Negative plate guiding and correcting device
By installing an arc guide plate on the zinc stripping line to guide the cathode plate to correct the leakage problem caused by cathode plate misalignment, the zinc stripping efficiency is improved and manual consumption is reduced.
Patent Information
- Application Number
- CN202520020570.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2035-01-06
AI Technical Summary
During the wet zinc smelting process, the cathode plate is easily misaligned when transported on the zinc stripping line, resulting in low efficiency of leakage and zinc stripping, and manual correction is time-consuming and labor-intensive.
The guide plate is installed on the zinc stripping line. The guide plate is an arc-shaped structure. The cathode plate is guided according to the running direction of the conveying chain to ensure that it is located in the middle when under the zinc stripping machine, and further corrected by the auxiliary guide plate.
The accurate positioning of the cathode plate is achieved, avoiding leakage, improving zinc stripping efficiency and reducing manual consumption.
Smart Images

Figure CN223254161U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of electrolytic zinc equipment, in particular to a cathode plate guide correction device. Background Art
[0002] During the wet zinc smelting process, when the zinc metal on the cathode aluminum plate accumulates to a certain weight, the cathode plate is grabbed by a crane and placed on the conveyor chain of the zinc stripping line. The cathode plate is then transported to the bottom of the zinc stripping machine by the conveyor chain for mechanical stripping of the precipitated zinc.
[0003] Since the zinc stripping line conveyor chain is a bidirectional operation mode, the placement direction of the cathode plate conductive head is just opposite. When the cathode plate is hoisted to the zinc stripping line, the center line of the plate is not necessarily in the middle of the zinc stripping line. There is misalignment when the cathode plate is transported to the bottom of the zinc stripping machine. When the zinc stripping machine is stripping, some cathode plates are not within the operating range, resulting in missed stripping and insufficient stripping, affecting the zinc stripping effect. Currently, the cathode plates are usually corrected piece by piece during transportation by manual tools. The adjustment process is cumbersome and time-consuming, and there is a waste of labor. Utility Model Content
[0004] In response to the above-mentioned problems existing in the prior art, the present invention provides a cathode plate guiding and correcting device. By adding a guiding device, the guiding device will push the electrode plate toward the center of the zinc stripping line while the conveyor chain moves, ensuring that the electrode plate is in the middle of the zinc stripping machine when it reaches the bottom of the zinc stripping machine.
[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical solution: a cathode plate guiding and correcting device, comprising at least two groups of guide plates, one group of guide plates comprising two guide plates relatively installed on the inner side of the conveyor chain bracket, the two groups of guide plates are respectively installed on both sides of the zinc stripping machine, the guide plate is an arc structure tangent to the cathode plate, and when the cathode plate is transported to the highest point of the guide plate, the center line of the cathode plate is located in the middle of the zinc stripping line.
[0006] Furthermore, auxiliary guide plates are respectively provided directly below the guide plates.
[0007] Beneficial effects of the utility model:
[0008] The utility model provides a cathode plate guiding and correcting device. The guiding device is installed on the zinc stripping line. When the conveyor chain moves, the guiding device guides the cathode plate so that the cathode plate is finally located in the center of the zinc stripping line. The device ensures that when the cathode plate reaches the bottom of the zinc stripping machine, the cathode plate is located in the middle of the zinc stripping machine, and the entire cathode plate is within the stripping operation range, ensuring that the zinc stripping machine can completely strip the cathode plate and effectively avoid missing stripping. The device can improve the zinc stripping efficiency and reduce labor consumption, and has good practicality. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] Figure 1This is a schematic diagram of the structure of the utility model;
[0010] Figure 2 It is a three-dimensional schematic diagram of the utility model;
[0011] In the figure, 1 is cathode plate, 2 is guide plate No. 1, 3 is guide plate No. 2, 4 is guide plate No. 3, 5 is guide plate No. 4, 6 is zinc stripping machine, 7 is conveyor chain bracket, 8 is conveyor chain, and 9 is auxiliary guide plate. DETAILED DESCRIPTION
[0012] In order to make the purpose, technical solutions and beneficial effects of the present invention clearer, the preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings to facilitate understanding by technicians.
[0013] A cathode plate guide and correction device is designed for the zinc stripping line's conveyor chain, which operates bidirectionally, shifting from rightward to leftward for a period of time. Two sets of guide plates, left and right, are installed to provide guidance for each direction of travel. The left guide plates include guide plates No. 1 and No. 2, while the right guide plates include guide plates No. 3 and No. 4. The left guide plates are installed on the left side of the zinc stripper, with guide plate No. 1 mounted inside the left conveyor chain support and guide plate No. 2 mounted inside the right conveyor chain support. The right guide plates are installed on the right side of the zinc stripper, with guide plate No. 3 mounted inside the left conveyor chain support and guide plate No. 4 mounted inside the right conveyor chain support. The guide plates are curved structures tangential to the cathode plates. As the conveyor chain moves, the guide device pushes the cathode plates toward the center of the zinc stripping line, ensuring that when the plates reach the bottom of the zinc stripper, they are centered within the stripper. When the cathode plates reach the highest point on the guide plates, their centerline is centered within the stripping line.
[0014] When the zinc stripping line conveyor chain runs to the left, the cathode plate is placed on the right side of the zinc stripper by the crane, and the right guide plate plays a guiding role. The movement of the conveyor chain drives the cathode plate to the left. When the cathode plate moves to contact the No. 3 guide plate, the curved surface of the No. 3 guide plate pushes the cathode plate to the right until the cathode plate moves to the highest point tangent to the No. 3 guide plate. At this time, the center line of the cathode plate is located in the middle of the zinc stripping line, and the cathode plate runs stably to the bottom of the zinc stripper. During the process, the No. 4 guide plate assists in guiding and limits the cathode plate to prevent the cathode plate from moving too far to the right and falling off the conveyor chain. When the zinc stripping line conveyor chain runs to the right, the cathode plate is placed on the left side of the zinc stripper by the crane, and the left guide plate plays a guiding role. The movement of the conveyor chain drives the cathode plate to move to the right. When the cathode plate moves to contact with the No. 2 guide plate, the arc surface of the No. 2 guide plate pushes the cathode plate to the left until the cathode plate moves to be tangent to the highest point of the No. 2 guide plate. At this time, the center line of the cathode plate is located in the middle of the zinc stripping line. The cathode plate runs stably to the bottom of the zinc stripping machine. During the process, the No. 1 guide plate assists in guiding and limits the cathode plate to prevent the cathode plate from moving too much to the left and falling off the conveyor chain.
[0015] After the cathode plate runs to the bottom of the zinc stripping machine, the zinc metal is stripped off by the zinc stripping machine and falls into the chute, sliding along the chute to the stacking area on the first floor for subsequent processing.
[0016] Furthermore, auxiliary guide plates are respectively provided directly below the No. 1 guide plate, the No. 2 guide plate, the No. 3 guide plate and the No. 4 guide plate. The auxiliary guide plates have the same structure as the guide plates, and both perform correction operations at the same time to further ensure the push-guiding effect.
[0017] The utility model provides a cathode plate guiding and correcting device. The guiding device is installed on the zinc stripping line. When the conveyor chain moves, the guiding device guides the cathode plate so that the cathode plate is finally located in the center of the zinc stripping line. The device ensures that when the cathode plate reaches the bottom of the zinc stripping machine, the cathode plate is located in the middle of the zinc stripping machine, and the entire cathode plate is within the stripping operation range, ensuring that the zinc stripping machine can completely strip the cathode plate and effectively avoid missing stripping. The device can improve the zinc stripping efficiency and reduce labor consumption, and has good practicality.
[0018] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solutions of the present invention and are not limiting. Although the present invention has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made in form and details without departing from the scope defined by the claims of the present invention.
Claims
1. A cathode plate guide correction device, characterized in that: It includes at least two groups of guide plates, one group of guide plates includes two guide plates relatively installed on the inner side of the conveyor chain bracket, and the two groups of guide plates are respectively installed on both sides of the zinc stripping machine. The guide plates are arc-shaped structures tangent to the cathode plates, and when the cathode plates are transported to the highest point of the guide plates, the center line of the cathode plates is located in the middle of the zinc stripping line.
2. A cathode plate guide correction device according to claim 1, characterized in that: Auxiliary guide plates are respectively arranged directly below the guide plates.