Integrated punching hole for periphery of energy storage shell product

Through the combined structure of the support plate, clamping plate and punching assembly, the offset problem caused by vibration during the punching process of the energy storage shell is solved, and a more efficient and stable punching effect is achieved.

CN223056516UActive Publication Date: 2025-07-04SUZHOU HUAFANG PRECISE MOLD CO LTD
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Patent Information

Application Number
CN202422220644.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-07-04
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

The existing energy storage shells are prone to vibration and cause deviation during the punching process, affecting the accuracy and quality of the punching position.

Method used

The combined structure of support plate, clamping plate, adjustment mechanism and punching assembly is adopted. Through the cooperation of elastic blocks and tightening plates, the energy storage shell remains stable during processing and avoids vibration.

Benefits of technology

It improves the stability and efficiency of punching in the energy storage shell, avoids the offset of the punching position, and improves the processing quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an integrated punching hole for the periphery of an energy storage shell product, which belongs to the field of energy storage shell punching and comprises a processing bottom plate, a processing shell is fixedly connected to the upper surface of the processing bottom plate, and four corresponding supporting plates are fixedly connected to the inside of the processing shell. One side of each of the two supporting plates is fixedly connected with two corresponding connecting plates; through cooperative use of all the devices, through arrangement of the supporting plates, the clamping plates, the adjusting mechanism, the punching assembly, a stabilizing plate and other structures, the surfaces of the four supporting plates are sleeved with the energy storage shell, the adjusting mechanism is started according to the size of the energy storage shell, the four supporting plates are made to move, the inner wall of the energy storage shell is supported, and the energy storage shell can be conveniently punched. And meanwhile, the edge of the energy storage shell is inserted into the clamping plates, and the multiple abutting plates abut against and clamp the surface of the energy storage shell through the elastic force of the elastic blocks, so that the energy storage shell is more stable during punching.
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Description

Technical Field

[0001] The utility model relates to the technical field of energy storage shell punching, in particular to an integrated punching around the periphery of an energy storage shell product. Background Technique

[0002] During the processing of the energy storage shell, it is necessary to use an integrated punching device around the periphery of the energy storage shell product to punch the surface of the energy storage shell.

[0003] After retrieval, Chinese Patent No. CN 212525633 U discloses a convenient disassembly mechatronic punching device, including a base and a top frame. A supporting table is movably arranged at the top of the inner cavity of the base. A grid plate is fixedly arranged at the center of the top of the supporting table. Two shock absorbers are arranged at the center of the bottom of the supporting table, and the supporting table is connected with the base through the shock absorbers. Guide frames are fixedly arranged on both sides of the bottom of the inner cavity of the base, and two guide frames are provided. In the utility model, by rotating the screw rod, the sliding sleeve moves to adjust the horizontal position of the punching pin. The shock absorber performs a primary shock absorption treatment on the supporting table. The supporting table drives two sliders to move and compress the spring through two support rods. The spring performs a secondary shock absorption treatment on the supporting table through its own elasticity. Pull down the punching pin. When the pulling force is greater than the magnetic force of the cross-shaped magnet block, the punching pin is separated from the lifting rod, and then it can be replaced. The punching device has good shock absorption performance, is convenient to adjust and disassemble the punching pin, and has good practicability.

[0004] However, the following problems still exist in the above-mentioned prior art:

[0005] Although the supporting table is buffered and shock-absorbed through the mutual cooperation of structures such as the screw rod and the shock absorber, when the integrated punching device processes the energy storage shell, the punching head applies a force to the energy storage shell, which may cause the energy storage shell to vibrate, resulting in the deviation of the energy storage shell, so that the punching position changes during punching by the integrated punching device, reducing the quality of the punching processing of the energy storage shell.

[0006] Therefore, the utility model provides an integrated punching around the periphery of an energy storage shell product to solve the above problems. Content of the Utility Model

[0007] (1) Technical Problems to be Solved

[0008] The utility model provides an integrated punching around the periphery of an energy storage shell product, aiming to solve the problems in the background technique that when the existing energy storage shell is punched, the energy storage shell vibrates, resulting in the deviation of the energy storage shell, so that the punching position changes during punching by the integrated punching device, reducing the quality of the punching processing of the energy storage shell, etc.

[0009] (2) Technical Solutions

[0010] To achieve the above object, the utility model provides the following technical solutions: An integrated punching around the energy storage housing product, including a processing base plate, on the upper surface of the processing base plate is fixedly connected with a processing housing, inside the processing housing are fixedly connected with four corresponding support plates, on one side of two of the support plates are fixedly connected with two corresponding connecting plates, on one side of each two corresponding connecting plates are jointly fixedly connected with a clamping plate, on both inner walls of the clamping plate are opened with sliding grooves, inside the sliding grooves are fixedly connected with elastic blocks in a path array, one ends of a plurality of the elastic blocks are jointly fixedly connected with a pressing plate, the two pressing plates correspond to each other, the pressing plate is slidably connected inside the sliding groove, the two pressing plates correspond to the clamping plate, on one side of the processing housing is installed an adjusting mechanism, on both edge positions of one side of the clamping plate are fixedly connected with stabilizing plates, the stabilizing plates are slidably connected with the processing housing, and on the surface of the processing housing is installed a punching component.

[0011] As a preferred technical solution of this application, at the four corners of the lower surface of the processing base plate are fixedly connected with support legs, on the other side of the processing housing is hinge-connected with a protective door, and on one side of the protective door is fixedly connected with a sealing plate corresponding to the processing housing.

[0012] As a preferred technical solution of this application, the adjusting mechanism includes a driving motor fixedly connected to one side of the processing housing, the output end of the driving motor is fixedly connected with a driving rod, one end of the driving rod penetrates through one side of the processing housing and is rotatably connected inside the processing housing, and on the surface of the driving rod is fixedly connected with a driving gear.

[0013] As a preferred technical solution of this application, the adjusting mechanism further includes four driving tooth plates respectively fixedly connected to the corresponding support plates, the four driving tooth plates are all meshed with the driving gear, the four driving tooth plates are evenly divided into two groups, each group of corresponding driving tooth plates moves in the opposite direction, and the support plate is slidably connected inside the processing housing through the driving tooth plate.

[0014] As a preferred technical solution of this application, the punching component includes four electric push rods respectively fixedly connected to the four sides of the processing housing, the output ends of the four electric push rods are all fixedly connected with punching heads, the four punching heads respectively correspond to the four support plates, and the punching head is slidably connected inside the processing housing.

[0015] As a preferred technical solution of this application, on both edge positions of the other side of two of the support plates are opened with movable grooves, inside the movable grooves are fixedly connected with pressing springs, one end of the pressing spring is fixedly connected with a sliding rod, and on one end of each two corresponding sliding rods are jointly fixedly connected with a fixing plate, and the sliding rod is slidably connected inside the movable groove.

[0016] (III) Beneficial effects

[0017] Through the settings of structures such as the processing housing, support plates, clamping plates, adjustment mechanisms, punching components, and stabilizing plates, the energy storage housing is sleeved on the surfaces of the four support plates. According to the size of the energy storage housing, the adjustment mechanism is activated to move the four support plates to support the inner wall of the energy storage housing. At the same time, the edge of the energy storage housing is inserted into the interior of the clamping plate. Through the elastic force of the elastic blocks, multiple pressing plates tightly press and clamp the surface of the energy storage housing, making the energy storage housing more stable during punching. Subsequently, through the setting of the punching components, the four sides of the energy storage housing are simultaneously punched, improving the punching efficiency of the energy storage housing. When the energy storage housing is sleeved on the support plates, the two fixing plates are in contact with the inner wall of the energy storage housing. Through the elastic force of the pressing springs, the fixing plates tightly press the energy storage housing, making the energy storage housing more stable during punching, avoiding vibration of the energy storage housing during punching, resulting in the offset of the energy storage housing, and thus changing the punching position during punching of the integrated punching device, reducing the quality of the punching process of the energy storage housing. Brief description of the drawings

[0018] Figure 1 It is a schematic structural diagram of the integrated punching of the four sides of an energy storage housing product;

[0019] Figure 2 It is a schematic structural diagram of the second form of the integrated punching of the four sides of an energy storage housing product;

[0020] Figure 3 It is a schematic structural diagram of the split structures such as the processing housing and support plates of the integrated punching of the four sides of an energy storage housing product;

[0021] Figure 4 It is a schematic structural diagram of the positional relationship between the adjustment mechanism and support plates of the integrated punching of the four sides of an energy storage housing product;

[0022] Figure 5 It is a schematic structural diagram of the split structures such as the adjustment mechanism and clamping plates of the integrated punching of the four sides of an energy storage housing product;

[0023] Figure 6 It is for the integrated punching of the four sides of an energy storage housing product Figure 5 The enlarged structural diagram at position A in

[0024] In the figure:

[0025] 1. Processing base plate; 2. Processing housing; 3. Support plate; 4. Connecting plate; 5. Clamping plate; 6. Sliding groove; 7. Elastic block; 8. Tightening plate; 9. Stabilizing plate; 10. Protection door; 11. Driving motor; 12. Driving rod; 13. Driving gear; 14. Driving rack; 15. Electric push rod; 16. Punching head; 17. Activity groove; 18. Tightening spring; 19. Sliding rod; 20. Fixed plate. Detailed implementation manners

[0026] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0027] The present invention provides an integrated punching around the perimeter of an energy storage housing product, as Figures 1 - 6As shown in the figure, a four-sided integrated punching is carried out on an energy storage housing product, which includes a processing bottom plate 1. Support legs are fixedly connected to the four corners of the lower surface of the processing bottom plate 1. A processing housing 2 is fixedly connected to the upper surface of the processing bottom plate 1. A protective door 10 is hingedly connected to the other side of the processing housing 2. A sealing plate corresponding to the processing housing 2 is fixedly connected to one side of the protective door 10. Four corresponding support plates 3 are fixedly connected to the inside of the processing housing 2. An adjusting mechanism is installed on one side of the processing housing 2. The adjusting mechanism includes a driving motor 11 fixedly connected to one side of the processing housing 2. The output end of the driving motor 11 is fixedly connected to a driving rod 12. One end of the driving rod 12 penetrates through one side of the processing housing 2 and is rotatably connected to the inside of the processing housing 2. A driving gear 13 is fixedly connected to the surface of the driving rod 12. The adjusting mechanism further includes four driving toothed plates 14 respectively fixedly connected to the corresponding support plates 3. The four driving toothed plates 14 are all meshed with the driving gear 13. The four driving toothed plates 14 are evenly divided into two groups. The corresponding driving toothed plates 14 in each group move in the opposite direction. The support plate 3 is slidably connected to the inside of the processing housing 2 through the driving toothed plate 14. Rotate the protective door 10 to open one side of the processing housing 2. Sleeve the energy storage housing on the surface of the four support plates 3. According to the size of the energy storage housing, start the driving motor 11 to drive the driving rod 12 to rotate inside the processing housing 2 through its output end, so that the driving gear 13 rotates, causing the four driving toothed plates 14 to mesh and move, thereby driving the corresponding support plates 3 to slide inside the energy storage housing, making the support plates 3 fit against the four inner walls of the energy storage housing to support the energy storage housing. Two corresponding connecting plates 4 are fixedly connected to one side of each of the two support plates 3. A clamping plate 5 is fixedly connected to the side of each two corresponding connecting plates 4. Sliding grooves 6 are opened on the inner walls of both sides of the clamping plate 5. Elastic blocks 7 are fixedly connected to the inside of the sliding grooves 6 in a path array. One ends of a plurality of elastic blocks 7 are fixedly connected to a pressing plate 8 together. The two pressing plates 8 correspond to each other. The pressing plate 8 is slidably connected to the inside of the sliding groove 6. The two pressing plates 8 correspond to the clamping plate 5. After the energy storage housing is sleeved on the support plate 3, the surface of the energy storage housing is inserted into the inside of the clamping plate 5. Through the elastic force of the elastic blocks 7, the pressing plate 8 slides inside the sliding groove 6, so that a plurality of pressing plates 8 clamp the energy storage housing, making the energy storage housing more stable during processing. Activity grooves 17 are opened at the two edges on the other side of each of the two support plates 3. A pressing spring 18 is fixedly connected to the inside of the activity groove 17. One end of the pressing spring 18 is fixedly connected to a sliding rod 19. A fixing plate 20 is fixedly connected to the one ends of each two corresponding sliding rods 19 together. Through the mutual cooperation of the pressing plate 8 and the fixing plate 20, the energy storage housing is more stable during punching, avoiding vibration of the energy storage housing during punching, resulting in deviation of the energy storage housing, so that the punching position of the integrated punching device changes during punching. The sliding rod 19 is slidably connected to the inside of the activity groove 17. When the energy storage housing is sleeved on the support plate 3, through the elastic force of the pressing spring 18,The fixing plate 20 is fitted with the inner wall of the energy storage shell, so that the energy storage shell is pressed against by the fixing plate 20. The two edges of one side of the clamping plate 5 are fixedly connected with a stabilizing plate 9, and the stabilizing plate 9 is slidably connected with the processing shell 2. When the support plate 3 moves, the connecting plate 4 is driven to move synchronously, so that the clamping plate 5 moves with it. Through the setting of the stabilizing plate 9, the movement of the clamping plate 5 is more stable, so that the clamping plate 5 and the support plate 3 are more adapted. The surface of the processing shell 2 is installed with a punching assembly, and the punching assembly The components include four electric push rods 15 respectively fixedly connected to the four sides of the processing housing 2. The output ends of the four electric push rods 15 are fixedly connected to the punching heads 16. Through the setting of the punching assembly, the four electric push rods 15 synchronously drive the corresponding punching heads 16 to move inside the processing housing 2, so that the punching heads 16 punch the four sides of the energy storage shell at the same time, thereby improving the punching efficiency of the energy storage shell. The four punching heads 16 correspond to the four support plates 3 one by one, and the punching heads 16 are slidably connected to the inside of the processing housing 2.

[0028] Specifically, when the energy storage shell product with integrated punching around is used: the protective door 10 is rotated to open one side of the processing shell 2, and the energy storage shell is sleeved on the surfaces of the four support plates 3. According to the size of the energy storage shell, the drive motor 11 is started so that its output end drives the drive rod 12 to rotate inside the processing shell 2, thereby rotating the drive gear 13, so that the four drive gear plates 14 mesh and move, thereby driving the corresponding support plate 3 to slide inside the energy storage shell, so that the support plate 3 fits the four inner walls of the energy storage shell to support the energy storage shell. At the same time, after the energy storage shell is sleeved on the support plate 3, the surface of the energy storage shell is inserted into the inside of the clamping plate 5, and the elastic force of the elastic block 7 makes the clamping plate 8 slide inside the sliding groove 6, so that multiple clamping plates 8 clamp the energy storage shell, so that the energy storage shell is more stable during processing;

[0029] When the support plate 3 moves, the connecting plate 4 is driven to move synchronously, so that the clamping plate 5 moves with it. Through the setting of the stabilizing plate 9, the movement of the clamping plate 5 is more stable, so that the clamping plate 5 and the support plate 3 are more compatible. At the same time, when the energy storage shell is sleeved on the support plate 3, the elastic force of the clamping spring 18 makes the fixing plate 20 fit with the inner wall of the energy storage shell, so that the energy storage shell is pressed by the fixing plate 20. Through the mutual cooperation of the clamping plate 8 and the fixing plate 20, the energy storage shell is more stable during punching, and the vibration of the energy storage shell during punching is avoided, which causes the energy storage shell to shift, so that the punching position of the integrated punching equipment changes during punching. Through the setting of the punching assembly, the four electric push rods 15 synchronously drive the corresponding punching heads 16 to move inside the processing shell 2, so that the punching heads 16 punch holes on all sides of the energy storage shell at the same time, thereby improving the punching efficiency of the energy storage shell.

[0030] The above are only the preferred specific embodiments of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution of the present utility model and its inventive concept, makes equivalent substitutions or changes, and should be covered within the protection scope of the present utility model.

Claims

1. An integrated punching around the perimeter of an energy storage housing product, including a processing base plate (1), characterized in that: The upper surface of the processing base plate (1) is fixedly connected with a processing shell (2). Four corresponding support plates (3) are fixedly connected inside the processing shell (2). On one side of two of the support plates (3), two corresponding connecting plates (4) are fixedly connected respectively. On one side of each two corresponding connecting plates (4), a clamping plate (5) is fixedly connected together. Sliding grooves (6) are formed on the inner walls of both sides of the clamping plate (5). Elastic blocks (7) are fixedly connected in an array along the path inside the sliding grooves (6). One ends of a plurality of the elastic blocks (7) are fixedly connected with a pressing plate (8) together. The two pressing plates (8) correspond to each other. The pressing plate (8) is slidably connected inside the sliding groove (6). The two pressing plates (8) correspond to the clamping plate (5). An adjusting mechanism is installed on one side of the processing shell (2). On both edges of one side of the clamping plate (5), stabilizing plates (9) are fixedly connected respectively. The stabilizing plates (9) are slidably connected with the processing shell (2). A punching assembly is installed on the surface of the processing shell (2).

2. The four-sided integrated punching of an energy storage housing product according to claim 1, wherein: Support legs are fixedly connected to the four corners of the lower surface of the processing base plate (1). A protective door (10) is hingedly connected to the other side of the processing shell (2). A sealing plate corresponding to the processing shell (2) is fixedly connected to one side of the protective door (10).

3. An integrated punching around the perimeter of an energy storage housing product according to claim 1, wherein: The adjusting mechanism includes a driving motor (11) fixedly connected to one side of the processing shell (2). The output end of the driving motor (11) is fixedly connected with a driving rod (12). One end of the driving rod (12) penetrates through one side of the processing shell (2) and is rotatably connected inside the processing shell (2). A driving gear (13) is fixedly connected to the surface of the driving rod (12).

4. An integrated punching around the perimeter of an energy storage housing product according to claim 3, wherein: The adjusting mechanism further includes four driving tooth plates (14) respectively fixedly connected to the corresponding support plates (3). The four driving tooth plates (14) are all meshed with the driving gear (13). The four driving tooth plates (14) are evenly divided into two groups. The corresponding driving tooth plates (14) in each group move in opposite directions. The support plate (3) is slidably connected inside the processing shell (2) through the driving tooth plate (14).

5. An integrated punching around the perimeter of an energy storage housing product according to claim 1, wherein: The punching assembly includes four electric push rods (15) respectively fixedly connected to the four sides of the processing shell (2). The output ends of the four electric push rods (15) are all fixedly connected with punching heads (16). The four punching heads (16) respectively correspond to the four support plates (3). The punching head (16) is slidably connected inside the processing shell (2).

6. A four-sided integrated punching of an energy storage housing product according to claim 1, characterized in that: On both edges of the other side of two of the support plates (3), movable grooves (17) are formed respectively. A pressing spring (18) is fixedly connected inside the movable groove (17). One end of the pressing spring (18) is fixedly connected with a sliding rod (19). One ends of each two corresponding sliding rods (19) are fixedly connected with a fixing plate (20) together. The sliding rod (19) is slidably connected inside the movable groove (17).

Citation Information

Patent Citations

  • Mechatronics punching device convenient to disassemble

    CN212525633U