Roller blank electric furnace slag electrolysis equipment

By adopting the design of an eccentric shaft turntable and driving mechanism in the electrolytic equipment, the problem of difficult cleaning of electrolytic residues in traditional electrolytic tanks is solved, and efficient separation and recycling of electrolytic solution and impurities is achieved.

CN222908095UActive Publication Date: 2025-05-27HANDAN DINGLI ROLLER CO LTD
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Patent Information

Application Number
CN202421750832.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-05-27
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

During the use of traditional electrolytic cells, the electrolytic residue is difficult to clean, and the separation method of rotating waste boxes is not convenient for impurities collection, resulting in poor cleaning effect of the electrolyte.

Method used

A roll-billied electric furnace slag electrolytic equipment is designed, using an eccentric shaft turntable and a driving mechanism to drive the filter frame movement through the spring force, throw off the electrolyte attached to the impurities, and realize the separation of the electrolyte and impurities.

Benefits of technology

The electrolyte and impurities are effectively separated, the impurity cleaning process is simplified, the electrolyte recovery efficiency is improved, the device damage is reduced, and the service life is extended.

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Abstract

The utility model belongs to the technical field of electrolysis equipment, and particularly relates to roller blank electric furnace slag electrolysis equipment which comprises an electrolysis bin, a conveying pipe, a collecting bin, a recycling bin and a filtering frame and further comprises an eccentric shaft rotating disc and a driving mechanism, a feeding auger is installed on the conveying pipe, the eccentric shaft rotating disc is arranged on the collecting bin, and the eccentric shaft rotating disc is arranged on the recycling bin. The buffer plate is mounted on a groove in the side wall of the collecting bin through the spring, the mounting frame is slidably mounted on the supporting rod, the baffle is mounted on the collecting bin through the elastic buffer rods, the filter frame is mounted on the mounting frame, and the filter plate is mounted on the filter frame. A transverse plate matched with the eccentric shaft turntable is arranged at the bottom of the side wall of the filtering frame; the filter frame is mounted on the mounting frame through screws, a user can conveniently disassemble the filter frame and conveniently clean impurities stored in the filter frame, and damage to the filter frame and the mounting frame in the using process of the device is reduced by arranging an elastic buffer rod provided with a baffle on a sealing cover.
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Description

Technical Field

[0001] The utility model belongs to the technical field of electrolysis equipment, and particularly relates to an electrolysis equipment for roller blank electric furnace slag. Background Technique

[0002] As one of the key equipment in the electrolysis process, the electrolytic cell has a very wide range of applications in chemical production and laboratory research. After the traditional electrolytic cell is used for a certain period of time, a large amount of electrolytic residues will accumulate inside it. These residues are not only difficult to clean, but also have an adverse impact on the electrolysis process. Therefore, more and more manufacturers have begun to use multifunctional and clean electrolytic cells. The existing electrolytic cell realizes the collection of the waste slag generated during the electrolysis process and the separation of the electrolyte attached to the waste slag through the cooperation of a screw conveyor, a filter box and a waste box installed on the screw conveyor during use. However, the separation method of the rotating waste box requires the waste box to be fixed on the screw conveyor, which affects the cleaning of the impurities in the waste box by the user and is not convenient for the user to collect the impurities. Moreover, the horizontally arranged screw conveyor will cause the impurities in the waste box to always be in contact with the electrolyte, resulting in the cleaning effect of the device on the electrolyte attached to the impurities being affected. Content of the Utility Model

[0003] The utility model provides an electrolysis equipment for roller blank electric furnace slag to solve the problems put forward in the above background technique.

[0004] To achieve the above object, the utility model provides the following technical solution: An electrolysis equipment for roller blank electric furnace slag, including an electrolysis bin, a feeding pipe, a collection bin, a recycling bin and a filter frame, further including an eccentric shaft turntable and a driving mechanism. A collection frame is arranged inside the electrolysis bin. The side walls of the bottom and top of the feeding pipe are respectively communicated with the collection frame and the collection bin. A feeding screw conveyor is installed on the feeding pipe. The eccentric shaft turntable and the driving mechanism are arranged on the collection bin. The recycling bin is arranged at the bottom of the collection bin;

[0005] The driving mechanism includes a mounting frame, a buffer plate, a spring, an elastic buffer rod and a baffle plate. A groove is arranged on the inner wall of the collection bin where the eccentric shaft turntable is not installed. The buffer plate is installed on the side wall groove of the collection bin through several springs. Several support rods are arranged on the side wall groove of the collection bin. The mounting frame is slidably installed on the support rods of the side wall groove of the collection bin. The baffle plate is installed on the collection bin through several elastic buffer rods. The filter frame is installed on the mounting frame through several screws. A cross plate for cooperating with the eccentric shaft turntable is arranged at the bottom of the side wall of the filter frame.

[0006] Preferably, a protrusion for cooperating with the collection bin is arranged at the edge of the top side wall of the baffle plate, and a soft pad is arranged on the bottom surface of the baffle plate.

[0007] Preferably, the top surface of the installation frame, the top surface of the filter frame, and the bottom surface of the side wall groove of the collection bin are inclined surfaces that slope towards the inside of the collection bin.

[0008] Preferably, a reinforcing plate that mates with the transverse plate on the side wall of the filter frame is provided on the bottom surface of the filter frame.

[0009] Preferably, a cover is provided on the top surface of the collection bin. The cover is installed on the collection bin through several fixing pins. Soft pads are provided on the side wall of the cover that contacts the collection bin and the side wall of the fixing pins. Several of the elastic buffer rods are installed on the cover.

[0010] Preferably, a pipeline communicating with the electrolysis bin and the recycling bin is provided on the liquid extraction pump. A recycling pipe communicating with the feeding pipe is provided on the liquid extraction pump. A filter screen that mates with the inner wall shape of the feeding pipe is provided on the recycling pipe.

[0011] Preferably, a support plate penetrated by the feeding pipe and the recycling pipe is provided on the bottom plate of the electrolysis bin.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0013] By setting a driving mechanism in the present utility model, the filter frame containing impurities is moved by the elastic force of a spring. The moving filter frame will shake off the electrolyte attached to the impurities, realizing the separation of the electrolyte and the impurities. The filter frame is installed on the installation frame through screws, facilitating the user to disassemble the filter frame and clean the impurities stored in the filter frame. By setting elastic buffer rods with baffles installed on the cover, while reducing the damage suffered by the filter frame and the installation frame during the use of the device, it is ensured that the baffle does not hinder the user from disassembling the filter frame. The feeding pipe and the feeding auger are in an inclined state, reducing the electrolyte carried by the impurities transported into the collection bin and improving the separation effect of the device for the electrolyte and the impurities. By setting a recycling pipe with a filter screen installed, it is convenient for the user to recycle the electrolyte inside the feeding pipe and reduce the waste of the electrolyte. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a schematic structural diagram of the present utility model;

[0015] Figure 2 is a schematic cross-sectional structural diagram of the present utility model;

[0016] Figure 3 is a schematic structural diagram of the driving mechanism in the present utility model;

[0017] Figure 4 is a schematic structural diagram of the installation frame in the present utility model;

[0018] Figure 5 This is a schematic structural view of the filter screen in the present utility model.

[0019] In the figure: 1. Electrolysis chamber; 11. Collection frame; 12. Support plate; 2. Feeding pipe; 21. Feeding auger; 3. Collection bin; 31. Cover; 32. Fixed pin; 4. Recycling bin; 41. Liquid extraction pump; 42. Recycling pipe; 43. Filter screen; 5. Eccentric shaft turntable; 6. Filter frame; 61. Reinforcing plate; 7. Driving mechanism; 71. Installation frame; 72. Buffer plate; 73. Spring; 74. Elastic buffer rod; 75. Baffle. Specific embodiments

[0020] Please refer to Figures 1-5 , the present utility model provides the following technical solutions: A roller billet electric furnace slag electrolysis device, including an electrolysis chamber 1, a feeding pipe 2, a collection bin 3, a recycling bin 4 and a filter frame 6, further including an eccentric shaft turntable 5 and a driving mechanism 7. A collection frame 11 is provided inside the electrolysis chamber 1. The side walls of the bottom and top of the feeding pipe 2 are respectively communicated with the collection frame 11 and the collection bin 3. A feeding auger 21 is installed on the feeding pipe 2. An eccentric shaft turntable 5 and a driving mechanism 7 are provided on the collection bin 3. A recycling bin 4 is provided at the bottom of the collection bin 3;

[0021] The driving mechanism 7 includes an installation frame 71, a buffer plate 72, a spring 73, an elastic buffer rod 74 and a baffle 75. A groove is provided on the inner wall of the collection bin 3 where the eccentric shaft turntable 5 is not installed. The buffer plate 72 is installed on the side wall groove of the collection bin 3 through several springs 73. Several support rods are provided on the side wall groove of the collection bin 3. The installation frame 71 is slidably installed on the support rods of the side wall groove of the collection bin 3. A baffle 75 is installed on the collection bin 3 through several elastic buffer rods 74. The filter frame 6 is installed on the installation frame 71 through several screws. A horizontal plate cooperating with the eccentric shaft turntable 5 is provided at the bottom of the side wall of the filter frame 6.

[0022] The electrolysis chamber 1 is used for electrolysis. When the device conducts electrolysis, the electrodes are placed inside the collection frame 11. At this time, the impurities generated during the electrolysis process will appear inside the collection frame 11, facilitating the user to collect the impurities generated during the electrolysis process. The impurities inside the collection frame 11 will enter the inside of the feed pipe 2 through the pipeline on the bottom side wall of the feed pipe 2. The bottom surface of the collection frame 11 is shaped as an inclined plane that slopes towards the connection between the feed pipe 2 and the collection frame 11. The position where the pipeline on the bottom side wall of the feeding auger 21 is set is on the upper side wall of the feed pipe 2, ensuring that all the impurities appearing in the collection frame 11 can enter the inside of the feed pipe 2. After the impurities fall into the inside of the feed pipe 2, the impurities will fall onto the feeding auger 21. At this time, the feeding auger 21 is started, and the feeding auger 21 will transport the impurities located below to the upper part. The shape of the spiral blade of the feeding auger 21 is a filter screen. During the process of the feeding auger 21 transporting the impurities to the top end of the feed pipe 2, the blades of the feeding auger 21 will preliminarily filter the electrolyte in the impurities, improving the efficiency of the device in separating the electrolyte and the impurities. The pipeline on the top side wall of the feed pipe 2 is located on the bottom side wall of the feed pipe 2, ensuring that the feeding auger 21 can transport the impurities into the inside of the collection bin 3. The impurities entering the inside of the collection bin 3 will fall into the inside of the filter frame 6. The filter frame 6 separates the impurities and the electrolyte, and the separated electrolyte will fall into the inside of the recovery bin 4, facilitating the user to recover the electrolyte;

[0023] When the device is in use, start the eccentric shaft turntable 5. During the rotation of the eccentric shaft turntable 5, the eccentric shaft of the eccentric shaft turntable 5 will push against the side wall cross plate of the filter box 6. As the eccentric shaft turntable 5 rotates, through the cooperation of the eccentric shaft of the eccentric shaft turntable 5 and the side wall cross plate of the filter box 6, the filter box 6 can be pushed downward. The filter box 6 is installed on the installation frame 71. When the filter box 6 moves, it will drive the installation frame 71 downward. The downward-moving installation frame 71 will push against the buffer plate 72, and the pushed buffer plate 72 will compress the spring 73. As the eccentric shaft turntable 5 rotates, the eccentric shaft turntable 5 separates from the side wall cross plate of the filter box 6. At this time, the compressed spring 73 returns to its original state, and the spring 73 in its original state pushes the installation frame 71 and the buffer plate 72 to move. At this time, the filter box 6 is driven by the installation frame 71 to move, and the moving filter box 6 drives the impurities to rise rapidly. The electrolyte attached to the impurities will be thrown off from the impurities, improving the efficiency of the filter box 6 in separating impurities and electrolyte. The filter box 6 is installed on the installation frame 71 by screws, which is convenient for the user to remove the filter box 6 from the drive mechanism 7 and facilitates the user to clean the impurities filtered out in the filter box 6. The length of the side wall groove of the collection bin 3 is ensured so that when the filter box 6 moves to the limit position, the filter box 6 can seal the connection between the feed pipe 2 and the collection bin 3, preventing impurities from directly falling into the recycling bin 4 during the process of entering the collection bin 3, ensuring the working effect of the filter box 6. The installation frame 71 and the buffer plate 72 are slidably installed on the support rods of the side wall groove of the collection bin 3, ensuring the stability of the installation frame 71 and the buffer plate 72 during the movement process. By setting several support rods on the side wall groove of the collection bin 3, the working effect of the support rods is ensured. The number of support rods set on the side wall groove of the collection bin 3 matches the number of springs 73 installed on the side wall groove of the collection bin 3. The position of the spring 73 is located outside the support rods set on the side wall groove of the collection bin 3, ensuring that the spring 73 will not shift during the compression process, ensuring the stability of the connection between the spring 73 and the collection bin 3 and the buffer plate 72. After the installation frame 71 is lifted, the installation frame 71 will contact the baffle 75. The elastic buffer rods 74 installed on the baffle 75 play a buffering role, preventing the installation frame 71 from directly hitting the top of the side wall groove of the collection bin 3 and reducing the damage suffered by the installation frame 71 during the use of the device. By setting several elastic buffer rods 74 on the baffle 75, the working effect of the baffle 75 is ensured.

[0024] Specifically, a protrusion matching the collection bin 3 is provided at the edge of the top side wall of the baffle 75, and a soft pad is provided on the bottom surface of the baffle 75.

[0025] When the elastic buffer rod 74 buffers the filter box 6, it will be compressed. When the filter box 6 descends, the elastic buffer rod 74 returns to its original state and drives the baffle 75 to move downward. The convex top surface of the baffle 75 serves to seal the connection between the material conveying pipe 2 and the collection bin 3, preventing impurities conveyed in the material conveying pipe 2 from falling onto the baffle 75 during the downward movement of the baffle 75, ensuring that all impurities can enter the interior of the filter box 6. The soft pad provided on the bottom surface of the baffle 75 serves as a buffer, preventing the filter box 6 from being damaged when it collides with the baffle 75.

[0026] Specifically, the top surface of the mounting frame 71, the top surface of the filter box 6, and the bottom surface of the side wall groove of the collection bin 3 are in the shape of inclined planes that slope towards the inside of the collection bin 3.

[0027] The shapes of the top surfaces of the mounting frame 71 and the filter box 6 serve as a guiding function, ensuring that all impurities entering the collection bin 3 can enter the interior of the filter box 6, preventing impurities from accumulating on the mounting frame 71 and the filter box 6. The shape of the bottom surface of the side wall groove of the collection bin 3 can prevent the electrolyte filtered out by the filter box 6 from accumulating on the bottom surface of the side wall groove of the collection bin 3, ensuring that the electrolyte filtered out by the filter box 6 can all enter the interior of the recovery bin 4.

[0028] Specifically, a reinforcing plate 61 is provided on the bottom surface of the filter box 6 and is matched with the transverse plate on the side wall of the filter box 6.

[0029] The reinforcing plate 61 enhances the strength of the transverse plate on the side wall of the filter box 6, preventing the transverse plate on the side wall of the filter box 6 from being damaged during the process of being pushed by the eccentric shaft turntable 5, which may affect the working effect of the eccentric shaft turntable 5. By setting two reinforcing plates 61, the working effect of the reinforcing plate 61 is ensured.

[0030] Specifically, a cover 31 is provided on the top surface of the collection bin 3. The cover 31 is installed on the collection bin 3 through several fixing pins 32. Soft pads are provided on the side wall of the cover 31 in contact with the collection bin 3 and the side wall of the fixing pins 32. Several elastic buffer rods 74 are installed on the cover 31.

[0031] The cover 31 is fixed to the collection bin 3 through the fixing pins 32, and the elastic buffer rods 74 are installed on the cover 31. The fixing method of the cover 31 ensures that the user will not be hindered by the elastic buffer rods 74 and the baffle 75 during the process of disassembling the cover 31. When the user disassembles the cover 31, the elastic buffer rods 74 and the baffle 75 will be removed together, ensuring that the disassembly of the filter box 6 by the user will not be hindered. The soft pad provided on the cover 31 serves to seal the gap between the collection bin 3 and the cover 31, preventing the electrolyte from leaking to the outside through the gap between the collection bin 3 and the cover 31. The soft pad provided on the fixing pins 32 serves as a buffer, reducing the damage suffered by the fixing pins 32 during the use of the device and extending the service life of the fixing pins 32.

[0032] Specifically, the liquid extraction pump 41 is provided with a pipeline communicating with the electrolysis chamber 1 and the recovery chamber 4. The liquid extraction pump 41 is provided with a recovery pipe 42 communicating with the feed pipe 2, and the recovery pipe 42 is provided with a filter screen 43 that matches the inner wall shape of the feed pipe 2.

[0033] The liquid extraction pump 41 can transport the electrolyte in the recovery chamber 4 back into the interior of the electrolysis chamber 1, realizing the recycling of the electrolyte. The liquid extraction pump 41 can transport the electrolyte in the feed pipe 2 back into the interior of the electrolysis chamber 1 through the recovery pipe 42, facilitating the user to recycle the electrolyte and avoiding waste of the electrolyte in the feed pipe 2. The filter screen 43 can prevent impurities in the feed pipe 2 from entering the interior of the recovery pipe 42, ensuring that the device's collection of impurities is not affected. The shape of the filter screen 43 ensures that the conveying of impurities in the feed pipe 2 by the feeding auger 21 is not affected, ensuring the working effect of the feeding auger 21.

[0034] Specifically, a support plate 12 penetrated by the feed pipe 2 and the recovery pipe 42 is provided on the bottom plate of the electrolysis chamber 1.

[0035] The support plate 12 plays a role in supporting the feed pipe 2 and the recovery pipe 42, ensuring the stability of the feed pipe 2 and the recovery pipe 42 during the use of the device.

[0036] The working principle and usage process of the present utility model: Place the electrode into the collection frame 11. The waste residue generated during the electrolysis process will fall into the collection frame 11. The waste residue in the collection frame 11 enters the feed pipe 2 through the bottom side wall pipeline of the feed pipe 2. Start the feeding auger 21, and the feeding auger 21 will send the impurities in the feed pipe 2 into the collection chamber 3. The impurities will fall into the filter frame 6 after entering the collection chamber 3. Start the eccentric shaft turntable 5. As the eccentric shaft turntable 5 rotates, the filter frame 6 is pressed down through the cooperation of the eccentric shaft of the eccentric shaft turntable 5 and the side wall cross plate of the filter frame 6. During the downward pressing process of the filter frame 6, the spring 73 will be compressed. The eccentric shaft turntable 5 continues to rotate and separates from the filter frame 6. The spring 73 is released, and the mounting frame 71 drives the filter frame 6 to move upward under the action of the spring 73. The electrolyte attached to the impurities is thrown off. During the upward movement of the filter frame 6, it will hit the baffle 75. The elastic buffer rod 74 installed on the baffle 75 buffers the impact received by the baffle 75. Subsequently, the filter frame 6 returns to its original position. The thrown-off electrolyte enters the recovery chamber 4. The electrolyte in the recovery chamber 4 and the feed pipe 2 is sent back to the electrolysis chamber 1 by the liquid extraction pump 41. When there are too many impurities collected in the filter frame 6, turn off the eccentric shaft turntable 5 and the feeding auger 21, release the fixing of the fixing pin 32 to the cover 31, remove the cover 31 and the baffle 75 from the collection chamber 3, remove the filter frame 6 from the mounting frame 71, clean the impurities in the filter frame 6, and then install the filter frame 6 and the cover 31 back to their original positions.

[0037] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or perform equivalent replacements on some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A roller blank electric furnace slag electrolysis device, comprising an electrolysis chamber (1), a feed pipe (2), a collection chamber (3), a recovery chamber (4) and a filter frame (6), characterized in that: It also comprises an eccentric shaft rotating disk (5) and a driving mechanism (7); a collecting frame (11) is provided inside the electrolysis bin (1); the side wall pipes at the bottom and top of the feed pipe (2) are respectively connected to the collecting frame (11) and the collecting bin (3); a feeding auger (21) is installed on the feed pipe (2); the collecting bin (3) is provided with the eccentric shaft rotating disk (5) and the driving mechanism (7); and the bottom of the collecting bin (3) is provided with the recovery bin (4); The driving mechanism (7) comprises a mounting frame (71), a buffer plate (72), a spring (73), an elastic buffer rod (74) and a baffle (75); a groove is provided on the inner wall of the collecting bin (3) where the eccentric shaft rotating disk (5) is not installed; the buffer plate (72) is installed on the side wall groove of the collecting bin (3) through a plurality of the springs (73); a plurality of support rods are provided on the side wall groove of the collecting bin (3); the mounting frame (71) is slidably installed on the support rods of the side wall groove of the collecting bin (3); the baffle (75) is installed on the collecting bin (3) through a plurality of the elastic buffer rods (74); the filter frame (6) is installed on the mounting frame (71) through a plurality of screws; a transverse plate cooperating with the eccentric shaft rotating disk (5) is provided at the bottom of the side wall of the filter frame (6).

2. The roller blank electric slag electrolysis equipment according to claim 1, characterized in that: A protrusion that cooperates with the collection bin (3) is provided at the edge of the top side wall of the baffle (75), and a soft cushion is provided on the bottom surface of the baffle (75).

3. The roller blank electric slag electrolysis equipment according to claim 1, characterized in that: The top surface of the installation frame (71), the top surface of the filter frame (6) and the bottom surface of the side wall groove of the collection bin (3) are shaped as inclined surfaces inclined toward the inside of the collection bin (3).

4. The roll blank electric furnace slag electrolysis equipment according to claim 1, characterized in that: A reinforcing plate (61) is provided on the bottom surface of the filter frame (6) and cooperates with the side wall transverse plate of the filter frame (6).

5. The roll blank electric slag electrolysis equipment according to claim 1, characterized in that: A cover (31) is provided on the top surface of the collecting bin (3), and the cover (31) is mounted on the collecting bin (3) via a plurality of fixing pins (32). A soft cushion is provided on the side wall of the cover (31) in contact with the collecting bin (3) and the side wall of the fixing pins (32), and a plurality of the elastic buffer rods (74) are mounted on the cover (31).

6. The roll blank electric slag electrolysis equipment according to claim 1, characterized in that: The liquid extraction pump (41) is provided with a pipeline connected to the electrolysis chamber (1) and the recovery chamber (4), the liquid extraction pump (41) is provided with a recovery pipe (42) connected to the feed pipe (2), and the recovery pipe (42) is provided with a filter screen (43) matched with the shape of the inner wall of the feed pipe (2).

7. The roll blank electric furnace slag electrolysis equipment according to claim 6, characterized in that: A support plate (12) is provided on the bottom plate of the electrolysis chamber (1) and is penetrated by the feed pipe (2) and the recovery pipe (42).