Tattooing method and tattooing sticker

By designing the difference in adhesion between the printing carrier layer and the tattoo adhesive layer, the removal of excess tattoo adhesive layer is simplified, improving the visual effect and user experience of the tattoo sticker, and solving the problem of high operational difficulty in existing technologies.

CN117922193BActive Publication Date: 2026-04-28惠州市柯梦科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
惠州市柯梦科技有限公司
Filing Date
2024-02-22
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing temporary tattoos have excess adhesive layers that are difficult to remove effectively after use, affecting the visual effect and making them difficult to apply, thus reducing the user experience.

Method used

The adhesive design of the printing carrier layer and the tattoo adhesive layer makes the adhesion between the printing carrier layer and the tattoo adhesive layer greater than the adhesion between the tattoo adhesive layer and the skin. The excess tattoo adhesive layer can be peeled off by peeling off the printing carrier layer, which simplifies the removal process.

Benefits of technology

It effectively removes excess tattoo adhesive, improves the visual effect and user experience of the tattoo, simplifies the operation process, and saves time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a tattoo method, comprising obtaining a tattoo sticker assembly; wherein a printing carrier layer is formed on a substrate surface, a pattern layer is formed on the printing carrier layer; a preset tattoo area is set; a tattoo adhesive layer is formed on the pattern layer, and the tattoo adhesive layer completely covers the pattern layer; the pattern layer of the tattoo sticker assembly is attached to the tattoo area through the tattoo adhesive layer; the substrate is torn off; the printing carrier layer is torn off, and the excess tattoo adhesive layer of the uncovered part of the pattern layer is adhered and removed from the tattoo area; a tattoo is obtained; and the application also provides a tattoo sticker. The application can adhere and remove the excess tattoo adhesive layer outside the pattern layer while tearing off the printing carrier layer, and the pattern layer is adhered to the skin through the tattoo adhesive layer between the pattern layer and the skin, thereby eliminating the need for subsequent use of an adhesive or the like to remove the excess tattoo adhesive layer outside the pattern layer, reducing the use difficulty of users, saving tattoo time, and improving the use experience.
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Description

Technical Field

[0001] This invention relates to the field of tattoo sticker technology, specifically to a tattooing method and a tattoo sticker. Background Technology

[0002] Modern young people are very interested in tattoos, but traditional tattoos can easily cause harm to the body and are difficult to remove. Temporary tattoo stickers, which have become popular in recent years, precisely address the shortcomings of traditional tattoos. They are non-invasive and painless to use, and designs can be changed quickly, making them favored by users.

[0003] Existing temporary tattoos generally consist of a base layer, a tattoo layer, and a tattoo adhesive layer. During manufacturing and use, because the tattoo adhesive is a full-coverage sheet, the adhesive layer covers a larger area than the tattoo layer. This results in excess adhesive adhering to the tattoo area in the cutouts and around the edges of the tattoo layer after application. This excess adhesive attracts dust and other dirt, affecting the visual effect of the tattoo. For example, a method for using a temporary tattoo component disclosed in CN116176161A removes the excess adhesive by using a separate adhesive attachment. While this achieves the goal of removing excess adhesive and improving the visual effect of the tattoo, the removal process is difficult and time-consuming, impacting the user experience. Summary of the Invention

[0004] In view of the shortcomings of the existing technology, this application provides a tattooing method and a tattoo sticker.

[0005] The tattooing method disclosed in this application includes: obtaining a tattoo sticker assembly; wherein a printing carrier layer is formed on the surface of a substrate, and a pattern layer is formed on the printing carrier layer; a pre-defined area to be tattooed is selected; a tattoo adhesive layer is formed on the pattern layer, and the tattoo adhesive layer completely covers the pattern layer; the pattern layer of the tattoo sticker assembly is attached to the area to be tattooed through the tattoo adhesive layer; the substrate is peeled off; the printing carrier layer is peeled off, and excess tattoo adhesive layer in the uncovered portion of the pattern layer is adhered and removed from the area to be tattooed; and a tattoo is obtained.

[0006] Preferably, the area to be tattooed is pre-defined, and the process further includes the following step: cleaning the area to be tattooed.

[0007] Preferably, release layers are formed on both sides of the tattoo adhesive layer, and the tattoo adhesive layer and the two release layers form a tattoo adhesive assembly; forming a tattoo adhesive layer on the pattern layer, and the tattoo adhesive layer completely covering the pattern layer, includes the following sub-steps: peeling off one of the release layers on the tattoo adhesive layer; adhering the tattoo adhesive layer and completely covering the pattern layer; peeling off the other release layer on the tattoo adhesive layer; forming a tattoo adhesive layer on the pattern layer.

[0008] Preferably, obtaining a tattoo sticker assembly includes the following sub-steps: forming a tattoo adhesive layer on a pattern layer; forming a release layer on the tattoo adhesive layer; obtaining an integrated tattoo sticker assembly; forming a tattoo adhesive layer on a pattern layer includes the following sub-steps: peeling off the release layer of the integrated tattoo sticker assembly; forming a tattoo adhesive layer on the pattern layer.

[0009] Preferably, the substrate includes a substrate layer and a water-soluble layer, wherein the substrate layer, the water-soluble layer, the printing carrier layer and the pattern layer are stacked sequentially; the step of peeling off the substrate includes the following sub-steps: wetting the substrate layer with water; dissolving the water-soluble layer through the substrate layer; peeling off the substrate layer.

[0010] Preferably, the substrate is release paper or release film.

[0011] Preferably, after adhering and completely covering the pattern layer with the tattoo adhesive layer, the process further includes: compacting the pattern layer and the tattoo adhesive layer.

[0012] Preferably, before peeling off one of the release layers from the tattoo adhesive layer, the steps further include: cutting the tattoo sticker assembly according to the shape and size of the pattern layer; and cutting the tattoo adhesive assembly according to the shape and size of the cut tattoo sticker assembly.

[0013] Preferably, the tattoo adhesive layer is a solid adhesive.

[0014] This application also discloses a tattoo sticker for use in tattooing methods.

[0015] The beneficial effects of this application are as follows: Because the adhesion between the printing carrier layer and the tattoo adhesive layer is greater than the adhesion between the tattoo adhesive layer and the skin, removing the printing carrier layer allows excess tattoo adhesive to adhere and be removed from the pattern layer. Furthermore, because the adhesion between the pattern layer and the printing carrier layer is less than the adhesion between the tattoo adhesive layer and the skin, and less than the adhesion between the tattoo adhesive layer and the pattern layer, the pattern layer adheres to the skin through the tattoo adhesive layer between it and the skin when the printing carrier layer is removed. By using a printing carrier layer, the need for subsequent removal of excess tattoo adhesive from the pattern layer using adhesive attachments is eliminated, reducing the difficulty of use for users, saving tattooing time, and improving the user experience. Attached Figure Description

[0016] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments of this application and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:

[0017] Figure 1 This is a schematic diagram of the structure of the tattoo sticker component in Embodiment 1;

[0018] Figure 2 This is a schematic diagram of the tattoo glue component in Example 1;

[0019] Figure 3 This is a schematic diagram of the structure of the tattoo sticker component in Example 2;

[0020] Figure 4 This is a schematic diagram of the structure of the tattoo sticker in Example 3;

[0021] Figure 5 This is a schematic diagram of the structure of the tattoo sticker in Example 4;

[0022] Figure 6 This is a flowchart illustrating the tattooing method in the embodiment.

[0023] Figure label:

[0024] 1. Tattoo sticker assembly; 11. Substrate; 111. Substrate layer; 112. Water-soluble layer; 12. Printing carrier layer; 13. Pattern layer; 2. Tattoo adhesive assembly; 21. Release layer; 22. Tattoo adhesive layer. Detailed Implementation

[0025] The following drawings disclose several embodiments of this application. For clarity, many practical details will be described in the following description. However, it should be understood that these practical details should not be used to limit this application. That is, in some embodiments of this application, these practical details are not essential. In addition, for the sake of simplicity, some conventional structures and components will be shown in the drawings in a simple schematic manner.

[0026] It should be noted that all directional indications in the embodiments of this application, such as up, down, left, right, front, back, etc., are only used to explain the relative positional relationship and movement of the components in a specific posture as shown in the attached figure. If the specific posture changes, the directional indication will also change accordingly.

[0027] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and does not specifically refer to any order or sequence, nor is it intended to limit this application. They are merely used to distinguish components or operations described using the same technical terms and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of various embodiments can be combined with each other, but only if they are feasible for those skilled in the art. If a combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.

[0028] To further understand the content, features, and effects of this application, the following embodiments are provided, and detailed descriptions are given in conjunction with the accompanying drawings.

[0029] Example 1:

[0030] Reference Figure 1-2 , Figure 1 This is a schematic diagram of the structure of the tattoo sticker component in Embodiment 1. Figure 2 This is a schematic diagram of the tattoo adhesive assembly in Embodiment 1. The tattoo sticker in this embodiment includes a tattoo sticker assembly 1 and a tattoo adhesive assembly 2. The tattoo sticker assembly 1 includes a substrate 11, a printing carrier layer 12, and a pattern layer 13, which are stacked sequentially. The tattoo adhesive assembly 2 includes a tattoo adhesive layer 22 and two release layers 21 formed on both sides of the tattoo adhesive layer 22. In this embodiment, the tattoo sticker can imprint the pattern on the pattern layer 13 onto the area to be tattooed. The area to be tattooed can be skin, nails, ceramics, metal, glass, plastic, wood, etc., and is not limited here. This embodiment uses skin as the area to be tattooed.

[0031] The substrate 11 includes a substrate layer 111 and a water-soluble layer 112, which are sequentially stacked. In specific applications, the substrate layer 111 is substrate paper, preferably substrate paper with a background color, which can contrast with the pattern layer 13 and make the pattern of the pattern layer 13 more visually appealing. The water-soluble layer 112 is a water-soluble synthetic resin or a water-soluble adhesive, which allows the water-soluble layer 112 to dissolve and separate upon contact with water. When the substrate layer 111 is wetted with water, the water seeps through the substrate layer 111 into the water-soluble layer 112, where it dissolves. In this way, the substrate layer 111 can be easily peeled off from the printing carrier layer 12.

[0032] Rereference Figure 1-2 Preferably, the adhesion between the printing carrier layer 12 and the tattoo adhesive layer 22 is greater than the adhesion between the tattoo adhesive layer 22 and the area to be tattooed. In specific applications, liquid resin is evenly coated onto the water-soluble layer 112 and then dried to form the printing carrier layer 12 on the water-soluble layer 112. Specifically, it is a transparent film. Since the printing carrier layer 12 is made of resin, its adhesion to the tattoo adhesive layer 22 is strong, that is, stronger than the adhesion between the tattoo adhesive layer 22 and most areas to be tattooed, such as the skin. When the printing carrier layer 12 is peeled off, it can adhere the tattoo adhesive layer 22 exposed outside the pattern layer 13 on the skin. However, since the adhesion between the pattern layer and the printing carrier layer is less than the adhesion between the tattoo adhesive layer and the skin, and less than the adhesion between the tattoo adhesive layer and the pattern layer, the pattern layer 13 and the tattoo adhesive layer 22 located between the pattern layer 13 and the skin are left on the skin when the printing carrier layer is peeled off. In this way, while removing excess tattoo adhesive layer 22, the integrity of the tattoo pattern layer 13 is preserved, resulting in a better visual effect for the tattoo and making it less prone to attracting dust and other stains, thus improving the user experience.

[0033] Rereference Figure 1-2 Preferably, the pattern layer 13 can be formed by printing toner onto the printing carrier layer 12 using a toner copier laser printer, or by printing UV ink onto the printing carrier layer 12 using a UV printer, or by other methods such as digital printing or screen printing, which are not limited here.

[0034] Rereference Figure 1-2 Preferably, the tattoo adhesive layer 22 is a solid adhesive. Compared with liquid adhesive, solid adhesive is more stable, improving the overall structural stability of the product and facilitating transportation and storage. Furthermore, since international trade has stricter requirements for liquid transportation, with some countries even prohibiting the import of foreign liquids, making the tattoo adhesive layer 22 a solid adhesive allows it to meet the requirements of more countries and expands its sales reach.

[0035] Rereference Figure 1-2 Preferably, the release layer 21 is a release film or release paper. In this embodiment, one side of the release layer 21 of the tattoo adhesive layer 22 is a release film, and the other side is a release paper. The release film is transparent, and the release paper has a base color to facilitate the distinction between the front and back sides. In practical application, the release paper is peeled off first. Thus, when the tattoo adhesive layer 22 is attached to the pattern layer 13, the tattoo pattern of the pattern layer 13 can be clearly and intuitively seen through the transparent release layer 21, making it easier for users to choose their favorite pattern for tattooing and improving the user's visual experience and usage experience.

[0036] Example 2:

[0037] Reference Figure 3 , Figure 3 This is a schematic diagram of the tattoo sticker component in Embodiment 2. The difference between the tattoo sticker in this embodiment and that in Embodiment 1 is that the substrate 11 in this embodiment is a release substrate, specifically a release film or release paper. In practical application, liquid resin is evenly coated onto the release surface of the release paper or release film and then dried to form a printing carrier layer 12 on the release paper or release film. This eliminates the need for a water-soluble layer 112 and also eliminates the need to wet the substrate layer 111 with water to separate it from the printing carrier layer 12. The release film or release paper can be directly peeled off from the printing carrier layer 12, simplifying the structure and saving the user's time.

[0038] Example 3:

[0039] Reference Figure 4 , Figure 4This is a schematic diagram of the structure of the tattoo sticker in Embodiment 3. The tattoo sticker in this embodiment includes a substrate 11, a printing support layer 12, a pattern layer 13, a tattoo adhesive layer 22, and a release layer 21, which are stacked sequentially. The difference between the tattoo sticker in this embodiment and Embodiment 1 is that the tattoo sticker in Embodiment 1 includes two separate components: the tattoo sticker component 1 and the tattoo adhesive component 2. In this embodiment, it is a single component. It can be understood that the tattoo sticker in this embodiment eliminates one of the release layers 21, and the tattoo adhesive layer 22 and the other release layer 21 are directly attached to the tattoo sticker component 1 to form a single component. This simplifies the product structure and facilitates product transportation. In practical application, the release layer 21 can be peeled off, and the substrate 11, the printing support layer 12, and the pattern layer 13 can be attached to the area to be tattooed through the tattoo adhesive layer 22.

[0040] Example 4:

[0041] Reference Figure 5 , Figure 5 This is a schematic diagram of the structure of the tattoo sticker in Embodiment 4. The difference between the tattoo sticker in this embodiment and that in Embodiment 3 is that the substrate 11 in this embodiment is a release substrate, specifically a release film or release paper. In practical application, liquid resin is evenly coated onto the release surface of the release paper or release film and then dried to form a printing carrier layer 12 on the release paper or release film. This eliminates the need for a water-soluble layer 112 and also eliminates the need to wet the substrate layer 111 with water to separate it from the printing carrier layer 12. The release film or release paper can be directly peeled off from the printing carrier layer 12, simplifying the structure and saving the user's time.

[0042] Example 5:

[0043] Refer to together Figure 1 , Figure 2 and Figure 6 , Figure 6 This is a flowchart illustrating the tattooing method in this embodiment. The tattooing method in this embodiment uses the tattoo sticker from Embodiment 1 and includes the following steps:

[0044] S1: Obtain the tattoo sticker component 1. A printing carrier layer 12 is formed on the surface of a substrate 11, and a pattern layer 13 is formed on the printing carrier layer 12. In specific applications, the substrate 11 in this embodiment includes a substrate layer 111 and a water-soluble layer 112, and the substrate layer 111, water-soluble layer 112, printing carrier layer 12, and pattern layer 13 are sequentially stacked. The substrate layer 111 is substrate paper, preferably substrate paper with a background color, which can contrast with the pattern layer 13, making the pattern of the pattern layer 13 more visually appealing. A water-soluble synthetic resin or water-soluble adhesive is uniformly coated onto the substrate paper and then dried to obtain the water-soluble layer 112. Liquid resin is uniformly coated onto the water-soluble layer 112 and then dried to form the printing carrier layer 12 on the water-soluble layer 112. The toner is printed onto the printing carrier layer 12 using a toner copier or laser printer, or UV ink is printed onto the printing carrier layer 12 using a UV printer, or a pattern layer 13 is formed on the printing carrier layer 12 using digital printing, screen printing, or other methods. The pattern size of the pattern layer 13 is smaller than that of the printing carrier layer 12. It is understood that the tattoo sticker component 1 in this embodiment is a single component, specifically a four-layer structure, namely a substrate layer 111, a water-soluble layer 112, a printing carrier layer 12, and a pattern layer 13.

[0045] S2: Preset the tattoo area. Since oil or dust on the skin can prevent the tattoo adhesive layer 22 from adhering firmly to the skin, the tattoo area needs to be cleaned before applying the tattoo sticker. In specific applications, you can use water or alcohol to clean the tattoo area. After cleaning, dry the tattoo area with a dry towel or paper towel to reduce the impact of dust, oil, and other dirt on the tattoo area on the tattoo adhesive layer 22 and extend the life of the tattoo pattern.

[0046] S3: A tattoo adhesive layer 22 is formed on the pattern layer 13, completely covering the pattern layer 13. In specific applications, release layers 21 are formed on both sides of the tattoo adhesive layer 22, and the tattoo adhesive layer 22 and the two release layers 21 form the tattoo adhesive component 2. It can be understood that the tattoo adhesive component 2 in this embodiment is a separate component, specifically a three-layer structure: one tattoo adhesive layer 22 and two release layers 21, wherein the tattoo adhesive layer 22 is located between the two release layers 21. That is to say, the tattoo sticker component 1 and the tattoo adhesive component 2 in this embodiment are two independent components, which need to be used together in specific applications.

[0047] Preferably, S3: forming a tattoo adhesive layer 22 on the pattern layer 13, wherein the tattoo adhesive layer 22 completely covers the pattern layer 13, includes the following sub-steps:

[0048] S31: Obtain the tattoo adhesive component 2. In specific applications, release layers 21 are formed on both sides of the tattoo adhesive layer 22. In this embodiment, the tattoo adhesive layer 22 is a solid adhesive, and the release layer 21 is a release film or release paper. Preferably, one side of the release layer 21 is release paper, and the other side is a transparent release film, so that users can easily distinguish the front and back of the tattoo adhesive component 2.

[0049] S32: Cut the tattoo sticker component 1 according to the shape and size of the pattern layer 13. Since the pattern size of the pattern layer 13 is smaller than the size of the printing carrier layer 12 and the substrate 11, the printing carrier layer 12 and the substrate 11 are cut according to the shape and size of the pattern layer 13. Excess printing carrier layer 12 and substrate 11 are cut off to ensure that the size of printing carrier layer 12 and substrate 11 is appropriate, reducing the difficulty of subsequent tattooing operations. It should be noted that after cutting, the size of printing carrier layer 12 and substrate 11 is still larger than the pattern size of the pattern layer 13.

[0050] S33: Cut the tattoo adhesive component 2 according to the shape and size of the cut tattoo sticker component 1. In specific applications, cut the tattoo adhesive component 2 to be the same size as the printing carrier layer 12 and the substrate 11, or slightly smaller than the printing carrier layer 12 and the substrate 11, but ensure that it is larger than the pattern on the pattern layer 13.

[0051] S34: Peel off one of the release layers 21 on the tattoo adhesive layer 22, that is, peel off one of the release layers 21 of the tattoo adhesive component 2 to expose the tattoo adhesive layer 22 located in the middle.

[0052] S35: Adhere the tattoo adhesive layer 22 and completely cover the pattern layer 13. At this time, the tattoo sticker assembly 1 and the tattoo adhesive assembly 2 are adhered together, and are in sequence the substrate layer 111, the water-soluble layer 112, the printing carrier layer 12, the pattern layer 13, the tattoo adhesive layer 22 and the release layer 21.

[0053] S36: Compact the pattern layer 13 and the tattoo adhesive layer 22. In practical applications, the tattoo sticker component 1 and the tattoo adhesive component 2 are squeezed by hand or with the help of a tool to make the tattoo adhesive layer 22 come into close contact with the pattern layer 13. Since the tattoo adhesive layer 22 is sticky, its adhesive strength with the pattern layer 13 is greater than the adhesion strength of the pattern layer 13 on the printing carrier layer 12. By squeezing and compacting, the pattern layer 13 is separated from the printing carrier layer 12 and transferred to the tattoo adhesive layer 22.

[0054] S37: Peel off the tattoo adhesive layer 22 and apply another release layer 21.

[0055] S38: A tattoo adhesive layer 22 is formed on the pattern layer 13.

[0056] S4: The pattern layer 13 of the tattoo sticker component 1 is attached to the area to be tattooed using the tattoo adhesive layer 22. At this time, the tattoo sticker component 1 can be further pressed by hand or with the help of tools. Understandably, at this time, the tattoo adhesive layer 22 is adhered to the skin, the pattern layer 13 is adhered to the tattoo adhesive layer 22, the printing carrier layer 12 completely covers the pattern layer 13 and the tattoo adhesive layer 22, the water-soluble layer 112 is adhered to the printing carrier layer 12, and the substrate layer 111 is adhered to the water-soluble layer 112.

[0057] S5: Peel off the substrate 11. In specific applications, the water-soluble layer 112 is a synthetic resin with water-soluble properties or a water-soluble adhesive, which enables the water-soluble layer 112 to dissolve and separate upon contact with water. When the substrate layer 111 is wetted with water, the water seeps through the substrate layer 111 into the water-soluble layer 112. The water-soluble layer 112 dissolves upon contact with water, thereby separating the substrate layer 111 from the printing carrier layer 12. In this way, the substrate layer 111 can be easily peeled off from the printing carrier layer 12.

[0058] S6: Peel off the printing carrier layer 12 and remove the excess tattoo adhesive layer 22 from the area to be tattooed, covering the portion of the pattern layer 13 that is not covered. In practical application, the printing carrier layer 12 is made of resin and is a transparent film. Therefore, its adhesion to the tattoo adhesive layer 22 is strong, stronger than the adhesion of the tattoo adhesive layer 22 to most areas to be tattooed, such as the skin. When the printing carrier layer 12 is peeled off, it can adhere the exposed tattoo adhesive layer 22 to the skin. However, since the adhesion between the pattern layer and the printing carrier layer is less than the adhesion between the tattoo adhesive layer and the skin, and less than the adhesion between the tattoo adhesive layer and the pattern layer, the pattern layer 13 and the tattoo adhesive layer 22 located between the pattern layer 13 and the skin are left on the skin when the printing carrier layer is peeled off. In this way, while removing the excess tattoo adhesive layer 22, the integrity of the tattoo pattern on the pattern layer 13 is preserved, resulting in a better visual effect for the tattoo and making it less prone to attracting dust and other stains, thus improving the user experience.

[0059] S7: Get a tattoo.

[0060] Example 6:

[0061] Refer to together Figure 3 and Figure 6 The tattooing method in this embodiment uses the tattoo sticker from Embodiment 2. The difference between this tattooing method and Embodiment 5 is in S5: peeling off the substrate 11. In specific applications, since the substrate 11 of the tattoo sticker in Embodiment 2 is a release film or release paper, the water-soluble layer 112 is eliminated, and the operation of wetting the substrate layer 111 with water to separate it from the printing carrier layer 12 is also eliminated. In step S5, the release film or release paper can be directly peeled off from the printing carrier layer 12, simplifying the product structure and saving the user's time.

[0062] Example 7:

[0063] Refer to together Figure 4 and Figure 6 The tattooing method in this embodiment uses the tattoo sticker from Embodiment 3. Since the tattoo sticker in Embodiment 3 is an independent component, the tattooing method in this embodiment includes the following steps:

[0064] S1: Obtain tattoo sticker component 1. The tattoo sticker component 1 includes a substrate layer 111, a water-soluble layer 112, a printing carrier layer 12, a pattern layer 13, a tattoo adhesive layer 22, and a release layer 21, which are stacked in sequence.

[0065] Preferably, step S1, obtaining the temporary tattoo component 1, includes the following sub-steps:

[0066] S11: A water-soluble synthetic resin or water-soluble adhesive is uniformly coated onto the substrate layer 111 and then dried to form a water-soluble layer 112 on the substrate layer 111. The substrate layer 111 is substrate paper.

[0067] S12: Use a toner copier / laser printer to print toner onto the print carrier layer 12, or use a UV printer to print UV ink onto the print carrier layer 12, or use other methods such as digital printing or screen printing to form a pattern layer 13 on the print carrier layer 12.

[0068] S13: A tattoo adhesive layer 22 is formed on the pattern layer 13. In practical applications, the tattoo adhesive layer 22 is a solid adhesive. Compared with liquid adhesive, solid adhesive is more stable in form, which improves the overall structural stability of the product and facilitates transportation and storage.

[0069] S14: A release layer 21 is formed on the tattoo adhesive layer 22. In specific applications, the release layer 21 can be a release film or release paper, preferably a transparent release film. Through the transparent release layer 21, the tattoo pattern of the pattern layer 13 can be clearly and intuitively seen, making it easier for users to choose their favorite pattern for tattooing, thus improving the user's visual experience and user experience.

[0070] S15: Obtain one-piece temporary tattoo component 1.

[0071] S2: Preset the tattoo area. Since oil or dust on the skin can prevent the tattoo adhesive layer 22 from adhering firmly to the skin, the tattoo area needs to be cleaned before applying the tattoo sticker. In specific applications, you can use water or alcohol to clean the tattoo area. After cleaning, dry the tattoo area with a dry towel or paper towel to reduce the impact of dust, oil, and other dirt on the tattoo area on the tattoo adhesive layer 22 and extend the life of the tattoo pattern.

[0072] S3: Form the tattoo gel layer 22 on the pattern layer 13. This also includes the following sub-steps:

[0073] S31: Cut the one-piece tattoo sticker component 1 according to the shape and size of the pattern layer 13.

[0074] S32: Peel off the release layer 21 of the one-piece tattoo sticker component 1 to expose the tattoo adhesive layer 22.

[0075] S33: A tattoo adhesive layer 22 is formed on the pattern layer 13.

[0076] S4: The pattern layer 13 of the integrated tattoo sticker assembly 1 is attached to the area to be tattooed using the tattoo adhesive layer 22. At this time, the tattoo sticker assembly 1 can be further pressed firmly by hand or with the help of tools. Understandably, at this time, the tattoo adhesive layer 22 is adhered to the skin, the pattern layer 13 is adhered to the tattoo adhesive layer 22, the printing carrier layer 12 completely covers the pattern layer 13 and the tattoo adhesive layer 22, the water-soluble layer 112 is adhered to the printing carrier layer 12, and the substrate layer 111 is adhered to the water-soluble layer 112.

[0077] S5: Peel off the substrate 11. In specific applications, the water-soluble layer 112 is a synthetic resin with water-soluble properties or a water-soluble adhesive, which enables the water-soluble layer 112 to dissolve and separate upon contact with water. When the substrate layer 111 is wetted with water, the water seeps through the substrate layer 111 into the water-soluble layer 112. The water-soluble layer 112 dissolves upon contact with water, thereby separating the substrate layer 111 from the printing carrier layer 12. In this way, the substrate layer 111 can be easily peeled off from the printing carrier layer 12.

[0078] S6: Peel off the printing carrier layer 12 and remove the excess tattoo adhesive layer 22 from the area to be tattooed, covering the portion of the pattern layer 13 that is not covered.

[0079] S7: Get a tattoo.

[0080] Example 8:

[0081] Refer to together Figure 5 and Figure 6 The tattooing method in this embodiment uses the tattoo sticker from Embodiment 4. The difference between this tattooing method and Embodiment 7 is in S5: peeling off the substrate 11. In specific applications, since the substrate 11 of the tattoo sticker in Embodiment 4 is a release film or release paper, the water-soluble layer 112 is eliminated, and the operation of wetting the substrate layer 111 with water to separate it from the printing carrier layer 12 is also eliminated. In step S5, the release film or release paper can be directly peeled off from the printing carrier layer 12, simplifying the product structure and saving the user's time.

[0082] In summary, because the adhesion between the printing carrier layer 12 and the tattoo adhesive layer 22 is greater than the adhesion between the tattoo adhesive layer 22 and the skin, removing the printing carrier layer 12 will also remove any excess tattoo adhesive layer 22 outside the pattern layer 13. Furthermore, because the adhesion between the pattern layer 13 and the printing carrier layer 12 is less than the adhesion between the tattoo adhesive layer 22 and the skin, and less than the adhesion between the tattoo adhesive layer 22 and the pattern layer 13, the pattern layer 13 adheres to the skin via the tattoo adhesive layer 22 when the printing carrier layer 12 is removed. The use of the printing carrier layer 12 eliminates the need for subsequent removal of excess tattoo adhesive layer 22 outside the pattern layer 13 using adhesive attachments, reducing user difficulty, saving tattooing time, and improving the user experience.

[0083] The above description is merely an embodiment of this application and is not intended to limit the scope of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of the claims of this application.

Claims

1. A tattooing method, characterized in that, include: A temporary tattoo assembly (1) is obtained; wherein a printing carrier layer (12) is formed on the surface of a substrate (11), and a pattern layer (13) is formed on the printing carrier layer (12); Preset the area to be tattooed; A tattoo adhesive layer (22) is formed on the pattern layer (13), and the tattoo adhesive layer (22) completely covers the pattern layer (13); The pattern layer (13) of the tattoo sticker assembly (1) is attached to the area to be tattooed via the tattoo adhesive layer (22), wherein the adhesion between the printing carrier layer (12) and the tattoo adhesive layer (22) is greater than the adhesion between the tattoo adhesive layer (22) and the area to be tattooed, the adhesion between the pattern layer (13) and the printing carrier layer (12) is less than the adhesion between the tattoo adhesive layer (22) and the area to be tattooed, and the adhesion between the pattern layer (13) and the printing carrier layer (12) is less than the adhesion between the tattoo adhesive layer (22) and the pattern layer (13). Remove the substrate (11); Peel off the printed carrier layer (12) and remove the excess tattoo adhesive layer (22) from the area to be tattooed, covering the portion not covered by the pattern layer (13). Get a tattoo.

2. The tattooing method according to claim 1, characterized in that, After pre-setting the area to be tattooed, the following steps are also included: Clean the area to be tattooed.

3. The tattooing method according to claim 1, characterized in that, The tattoo adhesive layer (22) has release layers (21) formed on both sides, and the tattoo adhesive layer (22) and the two release layers (21) form a tattoo adhesive assembly (2); the tattoo adhesive layer (22) is formed on the pattern layer (13), and the tattoo adhesive layer (22) completely covers the pattern layer (13), including the following sub-steps: Peel off one of the release layers (21) from the tattoo adhesive layer (22); The tattoo adhesive layer (22) is adhered to and completely covers the pattern layer (13); Peel off the other release layer (21) from the tattoo adhesive layer (22); A tattoo adhesive layer (22) is formed on the pattern layer (13).

4. The tattooing method according to claim 1, characterized in that, Obtaining the temporary tattoo components (1) involves the following sub-steps: A tattoo adhesive layer (22) is formed on the pattern layer (13); A release layer (21) is formed on the tattoo adhesive layer (22); Obtain an all-in-one temporary tattoo assembly (1); Forming a tattoo adhesive layer (22) on the pattern layer (13) includes the following sub-steps: Peel off the release layer (21) of the one-piece tattoo sticker assembly (1); A tattoo adhesive layer (22) is formed on the pattern layer (13).

5. The tattooing method according to claim 3 or 4, characterized in that, The substrate (11) includes a substrate layer (111) and a water-soluble layer (112), wherein the substrate layer (111), the water-soluble layer (112), the printing carrier layer (12), and the pattern layer (13) are stacked sequentially; the step of peeling off the substrate (11) includes the following sub-steps: Wet the substrate layer (111) with water; Water dissolves the water-soluble layer (112) through the substrate layer (111); Peel off the substrate layer (111).

6. The tattooing method according to claim 3 or 4, characterized in that, The substrate (11) is release paper or release film.

7. The tattooing method according to claim 3, characterized in that, After adhering the tattoo adhesive layer (22) to and completely covering the pattern layer (13), the process further includes: The pattern layer (13) and the tattoo adhesive layer (22) are compacted.

8. The tattooing method according to claim 3, characterized in that, Before peeling off one of the release layers (21) from the tattoo adhesive layer (22), the following steps are also included: Cut the tattoo sticker assembly (1) according to the shape and size of the pattern layer (13); Cut the tattoo adhesive component (2) according to the shape and size of the cut tattoo sticker component (1).

9. The tattooing method according to claim 1, characterized in that, The tattoo adhesive layer (22) is a solid adhesive.

10. A temporary tattoo sticker, characterized in that, Applied to the tattooing method as described in any one of claims 1-9.

Citation Information

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