Splash-proof protection device of electrolytic manganese stripping machine
By designing an anti-splash protection device for the electrolytic manganese stripping machine with curved side panels and inclined protective plates, the problem of a slippery working environment caused by water splashing is solved, and the stability and convenience of the cleaning process are achieved.
Patent Information
- Application Number
- CN202422498340.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-16
AI Technical Summary
During the cleaning process of the existing electrolytic manganese stripping machine, the high-pressure water flow causes water to splash onto the cathode plate, rebound and fall to the ground, making the work station slippery, affecting the working environment and making cleaning difficult.
A splash protection device for an electrolytic manganese stripping machine was designed. Curved side panels and inclined protective plates were used to shield and divert the rebounding water flow. Combined with a stable support structure and a toothed conveyor chain, the device ensured stable conveyance of cathode plates and collection of cleaning liquid.
It effectively prevents water from splashing outside the working area, keeps the working environment dry and clean, reduces the difficulty of cleaning, and improves the convenience and work efficiency of the electrolytic manganese stripping machine.
Smart Images

Figure CN223357786U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of splash protection devices, in particular to a splash protection device for an electrolytic manganese stripping machine. Background Art
[0002] The electrolytic manganese stripping and cleaning device is a key equipment in the electrolytic manganese stripping industry. It uses a mechanized method to automatically strip the manganese sheets from the electrolytic manganese cathode plate, and then uses the built-in cleaning device to clean the cathode plate, which significantly improves work efficiency and the surface cleanliness of the cathode plate, reduces the labor intensity of workers, and improves the working environment. The equipment has the characteristics of high efficiency, automation, environmental protection and durability. It is widely used in electrolytic manganese production and related fields. It is an important tool for improving the quality and production efficiency of electrolytic manganese.
[0003] The existing electrolytic manganese stripping machine replaces the traditional manual knocking to realize the automatic stripping of manganese sheets on the electrolytic manganese cathode plate. However, it requires high-pressure water flow to clean the cathode plate during the stripping process. Since the water pressure of the water nozzle is too high, it may cause water to splash onto the cathode plate and then rebound. The rebounded water will fall to the ground, causing the worker's workstation to be slippery and the working environment to be poor, which brings difficulty to subsequent cleaning work and reduces the convenience of using the electrolytic manganese stripping machine. Utility Model Content
[0004] Based on this, the purpose of the utility model is to provide an anti-splash protection device for an electrolytic manganese stripping machine to solve the technical problem that water will fall on the ground, causing the workers' workstations to be slippery and the working environment to be poor.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a splash protection device for an electrolytic manganese stripping machine, comprising a device body, extension plates are provided on both sides of the device body, a protective plate is provided on one side of the extension plate, the two sides of the extension plate are rotatably connected to a first side plate and a second side plate through a rotating shaft, a fixed seat is provided on the top of the extension plate, and the two sides of the fixed seat are rotatably connected to a second screw through a rotating shaft, the top of the first side plate and the second side plate are both provided with a rotating seat, one side of the rotating seat is rotatably connected to a first screw, and the first screw and the second screw are threadedly connected through a threaded sleeve.
[0006] By adopting the above technical solution, during the electrolytic manganese stripping process, when a high-pressure water flow is required to clean the cathode plate, the operator will twist the threaded sleeve. This operation causes the length of the first screw and the second screw to change. At the same time, the first side plate and the second side plate will rotate with the change in the length of the screw until they are adjusted to a suitable installation angle. At this time, the water nozzle begins to spray water onto the cathode plate for cleaning. Since the first side plate and the second side plate are in the shape of a curved arc, they can effectively block and guide the water splashed to both sides after the cathode plate rebounds. At the same time, the protective plate also blocks and guides the water splashed to the front side, preventing the water from splashing farther.
[0007] Furthermore, the cross-sections of the first side plate and the second side plate are both curved structures, and the protective plate as a whole is an inclined structure, which is used to provide guidance for the splashed cleaning liquid.
[0008] By adopting the above technical solution, the curved structure enables the first side plate and the second side plate to effectively block and guide the water that rebounds and splashes to both sides of the cathode plate during the cleaning process, preventing water from splashing to other parts of the working area, thereby helping to keep the working environment dry and clean.
[0009] Furthermore, a plurality of water spraying ports are provided inside the main body of the device, and the plurality of water spraying ports are connected to an external water storage device through a liquid pump and are arranged in a rectangular array.
[0010] By adopting the above technical solution, multiple water spray outlets are connected to the external water storage device through a liquid pump, ensuring that the high-pressure water flow required for cleaning the cathode plate can be supplied continuously and stably.
[0011] Furthermore, two groups of support columns are provided below the main body of the device, sprockets are provided on the inner sides of the support columns, and a conveying chain is provided on the outer sides of the sprockets.
[0012] By adopting the above technical solution, the two sets of support columns not only provide stable support for the entire device, but also ensure its stability during operation, preventing its normal operation from being affected by vibration or external force interference.
[0013] Furthermore, a plurality of latching teeth are provided on the surface of the conveying chain, and the plurality of latching teeth are linearly arranged at equal distances along the length line of the conveying chain.
[0014] By adopting the above technical solution, multiple latches enable the conveyor chain to better engage with the cathode plate, preventing sliding or offset during the conveying process, thereby ensuring that the cathode plate can be stably and accurately conveyed to the designated position.
[0015] Furthermore, the cross section of the latch teeth is a triangular structure, which is used to limit the position of the cathode plate.
[0016] By adopting the above technical solution, the triangular structure enables the latch to more effectively limit the position of the cathode plate during the transmission of the conveyor chain, preventing it from shifting or sliding during the transmission process. The triangular structural characteristics give the latch good stability and gripping force, ensuring that the cathode plate can be firmly fixed on the conveyor chain and move with it.
[0017] Furthermore, a water tank is provided at the bottom of the device body for receiving the cleaning liquid.
[0018] By adopting the above technical solution, the main function of the water tank is to receive the cleaning liquid splashed or flowing from the cathode plate during the cleaning process. The cleaning liquid can be effectively collected and contained, avoiding the cleaning liquid from flowing around, wetting or polluting the working environment, thereby helping to keep the working area clean and tidy.
[0019] In summary, the present invention has the following beneficial effects:
[0020] 1. The utility model uses a threaded sleeve. During the electrolytic manganese stripping process, when a high-pressure water flow is needed to clean the cathode plate, the operator will twist the threaded sleeve. This operation causes the length of the first screw and the second screw to change. At the same time, the first side plate and the second side plate will rotate with the change in the length of the screw until they are adjusted to a suitable installation angle. At this time, the water nozzle begins to spray water onto the cathode plate for cleaning. Since the first side plate and the second side plate are in an arc shape, they can effectively block and guide the water splashed to both sides after the cathode plate rebounds. At the same time, the protective plate also blocks and guides the water splashed to the front side, preventing the water from splashing to farther places, improving the working environment of the workers, and reducing the difficulty of subsequent cleaning work.
[0021] 2. The utility model provides a first side panel and a second side panel, and the cross sections of the first side panel and the second side panel both adopt an arc structure. The overall inclined structure of the protective panel, and the arc shape enables the side panels to effectively block and guide the water splashed to both sides by the cathode plate during the cleaning process. The inclined structure can effectively block and guide the water splashed to the front by the cathode plate during the cleaning process, thereby reducing the splashing range of the cleaning liquid in the working area, helping to keep the working environment dry and clean, reducing the difficulty of cleaning work, and improving the ease of use of the electrolytic manganese stripping machine. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;
[0023] Figure 2 This is a side structural diagram of the present utility model;
[0024] Figure 3 It is a schematic diagram of the cross-sectional three-dimensional structure of the utility model;
[0025] Figure 4 For this utility model Figure 1 Schematic diagram of the structure enlarged at point A in the middle.
[0026] In the figure: 1. Device body; 2. Extension plate; 3. Support column; 4. Sprocket; 5. Conveyor chain; 6. Gear; 7. Protective plate; 8. First side panel; 9. Second side panel; 10. Fixed seat; 11. Threaded sleeve; 12. First screw; 13. Second screw; 14. Rotating seat; 16. Rotating shaft; 17. Water nozzle; 18. Water tank. DETAILED DESCRIPTION
[0027] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.
[0028] In the description of the present invention, it should be noted that the terms "center", "up", "down", "left", "right", "vertical", "horizontal", "inside", "outside", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they cannot be understood as limitations on the present invention. In addition, the terms "first", "second", and "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0029] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "install", "connect", "connect", and "set" 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 a direct connection, or an indirect connection through an intermediate medium, or it can be a connection between the internal parts of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0030] The following describes an embodiment of the present invention based on its overall structure. Example
[0031] A splash protection device for an electrolytic manganese stripping machine, such as Figures 1-4As shown, it includes a device body 1, both sides of the device body 1 are provided with an extension plate 2, one side of the extension plate 2 is provided with a protective plate 7, both sides of the extension plate 2 are rotatably connected to the first side plate 8 and the second side plate 9 through a rotating shaft 16, a fixing seat 10 is provided on the top of the extension plate 2, both sides of the fixing seat 10 are rotatably connected to the second screw 13 through the rotating shaft 16, the top of the first side plate 8 and the second side plate 9 are provided with a rotating seat 14, one side of the rotating seat 14 is rotatably connected to the first screw 12, the first screw 12 and the second screw 13 are threadedly connected through a threaded sleeve 11. During the electrolytic manganese stripping process, when a high-pressure water flow is required to clean the cathode plate, the operator will screw the screw The grooved sleeve 11, this operation causes the length of the first screw 12 and the second screw 13 to change. At the same time, the first side plate 8 and the second side plate 9 will rotate with the change of the screw length until they are adjusted to a suitable installation angle. At this time, the water nozzle 17 starts to spray water onto the cathode plate for cleaning. Since the first side plate 8 and the second side plate 9 are in the shape of an arc, they can effectively block and guide the water splashed to both sides after the cathode plate rebounds. At the same time, the protective plate 7 also blocks and guides the water splashed to the front side, preventing the water from splashing to farther places, improving the working environment of the workers, reducing the difficulty of subsequent cleaning work, and thus improving the convenience of use of the electrolytic manganese stripping machine. Example
[0032] See Figure 1 、 Figure 2 、 Figure 3 The cross-sections of the first side plate 8 and the second side plate 9 are both curved structures, and the protective plate 7 is an overall inclined structure for guiding the splashed cleaning liquid. The curved structure enables the first side plate 8 and the second side plate 9 to effectively block and guide the water that rebounds and splashes to both sides of the cathode plate during the cleaning process, preventing moisture from splashing to other parts of the working area, thereby helping to keep the working environment dry and clean. At the same time, the overall inclined structure of the protective plate 7 provides a clear guiding path for the splashed cleaning liquid, which means that when the cleaning liquid splashes onto the protective plate 7, it will flow down along the inclined surface instead of splashing everywhere, further reducing the splashing range of the cleaning liquid in the working area, helping to reduce the difficulty of cleaning work, improving the ease of use of the electrolytic manganese stripping machine, and creating a safer and more comfortable working environment for workers.
[0033] See Figure 1 、 Figure 3A plurality of water nozzles 17 are provided inside the device body 1. The plurality of water nozzles 17 are connected to an external water storage device through a liquid pump and are arranged in a rectangular array. The plurality of water nozzles 17 are connected to an external water storage device through a liquid pump, ensuring that the high-pressure water flow required for cleaning the cathode plate can be continuously and stably supplied. At the same time, the plurality of water nozzles 17 are arranged in a rectangular array. This layout enables the water flow to evenly cover the entire surface of the cathode plate, thereby ensuring the uniformity and consistency of the cleaning effect. In addition, the rectangular array arrangement also helps to optimize the use of water flow and reduce the waste of water resources, which not only improves the cleaning efficiency of the electrolytic manganese stripping machine, but also reduces the operating costs, bringing significant economic and environmental benefits to the electrolytic manganese production industry.
[0034] See Figure 1 、 Figure 2 、 Figure 3 Two groups of support columns 3 are arranged under the main body 1 of the device, and a sprocket 4 is arranged on the inner side of the support column 3, and a conveyor chain 5 is arranged on the outer side of the sprocket 4. The two groups of support columns 3 not only provide stable support for the entire device, but also ensure its stability during operation, and prevent its normal operation from being affected by vibration or external interference. At the same time, a sprocket 4 is cleverly arranged on the inner side of the support column 3, and a conveyor chain 5 is installed on the outer side of the sprocket 4, so that the cathode plate can be automatically driven by the conveyor chain 5 for continuous stripping and cleaning operations, which greatly improves work efficiency and reduces the labor intensity of workers. Moreover, the combined transmission of the sprocket 4 and the conveyor chain 5 is smooth and reliable, which ensures the stability and accuracy of the cathode plate during the transmission process, and further improves the overall performance and practicality of the electrolytic manganese stripping machine.
[0035] See Figure 1 、 Figure 3 , a plurality of latch teeth 6 are provided on the surface of the conveyor chain 5, and the plurality of latch teeth 6 are arranged in an equidistant linear manner along the length line of the conveyor chain 5. The plurality of latch teeth 6 enable the conveyor chain to better engage with the cathode plate, preventing sliding or offset during the conveying process, thereby ensuring that the cathode plate can be stably and accurately conveyed to the designated position. At the same time, the plurality of latch teeth 6 are arranged in an equidistant linear manner along the length line of the conveyor chain 5. This layout not only optimizes the use efficiency of the latch teeth 6, but also makes the conveyor chain 5 more stable and continuous during the transmission process, further improving the transmission stability and accuracy of the cathode plate. In addition, the equidistant linear arrangement also helps to simplify the manufacturing and installation process of the conveyor chain 5, reduces production costs and maintenance difficulties, and brings greater convenience and benefits to the practical application of the electrolytic manganese stripping machine.
[0036] See Figure 1 、 Figure 3The cross section of the latch 6 is a triangular structure, which is used to limit the position of the cathode plate. The triangular structure enables the latch to more effectively limit the position of the cathode plate during the transmission process of the conveyor chain 5, preventing it from offsetting or sliding during the transmission process. The triangular structural characteristics give the latch 6 good stability and gripping force, ensuring that the cathode plate can be firmly fixed on the conveyor chain 5 and move with it. At the same time, it also simplifies the loading and unloading process of the cathode plate, improves work efficiency, and reduces the difficulty of operation. In general, the triangular structure of the latch 6 provides a strong guarantee for the stable operation and efficient production of the electrolytic manganese stripping machine, and brings significant beneficial effects.
[0037] See Figure 1 、 Figure 2 、 Figure 3 A water tank 18 is provided at the bottom of the device body 1 for receiving the cleaning liquid. The main function of the water tank 18 is to receive the cleaning liquid splashed or flowing from the cathode plate during the cleaning process. The cleaning liquid can be effectively collected and contained, avoiding the cleaning liquid from flowing around, wetting or polluting the working environment, thereby helping to keep the working area clean and tidy. At the same time, the setting of the water tank 18 also makes the recovery and reuse of the cleaning liquid more convenient, helps to save water resources and reduce production costs. In general, the water tank 18 at the bottom of the device body 1 provides great convenience for the cleaning process of the electrolytic manganese stripping machine and brings significant beneficial effects.
[0038] The implementation principle of the present invention is as follows: when a high-pressure water flow is needed to clean the cathode plate during the stripping process, the threaded sleeve 11 is first screwed, causing the length of the first screw 12 and the second screw 13 to change. At this time, the first side plate 8 and the second side plate 9 are rotated by the rotating shaft 16 as the length of the first screw 12 and the second screw 13 changes, until the first side plate 8 and the second side plate 9 are adjusted to a suitable installation angle. At this time, the water nozzle 17 sprays water onto the cathode plate. Since the first side plate 8 and the second side plate 9 are in an arc shape, the first side plate 8 and the second side plate 9 block and guide the water splashed to both sides after the cathode plate rebounds, and the protective plate 7 blocks and guides the water splashed to the front side, preventing the rebounded water from splashing to farther places, thereby improving the working environment of the workers, reducing the difficulty of subsequent cleaning work, and improving the convenience of use of the electrolytic manganese stripping machine.
[0039] Parts not involved in the present invention are the same as those in the prior art or can be implemented by using the prior art, and will not be described in detail here.
[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 limitations on the present invention. The specific features, structures, materials, or characteristics described may be combined in a suitable manner in any 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 purpose of the present invention, but as long as they are within the scope of the claims of the present invention, they are protected by patent law.
Claims
1. A splash protection device for an electrolytic manganese stripping machine, characterized in that: The invention comprises a device body (1), wherein both sides of the device body (1) are provided with an extension plate (2), one side of the extension plate (2) is provided with a protective plate (7), both sides of the extension plate (2) are rotatably connected to a first side plate (8) and a second side plate (9) via a rotating shaft (16), a fixing seat (10) is provided at the top of the extension plate (2), both sides of the fixing seat (10) are rotatably connected to a second screw rod (13) via a rotating shaft (16), a rotating seat (14) is provided at the top of each of the first side plate (8) and the second side plate (9), one side of the rotating seat (14) is rotatably connected to a first screw rod (12), and the first screw rod (12) and the second screw rod (13) are threadedly connected via a threaded sleeve (11).
2. The splash protection device for electrolytic manganese stripping machine according to claim 1, characterized in that: The cross sections of the first side plate (8) and the second side plate (9) are both curved structures, and the protective plate (7) is an overall inclined structure, used to provide guidance for splashed cleaning liquid.
3. The splash protection device for electrolytic manganese stripping machine according to claim 1, characterized in that: A plurality of water spraying ports (17) are provided inside the device body (1), and the plurality of water spraying ports (17) are connected to an external water storage device via a liquid pump and are arranged in a rectangular array.
4. The splash protection device for an electrolytic manganese stripping machine according to claim 1, characterized in that: Two groups of support columns (3) are provided below the device body (1), sprockets (4) are provided on the inner sides of the support columns (3), and a conveying chain (5) is provided on the outer sides of the sprockets (4).
5. The splash protection device for electrolytic manganese stripping machine according to claim 4, characterized in that: A plurality of latching teeth (6) are provided on the surface of the conveying chain (5), and the plurality of latching teeth (6) are linearly arranged at equal distances along the length line of the conveying chain (5).
6. The splash protection device for electrolytic manganese stripping machine according to claim 5, characterized in that: The cross section of the latch (6) is a triangular structure and is used to limit the position of the cathode plate.
7. The splash protection device for an electrolytic manganese stripping machine according to claim 1, characterized in that: A water tank (18) is provided at the bottom of the device body (1) for receiving cleaning liquid.