Pollutant outlet communicating pipeline device for preparing electrolytic copper foil solution

By designing an electrolytic copper foil solution to prepare the waste liquid outlet Unicom pipeline device, the seamless switching of the waste liquid pump is achieved by using the China Unicom mechanism, synchronous drive assembly and adjustment assembly, the production discontinuity caused by the waste liquid pump during maintenance is solved, and production continuity and cost reduction are achieved.

CN223035964UActive Publication Date: 2025-06-27LINGBAOBAOXIN ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202421616625.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-06-27
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

During maintenance, the existing electrolytic copper foil solution preparation waste liquid pump will cause the solution to desalinate and the liquid level in the liquid clean tank will decrease, resulting in a decrease in the flow of the foil generator, resulting in discontinuity in production and increasing production costs.

Method used

A system of electrolytic copper foil solution preparation waste liquid outlet duct device is designed. Through the coordinated cooperation of the communication mechanism, synchronous driving component and adjustment component, seamless switching of the waste liquid pump is achieved, so that the waste liquid pump of each system can be switched and used for backup through valves to ensure maintenance without stopping.

Benefits of technology

It realizes seamless switching of waste liquid pumps, saves slurry hanging time, ensures production continuity, reduces production costs, improves overall production efficiency, and supports the precise installation of waste liquid pumps of different specifications and sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a dirty liquid outlet communicating pipeline device for preparing electrolytic copper foil solution, which belongs to the technical field of electrolytic copper foil solution and comprises a communicating pipe and openings transversely and uniformly arranged at the rear end of the outer cambered surface of the communicating pipe, mounting pipes are arranged in the openings, and a communicating mechanism is further arranged at the upper end of the outer cambered surface of the communicating pipe. The communicating mechanism comprises rectangular cylinders transversely and evenly arranged at the upper end of the outer arc face of the communicating pipe, a sliding frame is slidably connected between the multiple rectangular cylinders, an adjusting frame is slidably connected to the rear side of the upper end of the sliding frame, and connecting pipes transversely and evenly distributed are arranged at the lower end of the adjusting frame. Through cooperation of the communication mechanism, the synchronous driving assembly and the adjusting assembly, seamless switching of the dirty liquid pumps in the overhaul period is achieved, the dirty liquid pumps of all systems can be switched for standby application through valves, it is guaranteed that the standby dirty liquid pumps are overhauled in the non-stop state, slurry hanging time is saved, production continuity is guaranteed, and the production efficiency is improved. The production cost is reduced, and the overall production efficiency is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of electrolytic copper foil solution, and particularly relates to a connecting pipeline device for the waste liquid outlet of electrolytic copper foil solution preparation. Background Art

[0002] Electrolytic copper foil refers to an ultra-thin copper layer material made by electrolytic deposition, which is widely used in printed circuit boards (PCBs), copper clad laminates (CCLs), lithium-ion batteries and other electronic devices. The waste liquid after using the electrolytic copper foil solution needs to be discharged by a waste liquid pump.

[0003] At the discharge point of the existing waste liquid for electrolytic copper foil solution preparation, the outlets of the waste liquid pumps in each system are independent. Each time the waste liquid pump is overhauled, solution desludging will occur, the liquid level in the clean liquid tank will decrease, resulting in a reduction in the liquid supply flow rate on the copper foil forming machine. To ensure the normal operation of production, several copper foil forming machines need to be stopped to maintain the liquid supply flow rate of other copper foil forming machines in this system, which leads to discontinuous production and increases production costs. Summary of the Utility Model

[0004] In view of this, the utility model provides a connecting pipeline device for the waste liquid outlet of electrolytic copper foil solution preparation, which can realize seamless switching of waste liquid pumps during maintenance through the coordinated cooperation of a connecting mechanism, a synchronous driving component and an adjusting component, so that the waste liquid pumps in each system can be switched and used as spares through valves, ensuring the maintenance and standby of waste liquid pumps without shutting down, saving the slurry hanging time, guaranteeing production continuity, reducing production costs, improving the overall production efficiency, realizing the precise installation of waste liquid pumps, and meeting the installation requirements of waste liquid pumps of different specifications and sizes.

[0005] To solve the above technical problems, the utility model provides a connecting pipeline device for the waste liquid outlet of electrolytic copper foil solution preparation, including a connecting pipe and openings horizontally and uniformly arranged at the rear end of the outer arc surface of the connecting pipe. Installation pipes are arranged in the openings. A connecting mechanism is further arranged at the upper end of the outer arc surface of the connecting pipe. The connecting mechanism includes rectangular cylinders horizontally and uniformly arranged at the upper end of the outer arc surface of the connecting pipe. A sliding frame is slidably connected between the multiple rectangular cylinders. An adjusting frame is slidably connected to the rear side of the upper end of the sliding frame. Connecting pipes are horizontally and uniformly distributed at the lower end of the adjusting frame. Transmission pipes are arranged in the circular holes arranged on the upper side of the rear end of the outer arc surface of the connecting pipes. A conveying pipe is arranged at the upper end between the multiple transmission pipes. A fixed pipe is arranged in the outlet arranged at the right end of the conveying pipe. A check valve is arranged at the left end head of the fixed pipe. A connecting hole is arranged on the rear side of the outer arc surface of the transmission pipe near the check valve, and the connecting hole is communicated with the liquid outlet at the left end of the fixed pipe. Valves I are arranged at the front ends of the connecting pipes. Valves II are arranged on the fixed pipe near each transmission pipe. Synchronous driving components for controlling the opening and closing of the valves I and valves II are arranged on the outer arc surfaces of the transmission pipes. An adjusting component is further arranged between the sliding frame and the adjusting frame.

[0006] The synchronous drive assembly includes fixing plates respectively arranged at the front end of the outer arc surface of the transmission pipe. A double-headed worm is rotatably connected in a rotating hole arranged at the front end of the fixing plate. Worms are arranged on the outer extended ends of the valve stems of Valve 1 and Valve 2. The upper and lower ends of the double-headed worm are respectively meshed and connected with the adjacent worms on the same side; the synchronous drive assembly further includes toggle plates respectively arranged at the upper ends of the double-headed worm.

[0007] The adjustment assembly includes a longitudinal lead screw rotatably connected to the middle of the rear end of the adjustment frame. A threaded hole adapted to the longitudinal lead screw is arranged in the middle of the rear surface of the sliding frame; the adjustment assembly further includes a vertical lead screw rotatably connected to the front side of the middle of the upper surface of the sliding frame. A threaded hole adapted to the vertical lead screw is arranged in the middle of the upper surface of the rectangular cylinder located in the middle of the connecting pipe.

[0008] Locking bolts are respectively threadedly connected in the threaded holes arranged at the upper end of the left surface of the rectangular cylinder and the front end of the upper surface of the adjustment frame. The inner ends of the locking bolts are both in contact with the sliding frame.

[0009] A protective shell is arranged between the connecting pipe and the transmission pipe. Through holes adapted to the double-headed worm are arranged on the upper surfaces of the protective shells. Through openings adapted to the fixing plates are arranged on the left side of the middle rear end of the protective shells. The whole formed by the double-headed worm and the worms near its upper and lower ends are respectively located in the adjacent protective shells on the same side.

[0010] The beneficial effects of the above technical solutions of the present utility model are as follows:

[0011] 1. First, relevant staff install the sewage pumps between the installation pipes and the adjacent connecting pipes on the same side respectively, then connect the connecting pipes to the sewage outlets of the electrolytic copper foil solution preparation respectively. Then the sewage pumps operate to pump out the sewage generated during the electrolytic copper foil process through the connecting pipe, and centrally discharge it into the connecting pipe through the installation pipe. When it is necessary to repair and maintain one of the sewage pumps, relevant staff only need to toggle the corresponding toggle plate. The rotation of the toggle plate drives the double-headed worm to rotate synchronously. The rotation of the double-headed worm drives Valve 1 to close and Valve 2 to open through the worm, so as to control the flow state of the sewage between the pipelines, and can quickly and flexibly distribute the sewage. This design not only ensures that the sewage can be quickly redirected to the transmission pipe and guided into the adjacent connecting pipe through it, but also allows the sewage pumps that are not in the maintenance state to continue operating, realizing seamless switching of the sewage pumps during the maintenance period, enabling the sewage pumps of each system to be switched and used as spares through valves, ensuring the repair and standby of the sewage pumps without stopping the machine, saving the hanging pulp time, guaranteeing the production continuity, reducing the production cost, and improving the overall production efficiency.

[0012] 2. When installing the sewage pump, first fix the sewage pump outlet to the installation pipe, and then turn the longitudinal screw and the vertical screw in turn according to the inlet position of the sewage pump to adjust the position of the sliding frame and its auxiliary mechanisms, and then control the layout and alignment of the connecting pipe and the transmission pipe to achieve accurate installation of the sewage pump, meeting the installation needs of sewage pumps of different specifications and sizes. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic diagram of the main structure of a pipeline device for connecting a waste liquid outlet for preparing electrolytic copper foil solution according to the utility model;

[0014] Figure 2 This is a schematic diagram of the structure of the synchronous drive assembly of the utility model;

[0015] Figure 3 This is a schematic diagram of the structure of the adjustment component of the utility model;

[0016] Figure 4 It is a schematic diagram of the enlarged structure of point A of the utility model.

[0017] Explanation of the reference numerals: 100, connecting pipe; 200, mounting pipe; 300, rectangular cylinder; 301, sliding frame; 302, adjusting frame; 303, connecting pipe; 304, transmission pipe; 305, delivery pipe; 306, fixed pipe; 307, check valve; 308, valve one; 309, valve two; 400, fixing plate; 401, double-headed worm; 402, worm wheel; 403, toggle plate; 500, longitudinal screw; 501, vertical screw; 600, locking bolt; 700, protective shell. DETAILED DESCRIPTION

[0018] In order to make the purpose, technical scheme and advantages of the embodiment of the utility model clearer, the following will be combined with the appended drawings of the embodiment of the utility model. Figures 1-4 , the technical scheme of the embodiment of the utility model is clearly and completely described. Obviously, the described embodiment is a part of the embodiment of the utility model, not all of the embodiments. Based on the described embodiment of the utility model, all other embodiments obtained by ordinary technicians in this field belong to the scope of protection of the utility model.

[0019] like Figures 1-4 As shown:

[0020] The present embodiment provides a pipeline device for connecting the outlet of the waste liquid prepared by electrolytic copper foil solution, including a connecting pipe 100 and an opening uniformly arranged transversely at the rear end of the outer arc surface of the connecting pipe 100, wherein the opening is provided with a mounting pipe 200, and the upper end of the outer arc surface of the connecting pipe 100 is also provided with a connecting mechanism, wherein the connecting mechanism includes a rectangular tube 300 uniformly arranged transversely at the upper end of the outer arc surface of the connecting pipe 100, a plurality of rectangular tubes 300 are slidably connected with a sliding frame 301, an adjusting frame 302 is slidably connected to the rear side of the upper end of the sliding frame 301, and a connecting pipe 303 uniformly distributed transversely is provided at the lower end of the adjusting frame 302, and a transmission pipe 304 is provided in the circular hole arranged on the upper side of the rear end of the outer arc surface of the connecting pipe 303, and a transmission pipe 305 is arranged at the upper end between the plurality of transmission pipes 304, and a fixed pipe 306 is arranged in the outlet arranged at the right end of the transmission pipe 305, and a fixed pipe 306 is arranged at the left end of the fixed pipe 306. A check valve 307, a connecting hole is provided on the rear side of the outer arc surface of the transmission pipe 304 near the check valve 307, the connecting hole is connected to the liquid outlet at the left end of the fixed pipe 306, a valve 1 308 is provided at the front end of the connecting pipe 303, a valve 2 309 is provided on the fixed pipe 306 near each transmission pipe 304, and a synchronous drive component for controlling the opening and closing of valve 1 308 and valve 2 309 is provided on the outer arc surface of the transmission pipe 304, and an adjustment component is also provided between the sliding frame 301 and the adjustment frame 302; the synchronous drive component includes a fixed plate 400 respectively arranged at the front end of the outer arc surface of the transmission pipe 304, a double-headed worm 401 is rotatably connected in the rotating hole arranged at the front end of the fixed plate 400, a worm wheel 402 is provided at the outer extending end of the valve stem of valve 1 308 and valve 2 309, and the upper and lower ends of the double-headed worm 401 are respectively meshed and connected with the worm wheel 402 adjacent to the same side.

[0021] like Figures 1-4 As shown, the synchronous drive assembly also includes a toggle plate 403 respectively arranged on the upper end of the double-headed worm 401; the adjustment assembly includes a longitudinal screw rod 500 rotatably connected to the middle part of the rear end of the adjustment frame 302, and a thread hole compatible with the longitudinal screw rod 500 is provided in the middle part of the rear surface of the sliding frame 301; the adjustment assembly also includes a vertical screw rod 501 rotatably connected to the front side of the middle part of the upper end surface of the sliding frame 301, and a threaded hole compatible with the vertical screw rod 501 is provided in the middle part of the upper surface of the rectangular tube 300 located in the middle of the connecting tube 100.

[0022] like Figures 1-4 As shown, the screw holes provided at the upper end of the left surface of the rectangular tube 300 and the front end of the upper surface of the adjustment frame 302 are both threadedly connected with locking bolts 600 , and the inner ends of the locking bolts 600 are in contact with the sliding frame 301 .

[0023] The utility model provides a working principle of a pipeline connecting device for preparing a waste liquid from an electrolytic copper foil solution as follows: first, the relevant staff installs the waste liquid pump between the installation pipe 200 and the connecting pipe 303 adjacent to the same side, and then connects the connecting pipe 303 to the waste liquid outlet of the electrolytic copper foil solution, respectively. Then, the waste liquid pump operates to extract the waste liquid generated in the process of electrolytic copper foil through the connecting pipe 100, and discharges it into the connecting pipe 100 through the installation pipe 200. When one of the waste liquid pumps needs to be repaired and maintained, the relevant staff only needs to turn the corresponding toggle plate 403. The rotation of the toggle plate 403 drives the double-headed worm 401 to rotate synchronously. The rotation of the double-headed worm 401 drives the valve 1 308 to close and the valve 2 309 to open through the worm gear 402, thereby controlling the flow state of the waste liquid between the pipelines and being able to quickly and flexibly distribute the waste liquid. This design not only ensures that the waste liquid can be quickly redirected to the transmission pipe 305, and is guided into the adjacent The connecting pipe 303 also allows the sewage pump that is not in maintenance to continue operating, realizing seamless switching of the sewage pump during maintenance, so that the sewage pump of each system can be switched to standby through the valve, ensuring that the sewage pump can be maintained and standby without stopping the machine, saving slurry hanging time, ensuring production continuity, reducing production costs, and improving overall production efficiency. The design of the check valve 307 prevents backflow during sewage treatment. The fixed pipe 306 can also guide the sewage into the adjacent connecting pipe 303. When installing the sewage pump, first fix the sewage pump outlet to the installation pipe 200, and then rotate the longitudinal screw rod 500 and the vertical screw rod 501 in turn according to the inlet position of the sewage pump, so as to adjust the position of the sliding frame 301 and its auxiliary mechanisms, thereby controlling the layout and alignment of the connecting pipe 303 and the transmission pipe 304, realizing accurate installation of the sewage pump, and meeting the installation requirements of sewage pumps of different specifications and sizes. The locking bolt 600 ensures the stability and safety of the structure.

[0024] like Figures 1-3 As shown, a protective shell 700 is provided between the connecting pipe 303 and the transmission pipe 304, and a through hole compatible with the double-headed worm 401 is provided on the upper surface of the protective shell 700, and a through opening compatible with the fixed plate 400 is provided on the left side of the middle rear end of the protective shell 700. The double-headed worm 401 and the worm wheel 402 near the upper and lower ends thereof are respectively located in the adjacent protective shells 700 on the same side, and the protective shell 700 provides additional protection for the internal mechanical structure to prevent interference from external factors.

[0025] In addition, it should be noted that in the description of the present utility model, unless otherwise clearly specified and defined, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it 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 directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those skilled in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0026] The above is the preferred embodiment of the present utility model. It should be pointed out that for those of ordinary skill in the art, without departing from the principle described in the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A pipeline device for connecting a waste liquid outlet for preparing electrolytic copper foil solution, characterized in that: The invention comprises a connecting tube (100) and an opening uniformly arranged transversely at the rear end of the outer arc surface of the connecting tube (100), wherein the opening is provided with a mounting tube (200), and the upper end of the outer arc surface of the connecting tube (100) is also provided with a connecting mechanism, wherein the connecting mechanism comprises a rectangular tube (300) uniformly arranged transversely at the upper end of the outer arc surface of the connecting tube (100), a sliding frame (301) is slidably connected between a plurality of the rectangular tubes (300), an adjusting frame (302) is slidably connected to the rear side of the upper end of the sliding frame (301), a connecting tube (303) uniformly distributed transversely is provided at the lower end of the adjusting frame (302), a transmission tube (304) is provided in a circular hole arranged on the upper side of the rear end of the outer arc surface of the connecting tube (303), and a transmission tube (304) is provided at the upper end between the plurality of the transmission tubes (304). A pipe (305) is provided, a fixed pipe (306) is provided in an outlet arranged at the right end of the delivery pipe (305), a check valve (307) is provided at the left end of the fixed pipe (306), a connecting hole is provided at the rear side of the outer arc surface of the transmission pipe (304) near the check valve (307), and the connecting hole is connected with the liquid outlet at the left end of the fixed pipe (306), a valve 1 (308) is provided at the front end of the connecting pipe (303), a valve 2 (309) is provided on the fixed pipe (306) near each transmission pipe (304), and a synchronous driving component for controlling the opening and closing of the valve 1 (308) and the valve 2 (309) is provided on the outer arc surface of the transmission pipe (304), and an adjusting component is also provided between the sliding frame (301) and the adjusting frame (302).

2. A pipeline device for connecting a waste liquid outlet for preparing electrolytic copper foil solution as claimed in claim 1, characterized in that: The synchronous drive assembly comprises a fixing plate (400) respectively arranged at the outer end of the outer arc surface of the transmission pipe (304), a double-headed worm (401) is rotatably connected in a rotating hole arranged at the front end of the fixing plate (400), and a worm wheel (402) is provided at the outer extending end of the valve stem of the valve one (308) and the valve two (309), and the upper and lower ends of the double-headed worm (401) are respectively meshed and connected with the adjacent worm wheel (402) on the same side.

3. A pipeline device for connecting a waste liquid outlet for preparing electrolytic copper foil solution as claimed in claim 2, characterized in that: The synchronous drive assembly also includes toggle plates (403) respectively arranged on the upper ends of the double-headed worm gears (401).

4. The device for connecting a waste liquid outlet to a conduit for preparing electrolytic copper foil solution according to claim 1, characterized in that: The adjustment assembly comprises a longitudinal screw rod (500) rotatably connected to the middle of the rear end of the adjustment frame (302), and a thread hole matching the longitudinal screw rod (500) is provided in the middle of the rear surface of the sliding frame (301).

5. The device for connecting a waste liquid outlet to a conduit for preparing electrolytic copper foil solution according to claim 1, characterized in that: The adjustment assembly also includes a vertical screw rod (501) rotatably connected to the front side of the middle part of the upper end surface of the sliding frame (301), and a threaded hole matching the vertical screw rod (501) is provided in the middle part of the upper surface of the rectangular tube (300) located in the middle of the connecting tube (100).

6. The device for connecting a waste liquid outlet to a conduit for preparing electrolytic copper foil solution according to claim 1, characterized in that: The screw holes provided at the upper end of the left surface of the rectangular tube (300) and the front end of the upper surface of the adjustment frame (302) are both threadedly connected with locking bolts (600), and the inner ends of the locking bolts (600) are in contact with the sliding frame (301).

7. A pipeline device for connecting a waste liquid outlet for preparing electrolytic copper foil solution as claimed in claim 2, characterized in that: A protective shell (700) is provided between the connecting pipe (303) and the transmission pipe (304); a through hole matching the double-headed worm (401) is provided on the upper surface of the protective shell (700); a through opening matching the fixed plate (400) is provided on the left side of the middle rear end of the protective shell (700); the double-headed worm (401) and the worm wheel (402) near the upper and lower ends thereof are respectively located in the protective shells (700) adjacent to the same side.