Label structure convenient and easy to process
By using a multi-layered label design, the problem of easy breakage of the film structure during the winding process was solved, achieving high strength and easy processing of the label structure, and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202422147429.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-09-03
AI Technical Summary
Existing thin film structures are prone to breakage during the winding process, resulting in low processing efficiency and difficulty in meeting production needs.
The label design employs a multi-layer structure, including a label layer, a connecting layer, and a carrier layer. The connecting layer connects the label layer and the carrier layer. The connecting layer is used for die-cutting by the receiving device, and the carrier layer is used to support the label and prevent breakage. The label layer is made of pearlescent BOPP material for easy printing.
This improved the strength and processing efficiency of the label structure, reduced the risk of breakage, and enhanced product quality.
Smart Images

Figure CN223539282U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of labeling technology, and more specifically, to a label structure that is easy to process. Background Technology
[0002] Self-adhesive labels have advantages over traditional labels, such as no need for glue, paste, or water, no pollution, and time-saving application. They are widely used and convenient. Self-adhesive labels are a type of material, also called self-adhesive label material. They are composite materials with paper, film, or other special materials as the face stock, adhesive coating on the back, and silicone-coated release paper as the backing paper. After processing such as printing and die-cutting, they become finished labels.
[0003] In the prior art, application number CN111909631B describes a method for manual labeling, characterized by the following steps: S1: Measuring the circumference and height of the rewinding roller in a large rewinding machine; S2: Assuming one side of the rewinding roller is the bottom surface, with the center of the bottom surface as the center, the bottom surface is divided into multiple equal sectors according to the different film length requirements of the customer, such that the arc length of the sector is equal to the required film length, and a length mark is made on the body of the rewinding roller at the corresponding arc length of the sector; S3: Based on the marked length mark, the length mark can be divided into n equal parts (n is a natural number) according to the different film width requirements of the customer, such that the width of each equal part is equal to the required film width, and a cross mark is made at each equal part; S4: During the film rewinding process of the rewinding roller, a label is affixed to the film at the position corresponding to the length mark and / or cross mark; S5: The film is cut according to the affixed label to obtain the film size required by the customer.
[0004] Since existing film structures are mostly single-layer films connected to labels, they are prone to breakage when using the above methods for recovery, resulting in low recovery efficiency and difficulty in processing and production.
[0005] In view of this, the present invention proposes a label structure that is easy to manufacture and process, has high structural strength, and is easy to process. Utility Model Content
[0006] In view of this, in order to solve the problem of easy breakage during the reassembly of existing film structures, this utility model proposes a label structure that is easy to process. The bottom film includes a connecting layer 2 and a carrier layer 3. From top to bottom, there are label layer 1, connecting layer 2 and carrier layer 3. The carrier layer 3 has at least one layer. The label layer 1 is connected to the label layer 1 through the connecting layer 2. The connecting layer 2 is used for partial die-cutting by the receiving device to ensure that the carrier layer 3 is not damaged and to connect the two ends of the label layer 1, connecting layer 2 and carrier layer 3. At the same time, the carrier layer 3 is used to support the connecting layer 2 to ensure that it is not easy to break during reassembly, which greatly improves the strength of the label structure. In addition, the label layer 1 is made of pearlescent BOPP material, which is easy to print and not easy to smudge, greatly improving the product quality.
[0007] A label structure that is easy to process includes a base film and a label layer 1, with the base film connected to the label layer 1. The base film includes a connecting layer 2 and a carrier layer 3. The label layer 1, connecting layer 2, and carrier layer 3 are arranged sequentially from top to bottom. The carrier layer 3 has at least one layer. The label layer 1 is connected to the label layer 1 via the connecting layer 2. The surface where the connecting layer 2 connects to the label layer 1 is adhesive. The label layer 1 has a thickness of 0.035 mm. The connecting layer 2 is used for die-cutting by the receiving device to ensure that the carrier layer 3 is not damaged and to connect the two ends of the label layer 1, connecting layer 2, and carrier layer 3. The carrier layer 3 supports the connecting layer 2 to prevent breakage during reassembly.
[0008] In some embodiments, the label layer 1 includes a base layer, a paint layer, and a printing layer. The base layer is connected to the support layer 3 through a connecting layer 2. A paint layer is provided above the base layer, and a printing layer is provided above the paint layer. The paint layer is used to ensure that the printing layer is not easily smudged, and the printing layer is used to print the set label number.
[0009] Furthermore, the printed layer includes multiple printed labels, and a printed label is provided on all four sides above the paint layer for easy labeling and effective counting.
[0010] Furthermore, the four printed labels are arranged symmetrically at a 180° angle to the center of the base layer.
[0011] In some embodiments, the supporting layer 3 is made of PET material, which has strong fatigue resistance and high structural strength.
[0012] Furthermore, the melting point of the bearing layer 3 is 255℃-260℃.
[0013] In some embodiments, the connecting layer 2 is made of PE material, so that the label layer 1 and the carrier layer 3 are tightly attached to the connecting layer 2.
[0014] Furthermore, the melting point of the connecting layer 2 is 125℃-137℃.
[0015] In some embodiments, the label layer 1 is a pearlescent label layer.
[0016] Furthermore, the pearlescent label layer is made of BOPP material.
[0017] In some implementations, the pearlescent label layer has a melting point of 165°C.
[0018] In some embodiments, the thickness of the base film does not exceed 0.1 mm.
[0019] In some embodiments, the thickness of the bearing layer 3 is 0.04mm-0.05mm, with 0.04mm being more preferred.
[0020] In some embodiments, the thickness of the connecting layer 2 is 0.04mm-0.05mm, with 0.04mm being more preferred.
[0021] In some embodiments, the adhesion viscosity of the bonding surface between the bonding layer 2 and the label layer 1 is 5 g / inch, which is an optimal 5 g / inch for bonding and peeling.
[0022] The beneficial effects of this utility model are as follows: This utility model proposes a label structure that is easy to process. The bottom film includes a connecting layer 2 and a carrier layer 3. From top to bottom, a label layer 1, a connecting layer 2, and a carrier layer 3 are arranged in sequence. The carrier layer 3 has at least one layer. The label layer 1 is connected to the label layer 1 through the connecting layer 2. The connecting layer 2 is used for partial die-cutting by the receiving device to ensure that the carrier layer 3 is not damaged and to connect the two ends of the label layer 1, the connecting layer 2, and the carrier layer 3 to each other. At the same time, the carrier layer 3 is used to support the connecting layer 2 to ensure that it is not easy to break during reassembly, which greatly improves the strength of the label structure. In addition, the label layer 1 is made of pearlescent BOPP material, which is easy to print and not easy to smudge, greatly improving the product quality. Attached Figure Description
[0023] Figure 1 This is a structural diagram of the label structure of this utility model that is easy to process.
[0024] Explanation of main component symbols
[0025] Tag layer 1, connection layer 2, carrier layer 3. Detailed Implementation
[0026] The following embodiments are described to aid in understanding this application. These embodiments are not, and should not be, construed in any way as limiting the scope of protection of this application.
[0027] In the following description, those skilled in the art will recognize that throughout this discussion, components may be described as individual functional units (which may include subunits), but those skilled in the art will recognize that various components or portions thereof may be divided into individual components or may be integrated together (including integrated within a single system or component).
[0028] Furthermore, the connection between components or systems is not intended to be limited to a direct connection; on the contrary, data between these components may be modified, reformatted, or otherwise altered by intermediate components. Additionally, other or fewer connections may be used. It should also be noted that the terms "connection," "link," or "input" should be understood to include direct connections, indirect connections via one or more intermediate devices, and wireless connections. Example 1:
[0029] like Figure 1 The diagram shown is a structural diagram of the label structure of this utility model that is easy to process.
[0030] A label structure that is easy to process includes a base film and a label layer 1, with the base film connected to the label layer 1. The base film includes a connecting layer 2 and a carrier layer 3. The label layer 1, connecting layer 2, and carrier layer 3 are arranged sequentially from top to bottom. The carrier layer 3 has at least one layer. The label layer 1 is connected to the label layer 1 via the connecting layer 2. The surface where the connecting layer 2 connects to the label layer 1 is adhesive. The label layer 1 has a thickness of 0.035 mm. The connecting layer 2 is used for die-cutting by the receiving device to ensure that the carrier layer 3 is not damaged and to connect the two ends of the label layer 1, connecting layer 2, and carrier layer 3. The carrier layer 3 supports the connecting layer 2 to prevent breakage during reassembly.
[0031] The label layer 1 includes a base layer, a paint layer, and a printing layer. The base layer is connected to the support layer 3 through a connecting layer 2. A paint layer is provided above the base layer, and a printing layer is provided above the paint layer. The paint layer is used to ensure that the printing layer is not easily smudged, and the printing layer is used to print the set label number.
[0032] The printed layer includes multiple printed labels, and a printed label is provided on all four sides above the paint layer for easy labeling and effective counting.
[0033] The four printing numbers are set horizontally symmetrically at 180° from the center of the base layer.
[0034] The supporting layer 3 is made of PET material, which has strong fatigue resistance and high structural strength.
[0035] The melting point of the supporting layer 3 is 255℃-260℃.
[0036] The connecting layer 2 is made of PE material, which allows the label layer 1 and the carrier layer 3 to be tightly attached to the connecting layer 2.
[0037] The melting point of the connecting layer 2 is 125℃-137℃.
[0038] The label layer 1 is a pearlescent label layer.
[0039] The pearlescent label layer is made of BOPP material.
[0040] The pearlescent label layer has a melting point of 165℃.
[0041] The thickness of the base film does not exceed 0.1 mm.
[0042] The thickness of the bearing layer 3 is 0.04mm-0.05mm, with 0.04mm being more preferred.
[0043] The thickness of the connecting layer 2 is 0.04mm-0.05mm, with 0.04mm being more preferred.
[0044] The adhesion between the connecting layer 2 and the label layer 1 is 5 g / inch. The adhesion (unwinding force) is at an optimal level of 5 g / inch, which facilitates connection and peeling.
[0045] The beneficial effects of this utility model are as follows: This utility model proposes a label structure that is easy to process. The bottom film includes a connecting layer 2 and a carrier layer 3. From top to bottom, a label layer 1, a connecting layer 2, and a carrier layer 3 are arranged in sequence. The carrier layer 3 has at least one layer. The label layer 1 is connected to the label layer 1 through the connecting layer 2. The connecting layer 2 is used for partial die-cutting by the receiving device to ensure that the carrier layer 3 is not damaged and to connect the two ends of the label layer 1, the connecting layer 2, and the carrier layer 3 to each other. At the same time, the carrier layer 3 is used to support the connecting layer 2 to ensure that it is not easy to break during reassembly, which greatly improves the strength of the label structure. In addition, the label layer 1 is made of pearlescent BOPP material, which is easy to print and not easy to smudge, greatly improving the product quality.
[0046] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
Claims
1. A label structure that is easy to process, comprising a base film and a label layer (1), wherein the base film and the label layer (1) are connected, characterized in that: The bottom film includes a connecting layer (2) and a carrier layer (3). From top to bottom, there are a label layer (1), a connecting layer (2), and a carrier layer (3). The carrier layer (3) has at least one layer. The label layer (1) is connected to the label layer (1) through the connecting layer (2). The connecting surface between the connecting layer (2) and the label layer (1) is an adhesive surface. The label layer (1) is 0.035mm thick. The connecting layer (2) is used for partial die-cutting of the receiving device to ensure that the carrier layer (3) is not damaged and to connect the two ends of the label layer (1), the connecting layer (2), and the carrier layer (3). The carrier layer (3) is used to support the connecting layer (2) to ensure that it is not easily broken during recovery.
2. The label structure as described in claim 1, characterized in that: The label layer (1) includes a base layer, a paint layer, and a printing layer. The base layer is connected to the support layer (3) through a connecting layer (2). A paint layer is provided above the base layer, and a printing layer is provided above the paint layer. The paint layer is used to ensure that the printing layer is not easily smudged. The printing layer is used to print a set number. The printing layer includes multiple printing numbers. A printing number is provided on all four sides above the paint layer.
3. The label structure as described in claim 2, characterized in that: The four printed labels are arranged symmetrically at a 180° angle to the center of the base layer.
4. The label structure as described in claim 1, characterized in that: The carrier layer (3) is made of PET material and has a melting point of 255℃-260℃.
5. The label structure as described in claim 1, characterized in that: The connecting layer (2) is made of PE material and has a melting point of 125℃-137℃.
6. The label structure as described in claim 1, characterized in that: The label layer (1) is a pearlescent label layer, which is made of BOPP material and has a melting point of 165°C.
7. The label structure as described in claim 1, characterized in that: The thickness of the base film does not exceed 0.1 mm.
8. The label structure as described in claim 1, characterized in that: The thickness of the bearing layer (3) is 0.04mm-0.05mm.
9. The label structure as described in claim 1, characterized in that: The thickness of the connecting layer (2) is 0.04mm-0.05mm.
10. The label structure as described in claim 1, characterized in that: The adhesion between the connecting layer (2) and the label layer (1) is 5 g / inch.
Citation Information
Patent Citations
A bactericidal emulsion pressure-sensitive adhesive, a dust-repellent mat, and its preparation method
CN111909631B
Cited By
Label structure for labeling
CN118800135A