Disinfectant dispensing equipment for rudon septentrionalis culture pond

By adjusting the nozzle angle and using an all-around stirring system, the disinfectant spraying equipment for greenfin pufferfish aquaculture ponds has solved the problem of uneven coverage caused by existing equipment, achieving uniform spraying of disinfectant and efficient disinfection.

CN224212469UActive Publication Date: 2026-05-08WEIHAI JUPENGCHENG MARINE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WEIHAI JUPENGCHENG MARINE TECH CO LTD
Filing Date
2025-06-09
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing disinfectant spraying equipment for greenfin pufferfish farming ponds cannot adjust the spraying angle according to the shape, depth, and water flow of the pond, resulting in uneven disinfectant coverage, blind spots, and difficulty in meeting diverse disinfection needs.

Method used

A disinfectant spraying device for greenfin pufferfish aquaculture ponds was designed. The device uses an electric push rod to drive a transmission plate and a transmission rack to mesh with a driven gear, causing the spraying pipeline to rotate within a fixed circular ring. This adjusts the spraying angle of the nozzles. A rotating motor drives the stirring blades and bottom stirring rod to stir the disinfectant in all directions. Combined with the delivery pump and guide pipeline, the device achieves stable delivery and uniform spraying of the disinfectant.

Benefits of technology

It achieves uniform coverage of disinfectant, eliminates disinfection blind spots, improves disinfection effect and efficiency, and ensures uniform disinfection and disinfectant concentration in all areas of the aquaculture pond.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a disinfectant dispensing device for a modestus septentrionalis culture pond, and particularly relates to the field of aquaculture equipment.The disinfectant dispensing device comprises a supporting seat, a liquid storage tank is fixedly connected to the upper surface of the supporting seat, a supporting frame is fixedly connected to the upper surface of the supporting seat, and a dispensing power mechanism is installed on the upper surface of the supporting frame; a stirring assembly is installed in the liquid storage tank, a square box is fixedly connected to the upper surface of the supporting frame, an electric push rod is fixedly connected to the inner wall of the square box, and a transmission plate is fixedly connected to the output end of the electric push rod. The electric push rod drives the transmission plate to drive the transmission rack plate and the T-shaped sliding plate to slide in the fixed guide rail, and the transmission rack plate and the T-shaped sliding plate are meshed with the driven gear to enable the sprinkling pipeline to rotate in the fixed circular ring, so that the sprinkling angle of the sprayer is flexibly adjusted; therefore, the disinfection spraying uniformity is higher, and the disinfection blind area in the culture pond is effectively eliminated.
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Description

Technical Field

[0001] This utility model relates to the field of aquaculture equipment, and more specifically, to a disinfectant spraying device for a greenfin pufferfish aquaculture pond. Background Technology

[0002] The greenfin filefish is a fish belonging to the family Monoceratoides and the genus Triceratoides. Its body is relatively laterally compressed and elongated oval, resembling a horse's face. The greenfin filefish is a highly adaptable and fast-growing marine fish, and its aquaculture is of great significance to the promotion of the aquatic product market. The water quality conditions for aquaculture of greenfin filefish are very critical. In order to ensure the safety of the aquaculture environment and promote the healthy growth of greenfin filefish, it is necessary to spray disinfectant for treatment.

[0003] Greenfin filefish is an important marine economic fish. In the process of its aquaculture, water quality management of the aquaculture pond is crucial. Regular disinfection of the aquaculture pond is a key measure to prevent diseases and maintain good water quality. However, the existing disinfectant spraying equipment for greenfin filefish aquaculture ponds has fixed nozzles. It is impossible to change the spraying angle according to factors such as the shape, depth, and water flow of the aquaculture pond. As a result, the disinfectant cannot be evenly covered in all areas of the aquaculture pond, resulting in disinfection blind spots. Furthermore, the fixed spraying angle cannot meet the diverse disinfection needs, affecting the disinfection effect and aquaculture benefits, and failing to meet the requirement of evenly distributing the disinfectant.

[0004] Therefore, a disinfectant spraying device for greenfin pufferfish aquaculture ponds is proposed to address the above problems. Utility Model Content

[0005] In order to overcome the above-mentioned defects of the prior art, this utility model provides a disinfectant spraying device for greenfin pufferfish breeding ponds to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a disinfectant spraying device for a greenfin pufferfish aquaculture pond, comprising a support base, a storage tank fixedly connected to the upper surface of the support base, a support frame fixedly connected to the upper surface of the support base, a spraying power mechanism mounted on the upper surface of the support frame, a stirring assembly installed inside the storage tank, a square box fixedly connected to the upper surface of the support frame, an electric push rod fixedly connected to the inner wall of the square box, and a transmission plate fixedly connected to the output end of the electric push rod. The bottom surface of the frame is fixedly connected to multiple sets of fixed circular rings. Each set of fixed circular rings is rotatably connected to a spray pipe. The outer surface of each spray pipe is provided with multiple nozzles. The outer surface of each spray pipe is fitted with a driven gear. The bottom surface of the support frame is fixedly connected to a fixed guide rail. The inside of the fixed guide rail is slidably connected to a T-shaped slide plate. The bottom surface of the T-shaped slide plate is fixedly connected to a transmission rack plate. Each driven gear meshes with the transmission rack plate. The bottom surface of the transmission plate is fixedly connected to one end of the transmission rack plate.

[0007] Preferably, the spraying power mechanism includes a delivery pump body installed on the upper surface of the support frame and a guide pipe installed on the upper surface of the support frame. The water inlet end of the delivery pump body is connected to the bottom end of the storage tank through a liquid inlet pipe, and the drain end of the delivery pump body is connected to the guide pipe through a pipe. The outer surface of the guide pipe is connected to multiple spraying pipes through a diversion pipe.

[0008] Preferably, the outer surface of the liquid storage tank is provided with an observation window, and the upper surface of the liquid storage tank is equipped with a pressure relief valve.

[0009] Preferably, the upper surface of the liquid storage tank is hinged with an arc-shaped cover plate, and a sealing ring is provided at the end of the arc-shaped cover plate near the liquid storage tank.

[0010] Preferably, the stirring assembly includes a rotary motor mounted on the upper surface of the storage tank, the output end of the rotary motor passing through the storage tank and fixedly connected to a rotating shaft, and multiple stirring blades fixedly connected to the outer surface of the rotating shaft.

[0011] Preferably, a plurality of bottom stirring rods are fixedly connected to the outer surface of the rotating shaft, and the bottom stirring rods are inclined.

[0012] Preferably, the liquid storage tank is made of high-strength, corrosion-resistant engineering plastics or stainless steel.

[0013] Preferably, a plurality of counterweights are fixedly connected to the upper surface of the support base.

[0014] The technical effects and advantages of this utility model are as follows:

[0015] Compared with existing technologies, this disinfectant spraying device for greenfin pufferfish aquaculture ponds uses an electric push rod to drive a transmission plate, which in turn drives a transmission rack and pinion plate and a T-shaped slide plate to slide within a fixed guide rail. This meshes with a driven gear to rotate the spraying pipeline within a fixed circular ring, thereby flexibly adjusting the spraying angle of the nozzles. Compared with traditional fixed nozzle equipment, this device can greatly increase the disinfectant coverage area, achieve higher uniformity of disinfection spraying, and effectively eliminate disinfection blind spots in the aquaculture ponds.

[0016] Compared with existing technologies, this disinfectant spraying equipment for greenfin pufferfish farming ponds uses a rotary motor to drive a rotating shaft and stirring blades to rotate, thus comprehensively stirring the disinfectant in the storage tank. This ensures that different components are fully mixed, guaranteeing uniform disinfectant concentration and improving disinfection effectiveness. The equipment significantly enhances the disinfection efficiency of the greenfin pufferfish farming ponds. Through the coordinated operation of the delivery pump, guide pipe, and distribution pipeline of the spraying power mechanism, the disinfectant in the storage tank is stably delivered to each nozzle, ensuring a stable disinfectant flow rate during spraying, improving spraying efficiency, and guaranteeing the efficient completion of disinfection work. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall front view of this utility model.

[0018] Figure 2 This is a side sectional view of the stirring assembly of this utility model.

[0019] Figure 3 This is a top view of the structure of this utility model.

[0020] Figure 4 This is a bottom view of the support frame of this utility model.

[0021] Figure 5 This is a rear cross-sectional view of the support frame of this utility model.

[0022] The attached diagram is labeled as follows: 1. Support base; 2. Storage tank; 3. Stirring assembly; 301. Rotary motor; 302. Rotating shaft; 303. Stirring blade; 304. Bottom stirring rod; 4. Support frame; 5. Observation window; 6. Pressure relief valve; 7. Arc cover plate; 8. Delivery pump body; 9. Inlet pipe; 10. Guide pipe; 11. Diversion pipe; 12. Fixed circular ring; 13. Spraying pipe; 14. Nozzle; 15. Square box; 16. Electric push rod; 17. Transmission plate; 18. Fixed guide rail; 19. T-shaped sliding plate; 20. Transmission rack plate; 21. Driven gear; 22. Spraying power mechanism; 23. Counterweight. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example

[0024] As attached Figures 1-5 The device shown is a disinfectant spraying device for a greenfin pufferfish aquaculture pond. It includes a support base 1, a storage tank 2 fixedly connected to the upper surface of the support base 1, a support frame 4 fixedly connected to the upper surface of the support base 1, a spraying power mechanism 22 mounted on the upper surface of the support frame 4, a stirring assembly 3 installed inside the storage tank 2, a square box 15 fixedly connected to the upper surface of the support frame 4, an electric push rod 16 fixedly connected to the inner wall of the square box 15, a transmission plate 17 fixedly connected to the output end of the electric push rod 16, and multiple sets of fixed circular rings 12 fixedly connected to the bottom surface of the support frame 4. Each set of fixed circular rings 12 is rotatably connected to a spraying pipe 13, and multiple nozzles 14 are provided on the outer surface of each spraying pipe 13. Each spray pipe 13 has a driven gear 21 fitted on its outer surface. The bottom surface of the support frame 4 is fixedly connected to a fixed guide rail 18. The inside of the fixed guide rail 18 is slidably connected to a T-shaped slide plate 19. The bottom surface of the T-shaped slide plate 19 is fixedly connected to a transmission rack plate 20. Each driven gear 21 meshes with the transmission rack plate 20. The bottom surface of the transmission plate 17 is fixedly connected to one end of the transmission rack plate 20. The electric push rod 16, the transmission plate 17, the transmission rack plate 20 and the driven gear 21 form a transmission system. The extension and retraction of the electric push rod 16 drives the spray pipe 13 to rotate, thereby adjusting the spray angle of the nozzle 14. The fixed ring 12 and the fixed guide rail 18 and other structures ensure the stable operation of each component.

[0025] As can be seen from the above description, this utility model has the following beneficial effects: the disinfectant in the storage tank 2 is first stirred by the stirring component 3 for a period of time to make the solution concentration uniform. Then, the electric push rod 16 extends, driving the transmission plate 17 and the transmission rack plate 20 to move. The transmission rack plate 20 meshes with the driven gear 21, causing the spraying pipeline 13 to rotate in the fixed circular ring 12. The nozzle 14 rotates accordingly to spray the disinfectant. It can evenly spray the disinfectant in various areas of the aquaculture pond according to the actual situation. Compared with the traditional manual spraying method, the efficiency is greatly improved and the spraying uniformity is significantly improved. Example

[0026] Based on Embodiment 1, the solution in Embodiment 1 will be further described in detail below, with reference to the specific working method described in detail:

[0027] like Figures 1-5As shown, in a preferred embodiment, the spraying power mechanism 22 includes a delivery pump body 8 mounted on the upper surface of the support frame 4 and a guide pipe 10 mounted on the upper surface of the support frame 4. The water inlet end of the delivery pump body 8 is connected to the bottom end of the storage tank 2 through a liquid inlet pipe 9, and the drain end of the delivery pump body 8 is connected to the guide pipe 10 through a pipe. The outer surface of the guide pipe 10 is connected to multiple spraying pipes 13 through a diversion pipe 11. The liquid inlet pipe 9 is located in front of the support frame 4 and will not affect the left and right movement of the transmission rack plate 20. Moreover, the diversion pipe 11 uses a soft pipe so that it will not affect the angle adjustment of the spraying pipes 13. The disinfectant is efficiently transported and distributed through the spraying power mechanism 22. The delivery pump 8 extracts the disinfectant from the storage tank 2. The delivery pump 8 can be a magnetic pump because it adopts a magnetic drive shaftless design, which is completely leak-free and will not cause leakage pollution of disinfectant. Magnetic pumps usually use rare earth permanent magnets to improve rotation efficiency. They are also compact in structure, easy to install and maintain, and can meet the requirements of most disinfectant delivery. The disinfectant is evenly distributed to each spraying pipeline 13 through the guide pipe 10 and the diversion pipeline 11, ensuring that the liquid output of each nozzle 14 is consistent, ensuring uniform and stable spraying effect, and ensuring the healthy growth of greenfin pufferfish.

[0028] like Figures 1-5 As shown, in a preferred embodiment, the outer surface of the storage tank 2 is provided with an observation window 5, and a pressure relief valve 6 is installed on the upper surface of the storage tank 2. An arc-shaped cover plate 7 is hinged to the upper surface of the storage tank 2, and a sealing ring is provided at one end of the arc-shaped cover plate 7 near the storage tank 2. Furthermore, if the operator finds that the amount of disinfectant remaining in the storage tank 2 is insufficient through the observation window 5, they can replenish it in time to avoid interruption of spraying. When the pressure in the storage tank 2 increases due to disinfectant reaction or temperature change, the pressure relief valve 6 automatically opens to release excess pressure. After the pressure returns to normal, it automatically closes. The equipment is not damaged, ensuring the smooth progress of disinfection work and preventing the storage tank 2 from rupturing due to excessive pressure, thus ensuring the safety of equipment and personnel. The arc-shaped cover plate 7 is hinged to the storage tank 2 for easy addition of disinfectant, and the sealing ring ensures the airtightness of the storage tank 2, preventing disinfectant evaporation, reducing environmental pollution and harm to operators, and avoiding waste caused by disinfectant leakage.

[0029] like Figures 1-5As shown, in a preferred embodiment, the stirring assembly 3 includes a rotary motor 301 mounted on the upper surface of the storage tank 2. The output end of the rotary motor 301 passes through the storage tank 2 and is fixedly connected to a rotating shaft 302. Multiple stirring blades 303 are fixedly connected to the outer surface of the rotating shaft 302, and multiple bottom stirring rods 304 are fixedly connected to the outer surface of the rotating shaft 302. The bottom stirring rods 304 are inclined. Furthermore, when preparing a new disinfectant solution, after pouring various components into the storage tank 2, the rotary motor 301 is started, which drives the stirring blades 303 to rotate and stir at a high speed. Combined with the inclined angle of the bottom stirring rods 304, it can lift the sediment at the bottom of the tank and mix it with the solution. After stirring for a period of time, the uniformity of the disinfectant is ensured, providing quality assurance for subsequent spraying work. This ensures that the concentration of disinfectant at the bottom and top of the storage tank 2 is consistent, effectively improving the disinfectant's effectiveness.

[0030] like Figures 1-5 As shown, in a preferred embodiment, the storage tank 2 is made of high-strength, corrosion-resistant engineering plastic or stainless steel. Multiple counterweights 23 are fixedly connected to the upper surface of the support base 1. Furthermore, by using high-strength, corrosion-resistant engineering plastic or stainless steel for the storage tank 2, it can resist the corrosion of the disinfectant, extend the service life of the storage tank 2, reduce equipment replacement frequency and maintenance costs, and ensure the safety and stability of the storage tank 2 during long-term use. The counterweights 23 increase the weight of the support base 1, improving the overall stability of the equipment and preventing the equipment from shaking or shifting due to the reaction force generated by the rotation of the dispensing pipe 13 during the dispensing process. This ensures dispensing accuracy and safe operation of the equipment. When the dispensing pipe 13 rotates at high speed to dispense the disinfectant, the counterweights 23 firmly fix the equipment on the ground, effectively ensuring the rotational stability of the dispensing pipe 13 and the dispensing accuracy of the nozzle 14, avoiding uneven disinfectant dispensing caused by equipment shaking.

[0031] The working process of this utility model is as follows:

[0032] When using the disinfectant dispensing equipment for the greenfin pufferfish aquaculture pond, firstly, pour the various components of the disinfectant into the storage tank 2 next to the aquaculture pond, then start the rotary motor 301. The rotary motor 301 can rotate at a high speed with the stirring blades 303 to stir the disinfectant. At the same time, the inclined bottom stirring rod 304 goes deep into the bottom of the storage tank 2 to stir the disinfectant in all directions without dead angles. After stirring for a period of time, it is ensured that the disinfectant is evenly dispersed in the water, thereby achieving a better disinfection effect and providing a high-quality disinfectant solution for subsequent dispensing work.

[0033] Then, according to the shape of the aquaculture pond, the electric push rod 16 is extended by the control system. The operation of the electric push rod 16 drives the transmission plate 17 and the transmission rack plate 20 to slide left and right. Because the transmission rack plate 20 meshes with the driven gear 21, the spraying pipeline 13 can rotate 30° clockwise within the fixed circular ring 12, adjusting the spraying angle of the nozzle 14 to a suitable position. Then, the delivery pump body 8 can be started to extract the disinfectant from the storage tank 2 at a constant flow rate. The disinfectant is then evenly distributed to the spraying pipeline 13 through the guide pipe 10 and the diversion pipeline 11, stably delivering the disinfectant in the storage tank 2 to each nozzle 14. This ensures that the disinfectant flow rate is stable during the spraying process and that the liquid output of each nozzle 14 is consistent, so that the disinfectant can fully cover the deeper corners of the aquaculture pond. This effectively solves the disinfection problem of irregular aquaculture ponds. This is the working process and working principle of the device.

[0034] Finally: The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A disinfectant spraying device for a greenfin pufferfish aquaculture pond, comprising a support base (1), a liquid storage tank (2) fixedly connected to the upper surface of the support base (1), a support frame (4) fixedly connected to the upper surface of the support base (1), and a spraying power mechanism (22) installed on the upper surface of the support frame (4), characterized in that: The storage tank (2) is equipped with a stirring assembly (3). A square box (15) is fixedly connected to the upper surface of the support frame (4). An electric push rod (16) is fixedly connected to the inner wall of the square box (15). A transmission plate (17) is fixedly connected to the output end of the electric push rod (16). Multiple sets of fixed circular rings (12) are fixedly connected to the bottom surface of the support frame (4). A dispensing pipe (13) is rotatably connected inside each set of fixed circular rings (12). The outer surface of each dispensing pipe (13) is provided with... Multiple nozzles (14), each of the spray pipes (13) has a driven gear (21) sleeved on its outer surface, the bottom surface of the support frame (4) is fixedly connected to a fixed guide rail (18), the inside of the fixed guide rail (18) is slidably connected to a T-shaped slide plate (19), the bottom surface of the T-shaped slide plate (19) is fixedly connected to a transmission rack plate (20), each of the driven gears (21) meshes with the transmission rack plate (20), and the bottom surface of the transmission plate (17) is fixedly connected to one end of the transmission rack plate (20).

2. The disinfectant spraying device for a greenfin pufferfish aquaculture pond according to claim 1, characterized in that: The spraying power mechanism (22) includes a delivery pump body (8) installed on the upper surface of the support frame (4) and a guide pipe (10) installed on the upper surface of the support frame (4). The water inlet end of the delivery pump body (8) is connected to the bottom end of the storage tank (2) through the liquid inlet pipe (9). The drain end of the delivery pump body (8) is connected to the guide pipe (10) through the pipe. The outer surface of the guide pipe (10) is connected to multiple spraying pipes (13) through the diversion pipe (11).

3. The disinfectant spraying device for a greenfin pufferfish aquaculture pond according to claim 1, characterized in that: The outer surface of the liquid storage tank (2) is provided with an observation window (5), and the upper surface of the liquid storage tank (2) is equipped with a pressure relief valve (6).

4. The disinfectant spraying device for a greenfin pufferfish aquaculture pond according to claim 1, characterized in that: The upper surface of the liquid storage tank (2) is hinged with an arc cover plate (7), and a sealing ring is provided at one end of the arc cover plate (7) near the liquid storage tank (2).

5. The disinfectant spraying device for a greenfin pufferfish aquaculture pond according to claim 1, characterized in that: The stirring assembly (3) includes a rotary motor (301) installed on the upper surface of the storage tank (2). The output end of the rotary motor (301) passes through the storage tank (2) and is fixedly connected to a rotating shaft (302). Multiple stirring blades (303) are fixedly connected to the outer surface of the rotating shaft (302).

6. The disinfectant spraying device for a greenfin pufferfish aquaculture pond according to claim 5, characterized in that: Multiple bottom stirring rods (304) are fixedly connected to the outer surface of the rotating shaft (302), and the bottom stirring rods (304) are inclined.

7. The disinfectant spraying device for a greenfin pufferfish aquaculture pond according to claim 1, characterized in that: The liquid storage tank (2) is made of high-strength, corrosion-resistant engineering plastic or stainless steel.

8. The disinfectant spraying device for a greenfin pufferfish aquaculture pond according to claim 1, characterized in that: Multiple counterweights (23) are fixedly connected to the upper surface of the support base (1).