Copper foil shearing device for aluminum substrate production

By designing a copper foil shear device for producing aluminum substrates, the guide components and shear components are used to achieve automatic shearing of copper foil, which solves the problem of low shear efficiency of small batch copper foil, reduces the working strength of the operators and improves efficiency.

CN223115308UActive Publication Date: 2025-07-18HENAN ZHONGQING ALUMINUM TECH CO LTD
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Patent Information

Application Number
CN202422423196.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-07-18
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The prior art has low shear efficiency of small and medium-sized copper foils, high working strength of the operators, and lacks medium-sized copper foil shearing devices.

Method used

A copper foil shear device for producing aluminum substrate is designed, including an operating table, a guide assembly, a shear assembly and a conveying assembly. The shear head is driven by an electric push rod for automatic shearing, and the automatic flow of copper foil into the next step through the guide assembly.

Benefits of technology

Fully automated operation of small batches of copper foil is realized, reducing the work intensity of workers and improving work efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223115308U_ABST
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Abstract

The utility model discloses a copper foil shearing device for aluminum substrate production, which belongs to the technical field of aluminum substrate production and comprises an operation table, a guide component, a shearing component and a conveying component are sequentially arranged at the upper end of the operation table from left to right, and a supporting component is arranged at the lower end of the operation table. A notch is formed in the upper surface of the operation table, a base plate is fixedly arranged at the port position of the notch, and a positioning groove is formed in the upper surface of the base plate; the shearing assembly comprises a box body fixedly arranged at the upper end of the operation table, the box body and the base plate are arranged correspondingly, and a driving assembly and a shearing tool bit connected with the driving assembly are arranged in the box body. The full-automatic copper foil shearing machine can realize full-automatic operation of small-batch copper foil shearing, so that the working intensity of operators is greatly reduced, and the working efficiency is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of aluminum substrate production, and particularly relates to a copper foil shearing device for aluminum substrate production. Background Art

[0002] The blades of the board splitter can be used for cutting and trimming in various electronic industries, including the cutting of copper foil on aluminum substrates. There are various copper and aluminum foil shearing machines on the market, such as fully automatic copper foil cutting machines, aluminum foil cutting machines, copper strip cutting machines, aluminum strip cutting machines, copper braid cutting machines, etc. Different types of shearing machines are suitable for different production requirements. For example, fully automatic shearing machines are suitable for large-scale production and can improve production efficiency; while manual shearing machines are suitable for small-batch or shearing work with not particularly high precision requirements. Therefore, a medium-sized copper foil shearing device between large-scale production and small-batch production is needed. Content of the Utility Model

[0003] The purpose of the utility model is to overcome the deficiencies of the prior art, and to provide a copper foil shearing device for aluminum substrate production, providing a medium-sized copper foil shearing device, which solves the technical problems of low copper foil shearing efficiency and high working intensity of operators in small batches in the prior art.

[0004] The purpose of the utility model is realized as follows: a copper foil shearing device for aluminum substrate production, which includes an operation table. A guiding component, a shearing component and a conveying component are sequentially arranged on the upper end of the operation table from left to right, and a supporting component is arranged at the lower end of the operation table; a notch is opened on the upper surface of the operation table, a backing plate is fixedly arranged at the port position of the notch, and a positioning groove is opened on the upper surface of the backing plate; the shearing component includes a box body fixedly arranged on the upper end of the operation table, and the box body is arranged corresponding to the backing plate. A driving component and a shearing cutter head connected to the driving component are arranged inside the box body. During use, the copper foil to be sheared is placed above the conveying component, and the copper foil is transported below the shearing component under the action of the conveying component. The copper foil is sheared through the cooperation of the shearing component and the positioning groove. After the copper foil is sheared, the copper foil flows into the next process by means of the guiding component, realizing fully automated operation of small-batch shearing of copper foil, greatly reducing the working intensity of operators and improving work efficiency.

[0005] Further, a horizontal plate is slidably connected inside the box body. The upper surface of the horizontal plate is fixedly connected with a first vertical rod and a second vertical rod, and the upper ends of the first vertical rod and the second vertical rod extend upward above the outside of the box body. Both the first vertical rod and the second vertical rod are slidably connected with the top wall of the box body. An electric push rod is fixedly arranged at the inner top of the box body, and the telescopic rod of the electric push rod is connected with the upper surface of the horizontal plate. An auxiliary component is arranged at the upper end of the box body. The auxiliary component includes a first top cap fixedly arranged at the upper end of the first vertical rod and a second top cap fixedly arranged at the upper end of the second vertical rod. The upper end of the box body is fixedly connected with a first spring sleeved outside the first vertical rod and a second spring sleeved outside the second vertical rod, and the outer diameter of the first spring is smaller than the outer diameter of the first top cap, and the outer diameter of the second spring is smaller than the outer diameter of the second top cap. When in use, when the copper foil needs to be sheared, the telescopic rod of the electric push rod extends, driving the horizontal plate to move downward inside the box body. The downward movement of the horizontal plate drives the first vertical rod and the second vertical rod to move downward, and the first spring and the second spring are compressed. The first spring and the second spring play a buffering role, making the shearing process of the copper foil by the shearing cutter head sharper and more stable.

[0006] Further, a left vertical plate and a right vertical plate are fixedly arranged inside the box body. A left guide groove is formed in the inner side wall of the left vertical plate, and a right guide groove is formed in the inner side wall of the right vertical plate. A left guide protrusion is fixedly arranged at the left end of the horizontal plate, and a right guide protrusion is fixedly arranged at the right end of the horizontal plate. The left guide protrusion is slidably matched with the left guide groove, and the right guide protrusion is slidably matched with the right guide groove. Through the arrangement of the guide protrusions and the guide grooves, the horizontal plate moves more smoothly and smoothly during the up and down movement.

[0007] Further, the guiding component includes a guide plate detachably connected to the notch. The guide plate is used to guide the sheared copper foil into the next process, reducing the participation of operators and realizing full automation.

[0008] Further, the conveying component includes a conveyor belt. The conveyor belt is connected with a driving shaft and a driven shaft, and the driving shaft is connected with a driving motor. When in use, the driving motor drives the driving shaft to rotate, thereby driving the conveyor belt to move. During the movement of the conveyor belt, the copper foil to be sheared placed above it is transported to the lower part of the shearing component.

[0009] Advantages of the present utility model: It realizes fully automated operation for small-batch copper foil shearing, greatly reducing the working intensity of operators and improving work efficiency. When in use, place the copper foil to be sheared above the conveying assembly. Under the action of the conveying assembly, the copper foil is transported to the lower part of the shearing assembly. The copper foil is sheared through the cooperation of the shearing assembly and the positioning groove. After the copper foil shearing is completed, the copper foil flows into the next process by means of the guiding assembly. When the copper foil needs to be sheared, the telescopic rod of the electric push rod extends, driving the cross plate to move downward inside the box body. The downward movement of the cross plate drives the first vertical rod and the second vertical rod to move downward, compressing the first spring and the second spring. The first spring and the second spring play a buffering role, making the shearing process of the shearing cutter head sharper and more stable for the copper foil. Through the setting of the guiding convex and the guiding groove, the cross plate moves more smoothly and smoothly during the up and down movement. Brief Description of the Drawings

[0010] Figure 1 is the front view structural schematic diagram of the present utility model;

[0011] Figure 2 is the Figure 1 enlarged view of A in the present utility model;

[0012] Figure 3 is the top view structural schematic diagram of the present utility model;

[0013] Figure 4 is the left view three-dimensional structural schematic diagram of the present utility model;

[0014] Figure 5 is the right view three-dimensional structural schematic diagram of the present utility model.

[0015] In the figure: 1, operating table; 2, guiding assembly; 3, shearing assembly; 4, conveying assembly; 5, notch; 6, backing plate; 7, positioning groove; 8, box body; 9, shearing cutter head; 10, electric push rod; 11, first spring; 12, second spring; 13, guide plate; 14, transmission belt; 15, driving shaft; 16, driving motor; 17, cross plate. Specific Embodiments

[0016] The following further describes the present utility model in detail with reference to the drawings. It should be noted that all the azimuth terms such as up, down, front, back, left, and right appearing in the present utility model do not limit the present utility model, but are only used to more clearly illustrate and explain the present utility model. Embodiment

[0017] As Figures 1-5As shown in the figure, this embodiment discloses a copper foil shearing device for aluminum substrate production, which includes an operation table 1. On the upper end of the operation table 1, a guiding component 2, a shearing component 3, and a conveying component 4 are sequentially arranged from left to right. A supporting component is arranged at the lower end of the operation table 1. A notch 5 is formed on the upper surface of the operation table 1, and a backing plate 6 is fixedly arranged at the port position of the notch 5. A positioning groove 7 is formed on the upper surface of the backing plate 6. The shearing component 3 includes a box body 8 fixedly arranged on the upper end of the operation table 1, and the box body 8 is arranged corresponding to the backing plate 6. A driving component and a shearing cutter head 9 connected to the driving component are arranged inside the box body 8. During use, the copper foil to be sheared is placed above the conveying component 4, and under the action of the conveying component 4, the copper foil is transported to the lower part of the shearing component 3. The copper foil is sheared through the cooperation of the shearing component 3 and the positioning groove 7. After the copper foil is sheared, the copper foil flows into the next process by means of the arrangement of the guiding component 2, realizing fully automated operation for small-batch shearing of copper foil, greatly reducing the working intensity of operators, and improving work efficiency. Embodiment

[0018] As Figures 1-5 As shown in the figure, this embodiment discloses a copper foil shearing device for aluminum substrate production, which includes an operation table 1. On the upper end of the operation table 1, a guiding component 2, a shearing component 3, and a conveying component 4 are sequentially arranged from left to right. A supporting component is arranged at the lower end of the operation table 1. A notch 5 is formed on the upper surface of the operation table 1, and a backing plate 6 is fixedly arranged at the port position of the notch 5. A positioning groove 7 is formed on the upper surface of the backing plate 6. The shearing component 3 includes a box body 8 fixedly arranged on the upper end of the operation table 1, and the box body 8 is arranged corresponding to the backing plate 6. A driving component and a shearing cutter head 9 connected to the driving component are arranged inside the box body 8. During use, the copper foil to be sheared is placed above the conveying component 4, and under the action of the conveying component 4, the copper foil is transported to the lower part of the shearing component 3. The copper foil is sheared through the cooperation of the shearing component 3 and the positioning groove 7. After the copper foil is sheared, the copper foil flows into the next process by means of the arrangement of the guiding component 2, realizing fully automated operation for small-batch shearing of copper foil, greatly reducing the working intensity of operators, and improving work efficiency.

[0019] For better effect, a cross plate 17 is slidably connected inside the box body 8. The upper surface of the cross plate 17 is fixedly connected with a first vertical rod and a second vertical rod, and the upper ends of the first vertical rod and the second vertical rod extend upward above the outside of the box body 8. Both the first vertical rod and the second vertical rod are slidably connected with the top wall of the box body 8. A power push rod 10 is fixedly arranged at the inner top of the box body 8, and the telescopic rod of the power push rod 10 is connected with the upper surface of the cross plate 17. An auxiliary component is arranged at the upper end of the box body 8. The auxiliary component includes a first top cap fixedly arranged at the upper end of the first vertical rod and a second top cap fixedly arranged at the upper end of the second vertical rod. The upper end of the box body 8 is fixedly connected with a first spring 11 sleeved outside the first vertical rod and a second spring 12 sleeved outside the second vertical rod, and the outer diameter of the first spring 11 is smaller than the outer diameter of the first top cap, and the outer diameter of the second spring 12 is smaller than the outer diameter of the second top cap. When in use, when the copper foil needs to be sheared, the telescopic rod of the power push rod 10 extends, driving the cross plate 17 to move downward inside the box body 8. The downward movement of the cross plate 17 drives the first vertical rod and the second vertical rod to move downward, and the first spring 11 and the second spring 12 are compressed. The first spring 11 and the second spring 12 play a buffering role, making the shearing process of the shearing cutter head 9 on the copper foil sharper and more stable.

[0020] For better effect, a left vertical plate and a right vertical plate are fixedly arranged inside the box body 8. A left guide groove is formed on the inner side wall of the left vertical plate, and a right guide groove is formed on the inner side wall of the right vertical plate. A left guide protrusion is fixedly arranged at the left end of the cross plate 17, and a right guide protrusion is fixedly arranged at the right end of the cross plate 17. The left guide protrusion is slidably matched with the left guide groove, and the right guide protrusion is slidably matched with the right guide groove. Through the arrangement of the guide protrusions and the guide grooves, the cross plate 17 moves more smoothly and smoothly during the up and down movement. Embodiment

[0021] As Figures 1-5 shown, this embodiment discloses a copper foil shearing device for aluminum substrate production, which includes an operating table 1. The upper end of the operating table 1 is sequentially provided with a guiding component 2, a shearing component 3 and a conveying component 4 from left to right. A supporting component is arranged at the lower end of the operating table 1. A notch 5 is formed on the upper surface of the operating table 1, and a backing plate 6 is fixedly arranged at the port position of the notch 5. A positioning groove 7 is formed on the upper surface of the backing plate 6. The shearing component 3 includes a box body 8 fixedly arranged at the upper end of the operating table 1, and the box body 8 is arranged corresponding to the backing plate 6. A driving component and a shearing cutter head 9 connected with the driving component are arranged inside the box body 8. When in use, the copper foil to be sheared is placed above the conveying component 4, and the copper foil is transported to the lower part of the shearing component 3 under the action of the conveying component 4. The copper foil is sheared through the cooperation of the shearing component 3 and the positioning groove 7. After the shearing of the copper foil is completed, the copper foil flows into the next process by means of the arrangement of the guiding component 2, realizing fully automatic operation of small-batch shearing of copper foil, greatly reducing the working intensity of the operators and improving the working efficiency.

[0022] For better effect, a cross plate 17 is slidably connected inside the box body 8. The upper surface of the cross plate 17 is fixedly connected with a first vertical rod and a second vertical rod, and the upper ends of the first vertical rod and the second vertical rod extend upward above the outside of the box body 8. Both the first vertical rod and the second vertical rod are slidably connected with the top wall of the box body 8. An electric push rod 10 is fixedly arranged at the inner top of the box body 8, and the telescopic rod of the electric push rod 10 is connected with the upper surface of the cross plate 17. An auxiliary component is arranged at the upper end of the box body 8. The auxiliary component includes a first top cap fixedly arranged at the upper end of the first vertical rod and a second top cap fixedly arranged at the upper end of the second vertical rod. The upper end of the box body 8 is fixedly connected with a first spring 11 sleeved outside the first vertical rod and a second spring 12 sleeved outside the second vertical rod, and the outer diameter of the first spring 11 is smaller than the outer diameter of the first top cap, and the outer diameter of the second spring 12 is smaller than the outer diameter of the second top cap. When in use, when the copper foil needs to be sheared, the telescopic rod of the electric push rod 10 extends, driving the cross plate 17 to move downward inside the box body 8. The downward movement of the cross plate 17 drives the first vertical rod and the second vertical rod to move downward, and the first spring 11 and the second spring 12 are compressed. The first spring 11 and the second spring 12 play a buffering role, making the shearing process of the shearing cutter head 9 on the copper foil sharper and more stable.

[0023] For better effect, a left vertical plate and a right vertical plate are fixedly arranged inside the box body 8. A left guide groove is formed in the inner side wall of the left vertical plate, and a right guide groove is formed in the inner side wall of the right vertical plate. A left guide convex is fixedly arranged at the left end of the cross plate 17, and a right guide convex is fixedly arranged at the right end of the cross plate 17. The left guide convex is slidably matched with the left guide groove, and the right guide convex is slidably matched with the right guide groove. Through the arrangement of the guide convex and the guide groove, the cross plate 17 moves more smoothly and smoothly during the up and down movement.

[0024] For better effect, the guiding component 2 includes a guide plate 13 detachably connected to the notch 5. The guide plate 13 is used to guide the sheared copper foil into the next process, reducing the participation of operators and realizing full automation.

[0025] For better effect, the conveying component 4 includes a conveyor belt 14. The conveyor belt 14 is connected with a driving shaft 15 and a driven shaft, and the driving shaft 15 is connected with a driving motor 16. When in use, the driving motor 16 drives the driving shaft 15 to rotate, thereby driving the conveyor belt 14 to move. During the movement of the conveyor belt 14, the copper foil to be sheared placed above it is transported to the lower part of the shearing component 3.

[0026] 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 and its concept of the present utility model, making equivalent substitutions or changes should be covered within the protection scope of the present utility model.

Claims

1. A copper foil shearing device for aluminum substrate production, comprising an operating table, characterized in that: At the upper end of the operating table, a guiding component, a shearing component and a conveying component are sequentially arranged from left to right, and a supporting component is arranged at the lower end of the operating table; a notch is formed on the upper surface of the operating table, a backing plate is fixedly arranged at the port position of the notch, and a positioning groove is formed on the upper surface of the backing plate; the shearing component includes a box body fixedly arranged at the upper end of the operating table, and the box body is arranged corresponding to the backing plate, and a driving component and a shearing cutter head connected to the driving component are arranged inside the box body.

2. The copper foil shearing device for aluminum substrate production according to claim 1, characterized in that: A cross plate is slidably connected inside the box body, a first vertical rod and a second vertical rod are fixedly connected to the upper surface of the cross plate, and the upper ends of the first vertical rod and the second vertical rod extend upward above the outside of the box body, and both the first vertical rod and the second vertical rod are slidably connected to the top wall of the box body; an electric push rod is fixedly arranged at the inner top of the box body, and the telescopic rod of the electric push rod is connected to the upper surface of the cross plate, and an auxiliary component is arranged at the upper end of the box body.

3. The copper foil shearing device for aluminum substrate production according to claim 2, wherein: The auxiliary component includes a first top cap fixedly arranged at the upper end of the first vertical rod and a second top cap fixedly arranged at the upper end of the second vertical rod; a first spring sleeved outside the first vertical rod and a second spring sleeved outside the second vertical rod are fixedly connected to the upper end of the box body, and the outer diameter of the first spring is smaller than the outer diameter of the first top cap, and the outer diameter of the second spring is smaller than the outer diameter of the second top cap.

4. The copper foil shearing device for aluminum substrate production according to claim 3, characterized in that: A left vertical plate and a right vertical plate are fixedly arranged inside the box body, a left guide groove is formed on the inner side wall of the left vertical plate, a right guide groove is formed on the inner side wall of the right vertical plate, a left guide protrusion is fixedly arranged at the left end of the cross plate, a right guide protrusion is fixedly arranged at the right end of the cross plate, the left guide protrusion is slidably matched with the left guide groove, and the right guide protrusion is slidably matched with the right guide groove.

5. The copper foil shearing device for aluminum substrate production according to claim 1, characterized in that: The guiding component includes a guide plate detachably connected to the notch.

6. The copper foil shearing device for aluminum substrate production according to claim 1, wherein: The conveying component includes a conveyor belt, the conveyor belt is connected with a driving shaft and a driven shaft, and the driving shaft is connected with a driving motor.