Anti-fake buckle assembly
The anti-counterfeiting buckle component design, which uses multiple components working together and is arranged vertically, solves the problem of easy disassembly of existing buckle components, achieving a high level of security and reliable anti-counterfeiting effect for product packaging, and enhancing brand protection and consumer trust.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN PENGKAI PRINTING
- Filing Date
- 2025-06-30
- Publication Date
- 2026-05-15
AI Technical Summary
Existing anti-counterfeiting buckle components are easily disassembled and cannot effectively prevent malicious damage or secondary encapsulation, making it difficult to meet high security requirements.
The system employs a multi-component collaborative snap-fit structure, including a first snap-fit component, a second snap-fit component, and a third snap-fit component. Through multi-layer snap-fit design and vertical snap-fit layout, combined with support components, mounting components, and limiting structures, the snap-fit stability is enhanced, and an anti-counterfeiting label layer is set on the surface of the snap-fit component.
It significantly improves the disassembly difficulty and structural stability of the buckle components, enhances anti-counterfeiting performance, ensures the safety and reliability of product packaging, and improves user experience and ease of authenticity verification.
Smart Images

Figure CN224241683U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of snap-fit connection structures, and in particular to an anti-counterfeiting snap-fit component. Background Technology
[0002] The field of packaging anti-counterfeiting technology has developed rapidly in recent years, with various anti-counterfeiting technologies emerging continuously, providing important guarantees for product security. As the market's demand for product authenticity verification continues to grow, anti-counterfeiting technology not only plays a crucial role in protecting brand rights but also is of great significance in enhancing consumer trust and maintaining market order. Currently, widely used anti-counterfeiting technologies include, but are not limited to, holograms, QR code encryption, and special material markings; these technologies effectively enhance the anti-counterfeiting capabilities of products.
[0003] In practical applications, the following conventional methods are typically used to achieve sealing and anti-counterfeiting of packaging boxes: First, simple fixing is achieved through a single snap-fit component, using a snap-fit structure to initially connect the lid and base of the packaging box; second, adhesive bonding combined with snap-fits is used to enhance the stability of the connection; third, a multi-point snap-fit structure is employed, using multiple independent snap-fits to connect different parts, thereby improving the overall structural reliability. While these methods can meet anti-counterfeiting requirements to a certain extent, their designs are relatively simple and easily imitated or maliciously circumvented.
[0004] However, existing anti-counterfeiting buckle components are at risk of being easily disassembled, and cannot effectively prevent malicious damage or secondary packaging, resulting in poor anti-counterfeiting effects and difficulty in meeting the packaging requirements of products with high security needs.
[0005] Therefore, based on the above problems, existing technologies need to be improved. Utility Model Content
[0006] The purpose of this application is to provide an anti-counterfeiting buckle component.
[0007] The above-mentioned technical objective of this application is achieved through the following technical solution: an anti-counterfeiting buckle assembly, including a first buckle component, a second buckle component, and a third buckle component, wherein the second buckle component is used to connect the first buckle component and the third buckle component; the first buckle component is provided with a first snap-fit member, and the second buckle component is provided with a first snap-fit groove for the first snap-fit member to be inserted and snapped in; the second buckle component is provided with a second snap-fit member, and the third buckle component is provided with a second snap-fit groove for the second snap-fit member to be inserted and snapped in.
[0008] By adopting the above technical solution, this anti-counterfeiting buckle assembly achieves coordinated interlocking of multiple components, constructing a multi-layered interlocking structure. This structural design makes the connection of the buckle assembly more stable, significantly increasing the difficulty of disassembly compared to traditional single or simple interlocking methods, effectively improving anti-counterfeiting performance. Multiple interlocking components and interlocking slots work together to achieve packaging box sealing, while the complex interlocking layout is difficult to see and crack, making malicious disassembly and resealing difficult. This better meets the anti-counterfeiting requirements of high-security product packaging, thus effectively protecting brand rights, enhancing consumer trust in products, and maintaining normal market order.
[0009] Optionally, the second buckle component is provided with a third snap-fit member, and the third buckle component is provided with a third snap-fit groove, which is adapted to the third snap-fit member for the third snap-fit member to be inserted and snapped in.
[0010] By adopting the above technical solution, the snap-fit structure of the anti-counterfeiting buckle component is further enriched. The added third snap-fit component, in conjunction with the third snap-fit slot, increases the number and dimensions of snap-fit points, making the connection between the first, second, and third snap-fit components tighter and more stable. An additional snap-fit structure means increased layers and difficulty of anti-counterfeiting; malicious tampering requires overcoming more snap-fit obstacles to open the packaging. This effectively reduces the risk of illegal opening and resealing of the product, further enhancing the overall anti-counterfeiting performance of the anti-counterfeiting buckle component, providing more reliable security protection for product packaging, and better safeguarding the authenticity of the product and the interests of the brand.
[0011] Optionally, the setting direction of the third snap-fit component is perpendicular to the setting direction of the second snap-fit component to form a specific spatial snap-fit layout.
[0012] By adopting the above technical solution, the specific spatial snap-fit layout formed by the mutually perpendicular third and second snap-fit components significantly enhances the structural stability of the snap-fit assembly. This unique layout allows the various snap-fit components to restrain each other in different directions, greatly improving the overall tensile and torsional resistance. When external forces attempt to damage or disassemble the assembly, the vertical snap-fit structure can distribute the force, effectively preventing loosening or detachment of the snap-fit due to excessive force in one direction. At the same time, the complex spatial layout further increases the complexity of anti-counterfeiting measures, greatly improving the anti-counterfeiting effect and providing more reliable protection for product packaging.
[0013] Optionally, the first snap-fit component is provided with a support member. When the first snap-fit component is assembled with the second snap-fit component, the support member can provide stable support force for the third snap-fit component at a specific position and direction, so as to ensure that the third snap-fit component is accurately and firmly snapped into the third snap-fit groove of the third snap-fit component.
[0014] By adopting the above technical solution, during the assembly process, the support component provides precise and stable support for the third snap-fit component, ensuring that the third snap-fit component can be smoothly and accurately embedded into the third snap-fit slot. This avoids the problem of loose snap-fit caused by assembly deviations, significantly improving the success rate of assembly and the overall stability of the component. The stable snap-fit makes the anti-counterfeiting buckle component more robust and reliable, difficult to be easily damaged or disassembled, further enhancing its anti-counterfeiting performance. In addition, this precise assembly design also reduces shaking and noise caused by loose snap-fit, improving the user experience and ensuring the safety of goods during circulation.
[0015] Optionally, the second snap-fit component is provided with an mounting piece, and the third snap-fit component is hollow and has an installation channel. The opening of the installation channel is provided with an installation groove, and the mounting piece can be fitted into the installation groove.
[0016] By adopting the above technical solution, the cooperation between the mounting component and the mounting slot / channel provides an additional connection method between the second and third snap-fit components. This connection method further enhances the tightness of the connection between the two components, making the entire anti-counterfeiting snap-fit assembly more stable and improving its resistance to external damage. Moreover, this multi-structure collaborative connection design increases the complexity and difficulty of disassembly, greatly improving anti-counterfeiting performance. The interlocking installation of the mounting component with the mounting slot / channel also plays a certain role in positioning, facilitating quick and accurate installation of each component during assembly, improving production efficiency and reducing production costs.
[0017] Optionally, the second snap-fit component is provided with a limiting protrusion, which together with the surface of the second snap-fit component forms a limiting groove.
[0018] By adopting the above technical solution, the limiting protrusion and the limiting groove formed on the surface of the second snap-fit component can accurately position and firmly constrain the second snap-fit component to engage with the second snap-fit groove of the third snap-fit component. During the snap-fit process, the limiting groove guides the second snap-fit component to accurately embed into the second snap-fit groove, reducing installation deviations and improving assembly efficiency. After snap-fitting, the limiting groove restricts the displacement of the second snap-fit component within the second snap-fit groove, preventing it from shaking or loosening, enhancing the stability of the overall snap-fit structure, and thus improving the reliability of the anti-counterfeiting snap-fit component.
[0019] Optionally, the first, second, and third snap-fit components are all made of engineering plastics with a certain elastic modulus.
[0020] By adopting the above technical solution, the elasticity of this engineering plastic allows the snap-fit component to more easily embed into the corresponding snap-fit groove during the snap-fit process, reducing wear and damage caused by rigid contact and lowering the installation difficulty. After snap-fitting, the elasticity provides continuous rebound force, ensuring a tight fit between the snap-fit component and the snap-fit groove, enhancing the stability of the snap-fit and preventing loosening due to vibration, external pulling, or other factors. Moreover, the excellent mechanical properties and stability of the engineering plastic ensure that the snap-fit component is not easily deformed or aged during long-term use, extending the service life of the anti-counterfeiting buckle assembly and enabling it to continuously and stably perform its anti-counterfeiting function, providing reliable and durable protection for product packaging.
[0021] Optionally, the outer surfaces of the first, second, and third buckle components are all provided with anti-counterfeiting label layers, which are made by laser engraving or special ink printing.
[0022] By adopting the above technical solutions, anti-counterfeiting label layers are set on the outer surfaces of the first, second, and third buckle components, and produced using laser engraving or special ink printing, the anti-counterfeiting capability of the anti-counterfeiting buckle components is greatly enhanced. Laser-engraved anti-counterfeiting labels are highly precise and unreplicable; their microscopic textures and pattern details are difficult to imitate, effectively increasing the difficulty of counterfeiting. Anti-counterfeiting labels printed with special inks possess unique optical and chemical properties, such as fluorescence and color-changing effects, which can only be identified through professional equipment or specific methods, providing additional means for authenticity verification. The combination of these two production methods adds multi-dimensional anti-counterfeiting protection to product packaging from both visual and professional testing perspectives, allowing consumers and regulatory personnel to more conveniently and accurately determine the authenticity of goods. This effectively combats counterfeit and substandard products, protects the interests of brand owners and consumers, and maintains the healthy and orderly development of the market.
[0023] In summary, this application has at least the following beneficial effect:
[0024] 1. This anti-counterfeiting buckle assembly achieves coordinated interlocking of multiple components, constructing a multi-layered interlocking structure. This structural design makes the connection of the buckle assembly more stable, significantly increasing the difficulty of disassembly compared to traditional single or simple interlocking methods, effectively enhancing anti-counterfeiting performance. Multiple interlocking parts and slots work together to achieve packaging box sealing, while the complex interlocking layout is difficult to see and crack, making malicious disassembly and resealing difficult. This better meets the anti-counterfeiting requirements of high-security product packaging, thus effectively protecting brand rights, enhancing consumer trust in products, and maintaining normal market order.
[0025] 2. The specific spatial locking layout formed by the mutually perpendicular third and second locking components significantly enhances the structural stability of the buckle assembly. This unique layout allows the various locking components to restrain each other in different directions, greatly improving the overall tensile and torsional resistance. When external forces attempt to damage or disassemble the assembly, the vertical locking structure can distribute the force, effectively preventing loosening or detachment of the locking mechanism due to excessive force in one direction. Simultaneously, the complex spatial layout further increases the complexity of anti-counterfeiting measures, greatly improving the anti-counterfeiting effect and providing more reliable protection for product packaging.
[0026] 3. During assembly, the support component provides precise and stable support for the third snap-fit component, ensuring that it can smoothly and accurately embed into the third snap-fit slot. This avoids loose snap-fit issues caused by assembly deviations, significantly improving the success rate of assembly and the overall stability of the component. The robust snap-fit makes the anti-counterfeiting buckle component more secure and reliable, difficult to damage or disassemble easily, further enhancing its anti-counterfeiting performance. Furthermore, this precise assembly design reduces shaking and noise caused by loose snap-fits, improving the user experience and ensuring the safety of goods during distribution. Attached Figure Description
[0027] Figure 1 This is an exploded view of an anti-counterfeiting buckle component;
[0028] Figure 2 This is a structural diagram of the second and third latching components;
[0029] Figure 3 This is a schematic diagram of the limiting protrusion.
[0030] Figure Labels
[0031] 1. First snap-fit component; 2. Second snap-fit component; 3. Third snap-fit component; 4. First snap-fit connector; 5. First snap-fit groove; 6. Second snap-fit connector; 7. Second snap-fit groove; 8. Third snap-fit connector; 9. Third snap-fit groove; 10. Support component; 11. Mounting component; 12. Mounting channel; 13. Mounting groove; 14. Limiting protrusion; 15. Limiting groove. Detailed Implementation
[0032] The present application will be further described in detail below with reference to the accompanying drawings.
[0033] In this embodiment, refer to Figures 1-3An anti-counterfeiting buckle assembly includes a first buckle component 1, a second buckle component 2, and a third buckle component 3. The first buckle component 1 has a first snap-fit element 4 integrally formed on it, and the second buckle component 2 has a corresponding first snap-fit groove 5, allowing the first snap-fit element 4 to be tightly embedded. The second buckle component 2 also has an integrally formed second snap-fit element 6, and the third buckle component 3 has a second snap-fit groove 7 adapted to the second snap-fit element 6. The first snap-fit element 4 is inserted into the first snap-fit groove 5 to achieve a preliminary connection between the first buckle component 1 and the second buckle component 2. Then, the second snap-fit element 6 is inserted into the second snap-fit groove 7 to complete the connection between the second buckle component 2 and the third buckle component 3, thereby achieving a stable connection between the first, second, and third buckle components for sealing and anti-counterfeiting of packaging boxes. In the design of the entire anti-counterfeiting buckle assembly, the second buckle component 2 plays an indispensable bridging role. Without the second buckle component 2, the first buckle component 1 and the third buckle component 3 cannot be directly matched structurally, and their installation cannot be completed. The presence of the second buckle component 2 not only connects the two independent components, but also contributes to the construction of a complex and difficult-to-disassemble anti-counterfeiting structure, enhancing the anti-counterfeiting performance of the entire component and effectively ensuring the safety and authenticity of the items inside the packaging box.
[0034] The second snap-fit component 2 has a third snap-fit member 8 on its side. The direction of the third snap-fit member 8 is perpendicular to that of the second snap-fit member 6, forming a specific spatial snap-fit layout. The third snap-fit component 3 has a corresponding third snap-fit groove 9 to ensure that the third snap-fit member 8 can be tightly embedded. During installation, the third snap-fit member 8 is embedded in the third snap-fit groove 9, further enhancing the connection stability between the second snap-fit component 2 and the third snap-fit component 3, increasing the difficulty of disassembling the overall anti-counterfeiting snap-fit assembly, and improving anti-counterfeiting performance. The vertical layout makes the snap-fit assembly more evenly stressed in different directions, significantly enhancing its tensile and torsional resistance. When an external force is applied to disassemble it, it needs to overcome snap-fit resistance in multiple directions, greatly improving the anti-counterfeiting effect.
[0035] The first snap-fit component 1 is equipped with a support member 10, which is made of high-strength plastic. When the first snap-fit component 1 is assembled with the second snap-fit component 2, the support member 10 provides stable support for the third snap-fit component 8. During installation, the support member 10 ensures that the third snap-fit component 8 is accurately embedded into the third snap-fit groove 9, reducing installation deviations and improving the assembly success rate. At the same time, it enhances the stability of the engagement between the third snap-fit component 8 and the third snap-fit groove 9, making the anti-counterfeiting snap-fit assembly more robust and reliable.
[0036] The second snap-fit component 2 is provided with a mounting piece 11, and the third snap-fit component 3 is hollow to form a mounting channel 12. A mounting groove 13 is provided at the opening of the mounting channel 12, and the mounting piece 11 can be fitted into the mounting groove 13. The mounting piece 11 cooperates with the mounting groove 13, providing an additional connection point for the second snap-fit component 2 and the third snap-fit component 3, enhancing the tightness of the connection between the components, improving the stability of the overall structure and its resistance to external damage, and further improving the anti-counterfeiting performance.
[0037] The second snap-fit component 6 is provided with a limiting protrusion 14, which together with the surface of the second snap-fit component 6 forms a limiting groove 15. During installation, the limiting protrusion 14 and the limiting groove 15 guide the second snap-fit component 6 to accurately fit into the second snap-fit groove 7, reducing installation deviation. After snap-fitting, the limiting groove 15 restricts the displacement of the second snap-fit component 6 within the second snap-fit groove 7, preventing shaking and loosening, and enhancing the stability of the overall snap-fit structure.
[0038] The first snap-fit component 4, the second snap-fit component 6, and the third snap-fit component 8 are all made of engineering plastics with a certain elastic modulus, preferably polycarbonate (PC) with an elastic modulus of 2.2 GPa. This material has good elasticity and mechanical properties. During the snap-fit process, the elasticity of the PC material allows the snap-fit components to easily embed into the snap-fit groove, reducing wear. After snap-fitting, the continuous rebound force ensures that the snap-fit components fit tightly with the snap-fit groove, enhancing the stability of the snap-fit. In long-term use, the PC material is not easily deformed or aged, extending the service life of the anti-counterfeiting buckle assembly.
[0039] Unique QR codes and brand-specific micro-texture patterns are laser-engraved onto the outer surfaces of the first snap-fit component 1, the second snap-fit component 2, and the third snap-fit component 3. Simultaneously, the brand logo is printed using special fluorescent ink. Consumers can scan the QR code to verify product authenticity, while professionals can observe the micro-texture under a microscope or detect the fluorescence reaction using ultraviolet light. This multi-dimensional anti-counterfeiting measure effectively enhances anti-counterfeiting capabilities, facilitates authentication, and powerfully combats counterfeit and substandard products.
[0040] Example 2 differs from the previous example in that a micro RFID chip is embedded in the inner wall of the mounting channel 12 of the third snap-fit component 3. The chip is encapsulated in a polyimide film with a thickness of only 0.3 mm. The support member 10 of the first snap-fit component 1 contains an induction coil adapted to the RFID chip. When the three components are assembled, the induction coil and the chip form a closed loop. By reading the unique ID code and snap-fit status data within the chip using specialized equipment, the anti-counterfeiting snap-fit can be remotely verified to determine if it has been illegally disassembled. The unique code stored in the RFID chip is bound to the production data, and combined with the status detection of the induction coil, it can accurately identify illegal disassembly, making it suitable for high-value goods such as luxury goods and pharmaceuticals.
[0041] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. An anti-counterfeiting buckle assembly, characterized in that, It includes a first snap-fit component (1), a second snap-fit component (2), and a third snap-fit component (3). The second snap-fit component (2) is used to connect the first snap-fit component (1) and the third snap-fit component (3). The first snap-fit component (1) is provided with a first snap-fit member (4). The second snap-fit component (2) is provided with a first snap-fit groove (5) for the first snap-fit member (4) to be inserted and snapped. The second snap-fit component (2) is provided with a second snap-fit member (6). The third snap-fit component (3) is provided with a second snap-fit groove (7) for the second snap-fit member (6) to be inserted and snapped.
2. The anti-counterfeiting buckle assembly according to claim 1, characterized in that, The second buckle component (2) is provided with a third snap-fit component (8), and the third buckle component (3) is provided with a third snap-fit groove (9). The third snap-fit groove (9) is adapted to the third snap-fit component (8) so that the third snap-fit component (8) can be embedded and snapped.
3. The anti-counterfeiting buckle assembly according to claim 2, characterized in that, The setting direction of the third snap-fit member (8) is perpendicular to the setting direction of the second snap-fit member (6) to form a specific spatial snap-fit layout.
4. The anti-counterfeiting buckle assembly according to claim 2, characterized in that, The first snap-fit component (1) is provided with a support member (10). When the first snap-fit component (1) is assembled with the second snap-fit component (2), the support member (10) can provide a stable support force for the third snap-fit component (8) in a specific position and direction, so as to ensure that the third snap-fit component (8) is accurately and firmly snapped into the third snap-fit groove (9) of the third snap-fit component (3).
5. The anti-counterfeiting buckle assembly according to claim 1, characterized in that, The second snap fastener (2) is provided with an mounting part (11), and the third snap fastener (3) is hollow and provided with an installation channel (12). The channel opening of the installation channel (12) is provided with an installation groove (13), and the mounting part (11) can be fitted into the installation groove (13).
6. The anti-counterfeiting buckle assembly according to claim 1, characterized in that, The second snap-fit member (6) is provided with a limiting protrusion (14), and the limiting protrusion (14) and the surface of the second snap-fit member (6) together form a limiting groove (15).
7. The anti-counterfeiting buckle assembly according to claim 1, characterized in that, The first snap-fit component (4), the second snap-fit component (6), and the third snap-fit component (8) are all made of engineering plastic with a certain elastic modulus.
8. The anti-counterfeiting buckle assembly according to claim 1, characterized in that, The outer surfaces of the first buckle component (1), the second buckle component (2) and the third buckle component (3) are all provided with anti-counterfeiting label layers, which are made by laser engraving or special ink printing.