Multi-layer detachable rubber surface bra and mold for supplementing rubber surface of bra
By using a multi-layered, detachable adhesive surface for the breast patch and a mold design, the problem of decreased adhesiveness of the invisible breast patch surface is solved, enabling convenient replacement and replenishment of the adhesive surface, extending service life, reducing costs, and improving user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN MOLISHENDUAN CLOTHING CO LTD
- Filing Date
- 2025-05-07
- Publication Date
- 2026-04-10
AI Technical Summary
The adhesive surface of existing invisible breast pads loses its stickiness after a period of use due to factors such as dust and sweat, causing the breast pads to fall off, increasing usage costs and wasting resources. Furthermore, there is a lack of convenient ways to replace and replenish the adhesive surface.
The design features a multi-layered, removable adhesive-backed breast patch with a flexible mold cup and a multi-layered double-sided adhesive structure. Each adhesive layer can be peeled off and the adhesive surface can be replenished using a mold. The adhesive surface can be quickly bonded through the mold's shaping groove, flip plate, and elastic pressing block, avoiding errors caused by manual operation.
Extends the lifespan of breast pads, reduces costs, meets green and environmental protection requirements, improves user experience and convenience, and is suitable for symmetrical breast pad applications.
Smart Images

Figure CN224098799U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of chest pad, especially to a multi-layer detachable adhesive surface chest pad and a mold for supplementing the adhesive surface of the chest pad. BACKGROUND
[0002] In modern society, women's demand for chest modification and protection is growing, and invisible chest pads, as a common chest care and beauty product, are widely used in various occasions, such as wearing backless clothes, formal dresses, etc. It can provide good chest support and shaping effect for women, while maintaining the invisibility and beauty of the appearance.
[0003] In the prior art, most of the invisible chest pads on the market are designed with a single layer of adhesive surface. After using the adhesive surface for a period of time, the adhesion will decrease due to factors such as dust and sweat, causing the chest pad to easily fall off, affecting the wearing effect. At this time, the user usually needs to replace the entire chest pad. This method not only increases the use cost, but also causes waste of resources, which is difficult to meet the current consumer concept of advocating green environmental protection. At present, the main maintenance method for the adhesive surface of the chest pad is cleaning and maintenance, but there is no way to replace and supplement the adhesive surface without damaging the structure of the chest pad. Therefore, how to conveniently replace the adhesive surface of the chest pad and recycle the structure of the chest pad is a technical problem that needs to be solved by the technical personnel of the enterprise. SUMMARY
[0004] In view of the above shortcomings of the prior art, the present application provides a multi-layer detachable adhesive surface chest pad and a mold for supplementing the adhesive surface of the chest pad.
[0005] The above invention of the present application is realized by the following technical scheme:
[0006] In a first aspect, the present application provides a multi-layer detachable adhesive surface chest pad, which comprises a flexible mold cup and an adhesive surface structure arranged on the side of the flexible mold cup that is attached to the human skin. The adhesive surface structure comprises a plurality of double-sided adhesive layers, and adjacent double-sided adhesive layers are mutually adhered and can be peeled off.
[0007] By adopting the above technical scheme, the flexible mold cup provides chest support and shaping, and the adhesive surface structure is composed of a plurality of double-sided adhesive layers stacked together. Each double-sided adhesive layer is connected by a peelable adhesion method, which allows the user to peel off the invalid double-sided adhesive layer layer by layer. In use, the outermost double-sided adhesive layer first contacts the skin. When the side of the outermost double-sided adhesive layer contacting the skin is contaminated or the adhesion decreases and becomes invalid, the layer of double-sided adhesive can be directly peeled off, exposing the inner layer of double-sided adhesive and continuing to play the role of adhesion, thereby prolonging the service life of the chest pad and reducing the overall discarding caused by the failure of the adhesive surface, thereby reducing the cost of the user and meeting the requirements of green environmental protection.
[0008] In a preferred example, the application can be further configured as: the double-sided adhesive layer comprises a flexible mesh layer, and a skin-friendly adhesive layer is coated on the flexible mesh layer, so that the opposite sides of the flexible mesh layer are both adhesive.
[0009] By adopting the above technical solution, the flexible mesh layer serves as the adhesive layer framework, and the skin-friendly adhesive layer is coated on both sides to form a double-sided adhesive structure, which can not only enhance the tensile strength of the adhesive layer but also improve the air permeability through the mesh layer.
[0010] In a preferred example, the application can be further configured as: the skin-friendly adhesive layer is made of silicone material.
[0011] By adopting the above technical solution, the silicone material is resistant to sweat and temperature, has stable and durable adhesion, and has peelability, and is skin-friendly, non-irritating for long-term wear, and suitable for chest patch working conditions.
[0012] In a second aspect, the application provides a mold for supplementing a chest patch adhesive surface, for the above-mentioned multi-layer detachable adhesive surface chest patch, comprising:
[0013] A bearing plate is provided with a shaped groove, and the shape and size of the shaped groove are adapted to the thickness of the flexible mold cup;
[0014] A flap is rotatably connected to one side of the bearing plate and used to cover the bearing plate, and the flap is provided with an elastic pressing block corresponding to the position of the shaped groove, and the elastic pressing block is located in the shaped groove when the flap covers the bearing plate;
[0015] A locking assembly is arranged between the bearing plate and the flap and used to limit the rotation of the flap;
[0016] The supplementary adhesive surface assembly comprises a first protective release film, a plurality of double-sided adhesive layers, and a second protective release film connected in sequence, and the first and second protective release films are used to protect the double-sided adhesive layers and are peelable.
[0017] By adopting the above technical solution, when the adhesive surface needs to be supplemented, the first protective release film of the supplementary adhesive surface assembly is first torn off, the supplementary adhesive surface assembly is placed in the shaped groove with the second protective release film on one side abutting against the inner bottom wall of the shaped groove, then the flexible mold cup is placed in the shaped groove with the side of the flexible mold cup that is in contact with the skin aligned and abutting against the double-sided adhesive layer in the supplementary adhesive surface assembly to complete the initial contact and adhesion, then the flap is covered to press the outer surface of the flexible mold cup with the elastic pressing block, and the locking assembly is used to limit the rotation of the flap, and after a period of standing, the supplement of the adhesive surface structure of the flexible mold cup is completed.
[0018] The second protective release film can prevent the supplementary adhesive surface from being attached to the shaping groove. The elastic pressing block is pressed to make the flexible mold cup tightly contact with the plurality of double-sided adhesive layers, and the locking assembly is locked to limit the rotation of the turning plate, so as to fix the position of the elastic pressing block. The elastic pressing block can uniformly and continuously apply pressure to the flexible mold cup through the elastic effect, accelerate the adhesion of the flexible mold cup and the supplementary adhesive surface, and realize the adhesive surface supplementing through the mold. The operation error caused by manual attachment is avoided, and the user experience and the convenience of replacing the supplementary adhesive surface are greatly improved.
[0019] In a preferred example, the positioning groove, the turning plate and the elastic pressing block are all provided with two and are symmetrically arranged on the upper and lower sides of the bearing plate.
[0020] By adopting the above technical scheme, the mold is designed as a symmetric double station, which is suitable for the chest patch working condition of left-right symmetry structure, can simultaneously supplement the adhesive surfaces of the left and right chest patches, and can save the user operation time.
[0021] In a preferred example, the elastic pressing block is made of elastic EVA material or sponge.
[0022] By adopting the above technical scheme, the EVA material or sponge material can provide sufficient elastic force while being low in density, resistant to aging and not easy to deform for long-term use, and can improve the service life of the mold when used with the mold.
[0023] In a preferred example, the size of the elastic pressing block is greater than the size of the shaping groove.
[0024] By adopting the above technical scheme, when the elastic pressing block is pressed against the flexible mold cup, the edge of the elastic pressing block will exceed the shaping groove and be extruded and deformed into the shaping groove. The flexible mold cup inside the shaping groove can be covered and pressed by the elastic pressing block to improve the uniformity of the pressing of the elastic pressing block, thereby preventing the edge adhesive surface of the flexible mold cup from being attached insecurely and improving the attachment reliability.
[0025] In a preferred example, the locking assembly is provided in multiple groups, and the multiple groups of locking assemblies are arranged at intervals between the bearing plate and the turning plate.
[0026] By adopting the above technical scheme, multiple groups of locking assemblies are provided to provide multiple-point fixing force and ensure that the pressure of each region of the turning plate is consistent during pressing.
[0027] In a preferred example, the positioning groove is extended to be provided with a clearance groove for placing the connecting buckle of the flexible mold cup.
[0028] By adopting the technical scheme, the chest patch working condition with the connecting buckle position is applicable, so as to expand the application range of the mold.
[0029] In a preferred example, the application can be further configured to adopt a hinge or hinge connection between the bearing plate and the turning plate.
[0030] In summary, the application includes at least one of the following beneficial technical effects:
[0031] 1. The flexible mold cup provides chest support and shaping, and the adhesive surface structure is composed of multiple layers of double-sided adhesive. Each layer of double-sided adhesive is connected by a peelable adhesive connection, allowing users to remove the failed double-sided adhesive layer by layer. In use, the outermost layer of double-sided adhesive first contacts the skin. When the side of the outermost layer of double-sided adhesive that contacts the skin fails due to contamination or reduced adhesion, the layer of double-sided adhesive can be removed directly, exposing the inner layer of double-sided adhesive and continuing to function as an adhesive, thereby extending the service life of the chest patch, reducing the overall disposal of the chest patch due to adhesive failure, and reducing user costs while meeting green environmental protection requirements.
[0032] 2. When the adhesive surface needs to be replenished, first tear off the first protective release film of the replenishment adhesive surface, place the replenishment adhesive surface in the shaping groove with the second protective release film on one side of the replenishment adhesive surface abutting the inner bottom wall of the shaping groove, then place the flexible mold cup in the shaping groove with the side of the flexible mold cup that is in contact with the skin aligned and abutting the double-sided adhesive layer in the replenishment adhesive surface, complete the initial contact and adhesion, then cover the turning plate, so that the elastic compression block compresses the outer surface of the flexible mold cup, and the locking assembly is used to limit the rotation of the turning plate. After a period of time, the replenishment of the adhesive surface structure of the flexible mold cup is completed. The second protective release film can prevent the replenishment adhesive surface from adhering to the shaping groove. The compression of the elastic compression block allows the flexible mold cup to be in close contact with the double-sided adhesive layers, and the locking assembly limits the rotation of the turning plate to fix the position of the elastic compression block. The elastic compression block can uniformly and continuously apply pressure to the flexible mold cup through the elastic action, accelerating the adhesion of the flexible mold cup and the replenishment adhesive surface, thereby achieving adhesive surface replenishment through the mold, avoiding operation errors caused by manual adhesion, and significantly improving user experience and the convenience of replacing the replenishment adhesive surface.
[0033] 3. The mold is designed with symmetrical double stations, suitable for chest patch working conditions with left-right symmetrical structure, capable of simultaneously replenishing the adhesive surface of chest patches on both sides, and capable of saving user operation time. BRIEF DESCRIPTION OF DRAWINGS
[0034] Figure 1 is a structure diagram of a multi-layer detachable adhesive surface chest patch in an embodiment of the application;
[0035] Figure 2 is Figure 1 a partial enlarged view of part A in
[0036] Figure 3 is a structure diagram of a double-sided adhesive layer in an embodiment of the present application;
[0037] Figure 4 is a structure diagram of a mold for supplementing the adhesive surface of a chest patch in an embodiment of the present application;
[0038] Figure 5 is another structure diagram of a mold for supplementing the adhesive surface of a chest patch in an embodiment of the present application;
[0039] Figure 6 is a structure diagram of a mold for supplementing the adhesive surface of a chest patch in an embodiment of the present application.
[0040] Reference signs: 1, flexible mold cup; 2, double-sided adhesive layer; 21, flexible mesh layer; 22, skin-friendly adhesive layer; 3, bearing plate; 4, turning plate; 5, locking assembly; 6, supplemental adhesive surface; 7, shaping groove; 8, elastic pressing block; 9, accommodation groove. DETAILED DESCRIPTION
[0041] The exemplary embodiments of the present application will be described hereinafter with reference to the accompanying drawings, in which various details of the embodiments of the present application are set forth in order to provide a thorough understanding of the embodiments of the present application. It will be apparent to those skilled in the art that various changes and modifications can be made to the embodiments described herein without departing from the scope and spirit of the present application. Also, the description set forth in the following description of the exemplary embodiments does not limit the scope of the present application in any way.
[0042] It should be noted that the terms "first", "second", and the like in the present application are used to distinguish like objects, and do not necessarily have to be used to describe a particular order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present disclosure described herein can be implemented in an order other than those illustrated or described herein. The implementation described in the following exemplary embodiments does not represent all implementations consistent with the present disclosure.
[0043] In addition, the term "and / or" herein is merely a description of the association relationship between the associated objects, which means that there can be three relationships, for example, A and / or B, which means that there are three cases of A alone, A and B together, and B alone. In addition, the character " / " herein, unless otherwise specified, generally represents an "or" relationship between the associated objects.
[0044] The following description will be made with reference to the accompanying drawings, in which: Figure 1 to the accompanying drawings, Figure 3 A multi-layer detachable adhesive surface chest patch is described.
[0045] Reference is made to Figures 1 to 3The multi-layer detachable adhesive surface chest pad comprises a flexible mold cup 1 and an adhesive surface structure arranged on the side of the flexible mold cup 1 that is attached to the human skin. The adhesive surface structure comprises a plurality of double-sided adhesive layers 2, and adjacent double-sided adhesive layers 2 are mutually adhered and can be peeled off. The flexible mold cup 1 provides chest support and shaping. The adhesive surface structure is composed of a plurality of double-sided adhesive layers 2. Each double-sided adhesive layer 2 is connected by means of peelable adhesion. The user can peel off the invalid double-sided adhesive layer 2 layer by layer. In use, the outermost double-sided adhesive layer 2 first contacts the skin. When the side of the outermost double-sided adhesive layer 2 that contacts the skin is invalid due to contamination or decreased adhesion, the layer of double-sided adhesive layer 2 can be directly peeled off, exposing the inner double-sided adhesive layer 2 and continuing to play the role of adhesion, thereby prolonging the service life of the chest pad and reducing the overall discarding caused by the invalidity of the adhesive surface, thereby reducing the cost of the user and meeting the requirements of green environmental protection.
[0046] Specifically, in an embodiment, the double-sided adhesive layer 2 comprises a flexible mesh cloth layer 21, and a skin-friendly adhesive layer 22 is coated on the flexible mesh cloth layer 21, so that the opposite two sides of the flexible mesh cloth layer 21 have adhesion. The flexible mesh cloth layer 21 serves as the adhesive layer framework, and the two sides are coated with the skin-friendly adhesive layer 22 to form a double-sided adhesive structure, which can not only enhance the tensile strength of the adhesive layer but also improve the air permeability through the mesh cloth layer. Generally, the flexible mesh cloth layer 21 can be made of non-woven fabric, nylon fiber mesh cloth, spandex mesh cloth, silk fiber mesh cloth, bamboo fiber mesh cloth, etc., which have the properties of soft skin-friendly, air permeable, anti-pulling and not easy to leave, so as to improve the user experience.
[0047] Preferably, the skin-friendly adhesive layer 22 is made of silicone material, which is resistant to sweat and temperature, has stable and durable adhesion and peelability, is strong in skin-friendliness, has no irritation during long-term wearing, and is suitable for chest pad working conditions.
[0048] Referring to Figures 4 to 6 The present application also provides a mold for supplementing the adhesive surface of the chest pad, which is used for the multi-layer detachable adhesive surface chest pad described above and comprises a bearing plate 3, a turning plate 4, a locking assembly 5, and a supplementary adhesive surface device 6. The bearing plate 3 is provided with a shaped groove 7, the shape and size of which are adapted to the thickness and shape of the flexible mold cup 1. The turning plate 4 is rotatably connected to the bearing plate 3 on one side and is used to cover the bearing plate 3. Generally, the bearing plate 3 and the turning plate 4 are connected by hinges or hinges to realize the function of rotational connection and limit the rotation track of the turning plate 4 to realize precise rotation positioning. The turning plate 4 is provided with an elastic pressing block 8 at the position corresponding to the shaped groove 7. When the turning plate 4 covers the bearing plate 3, the elastic pressing block 8 is located in the shaped groove 7. The locking assembly 5 is arranged between the bearing plate 3 and the turning plate 4 and is used to limit the rotation of the turning plate 4. The supplementary adhesive surface device 6 comprises a first protective release film (not shown in the figure), a plurality of double-sided adhesive layers 2, and a second protective release film (not shown in the figure) connected in sequence. The first protective release film and the second protective release film are used to protect the double-sided adhesive layers 2 and can be peeled off.
[0049] Specifically, when the adhesive surface needs to be supplemented, the first protective release film of the supplemental adhesive surface set 6 is torn off, the supplemental adhesive surface set 6 is placed in the shaping groove 7, and the side of the supplemental adhesive surface set 6 where the second protective release film is located abuts against the inner bottom wall of the shaping groove 7, then the flexible mold cup 1 is placed in the shaping groove 7, and the side of the flexible mold cup 1 that is attached to the skin is aligned and abuts against the double-sided adhesive layer 2 in the supplemental adhesive surface set 6, the preliminary contact adhesion is completed, then the flap 4 is closed, so that the elastic compression block 8 compresses the outer surface of the flexible mold cup 1, and the locking assembly 5 is used to limit the rotation of the flap 4, after a period of time, the supplemental adhesive surface structure of the flexible mold cup 1 is completed.
[0050] The second protective release film can prevent the supplemental adhesive surface set 6 from being adhered to the shaping groove 7, the compression of the elastic compression block 8 makes the flexible mold cup 1 closely contact with the plurality of double-sided adhesive layers 2, and the rotation of the flap 4 is limited by the locking assembly 5 to fix the position of the elastic compression block 8, so that the elastic compression block 8 can uniformly and continuously apply pressure to the flexible mold cup 1 through the elastic effect, accelerate the adhesion of the flexible mold cup 1 and the supplemental adhesive surface set 6, thereby realizing the adhesive surface supplementing through the mold, avoiding the operation error caused by manual attachment, and greatly improving the user experience and the convenience of replacing the supplemental adhesive surface.
[0051] It should be noted that the locking assembly 5 can adopt common box buckle structures, snap structures, lock structures, spring lock structures and other structures that can limit the opening of the flap 4, which are not limited here, and technicians can select according to actual needs. In this embodiment, the locking assembly 5 adopts a snap structure for illustration.
[0052] Further, the positioning groove, the flap 4 and the elastic compression block 8 are both provided with two and symmetrically arranged on the upper and lower sides of the bearing plate 3, and the symmetric double stations are designed through the mold, which is suitable for the chest patch working condition of left-right symmetry structure, can supplement the adhesive surfaces of the left and right chest patches at the same time, and can save the operation time of the user.
[0053] It should be noted that in the actual operation process, the two side chest patches are usually detachably connected, such as fastener connection, etc. After disassembly, the two side chest patches can be divided into upper and lower parts and simultaneously locked in the upper and lower symmetric shaping grooves 7 through the elastic compression block 8 matched with the corresponding locking assembly 5 to lock the corresponding flap 4 for continuous compression, thereby synchronously completing the adhesive surface adhesion of the two side chest patches.
[0054] As a preferred, the elastic compression block 8 is made of elastic EVA material or sponge, wherein the EVA material or sponge material can provide sufficient elastic force while having low density, aging resistance and long-term use without deformation, which can improve the service life of the mold when used with the mold.
[0055] As preferred, the size of the pressing block is larger than the size of the shaping groove 7, so that when the flexible mold cup 1 is pressed, the edge of the elastic pressing block 8 will exceed the shaping groove 7 and be extruded into the shaping groove 7, which can ensure that the flexible mold cup 1 inside the shaping groove 7 is covered and pressed by the elastic pressing block 8, so as to improve the uniformity of the pressing of the elastic pressing block 8, thereby preventing the edge of the flexible mold cup 1 from being pasted unstably, and improving the pasting reliability.
[0056] As preferred, the locking assembly 5 is provided in multiple groups, and the multiple groups of locking assemblies 5 are arranged at intervals between the bearing plate 3 and the turning plate 4. By providing multiple groups of locking assemblies 5, multi-point fixing force is provided, and the pressure of each area of the turning plate 4 during the pressing process is ensured to be uniform.
[0057] In addition, the positioning groove is extended to be provided with a clearance groove 9, which is used for placing the connecting buckle position of the flexible mold cup 1. The clearance groove 9 is suitable for the chest sticker working condition with the connecting buckle position, so that the glue surface is pasted to the main body part of the flexible mold cup 1 without affecting the part of the connecting buckle position, so as to expand the application range of the mold.
[0058] The above specific embodiments do not constitute a limitation on the protection scope of the present application. Those skilled in the art should understand that various modifications, combinations, sub-combinations and substitutions can be made according to design requirements and other factors. Any modification, equivalent replacement and improvement made within the spirit and principles of the present application should be included in the protection scope of the present application.
Claims
1. A multi-layered detachable adhesive chest patch, characterized in that, The flexible mold cup (1) and the adhesive surface structure arranged on the side of the flexible mold cup (1) adhering to the human skin, the adhesive surface structure comprises a plurality of double-sided adhesive layers (2), and adjacent double-sided adhesive layers (2) are adhered to each other and can be peeled off.
2. A multi-layered detachable adhesive chest patch as claimed in claim 1, wherein, The double-sided adhesive layer (2) comprises a flexible mesh cloth layer (21), and a skin-friendly adhesive layer (22) is coated on the flexible mesh cloth layer (21), so that the opposite two sides of the flexible mesh cloth layer (21) are adhesive.
3. A multi-layered detachable adhesive chest patch as claimed in claim 1, wherein, The skin-friendly adhesive layer (22) is made of silica gel material.
4. A mold for supplementing the chest patch adhesive surface, for the multi-layer detachable adhesive surface chest patch according to any one of claims 1 to 3, characterized in that, The flexible mold cup (1) and the adhesive surface structure arranged on the side of the flexible mold cup (1) adhering to the human skin, the adhesive surface structure comprises a plurality of double-sided adhesive layers (2), and adjacent double-sided adhesive layers (2) are adhered to each other and can be peeled off. The double-sided adhesive layer (2) comprises a flexible mesh cloth layer (21), and a skin-friendly adhesive layer (22) is coated on the flexible mesh cloth layer (21), so that the opposite two sides of the flexible mesh cloth layer (21) are adhesive. The skin-friendly adhesive layer (22) is made of silica gel material. The flexible mold cup (1) and the adhesive surface structure arranged on the side of the flexible mold cup (1) adhering to the human skin, the adhesive surface structure comprises a plurality of double-sided adhesive layers (2), and adjacent double-sided adhesive layers (2) are adhered to each other and can be peeled off. The double-sided adhesive layer (2) comprises a flexible mesh cloth layer (21), and a skin-friendly adhesive layer (22) is coated on the flexible mesh cloth layer (21), so that the opposite two sides of the flexible mesh cloth layer (21) are adhesive.
5. A mold for supplementing the surface of a breast patch, as claimed in claim 4, characterized in that, The skin-friendly adhesive layer (22) is made of silica gel material.
6. A mold for supplementing the surface of a breast patch as claimed in claim 4, characterized in that, The flexible mold cup (1) and the adhesive surface structure arranged on the side of the flexible mold cup (1) adhering to the human skin, the adhesive surface structure comprises a plurality of double-sided adhesive layers (2), and adjacent double-sided adhesive layers (2) are adhered to each other and can be peeled off.
7. A mold for supplementing the surface of a breast patch as claimed in claim 4, characterized in that, The double-sided adhesive layer (2) comprises a flexible mesh cloth layer (21), and a skin-friendly adhesive layer (22) is coated on the flexible mesh cloth layer (21), so that the opposite two sides of the flexible mesh cloth layer (21) are adhesive.
8. A mold for supplementing the surface of a breast patch as claimed in claim 4, characterized in that, The skin-friendly adhesive layer (22) is made of silica gel material.
9. A mold for supplementing the surface of a breast patch as claimed in claim 4, characterized in that, The flexible mold cup (1) and the adhesive surface structure arranged on the side of the flexible mold cup (1) adhering to the human skin, the adhesive surface structure comprises a plurality of double-sided adhesive layers (2), and adjacent double-sided adhesive layers (2) are adhered to each other and can be peeled off.
10. A mold for supplementing the surface of a breast patch as claimed in claim 4, characterized in that, The double-sided adhesive layer (2) comprises a flexible mesh cloth layer (21), and a skin-friendly adhesive layer (22) is coated on the flexible mesh cloth layer (21), so that the opposite two sides of the flexible mesh cloth layer (21) are adhesive. The skin-friendly adhesive layer (22) is made of silica gel material. The flexible mold cup (1) and the adhesive surface structure arranged on the side of the flexible mold cup (1) adhering to the human skin, the adhesive surface structure comprises a plurality of double-sided adhesive layers (2), and adjacent double-sided adhesive layers (2) are adhered to each other and can be peeled off. The double-sided adhesive layer (2) comprises a flexible mesh cloth layer (21), and a skin-friendly adhesive layer (22) is coated on the flexible mesh cloth layer (21), so that the opposite two sides of the flexible mesh cloth layer (21) are adhesive. The skin-friendly adhesive layer (22) is made of silica gel material. The flexible mold cup (1) and the adhesive surface structure arranged on the side of the flexible mold cup (1) adhering to the human skin, the adhesive surface structure comprises a plurality of double-sided adhesive layers (2), and adjacent double-sided adhesive layers (2) are adhered to each other and can be peeled off. The double-sided adhesive layer (2) comprises a flexible mesh cloth layer (21), and a skin-friendly adhesive layer (22) is coated on the flexible mesh cloth layer (21), so that the opposite two sides of the flexible mesh cloth layer (21) are adhesive. The skin-friendly adhesive layer (22) is made of silica gel material.