Wire marking machine

The design of the detachable cutting board module and switching mechanism solves the problem that the wire marking machine cannot adapt to wire tubes of different thicknesses, thus achieving multi-functional adaptability and cost reduction of the equipment.

CN223507957UActive Publication Date: 2025-11-04WUHAN JINGCHEN INTELLIGENT IDENTIFICATION TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423252842.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-04
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

The existing wire marking machine's cutting board cannot be replaced, making it unable to adapt to wire marking tubes of different thicknesses, thus increasing the user's operating costs.

Method used

A wire marking machine was designed, including a detachable cutting board module and an installation component. The detachable cutting board module and installation component enable the replacement of the cutting board and adaptation to wire marking tubes of different sizes. Combined with a switching mechanism and a cutting module, it enables the conversion between full cutting and half cutting.

Benefits of technology

This technology enables the wire marking machine to adapt to different types of wire tubes, reducing user costs and improving the adaptability and ease of operation of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223507957U_ABST
    Figure CN223507957U_ABST
Patent Text Reader

Abstract

The utility model discloses a wire marking machine. The wire marking machine comprises a plate body and a cutting board module, the chopping board module comprises a mounting assembly, a chopping board assembly and an open cover, the chopping board assembly is detachably connected with the mounting assembly, the chopping board assembly is mounted on the board body, and the open cover is arranged above the chopping board module; the detachable direction of the cutting board assembly is the direction in which the opening cover is opened to enable a pipeline groove of the wire marking machine to be opened. The technical problem that a cutting board of a line marking machine in the prior art is inconvenient to replace is solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the technical field of wire marking machine equipment, and specifically to a wire marking machine. Background Technology

[0002] A wire marking printer, also known as a wire marking machine or wire labeling machine, uses thermal transfer printing technology with a printing resolution of up to 300 dpi. It can print characters on materials such as PVC tubing, heat shrink tubing, and self-adhesive labels. It is generally used for secondary wire marking in electrical control and distribution equipment, and is a dedicated device for marking wiring in electrical control, distribution, and integrated cabling projects. It meets the needs of power plants, electrical equipment factories, substations, and the power industry for distinguishing and marking wires. It is also widely used in the marking fields of switches, locomotives, machine tools, power, telecommunications, pharmaceuticals, and steel industries, easily achieving the marking of various cables, pipes, components, and cabinets.

[0003] In related technologies, the anvil used for cutting wire is fixedly installed on the board. When the anvil is damaged, it is inconvenient to replace it. Moreover, since the anvil cannot be replaced, different wire marking machines are required to achieve half or full cutting for wire tubes of different thicknesses. The adaptability of the wire marking machine is not strong, and it increases the user's operating costs. Utility Model Content

[0004] The purpose of this utility model is to overcome the above-mentioned technical deficiencies and provide a wire marking machine that solves the technical problem that it is inconvenient to change the cutting board in the existing wire marking machine.

[0005] To achieve the above-mentioned technical objectives, the present invention adopts the following technical solution:

[0006] This utility model provides a wire marking machine, comprising:

[0007] plate body;

[0008] A cutting board module, comprising a mounting assembly and a cutting board assembly, wherein the cutting board assembly and the mounting assembly are detachably connected, and the cutting board assembly is mounted on the board body; and

[0009] The cover is located above the anvil module, and the anvil assembly is detachable in the direction that the cover opens to expose the pipeline groove of the wire marking machine.

[0010] In some embodiments, the mounting assembly includes a mounting bracket and a cutting board tube, the mounting bracket being connected to the board body, the cutting board assembly being detachably connected to the cutting board tube, and the cutting board tube being rotatably connected to the mounting bracket to enable the conversion between full and half cuts of the wire gauge tube.

[0011] In some embodiments, the cutting board assembly includes a cutting board and a pad, the cutting board being mounted on the cylindrical surface of the cutting board tube, the cutting board having two panels, and the pad being mounted on the cutting board and partially obscuring one of the panels, such that one panel is a half-cut panel and the other is a full-cut panel.

[0012] In some embodiments, a hand-held area is formed on the cutting board.

[0013] In some embodiments, a first notch is formed on the cutting board to expose the cylindrical portion of the cutting board.

[0014] In some embodiments, a second notch for mounting the gasket is formed on the anvil tube.

[0015] In some embodiments, the marking machine further includes a switching mechanism. The switching mechanism includes a driving device, a first pulling device, and a second pulling device. The driving device is connected to the anvil tube via the first pulling device. One end of the second pulling device is connected to the anvil tube, and the other end is connected to the board body. The driving device can be located in a first position or a second position. When the driving device is located in the first position, the anvil tube is in a half-cut state. When the driving device is located in the second position, the anvil tube is in a fully cut state.

[0016] In some embodiments, the lower end of the cutting board tube is provided with a pull plate, and the pull plate is provided with a first pull hole and a second pull hole, the first pull hole being connected to the first pulling device, and the second pull hole being connected to the second pulling device.

[0017] In some embodiments, the driving device includes a shaft, a swing arm, and a connecting rod. The shaft is rotatably connected to the plate, and the swing arm is connected to the shaft. The end of the swing arm away from the shaft is provided with a connecting rod. A connecting hole is provided on the connecting rod, and the first pulling device is connected in the connecting hole.

[0018] In some embodiments, the plate body is provided with a limiting groove that cooperates with the swing arm.

[0019] In some embodiments, the first pulling device includes a first pulling spring, one end of which is disposed in the connecting hole and the other end is connected to the first pulling hole of the pull plate.

[0020] In some embodiments, the second pulling device includes a second pulling spring, one end of which is connected to the plate body and the other end is connected to the second pulling hole of the pull plate.

[0021] In some embodiments, the wire marking machine further includes a cutting module, which includes a push wheel, a transverse rod, and a cutting blade; the push wheel is provided with a transmission cam, the transverse rod is axially fixed to a mounting bracket, the cutting blade is slidably connected to the transverse rod, and the transmission cam is used to push the cutting blade to move axially on the transverse rod.

[0022] In some embodiments, a return spring is sleeved on the transverse rod, one end of the return spring being connected to the mounting bracket and the other end abutting against the cutter.

[0023] Compared with the prior art, the wire marking machine provided by this utility model has an anvil module, which includes an installation component and an anvil component, set on the plate body. The anvil module and the installation component are detachably connected. Therefore, for wire marking tubes of different sizes, different sized anvil components can be replaced, thereby enabling the wire marking machine to be compatible with various types of wire marking tubes and reducing the user's operating costs. Attached Figure Description

[0024] Figure 1 This is an overall schematic diagram of the wire marking machine's full-cut or half-cut state conversion structure provided in this embodiment of the utility model;

[0025] Figure 2 This is a partial schematic diagram of the anvil module of the wire marking machine's full-cut or half-cut state conversion structure provided in this embodiment of the utility model.

[0026] Explanation of reference numerals in the attached drawings: 1. Plate body; 11. Limiting groove; 2. Cutting board module; 21. Mounting bracket; 22. Cutting board tube; 22a. Second notch; 221. Gasket; 222. Half-cut panel; 223. Full-cut panel; 225a. Handheld position; 225b. First notch; 224. Pull plate; 2241. First pull hole; 2242. Second pull hole; 3. Switching structure; 31. Drive device; 311. Shaft; 312. Swing arm; 3121. Connecting rod; 3122. Connecting hole; 32. First pulling device; 321. First pulling spring; 33. Second pulling device; 331. Second pulling spring; 4. Cutter module; 41. Push wheel; 411. Transmission cam; 42. Horizontal rod; 421. Return spring; 43. Cutter. Detailed Implementation

[0027] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0028] To address the technical problem that existing wire marking machines cannot adapt to multiple wire marking tubes of different thicknesses, this utility model provides a wire marking machine that can change the anvil according to the size of the wire marking tube, thereby adapting to different models of wire marking tubes.

[0029] Please see Figure 1 , Figure 1 This is a schematic diagram of the structure of a wire marking machine in one embodiment of the present invention. The wire marking machine includes a plate body 1, an anvil module 2, and a cover (not shown in the figure). The anvil module 2 includes an installation component and an anvil assembly. The anvil assembly and the installation component are detachably connected. The anvil assembly is installed on the plate body 1. The cover is located above the anvil module 2. The detachable direction of the anvil assembly is the direction in which the cover is opened to open the pipeline groove of the wire marking machine.

[0030] In this embodiment, by setting an anvil module 2, which includes an installation component and an anvil assembly, on the plate body 1, and making the anvil module 2 and the installation component detachably connected, different sizes of anvil assemblies can be replaced for wire marking tubes of different sizes, thereby enabling the wire marking machine to adapt to various types of wire marking tubes and reducing the user's operating costs.

[0031] In one possible embodiment, the mounting assembly includes a mounting bracket 21 and a cutting board tube 22, the mounting bracket 21 being connected to the board body 1, the cutting board assembly being detachably connected to the cutting board tube 22, and the cutting board tube 22 being rotatably connected to the mounting bracket 21 to enable the conversion between full and half cutting of the wire gauge tube.

[0032] In this embodiment, by installing the cutting board assembly on the cutting board tube 22, the position of the cutting board assembly can be changed by rotating the cutting board tube 22, thereby facilitating the conversion between full and half cutting of the wire gauge tube. Moreover, by making the cutting board assembly detachably connected to the cutting board tube 22, the cutting board assembly can be easily replaced for different models of wire gauge tubes, thereby adapting to different models of wire gauge tubes.

[0033] In one possible embodiment, the cutting board assembly includes a cutting board 225 and a pad 221. The cutting board 225 is mounted on the cylindrical surface of the cutting board tube 22. The cutting board 225 has two panels. The pad is mounted on the cutting board 225 and partially covers one of the panels, so that one panel is a half-cut panel 224 and the other is a full-cut panel 223. The size of the panels can be changed by the setting of the pad 221, thereby forming a full-cut panel 223 and a half-cut panel 224 on the cutting board 225, thereby realizing the full-cut and half-cut functions of the wire gauge tube.

[0034] In one possible embodiment, a handhold 225a is formed on the cutting board 225 to facilitate the user to change the handhold of the cutting board 225.

[0035] In one possible embodiment, the cutting board 225 has a first notch 225b that exposes part of the cutting board tube 22, thereby facilitating the user to peel the cutting board 225 from the cutting board tube 22 and providing convenience to the user.

[0036] In one possible embodiment, a second notch 22a is formed on the anvil tube 22 for installing the gasket 221, so as to facilitate the user to install and remove the gasket 221.

[0037] In one possible embodiment, to improve the working efficiency of the cutting board tube 22, the cross-section of the cutting board tube 22 is hexagonal, and a gasket 221 is provided on any side of the cutting board tube 22. The gasket 221 forms a half-cut panel 222 on the tube surface of the cutting board tube 22, and a full-cut panel 223 is also provided near the half-cut panel 222 and on the cutting board tube 22.

[0038] In one possible embodiment, the marking machine further includes a switching mechanism 3. The switching mechanism 3 includes a driving device 31, a first pulling device 32, and a second pulling device 33. The driving device 31 is connected to the anvil tube 22 through the first pulling device 32. One end of the second pulling device 33 is connected to the anvil tube 22, and the other end is connected to the board body 1. The driving device 31 can be in a first position or a second position. When the driving device 31 is in the first position, the anvil tube 22 is in a half-cut state. When the driving device 31 is in the second position, the anvil tube 22 is in a fully cut state.

[0039] In this embodiment, the driving device 31, the first pulling device 32, and the second pulling device 33 can cooperate to drive the anvil tube 22 to rotate in different ways. Specifically, when the anvil tube 22 needs to be rotated, the driving device 31 is positioned in the first position. Through the cooperation of the driving device 31 and the first pulling device 32, the anvil tube 22 is driven to rotate on the mounting bracket 21. At this time, the full-cut panel 223 of the anvil tube 22 is in working state, and the internal equipment of the wire marking machine can perform full-cutting work. When the driving device 31 is in the second position, the first pulling device 32 no longer pulls the anvil tube 22, and the second pulling device 33 pulls the anvil tube 22 to reset. At this time, the half-cut panel 222 of the anvil tube 22 is in working state, and the internal equipment of the wire marking machine can perform half-cutting work.

[0040] In one possible embodiment, the lower end of the cutting board tube 22 is provided with a pull plate 224, and the pull plate 224 is provided with a first pull hole 2241 and a second pull hole 2242 respectively. The first pull hole 2241 is connected to the first pulling device 32, and the second pull hole 2242 is connected to the second pulling device 33. The movement of the cutting board tube 22 is realized by the cooperation of the pulling device and the pull hole.

[0041] In one possible embodiment, the drive device 31 includes a shaft 311, a swing arm 312, and a connecting rod 3121. The shaft 311 is rotatably connected to the plate 1, and the swing arm 312 is connected to the shaft 311. The end of the swing arm 312 away from the shaft 311 is provided with a connecting rod 3121. A connecting hole 3122 is opened on the connecting rod 3121, and a first pulling device 32 is connected in the connecting hole 3122. A limiting groove 11 that cooperates with the swing arm 312 is opened on the plate 1. The first pulling device 32 includes a first pulling spring 321. One end of the first pulling spring 321 is disposed in the connecting hole 3122, and the other end is connected to the first pulling hole 2241 of the pull plate 224. The second pulling device 33 includes a second pulling spring 331. One end of the second pulling spring 331 is connected to the plate 1, and the other end is connected to the second pulling hole 2242 of the pull plate 224.

[0042] In this embodiment, the cutting board tube 22 is hexagonal, and a gasket 221 is provided on one side of the cutting board tube 22, forming a half-cut panel 222 on the cutting board tube 22. The side near the half-cut panel 222 is a full-cut panel 223. A pull plate 224 is provided at the lower end of the cutting board tube 22, and a first pull hole 2241 and a second pull hole 2242 are provided on the pull plate 224. A first pull spring 321 is provided in the first pull hole 2241, and the end of the first pull spring 321 is connected to the connecting rod 3121 of the swing arm 312. When the external motor drives the shaft 311 to rotate, the shaft 311 drives... The swing arm 312 rotates and slides within the limiting groove 11 of the plate 1, causing the first pull spring 321 to drive the cutting board tube 22 to rotate circumferentially on the mounting bracket 21, causing the cutting board tube 22 to change from a half-cut panel 222 to a full-cut panel 223. When it is necessary to change the cutting board tube 22 to a half-cut panel 222, the external motor drives the shaft 311 to rotate in the opposite direction, causing the swing arm 312 to return to its original position. The first pull spring 321 no longer provides tension to the cutting board tube 22. Under the elastic force of the second pull spring 331, the cutting board tube 22 rotates in the opposite direction, thereby causing the cutting board tube 22 to be in the half-cut panel 222 state.

[0043] In one embodiment, please refer to Figure 1-2 To improve the movement effect of the cutter module 4, a cutter module 4 is also provided on the plate 1. The cutter module 4 includes a push wheel 41, a horizontal rod 42 and a cutter 43. The push wheel 41 is provided with a transmission cam 411. The horizontal rod 42 is axially fixed on the mounting bracket 21. The cutter 43 is slidably connected to the horizontal rod 42. The transmission cam 411 is used to push the cutter 43 to move axially on the horizontal rod 42. A return spring 421 is sleeved on the horizontal rod 42. One end of the return spring 421 is connected to the mounting bracket 21 and the other end abuts against the cutter 43. The cutter body is detachably connected inside the cutter 43.

[0044] In this embodiment, a horizontal rod 42 is provided at the lower end of the mounting bracket 21, and a cutter 43 is slidably connected on the horizontal rod 42. A return spring 421 is wound on the horizontal rod 42 to push the cutter 43 to return to its original position. The anvil tube 22 and the cutter 43 are on the same horizontal line. In the initial state, the half-cut panel 222 on the anvil tube 22 faces the cutter 43. The drive wheel 41 drives the transmission cam 411 to rotate. The transmission cam 411 pushes the cutter 43 to move axially on the horizontal rod 42 and cuts the conduit between the anvil tube 22 and the cutter 43. When a full cut is required, the anvil tube 22 rotates axially so that the full-cut panel 223 faces the cutter 43.

[0045] To better understand this utility model, the following is combined with... Figures 1 to 2 The technical solution of this utility model is described in detail as follows: In the initial state, the half-cutting panel 222 on the cutting board tube 22 faces the cutting knife module 4. When a half-cut is required, the push wheel 41 is activated, which drives the transmission cam 411 to rotate. The transmission cam 411 pushes the cutting knife 43 to move horizontally on the transverse rod 42, thereby cutting the conduit. Since the half-cutting panel 222 is equipped with a gasket 221, the conduit can be half-cut. When a full cut is required, the external motor is activated, which drives the shaft 311 to rotate. The shaft 311 drives the swing arm 312 to move. The swing arm 312 moves within the limiting groove 11 on the floor and, through the first pull spring 321, pulls the anvil tube 22 to rotate, causing the anvil tube 22 to rotate counterclockwise so that its fully cut panel 223 faces the cutting module 4. Similarly, through the transmission cam 411, the cutting blade 43 is pushed to move horizontally on the transverse rod 42, so that the cutting blade 43 cuts the conduit. After the cutting is completed, the shaft 311 drives the swing arm 312 to reset. Under the action of the second pull spring 331, the anvil tube 22 is pulled to rotate clockwise so that its half-cut panel 222 begins to face the cutting module 4.

[0046] The specific embodiments of this utility model described above do not constitute a limitation on the scope of protection of this utility model. Any other corresponding changes and modifications made based on the technical concept of this utility model should be included within the scope of protection of the claims of this utility model.

Claims

1. A wire marking machine, characterized in that, include: plate body; A cutting board module, comprising a mounting component and a cutting board assembly, wherein the cutting board assembly and the mounting component are detachably connected, and the cutting board assembly is mounted on the board body; as well as The cover is located above the anvil module, and the anvil assembly is detachable in the direction that the cover opens to expose the pipeline groove of the wire marking machine.

2. The wire marking machine according to claim 1, characterized in that, The mounting assembly includes a mounting bracket and a cutting board tube. The mounting bracket is connected to the board body, and the cutting board assembly is detachably connected to the cutting board tube. The cutting board tube is rotatably connected to the mounting bracket to realize the conversion between full and half cutting of the wire gauge tube.

3. The wire marking machine according to claim 2, characterized in that, The cutting board assembly includes a cutting board and a pad. The cutting board is mounted on the cylindrical surface of the cutting board tube. The cutting board has two panels. The pad is mounted on the cutting board and partially covers one of the panels, so that one panel is a half-cut panel and the other is a full-cut panel.

4. The wire marking machine according to claim 3, characterized in that, The cutting board has a hand-held area.

5. The wire marking machine according to claim 3, characterized in that, The cutting board has a first notch that exposes the cylindrical portion of the cutting board.

6. The wire marking machine according to claim 3, characterized in that, A second notch for mounting the gasket is formed on the anvil tube.

7. The wire marking machine according to claim 2, characterized in that, The wire marking machine also includes a switching mechanism, which includes a driving device, a first pulling device, and a second pulling device. The driving device is connected to the anvil tube through the first pulling device. One end of the second pulling device is connected to the anvil tube, and the other end is connected to the board body. The driving device can be in a first position or a second position. When the driving device is in the first position, the anvil tube is in a half-cut state. When the driving device is in the second position, the anvil tube is in a fully cut state.

8. The wire marking machine according to claim 7, characterized in that, The lower end of the cutting board tube is provided with a pull plate, and the pull plate is provided with a first pull hole and a second pull hole respectively. The first pull hole is connected to the first pulling device, and the second pull hole is connected to the second pulling device.

9. The wire marking machine according to claim 8, characterized in that, The driving device includes a shaft, a swing arm, and a connecting rod. The shaft is rotatably connected to the plate, and the swing arm is connected to the shaft. The end of the swing arm away from the shaft is provided with a connecting rod. A connecting hole is opened on the connecting rod, and the first pulling device is connected in the connecting hole.

10. The wire marking machine according to claim 9, characterized in that, The plate is provided with a limiting groove that cooperates with the swing arm.

11. The wire marking machine according to claim 9, characterized in that, The first pulling device includes a first pulling spring, one end of which is disposed in the connecting hole, and the other end is connected to the first pulling hole of the pull plate.

12. The wire marking machine according to claim 8, characterized in that, The second pulling device includes a second pulling spring, one end of which is connected to the plate body, and the other end is connected to the second pulling hole of the pulling plate.

13. The wire marking machine according to claim 1, characterized in that, The wire marking machine also includes a cutting module, which includes a push wheel, a horizontal rod, and a cutting blade. The push wheel is provided with a transmission cam, the horizontal rod is axially fixed to a mounting bracket, the cutting blade is slidably connected to the horizontal rod, and the transmission cam is used to push the cutting blade to move axially on the horizontal rod.

14. The wire marking machine according to claim 13, characterized in that, A return spring is fitted on the horizontal rod, with one end of the return spring connected to the mounting bracket and the other end abutting against the cutter.