Experimental side table with experimental wastewater filtering function
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2026-04-03
AI Technical Summary
The existing experimental platform requires manual support of the water pipes during cleaning, which increases the complexity of the operation. Furthermore, experimental wastewater is prone to remain on the inner wall of the pipes, reducing ease of use and pipe lifespan.
The system employs a solenoid valve and a liquid distribution pipe design, which automatically controls the flow of the cleaning fluid via a control panel. Combined with a filter plate and filter tank, it performs preliminary filtration and neutralization of the waste liquid, ensuring the system's connectivity and uniform distribution, and avoiding local blockages.
It simplifies the cleaning process, reduces labor costs, improves the ease of use of the experimental platform and the efficiency of waste liquid treatment, extends the service life of the flow tube, and ensures the stability and safety of the system.
Smart Images

Figure CN224072023U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of experimental side tables, specifically an experimental side table with an experimental wastewater filtration function. Background Technology
[0002] The experimental bench combines the basic functions of an experimental bench with wastewater treatment capabilities. This equipment uses a conical cylinder and a filter screen to initially filter experimental wastewater, removing solids from the wastewater. Then, it uses a neutralizing agent container to neutralize the wastewater, achieving environmentally friendly discharge standards. Its simple structure and convenient operation can effectively improve the laboratory's wastewater treatment capacity and reduce wastewater pollution to the environment.
[0003] The existing experimental bench consists of the bench body and a wastewater filtration device. However, during its use, the experimental wastewater usually flows through the inlet pipe, the outlet platform, and the vertical pipe, then flows into the reaction tank and is discharged from the outlet pipe. However, when cleaning the experimental bench, the cleaning solution storage tank can only be connected to an external pipe, and the experimental bench is then manually cleaned by supporting the water pipe. This increases the complexity of the cleaning operation, and the experimental wastewater is prone to remain on the inner wall of the pipe, causing corrosion and reducing the service life of the pipe, thus reducing the ease of use of the experimental bench. Utility Model Content
[0004] Therefore, the purpose of this utility model is to provide an experimental platform with a wastewater filtration function to solve the technical problem that the process of cleaning the platform requires manual support of the water pipe, which is time-consuming.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an experimental platform with experimental wastewater filtration function, comprising a platform body, an inlet pipe provided on one side of the platform body, a flow pipe connected above the inlet pipe, a distribution pipe provided on one side of the inlet pipe, a solenoid valve provided on the distribution pipe, a water discharge platform provided above the platform body, a control panel provided on one side of the water discharge platform, and a vertical pipe connected below the water discharge platform.
[0006] By adopting the above technical solution, the inlet pipe is first connected to the cleaning liquid source, and then the solenoid valve is activated using the control panel. At this time, the cleaning liquid is pumped into the inlet pipe by the liquid pump, and then enters the vertical pipe under the guidance of the distribution pipe. The cleaning liquid continues to flow through the filter tank, and finally, the cleaning liquid enters the reaction tank and is discharged by the drain pipe. During this flow process, the interior of the side platform is effectively cleaned.
[0007] Furthermore, the liquid distribution pipe and the vertical pipe are connected, and the liquid inlet pipe and the liquid distribution pipe are also connected.
[0008] By adopting the above technical solution, such connectivity is ensured for both experimental wastewater and cleaning fluid, which not only improves the overall efficiency of the system but also guarantees the uniform distribution of liquid in the system, avoiding problems such as local blockage or liquid accumulation.
[0009] Furthermore, the top of the flow tube has a bent structure, and one end of the top of the flow tube is opposite to the position of the water outlet platform.
[0010] By adopting the above technical solution, it is ensured that the waste liquid can flow smoothly from the discharge platform into the flow pipe.
[0011] Furthermore, a filter plate is installed on the inner side of the water discharge platform by means of locking blocks, and there are four sets of locking blocks. A pull rod is installed on one side of the top of the filter plate.
[0012] By adopting the above technical solution, it is ensured that the waste liquid can be preliminarily filtered before entering the flow pipe, removing larger particles and impurities, thereby improving the efficiency and quality of waste liquid treatment.
[0013] Furthermore, the interior of the side platform body is provided with a placement plate, and an acid neutralization storage tank and an alkaline neutralization storage tank are placed on top of the placement plate.
[0014] By adopting the above technical solutions, not only is the stable placement of the liquid storage tank ensured, avoiding liquid leakage caused by shaking or tilting, but the overall aesthetics and cleanliness of the system are also improved.
[0015] Furthermore, a support rod is provided below the placement plate, a bracket is provided at the bottom of the support rod, and a reaction chamber is provided above the bracket.
[0016] By adopting the above technical solutions, not only is the stability of the reaction tank in the process of treating waste liquid ensured, but the overall reliability and safety of the system are also improved.
[0017] Furthermore, a filter tank is connected to the lower part of the vertical pipe, and one side of the acid neutralization storage tank and the alkaline neutralization storage tank are connected to the reaction tank through connecting pipes, and valves are installed on the connecting pipes.
[0018] By adopting the above technical solution, the vertical pipe is sealed and connected to the filter tank through a sealing sleeve, which not only ensures that the waste liquid can be fully filtered before entering the reaction tank, but also removes more impurities and pollutants.
[0019] Furthermore, a drain pipe is provided on one side of the reaction chamber, and a movable door is rotatably connected to one side of the side platform body.
[0020] By adopting the above technical solution, not only can the treated waste liquid be discharged from the system in a timely manner, avoiding system blockage or pollution caused by accumulation, but the overall efficiency and flexibility of the system are also improved.
[0021] In summary, the present invention has the following main advantages:
[0022] 1. This utility model, by setting up a solenoid valve and a liquid distribution pipe, allows for easy cleaning of the side platform. When cleaning is required, the inlet pipe is first connected to the cleaning liquid source, and then the solenoid valve is activated via the control panel. At this time, the cleaning liquid flows into the inlet pipe under the action of the liquid pump, enters the vertical pipe through the liquid distribution pipe, and continues to flow through the filter tank and reaction chamber, finally being discharged through the drain pipe. During this process, the cleaning liquid thoroughly and effectively cleans the inside of the side platform. At the same time, the solenoid valve and liquid distribution pipe eliminate the need for manual support of the water pipe during the entire cleaning process, thereby avoiding tedious manual operations, reducing labor costs, improving the ease of use of the experimental side platform, and making the daily maintenance and cleaning work of the laboratory more efficient and easier.
[0023] 2. By setting up a filter plate, when it is necessary to connect the inlet pipe to the external waste liquid pipe, the waste liquid immediately enters the side platform. The waste liquid first passes through the filter plate for preliminary filtration, which effectively removes larger particles and avoids the problem of blockage in the flow pipe caused by these particles, thereby extending the service life of the flow pipe. This not only improves the efficiency of waste liquid treatment, but also ensures the normal operation of subsequent treatment equipment. Attached Figure Description
[0024] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0025] Figure 2 This is a schematic diagram of the back structure of this utility model;
[0026] Figure 3 This is a schematic diagram of the internal structure of the present invention;
[0027] Figure 4 This is a cross-sectional structural diagram of the present invention.
[0028] In the diagram: 1. Side platform main body; 2. Movable door; 3. Vertical pipe; 4. Water discharge platform; 5. Filter plate; 6. Flow pipe; 7. Pull rod; 8. Control panel; 9. Drain pipe; 10. Inlet pipe; 11. Separator pipe; 12. Locking block; 13. Acid neutralization storage tank; 14. Alkaline neutralization storage tank; 15. Connecting pipe; 16. Valve; 17. Reaction chamber; 18. Support; 19. Placement plate; 20. Support rod; 21. Filter tank; 22. Solenoid valve. Detailed Implementation
[0029] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention. Example 1:
[0030] An experimental platform with wastewater filtration function, such as Figures 1-4 As shown, the system includes a side platform body 1, with an inlet pipe 10 on one side of the side platform body 1. A flow pipe 6 is connected above the inlet pipe 10, and a distribution pipe 11 is connected to one side of the inlet pipe 10. A solenoid valve 22 is installed on the distribution pipe 11. A water discharge platform 4 is installed above the side platform body 1, and a control panel 8 is installed on one side of the water discharge platform 4. A vertical pipe 3 is connected below the water discharge platform 4. First, the inlet pipe 10 is connected to the cleaning liquid source. Then, the solenoid valve 22 is activated using the control panel 8. At this time, the cleaning liquid is pumped into the inlet pipe 10 by the liquid pump, and then guided by the distribution pipe 11. The cleaning solution flows down into the vertical pipe 3 and continues through the filter tank 21. Finally, the cleaning solution enters the reaction tank 17 and is discharged through the drain pipe 9. During this flow process, the interior of the side platform body 1 is effectively cleaned. At the same time, the opening and closing of the solenoid valve 22 can be easily controlled through the control panel 8, eliminating the need for manual operation of the water pipe. The distribution pipe 11 ensures that the cleaning solution can flow along the predetermined path, further simplifying the operation process. This not only reduces labor costs but also improves the ease of use of the experimental side platform, making the daily maintenance and cleaning work of the laboratory more efficient and easier.
[0031] See Figure 2 , Figure 4 The liquid distribution pipe 11 and the vertical pipe 3 are connected, and the liquid inlet pipe 10 and the liquid distribution pipe 11 are also connected. This connectivity ensures that whether it is experimental wastewater or cleaning liquid, this connectivity not only improves the overall efficiency of the system, but also ensures the uniform distribution of liquid in the system, avoiding the problems of local blockage or liquid accumulation. At the same time, this connectivity also enhances the flexibility and scalability of the system. When it is necessary to adjust the flow rate or direction of the liquid, the liquid can be quickly switched and adjusted by simply controlling the solenoid valve 22 through the control panel 8.
[0032] See Figure 1 , Figure 2 , Figure 3The top of the flow tube 6 is bent, and one end of the top of the flow tube 6 is opposite to the position of the water discharge platform 4. This ensures that the waste liquid can flow smoothly from the water discharge platform 4 into the flow tube 6, which not only improves the collection efficiency of the waste liquid, but also avoids the accumulation and overflow of the waste liquid on the water discharge platform 4, ensuring the cleanliness and safety of the experimental environment. At the same time, the bent structure of the flow tube 6 can also reduce the impact force of the waste liquid during the flow process to a certain extent, reduce noise and vibration, and improve the stability and durability of the system. Example 2:
[0033] See Figure 2 A filter plate 5 is installed inside the water discharge platform 4 by engaging with a locking block 12. There are four sets of locking blocks 12. A pull rod 7 is installed on the top side of the filter plate 5. This not only ensures that the waste liquid can be preliminarily filtered before entering the flow pipe 6, removing larger particles and impurities, thereby improving the efficiency and quality of waste liquid treatment, but also makes the installation and removal of the filter plate 5 very convenient. Users can replace or clean the filter plate 5 as needed, thus ensuring the continuous and efficient operation of the system. It also provides users with a convenient operation method, making the replacement and cleaning of the filter plate 5 easier and less labor-intensive.
[0034] See Figure 3 , Figure 4 The main body 1 of the side platform is equipped with a placement plate 19. The acid neutralization storage tank 13 and the alkaline neutralization storage tank 14 are placed on the top of the placement plate 19. This not only ensures the stable placement of the storage tanks and avoids liquid leakage caused by shaking or tilting, but also improves the overall aesthetics and cleanliness of the system. At the same time, the placement plate 19 also facilitates the management and operation of the storage tanks by the user. The user can check the liquid level of the storage tanks at any time as needed and replenish or replace the liquid in a timely manner, thereby ensuring the continuous and stable operation of the system.
[0035] See Figure 3 , Figure 4 A support rod 20 is installed below the placement plate 19, and a bracket 18 is installed at the bottom of the support rod 20. A reaction tank 17 is installed above the bracket 18. This not only ensures the stability of the reaction tank 17 in the process of treating waste liquid, but also improves the overall reliability and safety of the system. At the same time, the bracket 18 also makes it convenient for users to maintain and operate the reaction tank 17. Users can replace the reaction tank 17 at any time as needed to carry out waste liquid treatment or cleaning work, making the entire side platform 1 look neater and more orderly.
[0036] See Figure 3 , Figure 4A filter tank 21 is connected to the bottom of the vertical pipe 3. One side of the acid neutralization storage tank 13 and the alkaline neutralization storage tank 14 are connected to the reaction tank 17 through a connecting pipe 15, and a valve 16 is installed on the connecting pipe 15. This not only ensures that the waste liquid can be fully filtered before entering the reaction tank 17, removing more impurities and contaminants, but also allows the user to add neutralizing liquid to the reaction tank 17 at any time for waste liquid treatment as needed. The valve 16 on the connecting pipe 15 provides a convenient operating method, allowing the user to accurately control the amount and time of addition of neutralizing liquid.
[0037] See Figure 2 , Figure 4 A drain pipe 9 is provided on one side of the reaction tank 17, and a movable door 2 is rotatably connected to one side of the side platform body 1. This not only ensures that the treated waste liquid can be discharged from the system in a timely manner, avoiding system blockage or pollution caused by accumulation, but also improves the overall efficiency and flexibility of the system. At the same time, users can easily enter the side platform body 1 to perform maintenance, inspection and replacement of equipment by opening the movable door 2. This not only improves the maintainability and scalability of the system, but also provides users with a more comfortable and convenient operating experience.
[0038] The implementation principle of this embodiment is as follows: When it is necessary to connect the inlet pipe 10 to the external waste liquid pipe, the waste liquid flows from the inlet pipe 10 through the filter plate 5 to the inside of the discharge platform 4, and then flows through the discharge platform 4, the vertical pipe 3 and the filter tank 21 to the reaction tank 17. At this time, the valve 16 is opened to allow the liquid in the acid neutralization storage tank 13 and the alkaline neutralization storage tank 14 to flow to the reaction tank 17 to treat the waste liquid in the reaction tank 17. The treated waste liquid is discharged from the drain pipe 9, thus completing the treatment of the waste liquid. During this process, due to the presence of the filter plate 5, larger particles in the waste liquid are prevented from clogging the flow pipe 6, which improves the service life of the flow pipe 6 and thus improves the applicability of the experimental platform.
[0039] When the main body 1 of the side platform needs to be treated, first connect the inlet pipe 10 to the cleaning fluid, and control the solenoid valve 22 and the liquid pump through the control panel 8. Then, the cleaning fluid in the inlet pipe 10 flows through the distributor pipe 11 to the vertical pipe 3, then through the filter tank 21 and the reaction tank 17, and finally is discharged from the drain pipe 9. During this flow process, the cleaning fluid cleans the inside of the main body 1 of the side platform. After the cleaning is completed, press the control panel 8 to close the solenoid valve 22, thus completing the cleaning of the inside of the side platform. During this process, due to the presence of the solenoid valve 22 and the distributor pipe 11, the manual operation of the water pipe is avoided when cleaning the experimental side platform. This not only simplifies the operation process and reduces labor costs, but also prevents experimental wastewater from remaining on the inner wall of the pipe and causing corrosion to the pipe, increasing the service life of the pipe, thereby improving the ease of use of the experimental side platform.
[0040] Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the present invention and are not intended to limit the invention. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions, and variations to the embodiments as needed without departing from the principles and spirit of the present invention, provided that such modifications, substitutions, and variations are within the scope of the claims of the present invention and are protected by patent law.
Claims
1. A laboratory bench having a laboratory wastewater filtering function, characterized by: Including side table body (1), one side of the side table body (1) is provided with liquid inlet pipe (10), the upper side of the liquid inlet pipe (10) is provided with flow pipe (6), one side of the liquid inlet pipe (10) is provided with liquid distribution pipe (11), the liquid distribution pipe (11) is provided with electromagnetic valve (22), the upper side of the side table body (1) is provided with water discharge table (4), one side of the water discharge table (4) is provided with control panel (8), the lower side of the water discharge table (4) is provided with vertical pipe (3).
2. The laboratory bench with the experimental wastewater filtering function according to claim 1, characterized in that: The liquid distribution pipe (11) and the vertical pipe (3) are in communication, and the liquid inlet pipe (10) and the liquid distribution pipe (11) are in communication.
3. The laboratory bench with the experimental wastewater filtering function according to claim 1, characterized in that: The top of the flow pipe (6) is a bending structure, and the top of the flow pipe (6) is opposite to the position of the water discharge table (4).
4. The laboratory bench with the experimental wastewater filtering function according to claim 1, characterized in that: The inner side of the water discharge table (4) is provided with a filter plate (5) through a clamping block (12), and the clamping block (12) is provided with four groups, and the top of the filter plate (5) is provided with a pull rod (7).
5. The laboratory bench with the experimental wastewater filtering function according to claim 1, characterized in that: The inside of the side table body (1) is provided with a placing plate (19), and the top of the placing plate (19) is provided with an acidic neutralization liquid storage tank (13) and an alkaline neutralization liquid storage tank (14).
6. The laboratory bench with the experimental wastewater filtering function according to claim 5, characterized in that: The lower side of the placing plate (19) is provided with a supporting rod (20), and the bottom of the supporting rod (20) is provided with a support (18), and the upper side of the support (18) is provided with a reaction box (17).
7. The laboratory bench with the experimental wastewater filtering function according to claim 5, characterized in that: The lower side of the vertical pipe (3) is provided with a filter tank (21), one side of the acidic neutralization liquid storage tank (13) and the alkaline neutralization liquid storage tank (14) is communicated with the reaction box (17) through a connecting pipe (15), and the connecting pipe (15) is provided with a valve (16).
8. The laboratory bench with the experimental wastewater filtering function according to claim 6, characterized in that: One side of the reaction box (17) is provided with a liquid discharge pipe (9), and one side of the side table body (1) is rotatably connected with a movable door (2).