WO2020248222A1 - Imprimante à jet d'encre et son procédé d'impression à jet d'encre en un passage - Google Patents

Imprimante à jet d'encre et son procédé d'impression à jet d'encre en un passage Download PDF

Info

Publication number
WO2020248222A1
WO2020248222A1 PCT/CN2019/091250 CN2019091250W WO2020248222A1 WO 2020248222 A1 WO2020248222 A1 WO 2020248222A1 CN 2019091250 W CN2019091250 W CN 2019091250W WO 2020248222 A1 WO2020248222 A1 WO 2020248222A1
Authority
WO
WIPO (PCT)
Prior art keywords
printing
printed
nozzle
objects
conveying device
Prior art date
Application number
PCT/CN2019/091250
Other languages
English (en)
Chinese (zh)
Inventor
张原�
张征宇
Original Assignee
北京美科艺数码科技发展有限公司
张原�
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 北京美科艺数码科技发展有限公司, 张原� filed Critical 北京美科艺数码科技发展有限公司
Priority to PCT/CN2019/091250 priority Critical patent/WO2020248222A1/fr
Priority to CN201980096532.0A priority patent/CN113939404B/zh
Publication of WO2020248222A1 publication Critical patent/WO2020248222A1/fr

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J3/00Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed
    • B41J3/407Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed for marking on special material
    • B41J3/4073Printing on three-dimensional objects not being in sheet or web form, e.g. spherical or cubic objects
    • B41J3/40733Printing on cylindrical or rotationally symmetrical objects, e. g. on bottles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F17/00Printing apparatus or machines of special types or for particular purposes, not otherwise provided for
    • B41F17/08Printing apparatus or machines of special types or for particular purposes, not otherwise provided for for printing on filamentary or elongated articles, or on articles with cylindrical surfaces
    • B41F17/14Printing apparatus or machines of special types or for particular purposes, not otherwise provided for for printing on filamentary or elongated articles, or on articles with cylindrical surfaces on articles of finite length
    • B41F17/20Printing apparatus or machines of special types or for particular purposes, not otherwise provided for for printing on filamentary or elongated articles, or on articles with cylindrical surfaces on articles of finite length on articles of uniform cross-section, e.g. pencils, rulers, resistors
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F17/00Printing apparatus or machines of special types or for particular purposes, not otherwise provided for
    • B41F17/28Printing apparatus or machines of special types or for particular purposes, not otherwise provided for for printing on curved surfaces of conical or frusto-conical articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J2/00Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
    • B41J2/005Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by bringing liquid or particles selectively into contact with a printing material
    • B41J2/01Ink jet
    • B41J2/135Nozzles
    • B41J2/14Structure thereof only for on-demand ink jet heads

Definitions

  • the present invention relates to an inkjet printer and its one-pass inkjet printing method, in particular to an inkjet printer that prints a cylinder, a cone or a cylinder/cone with high efficiency, and its one-pass inkjet printing method.
  • Inkjet printing technology refers to the technology that prints images or text by ejecting ink droplets on the object to be printed through a nozzle.
  • This technology is non-contact printing, which has the advantages of fast printing speed, low pollution, and adaptable multiple objects to be printed, and is widely used in industrial applications.
  • More common, inkjet printing is divided into scanning (Scanning) inkjet printing and one-pass imaging (Onepass) inkjet printing according to the movement of the printing cart and the object to be printed.
  • Scanning inkjet printing includes roll-to-roll There are two types of inkjet printing and desktop inkjet printing. Roll-to-roll inkjet printing.
  • the printing cart moves back and forth along the rail beam relative to the object to be printed, and the object to be printed is in a direction perpendicular to the direction of movement of the printing cart.
  • the rail beam that installs the printing cart is still; while the platform inkjet printing has two situations in the inkjet printing process, one is that the rail beam does not move during the inkjet printing process, and the printing cart moves back and forth along the rail beam ,
  • the printing platform moves relative to the direction perpendicular to the direction of movement of the printing carriage; the other is that the printing platform is stationary, the printing carriage moves back and forth along the rail beam relative to the object to be printed, and the printing carriage moves relative to the direction perpendicular to the guide beam .
  • the printing cart In one-time paper-feeding imaging inkjet printing, the printing cart is stationary during the inkjet process, and the object to be printed moves at a high speed in one direction.
  • Inkjet printing with one-time paper feed requires high printing accuracy and printing width of the nozzle.
  • the printing accuracy of the nozzle must be the printing accuracy of the image, and the printing width of the nozzle must be the printing width of the image. Ways to obtain high precision and to obtain a wider printing width by cascading nozzles.
  • Patent 200510045534.7 proposes a device for printing pictures and texts on the surface of a candle.
  • the device includes an inkjet printing unit.
  • the printing unit includes a printing support.
  • a print head is arranged on the print support.
  • the print head can reciprocate linearly relative to the support.
  • the inkjet printing unit Two rotating shafts parallel to each other are arranged below, at least one rotating shaft is connected with the driving device, and the driving device and the inkjet printing unit are connected with the circuit board.
  • the candle to be printed is placed on two mutually parallel rotating shafts. Since the device is not provided with a pressing mechanism, it is easy to cause insufficient driving force of the candle during the rotation. And during the printing process, the rotating shaft drives the candle to rotate step by step, and the ink droplets are ejected to adhere to the surface of the candle during the reciprocating movement of the print head.
  • the printing speed using this printing method is slow and the printing efficiency is low.
  • a printing method in the prior art is to use an "octopus" rotary transfer printing device, which includes an operating station 01-08, rotation center axis 0, driving mechanism and printing part (not shown in the figure), operating station 01-08 is arranged in a circular array around the rotation center axis 0, operating station 01-08 places the object to be printed and It performs different operations, such as: station 01-03 is used for loading, pre-printing of the object to be printed and other pre-printing jobs, and a printing module (not shown in the figure) is set next to station 04 for the waiting on it.
  • Print the object for printing, station 05-08 is used to complete curing, quality inspection, and blanking of the printed object to be printed.
  • the operating stations 01-08 are respectively connected to the central axis of rotation 0 through a rotating arm.
  • the control system controls the driving mechanism to drive the operating station 01-08 to rotate intermittently to supply the objects to be printed.
  • the prior art conveying mechanism can also be provided with other numbers of operating stations, all of which are arranged in a circular array and rotate to convey the objects to be printed.
  • FIG. 2 there is another pipeline type conveyor in the prior art.
  • operating stations 001-005 are transferred in the direction of the arrow through the conveyor 006, and operating stations 001-005 perform different operations on the object to be printed, for example, perform loading on station 001
  • the pre-printing operation is performed on station 002
  • the printing operation is performed on station 003
  • the curing operation after printing is performed on station 004, and the unloading operation is performed on station 005.
  • the actual operation of each station may vary according to the actual situation. But all adopt this kind of pipeline sequential transmission method.
  • the patent 201821191887.7 proposes a printing device with multiple cylinders.
  • the printing cart moves along the frame.
  • the printing cart is equipped with multiple sets of print heads, and multiple sets of drive shafts are set to place multiple cylinder printing substrates.
  • the print head has a one-to-one correspondence with each group of drive shafts below it.
  • the nozzle setting direction of each group of print heads is perpendicular to the movement direction of the cylinder, which belongs to the scanning printing mode.
  • the printing process only the nozzle holes in the middle part close to the radial direction of the cylinder are used for inkjet, and the nozzle holes at the other ends do not ink, otherwise the printing quality cannot be guaranteed, so the nozzle utilization rate is low; and when the positioning bar 10 is worn The printing accuracy will be affected later. If the positioning bars 10 at different positions are worn to different degrees, the printing results of the printing substrates 100 will be inconsistent; in addition, because multiple cylinders are scanned simultaneously by inkjet Printing is completed multiple times. When the individual printing nozzles of the nozzle are blocked, all the cylinders on the entire transmission shaft are damaged. When the printing device fails in the middle, all the cylinders on the transmission shaft will be all Printing failed; and the device can only print cylinders, not cones.
  • the above-mentioned printing device is set in multiple positions for simultaneous operation, the device is bulky, complex in structure, and high in manufacturing cost. It is necessary to design a compact and easy to handle and maintain small and efficient printing device and printing method for printing cylinders or cones. .
  • the purpose of the present invention is to propose a jet that can not only ensure the printing accuracy, but also improve the utilization efficiency of the nozzle, improve the printing efficiency, avoid the waste of operation time before and after printing, reduce the footprint, and reduce the manufacturing cost.
  • Ink printer and its one-pass inkjet printing method are provided.
  • the present invention proposes an inkjet printer, which is used to print a cylinder/cone or an object to be printed with a cylinder/cone as the graphic area to be printed. It is characterized in that a printing beam is provided on the printing beam.
  • the printing carriage can move back and forth along the printing beam, that is, the first direction.
  • the printing carriage is provided with at least one set of printing units, the set of printing units is provided with at least one nozzle, and the nozzles in the printing unit extend along the direction perpendicular to the first direction.
  • the second direction (longitudinal direction) is set, and at least two conveying devices are arranged under the printing beam. Each conveying device is provided with a fixture to fix the object to be printed.
  • the object to be printed is fixed in the second direction.
  • the object to be printed is conveyed in the direction, the control system controls each conveying device to sequentially convey the object to be printed at a certain time interval, and controls the printing trolley to move to above the conveying device that conveys the object to be printed when the object to be printed reaches below the printing beam,
  • the printing cart is fixed and the nozzle on the printing cart ejects ink.
  • the image and text are formed.
  • the object to be printed rotates at a uniform speed around its central axis.
  • the number N set by the conveying device satisfies: N ⁇ (T non-printing ⁇ T printing) + 1 and the value of N is the smallest integer that satisfies the formula, and T non-printing indicates that the print job is other than the print head
  • the processing time of the object to be printed includes the processing time before printing and the processing time after printing.
  • T print represents the print job time of the nozzle.
  • each conveying device is provided with a jig to mount at least one object to be printed, the object to be printed is fixed in the second direction, and the upper surface of the object to be printed is fixed in parallel with the second direction; at least one corresponding to the printing cart is provided Group printing units, each group of printing units is used to print the corresponding objects to be printed below, and the number of groups set by the printing unit is the same as the number of objects to be printed installed on each conveying device.
  • the processing time before printing includes the loading time of the object to be printed, the preprocessing time of the object to be printed, and the transport time of the object to be printed; the processing time after printing includes the image and text on the object to be printed. Curing time, graphic inspection time, blanking time.
  • the nozzle can be used to print color and white/transparent/primer coating inks.
  • the present invention provides a one-pass inkjet printing method, which is characterized in that a printing carriage is arranged along the printing beam, that is, the first direction, at least one set of printing units are arranged on the printing carriage, and the printing unit is arranged with at least one nozzle.
  • the direction is perpendicular to the second direction (longitudinal direction), at least two conveying devices are arranged under the nozzle, and at least two conveying devices are arranged side by side along the first direction.
  • Each conveying device is provided with a fixture for installing the object to be printed and controlling The system controls each conveying device to alternately transport the objects to be printed back and forth in the second direction, and at the same time controls the printing carriage to move intermittently along the first direction.
  • the printing carriage is already Move to the top of the conveying device that conveys the object to be printed in the first direction.
  • the carriage on the printing beam is fixed and the inkjet operation is performed. After the object to be printed passes through, the graphic printing is completed.
  • the object to be printed rotates at a constant speed around its central axis.
  • the calculation method of the number N set by the conveying device is: N ⁇ (T non printing ⁇ T printing) + 1 and the value of N is the smallest integer that satisfies the formula
  • T non Print indicates the processing time of the object to be printed outside the print job of the nozzle, including the processing time before printing and the processing time after printing
  • T print indicates the print job time of the nozzle.
  • a one-pass inkjet printing method characterized in that a printing carriage is arranged along a printing beam, that is, a first direction, at least one set of printing units are arranged on the printing carriage, and at least one nozzle is arranged on the printing unit.
  • the second direction (longitudinal direction) is set, at least two conveying devices are arranged under the nozzle, and at least two conveying devices are arranged side by side along the first direction.
  • Each conveying device is provided with a jig for installing the object to be printed, including the following working steps :
  • the control system controls the conveying device installed with the object to be printed to sequentially transport back and forth in the second direction, and at the same time controls the printing trolley to move in the first direction with intermittent movement.
  • the printing carriage has moved to the top of the conveying device that conveys the object to be printed.
  • the carriage on the printing beam is fixed and the inkjet operation is performed. After the printing object passes through, the graphic printing is completed.
  • the object to be printed rotates at a constant speed around its central axis;
  • step b) After the printing of the object to be printed on the conveying device in step b) is completed, the object to be printed performs the subsequent process operations. After the subsequent process operation is completed, the conveying device transports the object to be printed back to the initial loading position, operation If there is no follow-up process after the printing of the object to be printed is completed, the conveying device directly transports the object to be printed back to the initial loading position, and the operator performs the unloading operation;
  • the subsequent process operation in the above step c) may include a curing operation or inspection operation of the object to be printed.
  • the jig is installed with at least one object to be printed, and when the jig is designed to install at least two objects to be printed, the objects to be printed are arranged side by side along the first direction; on the printing cart
  • the number of groups set by the printing unit is the same as the number of objects to be printed installed on each conveying device.
  • the printer designed by the present invention has a compact and ingenious structure, which saves space and cost compared with an industrial assembly line printing device. An operator can complete operations in multiple transfer positions before the printer. In addition, the objects to be printed on multiple conveying devices simultaneously perform jobs in different processes, so that the print nozzles can perform continuous printing jobs as much as possible and improve printing efficiency.
  • Multiple objects to be printed can be set on the same conveying device at the same time.
  • one motor or multiple motors can be used to control multiple objects to be printed to rotate at the same time, and to print multiple objects to be printed simultaneously. Save time and improve printing efficiency.
  • an encoder is used to detect the number of rotations of the object to be printed, and a computer and a motherboard are used to control the printing, simplifying control and convenient maintenance.
  • the images printed by each object to be printed may be the same or different.
  • the present invention is used to print curved objects, but multiple sets of nozzles are arranged in the same plane, which is beneficial for adjusting the distance between the nozzles and the object to be printed, and it is also convenient to perform moisturizing and maintenance operations on each nozzle.
  • the angle of the nozzle arrangement causes the inconvenience of ink scraping and moisturizing, and the design of the ink scraping maintenance device can prevent the nozzles that print different colors of ink from crossing each other.
  • the application of the present invention has a wide range of objects to be printed, which can be used to print cylinders and cones, and can also print special-shaped objects with cylinders or cones in the area to be printed, such as printing wine bottles and cosmetics. Bottles, etc., in addition, can print objects of different sizes to be printed.
  • the printer design of the present invention can form a complete printing pattern after the object to be printed passes through, enhance the utilization rate of nozzle holes, and improve work efficiency.
  • Figure 1 is an industrial type cylindrical printing and conveying device in the prior art
  • Figure 2 is another industrial type cylinder printing and conveying device in the prior art
  • Figure 3 is a perspective schematic view of an inkjet printer in an embodiment of the present invention.
  • FIG. 4 is a front view of the inkjet printer in FIG. 3 behind the front baffle 41 of the present invention
  • Figure 5 is a bottom view of the printing carriage in an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of the ink scraping maintenance device corresponding to the printing cart shown in FIG. 5 of the present invention.
  • Figure 7 is a front view of an inkjet printer in another embodiment of the present invention.
  • Fig. 8 is a schematic diagram of a jig part fixing a cone in another embodiment of the present invention.
  • Figure 9 is a flowchart of an inkjet printing method in an embodiment of the present invention.
  • Figure 10 is a three-dimensional schematic diagram of an inkjet printer in another embodiment of the present invention.
  • Figure 11 is a flow chart of the work of the inkjet printer of Figure 10.
  • Figure 12 is a perspective schematic view of an inkjet printer in another embodiment of the present invention.
  • Figure 13 is a front view of Figure 12 of the present invention.
  • the serial numbers in the figure are specifically represented as: conveying device 1, jig 2, support seat 3, shell part 4, beam 5, printing trolley 6, nozzle 7, scraping maintenance device 8, object to be printed 9, encoder 21, top Tightening part 22, guide rail 23, slider 24, tail top block 25, parallel adjustment part 26, front baffle 41, first nozzle 71, second nozzle 72, third nozzle 73, fourth nozzle 74, fifth nozzle 75 , The sixth nozzle 76, the first wiper 81, the second wiper 82, the third wiper 83, the fourth wiper 84, the fifth wiper 85, the sixth wiper 86, the ink tray 87, the first standby Printing object 91, second object to be printed 92, cone 93, first fixture 211, second fixture 212, third fixture 213, A fixture 214, B fixture 215, first conveying device 11, The second conveying device 12, the third conveying device 13, the A conveying device 14, the B conveying device 15, the operating station 01-08, the rotation center axis 0, the operating station 001-005 and the conveyor
  • Figures 3 and 4 respectively show a perspective view and a front view of the inkjet printer in this embodiment (the front view after the front baffle 41 is hidden).
  • the inkjet printer in this embodiment includes transport The device 1, the fixture 2, the support base 3, the shell part 4, the beam 5 and the printing cart 6.
  • the conveying device 1 is arranged above the support base 3, and a jig 2 is arranged above the conveying device 1 to install the object 9 to be printed.
  • two objects 9 to be printed can be arranged side by side along the X axis, that is, the first direction.
  • the two to-be-printed objects 9 are two cylinders, which are respectively defined as a first to-be-printed object 91 and a second to-be-printed object 92.
  • the to-be-printed object 9 is arranged along the Y-axis, that is, the second direction, that is, it is installed and fixed.
  • the central axis/top surface is parallel to the Y axis, that is, the second direction (when the object to be printed is a cone, the top surface of the cone after installation is parallel to the Y axis, that is the second direction), the first direction is perpendicular to the second direction,
  • the first to-be-printed object 91 and the second to-be-printed object 92 are connected to the same motor (not shown in the figure), and the motor can control the first to-be-printed object 91 and the second to-be-printed object 92 to rotate synchronously around its own central axis of rotation, and transmit
  • the device 1 can synchronously transport two objects 9 to be printed back and forth along the Y axis, that is, the second direction.
  • a cross beam 5 is arranged above the jig 2, which is arranged along the X axis, that is, the first direction.
  • a printing carriage 6 is installed on the cross beam 5.
  • the printing carriage 6 of this embodiment is provided with two sets of nozzle printing units, and two sets of nozzle printing units They are arranged side by side in the same plane along the X axis, that is, the first direction, and each group of print head printing units are arranged below the corresponding object to be printed for printing the corresponding object to be printed.
  • the nozzles 7 arranged in two directions are arranged in series (when only one printing nozzle is set for each group of nozzle printing units, the nozzles are set along the length of the nozzles), theoretically the nozzle holes of each group of nozzles printing unit are downward
  • the ejected ink drop trajectory passes through or approaches the radial direction of the corresponding object to be printed below.
  • each group of nozzle printing units in this embodiment are arranged in series along the Y axis, that is, the second direction, three nozzles are arranged in series, and the first nozzle printing unit is sequentially connected in series with the first nozzle 71.
  • the second nozzle 72 and the third nozzle 73 are used to print graphics and text on the first object 91 to be printed below; the second nozzle printing unit is connected in series in sequence The fourth nozzle 74, the fifth nozzle 75 and the sixth nozzle 76, and the fourth nozzle 74, the fifth nozzle 75 and the sixth nozzle 76 are used to print graphics and text on the second object to be printed 92 below.
  • Each print head printing unit can include printing color ink (cyan ink C, magenta ink M, yellow ink Y, black ink K, light cyan ink LC, light magenta ink LM or other spot color ink) or coated ink (White ink W, transparent ink V or primer ink P, etc.), each nozzle can spray one color or multiple colors of ink, the actual printing color depends on the demand, the present invention does not limit the printing ink of each nozzle The number of colors and the arrangement of different color inks.
  • a squeegee maintenance device 8 is installed at one end of the beam 5 (has been blocked by the housing part 4). The specific structure of the squeegee maintenance device 8 is shown in Figure 6.
  • Two sets of squeegee units are provided for the two sets of nozzle printing units.
  • the squeegee units are arranged side by side along the X axis, that is, the first direction.
  • the first group of squeegee units includes a first wiper 81, a second wiper 82, and a third wiper 83 that are serially connected along the Y axis, that is, the second direction.
  • the first wiper blade 81, the second wiper blade 82, and the third wiper blade 83 are used to wipe the ink of the above-mentioned first nozzle printing unit. Specifically: the printing carriage passes through the wiper maintenance device 8 along the X axis, that is, the first direction.
  • the second group of wiper units includes the Y
  • the axis is the fourth wiper 84, the fifth wiper 85, and the sixth wiper 86 serially connected in the second direction.
  • the fourth wiper 84, the fifth wiper 85 and the sixth wiper 86 are used to
  • the second nozzle printing unit performs ink scraping. Specifically: when the printing carriage passes through the scraping maintenance device 8 along the X axis, that is, the first direction, the fourth scraper 84 scrapes the fourth nozzle 74, and the fifth scraper 85 scrapes the ink.
  • the fifth nozzle 75 wipes ink
  • the sixth wiper blade 86 wipes the sixth nozzle 76 ink.
  • the ink squeegee maintenance device 8 can still perform squeegee maintenance operations when one or two nozzles are installed in each group of nozzle printing units; when each group of nozzle printing units are connected in series with four or more nozzles, each group
  • the wiper unit is also provided with the same number of wiper blades, and the principle is the same. When the wiper blade wipes the nozzle holes of the nozzle, the waste ink flows into the ink receiving tray 87 and is discharged.
  • the design of the scraping maintenance device 8 can cooperate with two sets of nozzle printing units in the same plane, while quickly scraping the nozzles (the nozzle scraping movement range is reduced), and can also prevent the nozzles that print different colors of ink from happening between each other. Cross color.
  • the printing carriage 6 moves along the X axis, that is, the first direction, to the top of the squeegee maintenance device 8, and drives the squeegee maintenance device 8 to rise along the Z axis, that is, the vertical direction, and snap the cover on the nozzle floor
  • the nozzle can be moisturized and maintained to prevent the nozzle from drying out and clogging.
  • the scraper is placed in the groove on the left side of the nozzle (not shown in the figure).
  • the outside of the printer is wrapped by the shell part 4, which is convenient for the appearance of the machine.
  • Fig. 7 is a front view of an inkjet printer in another embodiment of the present invention.
  • three groups of nozzle printing units are arranged on the printing carriage 6, and each group of nozzle printing units are arranged side by side along the X axis, that is, the first direction, and are arranged In the same plane, each group of nozzle printing units is provided with at least one nozzle, and the nozzles in each group of nozzle printing units are arranged along the Y axis, which is the second direction (the length of itself).
  • the second direction the length of itself
  • each group of print heads three objects 9 (cylinders) to be printed are respectively fixed on the conveying device 1 underneath the printing unit.
  • the central axis of rotation of the three objects 9 (cylinders) to be printed is also the same as the Y axis, which is the second
  • the directions are parallel, and the three objects 9 to be printed are arranged side by side along the X axis, that is, the first direction.
  • the ink droplet trajectory ejected downward from the nozzle nozzles of each group of nozzle printing units passes or approaches the diameter of the corresponding object to be printed below. To the direction.
  • the other structural design, motion control mode, and ink-wiping maintenance mode of the printer are the same as those in the first embodiment above, and will not be repeated here.
  • Fig. 8 is a schematic diagram of a jig 2 used to fix a cone in another embodiment of the present invention.
  • the jig 2 includes an encoder 21, a tightening part 22, a guide rail 23, a slider 24, a tail block 25, and a parallel adjustment part 26 and supporting parts.
  • a guide rail 23 is installed on the bottom support plate of the jig 2 along the Y axis, that is, the second direction.
  • the sliding block 24 and the guide rail 23 can cooperate to slide along the guide rail, that is, the second direction.
  • the sliding block 24 is connected with the upper tightening part 22, thereby Drive the tightening part 22 to slide in the second direction, and then control the tail top block 25 on the tightening part 22 to abut against the bottom of the object to be printed (cone 93) and fix it tightly, along the Y axis that is the second
  • a driving motor (not shown in the figure) and an encoder 21 are provided.
  • the driving motor is used to drive the two cones 93 to be printed to rotate synchronously around their central axis.
  • the encoder 21 is used to record the number of rotations or angles of the two cones 93 to be printed, and feedback the information to the control system for controlling the ink printing of the object to be printed.
  • a parallel adjustment part 26 is also provided under the jig, The parallel adjusting portion 26 is used to adjust the upper surface of the side wall of the cone 93 installed above to be parallel to the plane where the nozzle hole is located, that is, to be parallel to the Y axis, that is, the second direction.
  • software is also required to calculate the ink data at different densities corresponding to different diameters.
  • the difference from the printer shown in the first embodiment is that in the first embodiment, two cylinders of the same size are installed, while in this embodiment, two cones 93 of the same size are installed, and other printers have the same setting principles.
  • the present invention does not limit the number of print head printing unit groups in the printing cart.
  • One or more print heads can be set.
  • the number of print heads is the same as the number of objects to be printed on the lower conveyor. can.
  • multiple printing carriages can also be set, and each printing carriage is independently equipped with a set of printing units and multiple printing carriages.
  • the X axis, the first direction can independently adjust its position on the beam, and the position of the corresponding object to be printed below can also be adjusted along the X axis, the first direction, to ensure that the print head printing unit on each print cart is adjusted by both
  • the trajectory of the ink drop ejected downward from the nozzle hole of the nozzle passes through or approaches the radial direction of the corresponding object to be printed below.
  • the object to be printed can be a cylinder or a cone, and can also be a special-shaped object with a cylinder or a cone in the printing area, such as wine bottles, cosmetic bottles, etc., with different fixtures.
  • the shape and size of the object to be printed can be changed, and good printing quality can be ensured for objects to be printed with different diameters.
  • each group of nozzles and printing units are connected in series along the Y-axis, that is, the second direction, three nozzles in series, or only one nozzle or Connect two/four/multiple nozzles in series in sequence, design, install and control the inkjet according to actual printing requirements.
  • the printers in the above-mentioned various embodiments are implemented through the following steps.
  • the objects to be printed are placed in the jig 2.
  • At least two objects to be printed are placed side by side along the X axis, that is, the first direction.
  • the printing object is placed along the Y axis, and the upper surface of the object to be printed is parallel to the Y axis, that is, the second direction.
  • the distance between the upper surface of the object to be printed and the nozzle hole on the printing carriage is adjusted to the most suitable distance for printing.
  • the conveyor 1 drives at least two objects to be printed on the jig 2 to be synchronously transported along the Y axis, that is, the second direction, and the transport process continues without pause; when the objects to be printed are printed
  • the nozzles in each group of printing units in turn eject ink to the objects to be printed that enter the printing area below to form graphics and texts, and the graphics and texts on the objects to be printed are simultaneously formed, such as the printer in the first embodiment, the first nozzle The first nozzle 71, the second nozzle 72, and the third nozzle 73 connected in series in the printing unit sequentially perform inkjet printing on the area required to be printed by the first object to be printed 91 conveyed below, and at the same time, the second nozzle printing unit
  • the fourth nozzle 74, the fifth nozzle 75, and the sixth nozzle 76 connected in series in the middle of the second to-be-printed object 92 conveyed to the lower area need to be printed sequential
  • the first to-be-printed object Both 91 and the second to-be-printed object 92 rotate around their central axis at a constant speed, and the rotation speed is the same.
  • the to-be-printed object continues to pass the printing cart once, the required graphics and text are printed.
  • the ejected ink droplets can also be pre-cured or directly completely cured, depending on the specific conditions such as image requirements and ink characteristics (the present invention does not specifically limit this); After the printed objects are printed at the same time, they can be subjected to subsequent full curing operations or image printing quality inspection operations, etc. (the specific operation process is carried out according to actual needs).
  • the conveying device 1 will print each The object is conveyed to the initial loading position along the Y axis, that is, the second direction, and the operator performs unloading operations on it. Then determine whether there are still objects to be printed that need to be printed. If so, repeat the above steps to load, print, and follow-up operations on the new objects to be printed; if not, the entire printing is completed, and you can perform moisturizing maintenance operations on the nozzles of the printing cart. At this time, the printing carriage moves to one side of the beam along the X-axis, that is, the first direction, and the ink scraping maintenance device below is buckled on the nozzle to keep it moist, preventing the nozzle holes from becoming dry and clogged.
  • each object to be printed (the first object to be printed 91 and the second object to be printed 92) may be the same or different. Due to the mechanical manufacturing error of the bottom plate of the nozzle or the error generated when the nozzle is installed, the nozzle arrangement in each group of nozzle printing units is not completely consistent. Before the formal printing, the objects to be printed at each position need to be tested and printed separately. As a result, error calibration is performed on the ink discharge data of each group of nozzle printing units, and then the calibrated data is used to control the print job of the nozzles.
  • This printing method uses one (or more) motors to synchronously control two or more objects to be printed to rotate synchronously, use the same encoder to feed back at least two rotational angle information of the objects to be printed, and use a computer and a motherboard to control printing , There are two nozzle control boards, and each nozzle control board receives data from the main board to control different nozzles to eject ink droplets.
  • Figure 10 shows a perspective view of an inkjet printer in another embodiment.
  • the inkjet printer in this embodiment includes a first fixture 211, a second fixture 212, a third fixture 213, a first conveying device 11, and a second conveying device.
  • the device 12, the third conveying device 13, the support base 3, the shell part 4, the beam and the printing carriage (have been blocked by the shell part 4 in the figure).
  • the first conveying device 11, the second conveying device 12, and the third conveying device 13 are arranged side by side above the support base 3 along the X axis, that is, the first direction, and a first jig 211 is provided above the first conveying device 11 for installing two waiting devices To print objects, a second jig 212 is provided above the second conveying device 12 to install two objects to be printed, and a third jig 213 is provided above the third conveying device 13 to install two objects to be printed, two on each jig
  • the objects to be printed are arranged side by side along the X axis, that is, the first direction.
  • Each object to be printed 9 is installed and fixed along the Y axis, that is, the second direction.
  • the first direction is perpendicular to the second direction.
  • the rotation center of each object to be printed 9 before printing The axis is parallel to the Y axis, the second direction (if the object to be printed is a cone, the upper surface of the cone is parallel to the Y axis, the second direction), and each conveying device can transport it back and forth along the Y axis, the second direction
  • the object to be printed can be driven by a motor to rotate synchronously around its central axis; a beam is set above the fixture, and the beam is set along the X axis, which is the first direction, and a printing trolley is installed on the beam. It can move back and forth along the X axis, that is, the first direction.
  • the printing carriage is equipped with two sets of nozzle printing units.
  • the two sets of nozzle printing units are arranged side by side along the X axis, that is, the first direction.
  • Each group of nozzle printing units corresponds to the printing fixture.
  • each set of print heads is provided with print heads arranged in series along the Y axis, that is, the second direction (when only one print head is required, the print heads are set along their own length).
  • each set of print heads print units The trajectory of the ink droplets ejected downward from the nozzle hole of the nozzle passes through or approaches the radial direction of the corresponding object to be printed below.
  • the printing units of each group of nozzles are sequentially along the Y axis, which is the second direction.
  • Three nozzles are arranged in series, that is, the first group of nozzle printing units are sequentially connected in series with the first nozzle 71, the second nozzle 72 and the third nozzle 73.
  • the first nozzle 71, the second nozzle 72 and the third nozzle 73 are used for matching
  • the object to be printed on the left side of the lower jig performs graphic printing.
  • the second set of nozzle printing units are connected in series with the fourth nozzle 74, the fifth nozzle 75 and the sixth nozzle 76, the fourth nozzle 74, the fifth nozzle 75 and the sixth nozzle.
  • the nozzle 76 is used to print graphics and text on the object to be printed on the right side of the lower jig.
  • Each group of nozzle printing units can be set with one, two, three or more nozzles, and each group of nozzle printing units can also print color inks (cyan ink C, magenta ink M, yellow ink Y, black ink K, light Cyan ink LC, light magenta ink LM or other spot color ink) or coated ink (white ink W, transparent ink V or primer ink P, etc.), each nozzle can spray one color or multiple colors, the actual The printing color situation is determined according to requirements, and the present invention does not limit the printing color of the nozzle and the arrangement of different color inks.
  • a squeegee maintenance device (not shown in the figure) is installed at one end of the beam.
  • the specific structure of the squeegee maintenance device is shown in Figure 6.
  • Two sets of squeegee units are provided for the two sets of nozzle printing units.
  • the first set of squeegee units corresponds to The first group of nozzle printing units perform squeegee
  • the second group of squeegee units correspond to the second group of nozzle printing units to squeegee.
  • the operator In the actual work process, the operator is located in front of the printer. Due to the compact structure of the printing device, one operator can separately load the three positions of the first jig 211, the second jig 212 and the third jig 213. Unloading operation. An example of operation is given below for description.
  • the workflow is shown in Figure 11, but it is not limited to this operation mode: the operator first installs two objects to be printed on the second jig 212; after the installation is completed, the second transmission
  • the device 12 continuously conveys the two objects to be printed along the Y-axis, that is, the second direction, and passes under the printing beam, and the motor controls the two objects to be printed on it to rotate synchronously around its own central axis, and the control system controls the printing trolley to move along the beam, that is, the first direction.
  • the nozzle prints the two objects to be printed. After one pass, the graphic printing is completed.
  • the operator installs the other two objects to be printed on the first jig 211; when the printing trolley finishes printing the two objects to be printed on the second jig 212,
  • the beam moves above the first conveying device 11 in the first direction.
  • the first conveying device 11 continuously conveys the two objects to be printed along the Y-axis, that is, the second direction, and the motor controls the two objects to be printed on it to rotate synchronously around its central axis.
  • the nozzle prints the two objects to be printed. After one pass, the graphic printing is completed, and the printing on the second jig 212 is completed.
  • the object is fully cured (after the curing is completed and then transferred back to the initial loading position), at the same time the operator continues to install two objects to be printed on the third jig 213; when the printing trolley is completed, the first jig 211 is waiting for two After the print job of the printed object, it moves along the beam, that is, the first direction, to the top of the third conveying device 13.
  • the third conveying device 13 continuously conveys the two to-be-printed objects along the Y-axis, that is, the second direction, and the motor controls the two to-be-printed objects to synchronize. Rotating around its own central axis, when the two objects to be printed on the third conveying device 13 continue to pass under the printing cart, the nozzle prints the two objects to be printed.
  • the graphics and text are printed.
  • the printed object on the jig 211 is fully cured (after the curing is completed, it is transported back to the initial loading position), and the operator unloads the printed and cured objects on the second jig 212 that is transported back to the initial position.
  • the object to be printed is installed and a new object to be printed is installed; when the printing carriage completes the printing operation on the two objects to be printed on the third jig 213, it moves along the beam, that is, the first direction to above the second conveying device 12, the second conveying device 12 Again, the two objects to be printed are continuously transported along the Y-axis, that is, the second direction, and the two objects to be printed on the motor control the two objects to be printed to rotate around their own central axis synchronously.
  • the nozzle prints the two objects to be printed, and after one pass, the graphics and text are printed.
  • the printed objects on the third jig 213 are fully cured (after the curing is completed, they will be sent back to the initial loading Position), at the same time the operator unloads the two objects to be printed that have been printed and cured on the first jig 211 that is sent back to the initial position And install a new object to be printed; when the printing carriage completes the printing operation on the two objects to be printed on the second jig 212, it moves along the beam, that is, the first direction to the top of the first conveying device 11, and the first conveying device 11 transfers the two
  • the object to be printed is continuously conveyed along the Y-axis, that is, the second direction, and the two objects to be printed on it are controlled by the motor to rotate around its own central axis synchronously.
  • the nozzles face the two The object to be printed performs the printing job, and the graphic printing is completed after one pass.
  • the printed object on the second jig 212 is fully cured (after the curing is completed, it will be transferred back to the initial loading position).
  • the operator unloads the two printed and cured objects to be printed on the third jig 213 that is transferred back to the initial position, and installs the new object to be printed; when the printing trolley completes the printing of the two objects to be printed on the first jig 211 After the printing job, it moves along the beam, that is, the first direction to the top of the third conveying device 13.
  • the third conveying device 13 continuously conveys the two to-be-printed objects along the Y-axis, that is, the second direction, and the motor controls the two to-be-printed objects to move around their centers synchronously.
  • the shaft rotates.
  • the nozzle prints the two objects to be printed.
  • the graphic printing is completed, and the first jig 211
  • the printed object is fully cured (after the curing is completed, it will be transported back to the initial loading position), and the operator will unload the printed and cured two objects to be printed on the second jig 212 transported back to the initial position And install a new object to be printed; ... repeat the cycle until it is judged that there is no object to be printed, and wait for all processes to be completed.
  • the operator performs the loading and unloading operations on each jig, and the printing trolley moves back and forth to the top of each conveying device to perform a one-pass printing operation on the objects to be printed that continue to pass underneath.
  • the curing operation is required after the graphics and texts are completed.
  • the curing operation takes a long time (for example, when the transparent ink is sprayed to make the printed image have a bright effect, it needs a long time to cure, the visual effect of long time curing is far better than that of short time curing), in order to make the printing car fully work Waste time (that is, the printing trolley continues to work and does not wait in place), three fixture positions and three corresponding conveying devices are set up to ensure that the object to be printed at a certain fixture position is always ready for printing. In turn, the working efficiency of the printer is improved.
  • the loading and unloading of the object to be printed in the above embodiment is performed manually by the operator, or it can also be achieved through automation.
  • the UV curing operation can also be performed while printing the graphics and text.
  • Figures 12-13 are still another embodiment of the present invention.
  • the printer of this embodiment includes two fixtures: A fixture 214 and B fixture 215, which are located below A fixture 214
  • a conveying device 14 is provided for conveying A jig 214
  • a B conveying device 15 is provided under B jig 215 for conveying B jig 215,
  • a jig 214 and B jig 215 are respectively used to install two objects to be printed 9
  • the setting mode and structural principle are the same as those in the fourth embodiment, and will not be repeated here.
  • a beam 5 is installed above the jig.
  • the beam 5 is arranged along the X axis, that is, the first direction.
  • a printing cart 6 is installed on the beam 5.
  • the printing cart 6 can move back and forth along the X axis, that is, the first direction. It is set at one end of the beam 5 A squeegee maintenance device. The squeegee maintenance device is blocked by the machine housing part 4.
  • the nozzle arrangement and printing method on the printing carriage 6 and the structure and working principle of the squeegee maintenance device are the same as those described in the fourth embodiment above the same.
  • the operator In the actual work process, the operator is located in front of the printer, first installs two objects to be printed on the B jig 215, and then presses the start button of the station, the B conveying device 15 transfers the B jig 215 and the two objects installed on it.
  • the object to be printed is continuously transported under the beam 5 along the Y-axis, that is, the second direction, and the two objects to be printed on it are controlled to rotate synchronously around its own central axis by the motor, and the printing trolley 6 is controlled to move along the beam 5 to the corresponding upper side of the B conveyor 15
  • the curing process can be performed while printing, or it can be cured separately after the printing is completed.
  • the two objects to be printed are transferred back to the original position of the loading material in the opposite direction of the Y axis.
  • the operator installs the two objects to be printed on the B jig 215 and the objects are being transported and printed, the operator continues to install the other two objects to be printed on the A jig 214.
  • the conveyor A 14 continuously conveys the two objects to be printed along the Y axis, that is, the second direction, and the motor controls the two objects to be printed around The central axis of its own rotates synchronously.
  • the nozzle prints the two objects to be printed. After one pass, the graphics and text are printed. It can be cured, or it can be cured separately after the printing is completed. After curing, the two objects to be printed are transferred back to the original position of the loading material along the opposite direction of the Y axis. After the above-mentioned B jig 215 is transferred back to the initial position, the operator removes the printed and solidified object and installs another two new objects to be printed, and re-transmits, prints, and solidifies the two on the B jig 215.
  • the operator removes the printed and solidified object and installs another two new objects to be printed, and re-transmits, prints, and
  • the two new objects to be printed on the fixture A 214 are cured... the operator alternately operates in this way, and the cycle repeats until all the objects to be printed are printed.
  • Each jig in the fourth and fifth embodiments described above is equipped with two objects to be printed, and it can also be designed as a jig for installing one or more objects to be printed, which is not specifically limited in the present invention.
  • T printing represents the inkjet printing of the nozzle Job time
  • T non-printing means the processing time of the object to be printed other than the nozzle inkjet printing job, including the processing time before printing and the processing time after printing.
  • the processing time before printing includes the loading time of the object to be printed and the object to be printed.
  • the preprocessing time of the object to be printed, the transmission time of the object to be printed, etc.; the processing time after printing includes the complete curing time of the image and text on the object to be printed, the image and text detection time, and the blanking time.
  • a larger number of conveying devices can also be set according to actual conditions, which is not specifically limited in the present invention.

Landscapes

  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Ink Jet (AREA)
  • Coating Apparatus (AREA)

Abstract

L'invention concerne une imprimante à jet d'encre et son procédé d'impression, qui sont utilisés pour imprimer un cylindre, un cône ou un objet ayant une zone de texte d'image en cylindre ou en cône à imprimer. L'imprimante comprend au moins un chariot d'impression (6) disposé le long d'une traverse d'impression (5), c'est-à-dire une première direction ; le chariot d'impression est pourvu d'au moins un ensemble d'unités d'impression, une buse d'impression (7) dans les unités d'impression est disposée dans leur direction longitudinale, c'est-à-dire une seconde direction, au moins deux dispositifs de transport (1) pour transporter successivement, dans la seconde direction à un certain intervalle de temps, un objet (9) à imprimer en va-et-vient sont disposés au-dessous de la traverse d'impression, le dispositif de transport (1) est pourvu d'un gabarit (2) pour la fixation, dans la seconde direction, de l'objet à imprimer ; et lorsque l'objet à imprimer tourne et passe en continu sous le chariot d'impression dans la seconde direction, la buse pulvérise de l'encre et un texte d'image est formé après un passage de l'objet à imprimer. L'imprimante a une structure compacte, peut utiliser efficacement la buse pour pulvériser de l'encre, ne gaspille pas le temps de travail avant et après l'impression, et a un rendement d'impression élevé.
PCT/CN2019/091250 2019-06-14 2019-06-14 Imprimante à jet d'encre et son procédé d'impression à jet d'encre en un passage WO2020248222A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PCT/CN2019/091250 WO2020248222A1 (fr) 2019-06-14 2019-06-14 Imprimante à jet d'encre et son procédé d'impression à jet d'encre en un passage
CN201980096532.0A CN113939404B (zh) 2019-06-14 2019-06-14 一种喷墨打印机及其一遍式喷墨打印方法

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2019/091250 WO2020248222A1 (fr) 2019-06-14 2019-06-14 Imprimante à jet d'encre et son procédé d'impression à jet d'encre en un passage

Publications (1)

Publication Number Publication Date
WO2020248222A1 true WO2020248222A1 (fr) 2020-12-17

Family

ID=73781316

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2019/091250 WO2020248222A1 (fr) 2019-06-14 2019-06-14 Imprimante à jet d'encre et son procédé d'impression à jet d'encre en un passage

Country Status (2)

Country Link
CN (1) CN113939404B (fr)
WO (1) WO2020248222A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112829467A (zh) * 2021-02-02 2021-05-25 北京亚美科软件有限公司 一种喷墨打印机用连续图文拼接方法
CN114312050A (zh) * 2021-12-23 2022-04-12 上海景定电子科技有限公司 一种用于圆柱体打印图案的平行式打印方法、打印机构

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001158077A (ja) * 1999-12-01 2001-06-12 Toyo Glass Co Ltd びんの印刷装置
DE102013214934A1 (de) * 2013-07-30 2015-02-05 Krones Ag Vorrichtung und Verfahren zum Direktbedrucken von Behältern
CN106183416A (zh) * 2016-07-26 2016-12-07 北京美科艺数码科技发展有限公司 一种喷墨打印装置
WO2017120693A1 (fr) * 2016-01-15 2017-07-20 北京美科艺数码科技发展有限公司 Appareil d'impression à jet d'encre et procédé d'impression
CN208469056U (zh) * 2018-07-25 2019-02-05 广州市傲彩科技有限公司 一种圆柱体打印装置

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6376544B1 (ja) * 2018-03-16 2018-08-22 下村 恭一 竹輪状グラビア印刷版の芯だし機及び芯だし方法及びグラビア印刷版

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001158077A (ja) * 1999-12-01 2001-06-12 Toyo Glass Co Ltd びんの印刷装置
DE102013214934A1 (de) * 2013-07-30 2015-02-05 Krones Ag Vorrichtung und Verfahren zum Direktbedrucken von Behältern
WO2017120693A1 (fr) * 2016-01-15 2017-07-20 北京美科艺数码科技发展有限公司 Appareil d'impression à jet d'encre et procédé d'impression
CN106183416A (zh) * 2016-07-26 2016-12-07 北京美科艺数码科技发展有限公司 一种喷墨打印装置
CN208469056U (zh) * 2018-07-25 2019-02-05 广州市傲彩科技有限公司 一种圆柱体打印装置

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112829467A (zh) * 2021-02-02 2021-05-25 北京亚美科软件有限公司 一种喷墨打印机用连续图文拼接方法
CN112829467B (zh) * 2021-02-02 2023-12-19 北京亚美科软件有限公司 一种喷墨打印机用连续图文拼接方法
CN114312050A (zh) * 2021-12-23 2022-04-12 上海景定电子科技有限公司 一种用于圆柱体打印图案的平行式打印方法、打印机构

Also Published As

Publication number Publication date
CN113939404B (zh) 2023-05-23
CN113939404A (zh) 2022-01-14

Similar Documents

Publication Publication Date Title
US10821725B2 (en) Device for imaging and/or varnishing the surfaces of objects
JP4995365B2 (ja) 改良型多色刷りパッド式印刷装置
EP1981715B1 (fr) Station d'impression numérique dans un système d'impression de supports distincts multistation
JP2012206116A (ja) 表面を印刷する装置
CN110281660B (zh) 一种在圆柱形表面进行连续高速打印的方法及装置
KR20050058388A (ko) 멀티-프린트헤드 디지탈 프린터
CN110450550B (zh) 喷墨打印装置及喷墨打印装置用打印方法
WO2013181836A1 (fr) Dispositif d'impression à jet d'encre et procédé d'impression
WO2020248222A1 (fr) Imprimante à jet d'encre et son procédé d'impression à jet d'encre en un passage
CN112373194A (zh) 一种喷墨打印装置及其固化方法
WO2015095992A1 (fr) Dispositif d'impression à jet d'encre et procédé d'impression
CN214188952U (zh) 一种喷墨打印装置
JP2009184119A (ja) 3次元プリンタ
JP6537114B2 (ja) 液体吐出装置及びヘッドメンテナンス方法
CN210652336U (zh) 打印装置及喷墨打印设备
CN111806097A (zh) 一种喷墨打印装置及其翻面模式打印方法
WO2020248221A1 (fr) Imprimante à jet d'encre et procédé d'impression à jet d'encre à passage unique
CN211000515U (zh) 一种在圆柱形表面进行连续高速打印的装置
CN212400653U (zh) 一种全自动数码喷墨装置
CN111002724A (zh) 一种喷墨打印装置及打印方法
CN211441614U (zh) 喷墨打印机用信号选择板
JP2013028009A (ja) 画像記録装置
CN110978800A (zh) 一种全自动数码喷墨装置
JP7085128B2 (ja) ヘッド清掃装置、液体を吐出する装置
CN217099399U (zh) 一种喷墨打印装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 19932339

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 19932339

Country of ref document: EP

Kind code of ref document: A1