CN107464494A - Random physics and chemistry anti-fake mark - Google Patents

Random physics and chemistry anti-fake mark Download PDF

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Publication number
CN107464494A
CN107464494A CN201610390555.0A CN201610390555A CN107464494A CN 107464494 A CN107464494 A CN 107464494A CN 201610390555 A CN201610390555 A CN 201610390555A CN 107464494 A CN107464494 A CN 107464494A
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China
Prior art keywords
mark
medium
random
fake
chemistry anti
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CN201610390555.0A
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Chinese (zh)
Inventor
石立公
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Individual
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Priority to CN201610390555.0A priority Critical patent/CN107464494A/en
Publication of CN107464494A publication Critical patent/CN107464494A/en
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K19/00Record carriers for use with machines and with at least a part designed to carry digital markings
    • G06K19/06Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
    • G06K19/06009Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code with optically detectable marking
    • G06K19/06018Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code with optically detectable marking one-dimensional coding
    • G06K19/06028Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code with optically detectable marking one-dimensional coding using bar codes
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K19/00Record carriers for use with machines and with at least a part designed to carry digital markings
    • G06K19/06Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
    • G06K19/06009Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code with optically detectable marking
    • G06K19/06037Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code with optically detectable marking multi-dimensional coding
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K19/00Record carriers for use with machines and with at least a part designed to carry digital markings
    • G06K19/06Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
    • G06K19/06009Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code with optically detectable marking
    • G06K19/06046Constructional details
    • G06K19/06093Constructional details the marking being constructed out of a plurality of similar markings, e.g. a plurality of barcodes randomly oriented on an object
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F3/00Labels, tag tickets, or similar identification or indication means; Seals; Postage or like stamps
    • G09F3/02Forms or constructions
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F3/00Labels, tag tickets, or similar identification or indication means; Seals; Postage or like stamps
    • G09F3/02Forms or constructions
    • G09F3/0297Forms or constructions including a machine-readable marking, e.g. a bar code
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F3/00Labels, tag tickets, or similar identification or indication means; Seals; Postage or like stamps
    • G09F3/02Forms or constructions
    • G09F2003/0208Indicia

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Credit Cards Or The Like (AREA)

Abstract

A kind of random physics and chemistry anti-fake mark, including at least one indexing unit on mark medium;The quantity of the indexing unit on same medium is random;The indexing unit it is of different sizes or identical;The edge shape of the indexing unit is similar and different;There is the vestige of indenture and/or discoloration and/or deposition formation on the surface of the indexing unit;Its test basis includes its characteristics of image;Described image feature comprises at least one of the following:Photo, image, the word description of photo and/or image.Random physics and chemistry anti-fake mark proposed by the present invention, it is integrated is made using physics, chemical method, it can apply on the various metals such as metal, plastics, timber, paper, cloth medium or nonmetal medium or metal and nonmetallic mixture medium, the mark as medium.

Description

Random physics and chemistry anti-fake mark
Technical field
The present invention relates to field of anti-counterfeit technology, more particularly, to a kind of random physics and chemistry anti-fake mark.
Background technology
Existing Chinese patent 201310467476.1, it is proposed that one kind uses random labeled anti-counterfeiting technology, It uses the random anti-counterfeit mark that physical method makes, and can be widely used in the media such as paper, plastics It is false proof.
Existing random anti-counterfeit mark, during applied on the media such as metal, glass, make it is difficult, and easily It is destroyed;It is if random using that can be made with the mark substance of mark medium generation physics, chemical reaction Anti-fake mark, the anti-fake mark worked it out just can be durable in use.
The content of the invention
Technical problem:
The defects of existing for prior art, the present invention propose random physics and chemistry anti-fake mark, its use physics, Chemical method makes, and can apply in the various metals such as metal, plastics, timber, paper, cloth medium or non- On metal medium or metal and nonmetallic mixture medium, the mark as medium.
Technical scheme:
To achieve these goals, the invention provides a kind of random physics and chemistry anti-fake mark, it is characterised in that: Including at least one indexing unit on mark medium;
The quantity of the indexing unit on same mark medium is random;
The indexing unit it is of different sizes or identical;
The edge shape of the indexing unit is similar and different;
There is the vestige of indenture and/or discoloration and/or deposition formation on the surface of the indexing unit;
Its test basis includes its characteristics of image;Described image feature comprises at least one of the following:Photo, shadow The word description of picture, photo and/or image.
Further, the relatively random distribution of multiple indexing units on same mark medium.
Further, the indexing unit of different zones on the mark medium is distributed in, forms multiple marks Remember unit group.
Further, the mark medium is Jie of metal medium or nonmetal medium or metal and nonmetal mixing Matter.
Further, there is the surface of indexing unit on the mark medium, be plane and/or curved surface and/or not Regular shape face.
Further, the indexing unit, there is the color of significant difference mark medium.
Further, the color of the different indexing units on same mark medium differs.
Further, in addition to corresponding unique identifier;The unique identifier be character code and/or One-dimension code and/or Quick Response Code.
Further, the unique identifier is located on the same mark medium where it, or be located at and its Corresponding to the mark medium at place on other mark media.
Further, the indexing unit group of same mark medium diverse location is distributed in, is corresponded to respectively interior Hold the identical or different unique identifier.
Technique effect:
Random physics and chemistry anti-fake mark proposed by the present invention, can apply metal, stone material, glass, plastics, The metal mediums such as timber, paper, silk, cloth or nonmetal medium or metal and nonmetallic mixture medium On, the mark as medium.
Brief description of the drawings
Fig. 1 is a kind of structural representation Fig. 1 of the random physics and chemistry anti-fake mark of embodiment of the present invention:
1. mark medium one, 2. indexing units one, 3. random physics and chemistry anti-fake marks one.
Fig. 2 is a kind of structural representation Fig. 2 of the random physics and chemistry anti-fake mark of embodiment of the present invention:
11. mark medium two, 12. indexing units two, 13. random physics and chemistry anti-fake marks two.
Fig. 3 is a kind of random physics and chemistry anti-fake mark structural representation Fig. 3 of embodiment of the present invention:
21. mark medium three, 22. indexing units three, 23. random physics and chemistry anti-fake marks three, 24. indexing units Three B.
Fig. 4 is a kind of random physics and chemistry anti-fake mark structural representation Fig. 4 of embodiment of the present invention:
31. mark medium four, 32. indexing units four, 33. random physics and chemistry anti-fake marks four, 34. indexing units Four B.
Fig. 5 is a kind of random physics and chemistry anti-fake mark structural representation Fig. 5 of embodiment of the present invention:
41. mark medium five, 42. indexing units five, 43. random physics and chemistry anti-fake marks five, 44. indexing units Five B.
Fig. 6 is a kind of random physics and chemistry anti-fake mark structural representation Fig. 6 of embodiment of the present invention:
51. mark medium six, 52. indexing units six, 53. random physics and chemistry anti-fake marks six, 54. characters are unique Identification code six.
Fig. 7 is a kind of random physics and chemistry anti-fake mark structural representation Fig. 7 of embodiment of the present invention:
61. mark medium seven, 62. indexing units seven, 63. random physics and chemistry anti-fake marks seven, 64. characters are unique Identification code seven, 65. one-dimension code unique identifiers seven.
Fig. 8 is a kind of random physics and chemistry anti-fake mark structural representation Fig. 8 of embodiment of the present invention:
71. mark medium eight, 72. indexing units eight, 73. random physics and chemistry anti-fake marks eight, 74. characters are unique Identification code eight, 75. Quick Response Code unique identifiers eight.
Fig. 9 is a kind of random physics and chemistry anti-fake mark structural representation Fig. 9 of embodiment of the present invention:
81. mark medium nine, 82. random physics and chemistry anti-fake marks nine, 83. random physics and chemistry anti-fake marks 92.
Figure 10 is a kind of random physics and chemistry anti-fake mark structural representation Figure 10 of embodiment of the present invention:
91. medium ten is marked, 92. random physics and chemistry anti-fake marks 11,93. random physics and chemistry anti-fake marks 12, 94. random physics and chemistry anti-fake mark 13.
Figure 11 is a kind of random physics and chemistry anti-fake mark structural representation Figure 11 of embodiment of the present invention:
101. mark medium 11,102. random physics and chemistry anti-fake marks ten one by one, 103. random physics and chemistry anti-counterfeiting labels Remember 11, the 104. random unique identifiers 11 of physics and chemistry anti-fake mark 11,105..
Figure 12 is a kind of random physics and chemistry anti-fake mark structural representation Figure 12 of embodiment of the present invention:
111. mark medium 12,112. random physics and chemistry anti-fake marks 12,113. random physics and chemistry anti-counterfeiting labels Remember 12, the 114. random unique identifiers 12,116. of physics and chemistry anti-fake mark 12,115. Unique identifier 12.
Figure 13 is a kind of random physics and chemistry anti-fake mark structural representation Figure 13 of embodiment of the present invention:
121. mark medium 13,122. random physics and chemistry anti-fake marks 13,123. random physics and chemistry anti-counterfeiting labels Remember 13, the 124. random unique identifiers 13,126. of physics and chemistry anti-fake mark 13,125. The unique identifier 13 of unique identifier 13,127..
Figure 14 be the present invention a kind of embodiment random physics and chemistry anti-fake mark structural representation Figure 14 (mark with only One identification code distance is remote):
131. mark medium 14, the 132. random unique identifiers 14 of physics and chemistry anti-fake mark 14,133..
Embodiment
In order to make the purpose , technical scheme and advantage of the present invention be clearer, below in conjunction with accompanying drawing and reality Example is applied, the present invention is described in further detail.It should be appreciated that specific embodiment described herein Only to explain the present invention, it is not intended to limit the present invention.
Embodiment one
Fig. 1 is a kind of structural representation Fig. 1 of the random physics and chemistry anti-fake mark of embodiment of the present invention, such as Fig. 1 institutes Show, including mark medium 1, indexing unit 1, random physics and chemistry anti-fake mark 1.
As shown in figure 1, on mark medium 1, random one indexing unit 1 of distribution;Dashed rectangle Interior all indexing units 1 form random physics and chemistry anti-fake mark 1.
It should be noted that on mark medium 1, not dashed rectangle, the dotted line side shown in Fig. 1 Frame, it is only for convenient explanation;In dashed rectangle, there can also be multiple indexing units 1;When same When having multiple indexing unit 1 in individual dashed rectangle, it collectively forms random physics and chemistry anti-fake mark 1.
Indexing unit 1, any position of mark medium 1 can be distributed in;Preferable be distributed in does not influence Medium 1 is marked to use, and the position conveniently checked.
Indexing unit 1, it is the label by that can occur physically and/or chemically to react with mark medium 1 Matter, it is dropped on mark medium 1, occurs what is formed after physically and/or chemically reacting with mark medium 1.
The mark substance be can with mark medium 1 occur physically and/or chemically react acidity, neutrality, Akaline liquid or solution or suspension.When specifically making random physics and chemistry anti-fake mark 1, according to mark medium The acidity, neutrality, alkalescence physically and/or chemically reacted can correspondingly occur with it for one 1 characteristic, selection The material of liquid or solution or suspension is as mark substance.
When marking medium 1 different, different mark substances is used;Metal, stone material, glass, plastics, The media such as timber, paper, silk, cloth, use corrosion and/or coloring liquid corresponding to the mark medium 1.
The mark substance physically and/or chemically reacted with various metals, nonmetallic generation is prior art.
When use plastics as mark medium 1 when, using can with plastics produce physics, chemical reaction Alkali, ether acid, organohalogen compounds etc., ketone, fat, aldehyde etc. be used as mark substance.
When use timber as mark medium 1 when, using can with timber produce physics, chemical reaction Concentrated sulfuric acid etc. is used as mark substance.
When using paint as mark medium 1 or marking the surface of medium 1 to cover paint, energy is used Enough concentrated sulfuric acids that physics, chemical reaction are produced with paint etc. are used as mark substance.
When use glass as mark medium 1 when, using can with glass produce physics, chemical reaction 1:Hydrofluoric acid solution of 5 concentration etc. is used as mark substance.
It should be noted that in mark substance, substance that show color can also be added, makes the mark list worked it out Member 1 has clearly color.
The coloring of the mark, coloring material can be both mixed into mark substance, can also be single in mark Member 1 makes and finishes after stain.
Preferably, when it is general steel to mark medium 1, watery hydrochloric acid is selected as mark substance, dilute salt Acid falls on steel, waits 1 minute, is rinsed with water, after cleaning out reaction residue, dilute salt on steel , there is indenture in the position that acid drops, and the indenture is as indexing unit 1;
Preferably, when it is timber to mark medium 1, the concentrated sulfuric acid is selected to fall as mark substance, the concentrated sulfuric acid On timber, wait 10 seconds, clean out reaction residue, the position that the concentrated sulfuric acid drops on timber, occur The indenture of carbonization, the indenture is as indexing unit 1;
Preferably, when it is glass to mark medium 1, selection paint is used as mark substance, and paint falls in glass On glass, wait 3 minutes, glass is painted the position dropped, and the vestige of paint deposition formation, the trace occurs Mark is as indexing unit 1;
Preferably, when it is paper to mark medium 1, select ink or invisible printing ink (such as UV inks, Infrared printing ink) mark substance is used as, ink falls on paper, and the vestige of formation, the vestige are deposited after drying As indexing unit 1.
The mark medium 1 includes metal, stone material, glass, plastics, timber, paper, silk, cloth Deng metal medium or nonmetal medium or metal and nonmetal mixture medium.The mixture of the metal and nonmetal, Refer to using the material technique making such as splice, connect, inlaying, extruding.
It should be noted that dropping onto on mark medium 1 for mark substance randomness, is dropped in mark medium The position of mark substance on one 1, size are all random;Mark substance is dropped on mark medium 1 Afterwards, medium 1 is marked to occur physically and/or chemically to react with mark substance, it is single that the vestige left turns into mark Member 1.The vestige left, it is relevant with used mark medium 1, mark substance.When mark is situated between Matter 1 is common iron, when mark substance is watery hydrochloric acid, falls each watery hydrochloric acid point and steel on steel After reaction, formed on steel a depression vestige (after the vestige is formed, though without fully reacting, The residue of reaction can also be cleared up);The quantity that the size of the vestige and watery hydrochloric acid fall on steel is relevant, with After watery hydrochloric acid falls on steel, the area for covering steel is related;The edge shape of the vestige, with watery hydrochloric acid After falling on steel, the shape of formation is related;The depth of the vestige, concentration with watery hydrochloric acid, fall in steel The correlations such as the thickness on material.
It should be noted that mark medium 1 occurs after physically and/or chemically reacting with mark substance, it is necessary When, to dispose the reacted residual substance left on mark medium 1.Preferably, intense reaction is complete Bi Hou, remove residual substance.
, both can be with it should be noted that the face of the mark medium 1 where random physics and chemistry anti-fake mark 1 It is plane as shown in Figure 1 or curved surface and/or irregular shape surface.Preferably plane.
The mark medium 1, its form is parts, semi-finished product, finished product, packaging material etc..
The test basis of the random physics and chemistry anti-fake mark 1 are included corresponding to random physics and chemistry anti-fake mark 1 Unique identifier;The unique identifier correspondence markings medium 1.
The test basis of the random physics and chemistry anti-fake mark 1 also include its characteristics of image;Described image feature Including at least one of the following:Photo, image, the word description of photo and/or image.
Described image feature comprises at least a secondary photo or an image.The content of described image feature is mark The entirety and/or part of medium 1;The content of described image feature can be reacted positioned at the mark medium one The picture characteristics of random physics and chemistry anti-fake mark 1 on 1.The word description of described image, can be uniquely true Determine the random physics and chemistry anti-fake mark 1 and/or uniquely determine the mark medium 1.
The image, both can be the image of the mark medium 1 with random physics and chemistry anti-fake mark 1, It can also be the image in the random manufacturing process of physics and chemistry anti-fake mark 1.
The word description of the photo and/or image, it is the random physics and chemistry anti-fake mark 1 of description and/or mark The photo of medium 1 and/or the word of image, for describing the information of the photo and/or the correction of image, Including at least one of the following:Shooting time, spot for photography, shooting environmental, photo content, inside photo Random physics and chemistry anti-fake mark 1 and/or the feature for marking medium 1;Preferably include:Shooting time, bat Place, shooting environmental, photo content, the random physics and chemistry anti-fake mark 1 inside photo and/or mark is taken the photograph to be situated between The feature of matter 1.
Preferably, described image is characterized as a secondary photo of random physics and chemistry anti-fake mark 1, is situated between plus mark One photos of matter 1.
Embodiment two
Fig. 2 is a kind of structural representation Fig. 2 of the random physics and chemistry anti-fake mark of embodiment of the present invention, such as Fig. 2 institutes Show, including mark medium 2 11, indexing unit 2 12, random physics and chemistry anti-fake mark 2 13.
As shown in Fig. 2 some region on mark medium 2 11, the random group echo unit two of distribution one 12;All indexing units 1 in dashed rectangle form random physics and chemistry anti-fake mark 2 13.
All indexing units 1 in dashed rectangle form an indexing unit group.
The difference of embodiment two and embodiment one is:In embodiment two, multiple indexing units 2 12 Form a random physics and chemistry anti-fake mark 2 13.
Embodiment three
Fig. 3 is a kind of structural representation Fig. 3 of the random physics and chemistry anti-fake mark of embodiment of the present invention, such as Fig. 3 institutes Show, including mark medium 3 21, indexing unit 3 22, random physics and chemistry anti-fake mark 3 23, indexing unit three B24。
As shown in figure 3, some region on mark medium 3 21, the random group echo unit three of distribution one 22;All indexing units 3 22 in dashed rectangle form random physics and chemistry anti-fake mark 3 23.
In embodiment three, include a B24 of indexing unit three;The B24 of indexing unit three is 2 Indexing unit 3 22 overlaps to form in the mark upper part of medium 3 21.
The difference of embodiment three and embodiment two is:There is one in embodiment three by two indexing units 3 22 in the B24 of indexing unit three for marking the upper part of medium 3 21 overlapping and being formed.
It should be noted that:Marked at one on medium 3 21, can also be by more than two indexing units three 22 overlap to form a B24 of indexing unit three.
It should be noted that:In same random physics and chemistry anti-fake mark 3 23, can have zero or zero with On two or more similar B24 of indexing unit three.
Embodiment four
Fig. 4 is a kind of structural representation Fig. 4 of the random physics and chemistry anti-fake mark of embodiment of the present invention, such as Fig. 4 institutes Show, including mark medium 4 31, indexing unit 4 32, random physics and chemistry anti-fake mark 4 33, indexing unit four B34。
As shown in figure 4, some region on mark medium 4 31, the random group echo unit four of distribution one 32, all indexing units 4 32 in dashed rectangle form random physics and chemistry anti-fake mark 4 33.
It can be various metal mediums, nonmetal medium and metal medium and nonmetallic Jie to mark medium 4 31 The mixture of matter;Preferably common iron.
It should be noted that as shown in figure 4, because mark medium 4 31 is annular, indexing unit 4 32 Positioned at the side of annulus;When gathering the image of random physics and chemistry anti-fake mark 4 33, what is typically gathered is rectangle region Domain, so, in the dashed rectangle shown in Fig. 4, there is scope of the subregion beyond mark medium 4 31; Indexing unit 4 32 only on mark medium 4 31 is only the composition of random physics and chemistry anti-fake mark 4 33 Element.
It should be noted that:Shape, surface smoothness, color, the edge shape of different indexing units 4 32 Shape both may be identical, it is also possible to differs.
It should be noted that:In same random physics and chemistry anti-fake mark 4 33, can have zero or zero with On the B34 of indexing unit four for being partly overlapped and being formed by two or more indexing units 4 32.
Embodiment five
Fig. 5 is a kind of structural representation Fig. 5 of the random physics and chemistry anti-fake mark of embodiment of the present invention, such as Fig. 5 institutes Show, including mark medium 5 41, indexing unit 5 42, random physics and chemistry anti-fake mark 5 43, indexing unit five B44。
As shown in figure 5, some region on mark medium 5 41, the random group echo unit five of distribution one 42, another B44 of group echo unit five of random distribution;Two group echo units in dashed rectangle structure together Into a random physics and chemistry anti-fake mark 5 43.
Mark medium 5 41 can be various metals, nonmetallic and metal and nonmetallic mixture;It is preferred that Be glass.
The shape of the B44 of indexing unit five and indexing unit 5 42, surface smoothness, color, edge shape were both May be identical, it is also possible to differ.
All indexing units 5 42 in dashed rectangle form random physics and chemistry anti-fake mark 5 43.
It should be noted that the B44 of indexing unit five and indexing unit 5 42 difference, are when making, to use Technique be differently formed;The difference of the technique, including at least one of the following:
The concentration of corrosive deposit is different inside mark substance;
Reaction time is different, and complete degree of reaction is different;
It is whether different containing the concentration of substance that show color and/or substance that show color inside mark substance;
Contain different types of substance that show color inside mark substance;
Preferably, different types of substance that show color is contained inside mark substance.
It should be noted that:Marked at one on medium 5 41, it is single that more than two marks can also be included The indexing unit that member 5 42 is overlapping and is formed.
It should be noted that:Marked at one on medium 5 41, it is single that more than two marks can also be included The indexing unit that five B44 of member are overlapping and formed.
It should be noted that:Marked at one on medium 5 41, it is single that more than two marks can also be included The indexing unit that member 5 42 is overlapping with the B44 of indexing unit five and is formed.
Embodiment six
Fig. 6 is a kind of structural representation Fig. 6 of the random physics and chemistry anti-fake mark of embodiment of the present invention, such as Fig. 6 institutes Show, including mark medium 6 51, indexing unit 6 52, random physics and chemistry anti-fake mark 6 53, character are uniquely known Other code 6 54.
All indexing units 6 52 in dashed rectangle form random physics and chemistry anti-fake mark 6 53;In random physics and chemistry Anti-fake mark 6 53 is character unique identifier 6 54 below.
Random physics and chemistry anti-fake mark 6 53 and the width shared by character unique identifier 6 54, highly can phase Together, can also differ;Preferably, differ.
Random physics and chemistry anti-fake mark 6 53 is embodiment one, embodiment two, embodiment three, embodiment party Any described random physics and chemistry anti-fake mark of case four, embodiment five.
Embodiment six and embodiment one, embodiment two, embodiment three, embodiment four, implementation Any difference of scheme five is, also comprising character unique identifier 6 54.
Character unique identifier 6 54 corresponds with random physics and chemistry anti-fake mark 6 53.
Character unique identifier 6 54 corresponds with mark medium 6 51.
The character unique identifier 6 54, it can also be one-dimension code, Quick Response Code, or character code, one Tie up the combination of code, Quick Response Code;The preferably combination of character code and Quick Response Code.
The making of the character unique identifier 6 54, has kinds of schemes, such as in the prior art:Both can be pre- First it is printed on paper, is attached on mark medium 6 51, laser engraving can also be used in mark medium 6 51 On, it can also be directly written on mark medium 6 51, preferably using laser engraving in mark medium 6 51 On.
Embodiment seven
Fig. 7 is a kind of structural representation Fig. 7 of the random physics and chemistry anti-fake mark of embodiment of the present invention, such as Fig. 7 institutes Show, including mark medium 7 61, indexing unit 7 62, random physics and chemistry anti-fake mark 7 63, character are uniquely known Other code 7 64, one-dimension code unique identifier 7 65.
The difference of embodiment seven and embodiment six is, also comprising one-dimension code unique identifier 7 65.
One-dimension code unique identifier 7 65 is consistent with the content that character unique identifier 7 64 records.
It should be noted that one-dimension code unique identifier 7 65 and character unique identifier 7 64 both can be as , can also be respectively positioned at mark medium 7 61 positioned at the same region of mark medium 7 61 shown in Fig. 7 Different zones;Both can be consistent with the direction of random physics and chemistry anti-fake mark 7 63 layout, can also be located at The direction layout of random physics and chemistry anti-fake mark 7 63 is inconsistent.It is preferably located at random physics and chemistry anti-fake mark 7 63 Near, and it is consistent with the direction layout of random physics and chemistry anti-fake mark 7 63.
Embodiment eight
Fig. 8 is a kind of structural representation Fig. 8 of the random physics and chemistry anti-fake mark of embodiment of the present invention, such as Fig. 8 institutes Show, including mark medium 8 71, indexing unit 8 72, random physics and chemistry anti-fake mark 8 73, character are uniquely known Other code 8 74, Quick Response Code unique identifier 8 75.
The difference of embodiment eight and embodiment seven is, instead of using Quick Response Code unique identifier 8 75 One-dimension code unique identifier 7 65.
Embodiment nine
Fig. 9 is a kind of structural representation Fig. 9 of the random physics and chemistry anti-fake mark of embodiment of the present invention, such as Fig. 9 institutes Show, including mark medium 9 81, random physics and chemistry anti-fake mark 9 82, random physics and chemistry anti-fake mark 92 83.
The difference of embodiment nine and embodiment one, embodiment two is, in same mark medium nine There are 2 random physics and chemistry anti-fake marks on 81, respectively random physics and chemistry anti-fake mark 9 82 and random physics and chemistry are false proof Mark 92 83.
All indexing units in dashed rectangle form an indexing unit group;In the present embodiment, have two Individual indexing unit group, two random physics and chemistry anti-fake marks are corresponded to respectively.
When having the random physics and chemistry anti-fake mark of more than 2 on same mark medium 9 81, when one with mechanism When changing anti-fake mark damage, it can be identified using others, improve the reliability of anti-counterfeiting technology.It is excellent Choosing, there are 2 random physics and chemistry anti-fake marks on same mark medium 9 81.
The distance between multiple random physics and chemistry anti-fake marks on same mark medium 9 81 both can be compared with Closely, can also farther out, or distribution area is larger;Preferable different random chemical is the distance between false proof Farther out.
, can also be being distributed in it should be noted that due to the needs of random physics and chemistry anti-fake mark image collection Multiple indexing units in same region are divided into multiple random physics and chemistry anti-fake marks;Same indexing unit, The random physics and chemistry anti-fake mark of 2 or more than 2 can be belonged to simultaneously.Preferably, in same region Indexing unit belongs to same random physics and chemistry anti-fake mark.Preferably, same indexing unit, is pertaining only to 1 Individual random physics and chemistry anti-fake mark.
Embodiment ten
Figure 10 is a kind of structural representation Figure 10 of the random physics and chemistry anti-fake mark of embodiment of the present invention, is such as schemed Shown in 10, including mark medium 10, random physics and chemistry anti-fake mark 11, random physics and chemistry anti-fake mark ten 2 93, random physics and chemistry anti-fake mark 13.
The difference of embodiment ten and embodiment nine is, have on same mark medium 10 3 with Mechanism anti-fake mark.
All indexing units in dashed rectangle form an indexing unit group;In the present embodiment, have three Individual indexing unit group, three random physics and chemistry anti-fake marks are corresponded to respectively.
Embodiment 11
Figure 11 is a kind of structural representation Figure 11 of the random physics and chemistry anti-fake mark of embodiment of the present invention, is such as schemed Shown in 11, including mark medium 11, random physics and chemistry anti-fake mark ten one by one 102, random physics and chemistry it is false proof Mark 11, random physics and chemistry anti-fake mark 11, unique identifier 11.
The difference of embodiment 11 and embodiment ten is there be one on mark medium 11 The unique identifier 11 of character style.Unique identifier 11 is on mark medium 11 Position is any, but is preferred with not blocking random physics and chemistry anti-fake mark;It is false proof to be preferably located at any random physics and chemistry Near mark.
Unique identifier 11 corresponds with mark medium 11;
Unique identifier 11 102 corresponds one by one with random physics and chemistry anti-fake mark ten;
Unique identifier 11 corresponds with random physics and chemistry anti-fake mark 11;
Unique identifier 11 corresponds with random physics and chemistry anti-fake mark 11.
It should be noted that unique identifier 11 both can be character style, can also be one-dimension code, Quick Response Code form, it can also be the combination of character style, one-dimension code form, Quick Response Code form;Preferably Character style.
Embodiment 12
Figure 12 is a kind of structural representation Figure 12 of the random physics and chemistry anti-fake mark of embodiment of the present invention, is such as schemed Shown in 12, including mark medium 12, random physics and chemistry anti-fake mark 12, random physics and chemistry are false proof It is mark 12, random physics and chemistry anti-fake mark 12, unique identifier 12, unique Identification code 12.
The difference of embodiment 12 and embodiment 11 is also have one on mark medium 12 The unique identifier 12 of individual character style.
Unique identifier 12 corresponds with mark medium 12;
Unique identifier 12 corresponds with mark medium 12.
Multiple random physics and chemistry anti-fake marks and multiple unique identifiers on same mark medium 12 Both can correspond, can also a unique identifier correspond to multiple random physics and chemistry anti-fake marks, can be with The corresponding random physics and chemistry anti-fake mark of multiple unique identifiers.
Preferably, unique identifier 12 corresponds with random physics and chemistry anti-fake mark 12;
Unique identifier 12 corresponds with random physics and chemistry anti-fake mark 12;
Unique identifier 12 corresponds with random physics and chemistry anti-fake mark 12.
Embodiment 13
Figure 13 is a kind of structural representation Figure 13 of the random physics and chemistry anti-fake mark of embodiment of the present invention, is such as schemed Shown in 13, including mark medium 13, random physics and chemistry anti-fake mark 13, random physics and chemistry are false proof It is mark 13, random physics and chemistry anti-fake mark 13, unique identifier 13, unique Identification code 13, unique identifier 13.
The difference of embodiment 13 and embodiment 12 is also have one on mark medium 13 The unique identifier 13 of individual character style.
Unique identifier 13 corresponds with mark medium 13;
Unique identifier 13 corresponds with mark medium 13;
Unique identifier 13 corresponds with mark medium 13;
Unique identifier 13 corresponds with random physics and chemistry anti-fake mark 13;
Unique identifier 13 corresponds with random physics and chemistry anti-fake mark 13;
Unique identifier 13 corresponds with random physics and chemistry anti-fake mark 13.
Also can may be used farther out position of the corresponding random physics and chemistry anti-fake mark of unique identifier on medium With nearer;It is preferably located near random physics and chemistry anti-fake mark.
Embodiment 14
Figure 14 is a kind of structural representation Figure 14 of the random physics and chemistry anti-fake mark of embodiment of the present invention, is such as schemed Shown in 14, including mark medium 14, random physics and chemistry anti-fake mark 14, unique identifier 14 133。
The difference of embodiment 14 and embodiment seven is, on mark medium 14 with mechanism Change anti-fake mark 14 and be distributed in two distant regions with unique identifier 14.
Random physics and chemistry anti-fake mark proposed by the present invention, can apply metal, stone material, glass, plastics, The metal mediums such as timber, paper, silk, cloth or nonmetal medium or metal medium and nonmetal medium it is mixed Close on medium, the mark as medium.
The foregoing is merely illustrative of the preferred embodiments of the present invention, is not intended to limit the invention, all in this hair All any modification, equivalent and improvement made within bright spirit and principle etc., should be included in the present invention Protection domain within.

Claims (10)

1. random physics and chemistry anti-fake mark, it is characterised in that:Including at least one mark on mark medium Unit;
The quantity of the indexing unit on same mark medium is random;
The indexing unit it is of different sizes or identical;
The edge shape of the indexing unit is similar and different;
There is the vestige of indenture and/or discoloration and/or deposition formation on the surface of the indexing unit;
Its test basis includes its characteristics of image;Described image feature comprises at least one of the following:Photo, shadow The word description of picture, photo and/or image.
2. random physics and chemistry anti-fake mark according to claim 1, it is characterised in that:In same mark The relatively random distribution of multiple indexing units on medium.
3. random physics and chemistry anti-fake mark according to claim 1, it is characterised in that:It is distributed in the mark Remember the indexing unit of different zones on medium, form multiple indexing unit groups.
4. random physics and chemistry anti-fake mark according to claim 1, it is characterised in that:The mark medium The medium mixed for metal medium or nonmetal medium or metal and nonmetal.
5. random physics and chemistry anti-fake mark according to claim 1, it is characterised in that:The mark medium The surface for having indexing unit, be plane and/or curved surface and/or irregular face.
6. random physics and chemistry anti-fake mark according to claim 1, it is characterised in that:The indexing unit, Color with significant difference mark medium.
7. random physics and chemistry anti-fake mark according to claim 6, it is characterised in that:Positioned at same mark The color of different indexing units on note medium differs.
8. the random physics and chemistry anti-fake mark according to claim 1,2,3,4,5,6, one of 7, its It is characterised by:Also include corresponding unique identifier;The unique identifier is character code and/or one-dimensional Code and/or Quick Response Code.
9. random physics and chemistry anti-fake mark according to claim 7, it is characterised in that:The unique identification Code bit is on the same mark medium where it, or positioned at other marks corresponding with the mark medium where it Remember on medium.
10. random physics and chemistry anti-fake mark according to claim 8 or claim 9, it is characterised in that:It is distributed in same The indexing unit group of one mark medium diverse location, respectively identical or different described unique of corresponding content Identification code.
CN201610390555.0A 2016-06-03 2016-06-03 Random physics and chemistry anti-fake mark Withdrawn CN107464494A (en)

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Application Number Priority Date Filing Date Title
CN201610390555.0A CN107464494A (en) 2016-06-03 2016-06-03 Random physics and chemistry anti-fake mark

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
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Publications (1)

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Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114631498A (en) * 2022-03-31 2022-06-17 上海绿度信息科技股份有限公司 Animal marking and management system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114631498A (en) * 2022-03-31 2022-06-17 上海绿度信息科技股份有限公司 Animal marking and management system
CN114631498B (en) * 2022-03-31 2023-07-25 上海绿度信息科技股份有限公司 Animal marking and management system

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Application publication date: 20171212