Mobile phone camera decorating part superposition structure

By using a stacked structure of support rods, stacking platforms, and pressure caps, combined with limit pins and positioning design, the problems of complex installation and color mixing of traditional mobile phone camera decorative parts are solved, achieving a fast, stable assembly and efficient spraying process.

CN224237180UActive Publication Date: 2026-05-15DONGGUAN TOPVIEW PLASTIC MFG
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN TOPVIEW PLASTIC MFG
Filing Date
2025-04-30
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Traditional mobile phone camera decorations lack an effective positioning mechanism, resulting in complex installation, color mixing, and a large amount of cleaning work, which affects product quality.

Method used

It adopts a stacked structure of support rod, stacking platform and pressure cover, combined with cross limit pin and straight limit pin, and is equipped with positioning holes, positioning blocks, anti-slip texture and buffer boss, etc., to ensure that the camera decorative parts are quickly positioned and fixed in the predetermined position.

Benefits of technology

It achieves a fast and stable assembly process, avoids color mixing, improves assembly accuracy and work efficiency, and reduces labor and time costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to a mobile phone camera decorating part stacking structure in the technical field of mobile phone production jigs, which comprises a supporting rod, a stacking table and a pressing cover, and the surface between the stacking table and the pressing cover is respectively provided with a positioning hole and a positioning block which are used for limiting the position of a camera decorating part. The edges of the stacking table and the gland are provided with anti-skid lines used for increasing friction force. A mode of rotating the supporting rod is adopted, paint spraying materials are evenly attached to the outer side face of the camera decorating part, the camera decorating part is arranged between the pressing cover and the stacking table, the spraying materials are prevented from entering the area except for the outer side face of the camera decorating part through pressing fit of the pressing cover and the stacking table, color mixing is avoided, and the service life of the camera decorating part is prolonged. Therefore, the next paint spraying procedure is facilitated; according to the structure, a stacking mode is adopted, a plurality of camera decorating parts can be pressed at a time, the effect of spraying and forming a plurality of products at a time is achieved, the working efficiency is improved, and meanwhile the expenditure of labor cost and time cost is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of mobile phone manufacturing fixture technology, and in particular to a superimposed structure for decorative parts of mobile phone cameras. Background Technology

[0002] Spray coating is a surface treatment technology that involves spraying paint, coatings, or other coating materials into the surface of a workpiece in a mist form to form a uniform protective or decorative layer. This process is widely used in various industries such as automobile manufacturing, electronics, aerospace, and architectural decoration. In the production of mobile phone camera decorative parts, the painting process not only forms a protective layer but also enhances the decorative effect. However, traditional installation methods lack an effective positioning mechanism, requiring significant time for alignment and adjustment each time, increasing installation complexity. Color mixing is also prone to occur during the painting process. Traditional spraying methods often involve wrapping the parts that do not need to be painted, but this structure consumes a large amount of fabric or masking material. During the painting process, fabric sprayed in the previous step may mix with the color of the current step, causing mixing or contamination, increasing subsequent cleaning workload, and potentially affecting the quality of the final product. Therefore, the inventors have proposed a superimposed structure for mobile phone camera decorative parts to solve the aforementioned technical problems. Utility Model Content

[0003] To overcome the shortcomings mentioned above, this utility model aims to provide a technical solution that can solve the aforementioned problems.

[0004] A mobile phone camera decorative component stacking structure includes a support rod, a stacking platform, and a cover. One end of the support rod abuts against the surface of the stacking platform. The cover and the stacking platform are detachable. The cover is connected to the stacking platform via a cross-shaped limiting pin and a straight-line limiting pin. The surface of the cover has a connecting groove that matches and installs with the cross-shaped limiting pin and the straight-line limiting pin. The connecting groove penetrates the surface of the cover. The surfaces between the stacking platform and the cover are respectively provided with positioning holes and positioning blocks to limit the position of the camera decorative component. The edges of the stacking platform and the cover are provided with anti-slip textures to increase friction.

[0005] One end of the support rod abuts against the surface of the stacking platform. This structure provides a stable support base, ensuring that the entire decorative structure will not shake or shift during use. The cap and the stacking platform adopt a detachable structure, which is convenient for installation and maintenance, while ensuring the stability of the structure.

[0006] The pressure cap is connected to the stacking platform through a cross-shaped limit pin and a straight limit pin, ensuring that the pressure cap can be fixed on the stacking platform. The pressure cap applies force to the camera decoration, which restricts the camera decoration to the surface of the stacking platform, avoiding installation problems caused by positional deviation. The design of the cross-shaped limit pin and the straight limit pin enables a quick positioning assembly process, reducing installation time and complexity.

[0007] In addition, the surfaces between the stacking platform and the cover are respectively provided with positioning holes and positioning blocks to define the position of the camera decoration, ensuring that the camera decoration can be aligned and fixed in the predetermined position during installation, improving the overall assembly accuracy, effectively preventing the camera decoration from shifting or loosening during use, and enhancing the stability and reliability of the structure. The anti-slip texture on the edges of the stacking platform and the cover helps users to grip and operate more easily during installation, and also prevents the structure from sliding or falling off due to accidental collisions or vibrations during daily use.

[0008] Furthermore, the anti-slip texture has a cross-line structure, and the anti-slip texture is linearly arranged on the edges of the stacking platform and the pressure cover, and is raised.

[0009] The raised cross-line structure increases the contact area between fingers and the surface, thereby improving friction and making it easier for users to grip the stacking platform and cap during installation or removal. This reduces the risk of slippage and effectively prevents accidental slippage due to sweaty or wet hands, ensuring more stable and reliable operation. In addition, the raised anti-slip texture enhances the structural strength of the stacking platform and cap edges, reducing the risk of deformation due to external pressure or impact, extending the product's lifespan, and also dispersing applied pressure to a certain extent, avoiding damage caused by excessive local stress, and enhancing the overall structural durability.

[0010] Furthermore, both the positioning hole and the positioning block adopt a three-point positioning structure, the positioning hole and the positioning block are coaxially arranged, and the surface of the stacking platform is provided with a limiting spring block to prevent the camera decorative piece from sliding.

[0011] This structure uses three points to determine the specific position of a plane, ensuring that the camera decoration can be accurately installed in its predetermined position. The three-point positioning reduces deviations caused by manufacturing or assembly errors, providing a more stable positioning effect. The structure can also effectively prevent rotation, further enhancing stability.

[0012] The positioning holes and positioning blocks are coaxially set, which ensures the alignment consistency between each positioning point, improves the overall assembly accuracy, reduces adjustment time, and improves assembly efficiency. Together with the limiting spring block, it provides an additional physical pressing function after the decorative part is installed, preventing it from sliding or shifting due to vibration or external force during use. The limiting spring block is made of rubber, which can provide sufficient friction while avoiding damage to the decorative part and protecting its integrity.

[0013] Furthermore, the connection between the support rod and the stacking platform is provided with reinforcing ribs to increase the connection stability, and the reinforcing ribs are in a cross-shaped structure.

[0014] The reinforcing ribs enhance the connection strength between the support rod and the stacking platform, preventing structural deformation or fracture caused by excessive local stress, thus improving overall durability. Furthermore, the cross-shaped structure can evenly distribute stress in multiple directions, effectively dispersing external pressure and vibration, reducing material fatigue damage, and extending the service life of the structure.

[0015] Furthermore, the surface of the stacking platform is provided with a buffer boss for local buffering of the camera decorative parts, and the surface of the cover is provided with a buffer groove for use in conjunction with the buffer boss.

[0016] The buffer boss provides localized cushioning protection during the installation of camera trim, reducing the risk of damage caused by impact or vibration. This structure is particularly important for cameras in precision electronic devices. The buffer boss can evenly distribute the pressure applied to the camera trim, avoiding damage caused by excessive local stress, extending the service life of the trim. In addition, the design of the buffer boss can resist external pressure to a certain extent, reducing structural deformation caused by external forces and improving the overall durability of the structure.

[0017] Furthermore, one end of the connecting groove is a clearance groove, which has a non-through structure and is used to avoid the protruding part of the camera decorative piece.

[0018] The design of the clearance groove effectively avoids protruding parts on the camera decorative parts, such as lenses and sensors, preventing these critical components from physical contact or collision with the cover or other components, reducing the risk of damage. At the same time, it reduces assembly errors caused by protruding parts and improves the overall assembly accuracy. This structure can also disperse external pressure to a certain extent, avoiding local stress concentration caused by protruding parts. By rationally designing the position and shape of the clearance groove, it can cooperate with the protruding parts on the camera decorative parts to form a mortise and tenon structure, while increasing the force-bearing area between the two. This prevents slippage and disperses the force through the contact surface, making the entire structure more uniform under stress and enhancing the overall structural stability.

[0019] Furthermore, the surface of the cover is equipped with a clamping block to reduce the probability of movement of the camera decorative piece. The clamping block is located in the middle of the cover. This structure effectively reduces the probability of movement of the camera decorative piece during use, ensuring that it remains in the predetermined position. Through the physical locking function provided by the clamping block, the contact area and friction between the camera decorative piece and the cover are increased, making it easier for users to identify and fix the position of the camera decorative piece during installation, simplifying the operation steps and improving assembly efficiency.

[0020] Compared with the prior art, the beneficial effects of this utility model are:

[0021] 1. By applying force to the camera decorative piece through the pressure cap, the camera decorative piece is confined to the surface of the stacking platform, avoiding installation problems caused by positional deviation. The design of the cross limit pin and the straight limit pin enables a quick positioning assembly process, reducing installation time and complexity.

[0022] 2. After the camera decorative parts are installed and stacked between the pressure cover and the stacking platform to form the part to be painted, the part to be painted is placed in the painting room and the paint material is evenly adhered to the outer side of the camera decorative parts by rotating the support rod. Since the camera decorative parts are between the pressure cover and the stacking platform, the pressure of the pressure cover and the stacking platform prevents the paint from entering the area other than the outer side of the camera decorative parts, thus avoiding color mixing and facilitating the next painting process.

[0023] 3. This structure adopts a stacking method, which can press multiple camera decorative parts at one time, achieving the effect of molding multiple products in one spraying, improving work efficiency while reducing labor and time costs. Attached Figure Description

[0024] Figure 1 This is a 3D diagram of a superimposed structure for a mobile phone camera decorative component;

[0025] Figure 2 This is another 3D view of a superimposed structure for a mobile phone camera decorative component;

[0026] Figure 3 This is another 3D view of a superimposed structure of a mobile phone camera decorative component;

[0027] Figure 4 This is a partial structural diagram of a superimposed structure for a mobile phone camera decorative component;

[0028] Figure 5 This is another partial structural diagram of a superimposed structure for a mobile phone camera decorative component;

[0029] Figure 6 This is another partial structural diagram of a superimposed structure for a mobile phone camera decorative component;

[0030] Figure 7 This is a front view of the cover in a superimposed structure of decorative components for a mobile phone camera.

[0031] Figure 8 This is a rear view of the cover in a superimposed structure of decorative parts for a mobile phone camera.

[0032] Figure 9 This is another rear view of the cover in a superimposed structure of decorative parts for a mobile phone camera.

[0033] Figure 10 This is a three-dimensional view of the cover in a superimposed structure of a mobile phone camera decorative component;

[0034] Figure 11 yes Figure 10 A magnified view of part A in the diagram;

[0035] In the diagram: Support rod-1, Stacking platform-2, Pressure cap-3, Cross limit pin-4, Straight limit pin-5, Connecting groove-6, Positioning hole-7, Positioning block-8, Anti-slip texture-9, Limiting spring block-10, Reinforcing rib-11, Buffer boss-12, Buffer groove-13, Clearance groove-14, Clamping block-15. Detailed Implementation

[0036] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0037] For this embodiment, please refer to Figures 1-11 The present invention relates to a mobile phone camera decorative component stacking structure, comprising a support rod 1, a stacking platform 2, and a pressure cover 3. One end of the support rod 1 abuts against the surface of the stacking platform 2. The pressure cover 3 and the stacking platform 2 are detachable. The pressure cover 3 is connected to the stacking platform 2 by a cross-shaped limiting pin 4 and a straight-line limiting pin 5. The surface of the pressure cover 3 is provided with a connecting groove 6 that is matched and installed with the cross-shaped limiting pin 4 and the straight-line limiting pin 5. The connecting groove penetrates the surface of the pressure cover 3. The surfaces between the stacking platform 2 and the pressure cover 3 are respectively provided with positioning holes 7 and positioning blocks 8 for limiting the position of the camera decorative component. The edges of the stacking platform 2 and the pressure cover 3 are provided with anti-slip textures 9 to increase friction.

[0038] One end of the support rod 1 abuts against the surface of the stacking platform 2. This structure provides a stable support base, ensuring that the entire decorative structure will not shake or shift during use. The cover 3 and the stacking platform 2 adopt a detachable structure, which is convenient for installation and maintenance, while ensuring the stability of the structure.

[0039] The pressure cap 3 is connected to the stacking platform 2 through the cross limit pin 4 and the straight limit pin 5, ensuring that the pressure cap 3 can be fixed on the stacking platform 2. The pressure cap 3 applies force to the camera decoration, making the camera decoration fixed to the surface of the stacking platform 2, avoiding installation problems caused by position deviation. The design of the cross limit pin 4 and the straight limit pin 5 enables a quick positioning assembly process, reducing installation time and complexity.

[0040] In addition, the surfaces between the stacking platform 2 and the pressure cover 3 are respectively provided with positioning holes 7 and positioning blocks 8 to define the position of the camera decoration, ensuring that the camera decoration can be aligned and fixed in the predetermined position during installation, improving the overall assembly accuracy, effectively preventing the camera decoration from shifting or loosening during use, and enhancing the stability and reliability of the structure. The anti-slip texture 9 on the edges of the stacking platform 2 and the pressure cover 3 helps users to grip and operate more easily during installation, and also prevents the structure from sliding or falling off due to accidental collisions or vibrations during daily use.

[0041] The anti-slip texture 9 has a cross-line structure, and the anti-slip texture 9 is linearly arranged on the edges of the stacking platform 2 and the pressure cover 3, and is raised.

[0042] The raised cross-line structure increases the contact area between the fingers and the surface, thereby improving friction and making it easier for users to grip the stacking platform 2 and the pressure cap 3 during installation or disassembly. This reduces the risk of slipping and effectively prevents accidental slippage due to sweaty or wet hands, ensuring more stable and reliable operation. In addition, the raised anti-slip texture 9 enhances the structural strength of the edges of the stacking platform 2 and the pressure cap 3, reducing the risk of deformation due to external pressure or collision, extending the product's service life, and dispersing the applied pressure to a certain extent to avoid damage caused by excessive local stress, thus enhancing the overall structural durability.

[0043] Both the positioning hole 7 and the positioning block 8 adopt a three-point positioning structure. The positioning hole 7 and the positioning block 8 are coaxially arranged. The surface of the stacking platform 2 is provided with a limiting spring block 10 to prevent the camera decorative piece from sliding.

[0044] This structure uses three points to determine the specific position of a plane, ensuring that the camera decoration can be accurately installed in its predetermined position. The three-point positioning reduces deviations caused by manufacturing or assembly errors, providing a more stable positioning effect. The structure can also effectively prevent rotation, further enhancing stability.

[0045] The positioning hole 7 and the positioning block 8 are coaxially arranged, which ensures the alignment consistency between each positioning point, improves the overall assembly accuracy, reduces adjustment time, and improves assembly efficiency. Together with the limiting spring block 10, it provides an additional physical pressing function after the decorative part is installed, preventing it from sliding or shifting due to vibration or external force during use. The limiting spring block 10 is made of rubber, which can provide sufficient friction while avoiding damage to the decorative part and protecting its integrity.

[0046] The connection between the support rod 1 and the stacking platform 2 is provided with a reinforcing rib 11 to increase the connection stability. The reinforcing rib 11 has a cross-shaped structure.

[0047] The reinforcing rib 11 can enhance the connection strength between the support rod 1 and the stacking platform 2, avoid structural deformation or fracture caused by excessive local stress, improve the overall durability, and the cross structure can evenly distribute stress in multiple directions, effectively disperse external pressure and vibration, reduce material fatigue damage, and extend the service life of the structure.

[0048] The surface of the stacking platform 2 is provided with a buffer boss 12 for local buffering of the camera decorative parts, and the surface of the cover 3 is provided with a buffer groove 13 that is used in conjunction with the buffer boss 12.

[0049] The buffer boss 12 provides localized cushioning protection during the installation of the camera trim, reducing the risk of damage caused by impact or vibration. This structure is particularly important for cameras in precision electronic devices. The buffer boss 12 can evenly distribute the pressure applied to the camera trim, avoiding damage caused by excessive local stress, extending the service life of the trim. In addition, the design of the buffer boss 12 can resist external pressure to a certain extent, reducing structural deformation caused by external forces and improving the overall durability of the structure.

[0050] One end of the connecting groove 6 is a clearance groove 14, which has a non-through structure and is used to avoid the protruding part of the camera decorative piece.

[0051] The design of the clearance groove 14 can effectively avoid protruding parts on the camera decorative part, such as lenses and sensors, preventing these key components from physically contacting or colliding with the cover 3 or other components, reducing the risk of damage. At the same time, it reduces assembly errors caused by protruding parts and improves the overall assembly accuracy. This structure can also disperse external pressure to a certain extent and avoid local stress concentration caused by protruding parts. By rationally designing the position and shape of the clearance groove 14, it can cooperate with the protruding parts on the camera decorative part to form a mortise and tenon structure, while increasing the force-bearing area between the two. This prevents slippage and disperses the force through the contact surface, making the entire structure more uniform when under stress and enhancing the stability of the overall structure.

[0052] The surface of the cover 3 is equipped with a clamping block 15 to reduce the probability of movement of the camera decoration. The clamping block 15 is located in the middle of the cover 3. This structure effectively reduces the probability of movement of the camera decoration during use and ensures that it is kept in the predetermined position. The physical locking function provided by the clamping block 15 increases the contact area and friction between the camera decoration and the cover 3, making it easier for users to identify and fix the position of the camera decoration during installation, simplifying the operation steps and improving assembly efficiency.

[0053] The key design features of this utility model are: by applying force to the camera decorative piece through the pressure cover 3, the camera decorative piece is confined to the surface of the stacking platform 2, thus avoiding installation problems caused by positional deviation. Through the design of the cross limit pin 4 and the straight limit pin 5, a quick positioning assembly process can be achieved, reducing installation time and complexity.

[0054] After the camera decorative parts are installed and stacked between the pressure cover 3 and the stacking platform 2, they form a part to be painted. By placing the part to be painted into the painting room and using the rotating support rod 1, the paint material is evenly adhered to the outer side of the camera decorative parts. Since the camera decorative parts are between the pressure cover 3 and the stacking platform 2, the pressure of the pressure cover 3 and the stacking platform 2 prevents the paint from entering the area other than the outer side of the camera decorative parts, thus avoiding color mixing and facilitating the next painting process.

[0055] This structure uses a stacking method, which can press multiple camera decorative parts at once, achieving the effect of molding multiple products in one spraying, improving work efficiency while reducing labor and time costs.

[0056] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of the present invention, and all such modifications and substitutions should be considered within the scope of protection of the present invention.

Claims

1. A stacked structure for a mobile phone camera decorative component, comprising a support rod, a stacking platform, and a pressure cover, characterized in that: One end of the support rod abuts against the surface of the stacking platform. The cover and the stacking platform are detachable. The cover is connected to the stacking platform by a cross-shaped limit pin and a straight limit pin. The surface of the cover is provided with a connecting groove that matches the cross-shaped limit pin and the straight limit pin. The connecting groove penetrates the surface of the cover. The surfaces between the stacking platform and the cover are respectively provided with positioning holes and positioning blocks to limit the position of the camera decorative parts. The edges of the stacking platform and the cover are provided with anti-slip textures to increase friction.

2. The mobile phone camera decorative component superimposed structure according to claim 1, characterized in that: The anti-slip texture has a cross-line structure, and the anti-slip texture is linearly arranged on the edges of the stacking platform and the cover, and is raised.

3. The superimposed structure of a mobile phone camera decorative component according to claim 1, characterized in that: Both the positioning hole and the positioning block adopt a three-point positioning structure. The positioning hole and the positioning block are coaxially arranged. The surface of the stacking platform is provided with a limiting spring block to prevent the camera decorative piece from sliding.

4. A mobile phone camera decorative component superimposed structure according to any one of claims 1-3, characterized in that: The connection between the support rod and the stacking platform is provided with reinforcing ribs to increase the stability of the connection. The reinforcing ribs are in a cross-shaped structure.

5. A mobile phone camera decorative component superimposed structure according to any one of claims 1-3, characterized in that: The surface of the stacking platform is provided with a buffer boss for localized buffering of the camera decorative parts, and the surface of the cover is provided with a buffer groove for use in conjunction with the buffer boss.

6. A mobile phone camera decorative component superimposed structure according to any one of claims 1-3, characterized in that: One end of the connecting groove is a clearance groove, which has a non-through structure.

7. A superimposed structure for a mobile phone camera decorative component according to any one of claims 1-3, characterized in that: The surface of the cover is fitted with a clamping block to reduce the probability of movement of the camera decorative piece, and the clamping block is located in the middle of the cover.