Systematic fertilizer applicator with two channels

By employing a dual-channel design and collaborative component operation, the problems of excessive conveying pressure and inconvenient data detection in the system fertilizer applicator have been solved, achieving stable delivery and efficient management of the fertilizer applicator.

CN223553771UActive Publication Date: 2025-11-18AKSU HAOTIAN MACHINERY MANUFACTURING CO LTD
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Patent Information

Application Number
CN202422738329.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-11-18
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

In the existing fertilizer applicator system, the fertilizer delivery pressure is too high during the use of the central pipeline, and it is not convenient to detect pipeline data, resulting in unstable delivery.

Method used

It adopts a dual-channel design, including parallel components, filtration components, water replenishment components and flow components, combined with pressure sensors and flow control valves, to achieve stable monitoring and control of fertilizer delivery.

Benefits of technology

The dual-channel design and the coordinated operation of components alleviate the problem of excessive conveying pressure, ensuring the stable operation and conveying efficiency of the fertilizer applicator.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223553771U_ABST
Patent Text Reader

Abstract

The utility model belongs to the field of fertilizer conveying pipelines, and particularly relates to a system fertilizer applicator with double channels, which comprises a parallel assembly, a first filtering assembly and a second filtering assembly which are arranged at the right end of the parallel assembly and used for purifying and filtering the fertilizer applicator, and a water supplementing assembly used for supplying water is arranged at the right end of the parallel assembly. A circulating assembly for communicating and supplying is arranged on the parallel assembly, and a water outlet control assembly for controlling the flow is arranged on the circulating assembly. The right end of the second pipe body is connected with the output end of the fertilizer stirring barrel, liquid in the second pipe body is purified and filtered through the filter, the flow speed is controlled through the first pipe body on the first control valve, and the monitoring structure is controlled through the multiple filtering branch systems and the pipelines, so that the flow speed of the liquid in the second pipe body is controlled. The problems that the transportation capacity of the pipeline is overloaded, and the whole transportation process of the pipeline is inconvenient to control are solved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of fertilizer conveying pipeline, specifically relates to a system fertilizing machine with double channels. BACKGROUND

[0002] The system fertilizing machine is an intelligent device integrating irrigation and fertilization functions, which is based on the growth needs of crops and the nutrient status of soil, and real-time monitoring of soil humidity, nutrient content and other key parameters through high-precision sensors, and automatically adjusting the fertilization amount and irrigation amount according to the monitoring data, so as to realize precise fertilization and irrigation.

[0003] In the prior art, during the use of the system fertilizing machine, especially during the use of the central pipeline, the fertilizer needs to be neutralized twice, but during the use of the pipeline, the conveying pressure is too large, and it is not convenient to detect the data of the whole pipeline, which leads to unstable conveying.

[0004] Therefore, a system fertilizing machine with double channels is proposed, which has a multi-channel feeding structure to relieve the fertilizer conveying pressure, and a water supply and pipeline monitoring device to ensure stable conveying. UTILITY MODEL CONTENTS

[0005] In order to overcome the problem of too large conveying pressure of single pipeline during fertilizer conveying, leading to overload of pipeline transportation capacity and inconvenience in controlling the whole pipeline conveying process.

[0006] The technical scheme of the utility model is: a system fertilizing machine with double channels, comprising a parallel assembly, a first filter assembly and a second filter assembly for purifying and filtering the fertilizing machine are arranged at the right end of the parallel assembly, a water replenishing assembly for water supply is arranged at the right end of the parallel assembly, a flow-through assembly for communicating supply is arranged on the parallel assembly, and a water outlet control assembly for controlling flow is arranged on the flow-through assembly.

[0007] Preferably, the first filter assembly and the second filter assembly are connected with the stirring barrel of the fertilizing machine, then the water replenishing assembly is connected to the water source end, then the ends of the first filter assembly, the second filter assembly and the water replenishing assembly not connected with the parallel assembly are connected, then the liquid flowing through the first filter assembly, the second filter assembly and the water replenishing assembly is treated and flows into the flow-through assembly from the parallel assembly, finally the raw materials are comprehensively flowed into the output end connected with the water outlet control assembly through the water outlet control assembly on the flow-through assembly, and the first filter assembly, the second filter assembly and the water replenishing assembly connected on the parallel assembly, which improves the management process of the fertilizing fertilizer and solves the problem of inconvenient and orderly control of fertilizer conveying.

[0008] As preferred, the parallel assembly comprises a No. A tee pipe, a first connecting pipe, a No. B tee pipe and a second connecting pipe; the front end of the No. A tee pipe is fixedly connected with the first connecting pipe in a penetrating mode, the front end of the first connecting pipe is fixedly connected with the No. B tee pipe in a penetrating mode, and the front end of the No. B tee pipe is fixedly connected with the second connecting pipe in a penetrating mode.

[0009] As preferred, the first filtering assembly comprises a first pipe body, a first control valve, a second pipe body and a filter; the right end of the No. B tee pipe is fixedly connected with the first pipe body in a penetrating mode, the first control valve is arranged on the first pipe body, the rear end of the first pipe body is connected with the second pipe body in a penetrating mode, and the filter is arranged on the second pipe body.

[0010] As preferred, the first filtering assembly and the second filtering assembly have the same structure distribution, and the second filtering assembly is arranged at the right end of the No. A tee pipe.

[0011] As preferred, the water supplement assembly comprises a third pipe body, a second control valve and a water supplement pipe; the right end of the second connecting pipe is fixedly connected with the third pipe body in a penetrating mode, the second control valve is arranged on the third pipe body, and the right end of the third pipe body is fixedly connected with the water supplement pipe in a penetrating mode.

[0012] As preferred, the flow assembly comprises a first connecting pipe, a water pump, a second connecting pipe, a No. C tee pipe, a third connecting pipe and a pressure sensor; the left end of the No. A tee pipe is fixedly connected with the first connecting pipe in a penetrating mode, the other end of the first connecting pipe is provided with the water pump, the output end of the water pump is fixedly connected with the second connecting pipe in a penetrating mode, the other end of the second connecting pipe is fixedly connected with the No. C tee pipe in a penetrating mode, the front end of the No. C tee pipe is provided with the pressure sensor, and the upper end of the No. C tee pipe is fixedly connected with the third connecting pipe in a penetrating mode.

[0013] As preferred, the water outlet control assembly comprises a fourth connecting pipe, a flow valve, a flow meter and a water outlet pipe; the other end of the third connecting pipe is fixedly connected with the fourth connecting pipe in a penetrating mode, the other end of the fourth connecting pipe is provided with the flow valve, the front end of the flow valve is provided with the flow meter, and the other end of the flow valve is fixedly connected with the water outlet pipe in a penetrating mode.

[0014] The utility model discloses a beneficial effect: through the right end of second pipe body with fertilizer stirring barrel's output end is connected, then through filter to the liquid in second pipe body carries out evolution filtration, then through the first pipe body on first control valve carries out flow rate control, through setting up a plurality of filtering branch system and pipeline control monitoring structure, have solved the problem that lead to pipeline transportation ability overload, and inconveniently control the whole conveying process of pipeline. ACCURACY OF DRAWINGS

[0015] Figure 1 The utility model discloses a kind of three-dimensional structure schematic diagram of system fertilizer distributor with double channel, which is shown in the figure.

[0016] Figure 2The exhibited is a three-dimensional structure schematic view of a parallel assembly, a first filter assembly, a second filter assembly and a water supplement assembly of the system fertilizer applicator with double channels.

[0017] Figure 3 The exhibited is a three-dimensional structure schematic view of a flow assembly of the system fertilizer applicator with double channels.

[0018] Figure 4 The exhibited is a three-dimensional structure schematic view of a water outlet control assembly of the system fertilizer applicator with double channels.

[0019] The marks in the drawings are: 1, parallel assembly; 101, A three-way pipe; 102, first communication pipe; 103, B three-way pipe; 104, second communication pipe; 2, first filter assembly; 201, first pipe body; 202, first control valve; 203, second pipe body; 204, filter; 3, second filter assembly; 4, water supplement assembly; 401, third pipe body; 402, second control valve; 403, water supplement pipe; 5, flow assembly; 501, first connecting pipe; 502, water pump; 503, second connecting pipe; 504, C three-way pipe; 505, third connecting pipe; 506, pressure sensor; 6, water outlet control assembly; 601, fourth connecting pipe; 602, flow valve; 603, flow device; 604, water outlet pipe. DETAILED DESCRIPTION

[0020] The utility model is further explained in connection with the drawings and examples.

[0021] Please refer to Figures 1-4 The utility model provides an example: a system fertilizer applicator with double channels, including parallel assembly 1, the right end of parallel assembly 1 is provided with first filter assembly 2 and second filter assembly 3 for purifying and filtering fertilizer applicator, the right end of parallel assembly 1 is provided with water supplement assembly 4 for water supply, and the parallel assembly 1 is provided with flow assembly 5 for communicating supply, and the flow assembly 5 is provided with water outlet control assembly 6 for controlling flow.

[0022] Please refer to Figures 1-2In the embodiment, the parallel assembly 1 comprises a No. A tee pipe 101, a first communication pipe 102, a No. B tee pipe 103 and a second communication pipe 104; the front end of the No. A tee pipe 101 is fixedly connected with the first communication pipe 102 in a penetrating mode, the front end of the first communication pipe 102 is fixedly connected with the No. B tee pipe 103 in a penetrating mode, the front end of the No. B tee pipe 103 is fixedly connected with the second communication pipe 104 in a penetrating mode, the first filter assembly 2 comprises a first pipe body 201, a first control valve 202, a second pipe body 203 and a filter 204; the right end of the No. B tee pipe 103 is fixedly connected with the first pipe body 201 in a penetrating mode, the first pipe body 201 is provided with the first control valve 202, the rear end of the first pipe body 201 is connected with the second pipe body 203 in a penetrating mode, and the second pipe body 203 is provided with the filter 204; the first filter assembly 2 and the second filter assembly 3 have the same structure distribution, the working principle of the second filter assembly 3 is similar to that of the first filter assembly 2, the second filter assembly 3 is arranged at the right end of the No. A tee pipe 101, the water supplement assembly 4 comprises a third pipe body 401, a second control valve 402 and a water supplement pipe 403; the right end of the second communication pipe 104 is fixedly connected with the third pipe body 401 in a penetrating mode, the third pipe body 401 is provided with the second control valve 402, and the right end of the third pipe body 401 is fixedly connected with the water supplement pipe 403 in a penetrating mode; the water flow is controlled through the second control valve 402 on the third pipe body 401, and then the fertilizer flowing into the first filter assembly 2 and the second filter assembly 3 in the first communication pipe 102 is neutralized.

[0023] Please refer to Figures 3-4In the embodiment, the flow assembly 5 comprises a first connecting pipe 501, a water pump 502, a second connecting pipe 503, a C-shaped three-way pipe 504, a third connecting pipe 505 and a pressure sensor 506; the first connecting pipe 501 is fixedly connected to the left end of the A-shaped three-way pipe 101 in a penetrating manner, the other end of the first connecting pipe 501 is provided with the water pump 502, the output end of the water pump 502 is fixedly connected to the second connecting pipe 503 in a penetrating manner, the other end of the second connecting pipe 503 is fixedly connected to the C-shaped three-way pipe 504 in a penetrating manner, the front end of the C-shaped three-way pipe 504 is provided with the pressure sensor 506, the upper end of the C-shaped three-way pipe 504 is fixedly connected to the third connecting pipe 505 in a penetrating manner, the pressure sensor 506 monitors the pipeline flow and operation in the flow assembly 5, so that the second control valve 402 and the first control valve 202 are controlled through data, so as to improve the overall conveying efficiency of the device, the water outlet control assembly 6 comprises a fourth connecting pipe 601, a flow valve 602, a flow meter 603 and a water outlet pipe 604; the other end of the third connecting pipe 505 is fixedly connected to the fourth connecting pipe 601 in a penetrating manner, the other end of the fourth connecting pipe 601 is provided with the flow valve 602, the front end of the flow valve 602 is provided with the flow meter 603, and the other end of the flow valve 602 is fixedly connected to the water outlet pipe 604 in a penetrating manner, so as to connect the subsequent input system through the water outlet pipe 604, and realize monitoring of the input liquid of the water outlet pipe 604 through the flow valve 602 and the flow meter 603.

[0024] In operation, the right end of the second pipe body 203 is connected to the output end of the fertilizer stirring barrel (not shown in the figure), then the liquid in the second pipe body 203 is filtered through the filter 204, and then the flow rate is controlled through the first pipe body 201 on the first control valve 202.

[0025] When the first filter assembly 2 and the second filter assembly 3 are inputting raw materials, the water supply pipe 403 is connected to the water source, the water flow is controlled through the second control valve 402 on the third pipe body 401, and then the fertilizer flowing into the first filter assembly 2 and the second filter assembly 3 is neutralized in the first communication pipe 102;

[0026] When the mixed liquid flows into the first connecting pipe 501 through the A-shaped three-way pipe 101, then the liquid in the first connecting pipe 501 is pumped into the second connecting pipe 503 through the water pump 502, then the pipeline flow and operation in the flow assembly 5 are monitored through the pressure sensor 506, so that the second control valve 402 and the first control valve 202 are controlled through data, and through the setting of multiple filtering branch systems and pipeline control monitoring structures, the problems of causing pipeline transportation capacity overload and being inconvenient to control the overall conveying process of the pipeline are solved.

[0027] Through the above steps, by connecting the first filter assembly 2 and the second filter assembly 3 with the stirring barrel of the fertilizer applicator, then connecting the water supplement assembly 4 to the water source end, then connecting the ends of the first filter assembly 2, the second filter assembly 3 and the water supplement assembly 4 which are not connected with the parallel assembly 1, then connecting the flow-through assembly 5 with the parallel assembly 1, the liquid flowing through the first filter assembly 2, the second filter assembly 3 and the water supplement assembly 4 is treated and flows into the flow-through assembly 5 from the parallel assembly 1, finally the raw materials are comprehensively flowed into the output end connected with the water outlet control assembly 6 through the water outlet control assembly 6 on the flow-through assembly 5, through the first filter assembly 2, the second filter assembly 3 and the water supplement assembly 4 connected with the parallel assembly 1, the management process of the fertilizer is improved, and the problem of inconvenient and orderly control of fertilizer conveying is solved.

[0028] The embodiments of the present application are described in detail above with reference to the drawings, but the present application is not limited to the above-described embodiments, and various changes can be made within the knowledge of those skilled in the art without departing from the spirit of the present application.

Claims

1. A dual-channel system fertilizer applicator, comprising a parallel assembly (1), characterized in that: The right end of the parallel component (1) is provided with a first filter component (2) and a second filter component (3) for purifying and filtering the fertilizer applicator. The right end of the parallel component (1) is provided with a water supply component (4) for water supply. The parallel component (1) is provided with a flow component (5) for connecting and supplying water. The flow component (5) is provided with a water outlet control component (6) for controlling the flow rate.

2. A dual-channel fertilizer applicator according to claim 1, characterized in that: The parallel assembly (1) includes a T-connector A (101), a first connecting pipe (102), a T-connector B (103), and a second connecting pipe (104); the front end of the T-connector A (101) is fixedly connected to the first connecting pipe (102), the front end of the first connecting pipe (102) is fixedly connected to the T-connector B (103), and the front end of the T-connector B (103) is fixedly connected to the second connecting pipe (104).

3. A dual-channel fertilizer applicator according to claim 2, characterized in that: The first filter assembly (2) includes a first pipe body (201), a first control valve (202), a second pipe body (203), and a filter (204); the right end of the B-type three-way pipe (103) is fixedly connected to the first pipe body (201), the first control valve (202) is provided on the first pipe body (201), the rear end of the first pipe body (201) is connected to the second pipe body (203), and the filter (204) is provided on the second pipe body (203).

4. A dual-channel fertilizer applicator according to claim 1, characterized in that: The first filter assembly (2) and the second filter assembly (3) have the same structural distribution, with the second filter assembly (3) located at the right end of the A-type three-way pipe (101).

5. A dual-channel fertilizer applicator according to claim 2, characterized in that: The water supply component (4) includes a third pipe body (401), a second control valve (402), and a water supply pipe (403); the right end of the second connecting pipe (104) is fixedly connected to the third pipe body (401), the third pipe body (401) is provided with the second control valve (402), and the right end of the third pipe body (401) is fixedly connected to the water supply pipe (403).

6. A dual-channel fertilizer applicator according to claim 2, characterized in that: The flow assembly (5) includes a first connecting pipe (501), a water pump (502), a second connecting pipe (503), a C-type tee pipe (504), a third connecting pipe (505), and a pressure sensor (506). The left end of the A-type tee pipe (101) is fixedly connected to the first connecting pipe (501), the other end of the first connecting pipe (501) is provided with a water pump (502), the output end of the water pump (502) is fixedly connected to the second connecting pipe (503), the other end of the second connecting pipe (503) is fixedly connected to the C-type tee pipe (504), the front end of the C-type tee pipe (504) is provided with a pressure sensor (506), and the upper end of the C-type tee pipe (504) is fixedly connected to the third connecting pipe (505).

7. A dual-channel fertilizer applicator according to claim 6, characterized in that: The water outlet control assembly (6) includes a fourth connecting pipe (601), a flow valve (602), a flow meter (603), and an outlet pipe (604); the other end of the third connecting pipe (505) is fixedly connected to the fourth connecting pipe (601), the other end of the fourth connecting pipe (601) is provided with a flow valve (602), the front end of the flow valve (602) is provided with a flow meter (603), and the other end of the flow valve (602) is fixedly connected to the outlet pipe (604).