Cockroach attractant mixed material preparation device

By designing a cockroach booze mix preparation device that includes spiral coils, heating boxes, condensing tanks and heat dissipation coils, the problem of single functions of existing equipment and dangerous transport of toxic drugs is solved, and efficient booze purification and simplification of production processes are achieved.

CN222998681UActive Publication Date: 2025-06-20BEIJING BEIXINJIA PEST CONTROL CO LTD
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Patent Information

Application Number
CN202422221653.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-06-20
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

The existing cockroach booze mixing equipment has a single function and cannot be directly purified, which leads to the transportation of the mixture increasing the risk and workload of toxic drugs.

Method used

A cockroach booze mix preparation device is designed, including a mixing tank, spiral coil, heating box, condensing tank and heat dissipation coil. The excess water is evaporated through the high-temperature water flow in the spiral coil, improving the purity of the booze, and recycling steam through the condensing tank to achieve a continuous purification process.

Benefits of technology

The device improves the purity of the boulder through evaporation, simplifies the subsequent purification steps, reduces the risk and workload of toxic drugs, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of cockroach attractant mixed material preparation, in particular to a cockroach attractant mixed material preparation device which comprises a mixing tank with a stirring mechanism and a temperature conduction spiral coil, a condensation tank, a heat supply box for providing hot water for the mixing tank, a heat dissipation coil with an axial flow fan for providing cold water for the condensation tank and the like. Compared with the prior art, the device has the advantages that the spiral coil pipe is arranged on the attractive toxicant mixing tank with a stirring mechanism on the basis, redundant moisture in mixed liquid in the tank is separated through evaporation by means of hot water continuously flowing in the coil pipe, and therefore the purity of the attractive toxicant is improved, and the attractive toxicant quality is improved. And some related mechanisms for auxiliary treatment are further arranged, a condensation pipe on one side is used for treating high-temperature steam separated through evaporation, a heat supply box provides heat for the mixing tank, and an axial flow fan and a heat dissipation coil pipe provide a cooling medium for the condensation tank.
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Description

Technical Field

[0001] The utility model relates to the field of preparation of cockroach attractant mixtures, and specifically refers to a device for preparing cockroach attractant mixtures. Background Technique

[0002] There are many different preparation methods for cockroach attractants. No matter which raw materials and proportioning methods are adopted, it is necessary to mix a variety of raw material stock solutions, and mixing equipment is required. Since the types of stock solutions added are relatively numerous, after chemical changes and physical mixing occur during mutual mixing, the amount of water in the attractant may be relatively excessive, resulting in a relatively low content of the effective substances in the mixture, thereby affecting the killing effect of the attractant on pests such as cockroaches.

[0003] Currently, general mixing equipment is merely a mixing tank with a stirring mechanism, and its structure and function are relatively single. After mixing is completed, it needs to be discharged and transported to the corresponding purification equipment for further operation, which is relatively troublesome. Moreover, the attractant itself is toxic, and each additional transfer process increases the risk and also requires additional safety protection work. Therefore, a device for preparing cockroach attractant mixtures is needed. Content of the Utility Model

[0004] I. Technical Problems to be Solved

[0005] The technical problem to be solved by the utility model is that the general functional structure of cockroach attractant mixing equipment is relatively single and cannot undertake subsequent purification steps. When the mixed solution is transported and dehydrated in the existing manner to increase the drug concentration, the risk and workload of preventing the spread of toxic drugs will increase.

[0006] II. Technical Solution

[0007] To solve the above technical problems, the technical solution provided by the utility model is: a device for preparing cockroach attractant mixtures, including a mixing tank. One side of the top of the mixing tank is connected with a feed pipe, the bottom of the mixing tank is connected with a discharge pipe, and a first electromagnetic valve is connected to the discharge pipe.

[0008] A first stirring shaft is rotatably connected inside the mixing tank. A first motor that cooperates with the first stirring shaft is connected downward above the mixing tank. A first spiral coil pipe is connected inside the inner wall of the mixing tank, and a first water pump is connected to the first spiral coil pipe.

[0009] Further, a heating box is externally connected to one side of the mixing tank. The upper and lower ends of the first spiral coil extend outside the mixing tank and are communicated with the heating box. A plurality of partitions are connected inside the heating box. A plurality of electric heating rods are connected inside the heating box in the partitions. A water replenishing pipe is connected to the top of the heating box. The heating box with electric heating rods provides high-temperature water flow for the first spiral coil.

[0010] Further, a condensation tank is externally connected to one side of the mixing tank. A steam transmission pipe is commonly connected between the tops of the mixing tank and the condensation tank. An air pump is connected to the steam transmission pipe. A second stirring shaft is rotatably connected inside the condensation tank. A plurality of blades are connected to both the first stirring shaft and the second stirring shaft. A second motor cooperating with the second stirring shaft is connected downward above the condensation tank. A second spiral coil is connected inside the inner wall of the condensation tank. A second water pump is connected to the second spiral coil. A drain pipe is connected to the bottom of the condensation tank. A second electromagnetic valve is connected to the drain pipe. The water is quickly cooled back through the heat dissipation elbow pipe to provide low-temperature water flow for the second spiral coil.

[0011] Further, a heat dissipation coil is externally connected to one side of the condensation tank. The upper and lower ends of the second spiral coil extend outside the condensation tank and are communicated with the heat dissipation coil. An axial flow fan cooperating with the heat dissipation coil is externally connected to one side of the condensation tank. The axial flow fan blows away the hot air around the heat dissipation coil to quickly cool the water flow in the heat dissipation coil.

[0012] Further, a support is commonly connected below the mixing tank, the condensation tank, the heating box, the heat dissipation coil and the axial flow fan, which is used to support and fix the above units to form an integral whole.

[0013] III. Beneficial Effects

[0014] The advantages of the present utility model compared with the prior art are as follows: On the basis of the trapping agent mixing tank with a stirring mechanism, a spiral coil is provided. The continuously flowing hot water in the coil separates the excess water in the mixed liquid in the tank through evaporation, thereby improving the purity of the trapping agent. And some related mechanisms for auxiliary treatment are also equipped. Among them, a side condensation pipe is used to treat the high-temperature steam separated by evaporation, the heating box provides heat for the mixing tank, and the axial flow fan and the heat dissipation coil provide a cooling medium for the condensation tank. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic external structure diagram of a cockroach trapping agent mixing and preparing device of the present utility model Figure 1 .

[0016] Figure 2 is a schematic external structure diagram of a cockroach trapping agent mixing and preparing device of the present utility model Figure 2 .

[0017] Figure 3 is a schematic diagram of the internal structure of a device for preparing a cockroach attractant mixture of the present utility model Figure 1 。

[0018] Figure 4 is a schematic diagram of the internal structure of a device for preparing a cockroach attractant mixture of the present utility model Figure 2 。

[0019] Figure 5 is Figure 4 a schematic diagram of the structure of part A in

[0020] As shown in the figure: 1. Mixing tank, 2. Feeding pipe, 3. First stirring shaft, 4. First motor, 5. Blade, 6. Discharge pipe, 7. First solenoid valve, 8. First spiral coil pipe, 9. First water pump, 10. Heating box, 11. Interlayer, 12. Electric heating rod, 13. Make-up water pipe, 14. Condensation tank, 15. Second stirring shaft, 16. Second motor, 17. Drain pipe, 18. Second solenoid valve, 19. Second spiral coil pipe, 20. Heat dissipation coil pipe, 21. Second water pump, 22. Axial flow motor, 23. Bracket, 24. Steam delivery pipe, 25. Air pump. Specific embodiments

[0021] The following further elaborates on the present utility model with reference to the attached drawings.

[0022] Embodiment 1

[0023] Combined with the attached Figures 1-5 , to solve the above technical problems, the technical solution provided by the present utility model is: a device for preparing a cockroach attractant mixture, including a mixing tank 1. A bracket 23 is commonly connected and provided below the mixing tank 1, the condensation tank 14, the heating box 10, the heat dissipation coil pipe 20 and the axial flow fan for supporting and fixing the above units to form an integral whole. A feeding pipe 2 is connected and provided on one side of the top of the mixing tank 1. A discharge pipe 6 is connected and provided at the bottom of the mixing tank 1. A first solenoid valve 7 is connected and provided on the discharge pipe 6. A first stirring shaft 3 is rotatably connected and provided in the mixing tank 1. A first motor 4 cooperating with the first stirring shaft 3 is connected and provided downward above the mixing tank 1. A first spiral coil pipe 8 is connected and provided in the inner wall of the mixing tank 1. A first water pump 9 is connected and provided on the first spiral coil pipe 8. A heating box 10 is connected and provided outside one side of the mixing tank 1. The upper and lower ends of the first spiral coil pipe 8 extend outside the mixing tank 1 and are communicated with the heating box 10. A plurality of interlayers 11 are connected and provided in the heating box 10. A plurality of electric heating rods 12 are connected and provided in the heating box 10 within the interlayers 11. A make-up water pipe 13 is connected and provided at the top of the heating box 10. The heating box 10 with the electric heating rods 12 provides high-temperature water flow for the first spiral coil pipe 8.

[0024] Through the operation of the first motor 4, the stirring shaft one 3 with the blade 5 rotates in the mixing tank 1 to stir and mix various raw materials of the insecticide. The feeding pipe 2 and the discharging pipe 6 above and below are used to achieve feeding and discharging. The above components constitute the basic equipment for mixing the cockroach insecticide. Among them, the feeding pipe 2 is set in a multi-connection port style through a four-way pipe in this device, which is also convenient for the feeding pipe 2 to be connected to each raw material conveying end. A spiral coil one 8 with a relatively thin pipe wall is provided in the inner wall of the mixing tank 1, which is filled with high-temperature water flow. It is used to transfer the heat brought by the hot water to the insecticide in the mixing tank 1, so that the excess water contained in the insecticide evaporates, achieving the effect of purifying the insecticide. The stirring mechanism for mixing can also well accelerate the evaporation of water by continuously turning the insecticide. The structural design of the spiral coil one 8 can increase the contact surface of heat exchange and improve the evaporation efficiency. The heating box 10 on one side provides heat through the electric heating rod 12 inside. The water flow flows through the heating box 10 and can be recycled and continuously used. A plurality of partitions 11 are provided in the heating box 10 from top to bottom, which increases the flow path of the water flow in a limited space and is also more conducive to its own rapid reheat. The outer shell of the electric heating rod 12 is made of waterproof material and structural design. The electric heating rod 12 belongs to the prior art and will not be described in detail here.

[0025] Embodiment 2

[0026] Combined with the attached Figures 1-4 , a condensation tank 14 is externally connected to one side of the mixing tank 1. A steam transmission pipe 24 is commonly connected between the tops of the mixing tank 1 and the condensation tank 14. An air pump 25 is connected to the steam transmission pipe 24. A stirring shaft two 15 is rotatably connected in the condensation tank 14. A plurality of blades 5 are connected to both the stirring shaft one 3 and the stirring shaft two 15. A second motor 16 cooperating with the stirring shaft two 15 is connected downward above the condensation tank 14. A spiral coil two 19 is connected in the inner wall of the condensation tank 14. A water pump two 21 is connected to the spiral coil two 19. A drain pipe 17 is connected to the bottom of the condensation tank 14. A solenoid valve two 18 is connected to the drain pipe 17. The water is quickly cooled back through a heat dissipation elbow to provide low-temperature water flow for the spiral coil two 19. A heat dissipation coil 20 is externally connected to one side of the condensation tank 14. The upper and lower ends of the spiral coil two 19 extend to the outside of the condensation tank 14 and are connected and communicated with the heat dissipation coil 20. An axial flow fan is externally connected to one side of the condensation tank 14 and is matched with the heat dissipation coil 20. The axial flow fan blows away the hot air around the heat dissipation coil 20 to quickly cool the water flow in the heat dissipation coil 20.

[0027] The steam formed by evaporating the moisture in the mixing tank 1 is sucked out through the steam delivery pipe 24 with an air pump 25 and sent to the condensation tank 14 for cooling, so that it is restored to the liquid state for discharge treatment. Since the mixing tank 1 removes the excess moisture in the cockroach attractant through the process of heating and evaporation, during this process, due to the different choices of the formula ratio of the cockroach attractant, the attractant mixture liquid at this node should not have substances that are easily evaporated other than water, unless in the production process of the attractant, there are other substances that need to be evaporated and removed together with water in this step, and this device can also be selected for production and processing. The structure of the condensation tank 14 is generally the same as that of the mixing tank 1, and it also has a stirring mechanism to accelerate the cooling of the steam. The spiral coil two 19 in the inner wall is filled with low-temperature water flow, which is used to make the steam return to the liquid state quickly by exchanging heat with the low-temperature water flow. Similar to the high-temperature water flow in the spiral coil one 8, the low-temperature water flow in the spiral coil two 19 is also recycled through continuous cooling by an external mechanism. The heat dissipation coil 20 on one side undertakes this work. First, the heat dissipation coil 20 blows away the hot air around it through an axial flow fan on one side, and the hot air is replaced by relatively low-temperature air, and the heat exchange continues between the relatively low-temperature air and the water flow heated by the steam in the heat dissipation coil 20, so that the water flow in the heat dissipation coil 20 returns to the low-temperature state. Secondly, through its own curved structure setting, the contact area between the internal water flow and the outside world is expanded, and the heat exchange with the outside air is more efficient.

[0028] The above describes the present invention and its implementation manners, and this description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present invention, and the actual structure is not limited thereto. All in all, if those of ordinary skill in the art are inspired by it and design similar structural manners and embodiments without creative efforts without departing from the creative purpose of the present invention, they shall fall within the protection scope of the present invention.

Claims

1. A cockroach attractant mixing preparation device, comprising a mixing tank (1), a feeding pipe (2) connected to one side of the top of the mixing tank (1), a discharge pipe (6) connected to the bottom of the mixing tank (1), and a solenoid valve (7) connected to the discharge pipe (6), characterized in that: A stirring shaft (3) is rotatably connected inside the mixing tank (1), a motor (4) matching the stirring shaft (3) is connected downwardly from the top of the mixing tank (1), a spiral coil (8) is connected in the inner wall of the mixing tank (1), and a water pump (9) is connected to the spiral coil (8).

2. A cockroach attractant mixture preparation device according to claim 1, characterized in that: A heating box (10) is externally connected to one side of the mixing tank (1), the upper and lower ends of the spiral coil (8) extend to the outside of the mixing tank (1) and are interconnected with the heating box (10), a plurality of partitions (11) are connected to the heating box (10), a plurality of electric heating rods (12) are connected to the heating box (10) located in the partitions (11), and a water supply pipe (13) is connected to the top of the heating box (10).

3. The cockroach attractant mixture preparation device according to claim 1, characterized in that: A condensing tank (14) is externally connected to one side of the mixing tank (1), a steam pipe (24) is commonly connected between the tops of the mixing tank (1) and the condensing tank (14), an air pump (25) is connected to the steam pipe (24), a second stirring shaft (15) is rotatably connected to the inside of the condensing tank (14), a plurality of blades (5) are connected to both the first stirring shaft (3) and the second stirring shaft (15), a second motor (16) matched with the second stirring shaft (15) is downwardly connected to the top of the condensing tank (14), a second spiral coil (19) is connected to the inner wall of the condensing tank (14), a second water pump (21) is connected to the second spiral coil (19), a drain pipe (17) is connected to the bottom of the condensing tank (14), and a second solenoid valve (18) is connected to the drain pipe (17).

4. A cockroach attractant mixture preparation device according to claim 3, characterized in that: A heat dissipation coil (20) is externally connected to one side of the condensing tank (14), and upper and lower ends of the second spiral coil (19) extend to the outside of the condensing tank (14) and are connected to the heat dissipation coil (20). An axial flow fan that matches the heat dissipation coil (20) is externally connected to one side of the condensing tank (14).

5. A cockroach attractant mixture preparation device according to claim 4, characterized in that: A bracket (23) is commonly connected to the mixing tank (1), the condensing tank (14), the heating box (10), the heat dissipation coil (20) and the axial flow fan below.