Multifunctional composite animation peripheral product and manufacturing process thereof

By using modular design and high-pressure defoaming technology, combined with various materials and processes, the problems of functional rigidity and visual monotony in anime peripheral products have been solved, resulting in multifunctional anime peripheral products with advanced visual effects and cross-scene transformation capabilities.

CN122096536APending Publication Date: 2026-05-29SHANGHAI KAYOU TRADING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANGHAI KAYOU TRADING CO LTD
Filing Date
2026-02-06
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing anime merchandise has significant shortcomings in terms of functional design, visual presentation, and flexibility of usage scenarios, making it difficult to achieve advanced visual effects and cross-scenario transformation.

Method used

The modular design of the multi-functional composite anime peripheral products includes pins, magnets, backplates, base shells, visual layers, and encapsulation shells. Through injection molding and high-pressure defoaming processes, combined with various materials and technologies, the product's functions and visual elements can be separated and flexibly switched.

Benefits of technology

It achieves the separation of product functionality and visual presentation, possesses advanced visual effects and cross-scene transformation capabilities, and enhances user experience and product market competitiveness.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a multifunctional composite animation peripheral product and a manufacturing process thereof, wherein the animation peripheral product comprises a pin, a magnet, a back plate, a base shell, a visual layer and a packaging shell; the back plate is detachably arranged on the back of the base shell, and the pin and the magnet are arranged on the back plate; the base shell is provided with a hanging hole and a containing cavity; the containing cavity is arranged on the front of the base shell, and the visual layer is arranged at the bottom of the containing cavity; the packaging shell is transparent or translucent; the packaging shell is arranged on the front of the base shell and located at the opening of the containing cavity, and the packaging shell is used for closing the containing cavity. The technical effects are as follows: the core use functions of three commonly used peripheral products, namely, a pendant, a medal and a refrigerator sticker, are integrated, a modular back plate design is adopted, the separation of product functions and visual bodies is realized, the use scene can be flexibly switched, and the problems of function solidification and single visual performance of traditional products are solved.
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Description

Technical Field

[0001] This invention relates to the field of anime merchandise technology, specifically to a multifunctional composite anime merchandise product and a manufacturing process for such a product. Background Technology

[0002] The booming development of the animation and gaming industries has driven the rapid expansion of the peripheral merchandise market. Currently, common peripheral products on the market mainly include keychains, refrigerator magnets, and collectible badges. These serve as carriers of the emotional connection between IP characters and fans, possessing significant collectible value. However, analysis of existing technologies and market products reveals a series of significant shortcomings in the functional design, presentation, and usage scenarios of current mainstream animation peripheral products, hindering further improvements in user experience and product innovation. Specifically, existing animation peripheral products mainly suffer from the following deficiencies:

[0003] I. Limited product presentation, insufficient visual depth and texture.

[0004] Existing peripheral products are relatively limited in their material usage and visual effects. For example, metal medals mostly use stamping, printing, or enamel processes, which, while possessing a certain texture, struggle to express complex color gradations, highlights, and translucency. ABS plastic pendants, although colorable, are usually single solid colors or simple printing, lacking sophisticated textures. Magnetic refrigerator magnets focus more on their adhesive function, with simple surface patterns. These products generally use a single main material, and their manufacturing processes are limited, resulting in insufficient ability to reproduce the complex color compositions, special lusters (such as metallic, matte, and pearlescent finishes), partial transparency or semi-transparency effects, and subtle three-dimensional light and shadow layers of anime and game characters. Especially for collectible products that demand high precision and high expressiveness, traditional processes struggle to achieve visual artistic effects comparable to high-end models while keeping costs under control, thus limiting the improvement of product expressiveness.

[0005] Second, the product's usage scenarios are fixed, lacking the flexibility to switch between different scenarios.

[0006] Traditional peripheral products are often designed with a single, pre-defined use case in mind: refrigerator magnets are designed to adhere to magnetic surfaces (such as refrigerators), pendants have loops for hanging backpacks or keys, and badges come with pins for wearing on clothing. This design leads to fixed product functions and strict limitations on usage scenarios. If users want to use the same product in different display scenarios (such as from desktop display to backpack decoration, or from refrigerator display to office desk ornament), there is often a lack of convenient and reliable conversion mechanisms. This not only limits the freedom of users to creatively match and display their collections according to personal preferences and contexts, but also reduces the daily usage rate and emotional companionship value of the products.

[0007] In summary, existing anime merchandise products in this field have significant shortcomings in terms of functionality, expressiveness, and application flexibility. With the increasing demand from consumers for personalized, high-quality, and emotionally interactive experiences in merchandise, developing an integrated anime merchandise product that combines multiple functions, boasts superior visual appeal, and supports flexible transitions between different usage scenarios has become an urgent technical challenge for the industry. This will not only enhance the product's market competitiveness but also better meet the diverse collection, display, and usage needs of fans. Summary of the Invention

[0008] Therefore, the present invention provides a multifunctional composite anime peripheral product and its manufacturing process to solve the above-mentioned problems in the prior art.

[0009] To achieve the above objectives, the present invention provides the following technical solution:

[0010] According to a first aspect of the present invention, a multifunctional composite anime peripheral product includes a pin, a magnet, a back plate, a base shell, a visual layer, and an encapsulation shell, wherein the back plate is detachably disposed on the back side of the base shell, and the pin and the magnet are disposed on the back plate.

[0011] The base shell is provided with hanging holes and a receiving cavity. The receiving cavity is located on the front side of the base shell, and the visual layer is located at the bottom of the receiving cavity.

[0012] The encapsulation shell is transparent or semi-transparent, and is disposed on the front side of the base shell, with the encapsulation shell located at the opening of the receiving cavity. The encapsulation shell is used to close the receiving cavity.

[0013] Furthermore, the visual layer includes a pattern layer and a transparent film. The pattern layer is attached to the bottom of the receiving cavity. The pattern layer uses a composite film sticker as a carrier and sets character images, colors, and pattern details on it. The transparent film is attached to the side of the packaging shell facing the base shell, and the transparent film has a pattern adapted to the pattern layer.

[0014] Furthermore, the bottom of the receiving cavity is provided with a concave-convex structure, which matches the pattern layer and is used to highlight the three-dimensional effect of the pattern layer.

[0015] Furthermore, the back plate, the base shell, the visual layer, and the encapsulation shell are all elliptical. The back of the back plate is provided with a mounting groove, and the magnet is disposed in the mounting groove. The front of the base shell is provided with an embossed design. The back plate and the encapsulation shell are both snapped into the base shell.

[0016] Furthermore, the inner wall of the receiving cavity is provided with multiple slots, and the outer wall of the encapsulation shell is provided with multiple blocks. The slots and blocks are matched with each other and are set in a one-to-one correspondence.

[0017] Furthermore, the hanging holes include a first hanging hole and a second hanging hole, which are respectively disposed on the outer side walls on both sides of the base shell along its length.

[0018] Furthermore, a first cavity and a second cavity are respectively provided on the outer side walls on both sides of the base shell along the length direction. The openings of the first cavity and the second cavity face the back plate. A first column and a second column are respectively provided in the first cavity and the second cavity.

[0019] The front of the back plate is provided with a third cavity and a fourth cavity, which are respectively provided in a one-to-one correspondence with the first cavity and the second cavity. The first cavity, the first column and the third cavity together form the first hanging hole, and the second cavity, the second column and the fourth cavity together form the second hanging hole.

[0020] This invention has the following advantages: it integrates the core functions of three commonly used peripheral products—pendants, badges, and refrigerator magnets—and adopts a modular back panel design, which separates the product function from the visual body, allowing for flexible switching of usage scenarios; at the same time, it adopts a layered visual structure, which provides a basic framework for achieving advanced visual effects through subsequent material and process optimization, solving the problems of fixed product functions and monotonous visual expression in traditional products.

[0021] According to a second aspect of the present invention, a manufacturing process for a multifunctional composite anime merchandise product, used to manufacture the anime merchandise product described in the first aspect, includes the following specific steps:

[0022] S1. The backplate, base shell and encapsulation shell are manufactured by injection molding, and the pattern layer and transparent film are also manufactured.

[0023] S2. Attach the transparent film to the side of the encapsulation shell facing the base shell, and attach the pattern layer to the bottom of the receiving cavity;

[0024] S3. High-pressure defoaming process is used to remove air bubbles between the transparent film and the encapsulation shell, as well as between the pattern layer and the substrate shell;

[0025] S4, and assemble the base shell and the packaging shell together;

[0026] S5. Conduct quality inspection on the assembled products, remove unqualified products, and pack the qualified products into boxes.

[0027] Furthermore, the specific steps of the high-pressure defoaming process in S4 are as follows: place the encapsulation shell and the receiving cavity in a sealed space, then introduce dry air or nitrogen to pressurize to 0.3MPa to 0.9MPa, and adjust the temperature to 20℃ to 95℃, maintaining it for 10min to 60min; finally, gradually reduce the air pressure to atmospheric pressure and gradually lower the temperature to room temperature, then remove the substrate shell and the encapsulation shell, thus completing the defoaming operation.

[0028] Furthermore, the main structure of the base shell in S1 is made of ABS injection molding, and the bottom of the receiving cavity of the base shell is processed with a concave-convex structure by secondary injection molding. The concave-convex structure matches the pattern layer and is used to highlight the three-dimensional effect of the pattern layer.

[0029] The S5 also includes the following steps: installing pins and magnets on the back plate, and installing the back plate on the back of the base shell.

[0030] The present invention has the following advantages: it provides a systematic and reliable manufacturing process, and introduces a key process of high-pressure defoaming, which can effectively eliminate bubbles generated during the bonding process, ensuring perfect bonding between the transparent film and the encapsulation shell, and between the pattern layer and the substrate shell, thereby ensuring the transparency, purity and high quality of the final visual effect of the product. Attached Figure Description

[0031] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings in the following description are merely exemplary, and those skilled in the art can derive other embodiments based on the provided drawings without creative effort.

[0032] The structures, proportions, sizes, etc. illustrated in this specification are only for the purpose of assisting those skilled in the art in understanding and reading the content disclosed herein, and are not intended to limit the conditions under which the present invention can be implemented. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in the proportions, or adjustments to the size, without affecting the effects and objectives that the present invention can produce, should fall within the scope of the technical content disclosed in the present invention.

[0033] Figure 1 This is an exploded view from a first-person perspective of a multifunctional composite anime peripheral product provided for some embodiments of the present invention.

[0034] Figure 2 This is an exploded view from a second perspective of a multifunctional composite anime peripheral product provided for some embodiments of the present invention.

[0035] Figure 3This is a front structural diagram of a multifunctional composite anime peripheral product provided in some embodiments of the present invention.

[0036] Figure 4 This is a schematic diagram of the back structure of a multifunctional composite anime peripheral product provided in some embodiments of the present invention.

[0037] Figure 5 A partial structural diagram of a multifunctional composite anime peripheral product provided for some embodiments of the present invention. Figure 1 .

[0038] Figure 6 A partial structural diagram of a multifunctional composite anime peripheral product provided for some embodiments of the present invention. Figure 2 .

[0039] Figure 7 This is a frontal first-view view of the base shell of a multifunctional composite anime peripheral product provided in some embodiments of the present invention.

[0040] Figure 8 This is a second-view frontal view of the base shell of a multifunctional composite anime peripheral product provided in some embodiments of the present invention.

[0041] Figure 9 This is a first-view rear view of the base shell of a multifunctional composite anime peripheral product provided in some embodiments of the present invention.

[0042] Figure 10 This is a schematic diagram of the front structure of a back panel of a multifunctional composite anime peripheral product provided in some embodiments of the present invention.

[0043] Figure 11 This is a schematic diagram of the back structure of a multifunctional composite animation peripheral product back panel provided for some embodiments of the present invention.

[0044] In the diagram: 1. Pin, 2. Magnet, 3. Backplate, 4. Base shell, 5. Pattern layer, 6. Transparent film, 7. Encapsulation shell, 8. Receiving cavity, 9. Slot, 10. Card block, 11. Mounting slot, 12. Embossing, 13. First hanging hole, 14. Second hanging hole, 15. First recess, 16. Second recess, 17. First column, 18. Second column, 19. Third recess, 20. Fourth recess. Detailed Implementation

[0045] The following specific embodiments illustrate the implementation of the present invention. Those skilled in the art can easily understand other advantages and effects of the present invention from the content disclosed in this specification. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0046] Example 1

[0047] like Figures 1 to 11 As shown, a multifunctional composite anime peripheral product according to the first aspect of the present invention includes a pin 1, a magnet 2, a back plate 3, a base shell 4, a visual layer, and an encapsulation shell 7. The back plate 3 is detachably disposed on the back of the base shell 4, and the pin 1 and the magnet 2 are disposed on the back plate 3. This modular design separates the core functions of the product (adsorption, wearing) from the core visual display (base shell 4 and internal visual layer), and users can freely replace or remove the back plate 3 according to the usage scenario.

[0048] The base shell 4, as the core carrier of the product, is made of ABS material by injection molding. It has hanging holes and a recessed receiving cavity 8 on the front. The visual layer is located at the bottom of the receiving cavity 8 and serves as the core of the product's visual presentation. The encapsulation shell 7 is made of PC by injection molding. It is located on the front of the base shell 4 and covers the opening of the receiving cavity 8, sealing and protecting the visual layer inside. It serves to prevent dust and scratches, and its optical properties directly affect the final visual effect.

[0049] In this embodiment, it should be noted that the visual layer is composed of a pattern layer 5 and a transparent film 6. The pattern layer 5 uses a composite film sticker as a carrier and is attached to the bottom of the receiving cavity 8. Specifically, the pattern layer 5 uses a high-quality transparent PET (polyethylene terephthalate) sticker as a carrier. Utilizing the good printability and dimensional stability of PET material, high-precision color printing can be performed on it to finely present the image of the anime character. More importantly, the PET sticker allows for various special printing processes such as partial UV highlights, white space in transparent areas (or the use of transparent ink), laser lithography, and hot stamping. Through these processes, ordinary colors, high-brightness reflective areas, and parts simulating transparent or semi-transparent effects (such as crystal, light effects, and energy bodies) can be achieved on the same pattern layer, elevating traditional two-dimensional planar printing to a level with preliminary three-dimensionality and material differentiation.

[0050] The transparent film 6 is attached to the side of the encapsulation shell 7 facing the base shell 4 (i.e., facing the inside of the receiving cavity 8). The transparent film 6 is preferably made of a transparent film with high light transmittance and high surface hardness. This structural arrangement allows light to pass through the transparent encapsulation shell 7 and the transparent film 6 in sequence, illuminating the pattern layer 5, and then forming a visual image through reflection or transmission. The physical and optical properties of the transparent film 6 lay the foundation for improving the final visual quality. At the same time, the transparent film 6 itself can have specific surface treatments, such as adding a slight pearlescent effect, an anti-glare coating, or high-gloss polishing. Its special luster and texture can further amplify the visual effect of the pattern layer 5 below. Through the innovative combination of multiple materials such as transparent PET, composite film, ABS, and transparent film, a sense of layering, transparency, and light and shadow effects that cannot be achieved by traditional single materials are created. The product quality is comparable to high-end prize figures, satisfying the collection needs of core fans.

[0051] The technical effects achieved by this embodiment are as follows: It integrates the core functions of three commonly used peripheral products: pendants, badges, and refrigerator magnets. It adopts a modular back panel design, which separates the product function from the visual body. It can flexibly switch usage scenarios. Users can change different functional back panels for the main visual module, just like "changing the shell". They can even disassemble the product and display the main visual part as a small ornament, which greatly expands the usage scenarios and ways to play. At the same time, it adopts a layered visual structure (encapsulation shell 7 + transparent film 6 + pattern layer 5), which has a sense of layering, transparency and light and shadow effects. The product quality is comparable to high-end prize figures.

[0052] Example 2

[0053] like Figures 1 to 11 As shown in the figure, another multifunctional composite anime peripheral product provided in this embodiment has the same structure as in embodiment 1. Only the different parts are described below.

[0054] In this embodiment, in order to significantly enhance the three-dimensional visual effect of the product, a concave-convex structure matching the three-dimensional contour to be displayed by the pattern layer 5 is provided at the bottom of the receiving cavity 8. When the pattern layer 5 is attached to this non-planar bottom surface, its image will produce a natural visual depth with the undulation of the bottom, thereby highlighting the three-dimensional effect of the pattern.

[0055] In this embodiment, it should be noted that the overall outer contour of the back plate 3, the base shell 4, the visual layer, and the encapsulation shell 7 are all designed to be elliptical. This streamlined design enhances the unified aesthetics and hand-holding comfort of the product. The back of the back plate 3 is recessed inward to form a mounting groove 11, in which the magnet 2 is embedded and fixed, ensuring the flatness of the back of the product during use. On the front of the base shell 4, in the area around the receiving cavity 8, there is an embossed design 12 related to the theme, which further increases the detail and tactile feel of the product.

[0056] Both the backplate 3 and the encapsulation shell 7 are connected to the base shell 4 by a snap-fit ​​method, which can achieve quick assembly and disassembly without tools. Specifically, multiple slots 9 are arranged around the inner side wall of the receiving cavity 8, and multiple elastic blocks 10 are correspondingly arranged on the outer side wall of the encapsulation shell 7. During assembly, the blocks 10 and the slots 9 are precisely matched and engaged with each other to form a firm and well-sealed connection, which is convenient for assembly and maintenance.

[0057] The technical effects achieved by this embodiment are as follows: the concave-convex structure design at the bottom of the cavity injects a physical three-dimensional feel into the planar pattern, greatly enhancing the three-dimensional visual expression; the overall elliptical shape and surface relief enhance the product's aesthetic appeal and uniqueness; the snap-fit ​​structure ensures the reliability, sealing, and ease of operation of each component, achieving a good balance between aesthetics, practicality, and manufacturing process.

[0058] Example 3

[0059] like Figures 1 to 11 As shown in the figure, another multifunctional composite anime peripheral product provided in this embodiment has the same structure as in embodiment 1. Only the different parts are described below.

[0060] In this embodiment, the structure of the hanging holes is innovatively concealed. The hanging holes include a first hanging hole 13 and a second hanging hole 14. The first hanging hole 13 and the second hanging hole 14 are not simple openings that directly penetrate the base shell 4, but are respectively set on the outer side walls on both sides of the base shell 4 in the length direction, and are formed by clever cooperation with the back plate 3.

[0061] Specifically, on the outer side walls of the base shell 4 along both sides of the length direction, there are first recesses 15 and second recesses 16 with openings facing the back plate 3, respectively. In these two recesses, there are first pillars 17 and second pillars 18, respectively. Correspondingly, on the front side of the back plate 3, there are third recesses 19 and fourth recesses 20, and their positions correspond one-to-one with the first recesses 15 and the second recesses 16.

[0062] When the back plate 3 is assembled with the base shell 4, the first recess 15, the first pillar 17, and the third recess 19 on the back plate 3 together form a complete first hanging hole 13 through which a hanging rope can pass. Similarly, the second recess 16, the second pillar 18, and the fourth recess 20 form a second hanging hole 14. The presence of the first pillar 17 and the second pillar 18 is equivalent to forming "piers" inside the hanging hole, enhancing the strength of the hanging hole structure and preventing deformation or tearing of the hole due to long-term hanging. At the same time, this hidden hanging hole design makes the holes invisible when the product is not hanging, maintaining the integrity and simple aesthetics of the product outline. Only after the back plate 3 is installed are the complete hanging holes revealed, achieving a perfect unity of function and form.

[0063] The technical effect achieved by this embodiment is as follows: a split-enclosed hidden hanging hole structure is adopted. This design not only greatly enhances the mechanical strength of the hanging hole part and improves the durability and reliability of the product as a hanging part, but also effectively maintains the overall appearance and exquisiteness of the product when the hanging function is not used, solving the problem that traditional exposed hanging holes may affect the aesthetics and structural strength.

[0064] Example 4

[0065] A manufacturing process for a multifunctional composite anime peripheral product according to a second aspect of the present invention, used for processing and manufacturing the anime peripheral product of the first aspect, includes the following specific steps:

[0066] S1. The back plate 3, the base shell 4 and the encapsulation shell 7 are manufactured separately using injection molding, and the pattern layer 5 and the transparent film 6 are manufactured independently through printing, cutting and other processes.

[0067] S2. Attach the transparent film 6 to the side of the encapsulation shell 7 facing the base shell 4, and attach the pattern layer 5 to the bottom of the receiving cavity 8;

[0068] S3. High-pressure defoaming process is used to remove air bubbles that may exist between the bonding surfaces of the transparent film 6 and the packaging shell 7, and between the bonding surfaces of the pattern layer 5 and the bottom of the receiving cavity 8.

[0069] S4. Assemble the already bonded base shell 4 and encapsulation shell 7 together, usually by means of snap-fit ​​or other methods;

[0070] S5. Conduct quality inspections on the assembled products (such as appearance, fitting gaps, and magnetic attraction strength), remove unqualified products, and pack qualified products into boxes.

[0071] In this embodiment, it should be noted that the high-pressure defoaming process in S4 is a key step, and its specific operation is as follows: The pre-bonded encapsulation shell 7 and the substrate shell 4 with the patterned layer 5 are placed in a controllable sealed pressure vessel. Dry air or an inert gas (such as nitrogen) is introduced into the vessel, and the pressure is gradually increased and stabilized in the range of 0.3MPa to 0.9MPa. At the same time, the ambient temperature is adjusted to 20°C to 95°C. Under the synergistic effect of this pressure and temperature, it is maintained for 10 minutes to 60 minutes. This process allows the residual microbubbles to be compressed, dissolved in the material, or discharged through the interface under high pressure. Finally, the pressure is slowly reduced to atmospheric pressure, and the temperature is gradually cooled to room temperature to avoid new stress or deformation caused by sudden changes in pressure or temperature. After completion, the component is removed, and a bubble-free semi-finished product is obtained.

[0072] Furthermore, the pressure in the high-pressure defoaming process can be set to 0.3MPa, 0.4MPa, 0.5MPa, 0.6MPa, 0.8MPa or 0.9MPa, the temperature can be set to 40℃, 50℃, 55℃, 60℃, 65℃, 75℃, 85℃ or 95℃, and the holding time can be set to 10min, 20min, 25min, 30min, 40min, 45min, 50min, 55min or 60min.

[0073] The technical effects achieved by this embodiment are as follows: It provides a systematic and reliable manufacturing process, and introduces the key process of high-pressure defoaming. This process can effectively eliminate the bubbles generated during the bonding process, ensuring the perfect bonding between the transparent film and the encapsulation shell, and between the pattern layer and the substrate shell, thereby ensuring the transparency, purity and high quality of the final visual effect of the product, which is crucial for achieving a high-end texture.

[0074] Example 5

[0075] This embodiment provides another manufacturing process for a multifunctional composite anime peripheral product, which includes all the contents of embodiment 5. Only the different parts are described below.

[0076] In this embodiment, the main structure of the base shell 4 in S1 is made of ABS material through one injection molding. Then, at the bottom of the receiving cavity 8, a second injection molding process is used to process a concave-convex structure that matches the pattern layer 5 using another material (such as transparent, semi-transparent or colored PC, PMMA, etc.). This one-piece molded concave-convex structure serves as a three-dimensional substrate for the pattern and is integrated with the ABS skeleton to form a multi-layered relief effect, which can greatly highlight the three-dimensional effect of the pattern layer 5.

[0077] In this embodiment, it should be noted that S5 also includes a sub-step of backplate assembly: the pin 1 and the magnet 2 are installed on the independent backplate 3, and then this complete backplate functional module is installed on the back of the base shell 4 that has been assembled on the front side to form the final product.

[0078] The technical effects achieved in this embodiment are as follows: By introducing a secondary injection molding process, precise three-dimensional microstructures can be directly manufactured on the base shell, providing strong physical three-dimensional support for planar patterns. This is one of the core processes for achieving advanced visual performance of products. At the same time, assembling the back panel as an independent functional module in the final assembly conforms to the modular production concept, improves the flexibility and assembly efficiency of the production line, and facilitates the production of back panel variants with different functional configurations. The entire process combines multiple technologies such as structural injection molding, secondary molding, precision bonding, and high-pressure treatment, ensuring high-quality realization of products in terms of complex structures, advanced visual effects, and reliable functions.

[0079] Although the present invention has been described in detail above with general descriptions and specific embodiments, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, all such modifications or improvements made without departing from the spirit of the present invention fall within the scope of protection claimed by the present invention.

[0080] The terms such as "upper," "lower," "left," "right," and "middle" used in this specification are merely for clarity of description and are not intended to limit the scope of the invention. Any changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered within the scope of the invention.

Claims

1. A multifunctional composite anime merchandise product, characterized in that, Includes a pin (1), a magnet (2), a back plate (3), a base shell (4), a visual layer, and an encapsulation shell (7). The back plate (3) is detachably disposed on the back of the base shell (4), and the pin (1) and the magnet (2) are disposed on the back plate (3). The base shell (4) is provided with hanging holes and a receiving cavity (8). The receiving cavity (8) is located on the front side of the base shell (4), and the visual layer is located at the bottom of the receiving cavity (8). The encapsulation shell (7) is transparent or semi-transparent. The encapsulation shell (7) is disposed on the front of the base shell (4) and is located at the opening of the receiving cavity (8). The encapsulation shell (7) is used to close the receiving cavity (8).

2. The multifunctional composite anime peripheral product according to claim 1, characterized in that, The visual layer includes a pattern layer (5) and a transparent film (6). The pattern layer (5) is attached to the bottom of the receiving cavity (8). The pattern layer (5) uses a composite film sticker as a carrier and sets character images, colors and pattern details on it. The transparent film (6) is attached to the side of the packaging shell (7) facing the base shell (4). The transparent film (6) has a pattern that matches the pattern layer (5).

3. The multifunctional composite anime peripheral product according to claim 2, characterized in that, The bottom of the receiving cavity (8) is provided with a concave-convex structure, which matches the pattern layer (5) and is used to highlight the three-dimensional effect of the pattern layer (5).

4. The multifunctional composite anime peripheral product according to claim 1, characterized in that, The back plate (3), the base shell (4), the visual layer and the encapsulation shell (7) are all elliptical. The back of the back plate (3) is provided with a mounting groove (11), and the magnet (2) is placed in the mounting groove (11). The front of the base shell (4) is provided with an embossed design (12). The back plate (3) and the encapsulation shell (7) are both snapped into the base shell (4).

5. A multifunctional composite anime peripheral product according to claim 4, characterized in that, The inner wall of the receiving cavity (8) is provided with multiple slots (9), and the outer wall of the encapsulation shell (7) is provided with multiple blocks (10). The slots (9) and the blocks (10) are matched with each other and are set in a one-to-one correspondence.

6. A multifunctional composite anime peripheral product according to claim 1, characterized in that, The hanging holes include a first hanging hole (13) and a second hanging hole (14), which are respectively disposed on the outer side walls on both sides of the base shell (4) in the length direction.

7. A multifunctional composite anime peripheral product according to claim 6, characterized in that, The outer walls on both sides of the base shell (4) along the length direction are provided with a first cavity (15) and a second cavity (16), respectively. The openings of the first cavity (15) and the second cavity (16) are both facing the back plate (3). The first cavity (15) and the second cavity (16) are provided with a first column (17) and a second column (18), respectively. The back plate (3) has a third recess (19) and a fourth recess (20) on its front side. The third recess (19) and the fourth recess (20) are respectively provided in correspondence with the first recess (15) and the second recess (16). The first recess (15), the first column (17) and the third recess (19) together form the first hanging hole (13). The second recess (16), the second column (18) and the fourth recess (20) together form the second hanging hole (14).

8. A manufacturing process for a multifunctional composite anime merchandise product, used to manufacture the anime merchandise product according to any one of claims 1 to 7, characterized in that, The specific steps include the following: S1. The back plate (3), the base shell (4) and the encapsulation shell (7) are manufactured by injection molding, and the pattern layer (5) and the transparent film (6) are manufactured. S2. Attach the transparent film (6) to the side of the encapsulation shell (7) facing the base shell (4), and attach the pattern layer (5) to the bottom of the receiving cavity (8); S3. High-pressure defoaming process is used to remove bubbles between the transparent film (6) and the encapsulation shell (7), as well as bubbles between the pattern layer (5) and the substrate shell (4); S4, and assemble the base shell (4) and the encapsulation shell (7) together; S5. Conduct quality inspection on the assembled products, remove unqualified products, and pack the qualified products into boxes.

9. The manufacturing process of a multifunctional composite anime peripheral product according to claim 8, characterized in that, The specific steps of the high-pressure defoaming process in S4 are as follows: Place the encapsulation shell (7) and the receiving cavity (8) in a sealed space, then introduce dry air or nitrogen to pressurize to 0.3MPa to 0.9MPa, and adjust the temperature to 20℃ to 95℃, and maintain it for 10min to 60min; finally, gradually reduce the air pressure to normal pressure and gradually reduce the temperature to room temperature, and then take out the substrate shell (4) and the encapsulation shell (7) to complete the defoaming operation.

10. The manufacturing process of a multifunctional composite anime peripheral product according to claim 8, characterized in that, The main structure of the base shell (4) in S1 is made of ABS injection molding, and the bottom of the cavity (8) of the base shell (4) is processed with a concave-convex structure by secondary injection molding. The concave-convex structure matches the pattern layer (5) and the concave-convex structure is used to highlight the three-dimensional effect of the pattern layer (5). The S5 also includes the following steps: installing a pin (1) and a magnet (2) on the back plate (3) and installing the back plate (3) on the back of the base shell (4).