Rotary cable coding and printing machine
By designing a rotary cable coding and printing machine, which utilizes an electric telescopic rod and a motor to drive the rotating shaft, the problem of laser coding on the other side of the cable is solved, improving the readability of the cable and the practicality of the coding and printing machine.
Patent Information
- Application Number
- CN202422684030.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-05
AI Technical Summary
Common coding and printing machines lack a rotating component, making it impossible to laser-print codes on the other side of the cable. This results in the codes and numbers being illegible when one side of the cable is blocked, affecting the normal use of the cable and reducing the practicality of the coding and printing machine.
Design a rotary cable coding and printing machine. The first connecting rod is driven by an electric telescopic rod to move in the slide groove, so that the arc-shaped clamp holds the cable. The first motor drives the rotating shaft to rotate the cable, thereby performing laser coding on the other side.
Laser marking on the other side of the cable is achieved, ensuring that the codes and numbers are clearly readable during use, thus improving the practicality of the marking printer.
Smart Images

Figure CN223518874U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a coding and printing machine field, especially relates to a rotary cable coding and printing machine. BACKGROUND
[0002] The cable coding and printing machine is a kind of equipment specially used for printing mark on cable such as electric wire and cable, it usually adopts heat transfer printing or laser printing technology, and can print character on cable, PVC sleeve, heat shrink tube, adhesive label and other materials.
[0003] The common coding and printing machine usually uses laser coding machine to carry out coding operation on the surface of cable, can code the surface of cable, but lacks rotating assembly, cannot carry out laser printing coding on the other side of cable, when one side of cable is shielded during use, it is easy to cause that code and number cannot be seen clearly, affect normal use of cable, thereby reduce the practicability of coding and printing machine.
[0004] Therefore, aiming at the above-mentioned coding and printing machine lacking rotating assembly, cannot carry out laser printing coding on the other side of cable, a rotary cable coding and printing machine can be designed, first connecting rod can drive first sliding block to move in the inside of first sliding slot by electric telescopic link, when first sliding block moves, the arc clamp at the right end of first connecting rod will approach the arc clamp at the right end of second connecting rod, so that two clamps clamp one end of cable, first motor can drive rotating plate to rotate by rotating shaft, and the rotation of rotating plate will drive cable to rotate synchronously by arc clamp, so as to realize the purpose that the other side of cable can be laser coded. CONTENT OF UTILITY MODEL
[0005] In order to overcome the common coding and printing machine lacking rotating assembly, cannot carry out laser printing coding on the other side of cable, when one side of cable is shielded during use, it is easy to cause that code and number cannot be seen clearly, affect normal use of cable, thereby reduce the practicability of coding and printing machine.
[0006] The utility model discloses a technical scheme for a rotary cable coding and printing machine, which comprises a workbench, a rotating shaft, a first motor, a rotating plate, a first sliding groove, a first sliding block, a first connecting rod, a second connecting rod, a connecting block, an arc-shaped clamp and an electric telescopic rod.
[0007] Preferably, the first connecting rod drives the first sliding block to move in the first sliding groove through the electric telescopic rod. When the first sliding block moves, the connecting block at the right end of the first connecting rod drives the arc-shaped clamp to move towards the arc-shaped clamp at the right end of the second connecting rod, so that the two clamps clamp one end of the cable. At the same time, the rotating shaft is driven to rotate by the first motor. When the rotating shaft rotates, the rotating plate rotates, and the rotation of the rotating plate drives the arc-shaped clamp to rotate synchronously, so as to achieve the purpose of laser coding on the other side of the cable.
[0008] Preferably, a limiting groove is formed on the top of the workbench corresponding to the position of the arc-shaped clamp, and a limiting ring is arranged at the right end of the limiting groove.
[0009] Preferably, a mounting seat is arranged on the top rear side of the workbench, a stand column is connected to the top of the mounting seat, a rotating rod is arranged on the inner side of the upper end of the stand column, an adjusting rod is connected to the outer side of the rotating rod, and a control panel is connected to the other end of the adjusting rod.
[0010] Preferably, a lifting seat is arranged on the top of the workbench corresponding to the left side of the mounting seat, a second sliding groove is formed on the right side of the lifting seat, a second sliding block is arranged in the second sliding groove, and a lead screw is connected to the upper side of the second sliding block.
[0011] Preferably, a second motor is arranged on the top of the lifting seat corresponding to the position of the lead screw, and the output end of the second motor is connected to the upper end of the lead screw.
[0012] Preferably, a lifting plate is connected to the right side of the second sliding block, a coding machine is arranged on the upper side front end of the lifting plate, a connecting line pipe is arranged on the lower side of the lifting plate corresponding to the position of the coding machine, and the upper end of the connecting line pipe is connected to the coding machine through the lifting plate.
[0013] As preferred, the lower end of the connecting line pipe is connected with a laser marking head, and the first motor, the electric telescopic rod, the second motor and the code marking machine are electrically connected with the control panel.
[0014] The utility model discloses the beneficial effects of:
[0015] 1、 through electric telescopic rod can make first connecting rod drive first sliding block moves in the inside of first sliding slot, when first sliding block moves, the connecting block of first connecting rod right -hand member will drive arc clamp to the arc clamp of second connecting rod right -hand member and draw close to each other, to make two clamp one end of cable clamping, simultaneously through first motor can drive the rotation of the shaft, when the shaft rotates will drive rotary plate rotation, and the rotation of rotary plate will make arc clamp drive cable synchronous rotation, to reach can the other side of cable carries out laser coding purpose. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 The utility model discloses a kind of rotary cable coding lettering machine three-dimensional structure schematic view, as shown in the figure:
[0017] Figure 2 The utility model discloses a kind of rotary cable coding lettering machine side view structure schematic view, as shown in the figure:
[0018] Figure 3 The utility model discloses a kind of rotary cable coding lettering machine control panel installation structure schematic view, as shown in the figure:
[0019] Figure 4 The utility model discloses a kind of rotary cable coding lettering machine rotary plate installation structure schematic view, as shown in the figure:
[0020] Figure 5 The utility model discloses a kind of rotary cable coding lettering machine lifting seat explosion structure schematic view, as shown in the figure:
[0021] Mark explanation: 1, workbench;2, support plate;3, vertical plate;4, shaft;5, first motor;6, rotary plate;7, first sliding slot;8, first sliding block;9, first connecting rod;10, second connecting rod;11, connecting block;12, arc clamp;13, electric telescopic rod;14, limit slot;15, limit ring;16, mounting seat;17, stand;18, rotating rod;19, adjusting rod;20, control panel;21, lifting seat;22, second sliding slot;23, second sliding block;24, screw;25, second motor;26, lifting plate;27, code marking machine;28, connecting line pipe;29, laser marking head. DETAILED DESCRIPTION
[0022] The utility model is further explained in connection with the drawings and embodiment.
[0023] Please refer toFigures 1-5 The utility model provides a kind of embodiment: a rotary cable coding printing machine, including workbench 1;Still including pivot 4, first motor 5, rotary plate 6, first sliding slot 7, first sliding block 8, first connecting rod 9, second connecting rod 10, connecting block 11, arc clamp 12 and electric telescopic rod 13, the left lower end of workbench 1 is provided with support plate 2, the top left side of support plate 2 is provided with vertical plate 3, the upper end right side of vertical plate 3 is provided with pivot 4, the upper end left side of vertical plate 3 is provided with first motor 5, the output of first motor 5 is connected with pivot 4, another end of pivot 4 is connected with rotary plate 6, the right side left end of rotary plate 6 is provided with first sliding slot 7, the inside of first sliding slot 7 is provided with first sliding block 8, the right side of first sliding block 8 is installed with first connecting rod 9, the right side of rotary plate 6 is installed with second connecting rod 10, corresponding first connecting rod 9 position, another end of first connecting rod 9 and second connecting rod 10 is symmetrically installed with two connecting block 11, another end of connecting block 11 is symmetrically installed with two arc clamps 12, the front side of rotary plate 6 is installed with electric telescopic rod 13, the output of electric telescopic rod 13 passes through rotary plate 6 and is connected with the side wall of first connecting rod 9, by electric telescopic rod 13 can make first connecting rod 9 drive first sliding block 8 move in the inside of first sliding slot 7, when first sliding block 8 moves, the connecting block 11 of first connecting rod 9 right end will drive arc clamp 12 to the arc clamp 12 of second connecting rod 10 right end and approach, to make two clamps hold one end of cable, simultaneously by first motor 5 can drive pivot 4 rotation, when pivot 4 rotates, will drive rotary plate 6 rotation, and the rotation of rotary plate 6 will make arc clamp 12 drive cable synchronous rotation, to reach the purpose that can be carried out laser coding to the other side of cable.
[0024] Please refer to Figures 1-5 In the embodiment, the top of workbench 1 is provided with limiting slot 14, corresponding the position of arc clamp 12, the right end of limiting slot 14 is provided with limiting ring 15, by limiting slot 14 can limit the position of cable, simultaneously by limiting ring 15 can limit the other end of cable, make it in the process of rotation not to separate from limiting slot 14, the top rear side of workbench 1 is provided with mounting seat 16, the top of mounting seat 16 is connected with stand 17, the inside of the upper end of stand 17 is provided with rotating rod 18, the outside of rotating rod 18 is connected with adjusting rod 19, the other end of adjusting rod 19 is connected with control panel 20, by rotating adjusting rod 19 can make rotating rod 18 rotate in the inside of the top of stand 17, to reach the effect that the angle of control panel 20 is adjusted, the left side of the top of workbench 1 is provided with lifting seat 21, corresponding mounting seat 16, the right side of lifting seat 21 is provided with second sliding slot 22, the inside of second sliding slot 22 is provided with second sliding block 23, the upper side of second sliding block 23 is penetrated and is connected with lead screw 24, by the rotation of lead screw 24 will drive second sliding block 23 move in the inside of second sliding slot 22.
[0025] Please refer to Figures 1-5 In this embodiment, the top of the lifting seat 21 is provided with a second motor 25 corresponding to the position of the lead screw 24, and the output end of the second motor 25 is connected with the upper end of the lead screw 24. The second motor 25 can drive the lead screw 24 to rotate, and the rotation of the lead screw 24 can drive the second sliding block 23 to move along the second sliding groove 22. The right side of the second sliding block 23 is connected with a lifting plate 26, and the upper side of the front end of the lifting plate 26 is provided with a coding machine 27. The lower side of the lifting plate 26 is provided with a connecting wire tube 28 corresponding to the position of the coding machine 27, and the upper end of the connecting wire tube 28 penetrates through the lifting plate 26 and is connected with the coding machine 27. The movement of the second sliding block 23 can drive the lifting plate 26 to move synchronously on the right side of the mounting seat 16, so as to adjust the height of the lifting plate 26. The coding machine 27 can control the laser marking head 29 to work through the connecting wire tube 28. The lower end of the connecting wire tube 28 is connected with the laser marking head 29. The first motor 5, the electric telescopic rod 13, the second motor 25 and the coding machine 27 are all electrically connected with the control panel 20. The working state of the first motor 5, the electric telescopic rod 13, the second motor 25 and the coding machine 27 can be controlled and checked through the control panel 20.
[0026] When working, the second motor 25 can drive the lead screw 24 to rotate, and the rotation of the lead screw 24 can drive the second sliding block 23 to move along the second sliding groove 22. The movement of the second sliding block 23 can drive the lifting plate 26 to move synchronously on the right side of the mounting seat 16, so as to adjust the height of the lifting plate 26. At the same time, the working state of the first motor 5, the electric telescopic rod 13, the second motor 25 and the coding machine 27 can be controlled and checked through the control panel 20. The first connecting rod 9 can drive the first sliding block 8 to move in the first sliding groove 7 through the electric telescopic rod 13. When the first sliding block 8 moves, the connecting block 11 at the right end of the first connecting rod 9 can drive the arc-shaped clamp 12 to move towards the arc-shaped clamp 12 at the right end of the second connecting rod 10, so as to clamp one end of the cable through the two clamps. The first motor 5 can drive the rotating shaft 4 to rotate, and the rotation of the rotating shaft 4 can drive the rotating plate 6 to rotate. The rotation of the rotating plate 6 can drive the arc-shaped clamp 12 to rotate synchronously, so as to realize laser coding on the other side of the cable.
[0027] Through the above steps, the first connecting rod 9 can drive the first sliding block 8 to move in the first sliding groove 7 through the electric telescopic rod 13. When the first sliding block 8 moves, the arc-shaped clamp 12 at the right end of the first connecting rod 9 will approach the arc-shaped clamp 12 at the right end of the second connecting rod 10, so that the two clamps clamp one end of the cable. At the same time, the rotating plate 6 can be rotated by the first motor 5, and the rotation of the rotating plate 6 will make the arc-shaped clamp 12 drive the cable to rotate synchronously, so as to achieve the purpose of laser coding on the other side of the cable. To solve the common coding and printing machine, usually using laser marking machine on the surface of the cable to code operation, can code on the surface of the cable, but lack of rotating assembly, can't code on the other side of the cable, easy to appear when the cable is used, one side is blocked, lead to can't see the code and number, influence the normal use of the cable, thereby reducing the practicability of the coding and printing machine.
Claims
1. A rotary cable marking printer comprising a worktable (1) ; characterized in that: The utility model also includes pivot (4), first motor (5), rotary plate (6), first sliding slot (7), first sliding block (8), first connecting rod (9), second connecting rod (10), connecting block (11), arc clamp (12) and electric telescopic rod (13), the left lower end of workstation (1) is provided with support plate (2), the top left side of support plate (2) is provided with vertical plate (3), the upper end right side of vertical plate (3) is provided with pivot (4), the upper end left side of vertical plate (3) is provided with first motor (5), the output of first motor (5) is connected with pivot (4), the other end of pivot (4) is connected with rotary plate (6), the right side left end of rotary plate (6) is provided with first sliding slot (7), the inside of first sliding slot (7) is provided with first sliding block (8), the right side of first sliding block (8) is installed with first connecting rod (9), the right side of rotary plate (6) is installed with second connecting rod (10) corresponding the position of first connecting rod (9), the other end of first connecting rod (9) and second connecting rod (10) is installed with two connecting blocks (11) symmetrically, the other end of connecting block (11) is installed with two arc clamps (12) symmetrically, the front side of rotary plate (6) is installed with electric telescopic rod (13), the output of electric telescopic rod (13) passes through rotary plate (6) and is connected with the side wall of first connecting rod (9).
2. A rotary cable marking printer according to claim 1, wherein: The top of workstation (1) is provided with limiting slot (14) corresponding the position of arc clamp (12), the right end of limiting slot (14) is provided with limiting ring (15).
3. A rotary cable marking printer according to claim 1, wherein: The top rear side of workstation (1) is provided with mounting seat (16), the top of mounting seat (16) is connected with stand column (17), the inside upper end of stand column (17) is provided with rotating rod (18), the outside of rotating rod (18) is connected with adjusting rod (19), the other end of adjusting rod (19) is connected with control panel (20).
4. A rotary cable marking printer according to claim 3 wherein: The top left side of workstation (1) is provided with lifting seat (21) corresponding mounting seat (16), the right side of lifting seat (21) is provided with second sliding slot (22), the inside of second sliding slot (22) is provided with second sliding block (23), the upside of second sliding block (23) is penetrated and is connected with lead screw (24).
5. A rotary cable marking printer according to claim 4 wherein: The top of lifting seat (21) is installed with second motor (25) corresponding the position of lead screw (24), and the output of second motor (25) is connected with the upper end of lead screw (24).
6. A rotary cable marking printer according to claim 5 wherein: The right side of second sliding block (23) is connected with lifting plate (26), the upside front end of lifting plate (26) is provided with coding machine (27), the downside of lifting plate (26) is provided with connecting line pipe (28) corresponding coding machine (27), and the upper end of connecting line pipe (28) passes through lifting plate (26) and is connected with coding machine (27).
7. A rotary cable marking printer according to claim 6 wherein: The lower end of connecting line pipe (28) is connected with laser marking head (29), and first motor (5), electric telescopic rod (13), second motor (25) and coding machine (27) are electrically connected with control panel (20).