Anti-transfer fragile label
By setting information layers of different viscosities in the anti-counterfeiting label, the problem of the label being easily peeled off and transferred is solved, achieving the anti-transfer effect of the label and protecting the legitimate rights and interests of merchants and consumers.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2026-03-31
AI Technical Summary
Existing anti-counterfeiting labels are easily peeled off and transferred to counterfeit goods, making it difficult to distinguish between genuine and fake products and harming the legitimate rights and interests of merchants and consumers.
Design a transfer-resistant fragile label by setting first and second information layers with different viscosities between the PET film layer and the isolation layer. The viscosity difference causes the label to separate when peeled off, forming a defective and unusable label, thus increasing the difficulty of transfer.
Effectively prevents labels from being transferred to counterfeit goods, protects the legitimate rights and interests of merchants and consumers, and improves the anti-counterfeiting effect and difficulty of use of labels.
Smart Images

Figure CN224067336U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of label technology, specifically to a transfer-resistant fragile label. Background Technology
[0002] Anti-counterfeiting labels, also known as anti-counterfeiting tags, are labels that can be affixed, printed, or transferred to the surface of a product, its packaging, or its accessories (such as product tags, business cards, and anti-counterfeiting certificates) to prevent counterfeiting. The purpose of anti-counterfeiting labels is to distinguish genuine products from counterfeit ones, preventing counterfeit and substandard products from entering the market.
[0003] Currently, most anti-counterfeiting labels are made of PET material, and they are usually placed on the outer surface of the product. This allows counterfeiters to easily peel off the labels and stick them on counterfeit goods for sale, making it difficult to distinguish between genuine and counterfeit products. This harms the legitimate rights and interests of merchants and consumers, disrupts market order, and causes serious economic losses to product manufacturers. Utility Model Content
[0004] This invention proposes a transfer-resistant fragile label, making it difficult for counterfeiters to easily remove the label, thus protecting the legitimate rights and interests of merchants and consumers.
[0005] The technical solution of this utility model is as follows: a transfer-resistant fragile label, comprising a PET film layer and a substrate layer, wherein an isolation layer is provided at the bottom of the PET film layer, and a second printing layer is provided between the isolation layer and the substrate layer, the second printing layer comprising a first information layer and a second information layer, wherein the side of the first information layer is bonded to the side of the second information layer, and the viscosity between the first information layer and the isolation layer is greater than the viscosity between the second information layer and the isolation layer.
[0006] Furthermore, a first printed layer is bonded between the PET film layer and the isolation layer, and the viscosity of the first printed layer 102 and the isolation layer is less than the viscosity of the second printed layer and the isolation layer.
[0007] Furthermore, both sides of the first printing layer are provided with paddles, which are integrally formed with the first printing layer.
[0008] Furthermore, the distance between the farthest end of the paddle and the side of the first printed layer is 1cm-2cm.
[0009] Furthermore, the isolation layer has positioning grooves on both the upper and lower sides, and the two positioning grooves are staggered. The first printing layer and the second printing layer have positioning blocks on the side near the second PET film, and the positioning blocks are slidably connected to the inner wall of the positioning groove.
[0010] Furthermore, the first information layer is bonded to the substrate layer with adhesive, which is a disposable adhesive.
[0011] The working principle and beneficial effects of this utility model are as follows:
[0012] This invention divides the second printing layer into a first information layer and a second information layer, making the second printing layer composed of multiple information layers. The viscosity between the first information layer and the isolation layer is greater than the viscosity between the second information layer and the isolation layer. Thus, when criminals attempt to peel off the label, due to the different viscosities between the first information layer, the second information layer, and the isolation layer, the first information layer is more easily separated from the isolation layer, rather than being peeled off entirely from the substrate layer, while the second information layer remains on the substrate layer. Since the peeled label is incomplete and unusable, this effectively prevents criminals from transferring the label to counterfeit goods, protecting the legitimate rights and interests of merchants and consumers. Attached Figure Description
[0013] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0014] Figure 1 This is a schematic diagram of the structure of this utility model;
[0015] Figure 2 This is a cross-sectional view of the present invention;
[0016] Figure 3 for Figure 2 Enlarged diagram of point A in the middle.
[0017] In the diagram: 1. Label; 101. PET film layer; 102. First printing layer; 1021. Paddle; 103. Separation layer; 1031. Positioning groove; 132. Positioning block; 104. Second printing layer; 1041. First information layer; 1042. Second information layer; 105. Substrate layer. Detailed Implementation
[0018] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this utility model.
[0019] refer to Figure 1-3 A transfer-resistant fragile label includes a PET film layer 101 and a substrate layer 105. The substrate layer 105 can be made of paper substrate or polyester, which is prior art well known to those skilled in the art, and therefore will not be described in detail.
[0020] A separating layer 103 is provided at the bottom of the PET film layer 101. A second printing layer 104 is provided between the separating layer 103 and the substrate layer 105. The second printing layer 104 includes a first information layer 1041 and a second information layer 1042. In actual processing, the second printing layer 104 can be cut into fragments using a cutting tool. The cut second printing layer 104 is then divided into the first information layer 1041 and the second information layer 1042. Subsequently, the first information layer 1041 and the second information layer 1042 are bonded to the substrate layer 105 to form a complete label. It should be noted that the second printing layer 104 can be cut into four, six, eight, or even more parts to increase the difficulty of label transfer. However, the more parts it is cut into, the more difficult it is to splice the second printing layer 104. Therefore, for ease of processing, this embodiment uses the example of cutting the second printing layer 104 into two parts, namely the first information layer 1041 and the second information layer 1042.
[0021] The first information layer 1041 is bonded to the side of the second information layer 1042. The viscosity between the first information layer 1041 and the isolation layer 103 is greater than the viscosity between the second information layer 1042 and the isolation layer 103, while the viscosity between the first information layer 1041 and the substrate layer 105 is less than the viscosity between the second information layer 1042 and the substrate layer 105.
[0022] When attempting to transfer label 1, the first information layer 1041 may separate from the substrate layer 105 first, while the second information layer 1042 remains adhered to the substrate layer 105, making it impossible to transfer label 1 completely. This increases the difficulty and complexity of the transfer. It is worth noting that the first information layer 1041 and the second information layer 1042 on the second printing layer 104 can be set to three, four, or more to increase the difficulty for criminals to peel off label 1. This embodiment does not specifically limit this. At the same time, the adhesive force between the substrate layer 105 and the product should be greater than the adhesive force between the second information layer 1042 and the substrate layer 105, so that it is difficult for criminals to tear off the substrate layer 105 as a whole.
[0023] Furthermore, a first printed layer 102 is also bonded between the PET film layer and the isolation layer 103. The viscosity of the first printed layer 102 and the isolation layer 103 is less than the viscosity of the second printed layer 104 and the isolation layer 103.
[0024] The first printed layer 102 and the second printed layer 104 can be made of polyester, polypropylene, or other materials. Furthermore, the PET film layer 101 and the release layer 103 should be transparent. The PET film layer 101, the first printed layer 102, the second printed layer 104, the release layer 103, and the substrate layer 105 can be bonded together with adhesive. Polyurethane (PU) adhesive can be used, as it has strong adhesion and weather resistance.
[0025] By setting a first printing layer 102 and a second printing layer 104, workers can print part of the product information on the surface of the first printing layer 102 and the other part on the surface of the second printing layer 104 when printing product information. Then, the first printing layer 102 is overlapped with the second printing layer 104, which has a release layer 103, allowing users to view the complete product information on the front of the label 1. Because the first printing layer 102, the second printing layer 104, and the release layer 103 have different viscosities, when criminals peel off the label 1, the first printing layer 102 and the release layer 103 are more easily separated, rather than being peeled off entirely from the substrate layer 105. The peeled label 1, due to incomplete information, cannot be used further, thus enabling the label 1 to self-destruct, further preventing criminals from affixing the label 1 to counterfeit goods.
[0026] Furthermore, pry bars 1021 are provided on both sides of the first printed layer 102, and the pry bars 1021 are integrally formed with the first printed layer 102. These pry bars 1021 can mislead criminals into believing that the label 1 is torn off from the pry bar 1021, thus playing a certain guiding role and making the operation of damaging the label 1 more controllable. However, when the label 1 is torn off from the pry bar 1021, because the adhesive force between the first printed layer 102 and the isolation layer 103 is less than the adhesive force between the second printed layer 104 and the isolation layer 103, the first printed layer 102 will directly detach from the surface of the isolation layer 103, resulting in criminals obtaining incomplete information about the label 1. In addition, the integrally formed pry bars 1021 and the first printed layer 102 are more flat and smooth in appearance, without obvious splicing marks, thus ensuring the consistency and aesthetics of the overall appearance of the label 1, further inducing criminals.
[0027] Furthermore, the distance between the farthest end of the pry bar 1021 and the side of the first printed layer 102 is set to 1cm to 2cm. This distance ensures that the pry bar 1021 has sufficient length for criminals to grip and apply force, while also avoiding affecting the overall aesthetics and ease of use of the label 1 due to excessive length. In this way, the pry bar 1021 is set more reasonably and does not appear abrupt, enhancing the authenticity of the label 1 and further enticing criminals.
[0028] In this embodiment, positioning grooves 1031 are provided on both the upper and lower sides of the isolation layer 103, and the two positioning grooves 1031 are staggered. Positioning blocks 132 are provided on the side of the first printing layer 102 and the second printing layer 104 closest to the isolation layer. The positioning blocks 132 are slidably connected to the inner wall of the positioning grooves 1031. The cooperation between the positioning grooves 1031 and the positioning blocks 132 ensures accurate relative positioning between the first printing layer 102, the second printing layer 104, and the second PET film layer. This facilitates precise bonding of each layer during production, ensuring the overall quality and smoothness of the label 1, and improving production efficiency and product consistency. Furthermore, staggering the positioning grooves 1031 on both sides of the isolation layer 103 avoids placing the positioning grooves 1031 on the same side of the isolation layer 103, thus increasing the thickness of the isolation layer 103 and enhancing its overall durability.
[0029] Furthermore, the first information layer 1041 is bonded to the substrate layer 105 with adhesive. This adhesive is a one-time use adhesive, and its rapid curing properties ensure that the first information layer 1041 and the substrate layer 105 are quickly and firmly bonded together, preventing the first information layer 1041 from easily detaching or shifting during the use of the label 1. Moreover, because the one-time use adhesive has high bonding strength after curing, it is difficult to separate once bonded, further strengthening the connection between the first information layer 1041 and the substrate layer 105 and enhancing the anti-transfer performance of the label 1.
[0030] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A transfer-resistant, frangible label, characterized in that The PET film layer (101) is provided with an isolation layer (103) at the bottom, and a second printing layer (104) is arranged between the isolation layer (103) and the substrate layer (105), wherein the second printing layer (104) comprises a first information layer (1041) and a second information layer (1042), the side of the first information layer (1041) is bonded to the side of the second information layer (1042), and the viscosity of the first information layer (1041) and the isolation layer (103) is greater than the viscosity of the second information layer (1042) and the isolation layer (103).
2. A non-transferable, frangible label according to claim 1, wherein: The first printing layer (102) is bonded between the PET film layer (101) and the isolation layer (103), and the viscosity of the first printing layer (102) and the isolation layer (103) is less than the viscosity of the second printing layer (104) and the isolation layer (103).
3. A tamper-evident label according to claim 2, wherein: Both sides of the first printing layer (102) are provided with a dial piece (1021), and the dial piece (1021) is integrally formed with the first printing layer (102).
4. A tamper-evident label (1) according to claim 3, characterised in that: The distance between the farthest end of the dial piece (1021) and the side of the first printing layer (102) is 1cm-2cm.
5. A tamper-evident label according to claim 2, wherein: Both upper and lower sides of the isolation layer (103) are provided with positioning grooves (1031), and the two positioning grooves (1031) are staggered, and the side of the first printing layer (102) and the second printing layer (104) close to the isolation layer (103) is provided with a positioning block (132), and the positioning block (132) is slidably connected with the inner wall of the positioning groove (1031).
6. A tamper-evident label according to claim 5, wherein: The first information layer (1041) is bonded with the substrate layer (105) by glue, and the glue is disposable glue.