Fully automatic online lead-acid battery matching equipment
By designing a fully automatic online distribution equipment for lead-acid batteries, the components within the framework are used to achieve automatic detection and classification, the problems of instability and inaccurate manual detection are solved, and production fluency and safety are improved.
Patent Information
- Application Number
- CN202110921880.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-08-12
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2041-08-12
AI Technical Summary
The existing lead-acid battery assembly equipment has instability and is not smooth enough during use, requires manual operation and manual inspection is not accurate enough, which poses safety risks.
A fully automatic online distribution equipment for lead-acid batteries is designed, including frames, pallets, pallets, rotary rods, probe heads and conveyor belts, to realize automatic detection and classification, avoiding inadequate manual detection, and through the design of the pressure measuring area, launching station area and discharge area, the automatic classification and delivery of batteries are realized.
Automatic detection and classification of lead-acid batteries is realized, which avoids the shortcomings of manual testing, improves production stability and safety, ensures the smooth progress of the detection process, and reduces safety hazards.
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Figure CN113625173B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of lead-acid batteries, in particular to fully automatic online assembly equipment for lead-acid batteries. Background Art
[0002] A lead-acid battery is a storage battery whose electrodes are mainly made of lead and its oxides, and whose electrolyte is a sulfuric acid solution. When the lead-acid battery is in the discharged state, the main component of the positive electrode is lead dioxide, and the main component of the negative electrode is lead. When it is in the charged state, the main components of the positive and negative electrodes are both lead sulfate.
[0003] As lead-acid batteries need to be grouped and quality inspected during the production process to ensure the stability of the batteries, the existing grouping equipment for lead-acid batteries has certain instabilities during use. At the same time, the process is not smooth enough and requires manual operation, which poses certain safety hazards and manual inspection is not accurate enough. Summary of the Invention
[0004] The purpose of the present invention is to provide a fully automatic online lead-acid battery assembly equipment to solve the problems in the above-mentioned background technology that the lead-acid battery assembly equipment has certain instability during use, the process is not smooth enough and manual operation is required, there are certain safety hazards and manual detection is not accurate enough.
[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: fully automatic online assembly equipment for lead-acid batteries, comprising a frame, a first support plate arranged in the frame, symmetrical fixed edges arranged on the upper end of the first support plate, a feeding plate arranged on one side of the frame, a pressure measuring area arranged in the frame, a push-out station area arranged in the frame, the push-out station area is located on one side of the pressure measuring area, a discharging area is arranged in the frame, the discharging area is located on one side of the pressure measuring area, the pressure measuring area comprises a first clamping plate, a detection head and a baffle, the push-out station area comprises a first rotating rod, a second rotating rod and a third rotating rod, and the discharging area comprises a conveyor belt, a first bracket, a second bracket and a second clamping plate.
[0006] By adopting the above technical solution, the pressure measuring area can test the lead-acid batteries after production to avoid inadequate manual inspection. After passing through the pressure measuring area, the batteries enter the push-out station area to classify the batteries that meet the inspection standards and those that do not meet the standards. Then they are sent to the nearest material entry and discharge area for manual external inspection, and the batteries that do not meet the standards are collected and repaired or reworked.
[0007] Furthermore, a first bracket is provided in the frame, a first slide groove is opened in the first bracket, a symmetrical first cylinder is provided at the upper end of the first bracket, a symmetrical second slide groove is opened inside the first slide groove, a slider is provided in each of the two first cylinders, and the two sliders are slidably connected to the second slide groove, a symmetrical second cylinder is provided in the first bracket, the two second cylinders are located on both sides of the second slide groove, the two second cylinders are fixedly connected to the first cylinder, and a first splint is provided at the lower end of the two first cylinders through the first slide groove.
[0008] By adopting the above technical solution, the first cylinder can drive the first clamping plate below to clamp the battery to be tested, and the second cylinder can drive the first cylinder on the left to push forward, so that the first clamping plate on the left approaches the right side and plays a clamping role.
[0009] Furthermore, a third cylinder and a fourth cylinder are provided at the upper end of the first bracket, the third cylinder is located on one side of the first cylinder, a detection head is provided at the lower end of the third cylinder through the first bracket, a baffle is provided at the lower end of the fourth cylinder through the first bracket, the fourth cylinder is located on one side of the third cylinder, and the third cylinder is located on one side of the first cylinder.
[0010] By adopting the above technical solution, the third cylinder pushes the detection head downward to detect the two poles of the battery to check whether the power is normal, and the baffle acts as a barrier under the action of the fourth cylinder to ensure that the battery will not fall onto the first rotating rod during the detection process.
[0011] Furthermore, several equidistantly distributed first rotating rods are arranged in the two fixed edges, and the two fixed edges are provided with symmetrical first drive motors and second drive motors. The two first drive motors and the second drive motors are located on both sides of the first rotating rod, and several of the first rotating rods are movably connected to the first drive motor and the second drive motor, and first belts are provided on both sides of several of the first rotating rods.
[0012] By adopting the above technical solution, the first rotating rods can drive the batteries forward when driven by the first driving motor and the second driving motor respectively, and the provided first belt can play a role in stabilizing the power.
[0013] Furthermore, symmetrical second support plates are provided in the two fixed edges, the two second support plates are movably connected to the fixed edges, symmetrical second rotating rods are provided in the two second support plates, the two second rotating rods are movably connected to the second support plates, the two second rotating rods are located on one side of the first rotating rod, symmetrical fixed plates are provided on the inner side of the frame, the two fixed plates are located above the second support plates, and fifth cylinders are provided in the two second support plates, and the lower ends of the two fifth cylinders are fixedly connected to the second support plates through fixed plates.
[0014] By adopting the above technical solution, the second pallet can move up and down under the drive of the fifth cylinder, and the second rotating rod can also move under the drive, the purpose of which is to classify the substandard batteries during transportation so that they fall down and are classified with the qualified batteries.
[0015] Furthermore, several equally distributed third rotating rods are arranged between the two fixed edges, symmetrical third drive motors and fourth drive motors are arranged in the two fixed edges, the two third drive motors and fourth drive motors are movably connected to the third rotating rod, and second belts are arranged on the front and back sides of several third rotating rods, a conveyor belt is arranged between the two fixed edges, the conveyor belt is located on one side of the third rotating rod, symmetrical fifth drive motors and sixth drive motors are arranged in the two fixed edges, the two fifth drive motors and sixth drive motors are located on one side of the third drive motor and the fourth drive motor, three equally distributed fourth rotating rods are arranged in the conveyor belt, the two fourth rotating rods are movably connected to the fifth drive motor and the sixth drive motor, and symmetrical third belts are arranged between the three fourth rotating rods.
[0016] By adopting the above technical solution, the third rotating rod can be rotated under the drive of the fifth drive motor and the sixth drive motor to complete the transmission operation, and the conveyor belt is driven by the fifth drive motor and the sixth drive motor to allow the battery to smoothly enter the bottom of the third pallet.
[0017] Furthermore, a third pallet is provided in the frame, the third pallet is located above the conveyor belt, a support is provided on the upper end of the third pallet, a sixth cylinder is provided on the upper end of the support, a first bracket is provided on the upper end of the third pallet, the sixth cylinder is located in the first bracket, a second bracket is provided at the lower end of the support through the third pallet, a plurality of equally distributed fixed blocks are provided at the lower end of the second bracket, the plurality of fixed blocks are symmetrical to each other, a second splint is provided on the inner side of the plurality of fixed blocks, and a plurality of the second splints are movably connected to the fixed blocks.
[0018] By adopting the above technical solution, the sixth cylinder pushes the second bracket downward so that the second clamping plate below clamps the battery for easy transportation.
[0019] Furthermore, several of the fixed blocks are provided with a seventh cylinder, and the front ends of several of the seventh cylinders are fixedly connected to the second clamping plate. A fifth slide groove is provided in the third support plate, and the fifth slide groove is movably connected to the second bracket. A symmetrical eighth cylinder is provided in the third support plate, and two of the eighth cylinders are movably connected to the second bracket through the fifth slide groove.
[0020] By adopting the above technical solution, the seventh cylinder can push the second clamping plate forward to clamp the battery, and the battery is sent out of the frame under the drive of the eighth cylinder to be manually packaged or packed.
[0021] Furthermore, a fourth support plate is provided in the frame, and the fourth support plate is located below the second support plate.
[0022] By adopting the above technical solution, the fourth tray can collect batteries that do not meet the standards.
[0023] Compared with the prior art, the present invention has the following beneficial effects:
[0024] 1. This fully automatic online lead-acid battery assembly equipment can test the lead-acid batteries after production through the pressure measuring area to avoid manual inspection. After passing the pressure measuring area, the batteries that meet the inspection standards and those that do not meet the standards are classified into the push-out station area, and then sent to the nearest inlet and outlet area for manual external inspection. The batteries that do not meet the standards are collected and repaired or reworked.
[0025] 2. This fully automatic online lead-acid battery assembly equipment uses the first cylinder to drive the first clamping plate below to clamp the battery to be tested. The third cylinder pushes the detection head downward to detect the two poles of the battery to check whether the power is normal. The baffle provided plays a blocking role under the action of the fourth cylinder to ensure that the battery will not fall onto the first rotating rod during the detection process.
[0026] 3. This fully automatic online lead-acid battery grouping equipment can move up and down through the second pallet driven by the fifth cylinder, and the second rotating rod can also move under the drive, its purpose is to classify substandard batteries during transportation and make them fall down and be sorted with qualified batteries. The third rotating rod can be rotated by the fifth drive motor and the sixth drive motor to complete the transmission operation. The conveyor belt is driven by the fifth drive motor and the sixth drive motor to allow the batteries to smoothly enter the bottom of the third pallet.
[0027] 4. This fully automatic online lead-acid battery assembly equipment can push the second clamping plate forward through the seventh cylinder to clamp the battery, and then send it out of the frame under the drive of the eighth cylinder to be manually packaged or packed. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 It is a schematic diagram of the device structure of the present invention;
[0029] Figure 2 For the present invention Figure 1 AA direction structural diagram;
[0030] Figure 3 For the present invention Figure 1 Schematic diagram of the cross-sectional structure of area B;
[0031] Figure 4 For the present invention Figure 1 Schematic diagram of the cross-sectional structure of area C;
[0032] Figure 5 It is a schematic diagram of the clamping area structure of the present invention.
[0033] In the figure: 1. frame; 2. first support plate; 3. fixed edge; 4. feed plate; 5. pressure measuring area; 6. ejection station area; 7. discharge area; 8. first bracket; 9. first chute; 10. first cylinder; 11. second chute; 12. slide block; 13. second cylinder; 14. first clamping plate; 15. third cylinder; 16. detection head; 17. fourth cylinder; 18. baffle; 19. first rotating rod; 20. first drive motor; 21. second drive motor; 22. first belt; 23. second support plate; 24. second rotating rod ; 25. Fixed plate; 26. Fifth cylinder; 27. Third rotating rod; 28. Third drive motor; 29. Fourth drive motor; 30. Second belt; 31. Conveyor belt; 32. Fifth drive motor; 33. Sixth drive motor; 34. Fourth rotating rod; 35. Third belt; 36. Third support plate; 37. Support platform; 38. Sixth cylinder; 39. First bracket; 40. Second bracket; 41. Fixed block; 42. Second splint; 43. Seventh cylinder; 44. Fifth slide; 45. Eighth cylinder; 46. Fourth support plate. DETAILED DESCRIPTION
[0034] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0035] See also Figure 1 , the present invention provides an embodiment: a fully automatic online lead-acid battery assembly device, including a frame 1, a first support plate 2 is provided in the frame 1, a symmetrical fixed edge 3 is provided on the upper end of the first support plate 2, a feeding plate 4 is provided on one side of the frame 1, a pressure measuring area 5 is provided in the frame 1, a pushing station area 6 is provided in the frame 1, the pushing station area 6 is located on one side of the pressure measuring area 5, a discharging area 7 is provided in the frame 1, the discharging area 7 is located on one side of the pressure measuring area 5, the pressure measuring area 5 includes a first clamping plate 14, a detection head 16 and a baffle 18, the pushing station area 6 is located on one side of the pressure measuring area 5, and the pushing station area 6 is located on one side of the pressure measuring area 5. The outgoing station area 6 includes a first rotating rod 19, a second rotating rod 24 and a third rotating rod 27, and the discharging area 7 includes a conveyor belt 31, a first bracket 39, a second bracket 40 and a second splint 42. The lead-acid batteries after production can be inspected through the pressure measuring area 5 to avoid manual inspection. After passing through the pressure measuring area 5, they enter the outgoing station area 6 to classify the batteries that meet the inspection standards and those that do not meet the standards, and then enter the discharging area 7 to be sent out for manual external inspection, and the batteries that do not meet the standards are collected and repaired or reworked.
[0036] See also Figure 2-3A first bracket 8 is provided in the frame 1, a first slide 9 is provided in the first bracket 8, a symmetrical first cylinder 10 is provided on the upper end of the first bracket 8, a symmetrical second slide 11 is provided inside the first slide 9, a slider 12 is provided in each of the two first cylinders 10, and the two sliders 12 are slidably connected to the second slide 11, a symmetrical second cylinder 13 is provided in the first bracket 8, the two second cylinders 13 are located on both sides of the second slide 11, the two second cylinders 13 are fixedly connected to the first cylinder 10, and the lower ends of the two first cylinders 10 are provided with a first splint 14 through the first slide 9, a third cylinder 15 and a fourth cylinder 17 are provided on the upper end of the first bracket 8, the third cylinder 15 is located on one side of the first cylinder 10, and the lower end of the third cylinder 15 is provided through the first bracket 8 There is a detection head 16, a baffle 18 is provided at the lower end of the fourth cylinder 17 through the first bracket 8, the fourth cylinder 17 is located on one side of the third cylinder 15, and the third cylinder 15 is located on one side of the first cylinder 10. A plurality of equally distributed first rotating rods 19 are provided in the two fixed sides 3, and the two fixed sides 3 are provided with symmetrical first drive motors 20 and second drive motors 21. The two first drive motors 20 and the second drive motors 21 are located on both sides of the first rotating rod 19, and a plurality of first rotating rods 19 are movably connected to the first drive motor 20 and the second drive motor 21. A first belt 22 is provided on both sides of the first rotating rod 19, and a symmetrical second support plate 23 is provided in each fixed side 3. The two second support plates 23 are movably connected to the fixed side 3, and the two second support plates 23 are provided in the two second support plates 23. A symmetrical second rotating rod 24 is provided, and the two second rotating rods 24 are movably connected to the second supporting plate 23. The two second rotating rods 24 are located on one side of the first rotating rod 19. A symmetrical fixed plate 25 is provided on the inner side of the frame 1, and the two fixed plates 25 are located above the second supporting plate 23. A fifth cylinder 26 is provided in each of the two second supporting plates 23, and the lower ends of the two fifth cylinders 26 are fixedly connected to the second supporting plate 23 through the fixed plate 25. A plurality of equally distributed third rotating rods 27 are provided between the two fixed edges 3, and a symmetrical third drive motor 28 and a fourth drive motor 29 are provided in the two fixed edges 3. The two third drive motors 28 and the fourth drive motor 29 are movably connected to the third rotating rod 27. A second belt 30 is provided on the front and back sides of the plurality of third rotating rods 27. A conveyor belt 31 is provided between the fixed edges 3, and the conveyor belt 31 is located on one side of the third rotating rod 27. A symmetrical fifth drive motor 32 and a sixth drive motor 33 are provided in the two fixed edges 3. The two fifth drive motors 32 and the sixth drive motors 33 are located on one side of the third drive motor 28 and the fourth drive motor 29. Three equally spaced fourth rotating rods 34 are provided in the conveyor belt 31. The two fourth rotating rods 34 are movably connected to the fifth drive motor 32 and the sixth drive motor 33. A symmetrical third belt 35 is provided between the three fourth rotating rods 34. The first cylinder 10 can respectively drive the first clamping plate 14 below to clamp the battery to be tested. The third cylinder 15 pushes the detection head 16 downward to detect the two poles of the battery to detect whether the power is normal.The baffle 18, driven by the fourth cylinder 17, acts as a barrier, ensuring that batteries do not fall onto the first rotating rod 19 during the inspection process. The second support plate 23 can be moved up and down by the fifth cylinder 26, and the second rotating rod 24 can also move under this drive. This allows substandard batteries to be sorted during transportation, causing them to fall downward and be sorted with qualified batteries. The third rotating rod 27 can be rotated by the fifth and sixth drive motors 32 and 33 to complete the conveying operation. The conveyor belt 31, driven by the fifth and sixth drive motors 32 and 33, allows the batteries to smoothly enter the lower part of the third support plate 36.
[0037] See also Figure 4-5 A third support plate 36 is provided in the frame 1. The third support plate 36 is located above the conveyor belt 31. A support platform 37 is provided on the upper end of the third support plate 36. A sixth cylinder 38 is provided on the upper end of the support platform 37. A first bracket 39 is provided on the upper end of the third support plate 36. The sixth cylinder 38 is located in the first bracket 39. A second bracket 40 is provided on the lower end of the support platform 37 through the third support plate 36. A plurality of equally distributed fixed blocks 41 are provided on the lower end of the second bracket 40. The plurality of fixed blocks 41 are symmetrical. Second clamping plates 42 are provided on the inner sides of the plurality of fixed blocks 41. The plurality of second clamping plates 42 are movably connected to the fixed blocks 41. The plurality of fixed blocks 41 are symmetrical. 1 is provided with a seventh cylinder 43, and the front ends of several seventh cylinders 43 are fixedly connected to the second clamping plate 42. A fifth slide 44 is provided in the third support plate 36, and the fifth slide 44 is movably connected to the second bracket 40. A symmetrical eighth cylinder 45 is provided in the third support plate 36, and the two eighth cylinders 45 are movably connected to the second bracket 40 through the fifth slide 44. A fourth support plate 46 is provided in the frame 1, and the fourth support plate 46 is located below the second support plate 23. The second clamping plate 42 can be pushed forward by the seventh cylinder 43 to clamp the battery, and is sent out of the frame 1 under the drive of the eighth cylinder 45 to be manually packaged or packed.
[0038] Working principle: First, the lead-acid battery to be inspected is placed on the feeding plate 4, and then the first cylinder 10 pushes the first clamping plate 14 downward to the front and rear ends of the lead-acid battery, and then the second cylinder 13 drives the first clamping plate 14 on the left to move to the right and tighten the lead-acid battery. At this time, the third cylinder 15 pushes the detection head 16 downward to detect both sides of the battery. The baffle 18 set during the detection plays a blocking role under the action of the fourth cylinder 17 to ensure that the battery will not fall onto the first rotating rod 19 during the detection process. After the detection, the baffle 18 rises upward to allow the battery to flow to the first rotating rod 19, and then the first drive motor 20 and the second drive motor 21 respectively drive the first rotating rod 19 to rotate, so that it drives the battery to move forward for classification. When a problematic battery is detected, it moves to the middle section of the fixed side 3 and the first rotating rod 19 stops rotating, and the two second support plates 23 are driven by the fifth cylinder 26 in the fixed plate 25 to lift it, leaving a gap in the middle. 19 rotates to send the problematic batteries to the fourth pallet 46 under the second pallet 23, and they are collected manually for re-inspection or repair and maintenance or rework, and then the second pallet 23 is moved back to its original position to continue to send the batteries with no problems to the right. At this time, the third drive motor 28 and the fourth drive motor 29 respectively drive the third rotating rod 27 to rotate so that the batteries can be sent out smoothly. At the same time, the fifth drive motor 32 and the sixth drive motor 33 drive the fourth rotating rod 34 to rotate so that the conveyor belt 31 is transported and the batteries are moved smoothly to the bottom of the third pallet 36. When the inspected batteries are moved to the bottom of the third pallet 36, the sixth cylinder 38 pushes the support 37 downward so that the fixed block 41 below is located at the front and rear sides of the battery, and the seventh cylinder 43 in the fixed block 41 pushes the second clamping plate 42 inward to clamp the battery, and the first bracket 39 and the support 37 are driven by the eighth cylinder 45 on both sides to move the fixed batteries to the right along the fifth slide 44, and they can be collected and packed manually.
[0039] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
Claims
1. A fully automatic online lead-acid battery assembly device, comprising a frame (1), characterized in that: A first support plate (2) is provided in the frame (1), a symmetrical fixed edge (3) is provided at the upper end of the first support plate (2), a feed plate (4) is provided on one side of the frame (1), a pressure measuring area (5) is provided in the frame (1), a push-out station area (6) is provided in the frame (1), the push-out station area (6) is located on one side of the pressure measuring area (5), a discharge area (7) is provided in the frame (1), the discharge area (7) is located on one side of the pressure measuring area (5), the pressure measuring area (5) includes a first clamping plate (14), a detection head (16) and a baffle (18), the push-out station area (6) includes a first rotating rod (19), a second rotating rod (24) and a third rotating rod (27), and the discharge area (7) includes a conveyor belt (31), a first bracket (39), a second bracket (40) and a second clamping plate (42); A plurality of equally spaced first rotating rods (19) are provided in the two fixed edges (3), a symmetrical first drive motor (20) and a second drive motor (21) are provided in both fixed edges (3), the two first drive motors (20) and the second drive motors (21) are located on both sides of the first rotating rod (19), a plurality of the first rotating rods (19) are movably connected to the first drive motor (20) and the second drive motor (21), a first belt (22) is provided on both sides of the plurality of the first rotating rods (19), a symmetrical second support plate (23) is provided in the two fixed edges (3), and the two first drive motors (20) and the second drive motor (21) are provided on both sides of the first rotating rod (19). The second support plates (23) are movably connected to the fixed edge (3); symmetrical second rotating rods (24) are provided in the two second support plates (23); the two second rotating rods (24) are movably connected to the second support plates (23); the two second rotating rods (24) are located on one side of the first rotating rod (19); symmetrical fixed plates (25) are provided on the inner side of the frame (1); the two fixed plates (25) are located above the second support plates (23); the two second support plates (23) are both provided with a fifth cylinder (26); the lower ends of the two fifth cylinders (26) are fixedly connected to the second support plates (23) through the fixed plates (25); A plurality of equally spaced third rotating rods (27) are provided between the two fixed edges (3), a symmetrical third drive motor (28) and a fourth drive motor (29) are provided in the two fixed edges (3), the two third drive motors (28) and the fourth drive motor (29) are movably connected to the third rotating rod (27), a plurality of second belts (30) are provided on both sides of the front and rear of the third rotating rods (27), a conveyor belt (31) is provided between the two fixed edges (3), the conveyor belt (31) is located on one side of the third rotating rod (27), and the two A symmetrical fifth drive motor (32) and a sixth drive motor (33) are provided in each of the fixed edges (3), the two fifth drive motors (32) and the sixth drive motors (33) are located on one side of the third drive motor (28) and the fourth drive motor (29), three equally spaced fourth rotating rods (34) are provided in the conveyor belt (31), the two fourth rotating rods (34) are movably connected to the fifth drive motor (32) and the sixth drive motor (33), and symmetrical third belts (35) are provided between the three fourth rotating rods (34); A third support plate (36) is provided in the frame (1), and the third support plate (36) is located above the conveyor belt (31). A support platform (37) is provided at the upper end of the third support plate (36), and a sixth cylinder (38) is provided at the upper end of the support platform (37). A first bracket (39) is provided at the upper end of the third support plate (36), and the sixth cylinder (38) is located in the first bracket (39). A second bracket (40) is provided at the lower end of the support platform (37) through the third support plate (36), and a plurality of equally distributed fixed blocks (41) are provided at the lower end of the second bracket (40), and the plurality of fixed blocks (41) are symmetrical with each other. A second clamping plate (42) is provided on the inner side of the plurality of fixed blocks (41), and the plurality of second clamping plates (42) are movably connected to the fixed blocks (41).
2. The fully automatic online lead-acid battery assembly equipment according to claim 1, characterized in that: A first bracket (8) is provided in the frame (1), a first slide groove (9) is provided in the first bracket (8), a symmetrical first cylinder (10) is provided at the upper end of the first bracket (8), a symmetrical second slide groove (11) is provided inside the first slide groove (9), a slider (12) is provided in each of the two first cylinders (10), and the two sliders (12) are slidably connected to the second slide groove (11), a symmetrical second cylinder (13) is provided in the first bracket (8), the two second cylinders (13) are located on both sides of the second slide groove (11), the two second cylinders (13) are fixedly connected to the first cylinder (10), and a first clamping plate (14) is provided at the lower end of the two first cylinders (10) through the first slide groove (9).
3. The fully automatic online lead-acid battery assembly equipment according to claim 2, characterized in that: A third cylinder (15) and a fourth cylinder (17) are provided at the upper end of the first bracket (8); a detection head (16) is provided at the lower end of the third cylinder (15) through the first bracket (8); a baffle (18) is provided at the lower end of the fourth cylinder (17) through the first bracket (8); the fourth cylinder (17) is located on one side of the third cylinder (15), and the third cylinder (15) is located on one side of the first cylinder (10).
4. The fully automatic online lead-acid battery assembly equipment according to claim 3, characterized in that: A seventh cylinder (43) is provided in each of the fixed blocks (41), and the front ends of the plurality of the seventh cylinders (43) are fixedly connected to the second clamping plate (42). A fifth sliding groove (44) is provided in the third supporting plate (36), and the fifth sliding groove (44) is movably connected to the second bracket (40). Symmetrical eighth cylinders (45) are provided in the third supporting plate (36), and the two eighth cylinders (45) are movably connected to the second bracket (40) through the fifth sliding groove (44).
5. The fully automatic online lead-acid battery assembly equipment according to claim 4, characterized in that: A fourth support plate (46) is provided in the frame (1), and the fourth support plate (46) is located below the second support plate (23).
Citation Information
Patent Citations
Consistent matching and screening equipment for cells of power lithium battery pack
CN212856712U