CN209869774U - Variable local holographic intelligent anti-counterfeiting mark - Google Patents

Variable local holographic intelligent anti-counterfeiting mark Download PDF

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Publication number
CN209869774U
CN209869774U CN201920610078.3U CN201920610078U CN209869774U CN 209869774 U CN209869774 U CN 209869774U CN 201920610078 U CN201920610078 U CN 201920610078U CN 209869774 U CN209869774 U CN 209869774U
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China
Prior art keywords
layer
local
variable
information
printing
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CN201920610078.3U
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Chinese (zh)
Inventor
程祥峰
宋庆涛
田孝友
高睿
徐文娟
田亮
李彦如
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Shandong Taibao Information Technology Group Co., Ltd
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Shandong Taibao Preventing Counterfeit Product Co Ltd
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Abstract

The utility model relates to an anti-counterfeit label, concretely relates to holographic intelligent anti-counterfeit label of variable part. The mark comprises a plastic film layer, a permanent mould pressing information layer, a positioning mould pressing layer, a resin layer, a local printing layer, a color layer and an adhesive layer which are sequentially arranged from top to bottom, wherein a local hollow-out printing layer and a local aluminum plating layer are arranged between the positioning mould pressing layer and the resin layer, the local hollow-out printing layer and the local aluminum plating layer respectively contain partial variable information, the partial hollow-out printing layer and the local aluminum plating layer form complete variable information after combination, the variable information contains two-dimensional codes, a invisible ink layer is arranged below the corresponding local aluminum plating layer, the position of the local hollow-out printing layer corresponds to that of the local printing layer, and the information of the local printing layer corresponds to the variable. The mark is not easy to counterfeit, is simple to identify, has good anti-counterfeiting effect, and can effectively prevent secondary use.

Description

Variable local holographic intelligent anti-counterfeiting mark
Technical Field
The utility model relates to an anti-counterfeit label, concretely relates to holographic intelligent anti-counterfeit label of variable part.
Background
Alumite, also known as bronzing paper, is a hot stamping material consisting of a polyester film (PET) and a plurality of chemical coatings coated on the surface thereof, and can be classified into three categories according to the types of hot stamping: common electrochemical aluminum, hologram electrochemical aluminum and holographic positioning electrochemical aluminum. The common alumite has simple manufacturing process, the color material layer is single color, no molding layer and single hot stamping pattern, and is mainly applied to products with low requirements on surface decoration effect; the hologram electrochemical aluminum is subjected to mould pressing treatment on a coloring layer to form a laser holographic pattern rich in variation, and is widely applied to the commodity packaging printing industry, such as the fields of wine boxes, cigarette boxes, anti-counterfeiting mark printing and the like; the holographic positioning electrochemical aluminum is characterized in that a complete hot stamping pattern is positioned on a pattern fixed by a printing stock by utilizing a hot stamping pattern in the electrochemical aluminum through a photoelectric recognition device, the process is to perform positioning and registration by utilizing a hot stamping plate, a holographic anti-counterfeiting electrochemical aluminum pattern and the printing stock pattern, and the anti-counterfeiting strength is high.
However, the information of the current holographic anti-counterfeiting mark is completely the same and invariable, a substrate is coated with a mould pressing information layer and then mould pressing, aluminum ink washing, aluminum plating and aluminum washing processes are carried out, and the electrochemical aluminum of each mark produced is fixed, so that the variability of the holographic electrochemical aluminum cannot be realized. It is inconvenient to carry out logistics management and anti-counterfeiting inquiry digital management on products.
In addition, the marking holographic pattern and the printing pattern on the market are relatively independent, so that counterfeiting is easy to occur, the holographic pattern and the printing pattern are not fused together, and the design feeling is poor.
SUMMERY OF THE UTILITY MODEL
To the not enough of above prior art, the utility model discloses the technical problem that will solve is: the utility model provides a variable local holographic intelligent anti-fake label has broken through holographic electrochemical aluminium sign and can't realize variable information and wash aluminium technology, has realized the preparation of holographic electrochemical aluminium variable sign, fuses holographic pattern and printed pattern together, is difficult for being imitated, distinguishes simply, and anti-fake effect is good, verifies that the in-process is destroyed, can effectively prevent the secondary use.
Variable local holographic intelligent anti-counterfeit marking, including from the top down mould rete, permanent mould pressing information layer, location mould pressing layer, resin layer, local printing layer, chromatograph and the adhesive layer that sets gradually, wherein, be provided with local fretwork printing layer and local aluminizing layer between location mould pressing layer and the resin layer, local fretwork printing layer and local aluminizing layer contain partial variable information respectively, constitute complete variable information after the combination, variable information contains the two-dimensional code, corresponds local aluminizing layer and sets up stealthy printing ink layer in its below, local fretwork printing layer correspond with the position of local printing layer to, there is corresponding relation in the information and the variable information of local printing layer.
Wherein:
the plastic film layer is a PET, PE, PP or PVC film with the thickness of 10-80 μm.
And a release layer is arranged between the local hollow printing layer and the local aluminum plating layer.
The local aluminum plating layer has a hollow-out effect.
The resin layer is used for improving the adhesive force of the printing ink.
The information of the local printing layer comprises an anti-counterfeiting digital code.
The purpose of setting up the chromatograph is as the priming color, guarantees that the local printing layer information of sign is not disturbed by the colour of quilt thing.
And a release paper layer is arranged below the adhesive layer.
The utility model discloses a preparation method of variable local holographic intelligent anti-counterfeiting mark, including following step:
1) coating a permanent mould pressing information layer on the corona surface of the plastic film layer;
2) after coating, carrying out die pressing by using a die pressing machine to form a positioning die pressing layer;
3) dividing the information of the variable information layer into two parts, respectively reflecting the two parts on the local hollow printing layer and the local aluminum-plated layer, and printing the local hollow printing layer by adopting a digital printer;
4) performing full-page aluminizing below the local hollow printing layer by utilizing a vacuum aluminizing technology to form an aluminized layer;
5) printing an invisible ink layer on the aluminum-plated layer by using a digital printer;
6) carrying out fine aluminum washing to obtain a local aluminum plating layer;
7) coating a resin layer below the corresponding invisible ink layer;
8) printing below the resin layer, wherein the printing position corresponds to the local hollow printing layer to form a local printing layer;
9) coating color ink below the partial printing layer to form a color layer;
10) and compounding the adhesive with a release paper layer by using an adhesive, and die-cutting to obtain the mark.
Wherein:
the permanent molding information layer and the positioning molding layer in the preparation method adopt the conventional electrochemical aluminum holographic process, and detailed description is omitted.
In the step 4), after a release layer is coated below the partially hollow printing layer, full-plate aluminum plating is performed below the release layer by using a vacuum aluminum plating technology to form an aluminum plating layer, and the release layer is printed by adopting Germany ACMOS 101-.
In the step 3), the information of the variable information layer is designed in advance, then the information of the variable information layer is divided into two parts, and one part is embodied in a printing mode, namely a local hollow printing layer; the other part is embodied by a local aluminum plating layer; the local hollow printing layer and the local aluminum-plated layer are spliced together to form complete information.
The invisible ink layer is printed by using invisible ink, and after the aluminum is finely washed, the aluminum covered by the invisible ink is not washed off, so that a local aluminum-plated layer with a holographic effect is formed. The printing was done with a Hewlett packard digital printer.
The invisible ink was an HP ElectroInk Transparent invisible ink, supplied by Hewlett-packard company.
In step 8), the resin layer is coated with 4700 aqueous resin.
When the consumer identifies the authenticity:
1. the variable information is formed by combining an electrochemical aluminum holographic pattern and a digital printing pattern, the holographic electrochemical aluminum effect is variable information, the variable information has the holographic electrochemical aluminum effect, the variable information is prepared by a fine aluminum washing process, and the variable information is fine, attractive, visually identified and capable of being inquired about authenticity through mobile phone scanning.
2. Because the partial aluminum plating layer is washed out by finely washing aluminum after printing, the holographic electrochemical aluminum formed by covering is not, and the aluminum layer does not exist in other areas by scraping the peripheral position with a blade.
3. The information (two-dimensional code) of the variable information layer on the surface of the mark is scanned to prompt that the anti-counterfeiting digital code is input after being uncovered to verify the authenticity, the mark is uncovered, the anti-counterfeiting digital code on the local printing layer is exposed after being separated from the release layer of the mark, and the anti-counterfeiting digital code is input to verify the authenticity. The identification is damaged in the verification process, and secondary use can be effectively prevented.
To sum up, the beneficial effects of the utility model are that:
1. variable holographic intelligent false proof mark in local, broken through holographic electrochemical aluminium sign and can't realize variable information and wash aluminium technology, (the holographic electrochemical aluminium of the holographic electrochemical aluminium sign of former technology washes aluminium for fixed information's location) has realized the preparation of the variable sign of holographic electrochemical aluminium.
2. The variable information of the utility model is formed by combining the holographic pattern and the printing pattern, changes single holographic variable information or printing variable information, is not easy to be imitated, has simple identification and good anti-counterfeiting effect,
3. the utility model discloses the sign is destroyed at the verification in-process, can effectively prevent the secondary use.
4. The utility model discloses a location is meticulous to be washed aluminium, and holographic effect is good, and the color is gorgeous, and the product is more pleasing to the eye, has improved visual effect, and the while is directly perceived to be distinguished, and anti-fake effect is good.
Drawings
FIG. 1 is a schematic view of the layer structure of the present invention;
in the figure: 1. a plastic film layer; 2. permanently embossing the information layer; 3. positioning the mould pressing layer; 4. a printing layer is partially hollowed; 5. a release layer; 6. partially plating an aluminum layer; 7. a invisible ink layer; 8. a resin layer; 9. a partial print layer; 10. a color layer; 11. an adhesive layer; 12. and (7) a release paper layer.
Detailed Description
Embodiments of the present invention are further described below with reference to the accompanying drawings.
Example 1
As shown in fig. 1, the variable local holographic intelligent anti-counterfeiting mark comprises a plastic film layer 1, a permanent mold pressing information layer 2, a positioning mold pressing layer 3, a resin layer 8, a local printing layer 9, a color layer 10 and an adhesive layer 11 which are sequentially arranged from top to bottom, wherein a local hollow printing layer 4 and a local aluminum plated layer 6 are arranged between the positioning mold pressing layer 3 and the resin layer 8, the local hollow printing layer 4 and the local aluminum plated layer 6 respectively contain partial variable information and form complete variable information after combination, the variable information contains a two-dimensional code, a hidden ink layer 7 is arranged below the corresponding local aluminum plated layer 6, the local hollow printing layer 4 corresponds to the local printing layer 9, and the information of the local printing layer 9 corresponds to the variable information.
Wherein:
the plastic film layer 1 is a PET, PE, PP or PVC film with the thickness of 10-80 μm.
A release layer 5 is arranged between the local hollow printing layer 4 and the local aluminum plating layer 6.
The local aluminum plating layer 6 has a hollow-out effect.
The resin layer 8 serves to improve the adhesion of the ink.
The information of the local printing layer 9 comprises an anti-counterfeiting digital code.
The color layer 10 is provided to serve as a base color to ensure that the information of the local printed layer 9 of the mark is not interfered by the color of the attached object.
And a release paper layer 12 is arranged below the adhesive layer 11.
The utility model discloses a preparation method of variable local holographic intelligent anti-counterfeiting mark, including following step:
1) coating a permanent mould pressing information layer 2 on the corona surface of the plastic film layer 1;
2) after coating, carrying out die pressing by using a die pressing machine to form a positioning die pressing layer 3;
3) dividing the information of the variable information layer into two parts, respectively representing the two parts on the local hollow printing layer 4 and the local aluminum-plated layer 6, and printing the local hollow printing layer 4 by adopting a digital printer;
4) coating a release layer 5 below the local hollow printing layer 4;
5) performing full-plate aluminum plating below the release layer 5 by using a vacuum aluminum plating technology to form an aluminum plated layer;
6) printing an invisible ink layer 7 on the aluminum-plated layer by using a digital printer;
7) carrying out fine aluminum washing to obtain a local aluminum plating layer 6;
8) coating a resin layer 8 below the corresponding invisible ink layer 7;
9) printing below the resin layer 8, wherein the printing position corresponds to the local hollow printing layer 4 to form a local printing layer 9;
10) applying color ink under the partial printing layer 9 to form a color layer 10;
11) and compounding the adhesive with the release paper layer 12 by using an adhesive, and die-cutting to obtain the mark.
Wherein:
the permanent molding information layer 2 and the positioning molding layer 3 in the above preparation method adopt a conventional electrochemical aluminum holographic process, and are not described in detail.
The release layer 5 is printed by adopting German ACMOS 101-.
In the step 3), the information of the variable information layer is designed in advance, and then the information of the variable information layer is divided into two parts, wherein one part is embodied in a printing mode, namely the local hollow printing layer 4; the other part is embodied by a partial aluminum coating layer 6; the local hollow printing layer 4 and the local aluminum-plated layer 6 are spliced together to form complete information.
The invisible ink layer 7 is printed by using invisible ink, and after the aluminum is finely washed, the aluminum covered by the invisible ink is not washed away, so that the local aluminum-plated layer 6 with the holographic effect is formed. The printing was done with a Hewlett packard digital printer.
The invisible ink is HP ElectroInk transient invisible ink.
In step 8), the resin layer 8 is coated with 4700 aqueous resin.

Claims (5)

1. A variable local holographic intelligent anti-counterfeiting mark is characterized in that: the multifunctional plastic film comprises a plastic film layer (1), a permanent mold pressing information layer (2), a positioning mold pressing layer (3), a resin layer (8), a local printing layer (9), a color layer (10) and an adhesive layer (11) which are sequentially arranged from top to bottom, wherein a local hollow printing layer (4) and a local aluminum plated layer (6) are arranged between the positioning mold pressing layer (3) and the resin layer (8), the local hollow printing layer (4) and the local aluminum plated layer (6) respectively contain partial variable information and form complete variable information after combination, the variable information contains two-dimensional codes, an invisible ink layer (7) is arranged below the corresponding local aluminum plated layer (6), the local hollow printing layer (4) corresponds to the local printing layer (9), and the information of the local printing layer (9) corresponds to the variable information.
2. The variable local holographic intelligent anti-counterfeiting mark according to claim 1, characterized in that: the plastic film layer (1) is a PET, PE, PP or PVC film with the thickness of 10-80 μm.
3. The variable local holographic intelligent anti-counterfeiting mark according to claim 1, characterized in that: and a release layer (5) is arranged between the local hollow printing layer (4) and the local aluminum plating layer (6).
4. The variable local holographic intelligent anti-counterfeiting mark according to claim 1, characterized in that: the information of the local printing layer (9) comprises an anti-counterfeiting digital code.
5. The variable local holographic intelligent anti-counterfeiting mark according to claim 1, characterized in that: and a release paper layer (12) is arranged below the adhesive layer (11).
CN201920610078.3U 2019-04-28 2019-04-28 Variable local holographic intelligent anti-counterfeiting mark Active CN209869774U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920610078.3U CN209869774U (en) 2019-04-28 2019-04-28 Variable local holographic intelligent anti-counterfeiting mark

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920610078.3U CN209869774U (en) 2019-04-28 2019-04-28 Variable local holographic intelligent anti-counterfeiting mark

Publications (1)

Publication Number Publication Date
CN209869774U true CN209869774U (en) 2019-12-31

Family

ID=68963326

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920610078.3U Active CN209869774U (en) 2019-04-28 2019-04-28 Variable local holographic intelligent anti-counterfeiting mark

Country Status (1)

Country Link
CN (1) CN209869774U (en)

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Address after: 256407 Shandong Zibo County, Huantai Province, north of the first sea

Patentee after: Shandong Taibao Information Technology Group Co., Ltd

Address before: 256407 Shandong Zibo County, Huantai Province, north of the first sea

Patentee before: SHANDONG TAIBAO PREVENTING COUNTERFEIT PRODUCT Co.,Ltd.