Mixing kettle for pesticide production

By designing a mixing vessel with a feeding mechanism and a transfer mechanism, the problem of inconvenient raw material feeding in the existing technology has been solved, realizing continuous feeding of raw materials in pesticide production and improving processing efficiency and continuity.

CN223931177UActive Publication Date: 2026-02-24ANHUI XIANGPAI MASCH MFG CO LTD
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Patent Information

Application Number
CN202520545579.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-02-24
Estimated Expiration
2035-03-26

AI Technical Summary

Technical Problem

Existing mixing tanks are inconvenient for feeding raw materials in pesticide production, resulting in low efficiency and affecting the continuity of processing and overall efficiency.

Method used

A mixing reactor comprising a feeding mechanism, a transfer mechanism, a mixing mechanism, and a conveying mechanism was designed. Through the cooperation of a screw conveyor and a hydraulic rod, the raw materials are continuously fed, and the feeding amount and speed are precisely controlled by a control panel.

Benefits of technology

It improved the efficiency and accuracy of raw material feeding, ensured the continuity of pesticide processing, and enhanced overall processing efficiency and practicality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223931177U_ABST
Patent Text Reader

Abstract

The utility model discloses a mixing kettle for pesticide production. The mixing kettle comprises a mounting bracket, a mixing kettle tank body is fixed on the inner wall of the mounting bracket, a pair of feeding pipes are fixed on the outer side of the mixing kettle tank body, a mixing mechanism is arranged on the inner wall of the mixing kettle tank body, and a feeding mechanism is arranged on the side wall of the mounting bracket; the feeding mechanism comprises a material storage tank, a liquid level sensor, a connecting groove, a material collecting box, a feeding hopper and a connecting pipe, a first separating mechanism is arranged at the bottom of the connecting groove, a second separating mechanism is arranged on the outer side of the connecting pipe, a transferring mechanism is arranged in the material storage tank, and a material conveying mechanism is arranged at the bottom of the connecting pipe; the raw materials can be continuously fed through cooperation of the feeding mechanism and the transferring mechanism, the feeding operation efficiency is improved, the pesticide processing continuity is guaranteed, the overall pesticide processing efficiency is improved, and then the practicability of the mixing kettle is improved.
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Description

Technical Field

[0001] This utility model relates to the field of pesticide production equipment technology, and in particular to a mixing tank for pesticide production. Background Technology

[0002] When producing pesticides, a mixing tank is needed to stir and react the pesticides. Existing pesticides require water, pesticide active ingredients and adjuvants to be mixed in the tank during production. When using them, water, pesticide active ingredients and adjuvants need to be added to the tank and stirring should be started.

[0003] The existing mixing reactor has the following problems compared with the prior art: The feeding operation of the existing mixing reactor is inconvenient. Since the pesticide after mixing needs to be temporarily stored in the reactor, the raw materials need to be fed in batches, which results in low feeding efficiency and poor continuity of the pesticide processing process, thus affecting the pesticide processing efficiency and making it impractical. To address these issues, we propose a mixing reactor for pesticide production. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a mixing reactor for pesticide production.

[0005] The present invention solves its technical problem through the following technical solution: including a mounting bracket, a mixing tank body is fixed to the inner wall of the mounting bracket, a pair of feeding pipes are fixed to the outer side of the mixing tank body, a discharging pipe is fixed to the bottom of the mixing tank body, a mixing mechanism is provided on the inner wall of the mixing tank body, and a feeding mechanism is provided on the side wall of the mounting bracket.

[0006] The feeding mechanism includes a storage tank, which is fixed to the side wall of the storage tank by bolts. A liquid level sensor is fixed to the side wall of the storage tank. A connecting groove is fixed to one side of the storage tank. A collection box is fixed to one end of the connecting groove. A feeding hopper is fixed to the top of the collection box. A pair of connecting pipes are fixed to the bottom of the collection box. A first separating mechanism is provided at the bottom of the connecting groove. A second separating mechanism is provided on the outside of the connecting pipes. A transfer mechanism is provided inside the storage tank.

[0007] The transfer mechanism includes a conveying sleeve, which is fixed to the inner wall of the storage tank by bolts. A drive motor A is fixed to the bottom of the storage tank by bolts. A spiral conveying rod A is fixed to the output end of the drive motor A. A conveying pipe is fixed to the outside of the conveying sleeve. The conveying pipe is connected to the collection box. A conveying mechanism is provided at the bottom of the connecting pipe.

[0008] As a further improvement of this utility model, a control panel is provided on one side of the mounting bracket.

[0009] As a further improvement of this utility model: a support frame is fixed to the outside of the storage tank, and the support frame is fixedly connected to the mixing tank body.

[0010] As a further embodiment of this utility model: the mixing mechanism includes an installation frame, which is fixed to the top of the mixing tank by bolts. A geared motor is fixed to the top of the installation frame by bolts. A drive shaft is fixed to the output end of the geared motor. An agitator is provided on the outside of the drive shaft.

[0011] As a further embodiment of this utility model: the first separating mechanism includes a mounting groove A, which is fixed to the bottom of the connecting groove by bolts, a hydraulic rod A is fixed to the bottom of the mounting groove A by bolts, and a separating plate A is fixed to the top of the hydraulic rod A.

[0012] As a further embodiment of this utility model: the second separating mechanism includes a mounting groove B, which is fixed to the outside of the connecting pipe by bolts. A hydraulic rod B is fixed to one side of the mounting groove B, and a separating plate B is fixed to one end of the hydraulic rod B.

[0013] As a further embodiment of this utility model: the material conveying mechanism includes a material conveying hopper, which is fixed to the bottom of the connecting pipe by bolts. A drive motor B is fixed to the top of the material conveying hopper by bolts. A spiral material conveying rod B is fixed to the output end of the drive motor B. A connector is fixed to the bottom of the material conveying hopper and is connected to the feeding pipe.

[0014] In summary, due to the adoption of the above technical solution, the beneficial effects of this utility model are:

[0015] 1. By coordinating the feeding mechanism and the transfer mechanism, the raw materials can be continuously fed, which improves the efficiency of the feeding operation, ensures the continuity of pesticide processing, improves the overall efficiency of pesticide processing, and thus improves the practicality of the mixing tank.

[0016] 2. By setting a second separation mechanism to control the opening and closing of the connecting pipe, the opening status of a pair of connecting pipes can be controlled according to the feeding amount of raw materials. When the feeding amount is large, two connecting pipes can be used to transport raw materials at the same time, ensuring the speed of feeding operation.

[0017] 3. By setting up a material conveying mechanism, the screw conveyor B is driven by the drive motor B to rotate. The screw conveyor B works with the conveying hopper to feed and transport raw materials, which can accurately control the feeding amount and feeding speed of raw materials and improve the accuracy of feeding operation. Attached Figure Description

[0018] Figure 1A schematic diagram of an isometric structure according to an embodiment of the present invention is shown;

[0019] Figure 2 A schematic diagram of an isometric sectional view of a structure according to an embodiment of the present invention is shown;

[0020] Figure 3 The present invention provides an embodiment of the present invention. Figure 2 Enlarged structural diagram of part A in the middle;

[0021] Figure 4 A schematic diagram of the front cross-sectional structure according to an embodiment of the present invention is shown;

[0022] Figure 5 The present invention provides an embodiment of the present invention. Figure 4 Enlarged structural diagram of section B in the middle;

[0023] Figure 6 A schematic diagram of the left sectional view of the structure according to an embodiment of the present invention is shown;

[0024] Figure 7 The present invention provides an embodiment of the present invention. Figure 6 Enlarged structural diagram of section C.

[0025] Legend:

[0026] 100 Mounting bracket, 110 Control panel, 120 Mixing tank body, 130 Feeding pipe, 140 Discharging pipe, 210 Mounting frame, 220 Gear motor, 221 Drive shaft, 230 Agitator, 310 Storage tank, 311 Support frame, 320 Liquid level sensor, 330 Connecting groove, 340 Collection box, 341 Feeding hopper, 350 Connecting pipe, 410 Mounting chute A, 420 Hydraulic rod A, 430 Divider plate A, 510 Mounting chute B, 520 Hydraulic rod B, 530 Divider plate B, 610 Conveying sleeve, 620 Drive motor A, 630 Spiral conveyor rod A, 640 Conveying pipe, 710 Conveying hopper, 720 Drive motor B, 730 Spiral conveyor rod B, 740 Connector. Detailed Implementation

[0027] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "transverse," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," and "top" are used interchangeably.

[0028] The orientation or positional relationship indicated by terms such as "bottom", "inner", "outer", "clockwise", and "counterclockwise" is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the purpose of facilitating the description of this utility model and simplifying the description, and is not intended to indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of this utility model.

[0029] In the description of this utility model, "multiple" means two or more, unless otherwise explicitly specified.

[0030] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "sleeved / connected," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0031] Please see Figure 1-7 This utility model provides a technical solution: It includes a mounting bracket 100, a control panel 110 on one side of the mounting bracket 100, a mixing tank 120 fixed to the inner wall of the mounting bracket 100, a pair of feeding pipes 130 fixed to the outer side of the mixing tank 120, a discharging pipe 140 fixed to the bottom of the mixing tank 120, a mixing mechanism on the inner wall of the mixing tank 120, and a feeding mechanism on the side wall of the mounting bracket 100; the feeding mechanism includes a storage tank 310, a liquid level sensor 320, a connecting groove 330, a collection box 340, a feeding hopper 341, and... The connecting pipe 350 has a first dividing mechanism at the bottom of the connecting groove 330 and a second dividing mechanism on the outside of the connecting pipe 350. The storage tank 310 has a transfer mechanism inside. The transfer mechanism includes a conveying sleeve 610, a drive motor A620, a screw conveyor A630, and a conveying pipe 640. The bottom of the connecting pipe 350 has a conveying mechanism. The continuous feeding operation of raw materials is achieved through the cooperation of the feeding mechanism and the transfer mechanism, which improves the efficiency of the feeding operation, ensures the continuity of pesticide processing, improves the overall efficiency of pesticide processing, and thus improves the practicality of the mixing tank.

[0032] Specifically, a support frame 311 is fixed to the outside of the storage tank 310, and the support frame 311 is fixedly connected to the mixing tank body 120; by setting the support frame 311 to support and limit the storage tank 310, the stability of the feeding mechanism is ensured.

[0033] Specifically, the mixing mechanism includes a mounting frame 210, which is bolted to the top of the mixing tank 120. A geared motor 220 is bolted to the top of the mounting frame 210, and a drive shaft 221 is fixed to the output end of the geared motor 220. An agitator 230 is provided on the outside of the drive shaft 221. With the mixing mechanism, various raw materials of pesticides enter the mixing tank 120 through the feeding pipe 130. The agitator 230 stirs and mixes the raw materials, and the raw materials react inside the mixing tank 120.

[0034] Specifically, the first separating mechanism includes a mounting chute A410, which is fixed to the bottom of the connecting groove 330 by bolts. A hydraulic rod A420 is fixed to the bottom of the mounting chute A410 by bolts, and a separating plate A430 is fixed to the top of the hydraulic rod A420. The first separating mechanism controls the communication between the collection box 340 and the storage tank 310, facilitating the collection and processing of excess raw materials.

[0035] Specifically, the second separating mechanism includes a mounting groove B510, which is fixed to the outside of the connecting pipe 350 by bolts. A hydraulic rod B520 is fixed to one side of the mounting groove B510, and a separating plate B530 is fixed to one end of the hydraulic rod B520. By setting the second separating mechanism to control the opening and closing of the connecting pipe 350, the opening status of a pair of connecting pipes 350 can be controlled according to the amount of raw material fed. When the amount of raw material fed is large, two connecting pipes 350 can be used to transport raw materials at the same time, ensuring the speed of the feeding operation.

[0036] Specifically, the material conveying mechanism includes a material conveying hopper 710, which is fixed to the bottom of the connecting pipe 350 by bolts. A drive motor B720 is fixed to the top of the material conveying hopper 710 by bolts. A spiral conveying rod B730 is fixed to the output end of the drive motor B720. A connector 740 is fixed to the bottom of the material conveying hopper 710 and is connected to the feeding pipe 130. By setting up the material conveying mechanism, the drive motor B720 drives the spiral conveying rod B730 to rotate. The spiral conveying rod B730 and the material conveying hopper 710 cooperate to feed and transport raw materials, which can accurately control the feeding amount and feeding speed of raw materials and improve the accuracy of feeding operation.

[0037] Working Principle: During operation, the mixing vessel is controlled via the control panel 110. Raw materials are evenly injected into the collection box 340 through the feeding hopper 341. Initially, the raw materials enter the conveying mechanism through the connecting pipe 350. The drive motor B720 drives the screw conveyor B730 to rotate. The screw conveyor B730, in conjunction with the conveying hopper 710, transports the raw materials. The raw materials enter the mixing vessel tank 120 through the feeding pipe 130. The reduction motor 220 drives the drive shaft 221 to rotate, which in turn drives the agitator 230 to rotate. The agitator 230 mixes and mixes the raw materials. The raw materials react inside the mixing vessel tank 120. At this time, the hydraulic rod B520 moves the partition plate B530. The system can control the closing of the connecting pipe 350. The hydraulic rod A420 drives the partition plate A430 to move down, opening the connecting groove 330. The raw material will enter the storage tank 310 through the connecting groove 330, which can divert and collect the raw material. After the raw material in the mixing tank 120 has completed the mixing reaction, the raw material is discharged through the discharge pipe 140. At this time, the drive motor A620 drives the screw conveyor A630 to rotate. The screw conveyor A630, together with the conveying sleeve 610, transports the raw material in the storage tank 310 upward and re-enters the collection box 340 through the conveying pipe 640. The raw material can continue to enter the mixing tank 120 through the connecting pipe 350 and the conveying mechanism, realizing continuous feeding of raw materials.

[0038] The motor involved in the embodiments, its matching control system, electromagnetic switch and pipeline circuit can also be provided by the manufacturer. Apart from that, the power supply module, circuit and electronic components and control module involved in this utility model are all existing technologies, which can be fully implemented by those skilled in the art, and need not be elaborated. The content protected by this utility model does not involve any improvement to the internal structure and method.

[0039] Although the present invention discloses embodiments and accompanying drawings, those skilled in the art will understand that various substitutions, variations and modifications are possible without departing from the spirit and scope of the present invention and the appended claims. Therefore, the scope of the present invention is not limited to the contents disclosed in the embodiments and accompanying drawings.

Claims

1. A mixing vessel for pesticide production, characterized in that, The system includes a mounting bracket (100), a mixing tank (120) is fixed to the inner wall of the mounting bracket (100), a pair of feeding pipes (130) are fixed to the outer side of the mixing tank (120), a discharging pipe (140) is fixed to the bottom of the mixing tank (120), a mixing mechanism is provided on the inner wall of the mixing tank (120), and a feeding mechanism is provided on the side wall of the mounting bracket (100). The feeding mechanism includes a storage tank (310), which is fixed to the side wall of the storage tank (310) by bolts. A liquid level sensor (320) is fixed to the side wall of the storage tank (310). A connecting groove (330) is fixed to one side of the storage tank (310). A collection box (340) is fixed to one end of the connecting groove (330). A feeding hopper (341) is fixed to the top of the collection box (340). A pair of connecting pipes (350) are fixed to the bottom of the collection box (340). A first separating mechanism is provided at the bottom of the connecting groove (330). A second separating mechanism is provided on the outside of the connecting pipes (350). A transfer mechanism is provided inside the storage tank (310). The transfer mechanism includes a conveying sleeve (610), which is fixed to the inner wall of the storage tank (310) by bolts. A drive motor A (620) is fixed to the bottom of the storage tank (310) by bolts. A spiral conveying rod A (630) is fixed to the output end of the drive motor A (620). A conveying pipe (640) is fixed to the outside of the conveying sleeve (610). The conveying pipe (640) is connected to the collection box (340). A conveying mechanism is provided at the bottom of the connecting pipe (350).

2. The mixing vessel for pesticide production according to claim 1, characterized in that, A control panel (110) is provided on one side of the mounting bracket (100).

3. A mixing vessel for pesticide production according to claim 1, characterized in that, A support frame (311) is fixed to the outside of the storage tank (310), and the support frame (311) is fixedly connected to the mixing tank body (120).

4. A mixing vessel for pesticide production according to claim 1, characterized in that, The mixing mechanism includes a mounting frame (210), which is fixed to the top of the mixing tank (120) by bolts. A geared motor (220) is fixed to the top of the mounting frame (210) by bolts. A drive shaft (221) is fixed to the output end of the geared motor (220), and a stirrer (230) is provided on the outside of the drive shaft (221).

5. A mixing vessel for pesticide production according to claim 1, characterized in that, The first separation mechanism includes a mounting slide A (410), which is fixed to the bottom of the connecting groove (330) by bolts. A hydraulic rod A (420) is fixed to the bottom of the mounting slide A (410) by bolts, and a separation plate A (430) is fixed to the top of the hydraulic rod A (420).

6. A mixing vessel for pesticide production according to claim 1, characterized in that, The second separation mechanism includes a mounting groove B (510), which is fixed to the outside of the connecting pipe (350) by bolts. A hydraulic rod B (520) is fixed to one side of the mounting groove B (510), and a separation plate B (530) is fixed to one end of the hydraulic rod B (520).

7. A mixing vessel for pesticide production according to claim 6, characterized in that, The material conveying mechanism includes a material conveying hopper (710), which is fixed to the bottom of the connecting pipe (350) by bolts. A drive motor B (720) is fixed to the top of the material conveying hopper (710) by bolts. A spiral material conveying rod B (730) is fixed to the output end of the drive motor B (720). A connector (740) is fixed to the bottom of the material conveying hopper (710), and the connector (740) is connected to the feeding pipe (130).