CN103730053A - Anti-counterfeit mark printed on surface of crystal - Google Patents

Anti-counterfeit mark printed on surface of crystal Download PDF

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Publication number
CN103730053A
CN103730053A CN201310718980.4A CN201310718980A CN103730053A CN 103730053 A CN103730053 A CN 103730053A CN 201310718980 A CN201310718980 A CN 201310718980A CN 103730053 A CN103730053 A CN 103730053A
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China
Prior art keywords
counterfeiting mark
crystalline solid
printed
printing
solid surface
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Pending
Application number
CN201310718980.4A
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Chinese (zh)
Inventor
姚为
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Leader Tech Digtal Technology Co Ltd
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Beijing Leader Tech Digtal Technology Co Ltd
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Application filed by Beijing Leader Tech Digtal Technology Co Ltd filed Critical Beijing Leader Tech Digtal Technology Co Ltd
Priority to CN201310718980.4A priority Critical patent/CN103730053A/en
Publication of CN103730053A publication Critical patent/CN103730053A/en
Pending legal-status Critical Current

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Abstract

The invention discloses an anti-counterfeit mark printed on the surface of a crystal, capable of being recognized by an instrument and having an anti-counterfeit function. Essentially, a graphic element with information stored inside is printed on the surface of a printing medium through a special printing method or pigment or ink, the printing medium is the crystal, and a solidified mark resistant to copying and cracking is finally obtained. One characteristic of the anti-counterfeit mark is that a recognition instrument can be used to recognize the anti-counterfeit mark and extract anti-counterfeit information stored in the anti-counterfeit mark, so that the objective of direct true-false judgment on a crystalline article through the anti-counterfeit mark is achieved. By the anti-counterfeit mark, the problem of difficulty in printing a high-accuracy anti-counterfeit pattern on the crystal is solved; the anti-counterfeit mark has good effect on solving the problem of implanting of the anti-counterfeit mark at a small area.

Description

A kind of anti-counterfeiting mark that is printed in crystalline solid surface
[technical field]
The present invention discloses a kind of anti-counterfeiting mark, and a kind of anti-counterfeiting mark that is printed in crystalline solid surface is provided especially.
 
[background technology]
Crystalline material is generally because of its good transmittance, stable in properties, and quality is pure and be used in various ornaments.Crystalline material generally take natural generation as good, but with current technical merit, various crystalline solid also can manually generate.But on being worth, artificial crystalline solid will be well below natural material.In social and economic activities, adulterate, very general manually to fill natural situation.A lot of fake producers serve as natural material with the artificial material of low value, deception consumer, the profit of acquisition great number.Therefore, false proof particularly important for crystalline solid.But based on little, the general anti-counterfeiting mark of crystalline solid flat surface, implant the feature that false proof difficulty is large, be generally difficult to directly implant false proof means on crystalline solid surface.And, as ornament, even if general false proof means are implanted to crystalline solid surface, also can destroy greatly its aesthetics, thereby reduce the aesthetic value of crystalline solid.
Therefore, the false proof of a lot of valuable crystalline solid is all that the mode of attaching anti-counterfeit certificate realizes.It is false proof that the false proof mode of general anti-counterfeit certificate is divided into a two wires, substantially has following several:
The first, water marked paper is false proof: adopt special water marked paper, the visible various watermark recoveries of printing opacity, are higher-end one line anti-counterfeiting technologies, and the public with basic cognitive ability can identify.
The second, photochromatic printing ink (flower group) is false proof: certificate surface adopts dedicated optical sensitive ink, and the picture and text that ink is printed during from different view, present different colors.
The 3rd, colorless fluorescent ink is false proof: adopt the rainbow mode of printing of colorless fluorescent to print decorative pattern, the visible phosphor pattern that colorless fluorescent is red and colorless fluorescent is green under ultraviolet light.Colour transition natural and tripping.The rainbow mode of printing of colorless fluorescent is also the innovation and application in traditional printing mode.
The 4th, micro text is false proof: certificate is used the false proof secret mark of micro text.Under magnifier, seem that a certain lines of solid line bar are actual to be comprised of letter.The position of the false proof lines of micro text, can change to some extent according to disparity items.
Be more than present general production method and false proof means for false proof assay certificate, but above printing technology has not in fact had very high technical threshold, relevant printing equipment and anti-fake material also can obtain by normal channel.The most key, anti-counterfeit certificate is with article that need be false proof in released state, and false proof assay certificate cannot directly carry out true and false discriminating to article, and fake producer can forge certificate and crystalline solid article by alternative mode completely.Therefore, this mode is not the false proof mode of tool effect.
The anti-counterfeiting mark that is printed in crystalline solid surface disclosed by the invention, is to be directly printed in crystalline solid article surface, solves certificate and forges simple drawback, this anti-counterfeiting mark can not be replaced, there is higher technical level, be difficult to be imitated and copy, therefore there is higher anti-counterfeiting performance.Meanwhile, this anti-counterfeiting mark is owing to adopting imperceptible false proof figure, and adopts the sightless material of naked eyes to carry out anti-counterfeiting mark implantation, guaranteed that the aesthetic value of crystalline solid is without prejudice.
A kind of anti-counterfeiting mark that is printed in crystalline solid surface disclosed by the invention, if can be applied to widely each false proof field, will bring huge practical benefit for social economy.
 
[summary of the invention]
Fundamental purpose of the present invention is to provide a kind of anti-counterfeiting mark that is printed in crystalline solid surface.It can meet under specific application environment the implantation of anti-counterfeiting mark and identification demand, by the two-dimensional lattice figure anti-counterfeiting technology and the false proof combination of crystalline solid that are difficult to copy, scan, by different spectral information recognition, extract and be implanted in two-dimensional lattice graphic code simultaneously.Wherein invisible anti-counterfeit mark is used special ink to print, to reach the sightless stealthy effect of naked eyes.Based on the less special type of crystalline solid surfacing area, anti-counterfeiting mark disclosed in this invention can be brought into play antifalse effect in the situation that of small size, in the situation that minimum area reaches 3*3 square millimeter, can realize simultaneously.
The invention provides a kind of anti-counterfeiting mark that is printed in crystalline solid surface, this invention is comprised of two large divisions, it is characterized in that:
The invention provides a kind of anti-counterfeiting mark that is printed in crystalline solid surface is comprised of a series of two-dimensional lattice figures.
Above-mentioned two-dimensional lattice figure generates Software Create by proprietary false proof figure, and has certain data storage capacities and being identified property.
A method for making that is printed in the anti-counterfeiting mark on crystalline solid surface, comprising: by Software Create two-dimensional lattice figure.
After generating two-dimensional lattice figure, by mask-making technology, two-dimensional lattice figure is converted to the forme in kind that can be used for printing by e-file.
According to described plate-making process, embodiment disclosed by the invention need be printed on crystalline solid surface, and the technical requirement according to crystalline solid printing needs two-dimensional lattice figure to solidify on metallic plate in plate-making process.
Realize the printing of anti-counterfeiting mark in the present invention, need to adopt the mode of trans-printing that anti-counterfeiting mark is solidified in crystalline solid surface.Its basic process is that two-dimensional lattice figure is embodied on metallic plate by plate-making, arranges afterwards ink on metallic plate.
After adhering to ink on metallic plate, the Rubber end on printing machine contacts with forme, by this step, the ink point mark of two-dimensional lattice image can be transferred on Rubber end.
The crystalline solid Surface Contact that Rubber end prints with needs after adhering to the ink dot mark that oils, puts mark trans-printing to target crystalline solid surface by ink.
After the mode that two-dimensional lattice figure is put mark by ink is attached to crystalline solid surface, need the drying mode that heat is dried to be cured, to prevent coming off of anti-counterfeiting mark.
?
Accompanying drawing explanation
The process flow diagram that carries out anti-counterfeiting mark triggering by identification instrument that Fig. 1 provides for the embodiment of the present invention.
The basic composition exemplary plot of the two-dimensional lattice figure that Fig. 2 provides for the embodiment of the present invention.
Fig. 3 is the schematic diagram that two-dimensional lattice figure is carried out to Plate making printing provided by the invention.
Main figure number explanation.
101-crystalline solid surface 102-anti-counterfeiting mark 103-differentiates instrument.
?
Embodiment
Below in conjunction with accompanying drawing, a kind of embodiment that is printed in the anti-counterfeiting mark on crystalline solid surface that the embodiment of the present invention is provided is described in detail.
A kind of anti-counterfeiting mark 102 that is printed in crystalline solid surface 101 that the embodiment of the present invention provides, as shown in Figure 1, its mode that comes into force is as follows:
Step 101, preparation have the crystalline solid surface of certain smooth degree.
Step 102, anti-counterfeiting mark is printed in to crystalline solid surface.
Preferably, the area of anti-counterfeiting mark is greater than 3*3 square millimeter, to guarantee the be identified effect of anti-counterfeiting mark.
Step 103,103 pairs of anti-counterfeiting marks of use discriminating instrument are differentiated.
Below in said process, mainly for generation and the method for making of anti-counterfeiting mark, be elaborated:
For the generation of X-Y scheme dot matrix, as shown in Figure 2, its structural form is comprised of a series of graphical dots with specific standard.After this graphical dots forms X-Y scheme dot matrix, the information that can store certain capacity.
This graphic dot matrix can be identified by discriminating instrument after being printed in crystalline solid surface, and extracts the anti-counterfeiting information of storage.
As shown in step 201, the complete information storage unit of this diagrammatic representation anti-counterfeiting mark.
As shown in step 202, this mark is the fundamental point mark unit that forms anti-counterfeiting mark.
Two-dimensional lattice pattern precision in the present invention is high, and unit area information memory capacity is large.The diameter of each ink point mark is 30-40 square micron.Under this kind of technical conditions, a complete information memory cell area is 0.7*0.7 square millimeter.For the effect that guarantees that breakage-proof and image comparison are confirmed, identification equipment need to capture 4 complete storage elements that left and right is same.Therefore as long as effective printable area is not less than 3*3 square millimeter and can effectively implants anti-counterfeiting mark.
According to the required step of invention, describe related realization mode in detail below:
The two-dimensional lattice figure that generates e-file needs electronic dot pattern to be converted into the forme in kind that can be used for printing afterwards.As shown in Figure 3:
As shown in step 301: by platemaking machine, dot matrix image is replicated on metallic plate with anticorrosion medicament.
As shown in step 302, by the mode of exposure, unwanted part is removed, leave the part consistent with dot matrix image.
Afterwards metallic plate surface is immersed in corrosive liquids, the part not covered by anticorrosion medicament can be corroded, and the part being covered by anticorrosion medicament stays for printing.Complete this step forme complete.
After forme completes, forme can be placed in and shift on brush machine, prepare printing.Complete after preparation process, can be by the mode of trans-printing, two-dimensional lattice graphic printing is surperficial in stock crystalline solid.
The basic process of printing is on forme, evenly to adhere to the ink for printing.
Preferably, this ink need be used special colourless thermohardening type bat printing China ink, and this ink has best false proof and visual effect.Under general light condition, cannot be identified by naked eyes, this technical characterstic can be realized the special type that the present invention does not destroy crystalline solid appearance effect.
Forme adheres to after ink, and the Rubber end in pad printer fully contacts with forme, and now the two-dimensional lattice image being comprised of ink point mark on forme is transferred on Rubber end.
Rubber end adheres to after the two-dimensional lattice image being comprised of ink point mark, Rubber end fully contacts with the crystalline solid surface of preparing printing again, by this step, two-dimensional lattice image is transferred to and undertakes the printing of on crystalline solid surface, has completed the printing process of two-dimensional lattice image.
Crystalline solid stock is printed with after two-dimensional lattice image, and the machine of being printed is sent under hot dryer, and ink point mark is carried out to heat curing.Complete after this step, finally completed the manufacturing process of anti-counterfeiting mark.
A kind of anti-counterfeiting mark that is printed in crystalline solid surface that the embodiment of the present invention provides.Can be by this kind of mode, high-precision false proof graphic printing is surperficial in crystalline solid, and by the identification of special map identification equipment, carry out the extraction of anti-counterfeiting information.This invention has improved the applicable scope of anti-counterfeiting mark.Because this anti-counterfeiting mark can not be taken off or copy by force, improved false proof security, guaranteed needs the appearance effect of false proof article not have large destruction simultaneously.
Obviously, those skilled in the art can carry out various changes and modification and not depart from the spirit and scope of the present invention the present invention.Like this, if within of the present invention these are revised and modification belongs to the scope of the claims in the present invention and equivalent technologies thereof, the present invention is also intended to comprise these changes and modification interior.

Claims (10)

1. an anti-counterfeiting mark that is printed in crystalline solid surface, is characterized in that:
Anti-counterfeiting mark is to be originated as printing by the electrical patterns of specific format;
Electrical patterns is the base rule as generation by certain encoding law, and has certain graphic parameter planning;
The electrical patterns generating by a certain encoding law has logic, can store the information of certain capacity, and can be resolved out;
Electrical patterns is cured on forme by the processing step of plate-making, and carries out presswork, and anti-counterfeiting mark is printed on printed medium;
The ink using during printing shifts printing ink for special use, requires to contain and can absorb ultrared light absorbing material in ink, and its content will reach the minimum absorption requirement of ink;
The medium of undertaking the printing of of anti-counterfeiting mark is smooth crystalline solid surface;
The anti-counterfeiting mark being completed for printing can correctly be distinguished by specific false proof authentication equipment.
2. a kind of anti-counterfeiting mark that is printed in crystalline solid surface according to claim 1, is characterized in that: anti-counterfeiting mark be by electrical patterns as printing source, by establishment, generate the size shape that electrical patterns decides anti-counterfeiting mark; And this electrical patterns can be realized efficient coding on less area, useful area minimum reaches 3*3 square millimeter can realize identification.
3. a kind of anti-counterfeiting mark that is printed in crystalline solid surface according to claim 1, is characterized in that: described electrical patterns is directly to be generated by software, has unique coding rule, can generate the distinct graphics of some different codings mode.
4. a kind of anti-counterfeiting mark that is printed in crystalline solid surface according to claim 3, is characterized in that: the coding of this anti-counterfeiting mark has the ability of storage information, and the size of stored message capability depends on the size of coded system and anti-counterfeiting mark effective coverage.
5. a kind of anti-counterfeiting mark that is printed in crystalline solid surface according to claim 4, is characterized in that: the coding of this anti-counterfeiting mark can resolve out by identification equipment, and gets the anti-counterfeiting information being stored in coding.
6. a kind of anti-counterfeiting mark that is printed in crystalline solid surface according to claim 1, is characterized in that: electrical patterns cannot directly solidify on printed medium, needs to be first cured in printing on forme used by mask-making technology.
7. a kind of anti-counterfeiting mark that is printed in crystalline solid surface according to claim 6, is characterized in that: the forme that is applicable to anti-counterfeiting mark printing need to reach certain precision, meets the accuracy requirement of anti-counterfeiting mark.
8. a kind of anti-counterfeiting mark that is printed in crystalline solid surface according to claim 1, is characterized in that: the ink of printing counterfeit prevention mark need contain the ultrared active principle of absorption peculiar spectrum, uses the figure layer of the direct printing counterfeit prevention mark of this ink.
9. a kind of anti-counterfeiting mark that is printed in crystalline solid surface according to claim 1, is characterized in that: this anti-counterfeiting mark directly printing solidifies in crystalline solid surface, and this crystalline solid surface will reach certain smoothness, to guarantee the printing quality of anti-counterfeiting mark.
10. a kind of anti-counterfeiting mark that is printed in crystalline solid surface according to claim 1, is characterized in that: this anti-counterfeiting mark can be captured and resolve by specific false proof authentication equipment, obtains wherein canned data simultaneously, and discharges true and false identification result by instrument.
CN201310718980.4A 2013-02-26 2013-12-24 Anti-counterfeit mark printed on surface of crystal Pending CN103730053A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201310718980.4A CN103730053A (en) 2013-02-26 2013-12-24 Anti-counterfeit mark printed on surface of crystal

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
CN201310059725.3 2013-02-26
CN201310059725 2013-02-26
CN201310718980.4A CN103730053A (en) 2013-02-26 2013-12-24 Anti-counterfeit mark printed on surface of crystal

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040140362A1 (en) * 2003-01-22 2004-07-22 Allen Philip L. Method of tracking and marking tools
CN101513814A (en) * 2009-03-18 2009-08-26 张云霞 Method for making night luminous digital painting on egg shell
CN101798477A (en) * 2010-03-03 2010-08-11 中山大学 Thermal transfer ink jet ink nano capsule and preparation method thereof
CN102646246A (en) * 2012-04-26 2012-08-22 李伟周 Precious metal and precious metal product identity authentication management system and identification management method
CN102673208A (en) * 2012-06-20 2012-09-19 联志玩具礼品(东莞)有限公司 Ink-jet transfer printing process
WO2012133528A1 (en) * 2011-03-31 2012-10-04 株式会社シンク・ラボラトリー Information display system and dot pattern printed material
CN103332019A (en) * 2013-06-05 2013-10-02 陈仲礼 A ceramic printing machine

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040140362A1 (en) * 2003-01-22 2004-07-22 Allen Philip L. Method of tracking and marking tools
CN101513814A (en) * 2009-03-18 2009-08-26 张云霞 Method for making night luminous digital painting on egg shell
CN101798477A (en) * 2010-03-03 2010-08-11 中山大学 Thermal transfer ink jet ink nano capsule and preparation method thereof
WO2012133528A1 (en) * 2011-03-31 2012-10-04 株式会社シンク・ラボラトリー Information display system and dot pattern printed material
CN102646246A (en) * 2012-04-26 2012-08-22 李伟周 Precious metal and precious metal product identity authentication management system and identification management method
CN102673208A (en) * 2012-06-20 2012-09-19 联志玩具礼品(东莞)有限公司 Ink-jet transfer printing process
CN103332019A (en) * 2013-06-05 2013-10-02 陈仲礼 A ceramic printing machine

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
Г.А.КАШЁНКО: "《金属学原理》", 28 February 1955, article "结晶体和非结晶体", pages: 17-18 *

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Application publication date: 20140416