Soaking pool for processing molluscicide

By using a high-pressure water pump to perform bottom squirting and stirring in the processing of screw killer, the problem of traditional stirring methods leading to the deposition of medicinal powder is solved, the stirring efficiency and soaking efficiency are improved, and the automatic delivery function of the agent is increased.

CN222900263UActive Publication Date: 2025-05-27HUBEI JINHAICHAO TECH CO LTD
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Patent Information

Application Number
CN202421618850.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-05-27
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

The traditional stirring method can easily lead to the deposition of the medicinal powder on the bottom during the processing of snailicide, resulting in the prolonged soaking time.

Method used

The dissolving solution inside the soaking tank is sucked by a high-pressure water pump to squirt the bottom to form a circulating agitation of the liquid and improve the stirring efficiency.

Benefits of technology

It improves the stirring efficiency, reduces the soaking time, and increases the automatic delivery function of the drug, improving the convenience of configuration and the accuracy of proportions.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222900263U_ABST
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Abstract

The utility model belongs to the technical field of molluscicide processing, and particularly relates to a soaking pool for processing molluscicide. A plurality of circular grooves are formed in the bottom of the soaking pool, a hollow spewing seat is arranged in the middle of each circular groove, a blocking cap is buckled to the upper end of each hollow spewing seat, and the inner side of each blocking cap is connected to a hollow support in the middle of the corresponding hollow spewing seat through a connecting spring; the lower end of the hollow gushing seat is connected with a conveying pipeline at the bottom of the soaking pool, the left end of the conveying pipeline is connected with a suction pump, and the inlet end of the suction pump is connected to the middle section of the left side wall of the soaking pool through a filter screen opening; a feeding assembly is arranged at the right upper end of the soaking pool; and the suction pump pumps upper-layer liquid in the soaking pool, conveys the upper-layer liquid to the conveying pipeline, outputs the upper-layer liquid from the hollow gushing seat and jacks up the plugging cap, so that a bottom gushing type stirring structure is realized. A rotary stirring structure is improved, a high-pressure water pump is used for pumping dissolving liquid in the soaking pool to conduct stirring in a bottom gushing mode, circulating stirring of the liquid in the soaking pool is formed, and the stirring efficiency is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of snail-killing agent processing, and particularly relates to an immersion tank for processing snail-killing agents. Background Art

[0002] During the processing of snail-killing agents, the medicinal materials usually need to be soaked. The current common processing method is to directly place the medicinal materials in a water tank or a water vat for soaking, and stir to accelerate the dissolution effect. However, the stirring method uses a motor to drive a paddle to rotate. The snail-killing agent we use is made from the powder of camellia cake, which is different from the traditional medicinal materials in terms of the requirements for stirring. This traditional paddle rotation method easily causes some camellia meal powder to deposit at the bottom, resulting in an extended soaking time. Content of the Utility Model

[0003] In order to solve the defects and deficiencies of the prior art, the purpose of the utility model is to provide an immersion tank for processing snail-killing agents with a simple structure, reasonable design and convenient use. It improves the rotary stirring structure, and uses a high-pressure water pump to suck the dissolved liquid inside the immersion tank and spray it from the bottom to stir, forming a circulating agitation of the liquid inside the immersion tank and improving the stirring efficiency.

[0004] To achieve the above purpose, the technical solution adopted by the utility model is: it includes an immersion tank, a circular groove, a hollow spraying seat, a hollowed-out support, a connecting spring, a sealing cap, a conveying pipeline, a suction pump, a filter mesh port, and a feeding assembly; several circular grooves are arranged at the bottom of the immersion tank, a hollow spraying seat is arranged in the middle of the circular groove, a sealing cap is buckled on the upper end of the hollow spraying seat, and the inner side of the sealing cap is connected to the hollowed-out support in the middle of the hollow spraying seat through a connecting spring; the lower end of the hollow spraying seat is connected to the conveying pipeline at the bottom of the immersion tank, the left end of the conveying pipeline is connected with a suction pump, and the inlet end of the suction pump is connected to the middle section of the left side wall of the immersion tank through a filter mesh port; a feeding assembly is arranged at the upper right end of the immersion tank.

[0005] Preferably, the suction pump extracts the upper-layer liquid in the immersion tank and transports it to the conveying pipeline, outputs it from the hollow spraying seat and pushes up the sealing cap, realizing the bottom spraying type stirring structure.

[0006] Preferably, the feeding assembly is composed of a medicine bottle, a communicating seat, and a feeding pump; the feeding pump is connected to the inverted medicine bottle through the communicating seat, realizing the medicine suction type feeding structure.

[0007] Preferably, a rubber sealing pad is arranged on the inner side of the sealing cap, and the rubber sealing pad keeps fitting with the upper port of the hollow spraying seat.

[0008] Preferably, the sealing cap realizes the seal between the sealing cap and the port of the hollow spraying seat under the pulling of the connecting spring and the water pressure on the upper surface of the sealing cap.

[0009] After adopting the above structure, the beneficial effects of the present utility model are as follows: It improves the rotary stirring structure, uses a high-pressure water pump to suck the dissolved liquid inside the soaking pool and stirs it in the way of bottom gushing, forming a circulating agitation of the liquid inside the soaking pool, improving the stirring efficiency. At the same time, it also adds an automatic chemical dosing function, increasing the convenience of snail killing agent preparation and the accuracy of the ratio. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the present utility model will be described in detail by the following specific embodiments and the accompanying drawings.

[0011] Figure 1 is a schematic structural diagram of the present utility model;

[0012] Figure 2 is a schematic diagram of the stirring cycle of the present utility model;

[0013] Figure 3 is a schematic structural diagram of the plugging cap 6 of the present utility model;

[0014] Explanation of reference numerals: soaking pool 1, circular groove 2, hollow gushing seat 3, hollowed-out bracket 4, connecting spring 5, plugging cap 6, conveying pipeline 7, suction pump 8, filter mesh opening 9, dosing assembly 10. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0015] To make the purpose, technical solutions and advantages of the present utility model clearer, the present utility model will be described by the specific embodiments shown in the accompanying drawings. However, it should be understood that these descriptions are exemplary and not intended to limit the scope of the present utility model. In addition, in the following description, the descriptions of well-known structures and technologies are omitted to avoid unnecessarily confusing the concepts of the present utility model.

[0016] Refer to as Figures 1 - 3 shown, the present specific embodiment adopts the following technical solutions: It includes a soaking pool 1, a circular groove 2, a hollow gushing seat 3, a hollowed-out bracket 4, a connecting spring 5, a plugging cap 6, a conveying pipeline 7, a suction pump 8, a filter mesh opening 9, and a dosing assembly 10; several circular grooves 2 are provided at the bottom of the soaking pool 1, a hollow gushing seat 3 is arranged in the middle of the circular groove 2, a plugging cap 6 is buckled on the upper end of the hollow gushing seat 3, and the inner side of the plugging cap 6 is connected to the hollowed-out bracket 4 in the middle of the hollow gushing seat 3 through a connecting spring 5; the lower end of the hollow gushing seat 3 is connected to the conveying pipeline 7 at the bottom of the soaking pool 1, the left end of the conveying pipeline 7 is connected to a suction pump 8, and the inlet end of the suction pump 8 is connected to the middle section of the left side wall of the soaking pool 1 through a filter mesh opening 9; a dosing assembly 10 is arranged at the upper right end of the soaking pool 1.

[0017] Among them, the suction pump 8 extracts the upper-layer liquid in the soaking pool 1 and transports it to the conveying pipeline 7, outputs it from the hollow spraying seat 3, and pushes up the plugging cap 6 to realize the bottom spraying type stirring structure. A rubber gasket 61 is arranged on the inner side of the plugging cap 6, and the rubber gasket 61 is kept in fit with the upper port of the hollow spraying seat 3; the plugging cap 6 realizes the sealing between the plugging cap 6 and the port of the hollow spraying seat 3 under the pulling of the connecting spring 5 and the water pressure acting on the upper surface of the plugging cap 6.

[0018] Furthermore, an external connection port is also arranged at the outlet end of the suction pump 8, and the supernatant can be sucked.

[0019] In addition, the feeding assembly 10 is composed of a reagent bottle 11, a communicating seat 12, and a feeding pump 13; the feeding pump 13 is connected to the inverted reagent bottle 11 through the communicating seat 12 to realize the reagent suction type feeding structure.

[0020] The working principle of this specific embodiment is as follows: First, fill the tea seed powder with a mesh size of 80 - 800 and water into the soaking pool. At the same time, add sodium hydroxide and alkaline protein alkali through the feeding assembly 10; then, the suction pump 8 sucks the upper-layer liquid and transports it into the conveying pipeline 7, and sprays it out from the hollow spraying seat 3. When the water pressure increases and the rising water pressure is greater than the pulling force of the connecting spring 5 and the water pressure acting downward on the plugging cap 6, the plugging cap 6 is pushed up and sprays out from the inside to the outside. And under the guiding action of the plugging cap 6, the precipitated tea seed powder is washed up, so that the liquid in the soaking pool is disturbed to achieve the purpose of stirring.

[0021] After adopting the above structure, the beneficial effects of the specific embodiment are as follows: It improves the rotary stirring structure, uses the high-pressure water pump to suck the dissolved liquid inside the soaking pool and sprays it at the bottom for stirring, forms the circulating agitation of the liquid inside the soaking pool, improves the stirring efficiency. At the same time, it also adds the function of automatic reagent feeding, increasing the convenience of the preparation of the molluscicide and the accuracy of the ratio.

Claims

1. A soaking tank for processing a molluscicide, characterized in that: It comprises a soaking pool, a circular groove, a hollow gushing seat, a hollow bracket, a connecting spring, a blocking cap, a conveying pipeline, a suction pump, a filter mesh port, and a delivery component; a plurality of circular grooves are arranged at the bottom of the soaking pool, a hollow gushing seat is arranged in the middle of the circular groove, a blocking cap is buckled at the upper end of the hollow gushing seat, and the inner side of the blocking cap is connected to the hollow bracket in the middle of the hollow gushing seat through a connecting spring; the lower end of the hollow gushing seat is connected to the conveying pipeline at the bottom of the soaking pool, the left end of the conveying pipeline is connected to the suction pump, and the inlet end of the suction pump is connected to the middle section of the left side wall of the soaking pool through the filter mesh port; a delivery component is arranged at the upper right end of the soaking pool.

2. A soaking tank for processing a molluscicide according to claim 1, characterized in that: The suction pump extracts the upper layer of liquid in the soaking pool and delivers it to the delivery pipeline, outputs it from the hollow gushing seat and lifts up the sealing cap, thereby realizing the bottom gushing stirring structure.

3. A soaking tank for processing a molluscicide according to claim 1, characterized in that: The delivery assembly is composed of a medicine bottle, a connecting seat, and a delivery pump; the delivery pump is connected to the inverted medicine bottle through the connecting seat to realize a medicine suction delivery structure.

4. A soaking tank for processing a molluscicide according to claim 1, characterized in that: A rubber sealing pad is arranged on the inner side of the blocking cap, and the rubber sealing pad is kept in close contact with the upper port of the hollow spouting seat.

5. A soaking tank for processing a molluscicide according to claim 4, characterized in that: The blocking cap realizes sealing between the blocking cap and the hollow spouting seat port by the pulling of the connecting spring and the water pressure on the upper surface of the blocking cap.