment comprises an arc-shaped hollow shaft and a water storage tank, the water storage tank is installed at the bottom end of the arc-shaped hollow shaft, a power pump is installed on the outer wall of the water storage tank, and walking frames are symmetrically arranged at the position, on one side of the water storage tank, of the bottom end of the arc-shaped hollow shaft. Supporting sleeves are installed at the top ends of the walking frames, the arc-shaped hollow shafts extend to the outer portions of the supporting sleeves, connecting arms are installed on the outer walls, on one sides of the supporting sleeves, of the arc-shaped hollow shafts, movable arms are arranged at the ends, away from the supporting sleeves, of the connecting arms, and connecting hoses are arranged in the arc-shaped hollow shafts. According to the adjustable irrigation device, convenient angle rotation type adjustment irrigation is achieved, the irrigation range is enlarged, height adjustment irrigation and circumferential rotation irrigation are facilitated, multi-angle and multi-position irrigation is facilitated, and the adjustment convenience and the irrigation efficiency of the irrigation device are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of irrigation equipment, in particular to an agricultural environmental protection and water-saving irrigation equipment. Background Technique

[0002] Agricultural irrigation methods can generally be divided into traditional surface irrigation, ordinary sprinkler irrigation and micro-irrigation. Traditional surface irrigation includes border irrigation, furrow irrigation, flood irrigation and wild flooding. However, these irrigation methods often consume a large amount of water and have a low water utilization rate, which is a very unreasonable agricultural irrigation method. In addition, ordinary sprinkler irrigation technology is a relatively common irrigation method in China's agricultural production, but the water utilization efficiency of ordinary sprinkler irrigation technology is not high. With the development of water conservation and environmental protection agriculture, modern agricultural micro-irrigation technologies include micro-sprinkler irrigation, drip irrigation, sub-surface irrigation, etc. These irrigation technologies generally have good water-saving performance and a higher water utilization rate than traditional irrigation modes.

[0003] As disclosed in an agricultural irrigation equipment with environmental protection and water saving, whose authorization publication number is CN213907834U, including a base, universal wheels are fixedly installed below the base, a rotating disk is fixedly installed above the left end of the base, a power storage device is fixedly installed at the right end of the base, a support rod is welded above the center of the rotating disk, a rotating shaft is fixedly installed at the upper end of the support rod, a motor is fixedly installed above the right end of the rotating disk, a telescopic coupling is fixedly installed at the upper end of the motor, and a sleeve rod is fixedly installed at the upper end of the telescopic coupling;

[0004] Although it realizes the agricultural irrigation equipment with environmental protection and water saving, by fixedly installing universal wheels below the base, the device is more convenient to move. A rotating disk is provided, so that the solar panel can rotate horizontally. Cooperating with the motor, the telescopic coupling, the support rod and the sleeve rod, the solar panel can rotate longitudinally by a greater angle. The solar panel is provided to convert light energy into electrical energy to provide power for the water pump and save energy. However, it does not solve the problem that the existing irrigation equipment is not convenient for convenient angular rotation adjustment irrigation during use, which affects the irrigation range, is not convenient for height adjustment irrigation and circumferential rotation irrigation, is not convenient for multi-angle and multi-position irrigation, and greatly affects the convenience of irrigation equipment adjustment and the irrigation efficiency. Content of the Utility Model

[0005] The purpose of the utility model is to provide an agricultural environmental protection and water-saving irrigation equipment to solve the problems proposed in the above background technique that the irrigation equipment is not convenient for convenient angular rotation adjustment irrigation, which affects the irrigation range, is not convenient for height adjustment irrigation and circumferential rotation irrigation, is not convenient for multi-angle and multi-position irrigation, and affects the convenience of irrigation equipment adjustment and the irrigation efficiency.

[0006] To achieve the above object, the present utility model provides the following technical solutions: An agricultural environmental protection water-saving irrigation device, comprising an arc-shaped hollow shaft and a water storage tank. The bottom end of the arc-shaped hollow shaft is provided with a water storage tank. A power pump is installed on the outer wall of the water storage tank. On the bottom end of the arc-shaped hollow shaft on one side of the water storage tank, walking frames are symmetrically arranged. At the top ends of the walking frames, support sleeves are installed, and the arc-shaped hollow shafts all extend to the outside of the support sleeves. Connecting arms are installed on the outer walls of the support sleeves on one side of the arc-shaped hollow shaft. At the ends of the connecting arms away from the support sleeves, movable arms are provided. A connecting hose is arranged inside the arc-shaped hollow shaft. Solenoid valves are symmetrically installed on the surface of the connecting hose, and the connecting hoses all extend into the connecting arms and the movable arms. On the outer walls of the arc-shaped hollow shaft, the connecting arms, and the movable arms, a plurality of groups of spray nozzles are installed at equal intervals. Telescopic sleeves are arranged on the surfaces of the spray nozzles, and the spray nozzles all extend into the arc-shaped hollow shaft, the connecting arms, and the movable arms and are connected to the connecting hose. A delivery pipe is arranged on the outer wall of the power pump, and the delivery pipe extends into the arc-shaped hollow shaft and is connected to the connecting hose. Electric push rods are movably installed on the outer walls of the connecting arms, and telescopic rods are installed at the output ends of the electric push rods.

[0007] Preferably, connecting shafts are installed at the ends of the telescopic rods close to the movable arms, and the telescopic rods are all movably connected to the movable arms through the connecting shafts.

[0008] Preferably, movable shafts are installed at the ends of the movable arms close to the connecting arms, and the movable arms are all movably connected to the connecting arms through the movable shafts.

[0009] Preferably, retaining rings are arranged at the bottom ends of the spray nozzles inside the telescopic sleeves. A plurality of groups of sealing rings are arranged at equal intervals on the surface of the spray nozzles above the retaining rings. Stopper blocks are symmetrically installed at the top ends of the telescopic sleeves, and the stopper blocks are slidably connected to the spray nozzles.

[0010] Preferably, servo motors are installed inside the walking frames. Driving wheels are installed at the output ends of the servo motors. Belts are arranged on the surfaces of the driving wheels.

[0011] Preferably, connecting sleeves are sleeved on the surfaces of the arc-shaped hollow shafts above the belts. Driven wheels are sleeved on the surfaces of the connecting sleeves, and the belts all extend to the surfaces of the driven wheels.

[0012] Preferably, electric wheels are symmetrically installed at the bottom ends of the walking frames, and the electric wheels are all movably connected to the walking frames.

[0013] Preferably, a control panel is installed on the outer wall of the water storage tank. The output end of the control panel is electrically connected to the input ends of the power pump, the electric push rod, the servo motor, the solenoid valve, and the electric wheel.

[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows: This irrigation device not only realizes convenient angular rotation adjustment for irrigation, increases the irrigation range, facilitates height adjustment for irrigation, enables circumferential rotation irrigation, but also facilitates multi-angle and multi-position irrigation, improving the convenience of adjusting the irrigation device and the irrigation efficiency.

[0015] The water inside the water storage tank is conveyed to the inside of the connecting hose through the conveying pipe, and then conveyed to the inside of the spray pipe by the connecting hose. The spray pipe sprays water on the crops through the telescopic sleeve. Under the limit support of the stop block and the retaining ring and the sealing effect of the sealing ring, it is convenient to move and adjust the telescopic sleeve on the surface of the spray pipe, and it is convenient to adjust the height of the telescopic sleeve for irrigating the crops. The electric push rod drives the telescopic rod to move, and the telescopic rod drives the movable arm to rotate through the connecting shaft. The movable arm rotates around the movable shaft, and the movable arm drives the spray pipe and the telescopic sleeve to rotate, which facilitates the angular rotation adjustment irrigation of the spray pipe and the telescopic sleeve, increases the irrigation range, realizes the convenient angular rotation adjustment irrigation of the irrigation device, increases the irrigation range, facilitates height adjustment irrigation, and improves the convenience of adjusting the irrigation device.

[0016] The servo motor drives the driving wheel to rotate. The driving wheel drives the belt to move, and the belt drives the driven wheel to rotate. The driven wheel drives the overall rotation of the arc-shaped hollow shaft. The arc-shaped hollow shaft drives the connecting arm and the movable arm to rotate. The arc-shaped hollow shaft, the connecting arm, and the movable arm drive multiple groups of spray pipes and telescopic sleeves to rotate, which facilitates the circumferential rotation irrigation of the spray pipe and the telescopic sleeve, realizes the convenient circumferential rotation irrigation of the irrigation device, facilitates multi-angle and multi-position irrigation, and improves the irrigation efficiency of the irrigation device. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a three-dimensional structure schematic diagram of the present utility model;

[0018] Figure 2 is a three-dimensional structure schematic diagram of the water storage tank of the present utility model;

[0019] Figure 3 is a front view structure schematic diagram of the present utility model;

[0020] Figure 4 is a front view sectional structure schematic diagram of the arc-shaped hollow shaft of the present utility model

[0021] Figure 5 is of the present utility model Figure 3 enlarged structure schematic diagram at position A;

[0022] Figure 6 is a partial enlarged structure schematic diagram of the servo motor of the present utility model;

[0023] Figure 7 This is an enlarged front view sectional structure diagram of the telescopic sleeve of the present utility model.

[0024] In the figure: 1, arc-shaped hollow shaft; 2, water storage tank; 3, power pump; 4, walking frame; 5, support sleeve; 6, connecting arm; 7, movable arm; 8, connecting hose; 9, spray pipe; 10, telescopic sleeve; 11, conveying pipe; 12, movable shaft; 13, electric push rod; 14, telescopic rod; 15, connecting shaft; 16, servo motor; 17, driving wheel; 18, connecting sleeve; 19, driven wheel; 20, belt; 21, solenoid valve; 22, control panel; 23, stop block; 24, retaining ring; 25, sealing ring; 26, electric wheel. Specific implementation manners

[0025] To further elaborate on the technical means and effects adopted by the present utility model to achieve the predetermined utility model purpose, the following combines the drawings and preferred embodiments to detail the specific implementation manners, structures, features and their effects of the present utility model as follows.

[0026] Please refer to Figures 1-7, an embodiment provided by the utility model: an agricultural environmental protection water-saving irrigation device, including an arc-shaped hollow shaft 1 and a water storage tank 2. The bottom end of the arc-shaped hollow shaft 1 is installed with the water storage tank 2. A power pump 3 is installed on the outer wall of the water storage tank 2, and the power pump 3 plays a role in power output. Symmetrically arranged walking frames 4 are provided at the bottom end of the arc-shaped hollow shaft 1 on one side of the water storage tank 2. Support sleeves 5 are installed at the top ends of the walking frames 4, and the arc-shaped hollow shaft 1 extends to the outside of the support sleeves 5. Connecting arms 6 are installed on the outer walls of the arc-shaped hollow shaft 1 on one side of the support sleeves 5. Moving arms 7 are provided at the ends of the connecting arms 6 away from the support sleeves 5. A connecting hose 8 is arranged inside the arc-shaped hollow shaft 1. Solenoid valves 21 are symmetrically installed on the surface of the connecting hose 8, and the connecting hose 8 extends into the connecting arms 6 and the moving arms 7. Multiple groups of spray nozzles 9 are installed at equal intervals on the outer walls of the arc-shaped hollow shaft 1, the connecting arms 6, and the moving arms 7. Telescopic sleeves 10 are provided on the surfaces of the spray nozzles 9, and the spray nozzles 9 extend into the arc-shaped hollow shaft 1, the connecting arms 6, and the moving arms 7 and are connected to the connecting hose 8. A delivery pipe 11 is arranged on the outer wall of the power pump 3, and the delivery pipe 11 extends into the arc-shaped hollow shaft 1 and is connected to the connecting hose 8. Electric push rods 13 are movably installed on the outer walls of the connecting arms 6, and the electric push rods 13 play a role in power output. Output rods 14 are installed at the output ends of the electric push rods 13. Connecting shafts 15 are installed at the ends of the output rods 14 close to the moving arms 7, and the output rods 14 are movably connected to the moving arms 7 through the connecting shafts 15. Moving shafts 12 are installed at the ends of the moving arms 7 close to the connecting arms 6, and the moving arms 7 are movably connected to the connecting arms 6 through the moving shafts 12. Stop rings 24 are provided at the bottom ends of the spray nozzles 9 inside the telescopic sleeves 10. Multiple groups of sealing rings 25 are arranged at equal intervals on the surfaces of the spray nozzles 9 above the stop rings 24. Stop blocks 23 are symmetrically installed at the top ends of the telescopic sleeves 10, and the stop blocks 23 are slidably connected to the spray nozzles 9. Electric wheels 26 are symmetrically installed at the bottom ends of the walking frames 4, and the electric wheels 26 are movably connected to the walking frames 4;

[0027] During use, the electric wheel 26 is turned on by operating the control panel 22. The electric wheel 26 drives the traveling frame 4 to move, and the traveling frame 4 drives the entire arc-shaped hollow shaft 1 to move to the farmland to be irrigated. The power pump 3 is turned on by operating the control panel 22. Driven by the power pump 3, the water inside the water storage tank 2 is transported through the delivery pipe 11 into the inside of the connecting hose 8, and is transported by the connecting hose 8 into the inside of the spray pipe 9. The spray pipe 9 sprays water on the crops through the telescopic sleeve 10. Under the limit support of the stop block 23 and the retaining ring 24 and the sealing effect of the sealing ring 25, it is convenient for the telescopic sleeve 10 to move and adjust on the surface of the spray pipe 9, and it is convenient to adjust the height of the telescopic sleeve 10 to irrigate the crops. By operating to open the solenoid valve 21, the solenoid valve 21 controls the water for irrigation. The electric push rod 13 is turned on by operating the control panel 22. Supported by the connecting arm 6, the electric push rod 13 drives the telescopic rod 14 to move. The telescopic rod 14 drives the movable arm 7 to rotate through the connecting shaft 15. The movable arm 7 rotates around the movable shaft 12. The movable arm 7 drives the spray pipe 9 and the telescopic sleeve 10 to rotate, which is convenient for the spray pipe 9 and the telescopic sleeve 10 to perform angular rotational adjustment for irrigation, facilitating the increase of the irrigation range, realizing the convenient angular rotational adjustment irrigation of the irrigation equipment, increasing the irrigation range, facilitating height adjustment irrigation, and improving the convenience of adjusting the irrigation equipment;

[0028] Servo motors 16 are installed inside the traveling frame 4. The servo motors 16 play the role of power output. Drive wheels 17 are installed at the output ends of the servo motors 16. Belts 20 are arranged on the surfaces of the drive wheels 17. Connecting sleeves 18 are sleeved on the surfaces of the arc-shaped hollow shafts 1 above the belts 20. Driven wheels 19 are sleeved on the surfaces of the connecting sleeves 18, and the belts 20 all extend to the surfaces of the driven wheels 19. A control panel 22 is installed on the outer wall of the water storage tank 2. The output end of the control panel 22 is electrically connected to the input ends of the power pump 3, the electric push rod 13, the servo motor 16, the solenoid valve 21, and the electric wheel 26;

[0029] During use, the servo motor 16 is turned on by operating the control panel 22. Supported by the traveling frame 4, the servo motor 16 drives the drive wheel 17 to rotate. The drive wheel 17 drives the belt 20 to move. The belt 20 drives the driven wheel 19 to rotate. Supported by the connecting sleeve 18, the driven wheel 19 drives the entire arc-shaped hollow shaft 1 to rotate. The arc-shaped hollow shaft 1 drives the connecting arm 6 and the movable arm 7 to rotate. The arc-shaped hollow shaft 1, the connecting arm 6, and the movable arm 7 drive multiple groups of spray pipes 9 and telescopic sleeves 10 to rotate, which is convenient for the spray pipes 9 and the telescopic sleeves 10 to perform circumferential rotational irrigation, realizing the convenient circumferential rotational irrigation of the irrigation equipment, facilitating multi-angle and multi-position irrigation, and improving the irrigation efficiency of the irrigation equipment.

[0030] Working principle: When in use, with an external power supply, driven by the power pump 3, the water inside the water storage tank 2 is transported through the delivery pipe 11 into the inside of the connecting hose 8, and then transported by the connecting hose 8 into the inside of the nozzle 9. The nozzle 9 sprays the water on the crops through the telescopic sleeve 10. Under the limit support of the stop block 23 and the retaining ring 24 and the sealing effect of the sealing ring 25, it is convenient for the telescopic sleeve 10 to move and adjust on the surface of the nozzle 9, and it is convenient to adjust the height of the telescopic sleeve 10 for irrigating the crops. The electric push rod 13 drives the telescopic rod 14 to move, and the telescopic rod 14 drives the movable arm 7 to rotate through the connecting shaft 15. The movable arm 7 rotates around the movable shaft 12. The movable arm 7 drives the nozzle 9 and the telescopic sleeve 10 to rotate, which is convenient for the nozzle 9 and the telescopic sleeve 10 to perform angular rotational adjustment for irrigation, facilitating the increase of the irrigation range. The servo motor 16 drives the driving wheel 17 to rotate, the driving wheel 17 drives the belt 20 to move, the belt 20 drives the driven wheel 19 to rotate. Supported by the connecting sleeve 18, the driven wheel 19 drives the arc-shaped hollow shaft 1 as a whole to rotate. The arc-shaped hollow shaft 1 drives the connecting arm 6 and the movable arm 7 to rotate. The arc-shaped hollow shaft 1, the connecting arm 6, and the movable arm 7 drive multiple groups of nozzles 9 and telescopic sleeves 10 to rotate, which is convenient for the nozzles 9 and the telescopic sleeves 10 to perform circumferential rotational irrigation, thus completing the use of the irrigation equipment.

[0031] The above is only a preferred embodiment of the present invention, and it is not intended to limit the present invention in any form. Although the present invention has been disclosed above with a preferred embodiment, it is not intended to limit the present invention. Any person skilled in the art can make some changes or modifications to the equivalent embodiments with equivalent changes within the scope of the technical solution of the present invention. However, as long as it does not depart from the content of the technical solution of the present invention, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention still fall within the scope of the technical solution of the present invention.

Claims

1. An agricultural environmental protection water-saving irrigation device, comprising an arc-shaped hollow shaft (1) and a water storage tank (2), characterized in that: A water storage tank (2) is installed at the bottom end of the arc-shaped hollow shaft (1). A power pump (3) is installed on the outer wall of the water storage tank (2). On the bottom end of the arc-shaped hollow shaft (1) on one side of the water storage tank (2), walking frames (4) are symmetrically arranged. Support sleeves (5) are installed at the top ends of the walking frames (4), and the arc-shaped hollow shaft (1) extends to the outside of the support sleeves (5). Connecting arms (6) are installed on the outer walls of the arc-shaped hollow shaft (1) on one side of the support sleeves (5). Moving arms (7) are arranged at the ends of the connecting arms (6) far from the support sleeves (5). A connecting hose (8) is arranged inside the arc-shaped hollow shaft (1). Solenoid valves (21) are symmetrically installed on the surface of the connecting hose (8), and the connecting hoses (8) extend into the connecting arms (6) and the moving arms (7). Multiple groups of spray nozzles (9) at equal intervals are installed on the outer walls of the arc-shaped hollow shaft (1), the connecting arms (6), and the moving arms (7). Telescopic sleeves (10) are arranged on the surfaces of the spray nozzles (9), and the spray nozzles (9) extend into the arc-shaped hollow shaft (1), the connecting arms (6), and the moving arms (7) and are connected to the connecting hose (8). A delivery pipe (11) is arranged on the outer wall of the power pump (3), and the delivery pipe (11) extends into the arc-shaped hollow shaft (1) and is connected to the connecting hose (8). Electric push rods (13) are movably installed on the outer walls of the connecting arms (6), and telescopic rods (14) are installed at the output ends of the electric push rods (13).

2. The agricultural environmental protection water-saving irrigation device according to claim 1, characterized in that: Connecting shafts (15) are installed at the ends of the telescopic rods (14) close to the moving arms (7), and the telescopic rods (14) are movably connected to the moving arms (7) through the connecting shafts (15).

3. An agricultural environmental protection water-saving irrigation device according to claim 1, characterized in that: Moving shafts (12) are installed at the ends of the moving arms (7) close to the connecting arms (6), and the moving arms (7) are movably connected to the connecting arms (6) through the moving shafts (12).

4. An agricultural environmental protection water-saving irrigation device according to claim 1, characterized in that: Blocking rings (24) are arranged at the bottom ends of the spray nozzles (9) inside the telescopic sleeves (10). Multiple groups of sealing rings (25) at equal intervals are arranged on the surfaces of the spray nozzles (9) above the blocking rings (24). Blocking blocks (23) are symmetrically installed at the top ends of the telescopic sleeves (10), and the blocking blocks (23) are slidably connected to the spray nozzles (9).

5. An agricultural environmental protection water-saving irrigation device according to claim 1, characterized in that: Servo motors (16) are installed inside the walking frames (4). Driving wheels (17) are installed at the output ends of the servo motors (16). Belts (20) are arranged on the surfaces of the driving wheels (17).

6. An agricultural environmental protection water-saving irrigation device according to claim 5, characterized in that: Connecting sleeves (18) are sleeved on the surfaces of the arc-shaped hollow shafts (1) above the belts (20). Driven wheels (19) are sleeved on the surfaces of the connecting sleeves (18), and the belts (20) extend to the surfaces of the driven wheels (19).

7. An agricultural environmental protection water-saving irrigation device according to claim 1, characterized in that: Electric wheels (26) are symmetrically installed at the bottom ends of the walking frames (4), and the electric wheels (26) are movably connected to the walking frames (4).

8. An agricultural environmental protection water-saving irrigation device according to claim 1, characterized in that: A control panel (22) is installed on the outer wall of the water storage tank (2), and the output end of the control panel (22) is electrically connected to the input ends of a power pump (3), an electric push rod (13), a servo motor (16), a solenoid valve (21), and an electric wheel (26).

Citation Information

Patent Citations

  • Environment-friendly water-saving agricultural irrigation equipment

    CN213907834U