A multi-hole fuse taping machine
By using a self-adhesive film assembly and a hot press roller to fix the conductor position in a multi-hole fuse bonding machine, the problem of conductors being easily broken during stamping is solved, the processing efficiency is improved, and the conductor is given insulation and high-temperature resistance properties.
Patent Information
- Application Number
- CN202210573944.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-24
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2042-05-24
AI Technical Summary
In the existing technology, when the mold in the bonding machine performs the stamping process on the conductor, the conductor cannot be protected, resulting in the conductor's position being unstable and it being easily broken, which affects the processing efficiency.
A multi-hole fuse bonding machine was designed, comprising a film bonding assembly, a fuse punching assembly, a hot pressing assembly, and a slitting assembly. The self-adhesive film assembly presses the conductor onto the lower surface of the conductor to fix the conductor's position, and the hot pressing roller imparts insulation and high-temperature resistance properties to the conductor, preventing it from being pulled apart during the punching process.
It effectively fixes the conductor position, improves the conductor processing efficiency and yield, ensures that the conductor is not broken during the stamping process, and endows the conductor with insulation and high temperature resistance properties.
Smart Images

Figure CN114932678B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of mechanical equipment, and particularly relates to a multi-hole fuse laminating machine. BACKGROUND
[0002] The multi-hole fuse laminating machine is used for processing of a signal collection line in a new energy battery pack of an automobile, and the laminating machine laminates an insulating film on a surface of a conductor, protects the conductor through the insulating film, and has the advantages of high efficiency, convenient alignment, high product yield and the like.
[0003] In the prior art, when a die in the laminating machine punches the conductor, the conductor cannot be protected, the position of the conductor cannot be fixed, the conductor is easily broken, and the processing efficiency of the conductor is affected. SUMMARY
[0004] The application aims to provide a multi-hole fuse laminating machine, and aims to solve the problem that, in the prior art, when a die in the laminating machine punches a conductor, the conductor cannot be protected, the position of the conductor cannot be fixed, the conductor is easily broken, and the processing efficiency of the conductor is affected.
[0005] To achieve the above-mentioned purpose, the application provides the following technical scheme.
[0006] A multi-hole fuse laminating machine comprises:
[0007] A laminating machine body;
[0008] A film laminating assembly, a fuse punching assembly, a hot pressing assembly, a reinforcing plate assembly and a slitting assembly are sequentially arranged in the laminating machine body from left to right, and the reinforcing plate assembly is provided with two groups.
[0009] A self-adhesive film assembly is arranged in the laminating machine body and located on the lower side of the film laminating assembly.
[0010] A punching frame is fixedly connected to the laminating machine body; and
[0011] A flat film pressing mechanism comprises an upper flat film assembly, a lower flat film assembly, three groups of punching assemblies, two groups of flat film adsorption feeding assemblies and a hot pressing assembly, the three groups of punching assemblies and the flat film adsorption feeding assemblies are each provided with two groups, the upper flat film assembly is arranged on the upper side of the punching frame, the lower flat film assembly is arranged in the laminating machine body, the two groups of the three groups of punching assemblies are respectively arranged on the upper and lower sides of the punching frame, the two groups of the flat film adsorption feeding assemblies are arranged on one side of the punching frame, and the hot pressing assembly is arranged between one of the flat film adsorption feeding assemblies and the reinforcing plate assembly.
[0012] As a preferred scheme of the present application, the laminating machine body is provided with an upper isolation film assembly and a lower isolation film assembly, and the upper isolation film assembly is located on the upper side of the lower isolation film assembly.
[0013] As a preferred scheme of the present application, the hot pressing assembly comprises a hot pressing frame, a first hot pressing roller, a cold pressing roller and a second hot pressing roller, the hot pressing frame is fixedly connected in the laminating machine body, the hot pressing frame, the first hot pressing roller and the cold pressing roller are respectively rotatably connected in the hot pressing frame through rotating shafts, the second hot pressing roller is located on the upper side of the first hot pressing roller, and the cold pressing roller is located on one side of the second hot pressing roller.
[0014] As a preferred scheme of the present application, one side of the film pasting assembly is provided with a pre-wiring assembly.
[0015] As a preferred scheme of the present application, one side of the striping assembly is provided with a lead-out assembly.
[0016] As a preferred scheme of the present application, the laminating machine body is provided with an edge collecting assembly, and the edge collecting assembly is located on the lower side of the lead-out assembly.
[0017] Compared with the prior art, the present application has the following beneficial effects:
[0018] 1. In the present scheme, before the stamping process of the conductor, the self-adhesive film is adhered to the lower surface of the conductor after being pressed by the two rollers in the film pasting assembly, the conductor is fixed in position by the self-adhesive film, and the conductor will not be broken during stamping in the safety punching assembly, thereby improving the production rate and the processing efficiency of the conductor.
[0019] 2. In the present scheme, the upper flat film is attached to the upper surface of the conductor, and the lower flat film is attached to the lower surface of the conductor, and the conductor has the characteristics of insulation and high temperature resistance after high-temperature hot pressing by the first hot pressing roller and the second hot pressing roller. DETAILED DESCRIPTION
[0020] The accompanying drawings are included to provide a further understanding of the present application, and constitute a part of the specification, and are used together with the embodiments of the present application to explain the present application, and do not constitute a limitation on the present application. In the drawings:
[0021] Figure 1 is a front view of the present application;
[0022] Figure 2 is a running schematic view of the present application;
[0023] Figure 3 is a partial enlarged view of A in the present application. Figure 2
[0024] In the figure: 1, the main body of the laminator; 2, the pre-wiring assembly; 3, the film laminating assembly; 4, the fuse punching assembly; 5, the self-adhesive film assembly; 6, the punching frame; 7, the upper flat film assembly; 8, the lower flat film assembly; 9, the three sets of punching assembly; 10, the flat film adsorption feeding assembly; 11, the hot pressing assembly; 1101, the hot pressing frame; 1102, the first hot pressing roller; 1103, the cold pressing roller; 1104, the second hot pressing roller; 12, the reinforcing plate assembly; 13, the upper isolation film assembly; 14, the lower isolation film assembly; 15, the slitting assembly; 16, the lead-out assembly; 17, the edge material assembly. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0026] Embodiment 1
[0027] Please refer to Figures 1-3 The present application provides the following technical solutions:
[0028] A multi-hole fuse laminator, comprising:
[0029] The main body of the laminator 1;
[0030] The film laminating assembly 3, the fuse punching assembly 4, the hot pressing assembly 11, the reinforcing plate assembly 12 and the slitting assembly 15 are sequentially arranged in the main body of the laminator 1 from left to right, and the reinforcing plate assembly 12 is provided with two sets;
[0031] The self-adhesive film assembly 5 is arranged in the main body of the laminator 1, and the self-adhesive film assembly 5 is located on the lower side of the film laminating assembly 3;
[0032] The punching frame 6 is fixedly connected in the main body of the laminator 1; and
[0033] The flat film pressing mechanism includes the upper flat film assembly 7, the lower flat film assembly 8, the three sets of punching assembly 9, the flat film adsorption feeding assembly 10 and the hot pressing assembly 11, the three sets of punching assembly 9 and the flat film adsorption feeding assembly 10 are each provided with two sets, the upper flat film assembly 7 is arranged on the upper side of the punching frame 6, the lower flat film assembly 8 is arranged in the main body of the laminator 1, the two sets of three sets of punching assembly 9 are arranged on the upper and lower sides of the punching frame 6, the two sets of flat film adsorption feeding assembly 10 are arranged on one side of the punching frame 6, and the hot pressing assembly 11 is arranged between one of the flat film adsorption feeding assembly 10 and the reinforcing plate assembly 12.
[0034] In the specific embodiment of the application, the laminator body 1 is used for the installation of various components in the device, the conductor is input from the left side of the device and output from the right side of the device, when the conductor enters the film pasting assembly 3, the self-adhesive film is output from one of the output ends of the self-adhesive film assembly 5, the self-adhesive film is pressed and bonded to the lower surface of the conductor by the two rollers in the film pasting assembly 3, the conductor is positioned by the self-adhesive film, and the position of the conductor is fixed, the conductor enters the safety punching assembly 4 for stamping, the die punches the conductor to 0.1-0.2 mm, because it prevents short circuit, if short circuit, it will be fused at the position of 0.2 mm; the self-adhesive film is used to prevent the conductor from being pulled off after being punched in the safety punching assembly 4, after the punching is completed, the self-adhesive film passes through the surface of the cold pressing roller 1103, the cold pressing roller 1103 prevents the film from being stuck, the other output end of the self-adhesive film assembly 5 is used for winding, and the self-adhesive film is separated from the conductor; the output end of the upper flat film assembly 7 outputs the upper flat film, the upper flat film enters the hot pressing assembly 11 after passing through the three sets of punching assembly 9 and the flat film adsorption feeding assembly 10 located on the upper side, when the upper flat film passes through the three sets of punching assembly 9 located on the upper side, the upper flat film is punched, at the same time that the upper flat film is punched, the lower flat film assembly 8 located on the lower side outputs the lower flat film, the lower flat film enters the hot pressing assembly 11 after passing through the three sets of punching assembly 9 and the flat film adsorption feeding assembly 10 located on the lower side, the lower flat film also performs punching process when entering the three sets of punching assembly 9 located on the lower side, in the hot pressing assembly 11, the upper flat film is attached to the upper surface of the conductor, and the lower flat film is attached to the lower surface of the conductor, the high-temperature hot pressing of the first hot pressing roller 1102 and the second hot pressing roller 1104 makes the conductor have the characteristics of insulation and high temperature resistance, the conductor after hot pressing enters two reinforcing plate assemblies 12 in turn to perform reinforcing process, the conductor after reinforcing passes between the upper isolation film assembly 13 and the lower isolation film assembly 14, the upper isolation film is output from the upper isolation film assembly 13 and attached to the upper surface of the upper flat film, the lower isolation film is output from the lower isolation film assembly 14 and attached to the lower surface of the lower flat film, after the attachment is completed, the conductor enters the slitting assembly 15 to perform slitting process.
[0035] For details, please refer to Figures 1-3 The laminator body 1 is provided with the upper isolation film assembly 13 and the lower isolation film assembly 14, and the upper isolation film assembly 13 is located on the upper side of the lower isolation film assembly 14.
[0036] In this embodiment, the upper isolation film assembly 13 is used for outputting the upper isolation film, and the lower isolation film assembly 14 is used for outputting the lower isolation film, and the upper isolation film assembly 13 and the lower isolation film assembly 14 are both provided with pressing rollers, and the conductor passes between the two pressing rollers, when passing, the upper isolation film is pressed and covered on the upper surface of the upper flat film by the upper pressing roller, and the lower isolation film is pressed and covered on the lower surface of the lower flat film by the lower pressing roller.
[0037] For details, please refer to Figures 1-3The hot-pressing assembly 11 comprises a hot-pressing frame 1101, a first hot-pressing roller 1102, a cold-pressing roller 1103 and a second hot-pressing roller 1104. The hot-pressing frame 1101 is fixedly connected in the laminating machine main body 1. The hot-pressing frame 1101, the first hot-pressing roller 1102 and the cold-pressing roller 1103 are respectively rotatably connected in the hot-pressing frame 1101 through rotating shafts. The second hot-pressing roller 1104 is located on the upper side of the first hot-pressing roller 1102. The cold-pressing roller 1103 is located on one side of the second hot-pressing roller 1104.
[0038] In the embodiment, the conductor passes between the second hot-pressing roller 1104 and the first hot-pressing roller 1102. The upper flat-film suction feeding assembly 10 is used for conveying the upper flat film. The lower flat-film suction feeding assembly 10 is used for conveying the lower flat film. The conductor is located between the upper flat film and the lower flat film. The upper flat film and the lower flat film are bonded on the upper and lower surfaces of the conductor through the hot pressing of the second hot-pressing roller 1104 and the first hot-pressing roller 1102.
[0039] For details, please refer to Figures 1-3 One side of the film pasting assembly 3 is provided with the pre-wiring assembly 2.
[0040] In the embodiment, the pre-wiring assembly 2 is used for inputting the conductor and simultaneously performing the pre-wiring process.
[0041] For details, please refer to Figures 1-3 One side of the slitting assembly 15 is provided with the lead-out assembly 16.
[0042] In the embodiment, the lead-out assembly 16 is used for outputting the completed conductor from the device.
[0043] For details, please refer to Figures 1-3 The laminating machine main body 1 is provided with the edge material collecting assembly 17. The edge material collecting assembly 17 is located on the lower side of the lead-out assembly 16.
[0044] In the embodiment, the edge material collecting assembly 17 is used for winding the edge material. The assemblies used in the device are all prior art, and will not be described in detail here.
[0045] The working principle and use process of the application are as follows: in use, the conductor is input from the pre-pulling assembly 2, and the pre-pulling process is performed at the same time; when the conductor enters the film pasting assembly 3, the self-adhesive film is output from one of the output ends of the self-adhesive film assembly 5, the self-adhesive film is adhered to the lower surface of the conductor after being compressed by the two rollers in the film pasting assembly 3, the conductor is positioned by the self-adhesive film, and the position of the conductor is fixed, the conductor enters the safety punching assembly 4 to be punched, the self-adhesive film is used to prevent the conductor from being pulled off after being punched in the safety punching assembly 4, the self-adhesive film passes through the surface of the cold pressing roller 1103 after the punching is completed, and the self-adhesive film is wound from the other output end of the self-adhesive film assembly 5 to separate the self-adhesive film from the conductor; the output end of the upper flat film assembly 7 outputs the upper flat film, the upper flat film enters the hot pressing assembly 11 after passing through the three sets of punching assemblies 9 and the flat film adsorption feeding assembly 10 located on the upper side, the upper flat film is punched when passing through the three sets of punching assemblies 9 located on the upper side, the lower flat film assembly 8 outputs the lower flat film at the same time that the upper flat film is punched, the lower flat film enters the hot pressing assembly 11 after passing through the three sets of punching assemblies 9 and the flat film adsorption feeding assembly 10 located on the lower side, and the lower flat film also performs the punching process when entering the three sets of punching assemblies 9 located on the lower side, in the hot pressing assembly 11, the upper flat film is attached to the upper surface of the conductor, and the lower flat film is attached to the lower surface of the conductor, the conductor has the characteristics of insulation and high temperature resistance after high-temperature hot pressing of the first hot pressing roller 1102 and the second hot pressing roller 1104, the conductor after hot pressing enters the two reinforcing plate assemblies 12 in sequence to perform the reinforcing process, the conductor after reinforcing passes between the upper isolation film assembly 13 and the lower isolation film assembly 14, the upper isolation film is output from the upper isolation film assembly 13 to be attached to the upper surface of the upper flat film, the lower isolation film is output from the lower isolation film assembly 14 to be attached to the lower surface of the lower flat film, the conductor enters the slitting assembly 15 to perform the slitting process after the attachment is completed, the conductor after the attachment is output from the leading assembly 16, and finally the edge material assembly 17 winds the edge material; through the device, the self-adhesive film is adhered to the lower surface of the conductor after being compressed by the two rollers in the film pasting assembly 3 before the punching process of the conductor, the conductor is positioned by the self-adhesive film, the position of the conductor is fixed, the conductor is not pulled off after being punched in the safety punching assembly 4, the production rate is improved, and the processing efficiency of the conductor is improved.
[0046] Finally, it should be noted that: the above only describes the preferred embodiments of the application and is not used to limit the application, although the application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement of some technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the application shall be included in the protection scope of the application.
Claims
1. A multi-hole fuse bonding machine, characterized in that, include: The laminating machine body (1) is provided with an upper release film assembly (13) and a lower release film assembly (14), wherein the upper release film assembly (13) is located on the upper side of the lower release film assembly (14); The laminating machine body (1) is provided with a film laminating assembly (3), a safety punching assembly (4), a hot pressing assembly (11), a reinforcing plate assembly (12) and a slitting assembly (15) from left to right. The reinforcing plate assembly (12) is provided in two sets. The self-adhesive film assembly (5) is located inside the laminating machine body (1). The self-adhesive film assembly (5) is located on the lower side of the film laminating assembly (3). The film laminating assembly (3) has a pre-wiring assembly (2) on one side. When the conductor enters the film laminating assembly (3), the self-adhesive film is output from one of the output ends of the self-adhesive film assembly (5). The self-adhesive film is pressed by two rollers in the film laminating assembly (3) and then adhered to the lower surface of the conductor. The self-adhesive film defines the conductor and fixes its position. The conductor enters the safety punching assembly (4) for punching. The self-adhesive film is used to prevent the conductor from being pulled apart after punching in the safety punching assembly (4). After punching, the self-adhesive film passes through the surface of the cold pressing roller (1103). The cold pressing roller (1103) prevents the film from sticking. The self-adhesive film is wound up by the other output end of the self-adhesive film assembly (5) to separate the self-adhesive film from the conductor. Punching frame (6), which is fixedly connected to the body (1) of the bonding machine; as well as The flat film pressing mechanism includes an upper flat film assembly (7), a lower flat film assembly (8), three sets of punching assemblies (9), a flat film adsorption feeding assembly (10), and a hot pressing assembly (11). The three sets of punching assemblies (9) and the flat film adsorption feeding assembly (10) are each provided in two sets. The upper flat film assembly (7) is located on the upper side of the punching frame (6), and the lower flat film assembly (8) is located inside the laminating machine body (1). The two sets of the three sets of punching assemblies (9) are respectively located on the upper and lower sides of the punching frame (6). The two sets of flat film adsorption feeding assemblies (10) are both located on one side of the punching frame (6). The hot pressing assembly (11) is located between one of the flat film adsorption feeding assemblies (10) and the reinforcing plate assembly (12). The hot pressing assembly (11) includes a hot pressing frame (1101), a first hot pressing roller (1102), a cold pressing roller (1103), and a second hot pressing roller (1104). The hot pressing frame (1101) is fixedly connected inside the laminating machine body (1). The hot pressing frame (1101), the first hot pressing roller (1102), and the cold pressing roller (1103) are rotatably connected inside the hot pressing frame (1101) through rotating shafts. The second hot pressing roller (1104) is located above the first hot pressing roller (1102), and the cold pressing roller (1103) is located on one side of the second hot pressing roller (1104).
2. The multi-hole fuse bonding machine according to claim 1, characterized in that: The stripping component (15) is provided with an extraction component (16) on one side.
3. A multi-hole fuse bonding machine according to claim 2, characterized in that: The laminating machine body (1) is provided with an edge-gathering component (17), which is located below the take-up component (16).
Citation Information
Patent Citations
Automatic make -up machine of laminating of FFC
CN208774088U
Porous fuse laminating machine
CN217514560U