Device for automatically sleeving cable marker on cable
By designing an automatic cable numbering device that combines various guide rails and motors, the problems of low efficiency and poor precision in cable processing have been solved, enabling efficient and accurate numbering and printing of multiple specifications of number tubes.
Patent Information
- Application Number
- CN202423070544.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-12
AI Technical Summary
In the existing technology, cable assembly plants are inefficient and have poor positional accuracy when fitting number tubes to both ends of the cable during the processing. Moreover, most of them can only achieve movement in one dimension and cannot adapt to the needs of number tubes of various specifications.
An automatic cable numbering device was designed, comprising components such as wire guide wheels, translation clamps, cable guide seats, ribbon box guide shafts, motors, and cylinders. Through the cooperation of multiple guide rails and the motor, it achieves adaptability and precise control for four different specifications of cable guides, ensuring the accuracy of number printing and the stability of cable assembly.
It improves the efficiency and accuracy of cable number tube sets, can adapt to four different specifications of number tubes, ensures accurate number printing position, and enhances the versatility and stability of the device.
Smart Images

Figure CN223770888U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of cable processing technology, and provides a number tube fitting device with a compact structure, controllable position, and the ability to process four different specifications of number tubes. Specifically, it relates to an automatic number tube fitting device for cables. Background Technology
[0002] With the advancement of technology, cables are becoming increasingly important in various industries, including power transmission, control system connections, and equipment component connections. During the processing of cable assembly plants, it is necessary to attach numbered tubing with markings to both ends of the cable. As an important supporting industry of the national economy, the cable conductor industry uses cables frequently in various sectors. After the conductors are crimped with cold-pressed terminals, heat-shrink tubing needs to be fitted to the exposed parts of the conductors in accordance with safety regulations to improve safety performance. The existing method of manually fitting heat-shrink tubing is not only inefficient but also has low tubing position accuracy, which has a certain probability of causing the conductors to be exposed, resulting in safety accidents. Even with the numbered tubing fitting device, most of them can only achieve one-dimensional movement and do not have flexible characteristics. Most of the time, one set of devices can only correspond to the fitting of one specification of wire harness. Utility Model Content
[0003] The technical problem to be solved by this utility model is: how to obtain a number tube device with a compact structure, controllable position, and capable of processing four different specifications of number tubes.
[0004] To achieve the above objectives, this utility model provides the following technical solution:
[0005] The automatic cable numbering device includes two wire wheels and a sliding clamp assembly. A sleeve base is located on one side of each wire wheel, and a guide tube seat is mounted on the sleeve base. A wire tube sleeve is located on the top of the guide tube seat, and a wire feeding roller is mounted on one side of the wire tube sleeve. Four different sized guide tubes are installed inside the guide tube seat. A ribbon box guide shaft is mounted on the guide shaft, and a third motor is located behind the ribbon box guide shaft. A spur gear is mounted on the output shaft of the third motor. The ribbon box guide shaft moves up and down under the control of the third motor. Two rotating needle sliding plates are slidably connected to the bottom of the sleeve base. A first guide rail is mounted on one side of each rotating needle sliding plate. The first guide rail is used for moving the sliding clamp assembly. A numbering needle transverse plate is located at the bottom of the sliding clamp assembly.
[0006] It also includes a push needle stop tube, a number tube rotating needle and a sliding plate. The number tube rotating needle is mounted on one side of the sliding plate. A first cylinder is mounted on one end of the sliding plate. A tube cutter is mounted on one side of the guide tube seat. An extension plate is fixed on the sliding plate. A second guide rail is provided on the extension plate. The second guide rail is used for the movement of the push needle stop tube. A tube clamping rack is provided in the extension plate. A sliding plate is fixed under the tube clamping rack.
[0007] A vertical fixing base is provided below the horizontal plate of the number tube needle, a rotating needle misalignment connecting plate is installed above the first guide rail, and a first motor and a second motor are installed on the extension plate. The second motor is used for the movement of the slide plate, and the first motor is used for the rotation of the guide wheel.
[0008] A second cylinder is installed on one side of the number tube needle. The second cylinder is used to push the tube to move or fix it. A support base plate is provided at the bottom of the needle sliding plate.
[0009] Furthermore, the catheter is guided by a first guide rail and a second guide rail to ensure stable movement of the catheter within the device.
[0010] Furthermore, the ribbon cartridge guide shaft cooperates with the guide tube to guide the movement of the ribbon cartridge, so as to realize the replacement or adjustment of the ribbon.
[0011] Furthermore, the supporting base plate is used to support the entire device.
[0012] Furthermore, the cannula base is used to fix the conduit, ensuring its stability in the device.
[0013] Furthermore, the conduit sleeve is used to protect the conduit and prevent damage during processing.
[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: This utility model has four different specifications of conduits inside the conduit seat, which allows the device to adapt to cables of different sizes. This design improves the applicability of the device and reduces the need to replace the equipment due to different cable specifications. The ribbon box guide shaft is controlled to move up and down by a third motor to adapt to conduits of different heights, further enhancing the device's adaptability to conduits of different specifications. The combined use of the number tube rotating needle and the number tube pushing rod allows the device to print numbers on conduits of different specifications, increasing the device's versatility.
[0015] This invention also achieves precise control of the movement or fixation of the number tube pusher rod and the guide tube through the precise control of the first and second cylinders, ensuring the clarity of the number printing and the accuracy of the guide tube sleeve. The setting of the first and second guide rails allows the translation clamp and pusher tube to move smoothly in the device, further improving the stability and accuracy of the processing. The ribbon box guide shaft, number tube rotating needle, pusher tube, etc., can all be precisely controlled by motors or cylinders. This high-precision position control ensures that the guide tube can be accurately sleeved on the cable and that the position of the number printing is accurate. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0017] Figure 2This is a top view of the structure of this utility model;
[0018] Figure 3 This is a schematic diagram of the right-side structure of this utility model;
[0019] Figure 4 This is a front view structural diagram of the present invention.
[0020] In the diagram: 1. Guide roller; 2. First motor; 3. Second motor; 4. Tube clamp rack; 5. Number tube pusher rod; 6. First cylinder; 7. Pusher tube stop; 8. Number tube rotating needle; 9. Rotating needle misalignment connecting plate; 10. Vertical fixing base; 11. Guide tube; 12. Ribbon box guide shaft; 13. First guide rail; 14. Second guide rail; 15. Number tube needle horizontal plate; 16. Spur gear; 17. Tube cutter; 18. Rotating needle sliding connecting plate; 19. Second cylinder; 20. Support base plate; 21. Sleeve base; 22. Guide tube seat; 23. Wire tube sleeve; 24. Third motor; 25. Wire feeding roller. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Example 1
[0023] like Figures 1-4 As shown, the automatic cable numbering device includes two wire wheels 1 and a translation clamping assembly. One side of the wire wheel 1 is provided with a sleeve base 21, and a conduit seat 22 is mounted on the sleeve base 21. The top of the conduit seat 22 is provided with a wire sleeve 23, and one side of the wire sleeve 23 is provided with a wire feeding rubber wheel 25. The conduit seat 22 contains four conduits 11 of different specifications. A ribbon box guide shaft 12 is mounted on the conduit seat 22. A third motor 24 is provided behind the ribbon box guide shaft 12. A spur gear 16 is mounted on the output shaft of the third motor 24. The ribbon box guide shaft 12 is controlled to move up and down by the third motor 24. Two rotating needle sliding plates 18 are slidably connected to the bottom of the sleeve base 21. A first guide rail 13 is mounted on one side of the rotating needle sliding plate 18. The first guide rail 13 is used for the movement of the translation clamping assembly. The bottom of the translation clamping assembly is provided with a numbering needle horizontal plate 15.
[0024] It also includes a push needle stop tube 7, a number tube rotating needle 8 and a sliding plate. The number tube rotating needle 8 is mounted on one side of the sliding plate. A first cylinder 6 is mounted on one end of the sliding plate. A tube cutter 17 is mounted on one side of the guide tube seat 22. An extension plate is fixed on the sliding plate. A second guide rail 14 is provided on the extension plate. The second guide rail 14 is used for the movement of the push needle stop tube 7. A tube clamping rack 4 is provided in the extension plate. A sliding plate is fixed under the tube clamping rack 4.
[0025] Below the horizontal plate 15 of the number tube needle is a vertical fixing seat 10, above the first guide rail 13 is a rotating needle misalignment connecting plate 9, and the extension plate is equipped with a first motor 2 and a second motor 3. The second motor 3 is used for the movement of the slide plate, and the first motor 2 is used for the rotation of the guide wheel 1.
[0026] A second cylinder 19 is installed on one side of the number tube needle 8. The second cylinder 19 is used to push the guide tube 11 to move or fix it. A support base plate 20 is provided at the bottom of the needle sliding plate 18.
[0027] The catheter 11 is guided by the first guide rail 13 and the second guide rail 14 to ensure stable movement of the catheter 11 in the device.
[0028] The ribbon cartridge guide shaft 12 cooperates with the guide tube 11 to guide the movement of the ribbon cartridge, so as to realize the replacement or adjustment of the ribbon.
[0029] The base plate 20 is used to support the entire device.
[0030] The sleeve base 21 is used to fix the conduit 11 and ensure its stability in the device.
[0031] The conduit sleeve 23 is used to protect the conduit 11 and prevent it from being damaged during processing.
[0032] Specifically, the wire guide wheel 1 is used to guide the wire or cable into the device, ensuring that the cable can pass smoothly through the entire processing process. The translation clamp is used to fix or clamp the cable, ensuring that the position of the cable is stable during processing. The sleeve base 21 serves as the foundation of the entire device, used to support and fix the conduit seat 22 and other components. The conduit seat 22 is used to fix the conduit 11, ensuring the stability of the conduit 11 during processing. The wire sleeve 23 protects the conduit 11, preventing damage during processing, and is also used to fix the conduit 11. The wire feed roller 25 pushes the wire or cable through the device, ensuring that the cable can pass smoothly through the conduit 11. The conduit 11 is used to guide the wire or cable and has different specifications to accommodate different cable sizes. The ribbon box guide shaft 12 guides the movement of the ribbon box, realizing the replacement or adjustment of the ribbon so that numbers can be printed on the conduit 11. The third motor 24 controls the up and down movement of the ribbon box guide shaft 12, thereby adjusting the position of the ribbon box. The spur gear 16 is connected to the output shaft of the third motor 24 for transmitting power. The rotating needle sliding plate 18 is slidably connected for adjusting the position of the number tube rotating needle 8.
[0033] The first guide rail 13 guides the movement of the translation clamp assembly, ensuring smooth movement within the device. The needle pusher 7 limits the range of motion of the needle pusher rod, ensuring accurate printing of the needles within the number tube. The number tube rotating needle 8 rotates the number tube to change the number. The slide plate supports the number tube rotating needle 8 and other components, adjusting their positions. The first cylinder 6 pushes the number tube needle pusher rod 5 to print or mark the number. The tube cutter 17 cuts the guide tube 11 to the required length. The extension plate fixes the first motor 2, the second motor 3, and other components, adjusting their positions. The second guide rail 14 moves the needle pusher 7, ensuring accurate printing of the needles. The stop tube 7 can move smoothly in the device. The tube clamp rack 4 is used to clamp or release the guide tube 11 to ensure the stability of the guide tube 11 during processing. The slide plate is used to adjust the position of the tube clamp rack 4. The vertical fixing base 10 is used to fix the transverse plate 15 of the number tube needle to ensure its stability during processing. The rotating needle misalignment connecting plate 9 is used to adjust the position of the number tube rotating needle 8. The first motor 2 and the second motor 3 are used to drive the rotation of the guide wheel 1 and the movement of the slide plate, respectively. The second cylinder 19 is used to push the guide tube 11 to move or fix it to ensure the stability of the guide tube 11 during processing. The support base plate 20 is used to support the entire device to ensure that all components can work stably.
[0034] Specific implementation process: S1. The cable first enters the device through two guide rollers 1, driven by the first motor 2, ensuring the cable can smoothly enter the processing area; S2. The translation clamp group moves to the designated position via the first guide rail 13, and uses the tube clamp rack 4 and slide plate (controlled by the second motor 3) to fix the cable, ensuring the cable's position is stable during processing; S3. The guide tube seat 22 contains four guide tubes 11 of different specifications. The appropriate guide tube 11 is selected according to the cable specification. The ribbon box guide shaft 12 on the guide tube seat 22 is controlled by the third motor 24 to move up and down to adapt to guide tubes 11 of different heights; S4. The number tube rotating needle 8 rotates through the sliding plate (driven by the first cylinder 6) to realize the number change. The number tube pusher rod 5 is pushed by the first cylinder 6 to push the number... The needle inside the tube is pushed into the guide tube 11, and the number is printed through the horizontal plate 15 of the number tube needle; S5, the tube cutter 17 cuts the guide tube 11 to the required length; S6, the second cylinder 19 pushes the guide tube seat 22 or the wire sleeve 23 to move or fix the guide tube 11, ensuring that the guide tube 11 can be accurately fitted onto the cable; S7, the wire feeding roller 25 is driven by the third motor 24 to push the cable through the guide tube 11, ensuring that the cable passes smoothly through the guide tube 11 and completes the sleeve process; S8, the rotating needle misalignment connecting plate 9 and the rotating needle sliding connecting plate 18 finely adjust the position of the number tube rotating needle 8 to ensure the accuracy of number printing; S9, the support base plate 20 provides stable support for the entire device, the vertical fixed base 10 fixes the horizontal plate 15 of the number tube needle, and the wire sleeve 23 protects the guide tube 11 from damage during processing.
[0035] In summary, the automatic cable labeling device of this invention provides an innovative solution with broad market application prospects.
[0036] It should be noted that the parts not covered by this utility model are the same as or can be implemented using existing technology.
[0037] Furthermore, in the description of the embodiments of this utility model, unless otherwise explicitly specified and limited, the terms "installed," "connected," "linked," "set up," "equipped with," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.
[0038] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can exercise their rights without departing from the scope of the present utility model.
Claims
1. A cable automatic number sleeve device, characterized by, The utility model provides a kind of number tube needle machine, including wire wheel and translation clamp group, the number of wire wheel is two, wire wheel is equipped with sleeve base on one side, sleeve base is equipped with guide pipe seat, the top of guide pipe seat is equipped with wire tube sleeve, wire tube sleeve is equipped with line rubber wheel on one side, guide pipe seat is equipped with four different specifications guide pipe inside, guide pipe seat is equipped with ribbon cassette guide shaft, ribbon cassette guide shaft is equipped with third motor behind, third motor is equipped with straight gear on output shaft, ribbon cassette guide shaft moves up and down by third motor control, the bottom of sleeve base is slidably connected with two rotatable needle sliding link pull, rotatable needle sliding link pull is equipped with first guide rail on one side, first guide rail is used for the movement of translation clamp group, and the bottom of translation clamp group is equipped with number tube needle horizontal plate; It also includes a needle pushing blocking tube, a number tube rotating needle and a moving plate. The number tube rotating needle is installed on one side of the moving plate. One end of the moving plate is equipped with a first air cylinder. One side of the guide pipe seat is equipped with a pipe cutting knife. The moving plate is fixed with an extension plate. The extension plate is equipped with a second guide rail for the movement of the needle pushing blocking tube. The extension plate is equipped with a pipe holding clamp gear rack. The gear rack is fixed with a sliding plate below. The bottom of the number tube needle horizontal plate is equipped with a vertical fixed base. The first guide rail is equipped with a rotating needle misalignment link pull above. The extension plate is equipped with a first motor and a second motor. The second motor is used for the movement of the sliding plate. The first motor is used for the rotation of the wire wheel. One side of the number tube rotating needle is equipped with a second air cylinder for moving or fixing the guide pipe. The bottom of the rotating needle sliding link pull is equipped with a support base plate.
2. The cable automatic number sleeve application apparatus of claim 1, wherein: The guide pipe is guided by the first guide rail and the second guide rail.
3. The cable automatic number sleeve application apparatus of claim 2, wherein: The ribbon cassette guide shaft cooperates with the guide pipe to guide the movement of the ribbon cassette.
4. The cable number tube sleeving apparatus of claim 3, wherein: The support base plate is used to support the entire device.
5. The cable number tube sleeving apparatus of claim 4, wherein: The sleeve base is used to fix the guide pipe.
6. The cable number tube sleeving apparatus of claim 5, wherein: The wire tube sleeve is used to protect the guide pipe.