Full-automatic irrigation, high-pressure atomization and mosquito repellent device
Patent Information
- Application Number
- CN202521673176.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-07
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-08-07
AI Technical Summary
[0003]现有的药物喷洒一般采用喷壶进行喷洒,喷壶的药水量有限,需要多次添加才能满足整个庭院的喷洒,且使用一段时间后,雾化喷头容易堵塞,喷洒的压力浮动比较大,雾化的效果不稳定
多功能一体化设计,提升使用效率与空间利用率:该装置将自动浇灌系统与高压雾化驱蚊系统集成于同一箱体内,实现了“一机两用”。用户无需分别购置和安装两套独立设备,不仅节省了安装空间,降低了设备采购和维护成本,也简化了庭院、阳台、温室等场景的环境管理流程,极大地提升了设备的综合使用效率和便利性。
Smart Images

Figure CN224791525U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mosquito repellent devices, and in particular to a fully automatic irrigation and high-pressure atomization mosquito repellent device. Background Technology
[0002] A family yard is a beautiful environment rich in oxygen ions, making it a great place for leisure and recreation. Spending more time in the yard is very beneficial to both physical and mental health. However, mosquitoes are plentiful in summer, requiring mosquito control measures, and yard plants need regular watering.
[0003] Current pesticide spraying methods typically use sprayers, which have a limited capacity and require multiple refills to cover the entire yard. Furthermore, after a period of use, the atomizing nozzles tend to clog, resulting in fluctuating spray pressure and inconsistent atomization. Watering is done manually.
[0004] Therefore, it is necessary to provide a fully automatic irrigation and high-pressure atomization mosquito repellent device to solve the above-mentioned technical problems. Summary of the Invention
[0005] To solve the above-mentioned technical problems, this utility model provides a fully automatic irrigation and high-pressure atomization mosquito repellent device.
[0006] This utility model provides a fully automatic irrigation and high-pressure atomizing mosquito repellent device, including a housing. Inside the housing are installed a medicine bottle, a medicine proportioning pump, and a booster pump. The input end of the medicine proportioning pump is connected to the medicine bottle through a medicine suction pipe. The output end of the medicine proportioning pump is connected to a medicine inlet tee pipe through a medicine outlet pipe. One branch of the medicine inlet tee pipe is connected to the input end of the booster pump through a booster input pipe. The output end of the booster pump is connected to a mosquito repellent nozzle through a mosquito repellent outlet pipe. An irrigation device is also installed inside the housing, and the irrigation device is connected to one branch of the medicine inlet tee pipe.
[0007] Mosquito Repellent Mode Medicine extraction and dispensing: The controller starts the medicine proportioning pump, which extracts a fixed amount of medicine from the medicine bottle through the medicine suction tube. The medicine proportioning pump can accurately control the amount of medicine.
[0008] Path switching: The medicine enters the medicine addition tee pipe through the medicine output pipe. At this time, the mosquito repellent solenoid valve is opened and the irrigation solenoid valve is closed. The medicine flows into the union tee pipe along the mosquito repellent input pipe.
[0009] Pressurized atomization: The tee-connected pipe directs the repellent solution into the pressurized input pipe, which then enters the pressurization pump. The pressurization pump adjusts the output pressure via a pressure regulating knob, pressurizing the repellent solution to a high-pressure state. Finally, it is delivered through the mosquito repellent output pipe to the external mosquito repellent nozzle, forming a high-pressure atomized mosquito repellent liquid that covers the target area.
[0010] Preferably, the irrigation device includes a tee pipe with a flexible connector. One branch of the tee pipe is connected to one branch of the tee pipe with a mosquito repellent input pipe. A mosquito repellent solenoid valve is installed on the mosquito repellent input pipe. The other two ports of the tee pipe are respectively connected to a water inlet pipe and an irrigation output pipe. An irrigation solenoid valve is installed on the irrigation output pipe. An irrigation nozzle is connected to the output end of the irrigation output pipe.
[0011] Mixing the insecticide with water: The controller closes the mosquito repellent solenoid valve, opens the irrigation solenoid valve, and simultaneously starts the insecticide proportioning pump. The insecticide is added through the tee pipe → mosquito repellent input pipe → union tee pipe, where it mixes with the water source introduced from the inlet pipe in the union tee (the proportioning pump controls the amount of insecticide added, thereby adjusting the concentration).
[0012] Precision irrigation: The mixed liquid is delivered to the external irrigation nozzle through the irrigation output pipe to complete the watering of the plants.
[0013] Preferably, the booster pump is equipped with a booster pump pressure adjustment knob to adjust the pressure.
[0014] Preferably, a medicine detection sensor is installed on the medicine suction tube to detect the medicine.
[0015] Preferably, the output end of the medicine proportioning pump is equipped with a medicine recovery pipe that communicates with the medicine bottle. A safety valve is installed on the medicine recovery pipe. When the pressure is greater than a certain value, the safety valve opens, and the medicine flows back into the medicine bottle along the medicine recovery pipe.
[0016] Preferably, the box body is provided with a box door, and a controller is installed inside the box body. The controller is electrically connected to a booster pump and a drug proportioning pump.
[0017] Preferably, a filter is installed on the water inlet pipe to filter the incoming water.
[0018] Compared with related technologies, the present invention provides the following beneficial effects: Multifunctional integrated design improves efficiency and space utilization: This device integrates an automatic irrigation system and a high-pressure atomizing mosquito repellent system into the same housing, achieving "one machine for two uses". Users do not need to purchase and install two separate sets of equipment, which not only saves installation space and reduces equipment procurement and maintenance costs, but also simplifies environmental management processes in courtyards, balconies, greenhouses and other scenarios, greatly improving the overall efficiency and convenience of the equipment.
[0019] Highly effective mosquito repellent with wide coverage: A booster pump applies high pressure to the mosquito repellent solution, which, combined with a specialized nozzle, atomizes the liquid into extremely fine particles. This high-pressure atomization method results in rapid diffusion, a large coverage area, and strong penetration, effectively repelling airborne insects and significantly improving environmental comfort in outdoor or semi-enclosed spaces. The booster pump's pressure adjustment knob allows users to flexibly adjust the atomization pressure and spray range according to the actual environment (such as an open courtyard or a closed greenhouse), optimizing the mosquito repellent effect. Attached Figure Description
[0020] Figure 1 This is a front view of the overall structure of this utility model; Figure 2 This is a schematic diagram of the overall structure of this utility model from the back.
[0021] The following are labeled in the diagram: 1. Mosquito repellent solenoid valve; 2. Irrigation solenoid valve; 3. Booster pump; 4. Mosquito repellent input pipe; 5. Irrigation output pipe; 6. Booster input pipe; 7. Booster pump pressure adjustment knob; 8. Medicine inlet tee pipe; 9. Union tee pipe; 10. Medicine proportioning pump; 11. Medicine detection sensor; 12. Medicine suction pipe; 13. Medicine return pipe; 14. Medicine bottle; 15. Medicine output pipe; 16. Mosquito repellent output pipe; 17. Filter; 18. Box body. Detailed Implementation
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0023] Please refer to the following: Figures 1 to 2 A fully automatic irrigation and high-pressure atomizing mosquito repellent device includes a housing 18. Inside the housing 18 are installed a solution bottle 14, a solution proportioning pump 10, a booster pump 3, and a controller. The controller is installed inside the housing 18 and is electrically connected to the solution proportioning pump 10, the booster pump 3, the mosquito repellent solenoid valve 1, and the irrigation solenoid valve 2 via circuitry, enabling intelligent control of the entire system. The housing 18 has a door for easy maintenance of the internal components and replacement of the solution bottle 14.
[0024] Inside the housing 18, the input end of the mosquito repellent proportioning pump 10 is connected to the bottom of the mosquito repellent bottle 14 via the mosquito repellent suction pipe 12, used to draw mosquito repellent liquid from the bottle 14. A mosquito repellent detection sensor 11 is installed on the suction pipe 12 to monitor the flow status and remaining amount of the repellent liquid in real time. When the repellent liquid is insufficient or the pipe is blocked, the sensor can send an alarm signal to the controller to ensure the reliability of the system operation. The output end of the mosquito repellent proportioning pump 10 is connected to the mosquito repellent inlet tee pipe 8 via the mosquito repellent outlet pipe 15. This proportioning pump can precisely control the output flow rate and proportion of the repellent liquid, ensuring the scientific and economical use of the repellent liquid. Furthermore, a mosquito repellent recovery pipe 13 is also provided at the output end of the mosquito repellent proportioning pump 10. The other end of the recovery pipe 13 is connected to the mosquito repellent bottle 14, used to return residual repellent liquid to the bottle 14 when the system stops or the pressure is too high. A safety valve is installed on the chemical recovery pipe 13. When the internal pressure of the system exceeds the set threshold, the safety valve will automatically open to release the pressure and ensure the safety of the equipment and operators.
[0025] The pesticide solution is added through a three-way pipe 8, which has three branches: one branch connects to the input end of the booster pump 3 via a booster input pipe 6; another branch connects to the union three-way pipe 9 in the irrigation device via a mosquito repellent input pipe 4. A mosquito repellent solenoid valve 1 is installed on the mosquito repellent input pipe 4 to control the flow direction of the pesticide solution. The output end of the booster pump 3 is connected to a mosquito repellent nozzle via a mosquito repellent output pipe 16 to atomize and spray the high-pressure pesticide solution. The booster pump 3 is equipped with a booster pump pressure adjustment knob 7, allowing users to manually adjust the output pressure according to the desired mosquito repellent range and atomization effect, achieving precise control of the spray.
[0026] The irrigation device includes a union tee pipe 9, one branch of which connects to the aforementioned branch of the pesticide inlet tee pipe 8 via a mosquito repellent inlet pipe 4, forming a pesticide inlet channel. The other two ports of the union tee pipe 9 are connected to an inlet pipe and an irrigation outlet pipe 5, respectively. The inlet pipe is used to introduce external water and is equipped with a filter 17 to effectively filter impurities and particulate matter in the water, preventing nozzle clogging and ensuring the long-term stable operation of the irrigation system. An irrigation solenoid valve 2 is installed on the irrigation outlet pipe 5 to control the start and stop of the irrigation process. Its output end is connected to an external irrigation nozzle for precise irrigation of the plant root zone.
[0027] Working mode description: High-pressure atomization mosquito repellent mode: When the controller receives a mosquito repellent command, it activates the proportional pump 10 and opens the mosquito repellent solenoid valve 1, while simultaneously closing the irrigation solenoid valve 2. The proportional pump 10 draws a measured amount of liquid from the liquid bottle 14 through the liquid suction pipe 12, and delivers it to the liquid inlet tee pipe 8 via the liquid outlet pipe 15. The liquid then passes through the opened mosquito repellent solenoid valve 1, enters the mosquito repellent inlet pipe 4, and then enters the booster pump 3 via the pressure booster inlet pipe 6. Driven by the controller, the booster pump 3 pressurizes the liquid; the desired pressure value can be set by adjusting the knob 7. The high-pressure liquid is then delivered to the mosquito repellent nozzle via the mosquito repellent outlet pipe 16, forming a fine mist that evenly covers the target area, achieving highly effective mosquito repellency.
[0028] Automatic irrigation mode: When the controller initiates the irrigation program, it closes the mosquito repellent solenoid valve 1, opens the irrigation solenoid valve 2, and starts the pesticide proportioning pump 10. The pesticide solution enters the tee pipe 9 via the pesticide inlet pipe 8 and the mosquito repellent inlet pipe 4. Simultaneously, external water enters the tee pipe 9 through the inlet pipe and mixes with the pesticide solution within the pipe. The pesticide proportioning pump 10 precisely controls the amount of pesticide added, thereby adjusting the concentration of the mixture to achieve a precise ratio of nutrient solution or pesticide solution. Under pressure, the mixed liquid is delivered through the opened irrigation solenoid valve 2 and the irrigation outlet pipe 5 to the irrigation nozzles, providing uniform irrigation to the plants.
[0029] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A fully automatic irrigation and high-pressure atomizing mosquito repellent device, characterized in that, The device includes a housing (18), inside which are installed a medicine bottle (14), a medicine proportioning pump (10), and a booster pump (3). The input end of the medicine proportioning pump (10) is connected to the medicine bottle (14) through a medicine suction pipe (12). The output end of the medicine proportioning pump (10) is connected to a medicine inlet tee pipe (8) through a medicine outlet pipe (15). One branch of the medicine inlet tee pipe (8) is connected to the input end of the booster pump (3) through a booster input pipe (6). The output end of the booster pump (3) is connected to a mosquito repellent nozzle through a mosquito repellent outlet pipe (16). The housing (18) is also equipped with an irrigation device, which is connected to one branch of the medicine inlet tee pipe (8).
2. The fully automatic irrigation and high-pressure atomizing mosquito repellent device according to claim 1, characterized in that, The irrigation device includes a tee pipe (9), one branch of which is connected to one branch of the medicine addition tee pipe (8) via a mosquito repellent input pipe (4). A mosquito repellent solenoid valve (1) is installed on the mosquito repellent input pipe (4). The other two ports of the tee pipe (9) are respectively connected to a water inlet pipe and an irrigation output pipe (5). An irrigation solenoid valve (2) is installed on the irrigation output pipe (5). An irrigation nozzle is connected to the output end of the irrigation output pipe (5).
3. The fully automatic irrigation and high-pressure atomizing mosquito repellent device according to claim 1, characterized in that, The booster pump (3) is equipped with a booster pump pressure adjustment knob (7).
4. The fully automatic irrigation and high-pressure atomizing mosquito repellent device according to claim 1, characterized in that, A drug detection sensor (11) is installed on the drug suction tube (12).
5. The fully automatic irrigation and high-pressure atomizing mosquito repellent device according to claim 1, characterized in that, The output end of the medicine proportioning pump (10) is equipped with a medicine recovery pipe (13) that is connected to the medicine bottle (14), and a safety valve is installed on the medicine recovery pipe (13).
6. The fully automatic irrigation and high-pressure atomizing mosquito repellent device according to claim 1, characterized in that, The box (18) is provided with a door, and a controller is installed inside the box (18). The controller is electrically connected to the booster pump (3) and the drug proportioning pump (10).
7. The fully automatic irrigation and high-pressure atomizing mosquito repellent device according to claim 2, characterized in that, A filter (17) is installed on the water inlet pipe.