Integrated cable ink-jet printing device
The integrated cable inkjet printing device addresses speed and durability issues by synchronizing wheel adjustments and using ionization to treat the cable surface, ensuring consistent print quality across varying diameters.
Patent Information
- Application Number
- CN202422396613.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-30
AI Technical Summary
The existing cable inkjet printing device is complicated to adjust the distance between the inkjet print head and the cable, resulting in poor printing effect, and the ink is prone to fading and not durable.
The integrated cable inkjet printing device arranges the plasma nozzle and the inkjet nozzle on the integrated board, automatically adjusts the spacing through the servo adjustment assembly, and uses the plasma nozzle to process the cable surface to improve ink adhesion.
Accurate printing of cables of different wire diameters is achieved, ensuring printing quality, and improving the durability and adhesion of the ink.
Smart Images

Figure CN223100293U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of cable production, in particular to an integrated cable inkjet printing device. Background Art
[0002] When producing cables, it is necessary to print important parameter information such as cable type, specification, characteristics, and material on the cable sheath. Currently, there are methods such as hot stamping, inkjet printing, electro-corrosion marking, and laser marking on the market. The printing effect of the hot stamping method is poor, and when printing dynamic information such as printing length and batch number, the stamping wheel needs to be replaced, and the printing speed is slow. The inkjet printing method has a fast printing speed and can print dynamic information, but the ink is prone to fading and is not durable. The electro-corrosion marking method has a slow printing speed and produces corrosive waste. The laser marking method has a relatively high cost, and the laser parameters need to be adjusted according to the sheath material to avoid damaging the sheath.
[0003] There is a disclosed inkjet printer for data cables with a publication number of CN207742993U on the market. In this device, the cable traction part and the inkjet printing head part are separately arranged. Before printing, the guide wheels of the cable traction part need to be adjusted to be at the same height as the printing support wheels of the inkjet printing head part so that the cable can be tractioned in a horizontal state to obtain a better printing effect. However, since the two are separately arranged, the adjustment work is complicated. When printing cables with different wire diameters, the distance between the inkjet printing head and the cable needs to be adjusted so that a suitable distance is maintained between the inkjet printing head and the cable to obtain a better printing effect. In this device, the distance between the inkjet printing head and the cable cannot be adjusted. If the distance between the inkjet printing head and the cable is too far, the ink will be overly dispersed, resulting in unclear printed graphics and texts. If the distance between the inkjet printing head and the cable is too close, the ink will not have time to spread, resulting in block accumulation and unevenness. Moreover, this device does not solve the problems of ink fading and non-durability in inkjet printing. Summary of the Utility Model
[0004] The purpose of the utility model is to provide an integrated cable inkjet printing device that is convenient for adjusting the height of the wire passing wheel, can accurately adjust the distance between the plasma nozzle and the inkjet nozzle and the cable, and can solve the problems of ink fading and non-durability.
[0005] To achieve the above object, the technical solution adopted by the present utility model is as follows: an integrated cable inkjet printing device, comprising a bracket, on which an integrated board is provided. On the front wall of the integrated board, a length measuring wheel and a number of horizontally arranged first long through holes are provided. On the front wall of the integrated board, a length measuring pressure wheel cooperating with the length measuring wheel is provided. On the rear wall of the integrated board, a horizontal plate is vertically arranged. On the horizontal plate, a number of wire wheels are horizontally arranged. The wire wheels pass through the corresponding first long through holes and extend forward out of the integrated board. At both the left and right ends of the integrated board, a servo adjustment assembly is provided. The servo adjustment assembly includes: a sleeve plate fixed on the integrated board, on which a connecting sleeve rod is rotatably arranged. The connecting sleeve rod and the sleeve plate are locked by a first set screw. In the connecting sleeve rod, a positioning rod extending forward is key-connected. The positioning rod and the connecting sleeve rod are locked by a second set screw. On the positioning rod, a fixing plate is vertically arranged. On the fixing plate, a servo electric cylinder is provided. On the telescopic rod of the servo electric cylinder, an installation plate is horizontally connected. On the installation plate, a distance sensor is provided. On the installation plate of one servo adjustment assembly, it is connected to a plasma nozzle of a plasma surface treatment device. The bottom of the plasma nozzle is flush with the bottom sensing end of the distance sensor on this installation plate. On the installation plate of the other servo adjustment assembly, it is connected to an inkjet nozzle of an inkjet printing device. The bottom of the inkjet nozzle is flush with the bottom sensing end of the distance sensor on this installation plate. On the integrated board located below the wire wheels and the length measuring wheel, an ink collecting tank is provided.
[0006] Further, in the aforementioned integrated cable inkjet printing device, four wire wheels are horizontally arranged on the horizontal plate from left to right. The plasma nozzle is located on the left side of the leftmost wire wheel. The inkjet nozzle is located between the two right-side wire wheels. The length measuring wheel and the length measuring pressure wheel are located between the two left-side wire wheels. A pressing wheel is arranged between the two middle wire wheels. The pressing wheel is rotatably arranged on a screw shaft. Two locking nuts are threadedly connected to the screw shaft. On the integrated board, a second long through hole is provided. The screw shaft connected to the pressing wheel passes through the second long through hole. The two locking nuts are respectively screwed and abutted against the front and rear walls of the integrated board.
[0007] Further, in the aforementioned integrated cable inkjet printing device, two baffle plates are arranged between the two right-side wire wheels. The inkjet nozzle is located between the two baffle plates. Through wire grooves are provided on both baffle plates.
[0008] Further, in the aforementioned integrated cable inkjet printing device, rubber sleeves are sleeved on both the length measuring wheel and the length measuring pressure wheel. The length measuring pressure wheel is rotatably arranged on the slider. A sliding seat is arranged on the integrated board. Chute grooves are arranged on the left and right side walls of the sliding seat. The slider is clamped in the two chute grooves. A positioning seat is arranged on the sliding seat. An adjusting bolt is movably inserted through the positioning seat. An internal threaded hole is arranged on the top wall of the slider. The adjusting bolt is in threaded connection with the internal threaded hole on the slider. A column spring is sleeved on the adjusting bolt. The upper and lower ends of the column spring respectively abut against the positioning seat and the slider.
[0009] Further, in the aforementioned integrated cable inkjet printing device, a groove is formed on the rubber sleeve sleeved on the length measuring pressure wheel, and the width of the groove is greater than the width of the length measuring wheel.
[0010] Further, in the aforementioned integrated cable inkjet printing device, the connection structure between the horizontal plate and the integrated board is as follows: A guide rod and a screw rod are respectively arranged at the left and right ends of the rear wall of the integrated board. The horizontal plate is slidably connected with the guide rod and is in threaded connection with the screw rod. A first bevel gear is connected to the screw rod. Two rotating shafts are arranged on the integrated board. A second bevel gear is arranged on each of the two rotating shafts. The two second bevel gears are respectively meshed with the two first bevel gears. A driven sprocket is arranged on each of the two rotating shafts. A hand wheel is rotatably arranged on the rear wall of the integrated board. A driving sprocket is arranged on the shaft of the hand wheel. A transmission chain is arranged between the driving sprocket and the two driven sprockets.
[0011] Further, in the aforementioned integrated cable inkjet printing device, the hand wheel is arranged at any one of the left and right ends of the integrated board.
[0012] Further, in the aforementioned integrated cable inkjet printing device, the connection structure between the wire guide wheel and the horizontal plate is as follows: Four threaded holes are horizontally formed on the side wall of the horizontal plate close to the integrated board. The four threaded holes are aligned with the four first long through holes one by one. The wire guide wheel is connected to the screw rod shaft. Two locking nuts are in threaded connection with the screw rod shaft. The screw rod shaft connected to the wire guide wheel passes through the first long through hole and is in threaded connection with the threaded holes on the horizontal plate. When the top wall of the guide groove on the wire guide wheel is flush with the top wall of the length measuring wheel, the two locking nuts on the screw rod shaft connected to the wire guide wheel are respectively screwed and abutted against the front and rear walls of the integrated board.
[0013] Further, in the aforementioned integrated cable inkjet printing device, a shoulder is arranged on the connecting sleeve rod, and the connecting sleeve rod abuts against the sleeve plate through the shoulder.
[0014] Further, in the aforementioned integrated cable inkjet printing device, a clip lamp is arranged on the integrated board on one side of the inkjet nozzle.
[0015] The advantages of the present utility model are as follows: The plasma nozzle and the inkjet nozzle are both arranged on the integrated board, and all the wire wheels are horizontally arranged on the liftable horizontal plate. By adjusting the lifting of the horizontal plate, the heights of all the wire wheels can be synchronously adjusted, thus simplifying the adjustment work of the wire wheels and ensuring that the wire wheels can be horizontally aligned during and after the adjustment process; The plasma nozzle is provided to treat the surface of the cable, so as to improve the adhesion of the ink during subsequent inkjet printing by the inkjet nozzle and enhance the wear resistance of the ink; When printing cables with different wire diameters, the servo adjustment assembly can automatically and precisely adjust the distances between the plasma nozzle and the inkjet nozzle and the cable, so as to ensure that the distances between the plasma nozzle and the inkjet nozzle and the cables with different wire diameters are all the optimal distances. In this way, it can be ensured that the plasma nozzle will neither damage the cable nor affect the treatment effect when treating the cable surface, and it can also ensure the printing quality of the inkjet nozzle. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 FIG. is a schematic structural diagram of the integrated cable inkjet printing device of the present utility model in the front view direction.
[0017] Figure 2 is Figure 1 a schematic structural diagram in the rear view direction.
[0018] Figure 3 is Figure 1 a schematic structural diagram in the side view direction after removing the clip lamp, the servo adjustment assembly, the plasma nozzle and the inkjet nozzle in FIG..
[0019] Figure 4 is Figure 1 a schematic structural diagram of the length measuring wheel and the length measuring pressure wheel in FIG..
[0020] Figure 5 is Figure 1 a schematic structural diagram of the baffle in FIG.. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] The technical solution of the present utility model will be further described below in conjunction with the accompanying drawings and the preferred embodiments.
[0022] As Figures 1 to 5As shown in the figure, the integrated cable inkjet printing device of the present utility model includes a bracket 1, on which an integrated board 2 is provided. On the front wall of the integrated board 2, a length measuring wheel 21 and four horizontally arranged first long through holes 22 are provided. The length measuring wheel 21 is a device for continuously measuring length and is prior art. On the front wall of the integrated board 2, a length measuring pressure wheel 23 that cooperates with the length measuring wheel 21 is provided. Rubber sleeves are sleeved on both the length measuring wheel 21 and the length measuring pressure wheel 23 to increase the friction with the cable and prevent the cable from slipping. A groove 231 is provided on the rubber sleeve sleeved on the length measuring pressure wheel 23, and the width of the groove 231 is greater than the width of the length measuring wheel 21. The length measuring pressure wheel 23 is rotatably arranged on a slider 232. On the integrated board 2, a sliding seat 233 is provided. On the left and right side walls of the sliding seat 233, sliding grooves are provided, and the slider 232 is clamped in the two sliding grooves. On the sliding seat 233, a positioning seat 234 is provided. An adjusting bolt 235 is movably inserted through the positioning seat 234. An internal thread hole is provided on the top wall of the slider 232, and the adjusting bolt 235 is threadedly connected to the internal thread hole on the slider 232. A column spring 236 is sleeved on the adjusting bolt 235, and the upper and lower ends of the column spring respectively abut against the positioning seat 234 and the slider 232. When the cable is not length-measured for a long time, under the reset elastic force of the column spring 236, the slider 232 will be pushed upward to drive the length measuring pressure wheel 23 to move downward. Since the width of the groove 231 on the length measuring pressure wheel 23 is greater than the width of the length measuring wheel 21, the length measuring wheel 21 is clamped into the groove 231 of the length measuring pressure wheel 23, so that the groove wall of the groove 231 on the length measuring pressure wheel 23 can be prevented from being pressed and deformed after contacting the length measuring wheel 21. When the cable needs to be length-measured, the cable is clamped between the length measuring wheel 21 and the length measuring pressure wheel 23, and the length measuring pressure wheel 23 abuts against the cable under the elastic force of the column spring 236 to press the cable tightly.
[0023] A horizontal plate 3 is vertically and movably arranged on the rear wall of the integrated board 2. The connection structure between the horizontal plate 3 and the integrated board 2 is as follows: A guide rod 31 and a screw rod 32 are respectively arranged at the left and right ends of the rear wall of the integrated board 2. The horizontal plate 3 is slidably connected to the guide rod 31 and is threadedly connected to the screw rod 32. A first bevel gear 33 is connected to the screw rod 32. Two rotating shafts are arranged on the integrated board 2, and a second bevel gear 34 is arranged on each of the two rotating shafts. The two second bevel gears 34 are respectively engaged with the two first bevel gears 33. A driven sprocket 35 is arranged on each of the two rotating shafts. A handwheel 36 is rotatably arranged on the rear wall of the integrated board 2, and a driving sprocket 37 is arranged on the shaft of the handwheel 36. A transmission chain 38 is arranged between the driving sprocket 37 and the two driven sprockets 36. The handwheel 36 is arranged at any one of the left and right ends of the integrated board 2. Four threaded holes are horizontally arranged on the side wall of the horizontal plate 3 close to the integrated board 2, and the four threaded holes are respectively aligned with the four first long through holes 22 one by one. A screw shaft 4 is threadedly connected in the threaded hole. The screw shaft 4 passes through the corresponding first long through hole 22 and extends forward out of the integrated board 2. Two locking nuts 41 are threadedly connected to the screw shaft 4. A wire guiding wheel 5 is rotatably arranged on the screw shaft 4. When the top wall of the guide groove on the wire guiding wheel 5 is flush with the top wall of the length measuring wheel 21, the two locking nuts 41 on the screw shaft 4 connected to the wire guiding wheel 5 are respectively screwed and abutted against the front and rear walls of the integrated board 2. When adjusting the height of the wire guiding wheel 5, the staff rotates the handwheel 36 to drive the driving sprocket 37 to rotate. The rotating driving sprocket 37 synchronously drives the two driven sprockets 35 to rotate through the transmission chain 38. The rotating driven sprockets 35 drive the respective corresponding second bevel gears 34 to rotate. The second bevel gears 34 drive the first bevel gears 33 engaged therewith to rotate, thereby driving the screw rods 32 to rotate. When the two screw rods 32 rotate at the same speed and in the same direction, they can drive the horizontal plate 3 to move up and down horizontally. Since the handwheel 36 is located at any one of the left and right ends of the integrated board 2, the staff can observe sideways whether the guide groove wall of the wire guiding wheel 5 is flush with the top wall of the length measuring wheel 21 when rotating the handwheel 36. After the two are flush, screwing the two locking nuts 41 on the screw shaft 4 until they abut against the front and rear walls of the integrated board 2 can lock the wire guiding wheel 5. In this way, the height of the four wire guiding wheels 5 can be quickly adjusted, and it can be ensured that the four wire guiding wheels 5 are always in a horizontally aligned state.
[0024] The meter wheel 21 and the meter pressing wheel 23 are located between the two wire wheels 5 on the left side. A wire pressing wheel 6 is arranged between the two wire wheels 5 in the middle. The wire pressing wheel 6 is also rotatably arranged on the screw shaft. Two locking nuts are also threadedly connected to the screw shaft connected to the wire pressing wheel 6. A second long through hole 24 is arranged on the integrated board 2. The screw shaft connected to the wire pressing wheel 6 passes through the second long through hole 24. The two locking nuts are respectively screwed and abutted against the front and rear walls of the integrated board 2. When the cable is placed on the wire wheel 5, loosen the locking nut on the screw shaft connected to the wire pressing wheel 6 to adjust the height of the wire pressing wheel 6 so that the wire pressing wheel 6 can press on the cable and cooperate with the wire wheel 5 to play a role in stably conveying the cable. Two baffles 25 are arranged between the two wire wheels 5 on the right side. Wire grooves 251 are arranged on both of the two baffles 25.
[0025] At the left and right ends of the integrated board 2, there are respectively a plasma nozzle 7 of the plasma surface treatment equipment and an inkjet nozzle 8 of the inkjet printing equipment. The plasma nozzle 7 is connected to the plasma surface treatment equipment and the inkjet nozzle 8 is connected to the inkjet printing equipment through corrugated hoses, which belongs to the prior art. The inkjet nozzle 8 is located between two baffles 25. Both the plasma nozzle 7 and the inkjet nozzle 8 are connected to the integrated board 2 through a servo adjustment component 9. The servo adjustment component 9 includes: a sleeve plate 91 fixed on the integrated board 2, a connecting sleeve rod 92 rotatably arranged on the sleeve plate 91, a shoulder is provided on the connecting sleeve rod 92, and the connecting sleeve rod 92 abuts against the sleeve plate 91 through the shoulder. The connecting sleeve rod 92 and the sleeve plate 91 are locked and connected through a first set screw. A positioning rod 93 extending forward is key-connected in the connecting sleeve rod 92, and the positioning rod 93 and the connecting sleeve rod 92 are locked and connected through a second set screw. A fixing plate 94 is vertically arranged on the positioning rod 93, a servo electric cylinder 95 is arranged on the fixing plate 94, a mounting plate 96 is horizontally connected to the telescopic rod of the servo electric cylinder 95, and a distance sensor 97 is arranged on the mounting plate 96. The plasma nozzle 7 is connected to the mounting plate 96 in the servo adjustment component 9 at the left end of the integrated board 2, and the inkjet nozzle 8 is connected to the mounting plate 96 in the servo adjustment component 9 at the right end of the integrated board 2. When installing the plasma nozzle 7 or the inkjet nozzle 8, after loosening the second set screw, pull the positioning rod 93 forward to leave enough rotational distance between the mounting plate 96 and the integrated board 2. Then, after loosening the first set screw, the connecting sleeve rod 92 can be rotated to adjust the positioning rod 93 and the mounting plate 96 to a position convenient for installing the plasma nozzle 7 or the inkjet nozzle 8. After the plasma nozzle 7 or the inkjet nozzle 8 is installed in place, first reverse the connecting sleeve rod 92, and then push the positioning rod 93 backward to make the distance sensor 97 mounted on the same mounting plate 96 and the plasma nozzle 7 or the distance sensor 7 and the inkjet nozzle 8 located directly above the cable at the same time. Lock the first set screw and the second set screw. The bottom of the plasma nozzle 7 is flush with the bottom sensing end of the distance sensor 97 mounted on the same mounting plate 96, and the bottom of the inkjet nozzle 8 is flush with the bottom sensing end of the distance sensor 97 mounted on the same mounting plate 96. And when the cable is placed on the length measuring wheel 21 and the wire wheel 5, it is in a horizontally straightened state. Therefore, the detection distance between the distance sensor 97 and the cable is the distance between the plasma nozzle 7 or the inkjet nozzle 8 mounted on the same mounting plate 96 as the distance sensor 97 and the cable. An ink collecting groove 26 is arranged on the integrated board 2 below the wire wheel 5 and the length measuring wheel 21, and a clip lamp 27 is arranged on the integrated board 2 on one side of the inkjet nozzle 8.
[0026] When printing on a cable, the cable is placed on the guide pulley 5 and the length measuring pulley 21 and passes through the wire groove 251 of the baffle 25. The pressing pulley 6 and the length measuring pressing pulley 23 press against the cable. Then, the servo cylinders 95 in the two servo adjustment assemblies 9 are started respectively, and the distance sensors 97 are used to adjust the distances between the plasma nozzles 7 and the inkjet nozzles 8 and the cable. The plasma nozzles 7 first perform surface treatment on the sheath of the cable, creating minute unevenness and introducing polar groups on the surface of the cable sheath to increase surface roughness and activity. The length measuring pulley 21 and the length measuring pressing pulley 23 cooperate to measure the length of the cable, thereby controlling the printing frequency of the inkjet nozzle 8. When the inkjet nozzle 8 jets ink on the cable, a small amount of ink will splash outwards. After being blocked by the two baffles 25 and collected by the ink collecting tank 26, the splashed ink will not contaminate the adjacent two guide pulleys 5 or fall to the ground. The cable sheath treated by the plasma nozzles 7 can improve the adhesion and wear resistance of the ink, thereby enhancing the durability of the ink. The clip lamp 27 irradiates the cable, facilitating the staff to verify the printed characters on the cable.
[0027] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Although the present invention has been described in detail with reference to the above embodiments, those of ordinary skill in the art should understand that: the specific implementation manners of the present invention can still be modified or equivalently replaced, and any modification or equivalent replacement that does not depart from the spirit and scope of the present invention shall be covered by the protection scope of the claims of the present invention.
Claims
1. Integrated cable inkjet printing device, including a bracket, on which an integrated board is provided, characterized in that: On the front wall of the integrated board, there are a length measuring wheel and several horizontally arranged first long through holes. On the front wall of the integrated board, there is a length measuring pressure wheel cooperating with the length measuring wheel. On the rear wall of the integrated board, a horizontal plate is arranged in a lifting manner. On the horizontal plate, several wire guiding wheels are horizontally arranged. The wire guiding wheels extend forward out of the integrated board after passing through the corresponding first long through holes. At both the left and right ends of the integrated board, there is a servo adjustment component respectively. The servo adjustment component includes: a sleeve plate fixed on the integrated board. On the sleeve plate, a connecting sleeve rod is rotatably arranged. The connecting sleeve rod and the sleeve plate are locked by a first set screw. In the connecting sleeve rod, a positioning rod extending forward is key-connected. The positioning rod and the connecting sleeve rod are locked by a second set screw. On the positioning rod, a fixing plate is vertically arranged. On the fixing plate, a servo electric cylinder is arranged. On the telescopic rod of the servo electric cylinder, an installation plate is horizontally connected. On the installation plate, a distance sensor is arranged. On the installation plate of one servo adjustment component, it is connected to a plasma spray head of a plasma surface treatment device. The bottom of the plasma spray head is flush with the bottom sensing end of the distance sensor on this installation plate. On the installation plate of the other servo adjustment component, it is connected to an inkjet head of an inkjet printing device. The bottom of the inkjet head is flush with the bottom sensing end of the distance sensor on this installation plate. On the integrated board located below the wire guiding wheels and the length measuring wheel, there is an ink collecting groove.
2. The integrated cable inkjet printing device according to claim 1, wherein: On the horizontal plate, four wire guiding wheels are horizontally arranged from left to right. The plasma spray head is located on the left side of the leftmost wire guiding wheel. The inkjet head is located between the two right-side wire guiding wheels. The length measuring wheel and the length measuring pressure wheel are located between the two left-side wire guiding wheels. A wire pressing wheel is arranged between the two middle wire guiding wheels. The wire pressing wheel is rotatably arranged on a screw shaft. On the screw shaft, two locking nuts are threadedly connected. On the integrated board, there is a second long through hole. The screw shaft connected to the wire pressing wheel is arranged in the second long through hole. The two locking nuts are respectively screwed and abutted against the front and rear walls of the integrated board.
3. The integrated cable inkjet printing device according to claim 2, wherein: Between the two right-side wire guiding wheels, there are two baffle plates arranged. The inkjet head is located between the two baffle plates. On both baffle plates, there are wire passing grooves arranged.
4. The integrated cable inkjet printing device according to claim 1, wherein: Rubber sleeves are sleeved on both the length measuring wheel and the length measuring pressure wheel. The length measuring pressure wheel is rotatably arranged on a slider. On the integrated board, a sliding seat is arranged. On the left and right side walls of the sliding seat, there are sliding grooves. The slider is clamped in the two sliding grooves. On the sliding seat, a positioning seat is arranged. An adjusting bolt is movably arranged in the positioning seat. On the top wall of the slider, there is an internal thread hole. The adjusting bolt is threadedly connected to the internal thread hole on the slider. A column spring is sleeved on the adjusting bolt. The upper and lower ends of the column spring respectively abut against the positioning seat and the slider.
5. The integrated cable inkjet printing device according to claim 4, characterized in that: On the rubber sleeve sleeved on the length measuring pressure wheel, there are grooves arranged. The width of the grooves is greater than the width of the length measuring wheel.
6. The integrated cable inkjet printing device according to claim 2, wherein: The connection structure between the horizontal plate and the integrated board is as follows: A guide rod and a screw rod are respectively arranged at the left and right ends of the rear wall of the integrated board. The horizontal plate is slidably connected to the guide rod and threadedly connected to the screw rod. A first bevel gear is connected to the screw rod. Two rotating shafts are arranged on the integrated board, and a second bevel gear is arranged on each of the two rotating shafts. The two second bevel gears are respectively engaged with the two first bevel gears. A driven sprocket is arranged on each of the two rotating shafts. A handwheel is rotatably arranged on the rear wall of the integrated board, and a driving sprocket is arranged on the shaft of the handwheel. A transmission chain is arranged between the driving sprocket and the two driven sprockets.
7. The integrated cable inkjet printing device according to claim 6, wherein: The handwheel is arranged at any one end of the left or right of the integrated board.
8. The integrated cable inkjet printing device according to claim 6, characterized in that: The connection structure between the wire guide wheel and the horizontal plate is as follows: Four threaded holes are horizontally formed in the side wall of the horizontal plate close to the integrated board. The four threaded holes are aligned with the four first long through holes one by one. The wire guide wheel is connected to the screw rod shaft. Two locking nuts are threadedly connected to the screw rod shaft. The screw rod shaft connected to the wire guide wheel passes through the first long through hole and is threadedly connected to the threaded holes on the horizontal plate. When the top wall of the guide groove on the wire guide wheel is flush with the top wall of the length measuring wheel, the two locking nuts on the screw rod shaft connected to the wire guide wheel are respectively screwed and abutted against the front and rear walls of the integrated board.
9. The integrated cable inkjet printing device according to claim 1, wherein: A shoulder is arranged on the connecting sleeve rod, and the connecting sleeve rod abuts against the sleeve plate through the shoulder.
10. The integrated cable inkjet printing device according to claim 1, characterized in that: A clip lamp is arranged on the integrated board on one side of the inkjet head.
Citation Information
Patent Citations
Data are inkjet printing word machine for cable
CN207742993U