A kind of water collecting well filtering equipment for electroplating industrial park sewage treatment
Patent Information
- Application Number
- CN202522230948.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-22
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-10-22
AI Technical Summary
[0004]为了改善滤网堵塞导致无法正常进行过滤作业,而滤网安装至设备内部,维护不便的问题,本申请提供一种用于电镀工业园区污水处理的集水井过滤设备
1.利用设置的安装板,这样在使用过程中,可以通过垂直活动安装板,进而对安装板内部插接的连接框架和金属网分离出废水过滤腔的顶端内部,进而可以快速对金属网冲洗,并且可以快速根据过滤需求,灵活安装不同孔径的金属网,这样提高了装置的实用性和便利性;
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Figure CN224748641U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of wastewater treatment, and in particular to a filtration device for a collection well used in wastewater treatment in an electroplating industrial park. Background Technology
[0002] In the wastewater treatment system of the electroplating industrial park, the water collection well filtration equipment is a key unit in the pretreatment stage. Its main function is to remove large particulate suspended solids (SS), scum, metal debris, anode mud, paint residue and other coarse impurities from the wastewater, so as to avoid clogging, wear or contamination of subsequent water pumps, pipes, valves and precision treatment equipment (such as membrane modules, ion exchange resins and electrolytic cells), and ensure the stable operation of the entire wastewater treatment system.
[0003] In conventional electroplating industrial park wastewater treatment, the collection well filtration equipment has an integrated structure that makes it difficult to quickly maintain the internal filter screen after it becomes clogged. This clogged screen prevents normal filtration operations, and the fact that the filter screen is installed inside the equipment makes maintenance inconvenient. Utility Model Content
[0004] To address the problem of filter clogging preventing normal filtration operations, and the inconvenience of maintaining filters installed inside equipment, this application provides a filtration device for a collection well in wastewater treatment in an electroplating industrial park.
[0005] The technical solution provided in this application for a water collection well filtration device for wastewater treatment in an electroplating industrial park is as follows: A wastewater collection well filtration device for wastewater treatment in an electroplating industrial park includes a wastewater filtration chamber. A self-cleaning filter is installed at one end of the wastewater filtration chamber, and an inlet pipe is installed at the other end. An installation plate is inserted into the top of the wastewater filtration chamber. Connecting frames are installed at both the front and rear ends of the installation plate. Metal meshes are installed inside both connecting frames. The aperture of the front metal mesh is larger than that of the rear metal mesh. Corresponding connecting handles are installed at the top of the connecting frames and the top of the installation plate. A series block is provided inside the connecting handle, and a limit handle is installed at one end of the series block.
[0006] By adopting the above technical solution, the inlet pipe introduces the wastewater from the electroplating industrial park into the wastewater filtration chamber for filtration. The filtered wastewater is then introduced into a self-cleaning filter to complete the final filtration operation. The metal mesh filters out particulate matter in the wastewater. Because the aperture of the front-end metal mesh is larger than that of the rear-end metal mesh, it can perform staged filtration of particulate matter, reducing the occurrence of clogging. At the same time, the mounting plate can slide vertically and separate from the top insertion interface of the wastewater filtration chamber, and the connecting frame can also slide vertically and separate from the mounting plate. This allows for quick removal and rinsing of the metal mesh, as well as flexible installation of the metal mesh.
[0007] Preferably, a cover frame is installed at the other end of the inlet pipe, and a wrapping balloon is installed on the inner side wall of the cover frame, and a silicone sealing gasket is adhered to the inner side wall of the wrapping balloon.
[0008] By adopting the above technical solution, the connection between the inlet pipe and the cover frame and the outlet end of the wastewater collection well of the electroplating industrial park is sealed and the flow impact is reduced.
[0009] Preferably, the outer wall of the wastewater filtration chamber is provided with an installation frame, and the inner wall of the installation frame is equipped with a stabilizing balloon, the outer wall of the stabilizing balloon abutting against the outer wall of the wastewater filtration chamber.
[0010] By adopting the above technical solution, the outer wall of the wastewater filtration chamber is attached to and stabilized with a balloon, which reduces the impact of flow on the wastewater filtration chamber and improves the stability of the wastewater filtration chamber operation.
[0011] Preferably, guide sliders are installed on both outer walls of the mounting plate, and guide grooves are provided on the front inner wall and rear inner wall of the wastewater filtration chamber, with the guide sliders slidably connected to the inside of the top of the guide grooves.
[0012] By adopting the above technical solution, the guide slider and guide groove correspond to each other, so that the mounting plate can be installed flexibly and accurately.
[0013] Preferably, the top of the wastewater filtration chamber is provided with an interface that is compatible with the mounting plate.
[0014] By adopting the above technical solution, the mounting plate can be flexibly installed through the plug interface, and then the mounting plate can be easily removed for cleaning the metal mesh.
[0015] Preferably, a connecting block is installed at the bottom of each connecting frame, and the connecting block is made of magnetic material.
[0016] By adopting the above technical solution, the connecting frame is positioned and installed using connecting blocks, thereby ensuring the stability of the connecting frame.
[0017] Preferably, each of the mounting plates has symmetrically formed contact cavities at its inner bottom, and each contact cavity has a magnetic block embedded in its inner bottom. The top of the magnetic block is magnetically attracted to the bottom of the connecting block.
[0018] By adopting the above technical solution, during the installation of the connecting frame, the connecting block is inserted into the cavity and magnetically positioned at the top of the magnetic block, which facilitates disassembly and assembly.
[0019] Preferably, the top of the wastewater filtration chamber is equipped with an installation cavity, and flexible sheets are symmetrically installed inside the installation cavity. First limiting protrusions are installed at equal intervals on the corresponding outer walls of the flexible sheets. Second limiting protrusions are fixedly connected at equal intervals to the front and rear outer walls of the series block. The outer walls of the first limiting protrusions abut against the outer walls of the second limiting protrusions. The series block is inserted into the installation cavity, and the second limiting protrusions are symmetrically installed at equal intervals on the front and rear outer walls of the series block.
[0020] By adopting the above technical solution, the outer wall of the first limiting protrusion abuts against the outer wall of the second limiting protrusion, thereby limiting and fixing the series block inserted inside the mounting cavity. The series block limits all connecting handles, thereby limiting both the mounting plate and the connecting frame.
[0021] In summary, this application includes at least one of the following beneficial technical effects: 1. By using the mounting plate, during use, the connecting frame and metal mesh inside the mounting plate can be separated from the top of the wastewater filtration chamber through the vertically movable mounting plate. This allows for quick rinsing of the metal mesh and quick and flexible installation of metal meshes with different aperture sizes according to filtration requirements, thus improving the practicality and convenience of the device. 2. By using the encapsulating and stabilizing balloons, the wastewater from the electroplating industrial park can be stably treated during use, preventing instability in the wastewater filtration chamber due to excessive flow. This ensures that the wastewater filtration chamber is always in a stable state to complete the filtration operation, thus improving the practicality and convenience of the device. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the main view structure of this application; Figure 2 This is a schematic diagram of the disassembled parts structure of the wastewater filtration chamber and mounting plate of this application; Figure 3This is a schematic diagram of the combined components of the inlet tube, the cover frame, the enclosing balloon, and the silicone sealing gasket in this application. Figure 4 This is a schematic diagram of the disassembled parts structure of the mounting plate and connecting frame of this application; Figure 5 This is a schematic diagram of the disassembled parts structure of the serial block and mounting cavity in this application.
[0023] Reference numerals: 1. Wastewater filtration chamber; 2. Self-cleaning filter; 3. Inlet pipe; 4. Covering frame; 5. Encasing balloon; 6. Silicone sealing gasket; 7. Stabilizing balloon; 8. Mounting frame; 9. Mounting plate; 10. Guide slider; 11. Guide groove; 12. Insertion interface; 13. Connecting frame; 14. Metal mesh; 15. Connecting block; 16. Interlocking cavity; 17. Magnetic block; 18. Connecting handle; 19. Series block; 20. Mounting cavity; 21. Flexible sheet; 22. First limiting protrusion; 23. Second limiting protrusion; 24. Limiting handle. Detailed Implementation
[0024] The following is in conjunction with the appendix Figures 1-5 This application will be described in further detail.
[0025] This application discloses a water collection well filtration device for wastewater treatment in an electroplating industrial park.
[0026] Reference Figure 1 and Figure 3 A water collection well filtration device for wastewater treatment in an electroplating industrial park includes a wastewater filtration chamber 1, a self-cleaning filter 2 fixedly connected to the rear end of the wastewater filtration chamber 1, an inlet pipe 3 fixedly connected to the front end of the wastewater filtration chamber 1, a cover frame 4 fixedly connected to one end of the inlet pipe 3, a ring-shaped wrapping balloon 5 fixedly connected to the inner side wall of the cover frame 4, a silicone sealing gasket 6 bonded to the outer side wall of the wrapping balloon 5 near the center point of the cover frame 4, and an installation frame 8 provided outside the wastewater filtration chamber 1, with a stabilizing balloon 7 fixedly connected to the inner side wall of the installation frame 8.
[0027] During use, the inlet pipe 3 and the cover frame 4 are fixedly connected to the output end of the wastewater collection well of the electroplating industrial park. Wastewater from the electroplating industrial park is introduced into the wastewater filtration chamber 1 for filtration. The filtered wastewater is then introduced into the self-cleaning filter 2 to complete the final filtration. During the process of introducing wastewater through the inlet pipe 3 and the cover frame 4, the balloon 5 and the silicone sealing gasket 6 are attached to the connection between the inlet pipe 3 and the cover frame 4 and the output end of the wastewater collection well of the electroplating industrial park, thereby sealing the connection and reducing the impact of the flow. At the same time, the balloon 7 is attached to the outer wall of the wastewater filtration chamber 1 to stabilize it. This stabilizes the balloon 7 and reduces the impact of the flow on the wastewater filtration chamber 1, improving the operational stability of the wastewater filtration chamber 1. This improves the practicality and stability of the device.
[0028] Reference Figure 1 , Figure 2 and Figure 4 The wastewater filtration chamber 1 has an insertion interface 12 at its top, and an installation plate 9 is inserted into the insertion interface 12. The front and rear outer walls of the installation plate 9 are fixedly connected with guide sliders 10 of a "convex" shape at equal intervals. The front and rear inner walls of the wastewater filtration chamber 1 have symmetrically formed guide grooves 11 of a "convex" shape, and the guide sliders 10 are vertically slidably connected inside the guide grooves 11. The top of the installation plate 9 has symmetrically formed connecting cavities, through which the top of the installation plate 9 is symmetrically inserted. A connecting frame 13 is provided, and metal mesh 14 is fixedly connected inside the connecting frame 13. The aperture of the front metal mesh 14 is larger than that of the rear metal mesh 14. A connecting block 15 with a magnetic material structure is fixedly connected to the bottom end of the connecting frame 13. The bottom end of the connecting block 15 is inserted into the top end of the connecting cavity 16. The connecting cavity 16 is symmetrically opened inside the bottom end of the mounting plate 9. The bottom end of the connecting block 15 abuts against the bottom end of the magnetic block 17 and magnetically attracts it. The magnetic block 17 is embedded inside the top end of the connecting cavity 16.
[0029] During use, the metal mesh 14 filters particulate matter in the wastewater. Because the aperture of the front metal mesh 14 is larger than that of the rear metal mesh 14, particulate matter in the wastewater can be filtered step by step, thus avoiding mesh clogging and reducing the occurrence of blockages. At the same time, the mounting plate 9 can slide vertically and separate from the top insertion interface 12 of the wastewater filter chamber 1, and the connecting frame 13 can also slide vertically and separate from the mounting plate 9. This allows the metal mesh 14 to be quickly removed, rinsed, and flexibly installed. Different aperture metal meshes 14 can be selected. During the installation of the mounting plate 9, the guide slider 10 is aligned with the guide groove 11 to complete the installation. The connecting frame 13 is installed by inserting it into the connecting cavity and inserting the connecting block 15 into the connecting cavity 16, where it is magnetically positioned at the top of the magnetic block 17. This method facilitates disassembly and assembly, improving the practicality and convenience of the device.
[0030] Reference Figure 1 , Figure 4 and Figure 5 The top of the mounting plate 9 and the connecting frame 13 are both fixedly connected with a "concave" shaped connecting handle 18. A series block 19 is inserted into the inside of the connecting handle 18. A limit handle 24 is fixedly connected to one end of the series block 19. The top of the wastewater filtration chamber 1 is fixedly connected with a "concave" shaped mounting cavity 20. Flexible sheets 21 are symmetrically fixedly connected inside the mounting cavity 20. The corresponding outer walls of the flexible sheets 21 are fixedly connected with first limiting protrusions 22 at equal intervals. The front and rear outer walls of the series block 19 are fixedly connected with second limiting protrusions 23 at equal intervals. The outer walls of the first limiting protrusions 22 and the second limiting protrusions 23 abut against each other. Both the second limiting protrusions 23 and the first limiting protrusions 22 are semi-cylindrical structures.
[0031] During use, the limiting handle 24 is inserted into the interior of the connecting handle 18, so that the connecting handle 18 is limited by the limiting handle 24, and the mounting plate 9 and the connecting frame 13 are both limited. At the same time, the serial block 19 can move inside the mounting cavity 20, and then the outer wall of the first limiting protrusion 22 abuts against the outer wall of the second limiting protrusion 23, so that the serial block 19 can be quickly self-limited.
[0032] The implementation principle of the water collection well filtration device for wastewater treatment in electroplating industrial parks according to the embodiments of this application is as follows: First, the inlet pipe 3 and the cover frame 4 are fixedly connected to the output end of the water collection well for wastewater treatment in electroplating industrial parks. The wastewater in electroplating industrial parks is introduced into the interior of the wastewater filtration chamber 1 for wastewater filtration. Then, the filtered wastewater is introduced into the self-cleaning filter 2 to complete the final filtration operation. Secondly, during the process of introducing wastewater through the inlet pipe 3 and the cover frame 4, the balloon 5 and the silicone sealing gasket 6 are attached to the connection between the inlet pipe 3 and the cover frame 4 and the output end of the wastewater collection well of the electroplating industrial park, thereby sealing the connection and reducing the impact of the flow. At the same time, the balloon 7 is attached to the outer wall of the wastewater filter chamber 1 to stabilize it. This stabilizes the balloon 7 and reduces the impact of the flow on the wastewater filter chamber 1, thus improving the stability of the operation of the wastewater filter chamber 1. Subsequently, the metal mesh 14 filters the particulate matter in the wastewater. Because the aperture of the front metal mesh 14 is larger than that of the rear metal mesh 14, it can perform staged filtration of particulate matter, reducing the occurrence of clogging. At the same time, the mounting plate 9 can slide vertically and separate from the top insertion interface 12 of the wastewater filter chamber 1. The connecting frame 13 can also slide vertically and separate from the mounting plate 9, so that the metal mesh 14 can be quickly removed, rinsed, and flexibly installed. Finally, the limiting handle 24 is inserted into the interior of the connecting handle 18, so that the connecting handle 18 is limited by the limiting handle 24, and the mounting plate 9 and the connecting frame 13 are both limited. At the same time, the series block 19 can move inside the mounting cavity 20, and then the outer side wall of the first limiting protrusion 22 abuts against the outer side wall of the second limiting protrusion 23. In this way, the series block 19 can be quickly self-limited. Thus, the water collection well filtration equipment for sewage treatment in electroplating industrial parks is completed.
[0033] The above are merely optional embodiments of this disclosure and are not intended to limit this disclosure. Various modifications and variations can be made to this disclosure by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this disclosure should be included within the scope of protection of this disclosure.
Claims
1. A water collection well filtration device for wastewater treatment in an electroplating industrial park, characterized in that: The system includes a wastewater filtration chamber (1), a self-cleaning filter (2) installed at one end of the wastewater filtration chamber (1), an inlet pipe (3) installed at the other end of the wastewater filtration chamber (1), an installation plate (9) inserted into the top of the wastewater filtration chamber (1), a connecting frame (13) installed at both the front and rear ends of the installation plate (9), a metal mesh (14) installed inside both connecting frames (13), the aperture of the front metal mesh (14) being larger than the aperture of the rear metal mesh (14), a corresponding connecting handle (18) installed at the top of the connecting frame (13) and the top of the installation plate (9), a series block (19) provided inside the connecting handle (18), and a limit handle (24) installed at one end of the series block (19).
2. The water collection well filtration device for wastewater treatment in an electroplating industrial park according to claim 1, characterized in that: The other end of the inlet pipe (3) is equipped with a cover frame (4), and the inner wall of the cover frame (4) is equipped with a wrapping balloon (5), and the inner wall of the wrapping balloon (5) is bonded with a silicone sealing gasket (6).
3. The water collection well filtration device for wastewater treatment in an electroplating industrial park according to claim 1, characterized in that: The outer wall of the wastewater filtration chamber (1) is provided with an installation frame (8), and the inner wall of the installation frame (8) is provided with a stabilizing balloon (7), the outer wall of the stabilizing balloon (7) abuts against the outer wall of the wastewater filtration chamber (1).
4. The water collection well filtration device for wastewater treatment in an electroplating industrial park according to claim 1, characterized in that: Guide sliders (10) are installed on both outer walls of the mounting plate (9). Guide grooves (11) are provided on the inner walls of the front and rear ends of the wastewater filtration chamber (1). The guide sliders (10) are slidably connected to the inside of the top of the guide grooves (11).
5. A water collection well filtration device for wastewater treatment in an electroplating industrial park according to claim 1, characterized in that: The top of the wastewater filtration chamber (1) is provided with an insertion interface (12) that is compatible with the mounting plate (9).
6. A water collection well filtration device for wastewater treatment in an electroplating industrial park according to claim 1, characterized in that: Each of the connecting frames (13) has a connecting block (15) installed at its bottom end. The connecting block (15) is made of magnetic material.
7. A water collection well filtration device for wastewater treatment in an electroplating industrial park according to claim 1, characterized in that: The mounting plate (9) has symmetrically arranged connecting cavities (16) at its inner bottom end. Each connecting cavity (16) has a magnetic block (17) embedded in its inner bottom end. The top of the magnetic block (17) is magnetically attracted to the bottom end of the connecting block (15).
8. A water collection well filtration device for wastewater treatment in an electroplating industrial park according to claim 1, characterized in that: The wastewater filtration chamber (1) is equipped with an installation chamber (20) at its top end, and flexible sheets (21) are symmetrically installed inside the installation chamber (20). The outer walls of the flexible sheets (21) are equipped with first limiting protrusions (22) at equal intervals. The outer walls of the front end and rear end of the series block (19) are fixedly connected with second limiting protrusions (23) at equal intervals. The outer walls of the first limiting protrusions (22) and the outer walls of the second limiting protrusions (23) abut against each other. The series block (19) is inserted into the installation chamber (20), and the second limiting protrusions (23) are symmetrically installed at equal intervals on the outer walls of the front end and rear end of the series block (19).