Novel battery label and preparation method thereof
By creating a glue-free area on the battery label, the problem of abnormal noise from the battery label was solved, improving the user experience and protecting the normal use of the battery and the integrity of the label.
Patent Information
- Application Number
- CN202511088509.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-04
- Publication Date
- 2025-11-18
AI Technical Summary
Laptop battery labels are prone to making abnormal noises during use. Existing methods cannot fundamentally eliminate the noise and may damage the battery or label, affecting the normal use of the battery and the integrity of the labeling information.
A novel battery label is designed, featuring first and second adhesive-free zones. By precisely identifying the location of the noise and setting adhesive-free zones on the label, friction between the label and the battery surface at the noise location is avoided. Printed release oil is used to form the adhesive-free zones to ensure the stability of the adhesion.
This effectively solved the problem of abnormal noise from the battery label, improved the user experience, avoided unnecessary damage to the battery, and ensured the normal use of the battery and the integrity of the labeling information.
Smart Images

Figure CN120977185A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of battery labeling technology, specifically relating to a novel battery label and its preparation method. Background Technology
[0002] With the continuous development of technology, laptops have become indispensable tools in people's lives and work. As a crucial component of laptops, the performance and stability of the laptop battery directly affect the user experience. In the production and use of laptop batteries, the battery label is an important part. It not only identifies relevant battery information such as brand, model, capacity, and voltage, but also protects the battery surface from scratches and corrosion.
[0003] However, in actual use, the problem of abnormal noise from laptop battery labels frequently occurs. This noise not only affects the user experience but may also cause users to worry about the quality of the laptop. Research and analysis have revealed that the main reason for the abnormal noise is that the adhesive between the label and the battery surface may partially detach or not adhere firmly in certain situations. This causes the label to rub or collide with the battery surface when subjected to external forces, such as pressing or vibration, thus producing abnormal noise. Additionally, when there are minor unevenness or gaps in the internal structure of the battery, the label may not adhere completely to these areas, easily leading to abnormal noise during use. Currently, traditional methods for addressing laptop battery label noise typically involve directly removing the faulty battery cell or using a fully adhesive label. These traditional solutions cannot fundamentally eliminate the noise and may damage the battery or label, affecting normal battery use and the integrity of the labeling information. Therefore, a new method is urgently needed to effectively solve the problem of abnormal noise from laptop battery labels. Summary of the Invention
[0004] To achieve the above objectives, the present invention provides a novel battery label and its preparation method, adopting the following technical solution:
[0005] A new type of battery label includes:
[0006] A front label has a first adhesive area; the first adhesive area has multiple first non-adhesive areas; the first adhesive area is respectively attached to the first end face of the adhesive frame, the first end face of the battery protection board, and the first end face of the battery cell; the multiple first non-adhesive areas are respectively set to correspond one-to-one with the first connection point and the second connection point;
[0007] A back label is provided, wherein a second adhesive area is provided on the back label; a second non-adhesive area is provided on the second adhesive area; the second adhesive area is attached to the second end face of the adhesive frame and the second end face of the battery cell; the second non-adhesive area is correspondingly provided at the third connection point;
[0008] The first connection point is the connection between the plastic frame and the battery protection board, the second connection point is the connection between the plastic frame and the battery cell, and the third connection point is the connection between the second end face of the battery cell and the second end face of the plastic frame.
[0009] Furthermore, the shape of the first adhesive-free area is adapted to the first connection and the second connection; the shape of the second adhesive-free area is adapted to the third connection.
[0010] The first adhesive-free area has a side width of 2-5mm, and the second adhesive-free area has a side width of 2-5mm.
[0011] Furthermore, a novel battery label preparation method, which is the preparation method of the novel battery label according to any one of the above claims, the method comprising:
[0012] S1. Determine the location of the abnormal noise: By conducting a comprehensive inspection of the laptop battery, combined with human hearing judgment and auxiliary tools, accurately determine the specific location of the abnormal noise caused by the regular label;
[0013] S2. Positioning of the glue-free area of the new label: For the identified abnormal noise location, determine the location of the glue-free area, and then prepare the corresponding printing plate after determining the location of the glue-free area;
[0014] S3. Preparation of the new battery label: Print product information on the adhesive-free side of the face material, separate the face material from the backing paper, and use the prepared printing plate to print release oil on the adhesive-free area of the adhesive-free side of the face material. After the release oil dries, the area where the release oil was printed is the adhesive-free area. Re-attach the separated backing paper to the face material to complete the overall preparation of the new label.
[0015] Beneficial effects:
[0016] This invention provides a novel battery label and its preparation method. By setting a first adhesive-free area and a second adhesive-free area, it effectively solves the problem of abnormal noise from laptop battery labels, improving the user experience. Local adhesive removal allows for precise repair of specific noise locations, avoiding unnecessary damage to the entire label and battery. The label after adhesive removal ensures normal battery use and the integrity of information labeling. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the connection between the novel battery label and the battery according to the present invention;
[0018] Figure 2 This is an exploded view of the structure of the novel battery label and its connection to the battery according to the present invention;
[0019] Figure 3This is a schematic diagram of the adhesive removal process for the front label of the battery in Example 3;
[0020] Figure 4 This is a schematic diagram of the adhesive removal process for the battery back label in Example 3;
[0021] The components include: 1. Back label; 2. Front label; 3. Adhesive frame; 4. Battery cell; 5. Battery protection board; 6. Terminal wire; 7. Square adhesive removal area; 8. Strip adhesive removal area. Detailed Implementation
[0022] The above description is merely an overview of the technical solution of the present invention. In order to better understand the technical means of the present invention and to implement it in accordance with the contents of the specification, and to make the above and other objects, features and advantages of the present invention more apparent and understandable, specific embodiments of the present invention are described below.
[0023] Example 1
[0024] Reference Figures 1 to 2 A new type of battery label, comprising:
[0025] Front label 2, with a first adhesive area on the front label 2; multiple first non-adhesive areas are provided on the first adhesive area; the first adhesive area is respectively attached to the first end face of the adhesive frame 3, the first end face of the battery protection board 5, and the first end face of the battery cell 4; the multiple first non-adhesive areas are respectively set to correspond one-to-one with the first connection and the second connection;
[0026] Back label 1, with a second adhesive area on the back label 1; a second non-adhesive area on the second adhesive area; the second adhesive area is attached to the second end face of the adhesive frame 3 and the second end face of the battery cell 4; the second non-adhesive area is correspondingly set at the third connection point;
[0027] The first connection is the connection between the plastic frame 3 and the battery protection board 5, the second connection is the connection between the plastic frame 3 and the battery cell 4, and the third connection is the connection between the second end face of the battery cell 4 and the second end face of the plastic frame 3.
[0028] In this embodiment, the shape of the first adhesive-free area is adapted to the first connection and the second connection; the shape of the second adhesive-free area is adapted to the third connection.
[0029] In this embodiment, the edge width of the first glue-free area is 2-5mm, and the edge width of the second glue-free area is 2-5mm.
[0030] Among them, the terminal wire 6 connected to the battery protection board 5 is exposed between the front label 2 and the back label 1.
[0031] Through the above technical solution, the front label 2 with the first adhesive-free area and the back label 1 with the second adhesive-free area are re-attached to their original positions. When there is a hollow area or a small gap at the connection between the adhesive frame 3 and the battery protection board 5, or a hollow area or a small gap at the connection between the adhesive frame 3 and the battery cell 4, the corresponding position on the front label 2 is set as the first adhesive-free area, so that the front label 2 will not stick to the battery surface in the hollow area when pressed, thereby avoiding the production of peeling noise. The shape and size of the first adhesive-free area of the front label 2 and the shape and size of the second adhesive-free area of the back label 1 can be precisely designed and cut according to the actual situation of the battery's internal structure, ensuring that the production of noise can be effectively avoided without affecting the normal adhesion and protection function of the label to other parts of the battery.
[0032] Example 2
[0033] This embodiment is a further modification based on embodiment 1.
[0034] In this embodiment, a novel battery label preparation method is provided, which is the novel battery label preparation method of Example 1. The method includes:
[0035] S1. Determine the location of the abnormal noise: By conducting a comprehensive inspection of the laptop battery, combined with human hearing judgment and auxiliary tools, accurately determine the specific location of the abnormal noise caused by the regular label;
[0036] S2. Positioning of the glue-free area of the new label: For the identified abnormal noise location, determine the location of the glue-free area, and then prepare the corresponding printing plate after determining the location of the glue-free area;
[0037] S3. Preparation of the new battery label: Print product information on the adhesive-free side of the face material, separate the face material from the backing paper, and use the prepared printing plate to print release oil on the adhesive-free area of the adhesive-free side of the face material. After the release oil dries, the area where the release oil was printed is the adhesive-free area. Re-attach the separated backing paper to the face material to complete the overall preparation of the new label.
[0038] The process involves a comprehensive inspection of the laptop battery, including manually pressing various parts of the label, simulating vibrations and movement during daily use of the laptop, and combining this with auditory judgment and the use of auxiliary tools such as a stethoscope to accurately pinpoint the specific location where the abnormal noise is coming from the battery label.
[0039] Example 3
[0040] This embodiment is a further modification based on embodiment 2.
[0041] In this embodiment, a method for preparing a novel front label for a battery label is the same as the method for preparing a novel battery label in Example 2, and the method includes:
[0042] S1. Determine the location of the abnormal noise: By conducting a comprehensive inspection of the laptop battery, combined with human hearing judgment and auxiliary tools, accurately determine the specific location of the abnormal noise caused by the regular label;
[0043] S2. Positioning of the glue-free area of the new label: For the determined abnormal noise location, determine the position of the glue-free area. After determining the position of the glue-free area, prepare the corresponding printing plate so that the cutout of the printing plate corresponds to the glue-free area.
[0044] S3. Preparation of front label: Print product information on the adhesive-free side of the face material. Separate the face material and backing paper for preparing the front label. On the adhesive-free side of the face material, use the prepared printing plate to align with the adhesive-free side of the face material. Print release oil at the corresponding position on the adhesive-free side of the face material through the cutouts on the printing plate. After the release oil dries, the area where the release oil was printed is the first adhesive-free area of the front label. Re-attach the separated backing paper to the face material to complete the overall preparation of the front label.
[0045] Among them, the preferred ones are, such as Figure 3 As shown, for Figure 3 The shaded area in the middle is where the adhesive is removed. The adhesive-removed area is the adhesive-removed area (i.e., the area without adhesive) of the front label 2. This adhesive-removed area is formed by an array of multiple square adhesive-removed areas 7, and the square adhesive-removed areas 7 are hollow inside.
[0046] The width of each side of the square adhesive removal area 7 is 2mm-5mm.
[0047] Preferably, in a set of two oppositely arranged sides of the square adhesive removal area 7, one side has a width of 2.5mm, the other side has a width of 5mm, and the width of the remaining two sides is 2mm.
[0048] Example 4
[0049] This embodiment is a further modification based on embodiment 2.
[0050] In this embodiment, a novel method for preparing the back label of a battery label is the same as the method for preparing the back label in Example 2. This method includes:
[0051] S1. Determine the location of the abnormal noise: By conducting a comprehensive inspection of the laptop battery, combined with human hearing judgment and auxiliary tools, accurately determine the specific location of the abnormal noise caused by the regular label;
[0052] S2. Positioning of the glue-free area of the new label: For the determined abnormal noise location, determine the position of the glue-free area. After determining the position of the glue-free area, prepare the corresponding printing plate so that the cutout of the printing plate corresponds to the glue-free area.
[0053] S3. Preparation of the front label: Print product information on the adhesive-free side of the face material. Separate the face material and backing paper for preparing the back label. On the adhesive-free side of the face material, use the prepared printing plate to align with the adhesive-free side of the face material. Print release oil at the corresponding position on the adhesive-free side of the face material through the cutouts on the printing plate. After the release oil dries, the area where the release oil was printed is the second adhesive-free area of the back label. Re-attach the separated backing paper to the face material to complete the overall preparation of the back label.
[0054] Among them, the preferred ones are, such as Figure 4 As shown, for Figure 4 The shaded area in the middle is where the adhesive is removed. The adhesive removal area (i.e., the area without adhesive) of the back label 1 is a strip structure. There are two such adhesive removal areas, and the two strip adhesive removal areas 8 are parallel to each other.
[0055] The width of each side of the strip-shaped adhesive removal area 8 is 2mm-5mm.
[0056] Preferably, the width of the strip-shaped adhesive removal area 8 is 2.5 mm.
[0057] The above description is merely a preferred embodiment of the present invention and does not constitute any limitation on the technical scope of the present invention. Therefore, any minor modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present invention shall still fall within the scope of the technical solution of the present invention.
Claims
1. A novel battery label, characterized in that, include: A front label has a first adhesive area; the first adhesive area has multiple first non-adhesive areas; the first adhesive area is respectively attached to the first end face of the adhesive frame, the first end face of the battery protection board, and the first end face of the battery cell; the multiple first non-adhesive areas are respectively set to correspond one-to-one with the first connection point and the second connection point; A back label is provided, wherein a second adhesive area is provided on the back label; a second non-adhesive area is provided on the second adhesive area; the second adhesive area is attached to the second end face of the adhesive frame and the second end face of the battery cell; the second non-adhesive area is correspondingly provided at the third connection point; The first connection point is the connection between the plastic frame and the battery protection board, the second connection point is the connection between the plastic frame and the battery cell, and the third connection point is the connection between the second end face of the battery cell and the second end face of the plastic frame.
2. The novel battery label according to claim 1, characterized in that, The shape of the first adhesive-free area is adapted to the first connection and the second connection; the shape of the second adhesive-free area is adapted to the third connection.
3. The novel battery label according to claim 1, characterized in that, The first adhesive-free area has a side width of 2-5mm, and the second adhesive-free area has a side width of 2-5mm.
4. A method for preparing a novel battery label, characterized in that, A method for preparing the novel battery label according to any one of claims 1-3, the method comprising: S1. Determine the location of the abnormal noise: By conducting a comprehensive inspection of the laptop battery, combined with human hearing judgment and auxiliary tools, accurately determine the specific location of the abnormal noise caused by the regular label; S2. Positioning of the glue-free area of the new label: For the identified abnormal noise location, determine the location of the glue-free area, and prepare the corresponding printing plate according to the location of the glue-free area; S3. Preparation of a new type of battery label: Print product information on the adhesive-free side of the face material, separate the face material from the backing paper, and use the prepared printing plate to print release oil on the adhesive-free area of the face material. After the release oil dries, the area where the release oil was printed is the adhesive-free area. Re-attach the separated backing paper to the face material to complete the overall preparation of the new label.