CN210110176U - Multilayer anti-counterfeit label - Google Patents
Multilayer anti-counterfeit label Download PDFInfo
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- CN210110176U CN210110176U CN201921021153.9U CN201921021153U CN210110176U CN 210110176 U CN210110176 U CN 210110176U CN 201921021153 U CN201921021153 U CN 201921021153U CN 210110176 U CN210110176 U CN 210110176U
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Abstract
The utility model relates to a multilayer antifalsification label, backing paper layer and from bottom to top set up RFID INLAY layers, bottom label and top layer label on backing paper layer according to the preface, and every structural layer one side down of definition is the reverse side, one side up for positive, wherein, the reverse side and the RFID INLAY layer of bottom label are compound, the front printing of bottom label has variable data anti-fake information, top layer label covers on the front of bottom label to cover variable data anti-fake information, and make this variable data anti-fake information unreadable, variable data anti-fake information is associated with RFID information, in order to be integrative with variable data and RFID are integrated.
Description
Technical Field
The utility model relates to an antifalsification label field specifically is a multilayer antifalsification label is related to.
Background
The common electronic tags are usually used by enterprises for realizing intelligent and efficient management of commodities, and need to be equipped with professional RFID reading equipment, but as ordinary consumers do not have the professional equipment, the enterprises lack channels for establishing interaction with the consumers, and only the common two-dimensional code tags are included, so that the intelligent storage function is not realized.
The applicant discloses an anti-counterfeiting label which has two-dimensional code and RFID functions and can simultaneously realize intelligent warehousing operation, anti-theft and pseudo-verification, traceability query and network marketing activities by combining a system, wherein the anti-counterfeiting label comprises an image-text printing covering layer, an unrecoverable bonding layer, a composite anti-counterfeiting information layer and base paper from top to bottom, the composite anti-counterfeiting information layer comprises a first material layer, a RFID INLAY area, a variable data anti-counterfeiting information area and a covering RFID glue layer, and variable data of the variable data anti-counterfeiting information area is associated with RFID information through collection. Both the security data and RFID INLAY of the security tag are printed on the same material layer, which makes the security tag defective in some use environments, such as the composite security information layer of the security tag cannot be provided with a security die cut (because of damage RFID INLAY).
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a multilayer antifalsification label to solve current antifalsification label's anti-fake data and RFID INLAY all print the problem on same material layer.
The specific scheme is as follows:
the utility model provides a multilayer antifalsification label, base paper layer and from bottom to top set up RFID INLAY layers, bottom label and top layer label on base paper layer according to the preface, and the one side down of every structural layer of definition is the reverse side, one side up for the front, wherein, the reverse side and the RFID INLAY layer of bottom label are compound, the front printing of bottom label has variable data anti-counterfeiting information, top layer label covers on the front of bottom label to cover variable data anti-counterfeiting information, and make this variable data anti-counterfeiting information unreadable, variable data anti-counterfeiting information is relevant with RFID information.
Further, the base label also has a safety die cut thereon which is destroyed when the base label is removed.
Further, the bottom layer label comprises a first material layer, a first printing layer printed on the front surface of the first material layer and a protective layer covered on the first printing layer.
Furthermore, the first printing layer is provided with an anti-counterfeiting data area and a prompt area, variable data anti-counterfeiting information is printed in the anti-counterfeiting data area, and prompt information is printed in the prompt area.
Further, the first material layer is a back adhesive material, and the reverse side of the first material layer is adhesive and is compounded with the RFID INLAY layers.
Further, the bottom layer label is integrally compounded on the front surface of the bottom paper layer after being compounded with the RFID INLAY layers.
Further, the protective layer is one of release silicone oil, a laminating film, a matte film and an optical film.
Further, top layer label and bottom label are compound through the glue layer, the glue layer includes glue area and leaves the type district, the coating has bonding glue in the glue area, the coating has from type oil from the type district.
Further, the adhesive glue in the glue area is removable glue.
Further, the surface layer label comprises a second material layer, a second printing layer printed on the front surface of the second material layer and a glue layer arranged on the back surface of the second material layer, wherein images and/or characters are printed on the second printing layer, and the variable data anti-counterfeiting information is covered by the images and/or characters.
The utility model provides a multilayer antifalsification label compares with prior art and has following advantage: the utility model provides a variable data printing among the multilayer antifalsification label is on the bottom label, and it sets up for solitary bed group separately with RFID INLAY layers for can carry out the processing such as safe cross cutting to the bottom label, and change in implementation.
Drawings
Fig. 1 shows a schematic structural diagram of a multilayer anti-counterfeit label.
Fig. 2 shows a schematic diagram of an underlying label.
Detailed Description
To further illustrate the embodiments, the present invention provides the accompanying drawings. The accompanying drawings, which are incorporated in and constitute a part of this disclosure, illustrate embodiments of the invention and, together with the description, serve to explain the principles of the embodiments. With these references, one of ordinary skill in the art will appreciate other possible embodiments and advantages of the present invention. Elements in the figures are not drawn to scale and like reference numerals are generally used to indicate like elements.
The present invention will now be further described with reference to the accompanying drawings and detailed description.
As shown in fig. 1, the present embodiment provides a multilayer anti-counterfeit label, which includes a base paper layer 10, and RFID INLAY layers 20, a base label 30 and a surface label 40 sequentially disposed on the base paper layer from bottom to top. For convenience of description, the downward side of each structural layer is defined as the reverse side, and the upward side of each structural layer is defined as the front side.
Wherein the reverse side of the bottom label 30 is laminated with the RFID INLAY layer 20, the front side of the bottom label 30 is printed with variable data security information, and the top label 40 is overlaid on the front side of the bottom label 30 to conceal the variable data security information and render the variable data security information unreadable, the variable data security information being associated with the RFID information.
The RFID INLAY layer is a prefabricated product which takes PET or PVC or other materials as a base material and contains a chip, an antenna and the like, can realize non-contact reading in an effective range of action distance, can realize intelligent goods shelves, goods receiving and dispatching operation, inventory checking and optimization through acquisition and recording, is convenient to track commodity dynamics, realizes automatic management of goods, and has two functions of theft prevention and anti-counterfeiting. The anti-counterfeiting data of the variable data anti-counterfeiting information can be variable data such as two-dimensional codes and texts, and can be unique codes generated by a corresponding system platform, so that each product not only has unique identity information, but also can be traced, imitated and verified by performing information acquisition and association in an application process. The variable data such as the two-dimensional code and the text can be linked to the verification interface of the corresponding system through scanning to perform anti-counterfeiting verification. For example, each scan, the system will prompt for a corresponding number of scans, and when the number of scans exceeds 1, the system will be wary of counterfeiting.
And the surface layer label 40 covers the front surface of the bottom layer label 30 to cover the variable data anti-counterfeiting information and make the variable data anti-counterfeiting information unreadable, thereby increasing the data tightness. Uncover scanning variable data with top layer label 40, combine the system platform, can carry out activities such as anti-fake verification, traceability inquiry and carry out network marketing, this multilayer anti-fake label collects variable data and RFID as an organic whole, can realize that the enterprise carries out the high-efficient management to commodity, can reach again and carry out the interdynamic with the terminal consumer, promotes secondary marketing to combine the platform system, realize big data acquisition and analysis.
Compared with the prior art that the anti-counterfeiting label prints the anti-counterfeiting data and RFID INLAY on the same material layer, the multi-layer anti-counterfeiting label in the embodiment prints the variable data on the bottom layer label 30, and the variable data and RFID INLAY layers are respectively arranged in a separate layer group, so that other processing, such as safety die cutting and the like, can be performed on the bottom layer label 30.
As a preferred embodiment of this embodiment, referring to fig. 1 and 2, the base label 30 also has a security die cut 330 thereon which can be damaged when the base label 30 is removed. The safety die cutting 330 is preferably arranged in the non-anti-counterfeiting data area, or mainly arranged in the non-anti-counterfeiting data area, and slightly arranged in the anti-counterfeiting data area, so that data damage in the processing or using process is prevented. The shape of the safety die cutting can be any line such as curve, straight line and the like, or the combination of the two, or the type of line-shaped characters and the like.
As another preferred embodiment of this example, referring to fig. 1, the bottom layer label 30 includes a first material layer 300, a first printing layer 310 printed on the front surface of the first material layer 300, and a protective layer 320 covered on the first printing layer, and the protective layer 320 can protect the printed information on the first printing layer 310 from being damaged or contaminated to be unreadable. The protective layer 320 may be one of release silicone oil, a film, a matte film, and an optical film.
Preferably, above-mentioned first printing layer 310 is last to have anti-fake data area and suggestion region, and the printing has variable data anti-fake information in the anti-fake data area, and the printing has suggestion information in the suggestion region, and anti-fake data area like in fig. 2 is located the central zone of first printing layer 310, and the printing has the two-dimensional code, and the suggestion region then is located the side in anti-fake data area, and the suggestion information can be for example "tear invalid", "VOIDOPEN", brand LOGO type continuity suggestion typeface, and the user of being convenient for knows the user state of label.
It is further preferred that first material layer 300 be an adhesive-backed material, i.e., the opposite side of first material layer 300 is adhesive and is laminated to layer RFID INLAY to facilitate lamination between the bottom layer label 30 and layer RFID INLAY 20. More preferably, the bottom label 30 is integrally formed with the RFID INLAY layer 20 and then integrally formed on the front side of the bottom paper layer 10.
As another preferred embodiment of this embodiment, referring to fig. 1, the surface layer label 40 and the bottom layer label 30 are compounded by a glue layer 400, the glue layer 400 includes a glue area 402 and a release area 404, wherein the glue area 402 is coated with a bonding glue, the release area 404 is coated with a release oil, the surface layer label 40 is not bonded with the bottom layer label 30 in the release area 404, the release area 404 is preferably disposed on one side of the label edge, since the release silicone oil is coated, the material viscosity is reduced, which is more convenient for a user to uncover the surface layer label along the edge, and view the data information on the bottom layer label. Preferably, the adhesive in the glue area 402 is removable so that the adhesive will not remain on the bottom label 30 after the top label 40 is peeled off and affect the reading and viewing of the data thereon.
Preferably, the surface label 40 includes a second material layer 410, a second printing layer 420 printed on the front surface of the second material layer 410, and a glue layer 400 arranged on the back surface of the second material layer 410, that is, the glue layer is arranged on the back surface of the second material layer 410, and the second printing layer 420 is printed with images and/or characters, which cover the variable data anti-counterfeiting information on the bottom label, and make the variable data anti-counterfeiting information on the bottom label 30 unreadable without uncovering the surface label 40, thereby increasing the data tightness. The second material layer 410 is preferably made of synthetic paper, PET, PE, or other materials with good toughness and good tear resistance, and the protective layer 320 on the bottom label can make the surface label 40 easy to be uncovered without damage and adhesive damage to the bottom label.
While the invention has been particularly shown and described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes in form and detail may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.
Claims (10)
1. A multilayer antifalsification label is characterized in that: the base paper layer and from bottom to top set up RFIDINLAY layers, bottom label and top layer label on the base paper layer according to the preface, the one side down of every structural layer of definition is the reverse side, up one side is positive, wherein, the reverse side and the RFID INLAY layer of bottom label are compound, the front printing of bottom label has variable data anti-fake information, top layer label covers on the front of bottom label to cover variable data anti-fake information, and make this variable data anti-fake information unreadable, variable data anti-fake information is relevant with RFID information.
2. The multilayer security label according to claim 1, wherein: the base label also has a safety die cut thereon which is destroyed when the base label is removed.
3. The multilayer security label according to claim 1, wherein: the bottom layer label comprises a first material layer, a first printing layer printed on the front surface of the first material layer and a protective layer covered on the first printing layer.
4. The multilayer security label according to claim 3, wherein: the first printing layer is provided with an anti-counterfeiting data area and a prompt area, variable data anti-counterfeiting information is printed in the anti-counterfeiting data area, and prompt information is printed in the prompt area.
5. The multilayer security label according to claim 3, wherein: the first material layer is a gum material, and the reverse side of the first material layer is sticky and is compounded with the RFID INLAY layers.
6. The multilayer security label according to claim 5, wherein: the bottom layer label is compounded with the RFID INLAY layers and then integrally compounded on the front surface of the bottom paper layer.
7. The multilayer security label according to claim 3, wherein: the protective layer is one of release silicone oil, a laminating film, a matte film and an optical film.
8. The multilayer security label according to claim 1, wherein: surface layer label and bottom label carry out the complex through the glue layer, the glue layer includes the glue district and leaves the type district, the coating has bonding glue in the glue district, the coating has from type oil from the type district.
9. The multilayer security label according to claim 8, wherein: the bonding glue in the glue area is removable glue.
10. The multilayer security label according to claim 8, wherein: the surface layer label comprises a second material layer, a second printing layer printed on the front surface of the second material layer and a glue layer arranged on the back surface of the second material layer, wherein images and/or characters are printed on the second printing layer, and the variable data anti-counterfeiting information is covered by the images and/or characters.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921021153.9U CN210110176U (en) | 2019-07-03 | 2019-07-03 | Multilayer anti-counterfeit label |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921021153.9U CN210110176U (en) | 2019-07-03 | 2019-07-03 | Multilayer anti-counterfeit label |
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CN210110176U true CN210110176U (en) | 2020-02-21 |
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CN201921021153.9U Active CN210110176U (en) | 2019-07-03 | 2019-07-03 | Multilayer anti-counterfeit label |
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2019
- 2019-07-03 CN CN201921021153.9U patent/CN210110176U/en active Active
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