Radio frequency tag easy to transfer
By combining the RFID tag layer with the release paper, and utilizing the difference in adhesive strength and the cutting line structure, the problem of difficult RFID tag transfer is solved, enabling efficient and convenient tag transfer applications.
Patent Information
- Application Number
- CN202423155913.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Existing RFID tags are difficult to remove from their original objects and transfer to other objects for application, and they are easily damaged.
The design combines an RFID tag layer with a first release paper. The RFID tag layer is transferred by adhering it to the release surface of the release paper and the object surface using self-adhesive. The difference in adhesive force of the release paper is used to transfer the RFID tag layer. The separation efficiency is improved by combining the cutting line structure of the release paper.
It enables efficient and convenient transfer of RFID tag layers on different object surfaces, ensuring tag integrity and improving separation efficiency.
Smart Images

Figure CN223526722U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to an easy to transfer radio frequency label belongs to radio frequency label technical field. BACKGROUND
[0002] Radio frequency label is a kind of non-contact automatic identification technology, radio frequency label can be read in a certain range without contact, and multiple labels can be read simultaneously, identification efficiency is high, and radio frequency label is widely used in logistics management (tracking cargo position), retail (commodity anti-theft, inventory management), traffic (vehicle identification) and many other fields.
[0003] In some special application occasions such as not networking between systems, radio frequency label needs to be torn off from the original object after being read for the first time, and then transferred to other places for re-reading application, that is, radio frequency label needs to be transferred and re-set, but most of the existing radio frequency labels are designed with the goal of firm pasting, and it is difficult to remove the radio frequency label once it is pasted on the surface of the object, and even in the process of removing, the radio frequency label may be damaged, so the existing radio frequency label does not have the convenience of transfer and re-application. UTILITY MODEL CONTENT
[0004] The technical problem to be solved by the utility model is to provide an easy-to-transfer radio frequency label, which adopts a combined and pasted design structure with release paper to quickly realize the transfer application of the radio frequency label layer between different object surfaces.
[0005] The utility model discloses a kind of easy-to-transfer radio frequency labels to solve the above technical problems using the following technical solutions: the utility model designs a kind of easy-to-transfer radio frequency label, including radio frequency label layer and first release paper, wherein one surface of radio frequency label layer is pasted on the release surface of first release paper by adhesive sticker, and along the projection direction perpendicular to the surface of radio frequency label layer, the projection of radio frequency label layer is located in the projection of first release paper, based on the lower surface of first release paper pasted on the surface of first object by adhesive sticker, the setting of radio frequency label layer about the surface of first object is realized, and the adhesion between the lower surface of first release paper and the surface of first object is greater than the adhesion between the release surface of first release paper and the surface of radio frequency label layer, and based on the separation between the surface of radio frequency label layer and the release surface of first release paper, radio frequency label layer is further pasted on the surface of second object by adhesive sticker on its surface for pasting with the release surface of first release paper, to realize the transfer of radio frequency label layer from the surface of first object to the surface of second object.
[0006] As a preferred technical scheme of the utility model: the surface of first release paper is provided with cutting line penetrating through two opposite edges, the non dry adhesive provided on the lower surface of first release paper is located on one side region of the lower surface corresponding to the cutting line, the side provided with non dry adhesive on the first release paper opposite to the cutting line is defined as main side, the other side of the first release paper opposite to the cutting line is defined as auxiliary side, the main side region of the lower surface of first release paper is adhered to the surface of first object based on non dry adhesive, the setting of radio frequency tag layer about the surface of first object is realized, and in the projection direction perpendicular to the surface of radio frequency tag layer, the region on the surface of radio frequency tag layer adhered with the auxiliary side region of first release paper projects within the projection of auxiliary side region of first release paper; based on the separation between the surface of radio frequency tag layer and the main side region of release surface of first release paper, and the separation of main side region and auxiliary side region of first release paper along the cutting line, the radio frequency tag layer is further adhered to the surface of second object through the non dry adhesive on its surface for adhering with the main side region of release surface of first release paper, realizing the transfer of radio frequency tag layer from the surface of first object to the surface of second object.
[0007] As a preferred technical scheme of the utility model: it further includes second release paper, non dry adhesive is arranged on the whole region of the lower surface of first release paper, and the auxiliary side region of the lower surface of first release paper is adhered to the release surface of second release paper through non dry adhesive, and in the projection direction perpendicular to the surface of radio frequency tag layer, the projection of main side region of first release paper does not overlap with the projection region of second release paper.
[0008] The utility model usually further includes face material layer, and the face material layer is covered and arranged on the surface of radio frequency tag layer in the direction away from first release paper, and the surface of face material layer in the direction away from radio frequency tag layer is used for protecting radio frequency tag layer, and can also be used for carrying text and pattern information.
[0009] Compared with the prior art, the radio frequency tag easy to transfer has the following technical effects by adopting the above technical scheme:
[0010] The utility model discloses a kind of radio frequency tags easy to transfer, design first release paper release surface adheres radio frequency tag layer by non dry adhesive, first object surface is adhered by first release paper lower surface through non dry adhesive first, it is realized that radio frequency tag layer is adhered on second object surface by the separation of radio frequency tag layer and first release paper release surface, complete the transfer application of radio frequency tag layer;Further based on the cutting line structure of first release paper surface in application, first release paper lower surface partial region is adhered to first object surface by non dry adhesive, constitute radio frequency tag flag application, improve the efficiency of radio frequency tag flag and first object surface separation, in actual application, under the condition that radio frequency tag is complete, the transfer application of radio frequency tag on different object surface is efficiently and conveniently realized. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1It is the structure schematic view of the radio frequency tag easy to transfer designed by the utility model.
[0012] Among them, 1. radio frequency tag layer, 2. first release paper, 3. adhesive, 4. cutting line, 5. second release paper, 6. mark layer. DETAILED DESCRIPTION
[0013] The specific embodiment of the utility model is further explained in detail in combination with the drawings of the specification.
[0014] The utility model discloses a radio frequency tag easy to transfer, in practical application, such as Figure 1 As shown, the basic structure includes radio frequency tag layer 1 and first release paper 2, wherein one surface of radio frequency tag layer 1 is pasted on the release surface of first release paper 2 through adhesive 3, and along the projection direction perpendicular to the surface of radio frequency tag layer 1, the projection of radio frequency tag layer 1 is located in the projection of first release paper 2, and the lower surface of first release paper 2 is pasted on the surface of first object based on adhesive 3, realizing the setting of radio frequency tag layer 1 about the surface of first object, and the adhesive force between the lower surface of first release paper 2 and the surface of first object is greater than the adhesive force between the release surface of first release paper 2 and the surface of radio frequency tag layer 1, and based on the separation between the surface of radio frequency tag layer 1 and the release surface of first release paper 2, radio frequency tag layer 1 is further pasted on the surface of second object through adhesive 3 on its surface for pasting the release surface of first release paper 2, realizing the transfer of radio frequency tag layer 1 from the surface of first object to the surface of second object.
[0015] Among them, about the design that the projection of radio frequency tag layer 1 is located in the projection of first release paper 2, when the projection of radio frequency tag layer 1 is less than the projection of first release paper 2, in practical application, it is convenient to find the separation position between the edge of radio frequency tag layer 1 and the release surface of first release paper 2, and further realize the separation of radio frequency tag layer 1 whole and the release surface of first release paper 2, improve the separation efficiency of radio frequency tag layer 1.
[0016] In practical application, such as Figure 1As shown, the surface of the first release paper 2 is further designed with a cutting line 4 penetrating through two opposite edges thereof, the adhesive 3 provided on the lower surface of the first release paper 2 is located on one side region of the lower surface corresponding to the cutting line 4, and the side of the adhesive 3 provided on the first release paper 2 opposite to the cutting line 4 is defined as a main side, and the other side of the first release paper 2 opposite to the cutting line 4 is defined as a secondary side, the main side region of the lower surface of the first release paper 2 is adhered to the surface of the first object by the adhesive 3, so as to realize the arrangement of the radio frequency tag layer 1 on the surface of the first object, and in the projection direction perpendicular to the surface of the radio frequency tag layer 1, the region of the surface of the radio frequency tag layer 1 adhered to the secondary side region of the first release paper 2 is projected within the projection of the secondary side region of the first release paper 2; based on the separation between the surface of the radio frequency tag layer 1 and the main side region of the release surface of the first release paper 2, and the separation of the main side region and the secondary side region of the first release paper 2 along the cutting line 4, the radio frequency tag layer 1 is further adhered to the surface of the second object by the adhesive 3 on the surface thereof used for adhering to the main side region of the release surface of the first release paper 2, so as to realize the transfer of the radio frequency tag layer 1 from the surface of the first object to the surface of the second object.
[0017] In actual application, the main side region of the lower surface of the first release paper 2 is provided with the adhesive 3 for adhering to the surface of the first object, and the secondary side region of the lower surface of the first release paper 2 is not provided with the adhesive 3, i.e., the secondary side region of the lower surface of the first release paper 2 is not adhered to the surface of the first object, so that in application, the radio frequency tag flag is formed, i.e., a part is adhered to the object, and the other part is not adhered to the object, when the transfer of the radio frequency tag flag is needed, the secondary side region of the first release paper 2 and the part of the radio frequency tag layer 1 adhered thereto are only needed to be gripped, and the separation between the radio frequency tag layer 1 and the main side region of the release surface of the first release paper 2, and the separation of the main side region and the secondary side region of the first release paper 2 along the cutting line 4 are only needed to be realized, so that the separation between the radio frequency tag layer 1 and the surface of the first object can be realized efficiently and quickly, and the searching for the separation position between the edge of the radio frequency tag layer 1 and the release surface of the first release paper 2 is directly saved, and the separation efficiency is improved.
[0018] In the actual transfer application of the above-mentioned RFID tag flag, on the one hand, the RFID tag layer 1 is adhered to the surface of the second object through the self-adhesive 3 corresponding to the main side area of the release surface of the first release paper 2, and continues to be used as an RFID tag flag; on the other hand, separation can be performed between the secondary side area of the release surface of the first release paper 2 and the RFID tag layer 1. The part of the RFID tag layer 1 corresponding to the secondary side area of the release surface of the first release paper 2 is also adhered to the surface of the second object through the self-adhesive 3 corresponding to the secondary side area of the release surface of the first release paper 2, that is, the application of the RFID tag flag is cancelled and replaced with the application of ordinary RFID tag. In this process, when the projection of the area where the surface of the RFID tag layer 1 is adhered to the secondary side area of the first release paper 2 is smaller than the projection of the secondary side area of the first release paper 2, it is easier to find the separation position between the edge of the RFID tag layer 1 and the secondary side area of the release surface of the first release paper 2, and further realize the separation of the RFID tag layer 1 and the secondary side area of the release surface of the first release paper 2, thereby improving the separation efficiency of the RFID tag layer 1.
[0019] Further design of the above structure, in the application process where the lower surface of the first release paper 2 is adhered to the surface of the first object using self-adhesive 3, such as... Figure 1 As shown, a second release paper 5 is further designed. The entire lower surface of the first release paper 2, including both the main and secondary side areas, is covered with adhesive 3. The secondary side area of the lower surface of the first release paper 2 is adhered to the release surface of the second release paper 5 using the adhesive 3. Furthermore, along the projection direction perpendicular to the surface of the RFID tag layer 1, the projection of the main side area of the first release paper 2 does not overlap with the projection area of the second release paper 5. In practical applications of this design, when laying the adhesive 3 on the lower surface of the first release paper 2, there is no need to consider specific local areas for laying; a complete laying is adopted, resulting in higher efficiency. In application, the addition of the second release paper 5 can cover other areas of the lower surface of the first release paper 2, allowing a portion of the lower surface of the first release paper 2 to be adhered to the surface of the first object. In further practical applications, if the application of the RFID tag is not required when transferring to the surface of a second object, the second release paper 5 and the first release paper 2 can be completely separated from the RFID tag layer 1, directly achieving the adhesion of the entire RFID tag layer 1 to the surface of the second object.
[0020] The RFID tag designed in this utility model can be used in practical applications, such as... Figure 1 As shown, a marking layer 6 can be further designed to cover the surface of the RFID tag layer 1 facing away from the first release paper 2. The surface of the marking layer 6 facing away from the RFID tag layer 1 is used to mark information.
[0021] The utility model discloses a first release paper 2 release surface is pasted radio frequency label layer 1 through the non -dry glue 3, first through the first release paper 2 lower surface is pasted the first object surface through the non -dry glue 3, and then is separated through the radio frequency label layer 1 and the release surface of first release paper 2, realizes the pasting of radio frequency label layer 1 on the second object surface, completes the transfer application of radio frequency label layer 1, further based on the cutting line 4 structure of first release paper 2 surface in application, design first release paper 2 lower surface partial region is pasted the first object surface through the non -dry glue 3, constitutes radio frequency label flag application, improves the efficiency of radio frequency label flag and the separation of first object surface, in practical application, under the condition of guaranteeing radio frequency label complete, can efficiently and conveniently realize the transfer application of radio frequency label on the surface of different objects.
[0022] The above detailed description of the embodiments of the utility model has been made in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge possessed by those of ordinary skill in the art without departing from the purpose of the utility model.
Claims
1. A radio frequency tag that is easy to transfer, characterized by: The application relates to a radio frequency tag layer (1) and a first release paper (2), wherein one surface of the radio frequency tag layer (1) is pasted on the release surface of the first release paper (2) through non-dry adhesive (3), and the projection of the radio frequency tag layer (1) is located in the projection of the first release paper (2) along the projection direction perpendicular to the surface of the radio frequency tag layer (1); the lower surface of the first release paper (2) is pasted on the surface of the first object through non-dry adhesive (3), the radio frequency tag layer (1) is arranged relative to the surface of the first object, and the adhesive force between the lower surface of the first release paper (2) and the surface of the first object is greater than the adhesive force between the release surface of the first release paper (2) and the surface of the radio frequency tag layer (1).
2. The easy-to-transfer radio frequency tag of claim 1, wherein: The surface of the first release paper (2) is provided with a cutting line (4) penetrating through two opposite edges, the non-dry adhesive (3) arranged on the lower surface of the first release paper (2) is located on one side region of the lower surface corresponding to the cutting line (4), the side of the first release paper (2) corresponding to the non-dry adhesive (3) arranged on the opposite side of the cutting line (4) is defined as the main side, and the other side of the first release paper (2) is defined as the auxiliary side; the main side region of the lower surface of the first release paper (2) is pasted on the surface of the first object through non-dry adhesive (3), the radio frequency tag layer (1) is arranged relative to the surface of the first object, and the projection of the region on the surface of the radio frequency tag layer (1) corresponding to the auxiliary side region of the first release paper (2) is located in the projection of the auxiliary side region of the first release paper (2) along the projection direction perpendicular to the surface of the radio frequency tag layer (1); the radio frequency tag layer (1) is further pasted on the surface of the second object through the non-dry adhesive (3) arranged on the surface of the radio frequency tag layer (1) and used for pasting the main side region of the release surface of the first release paper (2), the radio frequency tag layer (1) is transferred from the surface of the first object to the surface of the second object through the separation between the surface of the radio frequency tag layer (1) and the main side region of the release surface of the first release paper (2) and the separation between the main side region and the auxiliary side region of the first release paper (2) along the cutting line (4).
3. The easily transferable radio frequency tag of claim 2, wherein: The application further relates to a second release paper (5), the non-dry adhesive (3) is arranged on the whole region of the lower surface of the first release paper (2), the auxiliary side region of the lower surface of the first release paper (2) is pasted on the release surface of the second release paper (5) through non-dry adhesive (3), and the projection of the main side region of the first release paper (2) does not overlap the projection region of the second release paper (5) along the projection direction perpendicular to the surface of the radio frequency tag layer (1).