Multifunctional chemical solid reagent blending device
By designing a multifunctional chemical solid reagent dispensing device, using motor-driven components such as stirring paddles, electric valves and twisted dragons, the existing device has been complicated to operate, easy to agglomerate and slow discharge, and efficient and accurate reagent dispensing and versatility have been achieved.
Patent Information
- Application Number
- CN202421487023.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-27
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-06-27
AI Technical Summary
The existing chemical solid reagent preparation devices have problems such as cumbersome operation, low efficiency, easy reagent agglomeration, and slow discharge, and have a single function, which affects the preparation efficiency and effect.
A multifunctional chemical solid reagent dispensing device is designed, including a reagent reactor, a motor-driven stirring paddle, a reagent storage tank, connecting pipes, electric valves and a twisted dragon. Through the coordinated work of these components, the precise proportion of reagents can be achieved and the blockage and discharge blockage are prevented.
It realizes efficient and precise preparation of chemical solid reagents, avoids the problems of reagent agglomeration and slow discharge, improves the preparation efficiency and effect, and gives the device versatility.
Smart Images

Figure CN222984349U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of chemical reagent preparation, and particularly relates to a multifunctional chemical solid reagent preparation device. Background Technique
[0002] The chemical solid reagent preparation technology refers to the process of accurately proportioning and mixing chemical solid reagents according to experimental requirements. When manually operating chemical fixed reagents, it is necessary to proportion each chemical reagent and then put it into a mixing reaction kettle for reaction treatment. The process is relatively cumbersome, troublesome, increasing the workload of the corresponding operators, and the efficiency is also relatively low. When mechanically preparing chemical solid reagents, it is necessary to pre-store chemical fixed reagents in corresponding containers for direct use during proportioning. However, when chemical solid reagents are in the form of powdered solids, they are prone to caking after long-term storage, resulting in blockage or slow discharge. At the same time, during the discharging process of chemical solid reagents, the phenomenon of slow discharging is likely to occur. The functional effect of the chemical solid reagent preparation device is single, directly affecting the preparation efficiency and effect of the chemical solid reagent preparation device.
[0003] Therefore, it is very necessary to develop a multifunctional chemical solid reagent preparation device. Content of the Utility Model
[0004] The purpose of the utility model is to provide a multifunctional chemical solid reagent preparation device to solve the problems put forward in the above background technique.
[0005] To achieve the above purpose, the utility model provides the following technical scheme: A multifunctional chemical solid reagent preparation device, including a reagent reaction kettle, a motor A is installed at the center position of the top of the reagent reaction kettle, an installation frame is installed at the top of the reagent reaction kettle, and reagent storage tanks are installed on both sides inside the installation frame;
[0006] A moving frame is installed above the installation frame.
[0007] Preferably, a liquid inlet pipe is installed above one outer wall of the reagent reaction kettle, a discharge pipe is installed at the bottom of the reagent reaction kettle, and a control valve is installed on the outer wall of the discharge pipe.
[0008] Preferably, the output shaft on the motor A is fixedly connected to the top end of a rotating shaft A through a coupling, and stirring paddles are arranged on both sides of the outer wall of the rotating shaft A.
[0009] Preferably, a connecting pipe is installed at the bottom end of the reagent storage tank, the bottom end of the connecting pipe is fixedly connected to the top of the reagent reaction kettle, and an electric valve is installed on one side of the outer wall of the connecting pipe.
[0010] Preferably, cylinders are installed on both sides below the moving frame, and the cylinders are installed on both sides of the bottom of the mounting frame.
[0011] Preferably, sealing covers are installed on both sides of the bottom of the moving frame. The sealing covers are located between the two groups of cylinders, and the inner wall of the sealing cover is slidably connected to the outer wall above the reagent storage tank.
[0012] Preferably, a feed pipe is installed on one side of the top of the sealing cover. The feed pipe is located above the moving frame, and motors B are installed on both sides of the top of the moving frame.
[0013] Preferably, the output shaft on the motor B is fixedly connected to the top end of the rotating shaft B through a coupling, and an auger is arranged below the outer wall of the rotating shaft B.
[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0015] By correspondingly installing four reagent storage tanks in the mounting frame on the top of the reagent reaction kettle and connecting them through connecting pipes, the chemical powdered solid reagents in the reagent storage tanks can enter the reagent reaction kettle through the connecting pipes. By installing electric valves on the connecting pipes and setting the opening and closing times of the electric valves according to the background, the discharge amount of the chemical powdered solid reagents in the reagent storage tanks can be achieved for proportioning. During this period, with the auger on the rotating shaft B, the chemical powdered solid reagents can be discharged orderly, and the situation of slow discharge caused by caking or discharge congestion of the chemical powdered solid reagents during storage can be avoided as much as possible. When the chemical powdered solid reagents to be discharged enter the reagent reaction kettle, they are mixed and stirred with the stirring paddles on the rotating shaft A, so as to complete the preparation of the chemical solid reagents. Utilizing the chemical solid reagent preparation device with the functions of proportioning and anti-blocking of materials, the chemical solid reagent preparation device has multiple functions, and also effectively improves the preparation efficiency and effect of the chemical solid reagent preparation device. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is the front sectional view provided by the present utility model;
[0017] Figure 2 is the front view provided by the present utility model;
[0018] Figure 3 is provided by the present utility model Figure 1 the enlarged view of the structure at A in;
[0019] Figure 4 is the partial structure three-dimensional schematic diagram provided by the present utility model.
[0020] In the figure: 1. Reagent reaction kettle; 101. Liquid inlet pipe; 102. Discharge pipe; 103. Control valve; 2. Motor A; 201. Rotating shaft A; 202. Stirring paddle; 3. Mounting rack; 301. Reagent storage tank; 302. Connecting pipe; 303. Electric valve; 4. Moving rack; 401. Cylinder; 402. Sealing cover; 403. Feed pipe; 404. Motor B; 405. Rotating shaft B; 406. Auger. Detailed implementation mode
[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.
[0022] The present invention provides the following technical solutions: A multifunctional chemical solid reagent preparation device. Please refer to Figures 1-4 , including a reagent reaction kettle 1. A liquid inlet pipe 101 is installed above one outer wall of the reagent reaction kettle 1. A discharge pipe 102 is installed at the bottom of the reagent reaction kettle 1. A control valve 103 is installed on the outer wall of the discharge pipe 102. A motor A 2 is installed at the center position of the top of the reagent reaction kettle 1. The output shaft on the motor A 2 is fixedly connected to the top end of a rotating shaft A 201 through a coupling. Stirring paddles 202 are arranged on both sides of the outer wall of the rotating shaft A 201, so that the motor A 2 can drive and control the rotating shaft A 201 to rotate forward or backward, and at the same time drive the stirring paddles 202 on the rotating shaft A 201 to perform stirring and mixing treatment on the inside of the reagent reaction kettle 1. A mounting rack 3 is installed at the top of the reagent reaction kettle 1. Reagent storage tanks 301 are installed on both sides inside the mounting rack 3. A connecting pipe 302 is installed at the bottom end of the reagent storage tank 301. The bottom end of the connecting pipe 302 is fixedly connected to the top of the reagent reaction kettle 1. Four groups of reagent storage tanks 301 are correspondingly installed in the mounting rack 3 on the top of the reagent reaction kettle 1 and are connected and penetrated by the connecting pipe 302, so that the chemical powder solid reagent in the reagent storage tank 301 can enter the reagent reaction kettle 1 through the connecting pipe 302. An electric valve 303 is installed on one side of the outer wall of the connecting pipe 302. An electric valve 303 is installed on the connecting pipe 302. According to the opening and closing time set for the electric valve 303 in the background, the discharge amount of the chemical powder solid reagent in the reagent storage tank 301 is realized for ratio processing. The specific realization is to verify the discharge amount through later experiments according to the discharge amount requirement. For example, how much is the discharge amount achieved by opening for 3S. The actual ratio operation is carried out according to this theory;
[0023] A moving frame 4 is installed above the mounting frame 3. On both sides of the lower part of the moving frame 4, air cylinders 401 are installed. The air cylinders 401 are installed on both sides of the bottom of the mounting frame 3. At the output ends of the air cylinders 401 that fix the moving frame 4 to the mounting frame 3, the air cylinders 401 can drive and control the moving frame 4 to perform lifting operations. On both sides of the bottom of the moving frame 4, sealing covers 402 are installed. The sealing covers 402 are located between the two groups of air cylinders 401. The inner wall of the sealing cover 402 is slidably connected to the upper part of the outer wall of the reagent storage tank 301. On one side of the top of the sealing cover 402, a feed pipe 403 is installed. The feed pipe 403 is located above the moving frame 4. By installing the sealing cover 402 at the corresponding position between the bottom of the moving frame 4 and the reagent storage tank 301, when the air cylinder 401 drives the moving frame 4 to descend until the sealing cover 402 can seal the reagent storage tank 301. Conversely, when the air cylinder 401 drives the moving frame 4 to rise, the opening process can be achieved. Through the opened reagent storage tank 301, it is convenient to clean the inside of the reagent storage tank 301 later, ensuring that the inside of the reagent storage tank 301 is clean and tidy. On both sides of the top of the moving frame 4, motors B404 are installed. The output shafts on the motors B404 are fixedly connected to the top ends of rotating shafts B405 through couplings. Below the outer wall of the rotating shaft B405, an auger 406 is arranged. The motors B404 are correspondingly installed on the top of the moving frame 4, and the rotating shafts B405 on the motors B404 penetrate through the moving frame 4 and the sealing cover 402. When the sealing cover 402 is in the closed state, the rotating shaft B405 is located inside the reagent storage tank 301. By arranging the auger 406 below the outer wall of the rotating shaft B405 and as close as possible to the inside of the connecting pipe 302, when the electric valve 303 is controlled to open, the motor B404 drives and controls the auger 406 to rotate, and the chemical powdered solid reagent can be discharged orderly, and the situation of slow discharging caused by caking or discharging congestion of the chemical powdered solid reagent during storage can be avoided as much as possible.
[0024] Working principle: When using the present utility model, the motor A2 is installed on the top of the reagent reactor 1, and the output shaft on the motor A2 is installed with the rotating shaft A201 through a coupling, so that the motor A2 can drive and control the forward or reverse rotation of the rotating shaft A201, and at the same time drive the stirring paddle 202 on the rotating shaft A201 to carry out stirring and mixing treatment in the reagent reactor 1. Four reagent storage tanks 301 are correspondingly installed in the mounting rack 3 on the top of the reagent reactor 1 and are connected and penetrated by a connecting pipe 302, so that the chemical powdered solid reagent in the reagent storage tank 301 can enter the reagent reactor 1 through the connecting pipe 302. An electric valve 303 is installed on the connecting pipe 302, and according to the opening and closing time set for the electric valve 303 by the background, the discharge amount of the chemical powdered solid reagent in the reagent storage tank 301 is realized for proportioning treatment. Specifically, the discharge amount needs to be verified by later experiments, such as how much the discharge amount reaches when it is opened for 3S. According to this theory, actual proportioning operations are carried out. The moving frame 4 is installed and fixed at the output end of the cylinder 401 on the mounting rack 3, so that the cylinder 401 can drive and control the lifting operation of the moving frame 4. A sealing cover 402 is installed at the corresponding position between the bottom of the moving frame 4 and the reagent storage tank 301, so that when the cylinder 401 drives the moving frame 4 to descend, the sealing cover 402 can seal the reagent storage tank 301. On the contrary, when the cylinder 401 drives the moving frame 4 to rise, the opening treatment can be achieved. Through the opened reagent storage tank 301, it is convenient to clean the inside of the reagent storage tank 301 later, ensuring that the inside of the reagent storage tank 301 is clean and tidy. The motor B404 is correspondingly installed on the top of the moving frame 4, and the rotating shaft B405 on the motor B404 penetrates the moving frame 4 and the sealing cover 402. When the sealing cover 402 is in the closed state, the rotating shaft B405 is located inside the reagent storage tank 301. A auger 406 is arranged below the outer wall of the rotating shaft B405 and as close as possible to the inside of the connecting pipe 302. When the electric valve 303 is controlled to open, the motor B404 drives and controls the auger 406 to rotate, so as to orderly discharge the chemical powdered solid reagent, and try to avoid the situation of slow discharge caused by caking or discharge congestion of the stored chemical powdered solid reagent. The chemical powdered solid reagent to be discharged enters the reagent reactor 1 and is mixed and stirred with the stirring paddle 202 on the rotating shaft A201. When a liquid needs to be added during this period, it can be injected through the liquid inlet pipe 101, so as to complete the preparation of the chemical solid reagent. By utilizing the proportioning and anti-blocking functions of the chemical solid reagent preparation device, the multifunctional effect of the chemical solid reagent preparation device is realized, and the preparation efficiency and effect of the chemical solid reagent preparation device are effectively improved.
[0025] Although the present utility model has been described above with reference to embodiments, various improvements can be made thereto and components thereof can be replaced with equivalents without departing from the scope of the present utility model. In particular, as long as there is no structural conflict, the various features in the embodiments disclosed by the present utility model can be combined with each other in any way, and the exhaustive description of the situations of these combinations is not given in this specification only for the consideration of saving space and resources. Therefore, the present utility model is not limited to the specific embodiments disclosed in the text, but includes all technical solutions falling within the scope of the claims.
Claims
1. A multifunctional chemical solid reagent preparation device, comprising a reagent reaction kettle (1), wherein a motor A (2) is installed at the top center of the reagent reaction kettle (1), characterized in that: A mounting frame (3) is installed on the top of the reagent reaction kettle (1), and reagent storage tanks (301) are installed on both sides of the interior of the mounting frame (3); A movable frame (4) is installed above the installation frame (3).
2. A multifunctional chemical solid reagent preparation device according to claim 1, characterized in that: A liquid inlet pipe (101) is installed above the outer wall of one side of the reagent reaction kettle (1), a discharge pipe (102) is installed at the bottom of the reagent reaction kettle (1), and a control valve (103) is installed on the outer wall of the discharge pipe (102).
3. A multifunctional chemical solid reagent preparation device according to claim 1, characterized in that: The output shaft on the motor A (2) is fixedly connected to the top end of the rotating shaft A (201) via a coupling, and stirring paddles (202) are provided on both sides of the outer wall of the rotating shaft A (201).
4. A multifunctional chemical solid reagent preparation device according to claim 1, characterized in that: A connecting pipe (302) is installed at the bottom end of the reagent storage tank (301), and the bottom end of the connecting pipe (302) is fixedly connected to the top of the reagent reaction kettle (1). An electric valve (303) is installed on one side of the outer wall of the connecting pipe (302).
5. A multifunctional chemical solid reagent preparation device according to claim 1, characterized in that: Cylinders (401) are installed on both sides of the bottom of the movable frame (4), and the cylinders (401) are installed on both sides of the bottom of the installation frame (3).
6. A multifunctional chemical solid reagent preparation device according to claim 1, characterized in that: Sealing covers (402) are installed on both sides of the bottom of the movable frame (4), and the sealing cover (402) is located between the two groups of cylinders (401). The inner wall of the sealing cover (402) is slidably connected to the upper part of the outer wall of the reagent storage tank (301).
7. A multifunctional chemical solid reagent preparation device according to claim 6, characterized in that: A feed pipe (403) is installed on one side of the top of the sealing cover (402), and the feed pipe (403) is located above the moving frame (4). Motors B (404) are installed on both sides of the top of the moving frame (4).
8. A multifunctional chemical solid reagent preparation device according to claim 7, characterized in that: The output shaft on the motor B (404) is fixedly connected to the top end of the rotating shaft B (405) through a coupling, and an auger (406) is arranged below the outer wall of the rotating shaft B (405).