Camera decoration assembly and electronic equipment
By using glass decorative parts and transparent adhesive layers in the camera decorative components, the problem of insufficient aesthetics and wear resistance of camera decorative components in the prior art is solved, and higher appearance effects and wear resistance are achieved, and user experience is improved.
Patent Information
- Application Number
- CN202311615991.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-29
- Publication Date
- 2025-05-30
AI Technical Summary
The aesthetics and wear resistance of existing camera decorative components are insufficient, making it difficult to achieve rich appearance effects and have poor texture, which affects the user experience.
The camera decorative component design is adopted, including glass decorative diaphragms, transparent adhesive layer and support. Through the lamination distribution of glass decorative diaphragms and the suspension connection of transparent adhesive layer, the visual suspended glass effect is achieved, and the appearance effect and wear resistance are improved.
By setting up glass decorative parts and transparent adhesive layers, the appearance effect and texture of the camera decorative components are improved, while improving wear resistance and improving user experience.
Smart Images

Figure CN120075559A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of electronic device accessories, and particularly relates to a camera decoration component and an electronic device. Background Art
[0002] For an electronic device with a camera component, the camera decoration component is an indispensable part of the electronic device.
[0003] In order to ensure the strength of the camera decoration component, most of the electronic devices on the market currently use metal materials such as aluminum alloy or plastic sheets such as PMMA (polymethyl methacrylate, also known as acrylic or plexiglass) as the materials for the camera decoration component.
[0004] However, the appearance of the camera decoration component made of metal material is relatively single, and only the anodic process can be used to achieve the appearance effect, with poor aesthetics. The texture of the camera decoration component made of PMMA material is poor, and it is also difficult to achieve a rich appearance effect, and the wear resistance is poor, affecting the user experience. Summary of the Invention
[0005] In view of this, this application provides a camera decoration component and an electronic device to improve the aesthetics and wear resistance of the camera decoration component.
[0006] Specifically, the following technical solutions are included:
[0007] In a first aspect, this application provides a camera decoration component, which is applied to an electronic device with a camera component, and includes a glass decoration piece, a decorative film, a transparent adhesive layer, and a support member;
[0008] The decorative film is installed on one side of the support member, the glass decoration piece and the decorative film are stacked, and the glass decoration piece is located on the side of the decorative film away from the support member. The transparent adhesive layer is disposed on the side of the decorative film close to the support member, and the transparent adhesive layer is used to suspend and connect the decorative film to the support member.
[0009] In an optional embodiment, the glass decoration piece is a semi-transparent piece or a transparent piece.
[0010] In an optional embodiment, at least one of the glass decoration piece and the decorative film is provided with a decorative portion.
[0011] In an optional embodiment, the glass decoration piece and the decorative film are both provided with avoidance holes;
[0012] The camera decoration component further includes a metal part, the metal part is inserted into the avoidance hole and connected to the support part, the metal part is provided with a first mounting hole for mounting the camera component.
[0013] In an alternative embodiment, a limiting part is convexly provided on the outer wall surface of the metal part, the limiting part is annular and continuously distributed around the central axis of the metal part, and the limiting part abuts against or has a gap with the surface of the glass decoration part facing away from the decoration film.
[0014] In an alternative embodiment, the support part includes a main body part and a convex part, the decoration film is connected to the main body part, and the convex part protrudes relative to the main body part;
[0015] The metal part is further provided with a second mounting hole, the second mounting hole is communicated with the first mounting hole, and the convex part is inserted into the second mounting hole.
[0016] In an alternative embodiment, the support part further includes a rear cover, at least part of the rear cover covers the main body part, the rear cover is provided with a through hole, and at least part of the convex part protrudes from the through hole.
[0017] In an alternative embodiment, a foam adhesive layer is provided between the decoration film and the support part, the foam adhesive layer is arranged side by side with the transparent adhesive layer, the foam adhesive layer is used for connecting the decoration film and the main body part, and the transparent adhesive layer is used for connecting the decoration film and the rear cover.
[0018] In an alternative embodiment, the camera decoration component further includes a dispensing layer, the dispensing layer is located between the inner peripheral wall of the metal part and the support part, and covers at least part of the main body part and at least part of the outer peripheral wall of the convex part.
[0019] In an alternative embodiment, the support part further includes a ribbed part, the ribbed part protrudes relative to the main body part and surrounds the outside of the convex part, and the dispensing layer is located between the ribbed part and the convex part.
[0020] In an alternative embodiment, the support part further includes a support part, the support part protrudes relative to the surface of the main body part facing away from the convex part, and the support part is used for connecting with the middle frame of the electronic device.
[0021] In an alternative embodiment, the opening size of the first mounting hole is larger than the opening size of the second mounting hole.
[0022] In an alternative embodiment, the camera decoration component further includes an optical adhesive layer disposed between the glass decoration member and the decoration diaphragm, and the optical adhesive layer is used to connect the glass decoration member and the decoration diaphragm.
[0023] In a second aspect, an embodiment of the present application provides an electronic device, including a housing, a camera component, and the camera decoration component according to any one of the embodiments of the first aspect. The housing defines an accommodation space, and at least a part of the camera component is located in the accommodation space.
[0024] In an alternative embodiment, the electronic device further includes a middle frame located in the accommodation space. The middle frame is connected to the camera decoration component, and the camera decoration component is the camera decoration component described in some embodiments of the first aspect.
[0025] The beneficial effects of the technical solutions provided by the embodiments of the present application at least include: by providing a glass decoration member, and the glass decoration member is located on the side of the diaphragm away from the support member, the appearance effect and texture of the camera decoration component are improved, and at the same time, the wear resistance of the camera decoration component is improved; by using a transparent adhesive layer with a high light transmittance to suspend and connect the decoration diaphragm on the support member, a visually suspended glass effect can be achieved, achieving a rich and delicate visual effect, greatly improving the delicacy of the appearance of the camera decoration component, and being beneficial to improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required for description in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0027] Figure 1 An exploded view of the camera decoration component provided by an embodiment of the present application;
[0028] Figure 2 A partially enlarged cross-sectional view of the camera decoration component provided by an embodiment of the present application;
[0029] Figure 3 A partially enlarged cross-sectional view of the camera decoration component provided by an embodiment of the present application;
[0030] Figure 4 A partially enlarged cross-sectional view of the camera decoration component provided by an embodiment of the present application;
[0031] Figure 5 A partially enlarged cross-sectional view of the camera decoration component provided by an embodiment of the present application;
[0032] Figure 6 Schematic structural diagram of a camera decoration component provided for another embodiment of the present application;
[0033] Figure 7 Stereogram of a metal part provided for an embodiment of the present application;
[0034] Figure 8 Cross-sectional view of a metal part provided for an embodiment of the present application;
[0035] Figure 9 Stereogram of a support part provided for an embodiment of the present application;
[0036] Figure 10 For Figure 9 Cross-sectional view in the direction of A-A in
[0037] The reference numerals in the figure are respectively represented as:
[0038] 1 - Glass decoration part; 11 - Avoidance hole; 2 - Decoration film; 3 - Support part; 31 - Main body part; 32 - Protruding part; 33 - Support seat part; 34 - Mounting hole; 35 - Rib part; 36 - Rear cover; 4 - Foam adhesive layer; 5 - Glue dot layer; 6 - Metal part; 61 - First mounting hole; 62 - Second mounting hole; 63 - Limiting part; 7 - Transparent adhesive layer;
[0039] 100 - Camera assembly; 101 - Lens.
[0040] Through the above-mentioned drawings, specific embodiments of the present application have been shown, and there will be more detailed descriptions hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. Detailed implementation manners
[0041] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are some, rather than all, of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0042] The orientation terms involved in the embodiments of the present application, such as "upper", "lower", "side", etc., generally take Figure 1 the relative relationship of the orientation shown therein as a reference, and the use of these orientation terms is only for more clearly describing the relationship between the structures and the structures, rather than for describing the absolute orientation. When the product is placed in different postures, the orientation may change. For example, "upper" and "lower" may be interchanged.
[0043] Unless otherwise defined, all technical terms used in the embodiments of the present application have the same meaning as commonly understood by those of ordinary skill in the art. Some technical terms that appear in the embodiments of the present application are described below.
[0044] To make the technical solutions and advantages of the present application clearer, the embodiments of the present application will be further described in detail below with reference to the accompanying drawings.
[0045] As Figure 1 shown, the camera decoration component provided by the embodiment of the present application includes a glass decoration member 1, a decoration film 2, a transparent adhesive layer 7, and a support member 3.
[0046] The decoration film 2 is installed on one side of the support member 3. The glass decoration member 1 and the decoration film 2 are stacked, and the glass decoration member 1 is located on the side of the decoration film 2 away from the support member 3. The transparent adhesive layer 7 is disposed on the side of the decoration film 2 close to the support member 3, and the transparent adhesive layer 7 is used to suspend and connect the decoration film 2 to the support member 3.
[0047] The camera decoration component is applied to an electronic device having a camera component 100. The electronic device can be a mobile phone, a tablet computer, an e-reader, a laptop computer, an e-reader, a smart watch, etc. The camera component 100 is used for photographing and includes components such as a camera and a lens 101. The camera decoration component can provide an installation space for the camera component 100, and can also decorate the appearance, improve the aesthetic degree and recognition of the electronic device.
[0048] The glass decoration member 1 and the decoration film 2 are stacked. The glass decoration member 1 covers one side of the decoration film 2 in the thickness direction, and the glass decoration member 1 is located outside the electronic device relative to the decoration film 2. Since the glass decoration member 1 is located outside the electronic device relative to the decoration film 2, the wear resistance and the appearance fineness of the camera decoration component can be improved by exposing the glass decoration member 1, and the recognition and aesthetic degree of the electronic device can be improved. Among them, the surface area of the glass decoration member 1 can be more than one-third of the surface area of the surface of the electronic device where the camera decoration component is installed to form a large-size decoration member.
[0049] Among them, the shape and size of the glass decoration member 1 are adapted to the shape and size of the decoration film 2. It can be understood that the shape of the glass decoration member 1 being adapted to the shape of the decoration film 2 means that the shape of the glass decoration member 1 is similar to or the same as the shape of the decoration film 2; the size of the glass decoration member 1 being adapted to the size of the decoration film 2 means that the size of the glass decoration member 1 is the same as the size of the decoration film 2, or the size of the glass decoration member 1 is slightly larger than the size of the decoration film 2. In the orthographic projection of the camera decoration component along its own thickness direction, the orthographic projection of the decoration film 2 is covered by the orthographic projection of the glass decoration member 1.
[0050] In an alternative embodiment, the surface area of the decorative diaphragm 2 is smaller than the surface area of the glass decorative member 1. In the orthographic projection of the camera decorative assembly along its thickness direction, the orthographic projection of the decorative diaphragm 2 is covered by the orthographic projection of the glass decorative member 1, and the decorative diaphragm 2 is retracted relative to the glass decorative member 1. Exemplarily, the outer edge of the decorative diaphragm 2 is retracted by 0.15 mm to 0.3 mm relative to the outer edge of the glass decorative member 1. For example, the outer edge of the decorative diaphragm 2 is retracted by 0.15 mm, 0.2 mm, 0.3 mm, etc. relative to the outer edge of the glass decorative member 1. The outer peripheral side of the decorative diaphragm 2 is filled with edge-filling ink, and the color of the edge-filling ink is the same as the color of the decorative diaphragm 2. The edge-filling ink is used to fill the gap formed under the glass decorative member 1 due to the retraction of the decorative diaphragm 2, improving the visual effect of the camera decorative assembly.
[0051] The material of the support member 3 can be a metal material. For example, the material of the support member 3 can be stainless steel, aluminum alloy, or aluminum, etc.; or, the material of the support member 3 can also be an insulating material. For example, the material of the support member 3 can be plastic, rubber, etc. Exemplarily, the support member 3 is made of a plastic material.
[0052] The support member 3 is provided with an installation hole 34 for installing the camera assembly 100. The camera assembly 100 can be received in the installation hole 34 and extend to the outside of the electronic device housing. Specifically, the installation hole 34 penetrates through the support member 3 along the thickness direction of the support member 3 for elements such as the camera of the camera assembly 100 to pass through.
[0053] The installation hole 34 can be one or more. When there are multiple installation holes 34, multiple elements of the camera assembly 100 can be installed. For example Figure 1 As shown, there are four installation holes 34, and four cameras and other elements can be installed.
[0054] Among them, since the glass decorative member 1 is made of glass material, the pencil hardness of the glass material reaches above 7H, while the pencil hardness of the camera decorative member made of PMMA material in the prior art is only about 2H. Therefore, the glass decorative member 1 provided in the embodiment of the present application has stronger wear resistance and scratch resistance compared to the camera decorative member made of PMMA material in the prior art, improving the reliability of the camera decorative assembly while ensuring the appearance effect.
[0055] The decorative diaphragm 2 is in the shape of a thin sheet and has a certain deformation ability. The decorative diaphragm 2 can be made of a plastic material. For example, it is made of PET material and has the advantages of high temperature resistance, aging resistance, and corrosion resistance. Optionally, the decorative diaphragm 2 is a semi-transparent or transparent structure with a light transmittance greater than or equal to 50%, cooperating with the transparent adhesive layer 7 to make the glass decorative member 1 present a visually floating effect.
[0056] Among them, the light transmittance of the transparent adhesive layer 7 is greater than or equal to 50%, so as to form a semi-transparent or transparent structure, and has a certain thickness, which can visually present the floating glass effect that the glass decorative member 1 floats above the support member 3, improving the aesthetics and recognition of the camera decorative component. Exemplarily, the thickness of the transparent adhesive layer 7 is 0.05 mm, and the thickness of the decorative film 2 is 0.12 mm.
[0057] Specifically, the back glue process is adopted to evenly coat the adhesive on the surface of the support member 3 and / or the surface of the decorative film 2, and after drying and curing, the transparent adhesive layer 7 is formed, and the decorative film 2 is floatingly connected to the support member 3.
[0058] In a specific embodiment, in the orthographic projection of the camera decorative component along its own thickness direction, the outer contour line of the orthographic projection of the transparent adhesive layer 7 is located inside the outer contour line of the orthographic projection of the decorative film 2, and the outer edge of the transparent adhesive layer 7 is retracted relative to the outer edge of the decorative film 2. Exemplarily, the outer edge of the transparent adhesive layer 7 is retracted by 0.1 mm to 0.3 mm relative to the outer edge of the decorative film 2. For example, the outer edge of the transparent adhesive layer 7 is retracted by 0.1 mm, 0.2 mm, 0.3 mm, etc. relative to the outer edge of the decorative film 2. The edge-repairing ink fills the gap formed by the retraction of the decorative film 2 and the transparent adhesive layer 7 below the glass decorative member 1, improving the visual effect of the camera decorative component.
[0059] The camera decorative component provided by the embodiment of the present application improves the appearance effect and texture of the camera decorative component by setting the glass decorative member 1, and the glass decorative member 1 is located on the side of the decorative film 2 away from the support member 3, and at the same time improves the wear resistance of the camera decorative component; by using the transparent adhesive layer 7 with high light transmittance to floatingly connect the decorative film 2 to the support member 3, the floating glass effect in vision can be realized, achieving a rich and delicate visual effect, greatly improving the delicacy of the appearance of the camera decorative component, and being beneficial to improving the user experience.
[0060] In a specific embodiment, the glass decorative member 1 is a semi-transparent member or a transparent member. The glass decorative member 1 is made of semi-transparent glass or completely transparent glass. The light transmittance of the glass decorative member 1 is greater than or equal to 50%. In combination with the decorative film 2 and the transparent adhesive layer 7, the reflection or refraction of light in the glass decorative member 1 is utilized to enhance the floating glass visual effect.
[0061] In a specific embodiment, at least one of the glass decorative member 1 and the decorative film 2 is provided with a decorative part. Among them, the decorative part may include one or more of color decoration, pattern decoration, texture decoration, and relief decoration.
[0062] Optionally, the decorative diaphragm 2 is provided with a decorative portion. Since the glass decorative member 1 covers one side of the decorative diaphragm 2 and is closer to the outer side of the electronic device, under the effect of light reflection or refraction, the decorative portion presents a three-dimensional and floating visual effect through the glass decorative member 1, making the camera decorative component present a rich appearance effect, greatly improving the aesthetics and recognition of the camera decorative component.
[0063] Optionally, both the decorative diaphragm 2 and the glass decorative member 1 are provided with decorative portions. Exemplarily, the processing method of the decorative portion of the glass decorative member 1 can be: engraving patterns or patterns on the surface of the glass decorative member 1; performing frosting treatment on the surface of the glass decorative member 1; sandwiching a silk screen or other decorative material with patterns, patterns or colors inside the glass decorative member 1; printing printing ink on the surface of the glass decorative member 1, and so on. Through this setting, the appearance of the camera decorative component is made more delicate and rich.
[0064] Among them, the glass decorative member 1 can be connected to the decorative diaphragm 2 by bonding or other means to improve the connection strength between the two; or the glass decorative member 1 can be simply stacked on the surface of the decorative diaphragm 2 so that the two are in contact, which is convenient for disassembly and replacement to achieve different visual effects, and can also avoid the presence of media such as glue between the two, affecting the visual effect of the camera decorative component.
[0065] In a specific embodiment, as Figure 1 shown, both the glass decorative member 1 and the decorative diaphragm 2 are provided with avoidance holes 11. As Figures 6 to 8 shown, the camera decorative component further includes a metal member 6. The metal member 6 is inserted into the avoidance hole 11 and connected to the support member 3. The metal member 6 is provided with a first mounting hole 61 for mounting the camera component 100.
[0066] By inserting the metal member 6 into the avoidance hole 11, it is convenient to position and install the metal member 6, improving the assembly efficiency of the camera decorative component. The outer contour shape of the metal member 6 can be circular, oval, rectangular or other polygonal shapes, and can be specifically set according to the shape of the camera component 100. For example Figure 7 shown, the outer contour shape of the metal member 6 is circular.
[0067] The avoidance hole 11 of the glass decorative member 1 and the avoidance hole 11 of the decorative diaphragm 2 are communicated with each other. The avoidance hole 11 of the glass decorative member 1 penetrates through the glass decorative member 1 along the thickness direction of the glass decorative member 1, and the avoidance hole 11 of the decorative diaphragm 2 penetrates through the decorative diaphragm 2 along the thickness direction of the decorative diaphragm 2. The avoidance hole 11 provides space for the camera component 100 and / or the components connected to the camera component 100.
[0068] The avoidance hole 11 and the metal member 6 can be one or more. When the avoidance hole 11 is multiple, it can provide avoidance space for multiple components of the camera component 100. For exampleFigure 1 As shown, there are four avoidance holes 11 in the glass decorative member 1, four avoidance holes 11 in the decorative film 2, and four metal members 6.
[0069] The first mounting hole 61 and the mounting hole 34 of the support member 3 are in communication with each other for the camera assembly 100 to pass through.
[0070] Exemplarily, the first mounting hole 61 is used to mount the lens 101 of the camera assembly 100, and the upper surface of the lens 101 is flush with or lower than the upper end surface of the metal member 6.
[0071] The metal member 6 is made of metal or alloy material, and the metal member 6 plays a protective role for the camera assembly 100. Exemplarily, when the electronic device drops or is impacted, the metal member 6 bears the impact and transmits the impact force to the support member 3, and uses the deformation of the support member 3 to buffer the received impact, thereby avoiding damage to the glass decorative member 1 and the camera assembly 100 and improving the reliability of the electronic device.
[0072] In a further embodiment, as Figure 7 and Figure 8 shown, a limiting portion 63 is convexly provided on the outer wall surface of the metal member 6. The limiting portion 63 is annular and continuously distributed around the central axis of the metal member 6. The limiting portion 63 abuts against or has a gap with the surface of the glass decorative member 1 facing away from the decorative film 2.
[0073] As Figure 8 shown, the limiting portion 63 is located in the upper region of the metal member 6. There is a step difference between the limiting portion 63 and the lower region of the metal member 6, and an annular groove is formed in the lower region of the metal member 6. The glass decorative member 1 and the decorative film 2 are partially embedded in the annular groove, and the upper surface of the glass decorative member 1 abuts against or has a gap with the lower surface of the limiting portion 63.
[0074] In this embodiment, by providing the limiting portion 63, the limiting portion 63 abuts against or has a gap with the surface of the glass decorative member 1 facing away from the decorative film 2, limits the glass decorative member 1 in the thickness direction thereof, prevents the glass decorative member 1 from falling off, improves the assembly reliability of the glass decorative member 1, and at the same time hides the gap between the metal member 6 and the glass decorative member 1, making the appearance of the camera decorative assembly more delicate.
[0075] In a further embodiment, as Figure 9 shown, the support member 3 includes a main body portion 31 and a convex portion 32. The decorative film 2 is connected to the main body portion 31, and the convex portion 32 protrudes relative to the main body portion 31. The metal member 6 is further provided with a second mounting hole 62, and the second mounting hole 62 is in communication with the first mounting hole 61. The convex portion 32 is inserted into the second mounting hole 62.
[0076] As Figure 8As shown, the first mounting hole 61 is located above the second mounting hole 62. The first mounting hole 61 and the second mounting hole 62 jointly penetrate through the metal part 6, making the metal part 6 annular.
[0077] The main body portion 31 generally extends along the plane where the rear cover 36 is located or a plane parallel to the rear cover 36, providing support in the thickness direction for the decorative film 2 and the glass decorative member 1. In the case where the support member 3 and the rear cover 36 are of a split structure, the main body portion 31 is also used to connect to the rear cover 36.
[0078] The protruding portion 32 protrudes relative to the main body portion 31. Exemplarily, the support member 3 is an integrally formed part, and the protruding portion 32 and the main body portion 31 are integrated. The mounting hole 34 penetrates through the protruding portion 32 and the main body portion 31, providing a mounting space for the camera assembly 100.
[0079] The protruding portion 32 protrudes outwardly towards the outside of the electronic device. The protruding portion 32 is inserted into the second mounting hole 62 of the metal part 6, that is, the metal part 6 is sleeved around the periphery of the protruding portion 32. The main body portion 31 provides stable support for the metal part 6 in the thickness direction of the metal part 6.
[0080] In this embodiment, by providing that the support member 3 includes the main body portion 31 and the protruding portion 32, and the protruding portion 32 is inserted into the second mounting hole 62, it is not only convenient for quickly installing the metal part 6, but also can provide stable support for the metal part 6, improving the installation stability and reliability of the metal part 6.
[0081] In a further embodiment, the support member 3 further includes a rear cover 36. The rear cover 36 at least partially covers the main body portion 31. The rear cover 36 is provided with a through hole, and at least a part of the protruding portion 32 protrudes from the through hole.
[0082] Specifically, the rear cover 36 is used to enclose the accommodation space defined by the housing of the electronic device. As Figure 6 shown, the glass decorative member 1 is located above the rear cover 36, and can present a floating glass visual effect that the glass decorative member 1 floats above the rear cover 36.
[0083] Among them, the rear cover 36 can be integrally formed with the main body portion 31 and the protruding portion 32, or can be of a split connection.
[0084] As Figure 2 shown, a foam adhesive layer 4 is provided between the decorative film 2 and the support member 3. The foam adhesive layer 4 and the transparent adhesive layer 7 are arranged side by side. The transparent adhesive layer 7 is used to connect the decorative film 2 and the rear cover 36. It can be understood that the foam adhesive layer 4 and the transparent adhesive layer 7 being arranged side by side means that the foam adhesive layer 4 and the transparent adhesive layer 7 are adjacent in the extending direction of the support member 3, and the foam adhesive layer 4 and the transparent adhesive layer 7 do not overlap in the thickness direction of the support member 3.
[0085] The foam adhesive layer 4 is made of foam adhesive, which is made of EVA (Ethylene Vinyl Acetate Copolymer) or PE (Polyethylene) foam as the base material, coated with solvent-based (or hot-melt) pressure-sensitive adhesive on one or both sides and then covered with release paper, and has excellent sealing performance, compression deformation resistance, etc. By arranging the foam adhesive layer 4 between the decorative film 2 and the support 3, not only a stable connection between the decorative film 2 and the support 3 is achieved, but also a buffering and shockproof effect is achieved for the glass decorative part 1, the sealing performance of the camera decorative component is improved, which is conducive to improving the reliability of the camera decorative component, making the glass decorative part 1 not easy to break, and making the electronic device not easy to get water.
[0086] For example, Figure 5 As shown, the foam adhesive layer 4 and the transparent adhesive layer 7 are arranged side by side, a part of the decorative film 2 is connected to the main body 31 through the foam adhesive layer 4, and the other part is connected to the back cover 36 through the transparent adhesive layer 7. The decorative film 2 covers the gap between the foam adhesive layer 4 and the transparent adhesive layer 7, which helps to improve the sealing of the electronic device and prevent the gap between the main body 31 and the back cover 36 from being eroded by water or other liquids.
[0087] Optionally, the foam adhesive layer 4 is at least partially covered by a transparent adhesive layer 7 , and the transparent adhesive layer 7 is located between the foam adhesive layer 4 and the decorative film 2 , so that the transparent adhesive layer 7 can be fully utilized to enhance the suspended glass effect formed by the camera decorative assembly.
[0088] In a further embodiment, the camera decoration assembly further includes a glue layer 5 , which is located between the inner circumferential wall of the metal part 6 and the support part 3 , and covers a partial area of the main body 31 and at least a partial area of the outer circumferential wall of the raised part 32 .
[0089] like Figure 3 As shown, the metal component 6 is located above the main body 31 , and a glue layer 5 is provided between the inner peripheral wall of the metal component 6 and the support component 3 , and the metal component 6 is bonded to the support component 3 through the glue layer 5 .
[0090] Exemplarily, an adhesive such as glue is applied or dripped on the surface of the metal part 6 or the support part 3, and solidified within a certain period of time to form a glue layer 5, thereby bonding the metal part 6 and the support part 3 together to ensure the connection strength between the two.
[0091] For example, Figure 3 As shown, a portion of the glue layer 5 covers the surface of the main body 31 close to the decorative film 2 , and another portion covers the outer peripheral wall of the protrusion 32 to achieve a stable connection between the metal part 6 and the main body 31 and the protrusion 32 .
[0092] In a further embodiment, the support member 3 further includes a rib portion 35. The rib portion 35 protrudes relative to the main body portion 31 and surrounds the outside of the protruding portion 32. The dispensing layer 5 is located between the rib portion 35 and the protruding portion 32.
[0093] As Figure 9 shown, the rib portion 35 is annular and surrounds the outside of the protruding portion 32. The rib portion 35 functions to prevent glue overflow and can confine the dispensing layer 5 between the rib portion 35 and the protruding portion 32. Further, as Figure 3 shown, at least a part of the rib portion 35 is located below the metal member 6 to block the adhesive of the dispensing layer 5 from flowing directly below the glass decorative member 1 and affecting the visual effect of the camera decorative assembly.
[0094] In a further embodiment, the support member 3 further includes a support portion 33. The support portion 33 protrudes relative to the surface of the main body portion 31 that faces away from the protruding portion 32. The support portion 33 is used to connect to the middle frame of the electronic device.
[0095] As Figure 10 shown, the support portion 33 and the protruding portion 32 protrude in opposite directions. The support portion 33 is located within the accommodation space of the electronic device, and the support portion 33 is connected to the middle frame of the electronic device.
[0096] Among them, the middle frame is located within the accommodation space. The middle frame is made of a metal material or a plastic material. The middle frame is provided with a recessed portion to facilitate the installation of various components. Among them, the camera assembly 100 can be mounted on the middle frame through a camera bracket, and the support member 3 can be fixed to the middle frame.
[0097] Exemplarily, when the electronic device drops or is impacted, the metal member 6 bears the impact and transmits the impact force to the support member 3, and then through the support portion 33 of the support member 3 to the middle frame, greatly alleviating the impact force received by the camera assembly 100, thereby preventing the camera assembly 100 from being damaged and improving the reliability of the electronic device. Optionally, in the case where the camera decorative assembly includes a foam adhesive layer 4, when the glass decorative member 1 is impacted, the impact force can be transmitted to the foam adhesive layer 4, and then through the foam adhesive layer 4 to the main body portion 31 and the support portion 33, and further transmitted to the middle frame, which can alleviate the impact force received by the glass decorative member 1 and prevent the glass decorative member 1 from being damaged.
[0098] In a further embodiment, the opening size of the first mounting hole 61 is larger than the opening size of the second mounting hole 62.
[0099] Exemplarily, both the first mounting hole 61 and the second mounting hole 62 are circular holes, and the first mounting hole 61 and the second mounting hole 62 are coaxially arranged. The aperture of the first mounting hole 61 is larger than that of the second mounting hole 62 to form an annular step on the metal part 6, providing sufficient accommodation space for the lens 101 with a larger size in the camera assembly 100.
[0100] In an alternative embodiment, the lens 101 is accommodated in the first mounting hole 61 and abuts against the upper surface of the step. The lens 101 limits the metal part 6 in the height direction of the metal part 6, preventing the metal part 6 from detaching from the avoidance hole 11. It can be understood that the height direction of the metal part 6 is Figure 8 the vertical direction in
[0101] Among them, the first mounting hole 61 and the second mounting hole 62 can be straight holes with the same size everywhere along the height direction of the metal part 6, or stepped holes, tapered holes, etc. with not completely the same size along the height direction of the metal part 6. When the shapes of the first mounting hole 61 and / or the second mounting hole 62 are not straight holes, the size of the opening at the end of the first mounting hole 61 close to the second mounting hole 62 is larger than the size of the opening at the end of the second mounting hole 62 close to the first mounting hole 61 to form an annular step at the junction of the first mounting hole 61 and the second mounting hole 62.
[0102] Optionally, the shapes of the first mounting hole 61 and the second mounting hole 62 can also be oval, rectangular or other polygons. When the shapes of the first mounting hole 61 and the second mounting hole 62 are not circular, in the orthographic projection formed by the metal part 6 projecting along its own thickness direction, the contour line of the first mounting hole 61 surrounds the contour line of the second mounting hole 62, so that the opening size of the first mounting hole 61 is larger than that of the second mounting hole 62, and an annular step is formed between the first mounting hole 61 and the second mounting hole 62.
[0103] In this embodiment, by setting the opening size of the first mounting hole 61 to be larger than that of the second mounting hole 62, an annular step can be formed at the junction of the first mounting hole 61 and the second mounting hole 62, providing sufficient accommodation space for the lens 101; when the lens 101 is accommodated in the first mounting hole 61 and abuts against the upper surface of the step, the metal part 6 can be limited in the height direction of the metal part 6, preventing the metal part 6 from detaching from the avoidance hole 11.
[0104] Optionally, the camera decoration assembly further includes an optical glue layer. The optical glue layer is disposed between the glass decoration piece 1 and the decoration film 2, and the optical glue layer is used to connect the glass decoration piece 1 and the decoration film 2.
[0105] Specifically, the optical adhesive layer is composed of a special adhesive that is colorless, transparent, and has a light transmittance greater than 90%. While connecting the glass decorative member 1 and the decorative film 2, it ensures the light transmittance between the glass decorative member 1 and the decorative film 2, avoiding affecting the floating glass visual effect presented by the camera decorative component.
[0106] In a specific embodiment, the assembly process of the camera decorative component includes:
[0107] Pre-assemble the camera component 100 to the middle frame through the camera bracket;
[0108] After assembling the glass decorative member 1 and the decorative film 2, form a transparent adhesive layer 7 through the back glue process for installation on the back cover 36;
[0109] After assembling the main body portion 31 and the protruding portion 32 and connecting them to the back cover 36, activate the foam adhesive layer 4 between the decorative film 2 and the main body portion 31 through the pressure maintaining fixture;
[0110] Assemble the metal part 6 to the support member 3 through the dispensing process;
[0111] Assemble the camera decorative component to the middle frame.
[0112] The embodiment of the present application further provides an electronic device, including a housing, a camera component 100, and the camera decorative component provided in any of the above embodiments. The housing defines an accommodation space, and the camera component 100 is at least partially located in the accommodation space.
[0113] The electronic device can be a mobile phone, a tablet computer, an e-reader, a laptop computer, an e-reader, a smart watch, etc. The camera component 100 is used for photographing and includes components such as a camera and a lens 101. The camera decorative component can provide an installation space for the camera component 100, and can also decorate the appearance, improving the aesthetics and recognition of the electronic device.
[0114] In an alternative embodiment, the electronic device further includes a middle frame located within the accommodation space and connected to the camera decoration assembly. Specifically, the glass decoration member 1 and the decoration diaphragm 2 are both provided with avoidance holes 11 for avoiding the camera assembly 100. The camera decoration assembly further includes a metal member 6 inserted into the avoidance hole 11 and connected to the support member 3. The metal member 6 is provided with a first mounting hole 61 for mounting the camera assembly 100. The support member 3 includes a main body portion 31 and a protruding portion 32. The decoration diaphragm 2 is connected to the main body portion 31, and the protruding portion 32 protrudes relative to the main body portion 31. The metal member 6 is further provided with a second mounting hole 62 communicating with the first mounting hole 61, and the protruding portion 32 is inserted into the second mounting hole 62. The support member 3 further includes a support portion 33 protruding relative to the surface of the main body portion 31 facing away from the protruding portion 32, and the support portion 33 is used for connecting to the middle frame of the electronic device. In this embodiment, when the electronic device drops or is impacted, the metal member 6 bears the impact and transmits the impact force to the support member 3, and then to the middle frame through the support portion 33 of the support member 3, greatly alleviating the impact force received by the glass decoration member 1 and the camera assembly 100, thereby preventing the glass decoration member 1 and the camera assembly 100 from being damaged and improving the reliability of the electronic device.
[0115] In the present application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "plurality" refers to two or more, unless otherwise clearly defined.
[0116] Those skilled in the art will readily conceive of other embodiments of the present application after considering the specification and practicing the present application disclosed herein. The present application is intended to cover any variations, uses, or adaptations of the present application, which follow the general principles of the present application and include common general knowledge or conventional technical means in the technical field not disclosed in the present application. The specification and examples are only to be considered as exemplary.
[0117] It should be understood that the present application is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present application is only limited by the appended claims.
Claims
1. A camera decoration component, applied to an electronic device having a camera component (100), It is characterized in that It comprises a glass decorative piece (1), a decorative film (2), a transparent adhesive layer (7) and a supporting piece (3); The decorative film (2) is installed on one side of the support (3); the glass decorative piece (1) and the decorative film (2) are stacked and distributed, and the glass decorative piece (1) is located on the side of the decorative film (2) away from the support (3); the transparent adhesive layer (7) is arranged on the side of the decorative film (2) close to the support (3); and the transparent adhesive layer (7) is used to suspend and connect the decorative film (2) to the support (3).
2. The camera decoration assembly according to claim 1, It is characterized in that The glass decorative piece (1) is a translucent piece or a transparent piece.
3. The camera decoration assembly according to claim 1, It is characterized in that At least one of the glass decorative piece (1) and the decorative film (2) is provided with a decorative portion.
4. The camera decoration assembly according to claim 1, It is characterized in that The glass decorative piece (1) and the decorative film (2) are both provided with avoidance holes (11); The camera decoration component also includes a metal piece (6), the metal piece (6) is inserted into the avoidance hole (11) and connected to the support member (3), the metal piece (6) is provided with a first mounting hole (61), and the first mounting hole (61) is used to mount the camera component (100).
5. The camera decoration assembly according to claim 4, It is characterized in that The outer wall surface of the metal part (6) is convexly provided with a limiting portion (63), the limiting portion (63) is annular and continuously distributed around the central axis of the metal part (6), and the limiting portion (63) abuts against or has a gap with the surface of the glass decorative part (1) that is away from the decorative film (2).
6. The camera decoration assembly according to claim 4, It is characterized in that The support member (3) comprises a main body (31) and a raised portion (32), the decorative film (2) is connected to the main body (31), and the raised portion (32) is raised relative to the main body (31); The metal piece (6) is further provided with a second mounting hole (62), the second mounting hole (62) being connected to the first mounting hole (61), and the protrusion (32) being inserted into the second mounting hole (62).
7. The camera decoration assembly according to claim 6, It is characterized in that The support member (3) further comprises a rear cover (36), wherein the rear cover (36) at least partially covers the main body (31), and the rear cover (36) is provided with a through hole, and the protrusion (32) at least partially protrudes from the through hole.
8. The camera decoration assembly according to claim 7, It is characterized in that A foam adhesive layer (4) is provided between the decorative film (2) and the support member (3). The foam adhesive layer (4) is arranged side by side with the transparent adhesive layer (7). The foam adhesive layer (4) is used to connect the decorative film (2) and the main body portion (31), and the transparent adhesive layer (7) is used to connect the decorative film (2) and the rear cover (36).
9. The camera decoration assembly according to claim 6, characterized in that the camera decoration assembly further includes a dispensing layer (5). The dispensing layer (5) is located between the inner peripheral wall of the metal member (6) and the support member (3), and covers at least a partial area of the main body portion (31) and at least a partial area of the outer peripheral wall of the convex portion (32).
10. The camera decoration assembly according to claim 9, characterized in that the support member (3) further includes a rib portion (35). The rib portion (35) protrudes relative to the main body portion (31) and surrounds the outside of the convex portion (32). The dispensing layer (5) is located between the rib portion (35) and the convex portion (32).
11. The camera decoration assembly according to claim 6, characterized in that the support member (3) further includes a support portion (33). The support portion (33) protrudes relative to the surface of the main body portion (31) that faces away from the convex portion (32). The support portion (33) is used to connect with the middle frame of the electronic device.
12. The camera decoration assembly according to claim 6, characterized in that the opening size of the first mounting hole (61) is larger than the opening size of the second mounting hole (62).
13. The camera decoration assembly according to claim 1, characterized in that the camera decoration assembly further includes an optical adhesive layer. The optical adhesive layer is provided between the glass decoration (1) and the decorative film (2). The optical adhesive layer is used to connect the glass decoration (1) and the decorative film (2).
14. An electronic device, characterized in that it includes a housing, a camera assembly (100) and the camera decoration assembly according to any one of claims 1 to 13. The housing defines a receiving space, and at least a part of the camera assembly (100) is located in the receiving space.
15. The electronic device according to claim 14, characterized in that the electronic device further includes a middle frame. The middle frame is located in the receiving space. The middle frame is connected to the camera decoration assembly, and the camera decoration assembly is the camera decoration assembly described in claim 11.