Air bag type badge

By introducing an air bladder layer into the badge, the problem of uneven surface caused by external force and dust is solved, improving the badge's aesthetics, feel, and durability, and achieving better adaptability and light effect.

CN223515866UActive Publication Date: 2025-11-07YANTAI YUEYAO TOYS CO LTD
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Patent Information

Application Number
CN202422231182.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-11-07
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

Traditional badges are prone to uneven surfaces due to external pressure and dust, affecting their appearance and feel. They also pose a risk of reduced coating adhesion and rust.

Method used

An airbag layer is added to the badge. The airbag layer consists of an upper film layer and a lower film layer, located between the base paper layer and the metal substrate. It provides cushioning and deformation capability and isolates the metal substrate from contact with air and moisture.

Benefits of technology

It effectively prevents wrinkles on the coating surface, enhances visual appeal and tactile feel, extends service life, strengthens impact resistance and structural stability, and improves light effects and overall aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an air bag type badge which comprises a pattern layer, a bottom paper layer, an air bag layer and a metal base plate, the air bag layer is arranged between the bottom paper layer and the metal base plate, the pattern layer is attached to the upper portion of the bottom paper layer and connected to the metal base plate, and the air bag layer is arranged on the metal base plate. According to the air bag type badge, the air bag layer is additionally arranged, so that a fuller radian is formed on the surface of the pattern layer, wrinkles on the surface of the pattern layer can be effectively prevented, the neat appearance of the air bag type badge is kept, and the visual aesthetic feeling of the air bag type badge is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of decorative articles, especially to a gasbag type badge. BACKGROUND

[0002] A badge is a symbol worn on the body to indicate identity, occupation, and honor. As an article with the functions of commemoration, identification, or decoration, a badge is widely used in various occasions, such as enterprise culture, event commemoration, and community identification.

[0003] Traditional badges usually have uneven surfaces. This is because a traditional badge is composed of a badge body and a layer. The badge body is the main part of the badge, usually a flat metal or plastic base plate, and the surface can be plated with gold, silver, or painted. The layer usually has patterns, characters, or symbols representing specific meanings or identities. Based on this, when the badge is subjected to external pressure, etc., it is easy to deform, resulting in uneven surfaces of the badge.

[0004] In addition, during the process of pressing the layer onto the surface of the badge body, dust and debris will cause uneven protrusions on the surface of the badge. Dust and debris are inevitable in the production environment. Whether in a processing workshop or in a place where materials are stored, there will always be tiny particulate matter in the air. These particles are easy to fall on the metal surface during the production process, especially before the layer comes into contact with the surface of the badge body. When tiny dust or debris is pressed between the two, they will form irregular protrusions or bubbles. These protrusions not only affect the smoothness of the badge, but also may cause the adhesion of the layer to decrease, increasing the risk of peeling. Finally, the surface of the badge may present an uneven state, seriously affecting its appearance and feel. SUMMARY

[0005] An advantage of the utility model is that it provides a gasbag type badge. The addition of a gasbag layer in the gasbag type badge makes the surface of the layer form a fuller arc, effectively preventing wrinkles on the surface of the layer, maintaining the neat appearance of the gasbag type badge, and improving the visual aesthetics of the gasbag type badge.

[0006] Another advantage of the utility model is that it provides a gasbag type badge. The presence of the gasbag layer in the gasbag type badge makes the surface of the badge feel softer and smoother, improving the wearing experience.

[0007] Another advantage of the utility model is that it provides a gasbag type badge. The design of the gasbag layer in the gasbag type badge can optimize the light effect of the surface of the badge, improving the visual aesthetics of the gasbag type badge.

[0008] The other advantage of the utility model lies in that it provides a gasbag type badge, the design of the gasbag layer in the gasbag type badge insulates the contact of the metal substrate and air and moisture, and can delay the rusting of the metal substrate.

[0009] The other advantage of the utility model lies in that it provides a gasbag type badge, the design of the gasbag layer in the gasbag type badge enables it to deform when stressed, and provides better adaptability and supporting effect.

[0010] The other advantage of the utility model lies in that it provides a gasbag type badge, the deformation degree of the gasbag layer in the gasbag type badge is different in the stress area, the area with large stress deforms greatly, the area with small stress deforms small, can more accurately respond to external pressure, and avoid damage caused by uneven stress.

[0011] The other advantage of the utility model lies in that it provides a gasbag type badge, the gasbag layer of the gasbag type badge is supported under the rigidity of a metal substrate, effectively supports the picture layer, and ensures the overall structural stability of the gasbag type badge.

[0012] The other advantage of the utility model lies in that it provides a gasbag type badge, the buffering effect of the gasbag layer of the gasbag type badge improves the impact resistance of the gasbag type badge, makes the gasbag type badge can adapt to different external environment and pressure change, maintains stability, prolongs the service life.

[0013] The other advantage of the utility model lies in that it provides a gasbag type badge, the design of the gasbag layer in the gasbag type badge not only improves the functionality of the gasbag type badge, but also enhances the overall aesthetic property, and attracts more users.

[0014] According to another aspect of the utility model, the utility model further provides a gasbag type badge, which comprises:

[0015] a picture layer;

[0016] a bottom paper layer;

[0017] a gasbag layer; and

[0018] a metal substrate, the gasbag layer is arranged between the bottom paper layer and the metal substrate, and the picture layer is attached above the bottom paper layer and connected to the metal substrate.

[0019] According to one embodiment of the utility model, the gasbag layer comprises an upper film layer, a lower film layer and a cavity, the cavity is located between the upper film layer and the lower film layer, the upper film layer is attached to the bottom paper layer, and the lower film layer is attached to the metal substrate.

[0020] According to one embodiment of the present application, the layer includes a layer body and an edge portion, the edge portion extends outward from the circumferential side of the layer body to be connected to the metal substrate by bending.

[0021] According to one embodiment of the present application, the base paper layer includes a base paper body and a fitting portion, the fitting portion extends outward from the circumferential side of the base paper body to be connected to the metal substrate by bending.

[0022] According to one embodiment of the present application, the metal substrate includes a cover layer, a bottom plate layer and a groove, the bottom plate layer is embedded in the cover layer, and the groove is formed at the embedded position of the bottom plate layer and the cover layer, the edge portion and the fitting portion are mutually fitted and connected to the groove by bending.

[0023] According to one embodiment of the present application, the cover layer includes a protruding portion and a first connecting portion, the first connecting portion is formed on the circumferential side of the protruding portion, and the air bag layer is fitted on the protruding portion.

[0024] According to one embodiment of the present application, the bottom plate layer includes a recessed portion and a second connecting portion, the second connecting portion is formed on the circumferential side of the recessed portion, the first connecting portion and the second connecting portion are mutually embedded, and the groove is formed at the embedded position.

[0025] According to one embodiment of the present application, the metal substrate further includes a fixing member, and the fixing member is arranged on the recessed portion.

[0026] According to one embodiment of the present application, the overall thickness of the air bag layer is arranged to be 1mm to 5mm, and the thickness of the upper film layer and the lower film layer is arranged to be 0.01mm to 0.1mm.

[0027] According to one embodiment of the present application, the upper film layer and the lower film layer are made of latex or soft plastic material.

[0028] The further purposes and advantages of the present application will be fully understood through the following description and drawings. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 It is a whole structure schematic diagram of an air bag type badge according to the first preferred embodiment of the present application.

[0030] Figure 2 It is an explosion schematic diagram of an air bag type badge according to the first preferred embodiment of the present application.

[0031] Figure 3is a sectional view of an airbag badge according to the first preferred embodiment of the present application.

[0032] Figure 4 is a partial enlarged view of the airbag badge according to the first preferred embodiment of the present application. DETAILED DESCRIPTION

[0033] The following description is provided to disclose the present application so that those skilled in the art can implement the present application. The preferred embodiments in the following description are only examples, and other obvious modifications can be conceived by those skilled in the art. The basic principles of the present application defined in the following description can be applied to other embodiments, modifications, improvements, equivalents and other technical solutions without departing from the spirit and scope of the present application.

[0034] Those skilled in the art should understand that in the disclosure of the present application, the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, which are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore the above terms cannot be understood as a limitation of the present application.

[0035] It can be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of one element can be one, and in another embodiment, the number of the element can be multiple, and the term "one" cannot be understood as a limitation on the number.

[0036] Reference is made to the accompanying drawings Figure 1 to the accompanying drawings Figure 4 As shown in the drawings, an airbag badge according to a preferred embodiment of the present application is shown. In order to facilitate the description, in this embodiment, the end of the airbag badge 1 fixed with the wearer's clothes during wearing is taken as the lower end of the airbag badge 1, and the end opposite to the front end of the airbag badge 1 is taken as the upper end of the airbag badge 1.

[0037] Figure 1 is a schematic view of the overall structure of the airbag badge 1 according to the first preferred embodiment of the present application. Figure 2It is the explosion schematic view of a gasbag type badge according to the first preferred embodiment of the utility model. In the embodiment, the gasbag type badge 1 includes a picture layer 10, a bottom paper layer 20, a gasbag layer 30 and a metal substrate 40, the gasbag layer 30 is arranged between the bottom paper layer 20 and the metal substrate 40, the picture layer 10 is arranged above the bottom paper layer 20, that is to say, the picture layer 10, the bottom paper layer 20, the gasbag layer 30 and the metal substrate 40 are mutually pasted and sequentially connected to form the gasbag type badge 1.

[0038] The picture layer 10 and the bottom paper layer 20 are mutually pasted and are formed above the metal substrate 40 by die pressing, wherein the picture layer 10 is used to arrange a pattern, specifically, the pattern is arranged on the side of the picture layer 10 and the bottom paper layer 20 in contact. The bottom paper layer 20 is provided with a flashing material on the surface or is manufactured by using a light reflecting material, so that the bottom paper layer 20 has visual attraction and improves the texture of the gasbag type badge 1, the flashing effect can attract attention, so that the gasbag type badge 1 is more conspicuous and eye-catching in various occasions, and the flashing surface can improve the overall texture of the gasbag type badge 1, so that it looks more high-grade and delicate.

[0039] In the embodiment, the gasbag layer 30 is arranged between the bottom paper layer 20 and the metal substrate 40, the gasbag layer 30 can effectively prevent the picture layer 10 from appearing wrinkles on the surface, maintain the neat appearance of the gasbag type badge 1 and improve the visual aesthetics of the gasbag type badge 1. Further, the design of the gasbag layer 30 can optimize the light effect of the surface of the gasbag type badge 1 and improve the visual aesthetics of the gasbag type badge 1.

[0040] It is worth mentioning that the traditional badge is prone to deformation when subjected to external pressure and the like, resulting in uneven surface of the badge. In addition, in the production environment, dust and debris are inevitable, and these particles are prone to fall on the surface of the metal substrate 40 during the production process, especially before the graphic layer 10 and the base paper layer 20 are pressed on the metal substrate 40. When fine dust or debris is pressed between the two, they will form irregular bumps or bubbles, resulting in uneven surface of the badge. In the present embodiment, the gas bag layer 30 is arranged between the base paper layer 20 and the metal substrate 40, and the deformation degree of the gas bag layer 30 in the stress area is different, the area with large stress deforms greatly, and the area with small stress deforms slightly. On the one hand, it can more accurately respond to external pressure and avoid uneven stress leading to uneven surface and damage; on the other hand, the design of the gas bag layer 30 enables it to deform when stressed, providing better adaptability and support effect. The gas bag layer 30 is effectively supported by the rigid metal substrate 40, effectively supporting the graphic layer 10 and ensuring the stability of the overall structure of the gas bag badge 1.

[0041] More importantly, the design of the gas bag layer 30 in the gas bag badge 1 isolates the metal substrate 40 from contact with air and moisture, delaying rusting of the metal substrate 40 and prolonging the service life.

[0042] In the present embodiment, the gas bag layer 30 includes an upper film layer 31, a lower film layer 32, and a cavity 33 located between the upper film layer 31 and the lower film layer 32. The upper film layer 31 is attached to the base paper layer 20, and the lower film layer 32 is attached to the metal substrate 40. That is, the cavity 33 is the space between the upper film layer 31 and the lower film layer 32, and the cavity 33 is filled with gas, forming the buoyancy or buffering effect of the gas bag layer 30. After the gas bag layer 30 is pressed, it can quickly return to its original state, which is conducive to forming a fuller arc on the surface of the graphic layer 10 and preventing wrinkles on the surface of the graphic layer 10.

[0043] The upper film layer 31 and the lower film layer 32 are preferably made of latex or soft plastic material. Latex and soft plastic have good flexibility, which can adapt to shape changes when the gas bag badge 1 is pressed, ensuring that the deformation degree of the gas bag layer 30 in the stress area is different, the area with large stress deforms greatly, and the area with small stress deforms slightly. This is conducive to forming a fuller arc on the surface of the graphic layer 10 and can effectively prevent wrinkles on the surface of the graphic layer 10, maintain the neat appearance of the gas bag badge 1, and improve the visual aesthetics of the gas bag badge 1.

[0044] In the embodiment, the thickness of the upper film layer 31 and the lower film layer 32 is preferably set to 0.01mm to 0.1mm, and the upper film layer 31 and the lower film layer 32 are relatively thin, so that better adaptability can be achieved when the temperature and the ambient pressure change, and the material stress concentration caused by excessive thickness can be reduced. That is, the air bag layer 30 deforms when stressed, providing better adaptability and support effect. In addition, the relatively thin upper film layer 31 and the lower film layer 32 can reduce the overall weight of the air bag badge 1, and also can maintain good air tightness, prevent gas leakage, and ensure that the air bag layer 30 can work effectively.

[0045] In particular, the overall thickness of the air bag layer 30 is preferably set to 1mm to 5mm, and a suitable thickness is selected to facilitate the pressing forming of the air bag layer 30 on the metal substrate 40 by a grinding tool, and is conducive to the formation of a more full arc on the surface of the graphic layer 10, which can effectively prevent wrinkles on the surface of the graphic layer 10. When the thickness of the air bag layer 30 is too large, it is easy to cause the air bag badge 1 to be too thick and too soft. When the thickness of the air bag layer 30 is too small, the resilience of the air bag layer 30 cannot be guaranteed, and the surface of the graphic layer 10 cannot form a full arc. Therefore, the overall thickness of the air bag layer 30 is preferably set to 1mm to 5mm, so that the surface of the air bag badge 1 is softer and smoother, and the wearing experience is improved. The actual thickness can be selected according to actual needs, and those skilled in the art should understand that the thickness of the air bag layer 30 is not limited by the present application.

[0046] In addition, in the embodiment, the main function of the upper film layer 31 is to close the top of the air bag layer 30, maintain the gas in the cavity 33, and prevent gas leakage. At the same time, the design of the upper film layer 31 also needs to consider the inflation and deflation function of the air bag layer 30. In one embodiment, the air bag layer 30 is provided with a gas valve, which can be easily inflated and deflated. This makes the air bag layer 30 can adjust the pressure and volume of the gas as needed. In another embodiment, the air bag layer 30 is not provided with the gas valve, that is, the air bag layer 30 is inflated during production and cannot be re-inflated after use. The design without the gas valve makes the structure of the air bag layer 30 simpler, and the manufacturing cost can be relatively low. In addition, it can provide better air tightness and reduce the risk of gas leakage. Therefore, it can be selected according to actual needs.

[0047] The graphic layer 10 includes a graphic layer body 11 and an edge portion 12, and the edge portion 12 is integrally connected to the edge of the graphic layer body 11, that is, the edge portion 12 extends outward from the peripheral side of the graphic layer body 11 to be bent and connected to the metal substrate 40 to achieve the purpose of fixation.

[0048] The bottom paper layer 20 comprises a bottom paper body 21 and a sticking part 22, the sticking part 22 is integrally connected to the edge of the bottom paper body 21, that is, the sticking part 22 extends outward from the circumferential side of the bottom paper body 21 to be bent and connected at the metal substrate 40 to achieve the purpose of fixation. When the picture layer 10 and the bottom paper layer 20 are mutually adhered and pressed and formed by a grinding tool above the metal substrate 40, the picture layer body 11 and the bottom paper body 21 are mutually adhered, the edge part 12 and the sticking part 22 are mutually adhered and bent and connected at the metal substrate 40. In addition, the air bag layer 30 is adhered to the bottom paper body 21 of the bottom paper layer 20, so that the surface of the picture layer body 11 of the picture layer 10 forms a more full arc.

[0049] The metal substrate 40 comprises a cover layer 41, a bottom plate layer 42 and a groove 43, the bottom plate layer 42 is embedded in the cover layer 41, and the groove 43 is formed at the embedded part of the bottom plate layer 42 and the cover layer 41, that is, the transverse length of the bottom plate layer 42 is slightly smaller than the transverse length of the cover layer 41, the edge part 12 and the sticking part 22 are mutually adhered and bent and connected in the groove 43, thereby achieving the purpose that the picture layer 10 and the bottom paper layer 20 are mutually adhered and fixed above the metal substrate 40. In other implementable modes, the cover layer 41 and the bottom plate layer 42 can also be fixed by clamping, sleeving and the like, which is not a limitation of the utility model.

[0050] In the embodiment, the bottom plate layer 42 is embedded in the cover layer 41, based on which, the cover layer 41 comprises a protruding part 411 and a first connecting part 412, the bottom plate layer 42 comprises a recessed part 421 and a second connecting part 422, the first connecting part 412 is formed at the circumferential side of the protruding part 411, the second connecting part 422 is formed at the circumferential side of the recessed part 421, the first connecting part 412 and the second connecting part 422 are mutually embedded, and the groove 43 is formed at the embedded part. The edge part 12 and the sticking part 22 are mutually adhered and bent and connected in the groove 43.

[0051] The protruding part 411 protrudes towards the surface of the layer 10 in a circular arc shape, that is, the protruding part 411 makes the middle of the air bag badge 1 more protruding and the edges more flat. The protruding part 411 can not only increase the aesthetics and three-dimensionality of the air bag badge 1, but also highlight specific patterns, words or graphics, making the air bag badge 1 more attractive and recognizable. In addition, the surface of the layer 10 forms a more full arc, which can optimize the light effect of the surface of the air bag badge 1 and improve the visual aesthetics of the air bag badge 1. The recessed part 421 is recessed towards the surface of the layer 10.

[0052] The metal substrate 40 further comprises a fixing part 44 arranged in the recessed part 421. The fixing part 44 is implemented as a clip, a pin or other fixing device. The recessed part 421 provides a mounting space for the fixing part 44, so that the arrangement of the fixing part 44 does not increase the thickness of the air bag badge 1 and affect the aesthetics of the air bag badge 1.

[0053] In summary, the addition of the air bag layer 30 in the air bag badge 1 makes the surface of the layer 10 form a more full arc, which can effectively prevent wrinkles on the surface of the layer 10, maintain the clean appearance of the air bag badge 1 and improve the visual aesthetics of the air bag badge 1. The presence of the air bag layer 30 also makes the surface of the air bag badge 1 feel softer and smoother, improving the wearing experience. The design of the air bag layer 30 can optimize the light effect of the surface of the air bag badge 1 and improve the visual aesthetics of the air bag badge 1.

[0054] Those skilled in the art will understand that the embodiments of the present application described above and shown in the drawings are only examples and do not limit the present application. The purpose of the present application has been fully and effectively achieved. The function and structure principle of the present application has been shown and explained in the embodiments, and the implementation of the present application can be any modification or change without departing from the principle.

Claims

1. An airbag badge, characterized by, It comprises: a graphic layer; a base paper layer; an air bag layer; and a metal substrate, the air bag layer being disposed between the base paper layer and the metal substrate, the graphic layer being attached above the base paper layer and connected to the metal substrate.

2. The air bag badge according to claim 1, wherein the air bag layer comprises an upper film layer, a lower film layer, and a cavity, the cavity being located between the upper film layer and the lower film layer, the upper film layer being attached to the base paper layer, and the lower film layer being attached to the metal substrate.

3. The air bag badge according to claim 2, wherein the graphic layer comprises a graphic layer body and a rim portion, the rim portion extending outwardly from a peripheral side of the graphic layer body to be bent and connected at the metal substrate.

4. The air bag badge according to claim 3, wherein the base paper layer comprises a base paper body and an attachment portion, the attachment portion extending outwardly from a peripheral side of the base paper body to be bent and connected at the metal substrate.

5. The air bag badge according to claim 4, wherein the metal substrate comprises a cover layer, a bottom plate layer, and a slot, the bottom plate layer being embedded in the cover layer, and the slot being formed at an embedded portion of the bottom plate layer and the cover layer, the rim portion and the attachment portion being attached to each other and bent and connected in the slot.

6. The air bag badge according to claim 5, wherein the cover layer comprises a protrusion portion and a first connecting portion, the first connecting portion being formed at a peripheral side of the protrusion portion, and the air bag layer being attached to the protrusion portion.

7. The air bag badge according to claim 6, wherein the bottom plate layer comprises a recess portion and a second connecting portion, the second connecting portion being formed at a peripheral side of the recess portion, and the first connecting portion and the second connecting portion being embedded in each other and forming the slot at an embedded portion.

8. The air bag badge according to claim 7, wherein the metal substrate further comprises a fixing member, the fixing member being disposed at the recess portion.

9. The air bag badge according to any one of claims 2 to 8, wherein an overall thickness of the air bag layer is set to be 1 mm to 5 mm, and a thickness of the upper film layer and the lower film layer is set to be 0.01 mm to 0.1 mm.

10. The air bag badge according to any one of claims 2 to 8, wherein the upper film layer and the lower film layer are made of latex or soft plastic material. ​