Auxiliary material circulation supplementing device

By designing an auxiliary material circulation and replenishment device, and utilizing circulation pumps and sensors to achieve automatic replenishment and filtration of the electroplating solution, the problem of electroplating solution loss in electroplating zinc equipment is solved, ensuring continuous zinc plating operations for large quantities of metal.

CN223738184UActive Publication Date: 2025-12-30CHONGQING JIESHENG SURFACE TREATMENT CO LTD
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Patent Information

Application Number
CN202520201198.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2025-12-30
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

Electroplating equipment is prone to loss of plating solution during use, making it inconvenient to galvanize large quantities of metal.

Method used

An auxiliary material circulation and replenishment device was designed, including a circulation component, a filtration component, a sealing component, and a stirring component. The device uses a circulation pump and a sensor to achieve the circulation and filtration of the electroplating solution. The sensor monitors the liquid level and automatically adjusts the pump power to maintain the amount of electroplating solution.

Benefits of technology

This enables the recycling of electroplating solution, solves the problem of electroplating solution loss, and ensures continuous zinc plating operations for large quantities of metal.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electrogalvanizing equipment, in particular to an auxiliary material circulating and supplementing device which comprises an electroplating tank, a circulating assembly, a filtering assembly, a sealing assembly and a stirring assembly, the circulating assembly comprises two circulating pumps, a liquid inlet pipe, a liquid outlet pipe, a liquid supplementing tank and a partition plate, the two circulating pumps are fixedly connected with the electroplating pool and located on the outer side of the electroplating pool, the liquid inlet pipe is fixedly connected with the circulating pumps and penetrates through the electroplating pool, and the liquid outlet pipe is fixedly connected with the circulating pumps and penetrates through the electroplating pool; the liquid supplementing tank is fixedly connected with the circulating pump and located on the outer side of the electroplating pool, the partition plate is fixedly connected with the liquid supplementing tank and located in the liquid supplementing tank, the filtering assembly and the sealing assembly are connected with the electroplating pool, and the stirring assembly is connected with the sealing assembly. And the problem that large-batch metal is inconvenient to galvanize is solved.
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Description

Technical Field

[0001] This utility model relates to the field of electroplating equipment technology, and in particular to an auxiliary material recycling device. Background Technology

[0002] When galvanizing ferrous metal smelting and rolling products, electroplating is a chemical reaction that generates heat. The protective plate is manually rotated to prevent splashing, but when operators touch the knob, they are easily splashed by the electroplating solution in the electroplating tank, causing injury. Therefore, the splash-proof effect is poor during use.

[0003] The existing publication number CN219568109U discloses a splash-proof electroplating zinc equipment, including a base and an electroplating tank. The electroplating tank is fixed to the upper surface of the base, and a second support is fixed to the upper surface of the base. A splash-proof mechanism is arranged below the second support. Two first supports are fixed to the upper surface of the base, and two slides are fixed to the upper surface of the electroplating tank. Through the cooperation between a hydraulic cylinder, a support rod, a first rack, a first gear, a rotating rod, a second gear, a second rack, a baffle, and a slider, the hydraulic cylinder drives the support rod to move. The support rod drives the first racks on both sides to slide. The first racks drive the first gear to rotate. The first gear drives the second gear to rotate through the rotating rod. The second gear drives the second rack to move. The second rack drives the baffle to move. The baffles on both sides move closer to each other until they are in contact. The baffles on both sides shield the top of the electroplating tank to prevent the electroplating solution in the electroplating tank from splashing.

[0004] However, the electroplating solution is easily lost during the use of the above-mentioned electroplating equipment, making it inconvenient to galvanize large quantities of metal. Utility Model Content

[0005] The purpose of this invention is to provide an auxiliary material circulation and replenishment device, which solves the problem that the electroplating solution is easily lost during the use of electroplating equipment, making it inconvenient to galvanize large quantities of metal.

[0006] To achieve the above objectives, this utility model provides an auxiliary material circulation and replenishment device, including an electroplating tank, a circulation assembly, a filtration assembly, a sealing assembly, and a stirring assembly. The circulation assembly includes a circulation pump, an inlet pipe, an outlet pipe, a replenishment tank, and a baffle. There are two circulation pumps, each fixedly connected to the electroplating tank and located on the outside of the tank. The inlet pipe is fixedly connected to the circulation pump and passes through the electroplating tank. The outlet pipe is fixedly connected to the circulation pump and passes through the electroplating tank. The replenishment tank is fixedly connected to the circulation pump and located on the outside of the electroplating tank. The baffle is fixedly connected to the replenishment tank and located inside it. The filtration assembly and the sealing assembly are respectively connected to the electroplating tank, and the stirring assembly is connected to the sealing assembly.

[0007] The circulation assembly further includes a support rod and a sensor. The support rod is fixedly connected to the replenishment tank and passes through the electroplating tank. The sensor is fixedly connected to the support rod and is located inside the electroplating tank.

[0008] The filtration assembly includes a support frame, guide strips, and a filter plate. The support frame is detachably connected to the replenishment tank and is located inside the replenishment tank. There are multiple guide strips, each of which is fixedly connected to the support frame and is located inside the electroplating tank. The filter plate is fixedly connected to the guide strips and is located at the bottom of the guide strips.

[0009] The sealing assembly includes a sealing strip, a cover plate, and fixing bolts. There are multiple sealing strips, which are detachably connected to the replenishment tank and located on the top of the replenishment tank. The cover plate is fixedly connected to the sealing strip and located on top of the sealing strip. There are multiple fixing bolts, which are threadedly connected to the replenishment tank and pass through the cover plate.

[0010] The stirring assembly includes a motor, a rotating shaft, a rotating seat, a stirring frame, and stirring rods. The motor is fixedly connected to the cover plate and located on top of the cover plate. The rotating shaft is connected to the motor and passes through the cover plate. There are two rotating seats, each fixedly connected to the rotating shaft and located outside the shaft. There are two stirring frames, each fixedly connected to the rotating seat and located outside the frame. There are multiple stirring rods, each fixedly connected to the stirring frame and located inside the frame.

[0011] This utility model discloses an auxiliary material circulation and replenishment device. The electroplating tank is used for electroplating zinc onto metal. The circulation pump pumps the electroplating solution from the replenishment tank into the electroplating tank through the inlet pipe. The pump then pumps the used electroplating solution from the electroplating tank back into the replenishment tank through the outlet pipe, facilitating the circulation of the electroplating solution within the tank. The replenishment tank is used to store the electroplating solution. A partition separates the replenishment tank; the upper part is a circulation filtration chamber, and the lower part is a storage chamber, providing support for the filter plate. During use, the sensor... The device monitors the liquid level in the electroplating tank. When the liquid level is low, the power of the circulation pump at the inlet pipe is increased, resulting in more electroplating solution being pumped into the electroplating tank through the inlet pipe. At the same time, the power of the circulation pump at the outlet pipe is decreased, resulting in less electroplating solution being drawn out of the electroplating tank through the outlet pipe. This increases the amount of electroplating solution in the electroplating tank, facilitating the circulation and replenishment of the electroplating tank. This solves the problem that electroplating solution is easily lost during use, making it inconvenient to galvanize large quantities of metal. Attached Figure Description

[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0013] Figure 1 This is a schematic diagram of the overall structure of the auxiliary material recycling and replenishment device according to the first embodiment of this utility model.

[0014] Figure 2 This is a schematic diagram of the structure of the circulation component in the first embodiment of this utility model.

[0015] Figure 3 This is a schematic diagram of the structure of the filter assembly according to the first embodiment of this utility model.

[0016] Figure 4 This is a schematic diagram of the sealing assembly and stirring assembly of the first embodiment of this utility model.

[0017] In the diagram: 101-Electroplating tank, 102-Circulation pump, 103-Inlet pipe, 104-Outlet pipe, 105-Replenishment tank, 106-Baffle, 107-Support rod, 108-Sensor, 109-Support frame, 110-Guide strip, 111-Filter plate, 112-Sealing strip, 113-Cover plate, 114-Fixing bolt, 115-Motor, 116-Rotating shaft, 117-Rotating seat, 118-Stirring frame, 119-Stirring rod. Detailed Implementation

[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0019] The first embodiment of this application is as follows:

[0020] Please see Figures 1 to 4 ,in, Figure 1 This is a schematic diagram of the overall structure of the auxiliary material recycling and replenishment device according to the first embodiment of this utility model. Figure 2 This is a schematic diagram of the structure of the circulation component according to the first embodiment of this utility model. Figure 3 This is a schematic diagram of the structure of the filter assembly according to the first embodiment of this utility model. Figure 4 This is a schematic diagram of the sealing assembly and stirring assembly of the first embodiment of this utility model. This utility model provides an auxiliary material circulation and replenishment device, including an electroplating tank 101, a circulation assembly, a filtration assembly, a sealing assembly, and a stirring assembly. The circulation assembly includes a circulation pump 102, an inlet pipe 103, an outlet pipe 104, a replenishment tank 105, a partition 106, a support rod 107, and a sensor 108. The filtration assembly includes a support frame 109, a guide strip 110, and a filter plate 111. The sealing assembly includes a sealing strip 112, a cover plate 113, and fixing bolts 114. The stirring assembly includes a motor 115, a rotating shaft 116, a rotating seat 117, a stirring frame 118, and a stirring rod 119. The aforementioned solution solves the problem that electroplating solution is easily lost during the use of electroplating zinc equipment, making it inconvenient to galvanize large quantities of metal. It is understood that the aforementioned solution can be used in scenarios where electroplating solution needs to be replenished during metal electroplating, and can also be used to solve the problem of filtering electroplating solution.

[0021] In this specific embodiment, there are two circulation pumps 102, each fixedly connected to the electroplating tank 101 and located outside the electroplating tank 101. The inlet pipe 103 is fixedly connected to the circulation pump 102 and passes through the electroplating tank 101. The outlet pipe 104 is fixedly connected to the circulation pump 102 and passes through the electroplating tank 101. The replenishment tank 105 is fixedly connected to the circulation pump 102 and located within the electroplating tank 101. On the outside of 01, the partition 106 is fixedly connected to the replenishment tank 105 and located inside the replenishment tank 105. The filter assembly and the sealing assembly are respectively connected to the electroplating tank 101. The stirring assembly is connected to the sealing assembly. The electroplating tank 101 is used for electroplating zinc onto metal. The circulation pump 102 is used to pump the electroplating solution in the replenishment tank 105 into the electroplating tank 101 through the inlet pipe 103, and then the circulation pump 102 circulates the electroplating solution in the electroplating tank 101. The used electroplating solution in the electroplating tank 101 is drawn back into the replenishment tank 105 through the outlet pipe 104, facilitating the circulation of the electroplating solution in the electroplating tank 101. The replenishment tank 105 is used to store the electroplating solution. The partition 106 is used to separate the replenishment tank 105, with the upper part being a circulation filtration chamber and the lower part being a storage chamber, and also providing support for the filter plate 111. During use, the sensor 108 monitors the liquid level in the electroplating tank 101. When the liquid level is low... At the same time, by increasing the power of the circulation pump 102 at the inlet pipe 103, the amount of electroplating solution pumped into the electroplating tank 101 by the circulation pump 102 through the inlet pipe 103 increases. At the same time, by decreasing the power of the circulation pump 102 at the outlet pipe 104, the amount of electroplating solution drawn out of the electroplating tank 101 by the circulation pump 102 through the outlet pipe 104 decreases. This increases the amount of electroplating solution in the electroplating tank 101, making it easier to circulate and add solution to the electroplating tank 101.

[0022] The support rod 107 is fixedly connected to the replenishment tank 105 and passes through the electroplating tank 101. The sensor 108 is fixedly connected to the support rod 107 and is located inside the electroplating tank 101. The support rod 107 provides support for the sensor 108, which is a liquid level sensor used to monitor the liquid level in the electroplating tank 101, so as to facilitate the separate control of the two circulation pumps 102.

[0023] Secondly, the support frame 109 is detachably connected to the replenishment tank 105 and is located inside the replenishment tank 105. Multiple guide strips 110 are provided, each fixedly connected to the support frame 109 and located inside the electroplating tank 101. The filter plate 111 is fixedly connected to the guide strips 110 and located at the bottom of the guide strips 110. The support frame 109 provides support for the guide strips 110. The guide strips 110 provide support and limit the position of the filter plate 111. The filter plate 111 filters the electroplating solution entering the electroplating tank 101. During prolonged use, the cover plate 113 can be removed, and the filter plate 111 can be taken out of the replenishment tank 105 via the support frame 109 and along the guide strips 110, facilitating replacement of the filter plate 111 or treatment of impurities on its surface.

[0024] Furthermore, there are multiple sealing strips 112, each detachably connected to the replenishment tank 105 and located on top of the replenishment tank 105. The cover plate 113 is fixedly connected to the sealing strips 112 and located on top of the sealing strips 112. There are multiple fixing bolts 114, each threadedly connected to the replenishment tank 105 and passing through the cover plate 113. The sealing strips 112 provide guidance and sealing for the cover plate 113, which is used to seal the replenishment tank 105. The fixing bolts 114 facilitate fixing the cover plate 113 to the top of the replenishment tank 105.

[0025] Finally, the motor 115 is fixedly connected to the cover plate 113 and located on top of the cover plate 113. The rotating shaft 116 is connected to the motor 115 and passes through the cover plate 113. There are two rotating seats 117, each fixedly connected to the rotating shaft 116 and located on the outside of the shaft 116. There are two stirring frames 118, each fixedly connected to the rotating seat 117 and located on the outside of the stirring frame 118. There are multiple stirring rods 119, each fixedly connected to the stirring frame 118 and located inside the stirring frame 118. The motor 115 provides power to the stirring assembly, the rotating shaft 116 provides transmission for the stirring assembly, the rotating seat 117 provides support for the stirring frame 118, and the stirring frame 118 provides support for the stirring rod 119. The stirring rod 119 is used to stir the electroplating solution in the replenishment tank 105. In use, the rotation of the motor 115 drives the rotating shaft 116 to rotate, which in turn drives the rotating seat 117 and the stirring frame 118 to rotate. The rotation of the stirring frame 118 and the stirring rod 119 facilitates the stirring of the electroplating solution above the filter plate 111 in the replenishment tank 105, thereby accelerating the filtration efficiency of the filter plate 111 for the electroplating solution.

[0026] Using the auxiliary material circulation and replenishment device of this embodiment, the electroplating tank 101 is used for electroplating zinc onto metal. The circulation pump 102 is used to pump the electroplating solution in the replenishment tank 105 into the electroplating tank 101 through the inlet pipe 103. Then, the circulation pump 102 pumps the used electroplating solution in the electroplating tank 101 back into the replenishment tank 105 through the outlet pipe 104, facilitating the circulation of the electroplating solution in the electroplating tank 101. The replenishment tank 105 is used to store the electroplating solution. The partition 106 is used to separate the replenishment tank 105, with the upper part being a circulation filtration chamber and the lower part being a storage chamber, and also providing support for the filter plate 111. In use, the circulation... Sensor 108 monitors the liquid level in the electroplating tank 101. When the liquid level is low, the power of the circulation pump 102 at the inlet pipe 103 is increased, so that more electroplating solution is pumped into the electroplating tank 101 through the inlet pipe 103. At the same time, the power of the circulation pump 102 at the outlet pipe 104 is decreased, so that less electroplating solution is drawn out of the electroplating tank 101 through the outlet pipe 104. This increases the amount of electroplating solution in the electroplating tank 101, making it easier to circulate and add solution to the electroplating tank 101. This solves the problem that the electroplating solution is easily lost during use, making it inconvenient to galvanize large quantities of metal.

[0027] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. An auxiliary material circulation replenishing device, comprising an electroplating tank, characterized in that, further comprising a circulation assembly, a filtering assembly, a sealing assembly and a stirring assembly; the circulation assembly comprises circulation pumps, an inlet pipe, an outlet pipe, a liquid replenishing tank and a partition plate, the number of the circulation pumps is two, the two circulation pumps are fixedly connected with the electroplating tank and respectively located outside the electroplating tank, the inlet pipe is fixedly connected with the circulation pump and penetrates through the electroplating tank, the outlet pipe is fixedly connected with the circulation pump and penetrates through the electroplating tank, the liquid replenishing tank is fixedly connected with the circulation pump and located outside the electroplating tank, the partition plate is fixedly connected with the liquid replenishing tank and located inside the liquid replenishing tank, the filtering assembly and the sealing assembly are respectively connected with the electroplating tank, and the stirring assembly is connected with the sealing assembly.

2. The auxiliary material circulation replenishing device according to claim 1, characterized in that, the circulation assembly further comprises a support rod and a sensor, the support rod is fixedly connected with the liquid replenishing tank and penetrates through the electroplating tank, and the sensor is fixedly connected with the support rod and located inside the electroplating tank.

3. The auxiliary material circulation replenishing device according to claim 1, characterized in that, the filtering assembly comprises a support frame, guide bars and filter plates, the support frame is detachably connected with the liquid replenishing tank and located inside the liquid replenishing tank, the number of the guide bars is multiple, the multiple guide bars are respectively fixedly connected with the support frame and respectively located inside the electroplating tank, and the filter plates are fixedly connected with the guide bars and located at the bottom of the guide bars.

4. The auxiliary material circulation replenishing device according to claim 1, characterized in that, the sealing assembly comprises sealing strips, a cover plate and fixing bolts, the number of the sealing strips is multiple, the multiple sealing strips are respectively detachably connected with the liquid replenishing tank and respectively located at the top of the liquid replenishing tank, the cover plate is fixedly connected with the sealing strips and located at the top of the sealing strips, and the number of the fixing bolts is multiple, the multiple fixing bolts are respectively threadedly connected with the liquid replenishing tank and respectively penetrate through the cover plate.

5. The auxiliary material circulation replenishing device according to claim 4, characterized in that, the stirring assembly comprises a motor, a rotating shaft, rotating seats, stirring frames and stirring rods, the motor is fixedly connected with the cover plate and located at the top of the cover plate, the rotating shaft is connected with the motor and penetrates through the cover plate, the number of the rotating seats is two, the two rotating seats are respectively fixedly connected with the rotating shaft and respectively located outside the rotating shaft, the number of the stirring frames is two, the two stirring frames are respectively fixedly connected with the rotating seats and respectively located outside the stirring frames, and the number of the stirring rods is multiple, the multiple stirring rods are respectively fixedly connected with the stirring frames and respectively located inside the stirring frames.

Citation Information

Patent Citations

  • Splash-proof electrogalvanizing equipment

    CN219568109U