Aluminum foil splitting machine

The aluminum foil cutting machine addresses the challenge of handling large aluminum rolls by employing adjustable support components and a drive system for secure roll installation, improving loading efficiency and operational speed.

CN223102231UActive Publication Date: 2025-07-15AN-SHINE AUTOMATION TECH SHANGHAI LTD
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Patent Information

Application Number
CN202422327715.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-07-15
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

When loading the existing aluminum foil slitting machines, due to the large volume and weight of the aluminum coil, it is inconvenient to operate, and the aluminum coil support frame of the slitting machine is inconvenient to adjust, which affects the loading process of the aluminum coil.

Method used

An aluminum foil slitting machine is designed, including a base, a support assembly and a winding assembly. By setting adjustable support assembly and adjustment assembly on the base, the drive motor and belt transmission system drive the rotating disc, adjust the spacing of the support frame with the screw and thread sleeve, and fix the aluminum coil through the compression seat to achieve stable installation and loading of the aluminum coil.

Benefits of technology

The rapid and stable loading of aluminum coils is achieved, the loading rate of aluminum coils is improved, the operation difficulty is reduced, and the support and fixing effect of aluminum coils on the slitting machine is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an aluminum foil dividing and cutting machine, and relates to the field of dividing and cutting machines, the aluminum foil dividing and cutting machine comprises a base, two supporting assemblies installed on the base and a winding assembly installed between the two supporting assemblies, a rectangular groove is formed in the outer wall of one side of the base, an adjusting assembly is arranged on the inner wall of the rectangular groove, and each supporting assembly comprises a supporting frame; a rotating disc is rotationally connected to the outer wall of one side of the supporting frame, and edge grooves are formed in the outer wall of one side of the rotating disc. According to the aluminum coil feeding device, the two supporting assemblies are arranged on the base, an aluminum coil is conveniently supported through cooperation between the two supporting assemblies, one supporting assembly can slide, the distance between the two supporting assemblies can be conveniently adjusted through the adjusting assembly in the base, and therefore the aluminum coil can be conveniently and rapidly fed.
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Description

Technical Field

[0001] The present application relates to the field of slitting machines, and more particularly to an aluminum foil slitting machine. Background Art

[0002] After being printed and coated, the aluminum foil needs to be slit on a slitting machine to cut the large-roll semi-finished product into the required specifications. The semi-finished product running and slitting on the slitting machine is a process of unwinding and rewinding, which includes two parts: the running speed control and the tension control of the machine. The so-called tension is to traction the aluminum foil and wind it onto the core according to the standard, and a certain tensile and tension traction force must be applied to the aluminum foil. The control force for tensioning the aluminum foil is the tension.

[0003] When the existing aluminum foil slitting machine is working, due to the large volume and weight of the aluminum coil, it is inconvenient to operate during actual feeding, and the aluminum coil support frame of the slitting machine is inconvenient to adjust, resulting in inconvenient feeding of the aluminum coil. Utility Model Content

[0004] In order to solve the problem of inconvenient feeding of the aluminum coil on the existing aluminum foil slitting machine, the present application provides an aluminum foil slitting machine.

[0005] An aluminum foil slitting machine provided by the present application includes a base, two support components installed on the base, and a winding component installed between the two support components. A rectangular groove is provided on the outer wall of one side of the base, and an adjustment component is provided on the inner wall of the rectangular groove. The support component includes a support frame, and a rotating disk is rotatably connected to the outer wall of one side of the support frame, and a rib groove is provided on the outer wall of one side of the rotating disk.

[0006] By adopting the above technical solution, the two support components on the base facilitate the support and installation of the aluminum coil. The setting of the adjustment component facilitates the adjustment of the movement of one of the support components on the base, thereby facilitating the auxiliary installation of the aluminum coil. The cooperation between the rotating disk and the rib groove facilitates the installation of the winding component.

[0007] The support frame in one of the support components is slidably connected to the base, and the other support frame is fixedly connected to the base.

[0008] By adopting the above technical solution, the support frame in the support component slides on the base, thus facilitating the feeding of the aluminum coil.

[0009] A driving motor is fixedly connected to the outer wall of one side of one of the support frames, a first pulley is fixedly connected to the output shaft of the driving motor, a second pulley connected to the transmission shaft of the rotating disk is rotatably connected to the outer wall of one side of the support frame, and the same belt is connected between the second pulley and the first pulley.

[0010] By adopting the above technical solution, through the cooperation between the driving motor and the belt, it is convenient to drive the rotating disk to rotate. When the rotating disk rotates, it directly drives the aluminum coil on the winding assembly to be released or wound.

[0011] The adjusting assembly includes a sliding seat slidably connected to the inner wall of the rectangular groove, and the same screw rod is rotatably connected to the inner walls on both sides of the rectangular groove. The sliding seat is screwed onto the outer wall of the screw rod.

[0012] By adopting the above technical solution, the rotation of the screw rod in the rectangular groove directly drives the sliding seat to move.

[0013] Two symmetrically arranged rectangular openings are formed in the inner wall of the top of the rectangular groove. The sliding seat passes through the rectangular openings and is fixedly connected to the support frame. One end of the screw rod is fixedly connected with a hand wheel.

[0014] By adopting the above technical solution, the setting of the hand wheel facilitates directly driving the screw rod to rotate. When the screw rod rotates, it directly drives the sliding seat to drive the support frame to slide, thereby adjusting the distance between the two support assemblies.

[0015] The winding assembly includes a winding roller, and prisms are fixedly connected to both ends of the winding roller. The two prisms are respectively inserted into the prism grooves. A circular groove is formed at one end of one of the prisms, and rotating parts are rotatably connected to the inner walls of the circular groove.

[0016] By adopting the above technical solution, it is convenient to install the aluminum coil through the winding roller in the winding assembly. The setting of the prisms facilitates assisting the winding roller to be installed on the two support assemblies.

[0017] An installation cavity is formed in the inner wall of the winding roller, and a bidirectional screw rod is rotatably connected to the inner walls on both sides of the installation cavity. One end of the bidirectional screw rod is fixedly connected to the rotating part, and two symmetrically arranged threaded sleeves are screwed onto the outer wall of the bidirectional screw rod.

[0018] By adopting the above technical solution, the setting of the rotating part facilitates directly driving the bidirectional screw rod to rotate. When the bidirectional screw rod rotates, it directly drives the two threaded sleeves to move towards or away from each other.

[0019] Three equally spaced support plates are rotatably connected to the outer walls of the two threaded sleeves. Three equally spaced arc-shaped openings are formed in the inner wall of the installation cavity. The six support plates respectively pass through the three arc-shaped openings and are rotatably connected to three arc-shaped pressing seats.

[0020] By adopting the above technical solution, when the two threaded sleeves move towards each other, they directly drive the pressing seats to press the aluminum coil through the support plates, thereby facilitating pressing and fixing the aluminum coil and preventing the aluminum coil from shaking.

[0021] In summary, the present application includes at least one of the following beneficial technical effects:

[0022] 1. The present application facilitates the support of an aluminum coil by providing two support components on a base. The cooperation between the two support components enables easy support for the aluminum coil. One of the support components can slide, and the adjustment component in the base facilitates the adjustment of the distance between the two support components, thereby facilitating the rapid loading of the aluminum coil.

[0023] 2. The present application facilitates the fixing of the aluminum coil on the winding roller by providing three adjustable pressing seats on the winding roller. Through the cooperation between the bidirectional screw, the threaded sleeve, and the support plate, the three pressing seats are adjusted to move towards or away from each other, thereby further improving the loading rate of the aluminum coil. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is a schematic diagram of the overall structure of an aluminum foil slitter according to an embodiment of the present application;

[0025] Figure 2 is a schematic diagram mainly showing the structure of the base according to an embodiment of the present application;

[0026] Figure 3 is a schematic diagram mainly showing the structure of the sliding seat according to an embodiment of the present application;

[0027] Figure 4 is a schematic diagram of a sectional view mainly showing the structure of the winding assembly according to an embodiment of the present application;

[0028] Reference numerals: 1, base; 2, support component; 3, winding component; 4, adjustment component; 5, support frame; 6, rotating disc; 7, rib groove; 8, drive motor; 9, belt; 10, rectangular groove; 11, sliding seat; 12, screw; 13, handwheel; 14, winding roller; 15, installation cavity; 16, bidirectional screw; 17, threaded sleeve; 18, prism; 19, support plate; 20, pressing seat; 21, rotating part. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0029] The following will Figures 1 - 4 further describe the present application in detail with reference to the attached

[0030] An embodiment of the present application discloses an aluminum foil slitter.

[0031] Refer to Figures 1 - 3 , an aluminum foil slitter, including a base 1, two support components 2 installed on the base 1, and a winding component 3 installed between the two support components 2. A rectangular groove 10 is formed on the outer wall of one side of the base 1, and an adjustment component 4 is arranged on the inner wall of the rectangular groove 10;

[0032] Refer to Figures 2 - 3, the supporting component 2 includes a support frame 5, and a rotating disk 6 is rotatably connected to the outer wall of one side of the support frame 5. A rib groove 7 is formed in the outer wall of one side of the rotating disk 6. The rotating disk 6 on the support frame 5 facilitates the installation of the winding component 3. The support frame 5 in one of the supporting components 2 is slidably connected to the base 1, and the other support frame 5 is fixedly connected to the base 1. The support frame 5 that can slide on the base 1 facilitates the adjustment of the distance between the two supporting components 2. A driving motor 8 is fixedly connected to the outer wall of one side of one of the support frames 5, and a first pulley is fixedly connected to the output shaft of the driving motor 8. A second pulley connected to the transmission shaft of the rotating disk 6 is rotatably connected to the outer wall of one side of the support frame 5, and the same belt 9 is connected between the second pulley and the first pulley. Through the cooperation between the driving motor 8 and the belt 9, it is convenient to drive the rotating disk 6 to rotate. When the rotating disk 6 rotates, it directly drives the aluminum coil on the winding component 3 to be released or wound.

[0033] Refer to Figures 3 - 4 , the winding component 3 for assisting in the installation of the aluminum coil includes a winding roller 14, and prisms 18 are fixedly connected to both ends of the winding roller 14. The two prisms 18 are respectively inserted into the rib grooves 7. A circular groove is formed at one end of one of the prisms 18, and rotating parts 21 are rotatably connected to the inner walls of the circular groove. An installation cavity 15 is formed in the inner wall of the winding roller 14, and a bidirectional screw 16 is rotatably connected to the inner walls of both sides of the installation cavity 15. One end of the bidirectional screw 16 is fixedly connected to the rotating part 21. Two symmetrically arranged threaded sleeves 17 are screwed on the outer wall of the bidirectional screw 16. Three equally spaced support plates 19 are rotatably connected to the outer walls of the two threaded sleeves 17. Three equally spaced arc-shaped openings are formed in the inner wall of the installation cavity 15. The six support plates 19 respectively pass through the three arc-shaped openings and are rotatably connected to three arc-shaped pressing seats 20.

[0034] During use, the arrangement of the rotating part 21 facilitates directly driving the bidirectional screw 16 to rotate. When the bidirectional screw 16 rotates, it directly drives the two threaded sleeves 17 to move towards or away from each other. When the two threaded sleeves 17 move towards each other, they directly push the three pressing seats 20 to move away from each other through the support plates 19. When the three pressing seats 20 move away from each other, they directly press the aluminum coil.

[0035] Refer to Figure 3 , the adjusting component 4 includes a sliding seat 11 slidably connected to the inner wall of the rectangular groove 10, and the same screw 12 is rotatably connected to the inner walls of both sides of the rectangular groove 10. The sliding seat 11 is screwed on the outer wall of the screw 12. Two symmetrically arranged rectangular openings are formed in the top inner wall of the rectangular groove 10. The sliding seat 11 passes through the rectangular openings and is fixedly connected to the support frame 5. A handwheel 13 is fixedly connected to one end of the screw 12.

[0036] During use, the rotation of the screw rod 12 is conveniently and directly driven by setting the hand wheel 13. When the screw rod 12 rotates, it directly drives the sliding seat 11 to drive the support frame 5 to slide, thereby adjusting the distance between the two support components 2.

[0037] The implementation principle of an aluminum foil slitter according to an embodiment of the present application is as follows: During use, first insert the winding component 3 into the aluminum coil, and then drive the rotating part 21 to rotate through a tool. When the rotating part 21 rotates, it directly drives the bidirectional screw rod 16 to rotate. When the bidirectional screw rod 16 rotates, it directly drives the two threaded sleeves 17 to move towards or away from each other. When the two threaded sleeves 17 move towards each other, they directly push the three pressing seats 20 to move away from each other through the support plate 19. When the three pressing seats 20 move away from each other, they directly press the aluminum coil. After the aluminum coil is fixed, then use a lifting device to lift the winding component 3 between the two support components 2, and then rotate the hand wheel 13 to drive the screw rod 12 to rotate. When the screw rod 12 rotates, it directly drives the sliding seat 11 to move. When the sliding seat 11 moves, it directly drives one support frame 5 to move. When the two support frames 5 approach each other, it is convenient to insert the prism 18 into the prism groove 7, thereby completing the loading of the aluminum coil. When releasing the aluminum coil, the drive motor 8 drives the winding roller 14 to rotate through the belt 9.

[0038] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. An aluminum foil slitter, comprising a base (1), two support components (2) mounted on the base (1), and a winding component (3) mounted between the two support components (2), characterized in that: A rectangular groove (10) is formed on the outer wall of one side of the base (1), and an adjusting assembly (4) is arranged on the inner wall of the rectangular groove (10). The supporting assembly (2) includes a support frame (5), and a rotating disk (6) is rotatably connected to the outer wall of one side of the support frame (5). A rib groove (7) is formed on the outer wall of one side of the rotating disk (6).

2. The aluminum foil slitter according to claim 1, wherein: The support frame (5) in one of the supporting assemblies (2) is slidably connected to the base (1), and the other support frame (5) is fixedly connected to the base (1).

3. The aluminum foil slitter according to claim 2, characterized in that: A driving motor (8) is fixedly connected to the outer wall of one side of one of the support frames (5), and a first pulley is fixedly connected to the output shaft of the driving motor (8). A second pulley connected to the transmission shaft of the rotating disk (6) is rotatably connected to the outer wall of one side of the support frame (5), and the same belt (9) is connected between the second pulley and the first pulley.

4. The aluminum foil slitter according to claim 3, wherein: The adjusting assembly (4) includes a sliding seat (11) slidably connected to the inner wall of the rectangular groove (10), and the same screw rod (12) is rotatably connected to the inner walls of both sides of the rectangular groove (10). The sliding seat (11) is screwed on the outer wall of the screw rod (12).

5. A slitter for aluminum foil according to claim 4, characterized in that: Two symmetrically arranged rectangular openings are formed on the inner wall of the top of the rectangular groove (10). The sliding seat (11) passes through the rectangular openings and is fixedly connected to the support frame (5). A hand wheel (13) is fixedly connected to one end of the screw rod (12).

6. The aluminum foil slitter according to claim 5, characterized in that: The winding assembly (3) includes a winding roller (14), and prisms (18) are fixedly connected to both ends of the winding roller (14). The two prisms (18) are respectively inserted into the rib grooves (7). A circular groove is formed at one end of one of the prisms (18), and a rotating part (21) is rotatably connected to the inner wall of the circular groove.

7. An aluminum foil slitter according to claim 6, characterized in that: An installation cavity (15) is formed in the inner wall of the winding roller (14), and a bidirectional screw rod (16) is rotatably connected to the inner walls of both sides of the installation cavity (15). One end of the bidirectional screw rod (16) is fixedly connected to the rotating part (21). Two symmetrically arranged threaded sleeves (17) are screwed on the outer wall of the bidirectional screw rod (16).

8. A slitter for aluminum foil according to claim 7, characterized in that: Three equally spaced support plates (19) are rotatably connected to the outer walls of the two threaded sleeves (17). Three equally spaced arc-shaped openings are formed on the inner wall of the installation cavity (15). The six support plates (19) respectively pass through the three arc-shaped openings and are rotatably connected to three arc-shaped pressing seats (20).