Adjustable automobile blade battery assembling tool
By designing adjustable automotive blade battery assembly tooling, using clamping structures, transmission components and other components, adjustable clamping and welding of the battery cell is achieved, solving the limitations and inconvenience of existing tooling, and improving welding stability and adaptability.
Patent Information
- Application Number
- CN202510664336.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-22
- Publication Date
- 2025-08-19
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing automotive blade battery assembly tooling cannot be adjusted according to the size and length of the battery cell, and the use limitations are great, and peripheral auxiliary equipment is required to limit the movement of the tooling, which is inconvenient to use.
An adjustable automobile blade battery assembly tool including a clamping structure, transmission assembly, limit adjustment structure, adjustment assembly and pressing structure is designed. The adjustable clamping and welding of the battery cell is realized through electric push rods and motor drives, ensuring welding stability.
Adjustable clamping according to the cell size and length is realized, the work adaptability and welding stability of the tooling are improved, the operation process is simplified, and the overall linkage and welding effect of the tooling are enhanced.
Smart Images

Figure CN120502945A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of battery assembly, in particular to an adjustable automobile blade battery assembly tool. Background Art
[0002] Existing electric vehicles generally use cylindrical batteries or blade batteries. Blade batteries, in particular, are batteries that are installed in an array into a battery pack, which can save many auxiliary parts and save space. Usually, several batteries are welded into a battery pack for use.
[0003] The Chinese patent with publication number "CN220029137U" discloses "an automotive blade battery assembly tool, belonging to the field of battery assembly technology. The automotive blade battery assembly tool includes a tool body, the tool body includes a workbench, and the top of the workbench is provided with clamping mechanisms on both sides near several workstations." Although it can achieve the effect of "effectively fixing the two sides of the battery cell, while improving the quality of battery cell assembly welding, and having high practical value", its setting method can only be used for limited clamping of battery cells of fixed size, and cannot be adjusted accordingly according to the size and length of the battery cell. Its use has limitations. At the same time, the use of its tool requires external auxiliary equipment to limit the position of the handle, and it cannot affect the forward movement of its moving mechanism. The tool is inconvenient to use. Therefore, the present invention proposes an adjustable automotive blade battery assembly tool. Summary of the Invention
[0004] The main purpose of the present invention is to provide an adjustable automotive blade battery assembly tool, which can effectively solve the technical problems raised in the background technology.
[0005] To achieve the above object, the technical solution adopted by the present invention is:
[0006] An adjustable automotive blade battery assembly tool comprises a tool body, a workbench is provided on the top of the tool body, a plurality of battery cells are provided on the top of the workbench, and a clamping structure is provided on the top of the tool body;
[0007] Material toggling mechanism, its both sides respectively have a cylinder pressure, and the cylinder pressure bar connects swing arm, and the swing arm end face has hook portion, and a bar passes position between the end of two swing arms and the hook portion. The swing arm ends up being rotated by two swing arms and the hook portion is in a rotation axis direction, and the swing arm is in a rotation axis direction.
[0008] As a preferred technical solution of the present invention, the clamping structure also includes two groups of welding components, the welding components include a mounting plate, the mounting plate and the slider are fixedly connected, an electric push rod is provided on one side of the mounting plate, and one end of the electric push rod passes through the mounting plate and is fixedly connected to a connecting plate, and a welding mechanism is provided at one end of the connecting plate.
[0009] As a preferred technical solution of the present invention, the clamping structure also includes two sets of transmission components, the transmission components include two serrated plates and a motor, the serrated plates are fixedly connected to the gantry, the motor is arranged on one side of the fixed plate, and the output shaft of the motor passes through the fixed plate and is fixedly connected to a gear transmission member, and the gear transmission member is meshed with the serrated plates.
[0010] As a preferred technical solution of the present invention, a sliding hole is opened on the outside of the storage rack 1, the fixing rack 2 is slidably arranged inside the sliding hole of the storage rack 1, the spring 1 is located on the periphery of the corresponding movable rod, and the horizontal positions of the push plate and the sphere are adaptively matched.
[0011] As a preferred technical solution of the present invention, a limit adjustment structure is provided on the outside of the second storage rack, and the limit adjustment structure includes a gantry frame 2 and a limit slot plate. The gantry frame 2 and the second storage rack are fixedly connected, and the limit slot plate and the baffle are fixedly connected. Two guide rods 1 are connected through the top of the gantry frame 2, and the two ends of the two guide rods 1 are fixedly connected by a triangular block and a fixed plate 2 respectively. Two springs 2 are provided between the triangular block and the inner top surface of the gantry frame 2, and a fixed rod is fixedly connected to the outside of the fixed plate 2.
[0012] As a preferred technical solution of the present invention, an adjustment component is provided on the outside of the fixed plate one, and the adjustment component includes a horizontal plate one, and the horizontal plate one is fixedly connected to the fixed plate one. An electric push rod three is provided on the outside of the horizontal plate one, and one end of the electric push rod three passes through the horizontal plate one and is fixedly connected to the fixed plate three, and one side of the fixed plate three is fixedly connected to a plug plate.
[0013] As a preferred technical solution of the present invention, the triangular block and the limiting slot plate are adaptively matched, the limiting slot plate and the baffle form an L shape, and the second spring is located on the periphery of the corresponding guide rod one.
[0014] As a preferred technical solution of the present invention, one end of the inserting plate is arranged at an angle, and the horizontal positions of the inserting plate and the fixing rod match.
[0015] As a preferred technical solution of the present invention, a pressing structure is provided between the two mounting plates, and the pressing structure includes a horizontal plate 2, and the horizontal plate 2 is fixedly provided between the two mounting plates. The horizontal plate 2 is connected to a threaded rod through a thread, and one end of the threaded rod is rotatably connected to a storage rack 3, and the inner side of the storage rack 3 is rotatably connected to a pressure roller, and two guide rods 2 are fixedly provided on the top of the storage rack 3.
[0016] As a preferred technical solution of the present invention, the base plate, the gantry frame and the tooling body are fixedly connected, and the battery cells and the two limit blocks at corresponding positions are adaptively matched.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] 1. The setting of the clamping structure is conducive to the tooling to clamp and fix the battery cell according to the size and length of the battery cell. The push plate can act on the sphere while the slider moves, so that the limit block moves toward the battery cell and fixes it, which is conducive to improving the overall linkage of the tooling. The welding assembly cooperates with the clamping structure to weld the battery cell in the fixed position;
[0019] 2. By setting the transmission assembly in conjunction with the clamping structure, it is beneficial for the slider to slide on the guide rail, and the position of the welding mechanism and the push plate can be controlled. The meshing setting of the gear transmission part and the serrated plate can prevent the slider from sliding when it stops;
[0020] 3. By setting a limit adjustment structure in conjunction with the clamping structure, it is beneficial to prevent the limit slot plate from being blocked when the limit block moves toward the battery cell. After the limit block contacts the surface of the battery cell, the limit slot plate can be blocked by the triangular block to prevent it from sliding back and causing the limit block to lose its limiting effect on the battery cell;
[0021] 4. By providing an adjustment component in conjunction with the limit adjustment structure, it is beneficial to simultaneously release the restriction on the battery cell when the slider slides back to the initial position. The contact between the plug plate and the fixed rod causes the triangular block to move up and maintain it for a predetermined time, ensuring that the limit slot plate is not affected by the triangular block when it returns to the initial position under the action of the spring.
[0022] 5. By setting a pressing structure in conjunction with a clamping structure, it is helpful to adjust the position of the pressure roller according to the height of the battery cell, and then press the top of the battery cell through the pressure roller. The pressure roller cooperates with the limit block to press and limit the top and side of the battery cell to further ensure the working stability of the battery cell during welding. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 This is a schematic diagram of the overall three-dimensional structure of an adjustable automotive blade battery assembly tooling of the present invention;
[0024] Figure 2 This is a schematic diagram of the three-dimensional structure of a slider of an adjustable automotive blade battery assembly tooling of the present invention;
[0025] Figure 3 This is a schematic diagram of the three-dimensional structure of a gear transmission component of an adjustable automotive blade battery assembly tool of the present invention;
[0026] Figure 4 This is a schematic diagram of the disassembled three-dimensional structure of the electric push rod 2 and the storage rack 1 of the adjustable automobile blade battery assembly tool of the present invention;
[0027] Figure 5 This is a schematic diagram of the three-dimensional structure of a storage rack 2 of an adjustable automotive blade battery assembly tool of the present invention;
[0028] Figure 6 This is a schematic diagram of the disassembled three-dimensional structure of the movable rod and the second storage rack of an adjustable automobile blade battery assembly tool of the present invention;
[0029] Figure 7 The invention provides an adjustable automobile blade battery assembly tool Figure 6 Enlarged view of point A in the middle;
[0030] Figure 8 This is a schematic diagram of the three-dimensional structure of a limiting slot plate of an adjustable automotive blade battery assembly tooling of the present invention;
[0031] Figure 9 This is a schematic diagram of the three-dimensional structure of an insert plate of an adjustable automotive blade battery assembly tooling of the present invention;
[0032] Figure 10 This is a schematic diagram of the three-dimensional structure of a pressure roller of an adjustable automotive blade battery assembly tool of the present invention;
[0033] Figure 11 This is a schematic side view of the overall structure of an adjustable automotive blade battery assembly tool of the present invention;
[0034] Figure 12 This is a schematic diagram of the overall top view structure of a serrated plate of an adjustable automotive blade battery assembly tooling of the present invention.
[0035] In the figure: 1. Tool body; 2. Workbench; 3. Battery cell; 4. Clamping structure; 5. Limit adjustment structure; 6. Pressing structure; 7. Bottom plate; 8. Gantry frame 1; 9. Guide rail; 10. Slider; 11. Serrated plate; 12. Mounting plate; 13. Electric push rod 1; 14. Connecting plate; 15. Welding mechanism; 16. Fixed plate 1; 17. Motor; 18. Gear transmission element; 19. Storage rack 1; 20. Electric push rod 2; 21. Fixed rack 1; 22. Fixed rack 2; 2 3. Push plate; 24. Storage rack 2; 25. Movable rod; 26. Sphere; 27. Limit block; 28. Baffle; 29. Spring 1; 30. Gantry 2; 31. Limit slot plate; 32. Guide rod 1; 33. Triangular block; 34. Fixed plate 2; 35. Spring 2; 36. Fixed rod; 37. Horizontal plate 1; 38. Electric push rod 3; 39. Fixed plate 3; 40. Insert plate; 41. Horizontal plate 2; 42. Threaded rod; 43. Storage rack 3; 44. Pressure roller; 45. Guide rod 2. DETAILED DESCRIPTION
[0036] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0037] like Figures 1-12 As shown, an adjustable automotive blade battery assembly tool includes a tool body 1, a workbench 2 is provided on the top of the tool body 1, and a plurality of battery cells 3 are provided on the top of the workbench 2, and a clamping structure 4 is provided on the top of the tool body 1;
[0038] The clamping structure 4 includes two bottom plates 7 and two gantry frames 8. The top of the gantry frame 8 is fixedly provided with a guide rail 9. The outside of the guide rail 9 is slidably provided with a slider 10, and the outside of the slider 10 is fixedly provided with a fixed plate 16. The outside of the fixed plate 16 is fixedly connected to a shelf 19. The outside of the shelf 19 is provided with an electric push rod 20, and one end of the electric push rod 20 passes through the shelf 19 and is fixedly connected to a fixed frame 21. The shelf 19 is slidably connected to the fixed frame 21. 22, a push plate 23 is rotatably connected between the fixed frame 1 21 and the fixed frame 2 22, and a plurality of racks 24 are fixedly provided on the top of the bottom plate 7. The racks 24 are connected through two movable rods 25, one end of the movable rod 25 is fixedly connected to a sphere 26, and the other ends of the two movable rods 25 are fixedly connected by a limit block 27, and a baffle 28 is fixedly connected between the outsides of the two movable rods 25, and two springs 1 29 are provided between the baffle 28 and the inner end of the rack 24.
[0039] The clamping structure 4 can clamp and fix the position of the battery cell 3. When the slider 10 moves, the push plate 23 can act on the ball 26 to move the limit block 27 toward the battery cell 3 and fix it, which is beneficial to improve the overall linkage of the tooling.
[0040] In this embodiment, the clamping structure 4 also includes two groups of welding components, the welding components include a mounting plate 12, the mounting plate 12 and the slider 10 are fixedly connected, an electric push rod 13 is provided on one side of the mounting plate 12, and one end of the electric push rod 13 passes through the mounting plate 12 and is fixedly connected to a connecting plate 14, and a welding mechanism 15 is provided at one end of the connecting plate 14.
[0041] The welding assembly cooperates with the clamping structure 4 to weld the battery core 3 in a fixed position.
[0042] In this embodiment, the clamping structure 4 also includes two sets of transmission components, which include two serrated plates 11 and a motor 17. The serrated plates 11 are fixedly connected to the gantry 8. The motor 17 is arranged on one side of the fixed plate 16, and the output shaft of the motor 17 passes through the fixed plate 16 and is fixedly connected to a gear transmission member 18. The gear transmission member 18 is meshed with the serrated plate 11.
[0043] The transmission assembly cooperates with the clamping structure 4 to enable the slider 10 to slide on the guide rail 9, and can control the position of the welding mechanism 15 and the push plate 23. The meshing arrangement of the gear transmission member 18 and the serrated plate 11 can prevent the slider 10 from sliding when it stops.
[0044] In this embodiment, a sliding hole is opened on the outside of the storage rack 19, and the fixing frame 22 is slidably arranged inside the sliding hole of the storage rack 19. The spring 1 29 is located on the periphery of the corresponding movable rod 25, and the horizontal positions of the push plate 23 and the ball 26 are adaptively matched.
[0045] When the electric push rod 20 acts on the fixed frame 1 21 to move the push plate 23, the push plate 23 acts on the fixed frame 22 to slide in the sliding hole of the storage rack 1 19.
[0046] In this embodiment, a limit adjustment structure 5 is provided on the outside of the storage rack 24, and the limit adjustment structure 5 includes a gantry 2 30 and a limit slot plate 31. The gantry 2 30 and the storage rack 24 are fixedly connected, and the limit slot plate 31 and the baffle 28 are fixedly connected. Two guide rods 1 32 are connected through the top of the gantry 2 30, and the two ends of the two guide rods 1 32 are fixedly connected by a triangular block 33 and a fixed plate 2 34 respectively. Two springs 2 35 are provided between the triangular block 33 and the inner top surface of the gantry 2 30, and a fixed rod 36 is fixedly connected to the outside of the fixed plate 2 34.
[0047] The limit adjustment structure 5 cooperates with the clamping structure 4 to prevent the limit slot plate 31 from being blocked when the limit block 27 moves toward the battery cell 3. After the limit block 27 contacts the surface of the battery cell 3, the limit slot plate 31 can be blocked by the triangular block 33 to prevent it from sliding back and causing the limit block 27 to lose its limiting effect on the battery cell 3.
[0048] In this embodiment, an adjustment component is provided on the outside of the fixed plate 16, and the adjustment component includes a horizontal plate 37. The horizontal plate 37 is fixedly connected to the fixed plate 16. An electric push rod 38 is provided on the outside of the horizontal plate 37, and one end of the electric push rod 38 passes through the horizontal plate 37 and is fixedly connected to the fixed plate 39. One side of the fixed plate 39 is fixedly connected to the plug plate 40.
[0049] The adjustment assembly cooperates with the limit adjustment structure 5 to simultaneously release the restriction on the battery cell 3 when the slider 10 slides back to the initial position. The triangle block 33 moves up and remains there for a predetermined time through the contact between the plug plate 40 and the fixing rod 36, which ensures that the limit slot plate 31 is not affected by the triangle block 33 when it returns to the initial position under the action of the spring 29.
[0050] In this embodiment, the triangular block 33 and the limiting slot plate 31 are adaptively matched, the limiting slot plate 31 and the baffle 28 form an L shape, and the second spring 35 is located at the periphery of the corresponding guide rod 1 32.
[0051] Under the action of the second spring 35 , the triangular block 33 is inserted into the slot of the limiting slot plate 31 to limit it.
[0052] In this embodiment, one end of the inserting plate 40 is tilted, and the horizontal positions of the inserting plate 40 and the fixing rod 36 match.
[0053] One end of the inserting plate 40 is tilted to facilitate contact with the fixing rod 36 and act on the fixing rod 36 to move upward.
[0054] In this embodiment, a pressing structure 6 is provided between the two mounting plates 12, and the pressing structure 6 includes a horizontal plate 2 41, which is fixedly provided between the two mounting plates 12, and the horizontal plate 2 41 is connected to a threaded rod 42 through a thread, and one end of the threaded rod 42 is rotatably connected to a storage rack 3 43, and the inner side of the storage rack 3 43 is rotatably connected to a pressure roller 44, and two guide rods 2 45 are fixedly provided on the top of the storage rack 3 43.
[0055] The pressing structure 6 cooperates with the clamping structure 4 to adjust the position of the pressing roller 44 according to the height of the battery cell 3, and then presses the top of the battery cell 3 through the pressing roller 44. The pressing roller 44 cooperates with the limit block 27 to press and limit the top and side of the battery cell 3 to further ensure the working stability of the battery cell 3 during welding.
[0056] In this embodiment, the base plate 7, the gantry 8 and the tooling body 1 are fixedly connected, and the battery cells 3 and the two limit blocks 27 at corresponding positions are adaptively matched.
[0057] One battery cell 3 corresponds to two limit blocks 27 , which facilitates positioning and limiting of the battery cell 3 .
[0058] It should be noted that the present invention is an adjustable automotive blade battery assembly tool. Before use, the tool is placed in the required location to achieve working conditions.
[0059] First, place several battery cells 3 on the corresponding positions on the workbench 2 so that they reach the following Figure 1 The first step is to rotate the electric push rod 20 according to the length of the battery cell 3, so that the fixed frame 21 moves in the opposite direction of the electric push rod 20 with one end of the push plate 23. At the same time, the other end of the push plate 23 acts on the fixed frame 22 to slide in the direction of the electric push rod 20 inside the sliding hole of the storage rack 19 until the fixed frame 21 moves to the predetermined position and stops. At this time, the push plate 23 is tilted, and the tilted surface of the push plate 23 is adapted to the horizontal position of the sphere 26. Then, according to the height of the battery cell 3, the threaded rod 42 is rotated to adapt the pressure roller 44 to the top position of the battery cell 3. The motor 17 is started to make the gear transmission member 18 and the serrated plate 11 mesh and move. The slider 10 slides on the guide rail 9. Since the push plate 23 is ahead of the position of the welding mechanism 15, the push plate 23 contacts the ball 26 first during the movement of the slider 10, and acts on the movable rod 25 to push the limit block 27 toward the battery cell 3. The movable rod 25 moves synchronously with the baffle 28 and the limit slot plate 31. The limit slot plate 31 cooperates with the spring 2 35 to make the triangular block 33 move up and down continuously when moving toward the battery cell 3. When one side of the limit block 27 contacts the surface of the battery cell 3, the triangular block 33 is inserted into the slot of the limit slot plate 31 to block it, which can prevent the limit slot plate 31 from sliding back and causing the limit block 27 to lose its limiting effect on the battery cell 3.
[0060] When the welding mechanism 15 moves to the initial position corresponding to the battery cell 3 under the drive of the slider 10, the slider 10 stops moving. At this time, the battery cell 3 at the corresponding position has already been limited by the limit block 27. At the same time, the top of the battery cell 3 is pressed by the pressure roller 44. The battery cell 3 is fixed by the pressure roller 44 and the limit block 27 at the same time to improve stability. Then, the welding mechanism 15 is pushed toward the battery cell 3 to a predetermined position by the electric push rod 13 and then stopped. At this time, welding work can be carried out. After the welding is completed, the welding mechanism 15 can be returned to the initial position by the electric push rod 13. Then, the motor 17 is started to make the slider 10 continue to move. According to the above operation, several battery cells 3 can be welded in sequence.
[0061] When all the cells 3 on the workbench 2 have completed welding, the electric push rod 13 and the electric push rod 3 38 are started. The electric push rod 13 makes the welding mechanism 15 return to the initial position, and the electric push rod 3 38 makes the plug plate 40 move to the predetermined position and then stop. The electric push rod 2 20 fixes the frame 1 21, the push plate 23 and the fixation frame 2 22 and returns to the initial position. Then, the threaded rod 42 makes the pressure roller 44 move up to the predetermined position and then stop. At this time, if the slider 10 is moved toward Figure 1 In the case of sliding back to the initial position: the welding mechanism 15 will not contact the battery cell 3, the push plate 23 will not affect the ball 26, and the inclined surface of the inserting plate 40 will contact the several fixing rods 36 in sequence. At the same time, the pressure roller 44 will not contact the top of the battery cell 3. The motor 17 is reversed to make the slider 10 slide back to the initial position. During the process, the inclined surface of the inserting plate 40 acts on the fixing rod 36 to move up, so that the triangular block 33 is pulled out of the card slot of the limiting slot plate 31 to release the limit of the limiting slot plate 31. Since the top of the plug-in board 40 has a long flat surface, the position of the triangular block 33 will remain for a certain period of time without falling after the fixing rod 36 moves upward to avoid affecting the sliding back of the limit slot plate 31, and the limit block 27 and the limit slot plate 31 quickly return to their initial positions under the action of the spring 1 29, releasing the restriction on the battery cell 3. When the plug-in board 40 is removed from the corresponding fixing rod 36 area, the triangular block 33 is moved down again under the action of the spring 2 35 and inserted into the corresponding slot of the limit slot plate 31. When the slider 10 returns to the position as shown in FIG. Figure 1 After the initial position stops, the tooling is in the following Figure 1 In the initial state, that is, all the limiting blocks 27 are not in contact with the surface of the battery cell 3, at this time, a plurality of battery cells 3 form a battery cell group, which can be installed into the required battery pack.
Claims
1. An adjustable automotive blade battery assembly tool, comprising a tool body (1), a workbench (2) disposed on the top of the tool body (1), and a plurality of battery cells (3) disposed on the top of the workbench (2), characterized in that: A clamping structure (4) is provided on the top of the tool body (1); The clamping structure (4) includes two bottom plates (7) and two gantry frames (8). A guide rail (9) is fixedly provided on the top of the gantry frame (8). A slider (10) is slidably provided on the outside of the guide rail (9), and a fixed plate (16) is fixedly provided on the outside of the slider (10). The outside of the fixed plate (16) is fixedly connected to a storage rack (19). An electric push rod (20) is provided on the outside of the storage rack (19), and one end of the electric push rod (20) passes through the storage rack (19) and is fixedly connected to a fixed rack (21). The storage rack (19) is slidably connected to the fixed rack (21). (22), a push plate (23) is rotatably connected between the fixed frame 1 (21) and the fixed frame 2 (22), a plurality of storage racks 2 (24) are fixedly provided on the top of the bottom plate (7), the storage racks 2 (24) are connected through two movable rods (25), one end of the movable rod (25) is fixedly connected to a sphere (26), the other ends of the two movable rods (25) are fixedly connected through a limit block (27), and a baffle (28) is fixedly connected between the outsides of the two movable rods (25), and two springs 1 (29) are provided between the baffle (28) and the inner end of the storage rack 2 (24).
2. The adjustable automotive blade battery assembly tool according to claim 1, characterized in that: The clamping structure (4) further includes two sets of welding assemblies, wherein the welding assemblies include a mounting plate (12), wherein the mounting plate (12) and the slider (10) are fixedly connected, an electric push rod (13) is provided on one side of the mounting plate (12), and one end of the electric push rod (13) passes through the mounting plate (12) and is fixedly connected to a connecting plate (14), and one end of the connecting plate (14) is provided with a welding mechanism (15).
3. The adjustable automotive blade battery assembly tool according to claim 1, characterized in that: The clamping structure (4) further comprises two sets of transmission components, wherein the transmission components comprise two sawtooth plates (11) and a motor (17), wherein the sawtooth plates (11) are fixedly connected to the gantry frame (8), the motor (17) is arranged on one side of the fixed plate (16), and the output shaft of the motor (17) passes through the fixed plate (16) and is fixedly connected to a gear transmission member (18), and the gear transmission member (18) is meshedly connected to the sawtooth plates (11).
4. The adjustable automotive blade battery assembly tool according to claim 1, characterized in that: A sliding hole is provided on the outside of the storage rack (19), and the fixing rack (22) is slidably arranged inside the sliding hole of the storage rack (19). The spring (29) is located on the periphery of the corresponding movable rod (25), and the horizontal positions of the push plate (23) and the sphere (26) are adaptively matched.
5. The adjustable automotive blade battery assembly tool according to claim 1, characterized in that: The outside of the second storage rack (24) is provided with a limit adjustment structure (5), and the limit adjustment structure (5) includes a gantry frame (30) and a limit slot plate (31). The gantry frame (30) and the second storage rack (24) are fixedly connected, and the limit slot plate (31) and the baffle (28) are fixedly connected. The top of the second gantry frame (30) is connected with two guide rods (32). The two ends of the two guide rods (32) are fixedly connected by a triangular block (33) and a fixed plate (34). Two springs (35) are provided between the triangular block (33) and the inner top surface of the second gantry frame (30). The outside of the fixed plate (34) is fixedly connected with a fixed rod (36).
6. The adjustable automotive blade battery assembly tool according to claim 5, characterized in that: An adjustment component is provided on the outside of the fixed plate 1 (16), and the adjustment component includes a transverse plate 1 (37). The transverse plate 1 (37) and the fixed plate 1 (16) are fixedly connected. An electric push rod 3 (38) is provided on the outside of the transverse plate 1 (37), and one end of the electric push rod 3 (38) passes through the transverse plate 1 (37) and is fixedly connected to the fixed plate 3 (39). One side of the fixed plate 3 (39) is fixedly connected to the plug plate (40).
7. The adjustable automotive blade battery assembly tool according to claim 5, characterized in that: The triangular block (33) and the limiting slot plate (31) are adaptively matched, the limiting slot plate (31) and the baffle (28) form an L shape, and the second spring (35) is located on the periphery of the corresponding guide rod (32).
8. The adjustable automotive blade battery assembly tool according to claim 6, characterized in that: One end of the inserting plate (40) is arranged at an angle, and the horizontal positions of the inserting plate (40) and the fixing rod (36) match.
9. The adjustable automotive blade battery assembly tool according to claim 2, characterized in that: A pressing structure (6) is provided between the two mounting plates (12), and the pressing structure (6) includes a second transverse plate (41), and the second transverse plate (41) is fixedly provided between the two mounting plates (12). The second transverse plate (41) is connected to a threaded rod (42) through a thread, and one end of the threaded rod (42) is rotatably connected to a third storage rack (43), and the inner side of the third storage rack (43) is rotatably connected to a pressure roller (44), and the top of the third storage rack (43) is fixedly provided with two second guide rods (45).
10. The adjustable automotive blade battery assembly tool according to claim 1, characterized in that: The base plate (7), the gantry frame (8) and the tooling body (1) are fixedly connected, and the positions of the battery core (3) and the two limiting blocks (27) at corresponding positions are adaptively matched.
Citation Information
Patent Citations
Automobile blade battery assembling tool
CN220029137U