Cable mark printing equipment capable of continuously printing
By designing a sustainable cable label printing device, and utilizing the synergistic effect of drive components and support components, stable cable delivery and uninterrupted printing are achieved, solving the problems of worker fatigue and unstable delivery speed, and improving printing efficiency and quality.
Patent Information
- Application Number
- CN202520708344.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-04-15
AI Technical Summary
Existing cable marking printing equipment is prone to worker fatigue and unstable conveying speed when transporting cables for extended periods, which affects printing efficiency.
Design a sustainable cable marking printing device that uses a drive unit to synchronously drive the front and rear winding rollers to rotate, so that the cable continuously passes through the printer and is automatically wound onto the rear winding roller. Combined with an adjustable support component and guide wheel structure, it ensures stable cable delivery and uniform distribution.
This technology enables uninterrupted printing of cable markings, improving printing efficiency. By adjusting the height of the support plate and the path of the guide wheels, it ensures that the distance between the cable and the printer nozzle is appropriate, thus improving the printing quality and neatness of the cable markings.
Smart Images

Figure CN223904743U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of printing equipment, and in particular to a cable mark printing equipment capable of continuous printing. BACKGROUND
[0002] In today's booming modern industrial system, high-voltage cables that bear the heavy responsibility of power transmission in the field of energy transmission, optical fiber cables that guarantee high-speed and stable data transmission in the field of information communication, and comprehensive wiring cables that realize the interconnection of various devices in intelligent buildings have deeply integrated into various key fields.
[0003] In the production link of the cable, clear and accurate identification helps efficient management of the production process, ensuring that different batches and specifications of cables can be accurately distinguished and traced; in the installation stage, correct identification can greatly improve construction efficiency and avoid safety hazards and failures caused by cable misconnection; and in the later maintenance process, detailed cable identification is a key factor for quickly locating problems and shortening repair time. In view of this, the emergence of the cable mark printing equipment is timely, which can clearly present the model, specification, production date, service life and other key information on the surface of cables with different thicknesses and various materials, laying a solid foundation for the management and efficient use of the entire life cycle of the cable.
[0004] In related technologies, the printing equipment needs workers to continuously feed cables into the printing equipment when working. In this process, the workers need to pay attention to the feeding of the cables at all times to ensure that the cables enter the printing area. If the length of the cable is long, the workers will repeat the feeding action for a long time, which not only easily causes fatigue, but also easily causes unstable feeding speed, thereby affecting the printing efficiency of the cable mark. CONTENT OF THE INVENTION
[0005] In order to improve the printing efficiency of the cable mark, the present application provides a cable mark printing equipment capable of continuous printing.
[0006] The cable mark printing equipment capable of continuous printing provided by the present application adopts the following technical scheme:
[0007] A cable mark printing equipment capable of continuous printing, comprising a printer body, a bottom plate is arranged at the lower part of the printer body, the printer body is arranged on the bottom plate, front and rear winding rollers are arranged at both ends of the bottom plate, the front and rear winding rollers are both rotationally connected to the bottom plate, a driving member is arranged on the bottom plate for driving the front or rear winding roller to rotate, a supporting plate is arranged below the printer body, a gap for the cable to pass through is left between the supporting plate and the printer body, and a supporting assembly is arranged on the bottom plate for supporting the supporting plate.
[0008] By adopting the technical scheme, the cable can be wound on the front winding roller during use, then the driving member is started and one end of the cable is passed through the support plate and the printer body, then the printer body is started to mark the cable, then the printed cable is wound on the rear winding roller, then under the rotation of the driving member driving the front winding roller and the rear winding roller, the cable is continuously printed by the printer body and automatically wound on the rear winding roller after printing, so that uninterrupted printing of the cable is realized, and the printing efficiency of the cable mark is improved.
[0009] Optionally, the support assembly comprises a telescopic cylinder and a threaded cylinder fixedly connected to the bottom plate, the telescopic end of the telescopic cylinder is fixedly connected to the support plate, the telescopic direction of the telescopic cylinder is perpendicular to the bottom plate, and the threaded cylinder is internally threadedly connected with a threaded rod, one end of the threaded rod away from the threaded cylinder is rotationally connected with the support plate.
[0010] By adopting the technical scheme, the threaded rod can be rotated to move along the length direction of the threaded cylinder, so as to change the height of the threaded rod and the height of the support plate, and then the height of the support plate can be adjusted according to the diameter of the cable, so that the cable and the nozzle of the printer body maintain a proper distance.
[0011] Optionally, the threaded rod is fixedly connected with a cross adjusting rod.
[0012] By adopting the technical scheme, the threaded rod can be rotated by the cross adjusting rod, so as to facilitate the adjustment of the height of the threaded rod.
[0013] Optionally, a plurality of lower abutting wheels are rotationally connected to the upper end face of the support plate, and the plurality of lower abutting wheels are equidistantly arranged along the length direction of the support plate.
[0014] By adopting the technical scheme, the cable can be supported by the lower abutting wheels, so as to reduce the friction between the support plate and the cable.
[0015] Optionally, the driving member is a driving motor, the driving motor is arranged on the bottom plate, and the output shaft of the driving motor is connected with the front winding roller or the rear winding roller.
[0016] By adopting the technical scheme, the driving motor can be controlled to drive the front winding roller or the rear winding roller to rotate.
[0017] Optionally, a first support table is arranged between the front winding roller and the printer body, the first support table is fixedly connected to the bottom plate, two first guide wheels are rotationally connected to the first support table, the axis of the first guide wheel is perpendicular to the upper end face of the first support table, and a gap for the cable to pass through is left between the two first guide wheels.
[0018] By adopting the technical scheme, the two first guide wheels can limit the position of the cable entering the support plate, thereby improving the stability of the cable during printing.
[0019] Optionally, the second support table is arranged on the two sides of the printer body, the slide rod is fixedly connected to the bottom plate and has an axis parallel to the axis of the rear winding roller, the slide rod is arranged in the second support table and the second support table is slidably connected to the slide rod, the electric telescopic rod is installed on the bottom plate and used to drive the second support table to slide along the length direction of the slide rod, the telescopic end of the electric telescopic rod is fixedly connected to the second support table, and the second guide wheels are rotatably connected to the second support table and have a gap for the cable to pass through.
[0020] By adopting the technical scheme, the electric telescopic rod is controlled to extend or retract, so that the electric telescopic rod drives the second support table to slide along the length direction of the slide rod, the second guide wheels change the path of the printed cable entering the rear winding roller, the printed cable is evenly distributed on the winding roller, the situation that the printed cable is gathered together is reduced, and the neatness of the printed cable is improved.
[0021] Optionally, the lower pressing wheel is arranged on the side of the printer body close to the front winding roller and the side of the printer body close to the rear winding roller.
[0022] By adopting the technical scheme, the cable is pressed by the lower pressing wheel, so that the cable can be kept in a stable state when being printed by the printer, and the printing effect is ensured.
[0023] In summary, the present application has at least one of the following beneficial technical effects:
[0024] 1. The cable is continuously printed by the printer body and automatically wound on the rear winding roller after printing, so that the cable can be continuously printed, and the printing efficiency of the cable mark is improved.
[0025] 2. The height of the threaded rod and the height of the support plate can be changed by rotating the threaded rod to move along the length direction of the threaded cylinder, so that the height of the support plate can be adjusted according to the diameter of the cable, and the cable can be kept at an appropriate distance from the nozzle of the printer body.
[0026] 3. The second guide wheel can change the path of the printed cable into the rear winding roller by controlling the electric telescopic rod to stretch out or retract, so that the printed cable can be evenly distributed on the winding roller, reducing the situation of gathering together and improving the neatness of the printed cable. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 is a schematic diagram of the overall structure of the embodiment of the present application.
[0028] In the figure, 1 is a printer body; 2 is a bottom plate; 3 is a front winding roller; 4 is a rear winding roller; 5 is a driving member; 6 is a support plate; 61 is a lower abutting wheel; 7 is a support assembly; 71 is a threaded cylinder; 72 is a telescopic cylinder; 73 is a threaded rod; 74 is a cross adjusting rod; 8 is a first support table; 81 is a first guide wheel; 9 is a second support table; 91 is a second guide wheel; 10 is a sliding rod; 11 is an electric telescopic rod; 12 is a pressing wheel. DETAILED DESCRIPTION
[0029] The following will be described in detail in combination with the accompanying Figure 1 The present application will be further described in detail.
[0030] The embodiment of the present application is a cable marking printing device that can continue printing, which refers to Figure 1 , including a bottom plate 2, the bottom plate 2 is set to be a cuboid, and the upper part of the midpoint of the length direction of the bottom plate 2 is provided with a printer body 1, the printer body 1 in the embodiment can be set to be an existing inkjet cable marking printer or a laser cable marking printer. The printer body 1 is erected on the bottom plate 2.
[0031] The two ends of the bottom plate 2 are respectively provided with a front winding roller 3 and a rear winding roller 4, and the front winding roller 3 and the rear winding roller 4 are located at the same height. The front winding roller 3 and the rear winding roller 4 are both rotationally connected to the bottom plate 2, and the axes of the front winding roller 3 and the rear winding roller 4 are parallel to the upper end face of the bottom plate 2. The bottom plate 2 is provided with a driving member 5 for driving the front winding roller 3 or the rear winding roller 4 to rotate, and the driving member 5 in the embodiment is set to be a driving motor. The driving motor is erected on the bottom plate 2, and the output shaft of the driving motor is coaxially arranged and fixedly connected with the front winding roller 3 or the rear winding roller 4.
[0032] Further, the driving motor can be controlled to drive the front winding roller 3 or the rear winding roller 4 to rotate, and the front winding roller 3 and the rear winding roller 4 can also be synchronously controlled to rotate.
[0033] The lower side of the printer body 1 is provided with a support plate 6, which is arranged parallel to the bottom plate 2. A gap is left between the support plate 6 and the printer body 1 for the cable to pass through. In order to reduce the friction between the cable and the support plate 6, a plurality of lower abutting wheels 61 are rotatably connected to the support plate 6, which are equidistantly arranged along the length direction of the support plate 6.
[0034] The bottom plate 2 is provided with a support assembly 7 for supporting the support plate 6. The support assembly 7 comprises a telescopic cylinder 72 and a threaded cylinder 71 fixedly connected to the bottom plate 2 and arranged parallel to each other, and the threaded cylinder 71 is provided in two and the telescopic cylinder 72 is arranged between the two threaded cylinders 71. The telescopic end of the telescopic cylinder 72 is fixedly connected to the lower end surface of the support plate 6, and the telescopic direction of the telescopic cylinder 72 is perpendicular to the bottom plate 2. A threaded rod 73 is threadedly connected in the threaded cylinder 71, and the end of the threaded rod 73 away from the threaded cylinder 71 is rotatably connected to the support plate 6.
[0035] The height of the threaded rod 73 and the height of the support plate 6 can be changed by rotating the threaded rod 73 to move along the length direction of the threaded cylinder 71. In order to facilitate the rotation of the threaded rod 73, a cross adjusting rod 74 is fixedly connected to the outer wall of the threaded rod 73, so that the distance between the lower abutting wheels 61 on the bottom plate 2 and the distance between the printer body 1 can reach a suitable printing distance. In order to improve the stability of the printer body 1 for printing the cable, a pressing wheel 12 is installed on the side of the printer body 1 close to the front winding roller 3 and on the side of the printer body 1 close to the rear winding roller 4.
[0036] The two sides of the printer body 1 are provided with a first support table 8, which is fixedly connected to the bottom plate 2. The upper end surface of the first support table 8 is rotatably connected with two first guide wheels 81, which are used to limit the position of the cable entering the support plate 6. The axis of the first guide wheel 81 is perpendicular to the upper end surface of the first support table 8, and a gap is left between the two first guide wheels 81 for the cable to pass through.
[0037] The second support table 9 is arranged between the rear winding roller 4 and the printer body 1, and is located on the side of the first support table 8 away from the printer body 1. A slide rod 10 is fixedly connected to the bottom plate 2 and arranged along the width direction of the bottom plate 2. The axis of the slide rod 10 is parallel to the axis of the rear winding roller 4. The slide rod 10 is arranged through the second support table 9, and the second support table 9 is slidably connected to the slide rod 10.
[0038] The bottom plate 2 is provided with an electric telescopic rod 11 for driving the second support table 9 to slide along the length direction of the slide rod 10, and the telescopic direction of the electric telescopic rod 11 is parallel to the width direction of the bottom plate 2. The telescopic end of the electric telescopic rod 11 is fixedly connected with the second support table 9. Further, the electric telescopic rod 11 is started, and the electric telescopic rod 11 can drive the second support table 9 to slide along the length direction of the slide rod 10.
[0039] The second support table 9 is rotatably connected with two second guide wheels 91, and the axis of the second guide wheels 91 is perpendicular to the upper end surface of the second support table 9. A gap for the cable to pass through is left between the two second guide wheels 91, and the second support table 9 is rotatably connected with two second guide wheels 91, and a gap for the cable to pass through is left between the two second guide wheels 91. When the second support table 9 slides, the second guide wheels 91 can change the path of the printed cable into the rear take-up reel 4, so that the printed cable can be more evenly distributed on the rear take-up reel 4.
[0040] The implementation principle of the embodiment of the present application is that when the label on the cable is printed, the support plate 6 reaches the appropriate height by adjusting the threaded rod 73. Then the cable can be wound on the front take-up reel 3, and then the driving member 5 is started and the one end of the cable is sequentially threaded through the gap between the two first guide wheels 81, the support plate 6 and the printing gap at the printer body 1. At the same time, the printer body 1 is started, the cable is printed, and then the printed part of the cable is threaded through the gap between the two first guide wheels 81 and the gap between the two second guide wheels 91, and then it is wound on the rear take-up reel 4, and at the same time the driving member 5 synchronously drives the front take-up reel 3 and the rear take-up reel 4 to rotate, so that the cable is continuously printed by the printer body 1, and after printing the cable is automatically wound on the rear take-up reel 4.
[0041] The embodiments of the specific embodiment are the preferred embodiments of the present application, and are not limited to the protection scope of the present application, wherein the same parts are indicated by the same reference numerals. Therefore, equivalent changes made according to the structure, shape, principle of the present application should be covered in the protection scope of the present application.
Claims
1. A sustainable printable cable marking printing apparatus comprising a printer body (1) characterized in that, The lower part of the printer body (1) is provided with a bottom plate (2), the printer body (1) is arranged on the bottom plate (2), both ends of the bottom plate (2) are respectively provided with a front winding roller (3) and a rear winding roller (4), the front winding roller (3) and the rear winding roller (4) are both rotationally connected to the bottom plate (2), the bottom plate (2) is provided with a driving member (5) for driving the front winding roller (3) or the rear winding roller (4) to rotate, the lower part of the printer body (1) is provided with a supporting plate (6), a gap for the cable to pass through is left between the supporting plate (6) and the printer body (1), and the bottom plate (2) is provided with a supporting assembly (7) for supporting the supporting plate (6).
2. A sustainable printed cable marker printing device according to claim 1, wherein, The supporting assembly (7) comprises a telescopic cylinder (72) and a threaded cylinder (71) fixedly connected to the bottom plate (2), the telescopic end of the telescopic cylinder (72) is fixedly connected to the supporting plate (6), the telescopic direction of the telescopic cylinder (72) is perpendicular to the bottom plate (2), and the threaded cylinder (71) is screwedly connected with a threaded rod (73), one end, away from the threaded cylinder (71), of the threaded rod (73) is rotationally connected with the supporting plate (6).
3. A continuously printable cable marker printing apparatus as defined in claim 2, wherein, The threaded rod (73) is fixedly connected with a cross adjusting rod (74).
4. A continuously printable cable marker printing apparatus as defined in claim 1, wherein, A plurality of lower abutting wheels (61) are rotationally connected to the upper end face of the supporting plate (6), and the plurality of lower abutting wheels (61) are equidistantly arranged along the length direction of the supporting plate (6).
5. A continuously printable cable marker printing apparatus as defined in claim 1, wherein, The driving member (5) is a driving motor, the driving motor is arranged on the bottom plate (2), and the output shaft of the driving motor is connected with the front winding roller (3) or the rear winding roller (4).
6. A continuously printable cable marker printing apparatus as defined in claim 1, wherein, Both sides of the printer body (1) are provided with first supporting tables (8), the first supporting tables (8) are fixedly connected to the bottom plate (2), two first guide wheels (81) are rotationally connected to the first supporting tables (8), the axis line of the first guide wheels (81) is perpendicular to the upper end face of the first supporting tables (8), and a gap for the cable to pass through is left between the two first guide wheels (81).
7. A continuously printable cable marker printing apparatus as defined in claim 1, wherein, The rear winding roller (4) and the printer body (1) are provided with a second supporting table (9), a sliding rod (10) is fixedly connected to the bottom plate (2), the axis line of the sliding rod (10) is parallel to the axis line of the rear winding roller (4), the sliding rod (10) penetrates through the second supporting table (9) and is slidingly connected to the sliding rod (10), an electric telescopic rod (11) for driving the second supporting table (9) to slide along the length direction of the sliding rod (10) is mounted on the bottom plate (2), the telescopic end of the electric telescopic rod (11) is fixedly connected to the second supporting table (9), and two second guide wheels (91) are rotationally connected to the second supporting table (9), and a gap for the cable to pass through is left between the two second guide wheels (91).
8. A sustainable printed cable marker printing device according to claim 1, wherein, The printer body (1) is installed with a pressing wheel (12) near the side of the front winding roller (3) and the side of the printer body (1) near the rear winding roller (4).