Numerical control intelligent steel plate bending device for lithium battery production

By designing a CNC intelligent bending device for steel plates used in lithium battery production, and adopting a combination of motor-driven gear system and cylinder-driven cover plate, the problems of low precision and low efficiency of manual bending are solved, and high-precision automated processing and efficient production are realized.

CN223465368UActive Publication Date: 2025-10-24张家港市沙洲智能设备制造有限公司
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Patent Information

Application Number
CN202422192224.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-08
Publication Date
2025-10-24
Estimated Expiration
2034-09-08

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    Figure CN223465368U_ABST
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Abstract

The utility model relates to the technical field of lithium battery production, and discloses a lithium battery production steel plate numerical control intelligent bending device which comprises an installation cylinder, a gear ring is fixedly connected to the outer wall of one end of the installation cylinder, a bottom plate is fixedly connected to the outer wall of the gear ring, and a motor is installed on the outer wall of the bottom plate. And the output end of the motor is fixedly connected with a first fixing column, the outer wall of the first fixing column is rotationally connected to the interior of the bottom plate, and the outer wall of the first fixing column is fixedly connected with a first gear. According to the steel plate bending device, a steel plate is placed between the first bending column and the second bending column, the motor drives the first fixing column to rotate so as to drive the first bending column and the first gear to rotate, then the second gear is driven to move, and then the second fixing column and the second bending column are driven to move; and the first bending column and the second bending column move to extrude and bend the steel plate, so that the effects of replacing manual work, high-precision bending and improving the working efficiency can be achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of lithium battery production, in particular to a numerically controlled intelligent bending device for steel plates used in lithium battery production. Background Art

[0002] Lithium batteries refer to lithium-ion batteries, which are rechargeable batteries that use lithium ions as the positive electrode material. They are high-energy-density, long-life, and memory-free secondary batteries, widely used in portable electronic devices, electric vehicles, energy storage systems, and other fields. The CNC intelligent bending device for steel plates used in lithium battery production is specially designed for processing steel plates to manufacture lithium battery casings or support structures. The CNC intelligent bending device for steel plates achieves high-precision bending, automated production, flexible data recording and traceability, and high safety, reliability, and other advantages during the lithium battery production process. Therefore, it is widely used in lithium battery production.

[0003] The CNC intelligent bending device for steel plates used in the production of lithium batteries is a CNC intelligent bending device for steel plates used in the production process of lithium batteries. In traditional technologies, steel plates are usually bent manually, and the bending effect is usually not precise and the work efficiency is low. Utility Model Content

[0004] In order to make up for the above shortcomings, the utility model provides a CNC intelligent bending device for steel plates for lithium battery production, which aims to improve the problem of low bending precision and low work efficiency when bending steel plates manually during use.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a CNC intelligent bending device for steel plates for lithium battery production, comprising a mounting cylinder, an outer wall of one end of the mounting cylinder is fixedly connected to a gear ring, an outer wall of the gear ring is fixedly connected to a base plate, an outer wall of the base plate is installed with a motor, an output end of the motor is fixedly connected to a first fixed column, an outer wall of the first fixed column is rotatably connected to the inside of the base plate, an outer wall of the first fixed column is fixedly connected to a first gear, an outer wall of the first fixed column is fixedly connected to a first bending column, the teeth of the first gear are meshed and linked to the teeth of the second gear, the teeth of the second gear are meshed and linked to the teeth of the gear ring, the inside of the second gear is fixedly connected to a second fixed column, the outer wall of the second fixed column is fixedly connected to a second bending column, the first gear and the second gear are installed inside the mounting cylinder, and a support mechanism is installed on the inner wall of the mounting cylinder.

[0006] Preferably, the supporting mechanism comprises a cover plate, an outer wall of the cover plate is mounted on an inner wall of the mounting cylinder, an inner part of the cover plate is provided with a supporting groove, one end of an outer wall of the first fixing column is rotationally connected to an inner wall of the supporting groove, and an inner part of the cover plate is provided with a sliding groove, and one end of an outer wall of the second fixing column is slidingly connected to an inner wall of the sliding groove.

[0007] Preferably, the mounting cylinder is internally provided with a feeding hole.

[0008] Preferably, outer walls of both sides of the mounting cylinder are fixedly connected with supporting plates, and bottom outer walls of the supporting plates are fixedly connected with workbenches.

[0009] Preferably, an upper surface of the workbench is fixedly connected with a fixing block, and an outer wall of the fixing block is fixedly connected with a first mounting seat.

[0010] Preferably, the first mounting seat is rotationally connected with a first rotating rod in the inner part, and an outer wall of the first rotating rod is rotationally connected with a gas cylinder.

[0011] Preferably, an output end of the gas cylinder is fixedly connected with a second rotating rod, an outer wall of the second rotating rod is rotationally connected with a second mounting seat, and an outer wall of the second mounting seat is fixedly connected to an outer wall of the cover plate.

[0012] Preferably, an outer wall of the cover plate is mounted with a hinge, and one end of the hinge is mounted on an outer wall of the mounting cylinder.

[0013] The utility model has the advantages of the following beneficial effects:

[0014] 1. In the utility model, the steel plate is placed between the first bending column and the second bending column, the first fixed column is driven to rotate by the motor, thereby driving the first bending column and the first gear to rotate, thereby driving the second gear to rotate between the first gear and the gear ring, thereby driving the second fixed column and the second bending column to move, and the steel plate is extruded and bent by the movement of the first bending column and the second bending column, so that the effects of replacing manual work, high-precision bending and improving work efficiency can be achieved.

[0015] 2. In the utility model, the first rotating rod rotates on the first mounting seat, the second rotating rod rotates on the second mounting seat, and the cover plate can be driven to rotate around the hinge by starting the gas cylinder, so that the cover plate can be opened, and the bent and formed steel material can be taken out, thereby facilitating feeding. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 A perspective view of a steel plate numerical control intelligent bending device for lithium battery production is provided.

[0017] Figure 2The utility model provides a first gear schematic drawing of steel plate numerical control intelligence bending device for lithium electricity production.

[0018] Figure 3 The utility model provides a chute schematic drawing of steel plate numerical control intelligence bending device for lithium electricity production.

[0019] Legend:

[0020] 1, installation cylinder, 2, gear ring, 3, bottom plate, 4, motor, 5, first fixed column, 6, first gear, 7, first bending column, 8, second gear, 9, second fixed column, 10, second bending column, 11, cover plate, 12, support groove, 13, sliding groove, 14, feeding hole, 15, support plate, 16, worktable, 17, fixed block, 18, first mounting seat, 19, first rotating rod, 20, air cylinder, 21, second rotating rod, 22, second mounting seat, 23, hinge. Specific implementation

[0021] The technical scheme in the embodiment of the utility model will be clearly and completely described below in combination with the drawings in the specification of the utility model, and obviously, the described embodiment is only a part of the embodiment of the utility model, not all the embodiment. Based on the embodiment in the utility model, all other embodiments obtained by the ordinary skill in the art without making creative labor belong to the range of protection of the utility model.

[0022] Reference Figure 1 , Figure 2 An embodiment provided by the utility model: a steel plate numerical control intelligence bending device for lithium electricity production, including installation cylinder 1, the outer wall of one end of installation cylinder 1 is fixedly connected with gear ring 2, the outer wall of gear ring 2 is fixedly connected with bottom plate 3, and the outer wall of bottom plate 3 is installed with motor 4, and the output end of motor 4 is fixedly connected with first fixed column 5, and the outer wall of first fixed column 5 is rotatably connected in the inside of bottom plate 3, and the outer wall of first fixed column 5 is fixedly connected with first gear 6, and the outer wall of first fixed column 5 is fixedly connected with first bending column 7, and the teeth of first gear 6 are meshedly connected with second gear 8, and the teeth of second gear 8 are meshedly connected in the teeth of gear ring 2, and the inside of second gear 8 is fixedly connected with second fixed column 9, and the outer wall of second fixed column 9 is fixedly connected with second bending column 10, and first gear 6 and second gear 8 are installed in the inside of installation cylinder 1, and the inner wall of installation cylinder 1 is installed with support mechanism.

[0023] Specifically, the gear ring 2 is fixed by the mounting cylinder 1, the bottom plate 3 is fixed by the gear ring 2, the motor 4 is installed and fixed by the bottom plate 3, the first fixed column 5 is driven to rotate by the motor 4, the first gear 6 and the first curved column 7 are driven to rotate by the first fixed column 5, the second gear 8 is driven to rotate by the first gear 6, the second gear 8 is limited by the first gear 6 and the gear ring 2, the second fixed column 9 is fixed by the second gear 8, and the second curved column 10 is fixed by the second fixed column 9. Under the action of the first curved column 7 and the second curved column 10, the steel plate can be bent and extruded against the steel plate.

[0024] With reference to Figures 1-3 The support mechanism includes a cover plate 11, the outer wall of the cover plate 11 is installed on the inner wall of the mounting cylinder 1, the inner part of the cover plate 11 is provided with a support groove 12, one end of the outer wall of the first fixed column 5 is rotatably connected to the inner wall of the support groove 12, and the inner part of the cover plate 11 is provided with a sliding groove 13. The outer wall of one end of the second fixed column 9 is slidably connected to the inner wall of the sliding groove 13.

[0025] Specifically, the first fixed column 5 is supported by the support groove 12, and the second fixed column 9 is supported by the sliding groove 13. The outer wall of the side of the cover plate 11 away from the air cylinder 20 is provided as an inclined surface, facilitating the opening and closing of the cover plate 11.

[0026] With reference to Figure 1 The inner part of the mounting cylinder 1 is provided with an inlet hole 14.

[0027] The inlet hole 14 facilitates the processing of the steel plate.

[0028] The outer wall of the mounting cylinder 1 is fixedly connected with support plates 15 on both sides, and the outer wall of the bottom of the support plate 15 is fixedly connected with a workbench 16.

[0029] Specifically, the mounting cylinder 1 is fixed by the support plate 15, and the support plate 15 is fixed by the workbench 16.

[0030] The upper surface of the workbench 16 is fixedly connected with a fixed block 17, the outer wall of the fixed block 17 is fixedly connected with a first mounting seat 18, the inner part of the first mounting seat 18 is rotatably connected with a first rotating rod 19, the outer wall of the first rotating rod 19 is rotatably connected with an air cylinder 20, the output end of the air cylinder 20 is fixedly connected with a second rotating rod 21, the outer wall of the second rotating rod 21 is rotatably connected with a second mounting seat 22, the outer wall of the second mounting seat 22 is fixedly connected to the outer wall of the cover plate 11, the outer wall of the cover plate 11 is provided with a hinge 23, and one end of the hinge 23 is installed on the outer wall of the mounting cylinder 1.

[0031] Specific, by the workbench 16 on the fixed block 17 fixed effect, through the fixed block 17 on the first mounting seat 18 fixed effect, through the first mounting seat 18 on the first rotating rod 19 support effect, through the first rotating rod 19 on the cylinder 20 support effect, through the second mounting seat 22 on the cylinder 20 support effect, through the hinge 23 can be connected with the cover plate 11 and installation cylinder 1.

[0032] Working principle: when need to use the device to bend the steel plate, through the need to be processed from the inlet hole 14 into the installation cylinder 1 inside the first bending column 7 and the second bending column 10, through the starting motor 4 drive first fixed column 5 rotation, first fixed column 5 rotation drive first bending column 7 and first gear 6 rotation, through the first gear 6 rotation and drive the second gear 8 rotation, in turn, make the second gear 8 in the first gear 6 outer wall and gear ring 2 inner wall rotation, in turn, drive the second fixed column 9 and the second bending column 10 rotation, through the second fixed column 9 in the inside of the chute 13 rotation, first fixed column 5 in the inside of the support groove 12 rotation, can provide stable support effect when the first bending column 7 and the second bending column 10 rotation, through the first bending column 7 and the second bending column 10 rotation, in turn, extrusion bending of steel plate, so as to achieve the effect of replacing manual, high precision bending, improve work efficiency, when the steel plate bending forming, through the starting cylinder 20 can drive the cover plate 11 with hinge 23 as the shaft rotation, at the same time, the first rotating rod 19 in the first mounting seat 18 rotation, fixed block 17 on the first mounting seat 18 support effect, the second rotating rod 21 in the second mounting seat 22 rotation, can realize the cover plate 11 open, in turn, can take out the bending forming of steel, convenient feeding.

[0033] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the foregoing detailed description of the present application, for the person skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement, within the spirit and principles of the present application, any modification, equivalent replacement, improvement, etc., should be included in the scope of protection of the present application.

Claims

1. A numerical control intelligent bending device for steel plate production for lithium electricity, comprising a mounting cylinder (1), characterized in that: One end of the mounting cylinder (1) is fixedly connected with a gear ring (2), the outer wall of the gear ring (2) is fixedly connected with a bottom plate (3), the outer wall of the bottom plate (3) is provided with a motor (4), the output end of the motor (4) is fixedly connected with a first fixed column (5), the outer wall of the first fixed column (5) is rotatably connected in the bottom plate (3), the outer wall of the first fixed column (5) is fixedly connected with a first gear (6), the outer wall of the first fixed column (5) is fixedly connected with a first curved column (7), the teeth of the first gear (6) are meshingly connected with a second gear (8), the teeth of the second gear (8) are meshingly connected at the teeth of the gear ring (2), the inside of the second gear (8) is fixedly connected with a second fixed column (9), the outer wall of the second fixed column (9) is fixedly connected with a second curved column (10), the first gear (6) and the second gear (8) are installed in the inside of the mounting cylinder (1), and the inner wall of the mounting cylinder (1) is provided with a supporting mechanism.

2. The numerical control intelligent bending device for steel plate production for lithium battery according to claim 1, characterized in that: The supporting mechanism comprises a cover plate (11), the outer wall of the cover plate (11) is installed on the inner wall of the mounting cylinder (1), the inside of the cover plate (11) is provided with a supporting groove (12), one end of the outer wall of the first fixed column (5) is rotatably connected to the inner wall of the supporting groove (12), the inside of the cover plate (11) is provided with a sliding groove (13), and one end of the outer wall of the second fixed column (9) is slidably connected to the inner wall of the sliding groove (13).

3. The numerical control intelligent bending device for steel plate production for lithium battery according to claim 2, characterized in that: The inside of the mounting cylinder (1) is provided with an inlet hole (14).

4. The numerical control intelligent bending device for steel plate production for lithium batteries according to claim 3, characterized in that: The outer wall of the mounting cylinder (1) is fixedly connected with a supporting plate (15) on both sides, and the bottom outer wall of the supporting plate (15) is fixedly connected with a workbench (16).

5. The numerical control intelligent bending device for steel plate production for lithium batteries according to claim 4, characterized in that: The upper surface of the workbench (16) is fixedly connected with a fixed block (17), and the outer wall of the fixed block (17) is fixedly connected with a first mounting seat (18).

6. The numerical control intelligent bending device for steel plate production for lithium electricity according to claim 5, characterized in that: The inside of the first mounting seat (18) is rotatably connected with a first rotating rod (19), and the outer wall of the first rotating rod (19) is rotatably connected with a gas cylinder (20).

7. The numerical control intelligent bending device for steel plate production for lithium electricity according to claim 6, characterized in that: The output end of the gas cylinder (20) is fixedly connected with a second rotating rod (21), the outer wall of the second rotating rod (21) is rotatably connected with a second mounting seat (22), the outer wall of the second mounting seat (22) is fixedly connected to the outer wall of the cover plate (11), the outer wall of the cover plate (11) is provided with a hinge (23), and one end of the hinge (23) is installed on the outer wall of the mounting cylinder (1).