Polar plate placing device
By adopting a sliding fit large and small disk design in the plate placement device, the problem of low efficiency of existing devices is solved, efficient plate placement is achieved, and the risks of pallet interference and plate wear are reduced.
Patent Information
- Application Number
- CN202421599930.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-08
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-07-08
AI Technical Summary
The existing plate placement device can only install one pallet at a time. After the pallet is filled with the plate, the next pallet will be installed. The efficiency is low and affects production efficiency.
Through sliding combination of large and small plates, the plates are placed directly on the large plates in turn. After all the large plates are placed, the plates are placed on the small plates. The design of slide chutes and bolts is used to achieve rapid sliding and fixing of the pallets to avoid interference from above.
It effectively improves the efficiency of plate placement, avoids the need for pallet disassembly, reduces the wear of plates, and ensures the storage effect of plates.
Smart Images

Figure CN222874563U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of battery production equipment, specifically relating to an electrode plate placement device. Background Technology
[0002] The existing production process for lead-acid battery plates involves first applying paste to the plate grids, then curing and drying the plates according to process standards to produce plates that meet the requirements. The produced plates are then manually arranged and stacked on corresponding placement fixtures for storage and transport. Currently, the placement fixtures are mostly mobile carts with frames mounted on them, and trays for placing the plates are installed on the frames using a pull-out method. To facilitate placement, a tray is placed at the bottom of the frame first, and after that tray is full of plates, the next tray is placed on top of it. Placing trays is very time-consuming and reduces production efficiency. Summary of the Invention
[0003] This invention addresses the problem that existing electrode placement devices can only install one tray at a time, and only after that tray is full can the next tray be installed for electrode placement, resulting in low efficiency and impacting production efficiency. The invention provides an electrode placement device that uses slidingly cooperating large and small trays to directly place electrode plates sequentially on the large tray. After all the large trays are filled, electrode plates are then placed on the small trays, effectively improving electrode placement efficiency.
[0004] To achieve the above objectives, the technical solution of this utility model is as follows:
[0005] An electrode plate placement device includes a base plate, on both sides of which multiple upright plates are fixedly arranged at intervals. Each upright plate has multiple vertically arranged track grooves. The track grooves of the multiple upright plates are arranged correspondingly. Multiple track grooves at the same height form a group. A tray is slidably arranged in each group of track grooves. The tray is slidably arranged in the corresponding group of track grooves. The tray can be installed and removed by pulling.
[0006] The tray includes a large tray and a small tray. One end of the large tray has a groove, and the small tray is slidably disposed in and extends out of the corresponding groove. Both the large tray and the small tray are U-shaped plate structures. The upper side of the vertical plate of the large tray near the small tray is threaded with a bolt. The upper side of the small tray near the large tray has a groove that matches the bolt. The large and small trays can be interlocked, which facilitates sliding of the large and small trays. This avoids interference from other trays when placing the electrode plates without disassembling the tray, and the bolts are used to fix the corresponding large and small trays.
[0007] Both sides of the large disk are fixedly provided with raised plates, which are slidably disposed in a corresponding set of track grooves. The ends of both sides of the small disk away from the large disk are fixedly provided with raised blocks, which are slidably disposed in the corresponding track grooves. The raised plates ensure the sliding of the large disk, the raised blocks ensure the support of the small disk, and limit the sliding of the small disk in the track groove.
[0008] Preferably, partitions are fixedly provided between the two vertical plates of the large and small plates, and multiple strip holes are evenly distributed through the horizontal plates of the large and small plates. The partitions prevent interference between the tabs of adjacent columns of electrode plates, and the strip holes reduce the contact between the electrode plates and the tray.
[0009] Preferably, the small disk and its upper partition are slidably connected to the corresponding large disk's groove to ensure that the small disk slides smoothly within the groove.
[0010] Preferably, all the trays are located above the base plate, and the multiple large trays are arranged vertically. By sliding away all the other large trays above the bottom large tray, the electrode plate can be conveniently placed on the bottom large tray.
[0011] Preferably, the bottom plate is provided with limiting plates at both ends, and the opposite side of the limiting plates is in contact with the end of the tray. The limiting plates are engaged with the corresponding upright plates. The limiting plates limit and fix the tray on one hand, and protect the pole plates on the tray on the other hand.
[0012] The beneficial effects of this utility model through the above technical solution are as follows:
[0013] 1. This utility model creates a groove on a large plate and allows a small plate to slide within it. When placing the electrode plate, the entire large plate at the top is first slid away, allowing the electrode plate to be placed on the bottom plate without interference from the upper tray. After placing the electrode plates on the large plates from bottom to top, the same method is used to place the electrode plates on the small plates. This eliminates the need to disassemble the tray and avoids interference from the upper tray when placing the electrode plates on the lower tray, effectively improving the efficiency of electrode plate placement.
[0014] 2. This utility model uses bolts to fix the large and small trays of the tray after the electrode plates have been placed, which effectively avoids the problem of the electrode plates being damaged due to relative sliding between the two, and also makes it easier to remove the tray from the upright plate later.
[0015] 3. This utility model uses a partition on the tray to ensure that the tabs at both ends of the electrode plates are positioned above the partition when the electrode plates are placed. The partition limits the electrode plates and prevents the tabs of adjacent rows of electrode plates from contacting each other, thereby effectively ensuring the storage effect of the electrode plates and avoiding interference between the electrode plates.
[0016] 4. This utility model reduces the contact between the electrode plate and the tray by opening multiple strip-shaped holes on the tray, thereby reducing or even avoiding wear on the electrode plate.
[0017] 5. This utility model uses a limiting plate to limit and fix the tray, preventing the tray from sliding in the track groove during movement and causing the tray and electrode plate to fall off. At the same time, when disassembling the tray, only one limiting plate needs to be removed. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the present invention. Figure 1 .
[0019] Figure 2 This is a schematic diagram of the structure of the present invention. Figure 2 .
[0020] Figure 3 This is a schematic diagram of the structure of the base plate and the upright plate of this utility model.
[0021] Figure 4 This is a schematic diagram of the tray installation structure of this utility model.
[0022] Figure 5 This is a schematic diagram of the structure of the tray of this utility model. Figure 1 .
[0023] Figure 6 This is a schematic diagram of the structure of the tray of this utility model. Figure 2 .
[0024] Figure 7 This is a schematic diagram of the structure of the tray of this utility model. Figure 3 .
[0025] Figure 8 This is a schematic diagram of the structure of the small plate of this utility model.
[0026] Figure 9 This is a schematic diagram of the structure of the large disk of this utility model.
[0027] The numbers in the attached diagram are as follows: 1 is the base plate, 2 is the upright plate, 3 is the track groove, 4 is the large plate, 5 is the small plate, 6 is the slide groove, 7 is the bolt, 8 is the raised plate, 9 is the partition plate, 10 is the strip hole, 11 is the limiting plate, and 12 is the raised block. Detailed Implementation
[0028] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:
[0029] like Figures 1-9As shown, this embodiment provides an electrode plate placement device, including a base plate 1. Multiple wheels (not shown in the figure) are arranged below the base plate 1 to facilitate the movement of the device and realize the transfer of the electrode plates. Multiple upright plates 2 are fixedly arranged at intervals on both sides of the base plate 1. The multiple upright plates 2 are symmetrically arranged about the base plate 1. Each upright plate 2 has multiple vertically arranged track grooves 3. The track grooves 3 of the multiple upright plates 2 are arranged correspondingly. Multiple track grooves 3 at the same height form a group. A tray is slidably arranged in each group of track grooves 3. The track grooves 3 support the tray on the one hand, and the tray can be installed, removed and taken off by sliding the tray in the track grooves 3 on the other hand.
[0030] The tray includes a large tray 4 and a small tray 5, both located above the base plate 1. Multiple large trays 4 are arranged vertically, each with a groove 6 at one end. The small trays 5 are slidably positioned within and extend from the corresponding groove 6. Both the large trays 4 and small trays 5 are U-shaped plates. Two vertical plates of the U-shaped plates limit the position of the electrode plates placed on the tray. A bolt 7 is threaded onto the upper side of the vertical plate near the small tray 5. A groove matching the bolt 7 is formed on the upper side of the small tray 5 near the large tray 4. Limiting plates 1 are provided at both ends of the base plate 1. 1. The opposite sides of the limiting plates 11 are in contact with the end of the tray. The limiting plates 11 are snapped into the corresponding upright plates 2 (the snapping structure is not shown in the figure). The snapping structure between the limiting plates 11 and the upright plates 2 can adopt the snapping structure commonly used in the prior art to achieve the fixation of the limiting plates 11 and the upright plates 2 and facilitate disassembly and assembly. When the ends of the large plate 4 and the small plate 5 that are far apart are in contact with the two limiting plates 11 respectively, the lower end of the bolt 7 corresponds to the groove. When the electrode plates are placed on the large plate 4 and the small plate 5 of the tray, the bolt 7 can be rotated to fix the large plate 4 and the small plate 5.
[0031] Both sides of the large disk 4 are fixedly provided with protruding plates 8, which are slidably disposed in a corresponding set of track grooves 3. The protruding plates 8 cooperate with the corresponding set of track grooves 3 to support the large disk 4 on the one hand and to allow the large disk 4 to slide in the corresponding set of track grooves 3 on the other hand. The small disk 5 is fixedly provided with protruding blocks 12 at one end away from the large disk 4 on both sides. The protruding blocks 12 are slidably disposed in the corresponding track grooves 3. One end of the small disk 5 is located in the corresponding slide groove 6 of the large disk 4, and the protruding blocks 12 on both sides of the other end are located in the corresponding track grooves 3 to support the small disk 5. At the same time, when the small disk 5 is slidably stored in the corresponding slide groove 6, the protruding blocks 12 are fixed at the end of the corresponding protruding plate 8 to limit the sliding of the small disk 5.
[0032] A partition 9 is fixedly installed between the two vertical plates of the large plate 4 and the small plate 5 at intervals. The small plate 5 and its upper partition 9 are slidably connected to the corresponding groove 6 of the large plate 4. When placing the electrode plates, the electrode plates are placed between two adjacent partitions 9, and the electrode tabs of the electrode plates are located above the partitions 9. The partitions 9 limit the electrode plates, so that the electrode tabs of two adjacent rows of electrode plates will not contact each other, thus avoiding interference. Multiple strip holes 10 are evenly distributed through the horizontal plates of the large plate 4 and the small plate 5. When the electrode plates are placed on the tray, due to the setting of the strip holes 10, the side of the electrode plate has less contact with the tray, thus avoiding wear between the electrode plates and the tray.
[0033] When using, such as Figure 1 As shown, move the present invention to the corresponding position, and then slide the large disk 4, as follows. Figure 2 As shown, slide all the large plates 4 except the bottom one onto the corresponding small plates 5 in sequence. Then, place the electrode plates on the bottom large plate to effectively avoid interference from the upper tray. After the bottom large plate 4 is full of electrode plates, slide the large plate 4 above it back to its original position so that the end of the large plate 4 rests on the corresponding limiting plate 11. Place the electrode plates on the reset large plate 4. Then, slide the large plates 4 back to their original position and place the electrode plates in sequence from bottom to top. When the electrode plates on all the large plates 4 are placed, slide all the small plates 5 except the bottom one into the groove 6 of the corresponding large plate 4 so that the protrusions 12 on both sides of the small plate 5 are fixed at the end of the corresponding protrusion plate 8. Then, place the electrode plates on the bottom small plate 5. Repeat the above electrode plate placement process on the large plates 4. When the electrode plates on each small plate 5 are placed, rotate the two bolts 7 corresponding to the small plate 5 to fix the large plate 4 and the small plate 5.
[0034] It should be noted that when placing the electrode plates, the electrode plates should first be placed on the large tray 4. After all the electrode plates on the large tray 4 have been placed, the electrode plates on the small tray 5 should be placed. If the electrode plates on the small tray 5 are placed first, and then the electrode plates on the large tray 4 are placed later, the large tray 4 will not be able to slide due to interference from the electrode plates on the corresponding small tray 5. Accordingly, when removing the electrode plates from the tray of this utility model, the electrode plates on the small tray 5 should be removed from top to bottom in sequence, and then the electrode plates on the large tray 4 should be removed from top to bottom, which is the reverse of the electrode plate placement process. At the same time, one of the limiting plates 11 can also be removed to remove the entire tray from the upright plate 2 for the use of the electrode plates.
[0035] The embodiments described above are merely preferred embodiments of this utility model and are not intended to limit the scope of implementation of this utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the patent claims of this utility model should be included within the scope of the patent application of this utility model.
Claims
1. A plate placement device, comprising a bottom plate (1), characterized in that: A plurality of vertical plates (2) are fixedly arranged at intervals on both sides of the bottom plate (1), each vertical plate (2) is provided with a plurality of track grooves (3) arranged up and down, the track grooves (3) of the plurality of vertical plates (2) are arranged correspondingly, a plurality of track grooves (3) at the same height form a group, and a tray is slidably arranged in each group of track grooves (3); The tray comprises a large tray (4) and a small tray (5), one end of the large tray (4) is provided with a slide groove (6), the small tray (5) is slidably arranged in the corresponding slide groove (6) and extends out of the corresponding slide groove (6), the large tray (4) and the small tray (5) are both U-shaped plate structures, the upper side of the vertical plate of the large tray (4) near the end of the small tray (5) is threadedly connected with a bolt (7), and the upper side of the small tray (5) near the end of the large tray (4) is provided with a groove matching the bolt (7); Both sides of the large plate (4) are fixedly provided with raised plates (8), and the raised plates (8) are slidably arranged in a corresponding set of track grooves (3). Both sides of the small plate (5) are fixedly provided with raised blocks (12) at one end away from the large plate (4), and the raised blocks (12) are slidably arranged in the corresponding track grooves (3).
2. A plate placement device according to claim 1, characterized in that: A partition plate (9) is fixedly arranged between the two vertical plates of the large plate (4) and the small plate (5), and a plurality of strip-shaped holes (10) are evenly distributed through the horizontal plates of the large plate (4) and the small plate (5).
3. A plate placement device according to claim 2, characterized in that: The small plate (5) and the upper partition plate (9) thereof are both slidably connected to the slide groove (6) of the corresponding large plate (4).
4. A plate placement device according to claim 1, characterized in that: The trays are all located above the bottom plate (1), and the plurality of large plates (4) correspond to each other up and down.
5. The plate placement device according to claim 1, characterized in that: Limiting plates (11) are provided at both ends of the bottom plate (1), opposite sides of the limiting plates (11) are in contact with the ends of the tray, and the limiting plates (11) are clamped with corresponding vertical plates (2).