Double-station spraying irrigation device
By introducing a dual-station design and guiding device into the spraying irrigation device, and utilizing existing power resources, the problems of high labor intensity and power waste in the existing technology of hose reel winding are solved, and efficient dual-station spraying irrigation operation is realized.
Patent Information
- Application Number
- CN202520331755.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Existing spraying irrigation equipment is labor-intensive and inefficient when rewinding the water pipe, and single-station spraying irrigation does not make full use of power, resulting in power waste and low efficiency.
A dual-station spraying irrigation device was designed, which adds a second set of winding and unwinding device and winding and unwinding pipe guiding device. The device uses the output power of the existing plunger pump to drive the second winding and unwinding device and guiding device, so as to realize dual-station spraying irrigation and make full use of power resources.
It improves work efficiency, reduces labor intensity, has efficient power transmission, and a compact layout, enabling efficient operation of dual-station spraying irrigation.
Smart Images

Figure CN223844760U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to agricultural machinery equipment technical field, especially is involved in a double position pesticide spraying irrigation device. BACKGROUND
[0002] In agricultural production, pesticide spraying irrigation is routine work, because farmland, orchard etc. area is relatively large, and water source, medicine source is generally difficult to move, usually long water pipe is used to drag pesticide spraying irrigation, although the purpose of pesticide spraying irrigation is realized, but because water pipe is long, pipe winding becomes a relatively heavy work, most of winding machine generally adopts manual rotation winding, labor intensity is relatively large, efficiency is low, cannot satisfy the current needs, although motor driving winding appears currently, improves work efficiency, but it adopts single position pesticide spraying irrigation, does not make full use of power, causes power waste and low efficiency. CONTENT OF UTILITY MODEL
[0003] The utility model discloses a double position pesticide spraying irrigation device that makes full use of existing power, works in double position, greatly improves work efficiency, is compact in layout and efficient in power transmission.
[0004] The utility model discloses a double position pesticide spraying irrigation device that makes full use of existing power, works in double position, greatly improves work efficiency, is compact in layout and efficient in power transmission.
[0005] In order to further realize the utility model's purpose, the second winding device can include a second axle, a second power wheel and a second driven wheel, the two ends of the second axle are installed on the frame through bearings, the second power wheel and the second driven wheel are fixed on the two sides of the second axle respectively, and a second main synchronous wheel is fixed on the second axle on the side of the second driven wheel.
[0006] The second pipe winding and unwinding guiding device comprises a second synchronous wheel, a second guider, a second reciprocating pipe shaft, a positioning rod, a second sliding block and a second runner, the second reciprocating pipe shaft is installed on the rack in front of the second winding and unwinding device, the positioning rod is fixed beside the second reciprocating pipe shaft, the reciprocating pipe shaft is provided with two spiral grooves in positive and reverse directions, the two spiral grooves in positive and reverse directions are communicated at two ends, the second sliding block is movably sleeved on the second reciprocating pipe shaft and the positioning rod, the second sliding block is provided with a sliding tongue extending into the spiral groove of the second reciprocating pipe shaft, the second sliding block is provided with the second guider for the water pipe to pass through, and the second main synchronous wheel drives the second synchronous wheel to synchronously rotate through a synchronous belt.
[0007] In order to further realize the purpose of the utility model, the plunger pump can be a plunger pump, the plunger pump has double water outlets, and the output shaft of the plunger pump is connected to drive the second winding and unwinding device and the second pipe winding and unwinding guiding device.
[0008] In order to further realize the purpose of the utility model, the output shaft gear of the plunger pump can be engaged with the second power wheel in the second winding and unwinding device through a reduction gear.
[0009] In order to further realize the purpose of the utility model, the remote controller and the remote control receiving device can be further included, the remote control receiver installed on the rack is connected to the control controller, and the remote controller sends a control signal to the remote control receiver.
[0010] Compared with the prior art, the utility model has the following remarkable features and positive effects: on the basis of the prior art, the second winding and unwinding device and the pipe winding and unwinding guiding device are added, the existing plunger pump output power is used to drive the second winding and unwinding device and the pipe winding and unwinding guiding device, the existing power system is fully utilized, double-station pesticide spraying irrigation is realized, and the working efficiency is greatly improved. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 It is a structural schematic view of the utility model.
[0012] Figure 2 It is another structural schematic view of the utility model.
[0013] Figure 3 It is a downward structural schematic view of the utility model.
[0014] In the figure: 1, frame, 2, controller, 3, power device, 4, first winding and unwinding device, 5, plunger pump, 6, first winding and unwinding pipe guide device, 7, second winding and unwinding device, 8, second winding and unwinding pipe guide device, 31, pesticide spraying motor, 32, winding motor, 33, first speed reduction gear, 34, second speed reduction gear, 41, first wheel shaft, 42, first power wheel, 43, first driven wheel, 44, first main synchronous wheel, 61, first driven synchronous wheel, 62, first guide, 63, first reciprocating pipe shaft, 64, positioning rod, 65, first sliding block, 66, first runner; 71, second wheel shaft, 72, second power wheel, 73, second driven wheel, 74, second main synchronous wheel, 81, second driven synchronous wheel, 82, second guide, 83, second reciprocating pipe shaft, 85, second sliding block, 86, second runner. DETAILED DESCRIPTION
[0015] A double-station pesticide spraying irrigation device, referring to Figure 1 , Figure 2 , Figure 3 , comprising a frame 1, a controller 2, a power device 3, a first winding and unwinding device 4, a plunger pump 5 and a first winding and unwinding pipe guide device 6 are installed on the frame 1, the controller 2 is used to control the start and stop of the power device 3, the power device 3 provides power for the plunger pump 5 and the second winding and unwinding device 7, the first winding and unwinding pipe guide device 6 is used to guide the pipe of the first winding and unwinding device 4 during winding and unwinding, the controller 2, the power device 3, the first winding and unwinding device 4, the plunger pump 5 and the first winding and unwinding pipe guide device 6 are all prior art, the frame 1 is also provided with a second winding and unwinding device 7 and a second winding and unwinding pipe guide device 8 for guiding the water pipe of the second winding and unwinding device 7, the plunger pump 5 provides power for the second winding and unwinding device 7, and the second winding and unwinding device 7 is connected to the second winding and unwinding pipe guide device 8 and provides power.
[0016] The power device 3 includes a pesticide spraying motor 31 and a winding motor 32, the pesticide spraying motor 31 drives the plunger pump 5, and the rotating shaft gear on the output shaft of the winding motor 32 is engaged with the power wheel 42 in the winding and unwinding device 4 through the first speed reduction gear 33;
[0017] The first winding and unwinding device 4 includes a first axle 41, a first driving wheel 42, and a first driven wheel 43. The two ends of the first axle 41 are installed on the rack 1 through bearings. The first driving wheel 42 and the first driven wheel 43 are fixed on the two sides of the first axle 41 respectively. The first driving wheel 42 is engaged with the rotating gear on the output shaft of the winding motor 32 through the first reduction gear 33. The first axle 42 on the side of the first driven wheel 43 is fixed with a first master synchronous wheel 44. The plunger pump 5 has two water outlets. The first water outlet of the plunger pump 5 is used to connect one end of the first external water pipe. The first external water pipe is fixed on the first rotating shaft 41 of the first winding and unwinding device 4 near the plunger pump 5 side. The other end of the first external water pipe is a free end.
[0018] The first winding and unwinding pipe guiding device 6 is driven by the first winding and unwinding device 4 through a synchronous belt to rotate. The first winding and unwinding pipe guiding device 6 is a device with guiding function composed of a reciprocating pipe arranging shaft, a spiral groove, a positioning rod, a sliding block, a sliding tongue, a master synchronous wheel, a slave synchronous wheel, a pipe feeder, a baffle, a groove rotating wheel, a pipe channel, a spring groove, a cylindrical tongue body, and a sheet-shaped sliding tongue piece, etc. It can also be that the first winding and unwinding pipe guiding device 6 includes a first slave synchronous wheel 61, a first guider 62, a first reciprocating pipe arranging shaft 63, a positioning rod 64, a first sliding block 65, and a first rotating wheel 66. The first reciprocating pipe arranging shaft 63 is installed on the rack 1 in front of the first winding and unwinding device 4. The positioning rod 64 is fixed beside the first reciprocating pipe arranging shaft 63. The surface of the first reciprocating pipe arranging shaft 63 is provided with a positive and negative spiral groove. The two ends of the positive and negative spiral grooves are communicated. The first sliding block 65 is movably sleeved on the first reciprocating pipe arranging shaft 63 and the positioning rod 64. The first sliding block 65 is internally provided with a sliding tongue extending into the spiral groove of the first reciprocating pipe arranging shaft 63. The first sliding block 65 is provided with the first guider 62 for the first external water pipe to pass through. The first guider 62 is provided with a group of first groove rotating wheels 66 between the mounting frames. The number of the first groove rotating wheels 66 is determined according to the needs. Three first groove rotating wheels 66 are adopted in this embodiment. A pipe channel for the first external water pipe to pass through is formed between two first groove rotating wheels 66. The mounting frames can be movably installed on the first sliding block 65 through rotating shafts to realize the purpose of left and right swinging of the first guider 62, which is convenient for guiding and winding and unwinding of the first external water pipe. The structures of the first reciprocating pipe arranging shaft 63, the first sliding block 65, and the first sliding tongue inside the first sliding block in this embodiment are the same as the corresponding structures in the patent 2020207281079. The first axle 42 on the side of the first driven wheel 43 of the first winding and unwinding device 4 is fixed with the first master synchronous wheel 44. One end of the first reciprocating pipe arranging shaft 63 in the first winding and unwinding pipe guiding device 6 is fixed with the first slave synchronous wheel 61. The first master synchronous wheel 44 and the first slave synchronous wheel 61 are located on the same side and are connected to rotate synchronously through a synchronous belt.
[0019] The second winding and unwinding device 7 comprises a second axle 71, a second driving wheel 72 and a second driven wheel 73. The two ends of the first axle 71 are installed on the frame 1 through bearings. The second driving wheel 72 and the second driven wheel 73 are fixed on the two sides of the second axle 71 respectively. The second driving wheel 72 is engaged with the shaft gear on the power output shaft of the plunger pump 5 through the second reduction gear 34. The second axle 71 on the side of the second driven wheel 73 is fixed with a second main synchronous wheel 74. The plunger pump 5 is a double outlet. The second outlet of the plunger pump 5 is used to connect one end of the second external water pipe. The second external water pipe is fixed on the shaft 71 of the second winding and unwinding device 7 near the plunger pump 5. The other end of the second external water pipe is a free end.
[0020] The second winding and unwinding pipe guiding device 8 is driven by the second winding and unwinding device 7 to rotate through a synchronous belt. It comprises a second from synchronous wheel 81, a second guider 82, a second reciprocating pipe arranging shaft 83, a positioning rod 64, a second sliding block 85 and a second rotating wheel 86. Except that the positioning rod 64 is shared with the first winding and unwinding pipe guiding device 6, the other structure connection modes are completely the same as those of the first winding and unwinding pipe guiding device 6. The first axle 71 on the side of the second driven wheel 73 of the second winding and unwinding device 7 is fixed with a second main synchronous wheel 74. One end of the second reciprocating pipe arranging shaft 83 in the second winding and unwinding pipe guiding device 8 is fixed with a second from synchronous wheel 81. The second main synchronous wheel 74 and the second from synchronous wheel 81 are located on the same side and are connected to rotate synchronously through a synchronous belt.
[0021] It also comprises a remote controller and a remote control receiving device. The remote control receiving device is installed in the controller 2. The remote controller sends control signals to the remote control receiving device.
[0022] The utility model discloses an improved on the basis of the patent of the inventor's patent number for 2020207281079, and the detailed description of relevant structure and working principle refers to the patent, and here will not be detailed one by one, and the power supply of DC 48V~72V battery is used, and the starting and stopping of the medicine spraying motor 31 and the winding motor 32 in power device 3 are controlled by controller 2, the medicine spraying motor 31 drives the plunger pump 5 to work pump liquid, realizes the function such as spraying, irrigation, and the controller 2 is worked by remote controller or direct operation, the winding motor 32 and plunger pump 5 in the device drive first take-up and pay-off device 4 and second take-up and pay-off device 7 work through corresponding reduction gear respectively, and the power wheel in take-up and pay-off device rotates, and the main synchronous wheel in take-up and pay-off device drives the slave synchronous wheel synchronous rotation through synchronous belt, to drive reciprocating pipe shaft rotation, the rotation of reciprocating pipe shaft makes spiral groove drive slide tongue to make slider slide on reciprocating pipe shaft and positioning rod left and right, under the cooperation of guider, drive external water pipe to move, make external water pipe even winding to wheel shaft, when slider slides to the end of reciprocating pipe shaft, slide tongue will enter the spiral groove in the opposite direction, realize the purpose of opposite direction arrangement winding, and the pitch of spiral groove is generally equivalent to the diameter of external water pipe, too big causes pipeline arrangement spacing too big and not compact, too small then easily causes pipeline superposition, generally adopt the same in actual use.
Claims
1. A dual-station spraying irrigation device, comprising a frame, a controller, a power unit, a first take-up and unwinding device, a plunger pump, and a first take-up and unwinding pipe guiding device, wherein the controller is used to control the start and stop of the power unit, the power unit provides power to the plunger pump and the first take-up and unwinding device, and the first take-up and unwinding pipe guiding device is used to guide the pipe of the first take-up and unwinding device during the take-up and unwinding process, characterized in that... Second winding and unwinding device and second winding pipe guide device for guiding the second winding and unwinding device are arranged on the frame, the plunger pump is the second winding and unwinding device, and the second winding and unwinding device is connected with the second winding pipe guide device to provide power.
2. The dual position pesticide spraying irrigation device of claim 1, wherein The second winding and unwinding device comprises a second shaft, a second driving wheel and a second driven wheel, the two ends of the second shaft are mounted on the frame through bearings, the second driving wheel and the second driven wheel are fixed on the two sides of the second shaft respectively, and a second main synchronous wheel is fixed on the second shaft at the side of the second driven wheel; The second winding pipe guide device comprises a second synchronous wheel, a second guide, a second reciprocating pipe arranging shaft, a positioning rod, a second sliding block and a second rotating wheel, the second reciprocating pipe arranging shaft is mounted on the frame in front of the second winding and unwinding device, the positioning rod is fixed beside the second reciprocating pipe arranging shaft, the reciprocating pipe arranging shaft is provided with two spiral grooves in opposite directions on the surface, the two ends of the two spiral grooves are communicated, the second sliding block is movably sleeved on the second reciprocating pipe arranging shaft and the positioning rod, the second sliding block is provided with a sliding tongue extending into the spiral groove of the second reciprocating pipe arranging shaft, the second sliding block is provided with the second guide for the water pipe to pass through, and the second main synchronous wheel drives the second synchronous wheel to rotate synchronously through a synchronous belt.
3. The dual position pesticide injection irrigation apparatus of claim 1, wherein The plunger pump has double water outlets, and the output shaft of the plunger pump is connected to drive the second winding and unwinding device and the second winding pipe guide device.
4. The dual position pesticide injection irrigation apparatus of claim 3, wherein The output shaft gear of the plunger pump is engaged with the second driving wheel in the second winding and unwinding device through a speed reduction gear.
5. The pesticide spraying irrigation device of claim 1, wherein The remote controller and the remote control receiving device are further included, the remote control receiver mounted on the frame is connected with the control controller, and the remote controller sends a control signal to the remote control receiver.