A starter electrode nickel washing and stacking system
By designing a starter electrode electrolytic nickel washing and stacking system, the problems of missed cleaning and manual removal of starter electrodes were solved, realizing comprehensive cleaning and automated stacking of starter electrodes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-01
- Publication Date
- 2026-04-03
AI Technical Summary
Existing cleaning equipment has the problem of missing parts during cleaning, and the starting electrode needs to be removed manually after cleaning, which is inefficient and inconvenient.
A starting electrode nickel washing and stacking system was designed, including a conveying device, a washing device, a clamping device, a water supply device, and a stacking device. The system uses nozzles to thoroughly clean both the top and bottom surfaces of the starting electrode and achieves automatic stacking.
It achieves thorough cleaning of the nickel plates on both the top and bottom sides of the starter electrode, avoiding any omissions in the cleaning process, and also enables automated stacking of the starter electrode.
Smart Images

Figure CN117732779B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of cleaning technology, and in particular to a starting electrode nickel washing and stacking system. Background Technology
[0002] Currently, nickel is mainly produced by electrolysis. In the entire electrolysis process, a starter sheet is required. The starter sheet, through which a conductive rod is inserted, is placed into the electrolytic cell. After one electrolysis cycle, a nickel plate is formed on the starter sheet. After the conductive rod is removed from the starter sheet after electrolysis, the nickel plate on it needs to be cleaned. Existing cleaning equipment has the problem of missing parts during cleaning, and the starter sheet needs to be manually removed from the cleaning equipment after cleaning, which is inadequate. Summary of the Invention
[0003] The purpose of this invention is to solve the above-mentioned technical problems and provide a starting electrode nickel washing and stacking system.
[0004] The technical solution of the present invention: a starting electrode nickel washing and stacking system, comprising:
[0005] A conveying device used to transport the electrolytically produced starter sheets;
[0006] A cleaning device includes a water tank, a cleaning tank, an upper plate, a lower plate, two side plates, and several nozzles. The bottom of the cleaning tank is provided with a drain pipe communicating with the water tank. The cleaning tank has openings on both sides. The upper plate, the lower plate, and the two side plates are all disposed inside the cleaning tank. Each of the upper plate, the lower plate, and the two side plates has an inner cavity communicating with several nozzles. The nozzles on the side plates are inclined. The two side plates are connected to one end of the upper plate and one end of the lower plate through a flexible hose so that the inner cavities of the three are connected.
[0007] Two clamping devices are provided, each including a support plate, a first T-shaped member and a plurality of first springs. The support plate is provided with a first sliding groove. One end of the first T-shaped member is connected to the side plate, and the other end can slide in the first sliding groove. The plurality of first springs are disposed in the first sliding groove.
[0008] Two water supply devices are used to supply water to the inner cavity of the side plate and can drive the support plate to move up and down and left and right.
[0009] Stacking device, used to stack several cleaned starter sheets together.
[0010] Preferably, the support plate is provided with a second sliding groove; the water supply device includes a water supply tank, a water supply pipe, a second T-shaped component, a T-shaped box, two ear plates, several second springs, a trapezoidal plate, and a connecting component. One end of the water supply pipe is connected to the water supply tank, and the other end is connected to a bidirectional pump. One end of the second T-shaped component can slide inside the water supply tank, and the other end passes through the second sliding groove. The two ear plates are disposed on the second T-shaped component and on both sides of the support plate. The second springs are disposed in the second sliding groove. The trapezoidal plate is disposed inside the cleaning tank and its inclined surface abuts against one end of the support plate. The T-shaped box is disposed on the water supply tank and is provided with several water outlets. The water outlets are connected to the inner cavity of the side plate through flexible hoses. The connecting component is disposed inside the T-shaped box to connect or disconnect the T-shaped box from the water supply tank.
[0011] Preferably, the conductive assembly includes a piston plate, a plurality of guide rods, and a third spring. The guide rods are disposed within the T-shaped box, the piston plate is slidably disposed within the T-shaped box and slidably connected to the guide rods, and the third springs are sleeved on the guide rods.
[0012] Preferably, the stacking device includes a transfer device and a lifting device. The transfer device is used to transfer the cleaned starter sheets from the conveying device to the lifting device. The lifting device gradually descends as the number of starter sheets increases. After the starter sheets stacked on the lifting device are transferred to the next process, the lifting device returns to its original position.
[0013] Preferably, the transfer device includes a device frame, a first driving device, and two guide plates, two receiving plates, and a second driving device. The top of one end of the two guide plates and the receiving plate is inclined. The guide plates are disposed on the device frame, and the receiving plates are provided with baffles. The first driving device is used to drive the starting electrode sheet on the conveying device to move to the two receiving plates, and the second driving device is used to drive the receiving plates to rotate so that the starting electrode sheet falls onto the lifting device.
[0014] Preferably, the conveying device is provided with a plurality of movable push plates; the first driving device includes a first pneumatic device, a horizontal plate and two swing plates with one side inclined at the bottom. The first pneumatic device is mounted on the device frame to drive the horizontal plate to move back and forth. Limiting blocks are provided at both ends of the horizontal plate. The swing plates are rotatably connected to the horizontal plate. One corner of the top of the swing plate is arc-shaped, and the other corner of the top has an upwardly extending protrusion.
[0015] Preferably, the receiving plate is rotatably mounted on the device frame; the second driving device includes a second pneumatic device and a flipping bushing, the flipping bushing is mounted at one end of the receiving plate, and the second pneumatic device is mounted on the device frame to drive the flipping bushing to rotate.
[0016] Preferably, the lifting device includes a stacking plate, an upper lifting plate, a lower lifting plate, a support, a third pneumatic device, and four connecting rods, connecting rod seats, and slide rails. The lower lifting plate and the third pneumatic device are mounted on the support, the stacking plate is mounted on the upper lifting plate, and both the upper and lower lifting plates are provided with slide rails. The connecting rod seats are slidably connected to the slide rails. One end of the connecting rod is rotatably connected to the upper or lower lifting plate, and the other end is rotatably connected to the connecting rod seat. The third pneumatic device is used to drive the two connecting rod seats to move back and forth.
[0017] Preferably, the lifting device further includes a receiving platform, a gear, and an electric drive device. The receiving platform is disposed between the stacking plate and the lifting upper plate. The receiving platform is provided with an annular rack that meshes with the gear. The electric drive device is disposed on the lifting upper plate for driving the lifting upper plate to rotate.
[0018] The beneficial effects of the present invention are: in the present invention, the nickel plates on the upper and lower surfaces of the starting electrode are washed without causing any nickel plates to be unwashed, and the starting electrode can be automatically stacked. Attached Figure Description
[0019] Figure 1 This is a perspective view of the overall structure of a preferred embodiment of the present invention;
[0020] Figure 2 yes Figure 1 Enlarged view of a portion of point A in the middle;
[0021] Figure 3 This is a perspective view of the conveying device in a preferred embodiment of the present invention;
[0022] Figure 4 This is a cross-sectional view showing the connection of the cleaning device, clamping device, and water supply device in a preferred embodiment of the present invention;
[0023] Figure 5 yes Figure 4 Enlarged view of a section at point B in the middle;
[0024] Figure 6 yes Figure 4 Enlarged view of a section at point C;
[0025] Figure 7 This is a top view of the support plate in a preferred embodiment of the present invention;
[0026] Figure 8 and Figure 9 This is a perspective view of the transfer device in a preferred embodiment of the present invention;
[0027] Figure 10 yes Figure 8 Enlarged view of a section at point D;
[0028] Figure 11 yes Figure 9 Enlarged view of a section at point E in the middle;
[0029] Figure 12 This is a perspective view of the lifting device in a preferred embodiment of the present invention.
[0030] Reference numerals: Conveying device 10, Push plate 101, Water tank 2, Cleaning tank 3, Drain pipe 301, Opening 302, Upper plate 4, Lower plate 5, Side plate 6, Nozzle 7, Support plate 8, First chute 801, Second chute 802, First T-shaped piece 9, First spring 11, Water supply tank 12, Water supply pipe 13, Second T-shaped piece 14, T-shaped box 15, Water outlet 151, Ear plate 16, Second spring 17, Trapezoidal plate 18, Piston plate 19, Guide... 20. Directional rod, 21. Third spring, 22. Device frame, 221. Tilting bushing seat, 23. Guide plate, 24. Receiving plate, 241. Baffle, 25. First pneumatic device, 26. Horizontal plate, 27. Swing plate, 28. Second pneumatic device, 29. Tilting bushing, 30. Stacking plate, 31. Lifting upper plate, 32. Lifting lower plate, 33. Support, 34. Third pneumatic device, 35. Connecting rod seat, 36. Slide rail, 37. Receiving plate platform, 38. Gear, 39. Electric drive device, 40. Detailed Implementation
[0031] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0032] Reference Figures 1 to 12 A starting electrode nickel washing and stacking system, comprising:
[0033] Conveying device 10 is used to convey the electrolytic starter sheet;
[0034] The cleaning device includes a water tank 2, a cleaning tank 3, an upper plate 4, a lower plate 5, two side plates 6, and several nozzles 7. The bottom of the cleaning tank 3 is provided with a drain pipe 301 that communicates with the water tank 2. The cleaning tank 3 has openings 302 on both sides. The upper plate 4, the lower plate 5, and the two side plates 6 are all installed inside the cleaning tank 3. The upper plate 4, the lower plate 5, and the two side plates 6 are all provided with an inner cavity that communicates with several nozzles 7. The nozzles 7 on the side plates 6 are inclined. The two side plates 6 are connected to one end of the upper plate 4 and one end of the lower plate 5 through a hose so that the inner cavities of the three are connected.
[0035] Two clamping devices are provided, each including a support plate 8, a first T-shaped member 9 and several first springs 11. The support plate 8 is provided with a first sliding groove 801. One end of the first T-shaped member 9 is connected to the side plate 6, and the other end can slide in the first sliding groove 801. Several first springs 11 are provided in the first sliding groove 801.
[0036] Two water supply devices are used to supply water to the inner cavity of the side plate 6 and can drive the support plate 8 to move up and down and left and right.
[0037] A stacking device is used to stack several cleaned starter plates together. In this invention, the starter plates, after electrolysis to form nickel plates and removing the conductive rods, are placed on a conveying device 10. The cleaning tank 3 has openings 302 on both sides. The conveying device 10 passes through the cleaning tank 3 through the openings 302. After the starter plates are conveyed by the conveying device 10 to the space between the upper plate 4 and the lower plate 5, a water supply device supplies water to the inner cavity of the side plate 6. Water is sprayed from the nozzle 7. As the support plate 8 moves upward, it also moves towards the starter plate, thereby driving the side plates 6 to move and clamp the sides of the starter plates together. As the support plate 8 continues to move upward, the starter plates are lifted away from the conveying device 10 by the two side plates 6. Several nozzles 7 on plate 4 rinse the nickel plate at the upper end of the starting electrode sheet, several nozzles 7 on the lower plate 5 rinse the nickel plate in the middle of the lower end of the starting electrode sheet, and nozzles 7 on the two side plates 6 rinse the remaining nickel plate at the lower end of the starting electrode sheet. This achieves rinsing of the nickel plates on both the upper and lower surfaces of the starting electrode sheet, ensuring that no nickel plates are left unrinsed. After cleaning, the water supply device drives the support plate 8 to move downwards and releases the starting electrode sheet. The starting electrode sheet falls onto the conveying device 10, which then moves the cleaned starting electrode sheet to the stacking device. After the starting electrode sheets are stacked to a certain thickness, the stack is transferred to the next process. Specifically, the conveying device 10 is a chain conveyor, which connects with the previous process of removing the conductive rod; after the side plate 6 abuts against one side of the starting electrode, the support plate 8 will continue to move, thereby causing one end of the first T-shaped piece 9 to squeeze the first spring 11 to clamp the starting electrode; when the support plate 8 moves in the opposite direction, the first T-shaped piece 9 returns to its original position under the reaction force of the first spring 11; after the water falls into the cleaning tank 3, it returns to the water tank 2 through the drain pipe 301; the side plate 6 is provided with several sets of nozzles 7, each set of nozzles 7 has a different tilt angle; the cleaning tank 3 is set on the water tank 2; the upper plate 4, the lower plate 5 and the water supply tank 12 are all connected by several support rods in the cleaning tank 3.
[0038] As a preferred embodiment of the present invention, it may also have the following additional technical features:
[0039] In this embodiment, the support plate 8 is provided with a second sliding groove 802; the water supply device includes a water supply tank 12, a water supply pipe 13, a second T-shaped member 14, a T-shaped box 15, two ear plates 16, several second springs 17, a trapezoidal plate 18, and a conductive assembly. One end of the water supply pipe 13 is connected to the water supply tank 12, and the other end is connected to a bidirectional pump. One end of the second T-shaped member 14 can slide inside the water supply tank 12, and the other end passes through the second sliding groove 802. The two ear plates 16 are disposed on the second T-shaped member 14 and on both sides of the support plate 8. On the side, the second spring 17 is set in the second slide groove 802, the trapezoidal plate 18 is set in the cleaning tank 3 and its inclined surface abuts against one end of the support plate 8, the T-shaped box 15 is set on the water supply tank 12 and has several water outlets 151, the water outlets 151 are connected to the inner cavity of the side plate 6 through the hose, the conducting component is set in the T-shaped box 15 to connect or disconnect the T-shaped box 15 from the water supply tank 12, the bidirectional pump draws water from the water tank 2 and flows into the water supply tank 12 through the water supply pipe 13, the bottom of the second T-shaped piece 14 is subjected to The upward thrust of the water causes the support plate 8 to move upward as well. Simultaneously, one end of the support plate 8 is pushed closer to the starting electrode by the inclined surface of the trapezoidal plate 18, causing the side plate 6 to adhere to one side of the starting electrode. The wall of the second slide groove 802 compresses the second spring 17. After the support plate 8 continues to move closer to the starting electrode, the two side plates 6 clamp the starting electrode. When the second T-shaped piece 14 moves above the T-shaped box 15, the conductive component activates, connecting the T-shaped box 15 to the water supply tank 12. Water flows out from the outlet 151, passing through... The water flows into the inner cavity of the side plate 6 through the hose, and water is sprayed out from the nozzle 7 on the side plate 6. At the same time, the water in the side plate 6 flows through the hose to the upper plate 4 and the lower plate 5 respectively, and is sprayed out from the nozzle 7 on them. After the nickel plate on the starting electrode is cleaned, the bidirectional pump works to draw out the water in the water supply tank 12. The conductive component is activated to disconnect the T-shaped box 15 from the water supply tank 12. The second T-shaped piece 14 moves downward in the water supply tank 12 back to its original position, thereby causing the support plate 8 to return to its original position. The side plate 6 slowly loosens the starting electrode so that it falls onto the conveying device 10.
[0040] In this embodiment, the conductive assembly includes a piston plate 19, several guide rods 20, and a third spring 21. The guide rods 20 are disposed inside the T-shaped box 15. The piston plate 19 is slidably disposed inside the T-shaped box 15 and slidably connected to the guide rods 20. The third spring 21 is sleeved on the guide rods 20. When the water supply tank 12 is filled with water and the second T-shaped piece 14 moves above the T-shaped box 15, the piston plate 19 is pushed by the water and slides on the guide rods 20, squeezing the third spring 21. The water supply tank 12 is connected to the T-shaped box 15, and water flows out from the outlet 151 and flows through the hose to the inner cavity of the side plate 6. When the bidirectional pump draws water from the water tank 2, the water in the water supply tank 12 decreases and the piston plate 19 is no longer pushed by the water. The third spring 21 gives the piston plate 19 a reaction force to return it to its original position, and the water supply tank 12 is disconnected from the T-shaped box 15.
[0041] In this embodiment, the stacking device includes a transfer device and a lifting device. The transfer device is used to transfer the cleaned starter sheets on the conveying device 10 to the lifting device. The lifting device will gradually descend as the number of starter sheets increases. After the starter sheets stacked on the lifting device are transferred to the next process, the lifting device will return to its original position.
[0042] In this embodiment, the transfer device includes a frame 22, a first driving device, and two guide plates 23 and two receiving plates 24, as well as a second driving device. The top of one end of each guide plate 23 and receiving plate 24 is inclined. The guide plates 23 are mounted on the frame 22, and the receiving plates 24 are equipped with baffles 241. The first driving device drives the starting electrode sheet on the conveying device 10 to move onto the two receiving plates 24. The second driving device drives the receiving plates 24 to rotate, causing the starting electrode sheet to fall onto the lifting device. When the starting electrode sheet reaches one end of the conveying device 10, the first driving device pushes the starting electrode sheet via the guide plates 23 to the receiving plates 24, thus transferring the starting electrode sheet. When the starting electrode sheet has completely moved onto the receiving plates 24, the second driving device rotates the receiving plates 24, causing the starting electrode sheet to fall onto the lifting device without support. Specifically, the inclined tops of one end of each guide plate 23 and receiving plate 24 facilitate the movement of the starting electrode sheet onto these plates.
[0043] In this embodiment, the conveying device 10 is provided with a plurality of movable push plates 101; the first driving device includes a first pneumatic device 25, a horizontal plate 26 and two swing plates 27 with one side inclined at the bottom. The first pneumatic device 25 is mounted on the device frame 22 to drive the horizontal plate 26 to move back and forth. Limiting blocks 261 are provided at both ends of the horizontal plate 26. The swing plate 27 is rotatably connected to the horizontal plate 26. One corner of the top of the swing plate 27 is arc-shaped, and the other corner of the top has an upwardly extending protrusion. Specifically, the first pneumatic device 25 is a cylinder, and the conveying device 10 is a chain conveyor. Several push plates 101 are spaced apart on the two chains of the chain conveyor. When the starting electrode moves to one end of the conveying device 10, it continues to move with the conveying device 10. One end of the starting electrode pushes the swing plate 27 to rotate counterclockwise, and then moves to the receiving plate 24 via the guide plate 23. As the contact area between the starting electrode and the conveying device 10 decreases, it can no longer move. The push plates 101 then push the starting electrode to move. When the other end of the starting electrode moves to the right side of the swing plate 27, the starting electrode and the conveying device 10... Completely disengaged, due to the upward-extending protrusion at the other corner of the top of the swing plate 27, and the limit blocks 261 at both ends of the horizontal plate 26, the first pneumatic device 25 drives the horizontal plate 26 to move to the right, the swing plate 27 moves to the right and will not rotate clockwise on the horizontal plate 26, the swing plate 27 continues to push the starting plate so that it is directly above the lifting device, the first driving device drives the horizontal plate 26 back to its original position, the second driving device works to make the receiving plate 24 rotate, and the starting plate falls onto the lifting device without support; one end of the conveying device 10 is set below one end of the device frame 22.
[0044] In this embodiment, the receiving plate 24 is rotatably mounted on the device frame 22; the second driving device includes a second pneumatic device 28 and a flipping bushing 29. The flipping bushing 29 is mounted on one end of the receiving plate 24, and the second pneumatic device 28 is mounted on the device frame 22 to drive the flipping bushing 29 to rotate. Specifically, the second pneumatic device 28 is a cylinder, and one end of the flipping bushing 29 is rotatably connected to the output end of the second pneumatic device 28. When the output end of the second pneumatic device 28 moves upward, it drives the flipping bushing 29 to rotate, thereby causing the receiving plate 24 to rotate. After the starting electrode falls off, the second pneumatic device 28 drives the flipping bushing 29 back to its original position. The device frame 22 is provided with two flipping bushing seats 221. One side of the flipping bushing seat 221 is open, and one end of the receiving plate 24 passes through the opening and connects to the flipping bushing 29.
[0045] In this embodiment, the lifting device includes a stacking plate 30, an upper lifting plate 31, a lower lifting plate 32, a support 33, a third pneumatic device 34, and four connecting rods 35, connecting rod seats 36, and slide rails 37. The lower lifting plate 32 and the third pneumatic device 34 are mounted on the support 33, and the stacking plate 30 is mounted on the upper lifting plate 31. Both the upper lifting plate 31 and the lower lifting plate 32 are equipped with slide rails 37. The connecting rod seats 36 are slidably connected to the slide rails 37. One end of the connecting rod 35 is rotatably connected to the upper lifting plate 31 or the lower lifting plate 32, and the other end is rotatably connected to the connecting rod seats 36. The third pneumatic device 34 is used to drive the two connecting rod seats 36 to move back and forth. Specifically, the third pneumatic device 34 is a cylinder. When the starting electrode sheet falls onto the stacking plate 30, the third pneumatic device 34 will drive the two connecting rod seats 36 on the lower lifting plate 32 to move a certain distance. All four connecting rods 35 will swing, thereby driving the upper lifting plate 31 to descend a certain distance. The above operation is repeated until the stacking plate 30 has accumulated a certain amount of starting electrode sheets. Then, the stacking plate 30 is pushed to detach from the upper lifting plate 31, thereby transferring the stacked starting electrode sheets to the next process. The third pneumatic device 34 drives the two connecting rod seats 36 back to their original positions, and the upper lifting plate 31 moves upward to return to its original position. The two connecting rods 35 are connected by movable seat pins.
[0046] In this embodiment, the lifting device further includes a receiving platform 38, a gear 39, and an electric drive device 40. The receiving platform 38 is disposed between the stacking plate 30 and the lifting upper plate 31. The receiving platform 38 is provided with an annular rack that meshes with the gear 39. The electric drive device 40 is disposed on the lifting upper plate 31 to drive the lifting upper plate 31 to rotate. Specifically, the electric drive device 40 is a motor. After the stacking plate 30 stacks a certain amount of starter sheets, the electric drive device 40 drives the gear 39 to rotate, which in turn drives the receiving platform 38 to rotate, causing the stacking plate 30 to rotate and reversing the direction of the stacked starter sheets for processing in the next process. When the stacked starter sheets are transferred to the next process, the electric drive device 40 drives the gear 39 to rotate in the opposite direction, causing the stacking plate 30 to return to its original position.
[0047] It should be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0048] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A starting electrode nickel washing and stacking system, characterized in that, include: Conveying device (10) for conveying the electrolytic starter sheet; The cleaning device includes a water tank (2), a cleaning tank (3), an upper plate (4), a lower plate (5), two side plates (6), and several nozzles (7). The bottom of the cleaning tank (3) is provided with a drain pipe (301) communicating with the water tank (2). The cleaning tank (3) has openings (302) on both sides. The upper plate (4), the lower plate (5), and the two side plates (6) are all located inside the cleaning tank (3). The upper plate (4), the lower plate (5), and the two side plates (6) are all provided with an inner cavity communicating with several nozzles (7). The nozzles (7) on the side plates (6) are inclined. The two side plates (6) are connected to one end of the upper plate (4) and one end of the lower plate (5) through a hose so that the inner cavities of the three are connected. Two clamping devices are provided, each including a support plate (8), a first T-shaped member (9) and a plurality of first springs (11). The support plate (8) is provided with a first sliding groove (801) and a second sliding groove (802). One end of the first T-shaped member (9) is connected to the side plate (6), and the other end can slide in the first sliding groove (801). The plurality of first springs (11) are arranged in the first sliding groove (801). Two water supply devices are used to supply water to the inner cavity of the side plate (6) and to drive the support plate (8) to move up and down and left and right. The water supply devices include a water tank (12), a water pipe (13), a second T-shaped piece (14), a T-shaped box (15), two ear plates (16), several second springs (17), a trapezoidal plate (18), and a conductive assembly. One end of the water pipe (13) is connected to the water tank (12), and the other end is connected to a bidirectional pump. One end of the second T-shaped piece (14) can slide inside the water tank (12), and the other end passes through the second slide groove (802). The two ear plates (16) The second spring (17) is disposed on the second T-shaped piece (14) and on both sides of the support plate (8), the second trapezoidal plate (18) is disposed in the cleaning tank (3) and its inclined surface abuts against one end of the support plate (8), the T-shaped box (15) is disposed on the water supply tank (12) and has a plurality of water outlets (151) thereon, the water outlets (151) are connected to the inner cavity of the side plate (6) through a hose, and the connecting component is disposed in the T-shaped box (15) to connect or disconnect the T-shaped box (15) from the water supply tank (12); Stacking device, used to stack several cleaned starter sheets together.
2. The starting electrode electrolytic nickel washing and stacking system according to claim 1, characterized in that: The conductive assembly includes a piston plate (19), a number of guide rods (20), and a third spring (21). The guide rods (20) are disposed inside the T-shaped box (15). The piston plate (19) is slidably disposed inside the T-shaped box (15) and slidably connected to the guide rods (20). The third spring (21) is sleeved on the guide rods (20).
3. The starting electrode electrolytic nickel washing and stacking system according to claim 1, characterized in that: The stacking device includes a transfer device and a lifting device. The transfer device is used to transfer the cleaned starter sheets on the conveying device (10) to the lifting device. The lifting device will gradually descend as the number of starter sheets increases. After the starter sheets stacked on the lifting device are transferred to the next process, the lifting device will return to its original position.
4. The starting electrode electrolytic nickel washing and stacking system according to claim 3, characterized in that: The transfer device includes a device frame (22), a first driving device, and two guide plates (23), two receiving plates (24), and a second driving device. The top of one end of the two guide plates (23) and the receiving plates (24) are inclined. The guide plates (23) are set on the device frame (22), and the receiving plates (24) are provided with baffles (241). The first driving device is used to drive the starting plates on the conveying device (10) to move onto the two receiving plates (24). The second driving device is used to drive the receiving plates (24) to rotate so that the starting plates fall onto the lifting device.
5. The starting electrode electrolytic nickel washing and stacking system according to claim 4, characterized in that: The conveying device (10) is provided with several movable push plates (101); the first driving device includes a first pneumatic device (25), a horizontal plate (26) and two swing plates (27) with one side inclined at the bottom. The first pneumatic device (25) is set on the device frame (22) to drive the horizontal plate (26) to move back and forth. The two ends of the horizontal plate (26) are respectively provided with limiting blocks (261). The swing plate (27) is rotatably connected to the horizontal plate (26). One corner of the top of the swing plate (27) is arc-shaped, and the other corner of the top has an upwardly extending protrusion.
6. The starting electrode electrolytic nickel washing and stacking system according to claim 4, characterized in that: The receiving plate (24) is rotatably mounted on the device frame (22); the second driving device includes a second pneumatic device (28) and a flipping bushing (29), the flipping bushing (29) is mounted on one end of the receiving plate (24), and the second pneumatic device (28) is mounted on the device frame (22) to drive the flipping bushing (29) to rotate.
7. The starting electrode electrolytic nickel washing and stacking system according to claim 3, characterized in that: The lifting device includes a stacking plate (30), an upper lifting plate (31), a lower lifting plate (32), a support (33), a third pneumatic device (34), and four connecting rods (35), connecting rod seats (36), and slide rails (37). The lower lifting plate (32) and the third pneumatic device (34) are mounted on the support (33), and the stacking plate (30) is mounted on the upper lifting plate (31). The upper lifting plate (31) and the lower lifting plate (32) are both equipped with the slide rails (37). The connecting rod seats (36) are slidably connected to the slide rails (37). One end of the connecting rod (35) is rotatably connected to the upper lifting plate (31) or the lower lifting plate (32), and the other end is rotatably connected to the connecting rod seats (36). The third pneumatic device (34) is used to drive the two connecting rod seats (36) to move back and forth.
8. The starting electrode electrolytic nickel washing and stacking system according to claim 7, characterized in that: The lifting device also includes a receiving platform (38), a gear (39) and an electric drive device (40). The receiving platform (38) is disposed between the stacking plate (30) and the lifting upper plate (31). The receiving platform (38) is provided with an annular rack that meshes with the gear (39). The electric drive device (40) is disposed on the lifting upper plate (31) for driving the lifting upper plate (31) to rotate.
Citation Information
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