Water agent type insecticide shunting device

By introducing powered discharge, monitoring execution and control mechanisms into aqueous pesticide production equipment, combined with an electronically controlled check valve and flow meter, precise control of the pesticide flow rate is achieved, improving the equipment's usability and control accuracy.

CN223421041UActive Publication Date: 2025-10-10SHANDONG LIPANG AGRICULTURAL CHEMICAL CO LTD
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Patent Information

Application Number
CN202422700600.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2025-10-10
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

Existing water-based pesticide production equipment relies on flow control valves to achieve flow control, which has low control accuracy and is easily affected by gravity, making it difficult to quantify the flow in the diversion channel and poor machine usability.

Method used

The system adopts a power discharge mechanism, a monitoring actuator and a control mechanism, combined with an electric check valve, a fluid pressure gauge and a fluid flow meter, to achieve controllable flow diversion of the pesticide through a display controller, thereby improving control accuracy and ease of use.

Benefits of technology

The invention realizes the precise control of the flow of the pesticide, improves the control accuracy and usability of the equipment, and solves the problem of inaccurate flow control in the existing equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223421041U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of pesticide shunting mechanisms, in particular to a water-dosage type pesticide shunting device, which is provided with a power discharging mechanism, a monitoring executing mechanism and a control mechanism to perform flow-controllable shunting on pesticides, so that the control precision and the usability of a machine are improved. The device comprises a flow dividing mechanism, two power discharging mechanisms, a monitoring executing mechanism, a control mechanism and a filtering mechanism, the two power discharging mechanisms and the filtering mechanism are all installed on the flow dividing mechanism, the monitoring executing mechanism is installed on the flow dividing mechanism and the power discharging mechanisms, and the control mechanism is installed on the power discharging mechanisms and the monitoring executing mechanism; the distribution mechanism distributes the pesticide, the power discharging mechanism conveys the distributed pesticide, the monitoring execution mechanism monitors and executes the distribution process of the pesticide, the control mechanism conveniently controls the monitoring execution mechanism, and the filtering mechanism filters the pesticide entering the distribution mechanism.
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Description

Technical Field

[0001] The utility model relates to the technical field of insecticide diversion devices, in particular to an aqueous insecticide diversion device. Background Art

[0002] Water-based pesticides need to be packaged during production, and the filling pipelines need to be diverted to improve production efficiency.

[0003] For example, in a type of prior art represented by the Chinese utility model patent with authorization announcement number CN203906886U, a multi-purpose adjustable pesticide diversion device, its main structure includes a diversion channel, a filtering device and a flow control valve. The diversion channel diverts the liquid, the filtering device filters the liquid, and the flow control valve controls the flow rate of the liquid in the diversion channel.

[0004] However, existing technical equipment still has the following problems: existing machines rely on flow control valves to achieve flow in the diversion channel, with low control accuracy, and existing machines are greatly affected by gravity, making the flow in the diversion channel difficult to quantify and control, and the machine is less user-friendly. Utility Model Content

[0005] In order to solve the above technical problems, the present invention provides an aqueous pesticide diversion device that is equipped with a power discharge mechanism, a monitoring actuator and a control mechanism to control the flow of the pesticide and improve the control accuracy and usability of the machine.

[0006] The utility model provides an aqueous pesticide diversion device, comprising a diversion mechanism; two power discharge mechanisms, a monitoring actuator, a control mechanism and a filtering mechanism, wherein the two power discharge mechanisms and the filtering mechanism are both mounted on the diversion mechanism, the monitoring actuator is mounted on the diversion mechanism and the power discharge mechanism, and the control mechanism is mounted on the power discharge mechanism and the monitoring actuator; the diversion mechanism diverts the pesticide, the power discharge mechanism transports the diverted pesticide, the monitoring actuator monitors and executes the diversion process of the pesticide, the control mechanism facilitates control of the monitoring actuator, and the filtering mechanism filters the pesticide entering the diversion mechanism.

[0007] Preferably, the diversion mechanism includes a diversion pipe and two fixed plates. A liquid inlet is provided at the front end of the diversion pipe, and two drainage ports are provided at the rear end of the diversion pipe. Two mounting ports 1 and two mounting ports 2 are provided on the diversion pipe. The two fixed plates 1 are respectively installed at the rear ends of the two drainage ports. The diversion pipe diverts the insecticide entering the interior.

[0008] Preferably, the power discharge mechanism includes a gear pump, a reducer, a motor, a second fixed plate, and a pipeline. The gear pump is installed at the rear end of a drainage port of the shunt pipeline, the reducer is installed at the top of the gear pump, the motor is fixedly installed at the top of the reducer, the second fixed plate is installed at the rear end of the gear pump, the pipeline is installed at the rear end of the second fixed plate, and the shunt pipeline, the gear pump, the second fixed plate and the interior of the pipeline are all connected. A third installation port is provided on the pipeline, and the two power discharge mechanisms are respectively installed at the rear ends of the two drainage ports of the shunt pipeline; the motor provides power to drive the gear pump to operate and transport the water entering the gear pump.

[0009] Preferably, the monitoring actuator includes two electrically controlled check valves, two fluid pressure gauges and two fluid flow meters, the two electrically controlled check valves are respectively installed in the two installation ports 1 of the diversion pipe, the two fluid pressure gauges are respectively installed in the two installation ports 2 of the diversion pipe, and the two fluid flow meters are respectively installed in the two installation ports 3 of the two pipes; the electrically controlled check valves control the passage of the insecticide and prevent the insecticide from flowing back, the fluid pressure gauges monitor the insecticide pressure, and the fluid flow meter monitors the insecticide flow, and the electrically controlled check valves, fluid pressure gauges and fluid flow meters cooperate to control the diversion process of the insecticide.

[0010] Preferably, the control mechanism includes a display controller, two wires one, two wires two and two wires three, the display controller is installed on the top of the two gear pumps, the two wires one are respectively connected to the two electronically controlled check valves, the two wires two are respectively connected to the two fluid pressure gauges, the two wires three are respectively connected to the two fluid flow meters, and the two wires one, the two wires two and the two wires three are all connected to the display controller; the display controller displays the monitoring data of the fluid pressure gauge and the fluid flow meter and controls the motor and the electronically controlled check valve.

[0011] Preferably, the filtering mechanism includes a forked pipe, a filter screen and a pipe plug. The forked pipe is connected and installed at the liquid inlet of the diversion pipe. The filter screen is slidably installed inside the forked pipe. The pipe plug contacts the bottom end of the filter screen, and the pipe plug is installed on the forked pipe. The forked pipe, filter screen and pipe plug cooperate to filter the insecticide.

[0012] Compared with the prior art, the beneficial effects of the present invention are: the flow of the insecticide can be controlled and diverted, the control accuracy is high, and the machine is easy to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is an axonometric structural diagram of the present utility model;

[0014] Figure 2 It is an axonometric enlarged structural diagram of the diversion mechanism;

[0015] Figure 3It is an axonometric enlarged structural diagram of the power discharge mechanism;

[0016] Figure 4 It is a schematic diagram of the axonometric structure of the monitoring actuator;

[0017] Figure 5 It is an axonometric enlarged structural diagram of the control mechanism;

[0018] Figure 6 It is an axonometric enlarged cross-sectional structural diagram of the filtering mechanism.

[0019] Markings in the accompanying drawings: 01, diversion mechanism; 11, diversion pipeline; 12, fixed plate one; 02, power discharge mechanism; 21, gear pump; 22, reducer; 23, motor; 24, fixed plate two; 25, pipeline; 03, monitoring actuator; 31, electric check valve; 32, fluid pressure gauge; 33, fluid flow meter; 04, control mechanism; 41, display controller; 42, wire one; 43, wire two; 44, wire three; 05, filtering mechanism; 51, fork pipeline; 52, filter screen; 53, pipe plug. DETAILED DESCRIPTION

[0020] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention.

[0021] Example 1

[0022] like Figure 1 As shown, a water-based insecticide diversion device includes a diversion mechanism 01, two power discharge mechanisms 02, a monitoring actuator 03, a control mechanism 04 and a filtering mechanism 05. The two power discharge mechanisms 02 and the filtering mechanism 05 are all installed on the diversion mechanism 01, the monitoring actuator 03 is installed on the diversion mechanism 01 and the power discharge mechanism 02, and the control mechanism 04 is installed on the power discharge mechanism 02 and the monitoring actuator 03; the diversion mechanism 01 diverts the insecticide, the power discharge mechanism 02 transports the diverted insecticide, the monitoring actuator 03 monitors and executes the diversion process of the insecticide, the control mechanism 04 facilitates the control of the monitoring actuator 03, and the filtering mechanism 05 filters the insecticide entering the diversion mechanism 01.

[0023] like Figure 2As shown, the diversion mechanism 01 includes a diversion pipe 11 and two fixed plates 12. A liquid inlet is provided at the front end of the diversion pipe 11, and two liquid discharge ports are provided at the rear end of the diversion pipe 11. Two mounting ports 1 and two mounting ports 2 are provided on the diversion pipe 11. The two fixed plates 12 are respectively installed at the rear ends of the two liquid discharge ports.

[0024] like Figure 3 As shown, the power discharge mechanism 02 includes a gear pump 21, a reducer 22, a motor 23, a fixed plate 24, and a pipeline 25. The gear pump 21 is installed at the rear end of a discharge port of the shunt pipeline 11, the reducer 22 is installed at the top of the gear pump 21, the motor 23 is fixedly installed at the top of the reducer 22, the fixed plate 24 is installed at the rear end of the gear pump 21, and the pipeline 25 is installed at the rear end of the fixed plate 24. The shunt pipeline 11, the gear pump 21, the fixed plate 24 and the pipeline 25 are all connected. A mounting port 3 is provided on the pipeline 25. The two power discharge mechanisms 02 are respectively installed at the rear ends of the two discharge ports of the shunt pipeline 11.

[0025] like Figure 4 As shown, the monitoring actuator 03 includes two electrically controlled check valves 31, two fluid pressure gauges 32 and two fluid flow meters 33. The two electrically controlled check valves 31 are respectively installed in the two installation ports 1 of the diversion pipe 11, the two fluid pressure gauges 32 are respectively installed in the two installation ports 2 of the diversion pipe 11, and the two fluid flow meters 33 are respectively installed in the two installation ports 3 of the two pipes 25.

[0026] like Figure 5 As shown, the control mechanism 04 includes a display controller 41, two wires 1 42, two wires 2 43 and two wires 3 44. The display controller 41 is installed on the top of the two gear pumps 21. The two wires 1 42 are respectively connected to the two electronically controlled check valves 31, the two wires 2 43 are respectively connected to the two fluid pressure gauges 32, the two wires 3 44 are respectively connected to the two fluid flow meters 33, and the two wires 1 42, the two wires 2 43 and the two wires 3 44 are all connected to the display controller 41.

[0027] During use, pesticide is input into the diversion pipe 11. When the diversion pipe 11 is filled with the pesticide, it is naturally diverted due to the shape of the diversion pipe 11. The diversion ratio is confirmed by the display controller 41. The display controller 41 displays the monitoring data of the fluid pressure gauge 32 and the fluid flow meter 33 during diversion and controls the motor 23 and the electronically controlled check valve 31. The motor 23 provides power to drive the gear pump 21 to transport the pesticide entering the gear pump 21. The electronically controlled check valve 31 controls the passage of the pesticide and prevents the backflow of the pesticide. The fluid pressure gauge 32 monitors the pressure of the pesticide, and the fluid flow meter 33 monitors the flow of the pesticide. The electronically controlled check valve 31, the fluid pressure gauge 32 and the fluid flow meter 33 cooperate to control the diversion process of the pesticide, so that the two discharge ports of the diversion pipe 11 can output pesticides at different flow rates, which is convenient for series expansion of the machine.

[0028] Example 2

[0029] like Figure 6 As shown, this embodiment further includes a filtering mechanism 05 on the basis of embodiment 1. The filtering mechanism 05 includes a forked pipe 51, a filter screen 52 and a pipe plug 53. The forked pipe 51 is connected and installed at the liquid inlet of the diversion pipe 11. The filter screen 52 is slidably installed inside the forked pipe 51. The pipe plug 53 is in contact with the bottom end of the filter screen 52, and the pipe plug 53 is installed on the forked pipe 51.

[0030] When in use, the insecticide is input into the forked pipe 51, and the forked pipe 51, the filter screen 52 and the pipe plug 53 cooperate to filter the insecticide, and then the insecticide enters the inside of the diversion pipe 11. When the insecticide fills the inside of the diversion pipe 11, it is naturally diverted due to the shape of the diversion pipe 11. The display controller 41 confirms the diversion ratio. The display controller 41 displays the monitoring data of the fluid pressure meter 32 and the fluid flow meter 33 during diversion, and controls the motor 23 and the electric control check valve 31, wherein the motor 23 provides The power drives the gear pump 21 to transport the insecticide entering the gear pump 21, the electric-controlled check valve 31 controls the passage of the insecticide and prevents the insecticide from flowing back, the fluid pressure meter 32 monitors the insecticide pressure, and the fluid flow meter 33 monitors the insecticide flow. The electric-controlled check valve 31, the fluid pressure meter 32 and the fluid flow meter 33 cooperate to control the diversion process of the insecticide, so that the two discharge ports of the diversion pipe 11 can output the insecticide at different flow rates, which is convenient for the series expansion of the machine.

[0031] The two gear pumps 21, two motors 23, two electronically controlled check valves 31, two fluid pressure gauges 32, two fluid flow meters 33 and a display controller 41 of the utility model are purchased on the market. Technicians in this industry only need to install and operate them according to the accompanying instruction manual, without the need for creative work by technicians in this field.

[0032] The main function realized by the utility model is that: through setting power discharging mechanism 02, monitoring execution mechanism 03 and control mechanism 04, the flow controllable shunt of insecticide is carried out, the control precision and machine usability are improved; the prior art problems that the prior machine relies on flow control valve to realize the flow of shunt passage, the control precision is lower, and the prior machine is greatly influenced by gravity, the flow of shunt passage is difficult to quantitatively control, and the machine usability is poor are solved.

[0033] The above is only the preferred embodiment of the utility model, and it should be pointed out that for ordinary skilled persons in the technical field, several improvements and modifications can be made without departing from the technical principles of the utility model, and these improvements and modifications should also be regarded as the protection scope of the utility model.

Claims

1. A water-based insecticide diversion device, comprising a diversion mechanism (01); characterized in that: It also includes two power discharge mechanisms (02), a monitoring actuator (03), a control mechanism (04) and a filtering mechanism (05), wherein the two power discharge mechanisms (02) and the filtering mechanism (05) are both mounted on the diversion mechanism (01), the monitoring actuator (03) is mounted on the diversion mechanism (01) and the power discharge mechanism (02), and the control mechanism (04) is mounted on the power discharge mechanism (02) and the monitoring actuator (03); The diversion mechanism (01) diverts the insecticide, the power discharge mechanism (02) transports the diverted insecticide, the monitoring and execution mechanism (03) monitors and executes the diversion process of the insecticide, the control mechanism (04) facilitates the control of the monitoring and execution mechanism (03), and the filtering mechanism (05) filters the insecticide entering the diversion mechanism (01).

2. The aqueous pesticide diversion device according to claim 1, characterized in that: The diversion mechanism (01) comprises a diversion pipe (11) and two fixed plates (12). The front end of the diversion pipe (11) is provided with a liquid inlet, the rear end of the diversion pipe (11) is provided with two liquid discharge ports, the diversion pipe (11) is provided with two mounting ports (1) and two mounting ports (2), and the two fixed plates (12) are respectively installed at the rear ends of the two liquid discharge ports.

3. The water-based pesticide diversion device according to claim 2, characterized in that: The power discharge mechanism (02) comprises a gear pump (21), a reducer (22), a motor (23), a second fixed plate (24), and a pipeline (25). The gear pump (21) is installed at the rear end of a discharge port of the shunt pipeline (11), the reducer (22) is installed at the top end of the gear pump (21), the motor (23) is fixedly installed at the top end of the reducer (22), the second fixed plate (24) is installed at the rear end of the gear pump (21), and the pipeline (25) is installed at the rear end of the second fixed plate (24). The shunt pipeline (11), the gear pump (21), the second fixed plate (24), and the pipeline (25) are all interconnected. A third mounting port is provided on the pipeline (25). The two power discharge mechanisms (02) are respectively installed at the rear ends of the two discharge ports of the shunt pipeline (11).

4. The aqueous pesticide diversion device according to claim 3, characterized in that: The monitoring actuator (03) includes two electrically controlled check valves (31), two fluid pressure gauges (32) and two fluid flow meters (33). The two electrically controlled check valves (31) are respectively installed in two installation ports 1 of the shunt pipe (11), the two fluid pressure gauges (32) are respectively installed in two installation ports 2 of the shunt pipe (11), and the two fluid flow meters (33) are respectively installed in two installation ports 3 of the two pipes (25).

5. The water-based pesticide diversion device according to claim 4, characterized in that: The control mechanism (04) includes a display controller (41), two wires 1 (42), two wires 2 (43) and two wires 3 (44), the display controller (41) is installed on the top of the two gear pumps (21), the two wires 1 (42) are respectively connected to the two electric-controlled check valves (31), the two wires 2 (43) are respectively connected to the two fluid pressure gauges (32), the two wires 3 (44) are respectively connected to the two fluid flow meters (33), and the two wires 1 (42), the two wires 2 (43) and the two wires 3 (44) are all connected to the display controller (41).

6. The water-based pesticide diversion device according to claim 2, characterized in that: The filtering mechanism (05) comprises a forked pipe (51), a filter screen (52) and a pipe plug (53); the forked pipe (51) is connected and installed at the liquid inlet of the diversion pipe (11); the filter screen (52) is slidably installed inside the forked pipe (51); the pipe plug (53) contacts the bottom end of the filter screen (52), and the pipe plug (53) is installed on the forked pipe (51).

Citation Information

Patent Citations

  • Multipurpose adjustable liquid flow division device

    CN203906886U