CN213082626U - Can prevent flexible printing equipment of static - Google Patents

Can prevent flexible printing equipment of static Download PDF

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Publication number
CN213082626U
CN213082626U CN202021583186.5U CN202021583186U CN213082626U CN 213082626 U CN213082626 U CN 213082626U CN 202021583186 U CN202021583186 U CN 202021583186U CN 213082626 U CN213082626 U CN 213082626U
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roller
supporting column
motor
frame
inking roller
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CN202021583186.5U
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Chinese (zh)
Inventor
李兵
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Guangdong Yirun Printing Packaging Co ltd
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Guangdong Yirun Printing Packaging Co ltd
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Priority to CN202021583186.5U priority Critical patent/CN213082626U/en
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Abstract

The utility model discloses a flexible printing device capable of preventing static electricity, which comprises a frame, a first supporting column, a second supporting column and a supporting plate, wherein a discharging roller is arranged in the frame in front of the supporting frame through a fixed seat, a first motor is arranged in the frame behind the discharging roller, the left side and the right side of the first supporting column behind the first motor are provided with a first conveying roller through the fixed seat, a wind-up roller is arranged on the first supporting column behind the first conveying roller through the fixed seat, a first press roller is arranged on the bottom end of the second supporting column through a rotating shaft, first ink roller mechanisms are arranged in the frame on the front side and the rear side of the first press roller, a second ink roller mechanism is arranged on the front side of the second supporting column, ion fans are arranged in the front, the middle and rear ends of the frame, and the fixed seats of the discharging roller, the first conveying roller, the second conveying roller and the wind-up roller are all connected, be provided with soundproof cotton on the inner wall face of frame, the utility model aims at providing a flexible printing equipment who has antistatic function.

Description

Can prevent flexible printing equipment of static
Technical Field
The utility model belongs to the technical field of lithography apparatus and specifically relates to a can prevent flexible printing equipment of static.
Background
The flexible printing equipment is characterized in that all printing color groups are mutually independent and are arranged in a horizontal straight line, a common transmission shaft can be used between units to drive a printing unit, and the independent transmission systems of all the units can also drive the printing unit; in the working process of the existing flexible printing equipment, due to the fact that impurities or dust exist on the surface of a to-be-printed matter, the printing effect of the printed matter is poor, certain static electricity can be generated due to mutual friction among the impurities or dust remained in the equipment, and parts in the flexible printing equipment are easy to damage; meanwhile, in the working process of the flexible printing equipment, static electricity is easily generated on the roller which is in contact with a printed matter, and if the static electricity cannot be removed in time, the static electricity can damage parts in the flexible printing equipment; the common flexible printing equipment can only print and process the printed matter with the designated thickness, the generated sound is large when the printing and processing are carried out, and the flexible printing equipment does not have the functions of tension adjustment of the printed matter to be printed and quick drying of the printed matter after the printing and processing, so that the printing effect of the flexible printing equipment is influenced; therefore, there is a need for an improved structure of a flexible printing apparatus.
SUMMERY OF THE UTILITY MODEL
The utility model provides a to the above-mentioned technical deficiency, provide one kind and can carry out comprehensive destatic processing in to the frame through ion fan, through the metal wire who is connected with ground can shift the electrostatic that produces to the ground on blowing roller, first transfer roller, second transfer roller and the wind-up roll, can carry out double-sided printing through first inking roller mechanism and second inking roller mechanism degree printed matter, can treat the printed matter through the tension roller and carry out tension adjustment, treat the impurity and the dust on printed matter surface and clear away through the brush hair, and suck impurity and dust through the air discharge fan, prevent impurity and dust adhesion and influence the printing effect on the surface of waiting the printed matter, also can avoid the friction between impurity and the dust to produce static simultaneously and remain in with the frame, can dry the printed matter after printing fast through the hot-air blower, make things convenient for going on of printed matter rolling operation, better syllable-dividing effect has, the flexible printing equipment can meet the printing processing requirements of printed matters with different thicknesses.
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes:
a flexible printing device capable of preventing static electricity comprises a machine base, a first supporting column, a second supporting column and a supporting plate, wherein the first supporting column is arranged on the left side and the right side in the front end of the machine base, the second supporting column is arranged on the left side and the right side in the rear end of the machine base, the supporting plate is arranged at the tops of the first supporting column and the second supporting column, a discharging roller is arranged in the machine base in front of the first supporting column through a fixing base, a first motor is arranged in the machine base behind the discharging roller, first conveying rollers are arranged on the left side and the right side of the first supporting column behind the first motor through a fixing base, first belt pulleys are arranged on a rotating shaft on one side of each first conveying roller and a driving end of the first motor, a first driving belt is sleeved on the two first belt pulleys, a plurality of second conveying rollers are arranged on the first supporting column, the second supporting column and the supporting plate through fixing bases, the winding roller is arranged on the first supporting column behind the first conveying roller through a fixing seat, the second motor is arranged on the bottom surface of the machine base below the winding roller, the second belt pulleys are arranged on the rotating shaft on one side of the winding roller and the driving end of the second motor respectively, a second driving belt is sleeved on the second belt pulleys, a first press roller is arranged on the bottom end of the second supporting column through the rotating shaft, a third motor is arranged on one side of the second supporting column through a motor fixing seat, the rotating shaft on one side of the first press roller is connected with the driving end of the third motor through a joint, first inking roller mechanisms are arranged in the machine base on the front side and the rear side of the first press roller, a second inking roller mechanism is arranged on the front side of the second supporting column, a fourth motor is arranged in the machine base in front of the second inking roller mechanism through a motor fixing seat, and a second press roller is arranged on the driving end of the fourth motor, all be provided with the ion fan in the preceding well rear end of frame, all be connected with the metal wire of being connected with ground on the fixing base of blowing roller, first transfer roller, second transfer roller and wind-up roll, be provided with soundproof cotton on the inner wall face of frame.
Further, first inking roller mechanism includes first cylinder, first inking roller and an ink jet printer, first cylinder passes through the fixing base setting in the frame bottom, be connected with the slide on the drive end of first cylinder, be provided with the chute board in the frame bottom surface of slide below, be provided with the slider on the bottom surface of slide, seted up the spout on the chute board, the slide passes through the cooperation setting between slider and the spout on the chute board, keeps away from the left and right sides of the slide wall of first cylinder end is provided with first inking roller through the fixing base, first ink jet printer sets up on the top surface of slide, the jet-propelled mouth of first ink jet printer is located directly over first inking roller.
Further, the first inking roller is opposite to the inner side face of the to-be-printed matter.
Further, the second inking roller mechanism includes second cylinder, second inking roller and second ink jet machine, the second cylinder passes through the fixing base setting on both sides around the second support column top, be provided with the fixed plate on the drive end of second cylinder, the fixing base setting is passed through on a lateral wall face of fixed plate in the left and right sides of second inking roller, the second ink jet machine sets up the top at the fixed plate, the nozzle of second ink jet machine is located the second inking roller directly over.
Further, the second inking roller is just right with the lateral surface of waiting the printed matter.
Further, be provided with the third cylinder through the fixing base on the second support column of second inking roller mechanism below, be provided with the tension roller through the pivot on the drive end of third cylinder.
Furthermore, an air heater is arranged in the machine base above the ion fan positioned in the middle of the machine base.
Furthermore, a dust suction port communicated with the interior of the machine base is formed in the top surface of the middle of the machine base, an exhaust fan is arranged at the top end of the dust suction port, a dust collection box is arranged on the top surface of the machine base on one side of the dust suction port, and the air outlet end of the exhaust fan is connected with the dust collection box through a pipeline.
Furthermore, two bristle plates which are opposite to each other in the longitudinal direction are arranged in the machine base above the supporting plate, and bristles are arranged on wall surfaces of the two bristle plates which are opposite to each other.
The utility model has the advantages that:
can carry out comprehensive static electricity removing treatment in the machine base through the ion fan, can transfer static electricity generated on the feeding roller, the first conveying roller, the second conveying roller and the winding roller to the ground through a metal wire connected with the ground, can carry out double-sided printing on a printed product through the first inking roller mechanism and the second inking roller mechanism, the tension of the to-be-printed matter can be adjusted through the tension roller, impurities and dust on the surface of the to-be-printed matter are removed through the bristles, and the impurities and the dust are sucked out by the exhaust fan, so that the impurities and the dust are prevented from being adhered to the surface of the to-be-printed matter to influence the printing effect, meanwhile, the friction between impurities and dust can be prevented from generating static electricity residue, the printed matters after printing can be quickly dried through the hot air blower, the printed matter rolling operation is convenient to carry out, a good sound insulation effect is achieved, and the requirements of printing and processing of the printed matters with different thicknesses can be met.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a partially enlarged schematic view at a.
Fig. 3 is a partially enlarged schematic view at B.
In the figure, a machine base 1, a first support column 2, a second support column 3, a support plate 4, a feeding roller 5, a first motor 6, a first conveying roller 7, a first belt pulley 8, a first transmission belt 9, a second conveying roller 10, a winding roller 11, a second motor 12, a second belt pulley 13, a second transmission belt 14, a first press roller 15, a third motor 16, a fourth motor 17, a second press roller 18, an ion fan 19, a metal wire 20, soundproof cotton 21, a first air cylinder 22, a first inking roller 23, a first ink jet 24, a slide base 25, a slide groove plate 26, a slide block 27, a slide groove 28, a second air cylinder 29, a second inking roller 30, a second ink jet 31, a fixed plate 32, a third air cylinder 33, a tension roller 34, a hot air blower 35, a dust suction port 36, an exhaust fan 37, a dust collection box 38, a pipeline 39, a brush plate 40 and brush 41 are arranged.
Detailed Description
As shown in fig. 1 to 3, a flexible printing apparatus capable of preventing static electricity comprises a base 1, a first support column 2, a second support column 3 and support plates 4, wherein the first support column 2 is arranged at the left side and the right side of the front end of the base 1, the second support column 3 is arranged at the left side and the right side of the rear end of the base 1, the support plates 4 are arranged at the tops of the first support column 2 and the second support column 3, a discharging roller 5 is arranged in the base 1 in front of the first support column 3 through a fixing seat, a first motor 6 is arranged in the base 1 behind the discharging roller 5, first transmission rollers 7 are arranged at the left side and the right side of the first support column 2 behind the first motor 6 through a fixing seat, first belt pulleys 8 are arranged on a rotating shaft at one side of the first transmission rollers 7 and a driving end of the first motor 6, and a first transmission belt 9 is sleeved on the first belt pulleys, a plurality of second conveying rollers 10 are arranged on the first supporting column 2, the second supporting column 3 and the supporting plate 4 through fixing seats, a winding roller 11 is arranged on the first supporting column 2 at the rear of the first conveying roller 7 through the fixing seats, a second motor 12 is arranged on the bottom surface of the machine base 1 below the winding roller 11, a second belt pulley 13 is arranged on a rotating shaft at one side of the winding roller 11 and a driving end of the second motor 12, a second driving belt 14 is sleeved on the two second belt pulleys 13, a first press roller 15 is arranged on the bottom end of the second supporting column 3 through the rotating shaft, a third motor 16 is arranged on one side of the second supporting column 3 through the motor fixing seats, the rotating shaft at one side of the first press roller 15 is connected with the driving end of the third motor 16 through a joint, a first inking roller mechanism is arranged in the machine base 1 at the front side and the rear side of the first press roller 15, a second inking roller mechanism is arranged on the front side of the second supporting column, be provided with fourth motor 17 through the motor fixing base in the frame 1 in second inking roller mechanism the place ahead, be provided with second compression roller 18 through connecting on the drive end of fourth motor 17, all be provided with ion fan 19 in the preceding well rear end of frame 1, all be connected with the wire 20 of being connected with ground on the fixing base of blowing roller 5, first transfer roller 7, second transfer roller 10 and wind-up roll 11, be provided with soundproof cotton 21 on the interior lateral wall face of frame 1.
First inking roller mechanism includes first cylinder 22, first inking roller 23 and first ink jet 24, first cylinder 22 passes through the fixing base setting in frame 1 bottom, be connected with slide 25 on the drive end of first cylinder 22, be provided with spout board 26 in frame 1 bottom surface of slide 25 below, be provided with slider 27 on slide 25's the bottom surface, spout 28 has been seted up on spout board 26, slide 25 sets up on spout board 26 through the cooperation between slider 27 and the spout 28, keeps away from the left and right sides of the slide 25 wall of first cylinder 22 end is provided with first inking roller through the fixing base, first ink jet 24 sets up on slide 25's top surface, the jet-propelled mouth of first ink jet 24 is located directly over first inking roller.
The first inking roller is opposite to the inner side face of the to-be-printed matter.
The second inking roller mechanism includes second cylinder 29, second inking roller 30 and second ink jet 31, second cylinder 29 passes through the fixing base setting on the front and back both sides at second support column 3 top, be provided with fixed plate 32 on the drive end of second cylinder 29, the left and right sides of second inking roller 30 passes through the fixing base setting on a lateral wall face of fixed plate 32, second ink jet 31 sets up the top at fixed plate 32, the nozzle of second ink jet 31 is located second inking roller 30 directly over.
The second inking roller 30 is directly opposite to the outer side of the article to be printed.
Be provided with third cylinder 33 through the fixing base on the second support column 3 of second inking roller mechanism below, be provided with tension roller 34 through the pivot on the drive end of third cylinder 33.
And a hot air blower 35 is arranged in the machine base 1 above the ion fan 19 positioned in the middle of the machine base 1.
A dust suction port 36 communicated with the inside of the machine base 1 is formed in the top surface of the middle of the machine base 1, an exhaust fan 37 is arranged at the top end of the dust suction port 36, a dust collection box 38 is arranged on the top surface of the machine base 1 on one side of the dust suction port 36, and the air outlet end of the exhaust fan 37 is connected with the dust collection box 38 through a pipeline 39.
Two bristle plates 40 which are opposite in the longitudinal direction are arranged in the machine base 1 above the supporting plate 4, and bristles 41 are arranged on the wall surfaces of the two bristle plates 40 which are opposite in the longitudinal direction.
The utility model discloses a theory of operation does:
the utility model is used with a PLC system, a first motor 6 drives a first transmission roller 7 to rotate to discharge a to-be-printed product on a discharge roller 5, then the to-be-printed product is transmitted by a second transmission roller 10, when the to-be-printed product passes through the second transmission roller 10 above a support plate 4, the brush hair 41 clears away impurities and dust on the surface of the to-be-printed product, the impurities and the dust are sucked out into a dust collection box 38 through an exhaust fan 37 to be collected, the to-be-printed product is transmitted to a first compression roller 15 through the second transmission roller 10, a first ink jet machine 24 carries out ink jet coloring on a first ink roller 23, then the back of the to-be-printed product is printed through extrusion between the first ink roller 23 and the first compression roller 15, after the printing of the first ink roller mechanism, the to-be-printed product is transmitted to a second ink roller mechanism, the second ink jet machine carries out ink jet coloring on the first ink roller 23, then the front side of the to-be-printed matter is printed through the extrusion between the first inking roller 23 and the second pressing roller 18, and then is transmitted to the winding roller 11 through the second transmission roller 10, the second motor drives the winding roller 11 to rotate to wind the to-be-printed matter, the hot wind energy blown out by the hot air blower 35 before winding is used for quickly drying the printed matters, the ion wind blown out by the ion fan 19 can be used for carrying out comprehensive static electricity removing treatment on the inside of the machine base 1, the static electricity generated on the discharging roller 5, the first transferring roller 7, the second transferring roller 10 and the wind-up roller 11 can be transferred to the ground through the metal wire 20 connected to the ground, tension adjustment can be carried out on the to-be-printed matters by driving the tension roller 34 to move back and forth through the third air cylinder 33, noise generated when the machine works can be reduced by the soundproof cotton 21 arranged in the machine base 1, and the first air cylinder 22 drives the first inking roller 23 to move back and forth and the second air cylinder 29 drives the second inking roller 30 to move back and forth so as to meet printing processing requirements of different thicknesses.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (9)

1. A flexible printing device capable of preventing static electricity comprises a machine base, a first supporting column, a second supporting column and a supporting plate, wherein the first supporting column is arranged on the left side and the right side in the front end of the machine base, the second supporting column is arranged on the left side and the right side in the rear end of the machine base, the supporting plate is arranged at the tops of the first supporting column and the second supporting column, the flexible printing device is characterized in that a discharging roller is arranged in the machine base in front of the first supporting column through a fixing base, a first motor is arranged in the machine base behind the discharging roller, first conveying rollers are arranged on the left side and the right side of the first supporting column behind the first motor through a fixing base, first belt pulleys are arranged on a rotating shaft on one side of each first conveying roller and a driving end of the first motor, a first conveying belt is sleeved on the two first belt pulleys, a plurality of second conveying rollers are arranged on the first supporting column, the second supporting column and the supporting plate through fixing, the winding roller is arranged on the first supporting column behind the first conveying roller through a fixing seat, the second motor is arranged on the bottom surface of the machine base below the winding roller, the second belt pulleys are arranged on the rotating shaft on one side of the winding roller and the driving end of the second motor respectively, a second driving belt is sleeved on the second belt pulleys, a first press roller is arranged on the bottom end of the second supporting column through the rotating shaft, a third motor is arranged on one side of the second supporting column through a motor fixing seat, the rotating shaft on one side of the first press roller is connected with the driving end of the third motor through a joint, first inking roller mechanisms are arranged in the machine base on the front side and the rear side of the first press roller, a second inking roller mechanism is arranged on the front side of the second supporting column, a fourth motor is arranged in the machine base in front of the second inking roller mechanism through a motor fixing seat, and a second press roller is arranged on the driving end of the fourth motor, all be provided with the ion fan in the preceding well rear end of frame, all be connected with the metal wire of being connected with ground on the fixing base of blowing roller, first transfer roller, second transfer roller and wind-up roll, be provided with soundproof cotton on the inner wall face of frame.
2. The flexible printing device as claimed in claim 1, wherein the first inking roller mechanism comprises a first cylinder, a first inking roller and a first ink jet printer, the first cylinder is disposed in the bottom surface of the frame through a fixing seat, a sliding seat is connected to the driving end of the first cylinder, a sliding groove plate is disposed in the bottom surface of the frame below the sliding seat, a sliding block is disposed on the bottom surface of the sliding seat, a sliding groove is formed in the sliding groove plate, the sliding seat is disposed on the sliding groove plate through matching between the sliding block and the sliding groove, the left side and the right side of the wall surface of the sliding seat far away from the first cylinder end are provided with the first inking roller through the fixing seat, the first ink jet printer is disposed on the top surface of the sliding seat, and an ink jet port of the first ink jet printer is located right above the first inking roller.
3. An electrostatic preventable flexographic printing device according to claim 2, wherein said first inking roller is directly opposite the inner side of the article to be printed.
4. The flexible printing apparatus as claimed in claim 1, wherein the second inking roller mechanism comprises a second cylinder, a second inking roller and a second ink jet, the second cylinder is disposed on the front and rear sides of the top of the second support column through the fixing base, the driving end of the second cylinder is provided with a fixing plate, the left and right sides of the second inking roller are disposed on a side wall surface of the fixing plate through the fixing base, the second ink jet is disposed on the top of the fixing plate, and the ink jetting port of the second ink jet is located directly above the second inking roller.
5. An electrostatic preventable flexographic printing device according to claim 4, characterized in that said second inking roller is directly opposite the outer side of the article to be printed.
6. The flexible printing apparatus as claimed in claim 1, wherein a third cylinder is provided on the second support column below the second inking roller mechanism through a fixing seat, and a tension roller is provided on a driving end of the third cylinder through a rotating shaft.
7. The flexible printing apparatus as claimed in claim 1, wherein a hot air blower is provided in the upper part of the ion blower in the middle of the frame.
8. The flexible printing apparatus as claimed in claim 1, wherein a dust suction port communicating with the inside of the frame is formed on a top surface of a middle portion of the frame, an exhaust fan is disposed on a top end of the dust suction port, a dust box is disposed on a top surface of the frame on a side of the dust suction port, and an air outlet end of the exhaust fan is connected to the dust box through a pipe.
9. An antistatic flexible printing apparatus according to claim 1, wherein two bristle plates are provided longitudinally opposite to each other in the housing above the support plate, and the wall surfaces of the two bristle plates on opposite sides thereof are provided with bristles.
CN202021583186.5U 2020-08-03 2020-08-03 Can prevent flexible printing equipment of static Active CN213082626U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021583186.5U CN213082626U (en) 2020-08-03 2020-08-03 Can prevent flexible printing equipment of static

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021583186.5U CN213082626U (en) 2020-08-03 2020-08-03 Can prevent flexible printing equipment of static

Publications (1)

Publication Number Publication Date
CN213082626U true CN213082626U (en) 2021-04-30

Family

ID=75628380

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021583186.5U Active CN213082626U (en) 2020-08-03 2020-08-03 Can prevent flexible printing equipment of static

Country Status (1)

Country Link
CN (1) CN213082626U (en)

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