CN209426356U - A kind of printing equipment - Google Patents
A kind of printing equipment Download PDFInfo
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- CN209426356U CN209426356U CN201821783728.6U CN201821783728U CN209426356U CN 209426356 U CN209426356 U CN 209426356U CN 201821783728 U CN201821783728 U CN 201821783728U CN 209426356 U CN209426356 U CN 209426356U
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Abstract
The utility model discloses a kind of printing equipment, the printing equipment, comprising: bearing ink pad, to place and fix stock;It is set up in the graphic-print mechanism and full page coating mechanism of the different location above the bearing ink pad;Horizontal mobile mechanism, to drive the bearing ink pad to sequentially enter the workspace of the graphic-print mechanism and full page coating mechanism;Wherein, the graphic-print mechanism is to form the adherency of given pattern in the surface of the stock and/or not adhere to the coating of target ink, so that given pattern is opposite to the adhesiving effect of target ink with other regions in surface of the stock to the adhesiving effect of target ink in surface of the stock;The full page coating mechanism forms target pattern to print target ink in surface of the stock full page.The utility model by forming adherency using printing device on the substrate and/or does not adhere to the coating of target ink, greatly simplifies lithography process in traditional printing, is more suitable for meeting the quick preparation demand of the diversified printing product of user.
Description
Technical field
The utility model belongs to printing technology more particularly to a kind of printing equipment.
Background technique
Traditional printing refers to the original copys such as text, picture, photo, anti-fake through processes such as plate-making, Shi Mo, pressurizations, makes oil
Ink is transferred on the material surfaces such as paper, fabric, plastic products, leather, the technology of batch duplicating original copy content.Printing is through examining
The galley of core approval, the process of stock is transferred to by printing machinery and ink special.
Currently, pattern printing is general by the way of such as letterpress, intaglio printing, lithographic printing, porous printing, relatively
For printing, for large batch of printing product, printing it is more efficient, stability is stronger, but due to above-mentioned printing side
The reasons such as complicated, plate-making overlong time of the lithography process of mask (i.e. version), expire above-mentioned mainstream method for printing patterns can not in formula
The preparation of the diversified printing product of foot.
Utility model content
In view of this, a purpose of the utility model is to propose a kind of printing equipment, to solve to print in the prior art
Plate-making is complicated, time long the problem of leading to not meet the quickly preparation of diversified printing product.
In some illustrative embodiments, the printing equipment, comprising: bearing ink pad, to place and fix stock;Frame
The graphic-print mechanism and full page coating mechanism of different location above the bearing ink pad;Horizontal mobile mechanism, to band
Move the workspace that the bearing ink pad sequentially enters the graphic-print mechanism and full page coating mechanism;Wherein, the graphic-print
Mechanism is to form the adherency of given pattern in the surface of the stock and/or not adhere to the coating of target ink, so that printing
Given pattern imitates the adhesiving effect of target ink with other regions in surface of the stock to the adherency of target ink on object surface
Fruit is opposite;The full page coating mechanism forms target based on the coating to print target ink in surface of the stock full page
The target pattern that ink is constituted;
In some optionally embodiments, the horizontal mobile mechanism, comprising: first to be cooperatively connected with the bearing ink pad
Guide rail;The first driving mechanism for driving the bearing ink pad to move along first guide rail.
In some optionally embodiments, the bearing ink pad is set on the lifting seat of alterable height;The bearing ink pad is logical
It crosses the lifting seat and first guide rail is cooperatively connected.
In some optionally embodiments, the graphic-print mechanism, comprising: be erected above the bearing ink pad, have
With the guide rail beam of the second guide rail of the moving direction horizontal vertical of the bearing ink pad;It is assemblied on the guide rail beam and institute
State the print head of the second guide rail mating connection;The second driving mechanism for driving the print head to move along second guide rail.
In some optionally embodiments, the full page coating mechanism, comprising: horizontal with the moving direction of the bearing ink pad
Vertically disposed one or more stencils roller.
In some optionally embodiments, the roller of stenciling is included at least: Xiang Suoshu surface of the stock full page prints mesh
The applicator roll of printing ink;Rider roller positioned at the applicator roll oblique upper and applicator roll cooperation charging;To in applicator roll
Before printing target ink, in the channeling ink roller of the applied target ink of the axial direction of the applicator roll.
In some optionally embodiments, the full page coating mechanism, further includes: feeding guide-plate, to by target ink
Import the feed inlet formed between the applicator roll and the rider roller.
In some optionally embodiments, the target ink is the low-melting-point metal of liquid condition;It is formed described in adherency
The material selection water-based ink of the coating of low-melting-point metal, oiliness from the ink that volatilizees, the ink that is heating and curing, uv curing ink,
One of electron beam curing ink, laser curing ink;Form the material selection for not adhering to the coating of the low-melting-point metal
Docosane, stearic acid, palmitinic acid, arachidic acid, haze tallow, palm wax, rice bran wax, He Heba wax, castor wax, bayberry wax, small candle
Vegetable wax, from beeswax, insect wax, lanocerin, spermaceti, paraffin, microcrystalline wax, pertroleum wax, emulsifying wax, lignite wax, Fischer-Tropsch wax, poly- second
One or more of alkene wax, polypropylene wax, chlorinated paraffin, ethane-acetic acid ethyenyl copolymerization wax, ethylene oxide wax, the solvent
Including ether, petroleum ether, normal heptane, n-hexane, hexamethylene, ethyl acetate, methanol, ethyl alcohol, acetic acid, chloroform, carbon tetrachloride,
One or more of benzene, toluene and dimethylbenzene.
Another purpose of the utility model is to propose a kind of printing process based on above-mentioned printing equipment, existing to solve
The problem of technology.
In some illustrative embodiments, the printing process is applied to above-mentioned printing equipment, comprising: put stock
It sets and is fixed on bearing ink pad;The bearing ink pad is driven to enter the workspace of graphic-print mechanism by horizontal mobile mechanism;It is described
Graphic-print mechanism forms adherency on the surface of stock according to target pattern and/or does not adhere to the coating of target ink;Pass through
Horizontal mobile mechanism drives the bearing ink pad to enter the workspace of full page coating mechanism;The full page coating mechanism utilizes target oil
Ink carries out full page printing to the stock, and target ink is adhered on the coating with adherency target ink and/or is had
Non-cohesive target ink on the coating of target ink is not adhered to, forms the target that target ink is constituted on the surface of the stock
Pattern.
In some optionally embodiments, the target ink is the low-melting-point metal of liquid condition, the printing process
For manufacturing flexible electronic circuit.
Compared with prior art, the utility model has the advantage that
The utility model is by forming adherency using printing device on the substrate and/or not adhering to the painting of target ink
Layer, greatly simplifies lithography process in traditional printing, is more suitable for meeting the quick preparation demand of the diversified printing product of user.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the printing equipment in the utility model embodiment;
Fig. 2 is the structural schematic diagram of the cated stock of tool in the utility model embodiment;
Fig. 3 is the structural schematic diagram of the stock after the full page printing target ink in the utility model embodiment;
Fig. 4 is the structural schematic diagram of the printing equipment in the utility model embodiment;
Fig. 5 is the structural schematic diagram of the graphic-print mechanism in the utility model embodiment;
Fig. 6 is the structural schematic diagram of the full page coating mechanism in the utility model embodiment;
Fig. 7 is the cooperation schematic diagram for stenciling roller of the full page coating mechanism in the utility model embodiment;
Fig. 8 is the structural schematic diagram of the printing equipment in the utility model embodiment;
Fig. 9 is the structural schematic diagram of the printing equipment in the utility model embodiment;
Figure 10 is the flow chart of the printing process in the utility model embodiment.
Specific embodiment
The following description and drawings fully show the specific embodiment of the utility model, so that those skilled in the art
Them can be practiced.Other embodiments may include structure, logic, it is electrical, process and other change.It is real
It applies example and only represents possible variation.Unless explicitly requested, otherwise individual components and functionality is sequence that is optional, and operating
It can change.The part of some embodiments and feature can be included in or replace part and the feature of other embodiments.
The range of the embodiments of the present invention includes that the entire scope of claims and all of claims can get
Equivalent.Herein, these embodiments of the utility model individually or generally can be used term " utility model "
It indicates, this is not meant to automatically to limit just for the sake of convenient, and if in fact disclosing the utility model more than one
The range for making the application is that any single utility model or utility model are conceived.
Such as Fig. 1-3, the utility model discloses a kind of printing equipments, comprising: bearing ink pad 1, horizontal mobile mechanism 2, pattern
Printed mechanism 3 and full page coating mechanism 4;Wherein, bearing ink pad 1 is for placing and fixing stock 5;Graphic-print mechanism 3 is used for
The adherency of given pattern is formed on 5 surface of stock and/or does not adhere to the coating 6 of target ink, so that surface of the stock
Upper given pattern is to the adhesiving effect of target ink, with other regions in surface of the stock to the adhesiving effect phase of target ink
Instead;Full page coating mechanism 4 forms target ink 7 based on the coating 6 to print target ink 7 in 5 surface full page of stock
The target pattern of composition;Horizontal mobile mechanism 2 is then for driving bearing ink pad 1 to sequentially enter graphic-print mechanism 3 and full page coating
The workspace of mechanism 4.Wherein, bearing ink pad 1 can fix stock 5 by way of negative-pressure adsorption, can also be fixed using other
The modes such as structural bond, clamping fix stock 5.
Specifically, the assembling structure of the printing equipment can be used such as flowering structure: graphic-print mechanism 3 and full page coating mechanism
4 are set up in respectively at the top different location of bearing ink pad 1, are cooperatively connected between horizontal mobile mechanism 2 and bearing ink pad 1, bearing ink pad 1
Stock 5 fixed thereon can be made to enter graphic-print mechanism 3 and full page coating mechanism 4 by the drive of horizontal mobile mechanism 2
Lower work area.
The side such as direct write printing technique, inkjet printing technology can be used in graphic-print mechanism 3 in the utility model embodiment
Formula realizes that full page coating mechanism 4 can be used the modes such as lithography technique, screen printing technique, adagio printing technology and realize.
Stock 5 in the utility model embodiment can be described as printing base mainly as the loading material of target ink 7
Bottom, printing substrate, can be used polyvinyl chloride substrate, polyethylene terephthalate substrate, polybutylene terephthalate (PBT)
Substrate, polypropylene base, polyadipate-butylene terephthalate substrate, silicon rubber substrate, natural rubber substrate, isoamyl rubber
Gum base materials, butadiene-styrene rubber substrate, butadiene rubber substrate, neoprene substrate, EP rubbers substrate, nitrile rubber substrate, silicon rubber
Gum base materials, polysulfide rubber substrate, glass baseplate, polyurethane base material, acrylic substrate, stainless steel substrate, silicon substrate, in nylon cloth
One kind.The shape of substrate can be for film, sheet, plate, arc-shaped and other are abnormally-structured, and the utility model embodiment is not
It is defined.Wherein it is possible to determine which kind of substrate be specifically chosen according to practical application.
Traditional oil-based ink can be used in target ink in the utility model embodiment, is equally applicable to liquid condition
Low-melting-point metal.The coating material to form adherency oil-based ink on 5 surface of stock being used cooperatively with oil-based ink can
With using the colloid with certain adhesive, the coating material that formation does not adhere to oil-based ink can be using water, alcohol etc..
The coating material to form adherency low-melting-point metal on 5 surface of stock being used cooperatively with low-melting-point metal can
With using the colloid with certain adhesive, also or using water-based ink, oiliness from volatilizing ink, the ink that is heating and curing, purple
One of outer cured printing ink, electron beam curing ink, laser curing ink form the coating material for not adhering to low-melting-point metal
Docosane, stearic acid, palmitinic acid, arachidic acid, haze tallow, palm wax, rice bran wax, He Heba wax, castor wax, red bayberry can be used
Wax, candelila wax, from beeswax, insect wax, lanocerin, spermaceti, paraffin, microcrystalline wax, pertroleum wax, emulsifying wax, lignite wax, Fischer-Tropsch
One or more of wax, polyethylene wax, polypropylene wax, chlorinated paraffin, ethane-acetic acid ethyenyl copolymerization wax, ethylene oxide wax, institute
Stating solvent includes ether, petroleum ether, normal heptane, n-hexane, hexamethylene, ethyl acetate, methanol, ethyl alcohol, acetic acid, chloroform, tetrachloro
Change one or more of carbon, benzene, toluene and dimethylbenzene.
Optionally, the low-melting-point metal in the utility model embodiment is fusing point in 300 DEG C of low-melting-point metal lists below
Matter, fusing point is in 300 DEG C of low-melting alloys below, alternatively, fusing point, in 300 DEG C of blends below, blend includes low melting point
At least two in metal simple-substance, low-melting alloy and function powder, i.e. blend includes low-melting-point metal simple substance and low melting point
Alloy, alternatively, blend includes low-melting alloy and function powder, alternatively, blend includes low-melting-point metal simple substance and function
Powder, alternatively, blend includes low-melting-point metal simple substance, low-melting alloy and function powder.
Illustratively, low-melting-point metal simple substance can be mercury simple substance, gallium simple substance, indium simple substance or tin simple substance.
Illustratively, low-melting alloy can be gallium-indium alloy, gallium-indium-tin alloy, gallium tin alloy, gallium kirsite, gallium indium zinc
Alloy, gallium red brass, gallium indium red brass, gallium tin cadmium alloy, gallium Zn-Cd alloy, bismuth indium alloy, bismuth tin alloy, bismuth indium tin close
Gold, bismuth indium kirsite, bismuth red brass, bismuth indium red brass, bismuth indium leypewter, bismuth tin cadmium alloy, bismuth terne metal, bismuth tin
One of lead and cadmium alloy, leypewter, gun-metal, red brass, tin pltine and Tin Silver Copper Alloy.
Illustratively, function powder can be nickel simple substance, iron simple substance, titanium simple substance, zinc simple substance, silver-colored simple substance, copper simple substance, oxidation
Iron, copper oxide, zinc oxide, carbon dust, graphene, carbon nanotube, silica, boron nitride, bentonite, at least one in kaolin
Kind.
Preferably, the low-melting-point metal of room temperature liquid can be used in the low-melting-point metal in the utility model embodiment, with full
While the preparation of sufficient flexible electronics, the printing equipment in the utility model embodiment can also be simplified, printing is reduced and set
Temperature control demand and requirement in standby.
Herein by taking target ink is using low-melting-point metal as an example, the printing equipment in the utility model embodiment is briefly explained
Working method.
Firstly, selecting the material of stock 5 according to actual needs, substrate surface is selected not adhere to the printing of low-melting-point metal
Object, substrate surface easily adhere to the stock of low-melting-point metal or the stock to fall between, and (i.e. substrate surface is for eutectic
Point metal adherency/do not adhere to performance it is undesirable).
Then, stock 5 is fixed on bearing ink pad 1, so that stock 5 is entered figure by the drive of horizontal mobile mechanism 2
The workspace of case printed mechanism 3 forms adherency on the surface of stock 5 by the operation of graphic-print mechanism 3 and/or does not adhere to
The coating of low-melting-point metal.
Wherein, the stock of low-melting-point metal is not adhered to for substrate surface, it can be by easy to stick in its printout surface/coating
The material of attached low-melting-point metal is formed and the consistent coating of target pattern.Holding for low-melting-point metal is easily adhered to for substrate surface
Object is printed, then can form the painting opposite with target pattern by not adhering to the material of low-melting-point metal in its printout surface/coating
Layer.For substrate surface for low-melting-point metal adherency/do not adhere to and show undesirable stock, then can be by existing first
Substrate surface integrally coat using any one coating of above-mentioned adherency/do not adhere in two kinds of coating of low-melting-point metal and forms one
Layer coating (first layer coating) then recycles another coating to be formed and mesh according to target pattern in established coating surface
The consistent or opposite second layer coating of case of marking on a map.
The coating used in the examples can be solidified by modes such as spontaneous curing, air-dried, drying, illumination, for tool
Corresponding curing assembly can be increased in the utility model embodiment by having the coating of specified condition of cure in corresponding construction, to meet
The rapid curing of coating.
Adherency is formed on the surface of stock 5 by graphic-print mechanism 3 and/or does not adhere to the coating of low-melting-point metal
Afterwards, stock 5 is driven to enter the workspace of full page coating mechanism 4 by horizontal mobile mechanism 2, full page coating mechanism 4 is to printing
The surface of object 5 carries out full page printing to it using low-melting-point metal, and low-melting-point metal is in the table for not adhering to low-melting-point metal at this time
Face (not adhering to the coating of low-melting-point metal, surface does not adhere to the stock of low-melting-point metal) show as it is non-cohesive, it is low adhering to
The surface (adhering to the coating of low-melting-point metal, the stock of surface adhesion low-melting-point metal) of melting point metals shows as good attached
, the target pattern being made of low-melting-point metal is formed on the surface of stock 5 at this time, is completed for printing.
Such as Fig. 4, in some embodiments of the utility model, the horizontal mobile mechanism 2, comprising: match with the bearing ink pad 1
Close the first guide rail 201 of connection;The first driving mechanism 202 for driving the bearing ink pad 1 to move along first guide rail.It is preferred that
Ground, the first guide rail 201 are linear structure, can also use arc or turning structure in other embodiments, to meet for setting
Standby Structural assignments exist in limitation or desired physical device.Driving belt can be used in first driving mechanism 202, with bearing ink pad
1 non-working surface cooperation, in other embodiments, the first driving mechanism 202 can also use magnetomotive driving mechanism, motor
The lead screw slide bar of control, runner etc..
In some embodiments of the utility model, the bearing ink pad 1 is set on the lifting seat 8 of alterable height;It is described to hold
Ink pad 1 is cooperatively connected by the lifting seat 8 with first guide rail 201.Lifting seat 8 in the embodiment is to adjust printing
The height of platform 1 makes printing to adjust height of the stock 5 in graphic-print mechanism 3 and full page coating mechanism 4 when operation
Printing/printing effect of coating or target ink on object 5 is best.
Such as Fig. 5, in some embodiments, the graphic-print mechanism 3, comprising: be erected at 1 top of bearing ink pad, tool
There is the guide rail beam 302 with the second guide rail 301 of the moving direction horizontal vertical of the bearing ink pad 1;It is horizontal to be assemblied in the guide rail
The print head 303 being cooperatively connected on beam 302, with second guide rail 301;Drive the print head 303 along second guide rail
301 the second mobile driving mechanisms 304.Wherein, the structure of double print heads can be used in print head 303, can satisfy different printings
Head prints the demand of coating material of different nature, can also be using the internal print head with ink channel handoff functionality, by beating
Print the ink channel connection that the valve group control in head switches different coating materials.
Graphic-print mechanism 3 drives bearing ink pad 1 to move along the first guide rail 201 at work, by horizontal mobile mechanism 2,
It realizes to meet the printing of X-direction (it is assumed that the extending direction of the first guide rail 201 is X-direction), is existed by print head 303
The movement of the second guide rail of drive lower edge 302 of second driving mechanism 304, so that the printing for meeting Y direction is realized.
Such as Fig. 6-7, in some embodiments in the utility model, the full page coating mechanism 4, comprising: with the printing
The one or more of the moving direction horizontal vertical setting of platform 1 stencils roller.It is described to stencil roller in some preferred embodiments
Son includes at least: the applicator roll 401 of 1 surface full page of Xiang Suoshu stock printing target ink;Positioned at the applicator roll 401 tiltedly on
The square rider roller 402 with the applicator roll 401 cooperation charging;To applicator roll 401 print target ink before, in the painting
The channeling ink roller 403 of the applied target ink of the axial direction of cloth rewinder roll 401.
Preferably, the applicator roll 401, rider roller 402 and channeling ink roller 403 pass through the branch positioned at 201 two sides of the first guide rail
Frame 9 is erected at the top of bearing ink pad 1;Wherein, applicator roll 401, rider roller 402 and channeling ink roller 403 be arranged to mutual spacing can
It adjusts.
In some optionally embodiments, the full page coating mechanism 4, further includes: feeding guide-plate 404, to by target
Ink imports the feed inlet formed between the applicator roll 401 and the rider roller 402.
In conjunction with above-mentioned Fig. 1-7, referring to Fig. 8-9, a kind of the preferred of the printing equipment in the utility model embodiment is disclosed
Embodiment.
Printing equipment, comprising: pedestal 10, the first guide rail 201 for being set to 10 surface of pedestal are assemblied on pedestal 9 and
The lifting seat 8 that one guide rail 201 is cooperatively connected, the fixed bearing ink pad 1 in the surface of lifting seat 8, between lifting seat 8 and the first guide rail 201
It is rotated by belt;Wherein, the first guide rail 201 uses the linear guide of fixed length.
Further include: the pattern above the first guide rail 201 is arranged side by side in the bracket 9 by being located at 201 two sides of the first guide rail
Printed mechanism 3 and full page coating mechanism 4, wherein graphic-print mechanism 3 is compared to full page coating mechanism 4 apart from the initial of bearing ink pad 1
Position is closer;Wherein,
Graphic-print mechanism 3 includes: the guide rail beam 302 that horizontal vertical is arranged in the first guide rail 201, has thereon and leads
The second parallel guide rail 301 of rail crossbeam 302, the print head for being assemblied in guide rail beam 302, being cooperatively connected with the second guide rail 301
303, the belt that driving print head 303 is moved along the second guide rail 301.
Full page coating mechanism 4 includes: applicator roll 401, the rider roller 402 that 201 top of the first guide rail is erected at by bracket 9
With channeling ink roller 403, and to be arranged to mutual spacing adjustable for applicator roll 401, rider roller 402 and channeling ink roller 403.In the embodiment only
There is applicator roll 401 that contacting printing material 5 is set.
Further include: electric appliance box 11 is inside integrated with print head 303, lifting seat 8, belt, applicator roll 401, rider roller 402
With the control circuit and driving structure of channeling ink roller 403, electric appliance box 11 is arranged at the side of pedestal 10.Preferably, electric appliance box 11
On by way of data-interface or wireless communication with host computer data communication, meet host computer for the electron number of target pattern
According to transmission.It in other embodiments, also can be with integrated control panel and memory bank, to meet on electric appliance box 11
The autonomous working of printing equipment.
Further include: shield 12 and side cover 13, shield 12 is to cover graphic-print mechanism 3 and full page coating mechanism 4, side cover
13 for covering the other side of electric appliance box 11.
Such as Figure 10, another purpose of the utility model is to propose a kind of printing process, institute based on above-mentioned printing equipment
Printing process is stated, above-mentioned printing equipment is applied to, comprising:
Step S1, stock is placed and is fixed on bearing ink pad;
Step S2, the bearing ink pad is driven to enter the workspace of graphic-print mechanism by horizontal mobile mechanism;
Step S3, the described graphic-print mechanism forms adherency on the surface of stock according to target pattern and/or does not adhere to
The coating of target ink;
Step S4, the bearing ink pad is driven to enter the workspace of full page coating mechanism by horizontal mobile mechanism;
Step S5, the described full page coating mechanism carries out full page printing to the stock using target ink, viscous having
Adhere to target ink and/or the non-cohesive target oil on there is the coating for not adhering to target ink on the coating of attached target ink
Ink forms the target pattern that target ink is constituted on the surface of the stock.
Printing equipment and printing process in the utility model embodiment are used equally for the manufacture of flexible electronic circuit,
In, low-melting-point metal is as the compliance circuit in flexible electronic circuit.More specifically, the printing in the utility model is set
Standby and printing process is used for the preparation of RFID electronic label, and low-melting-point metal is used to form the antenna in RFID electronic label and (penetrates
Frequently circuit).
It should also be appreciated by one skilled in the art that various illustrative logical boxs, mould in conjunction with the embodiments herein description
Electronic hardware, computer software or combinations thereof may be implemented into block, circuit and algorithm steps.In order to clearly demonstrate hardware and
Interchangeability between software surrounds its function to various illustrative components, frame, module, circuit and step above and carries out
It is generally described.Hardware is implemented as this function and is also implemented as software, depends on specific application and to entire
The design constraint that system is applied.Those skilled in the art can be directed to each specific application, be realized in a manner of flexible
Described function, still, this realization decision should not be construed as a departure from the scope of protection of this disclosure.
Claims (7)
1. a kind of printing equipment characterized by comprising
Bearing ink pad, to place and fix stock;It is set up in the graphic-print mechanism of the different location above the bearing ink pad
With full page coating mechanism;Horizontal mobile mechanism, to drive the bearing ink pad to sequentially enter the graphic-print mechanism and full page
The workspace of coating mechanism;
Wherein, the graphic-print mechanism is to form the adherency of given pattern in the surface of the stock and/or not adhere to mesh
The coating of printing ink so that in surface of the stock given pattern to the adhesiving effect of target ink, in surface of the stock other
Region is opposite to the adhesiving effect of target ink;The full page coating mechanism is in surface of the stock full page printing target oil
Ink forms target pattern.
2. printing equipment according to claim 1, which is characterized in that the horizontal mobile mechanism, comprising:
The first guide rail being cooperatively connected with the bearing ink pad;
The first driving mechanism for driving the bearing ink pad to move along first guide rail.
3. printing equipment according to claim 2, which is characterized in that the bearing ink pad is set to the lifting seat of alterable height
On;
The bearing ink pad is cooperatively connected by the lifting seat and first guide rail.
4. printing equipment according to claim 1, which is characterized in that the graphic-print mechanism, comprising:
The guide rail beam being erected above the bearing ink pad, the guide rail beam have horizontal with the moving direction of the bearing ink pad
The second vertical guide rail;
The print head for being assemblied on the guide rail beam, being cooperatively connected with second guide rail;
The second driving mechanism for driving the print head to move along second guide rail.
5. printing equipment according to claim 1, which is characterized in that the full page coating mechanism, comprising:
The one or more being arranged with the moving direction horizontal vertical of the bearing ink pad stencils roller.
6. printing equipment according to claim 5, which is characterized in that the roller of stenciling includes at least:
To the applicator roll of surface of the stock full page printing target ink;
Rider roller positioned at the applicator roll oblique upper and applicator roll cooperation charging;
To before being coated with roller printing target ink, in the channeling ink roller of the applied target ink of the axial direction of the applicator roll.
7. printing equipment according to claim 6, which is characterized in that the full page coating mechanism, further includes:
Feeding guide-plate, to import target ink between the applicator roll and the rider roller.
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110744922A (en) * | 2019-11-22 | 2020-02-04 | 东莞市美盈森环保科技有限公司 | Base oil printing device and base oil printing process |
CN111114112A (en) * | 2018-10-31 | 2020-05-08 | 北京梦之墨科技有限公司 | Printing equipment and printing method |
CN113271720A (en) * | 2020-02-17 | 2021-08-17 | 北京梦之墨科技有限公司 | Printing machine and printing method |
-
2018
- 2018-10-31 CN CN201821783728.6U patent/CN209426356U/en active Active
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111114112A (en) * | 2018-10-31 | 2020-05-08 | 北京梦之墨科技有限公司 | Printing equipment and printing method |
CN110744922A (en) * | 2019-11-22 | 2020-02-04 | 东莞市美盈森环保科技有限公司 | Base oil printing device and base oil printing process |
CN110744922B (en) * | 2019-11-22 | 2022-02-25 | 东莞市美盈森环保科技有限公司 | Base oil printing device and base oil printing process |
CN113271720A (en) * | 2020-02-17 | 2021-08-17 | 北京梦之墨科技有限公司 | Printing machine and printing method |
CN113271720B (en) * | 2020-02-17 | 2022-08-26 | 北京梦之墨科技有限公司 | Printing machine and printing method |
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