Camera decoration assembly and electronic device
By designing grooves and ventilation channels in the camera decorative components, a levitation effect and air pressure balance are achieved for the lens, solving the problems of monotonous appearance and easy lens breakage, thus improving the appearance and safety of electronic devices.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2026-04-10
AI Technical Summary
The simple structure of existing camera decorative components results in poor appearance performance of electronic devices, and the lenses are prone to breakage, affecting safety and reliability.
A camera decorative component is designed, including a decorative part, a lens, a support part, and an adhesive layer. By setting a groove and a light-transmitting hole in the decorative part, the lens is embedded in the groove, and a ventilation channel is formed between the support part and the adhesive layer, so as to achieve the suspension effect and air pressure balance of the lens and prevent the lens from breaking.
It improves the appearance and safety of electronic devices. The floating effect of the lens enhances the appearance, while the air pressure is balanced through the ventilation channel to prevent the lens from breaking, thus enhancing the safety and reliability of the camera decorative components.
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Figure CN119211675B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of communication equipment, and particularly relates to a camera decoration assembly and electronic equipment. BACKGROUND
[0002] With the progress of technology, electronic equipment (such as mobile phones and tablet computers) has developed rapidly. As a powerful tool, electronic equipment greatly facilitates the life and work of users.
[0003] In the related art, electronic equipment is usually provided with a camera decoration assembly, which is used to decorate a camera module, thereby avoiding the risk of exposure of the camera module device. In the related art, the camera decoration assembly comprises a decoration ring and a lens, and the lens is covered on the decoration ring.
[0004] However, the structure of the camera decoration assembly in the related art is relatively simple, thus making the appearance structure of the electronic equipment simple, thereby causing poor appearance performance of the electronic equipment. SUMMARY
[0005] The purpose of the embodiments of the application is to provide a camera decoration assembly and electronic equipment, which can solve the problem of poor appearance performance of electronic equipment.
[0006] In a first aspect, the application discloses a camera decoration assembly, comprising a decoration piece, a lens, a support part, a first adhesive layer and a second adhesive layer.
[0007] The decoration piece is provided with a groove and a light hole communicating with the groove; the lens is embedded in the groove to form an installation cavity; the support part is located in the installation cavity, an inner surface of the groove is provided with an annular textured surface, the annular textured surface is arranged opposite to the lens, and the annular textured surface surrounds the support part.
[0008] The support part has a first surface and a second surface arranged opposite to each other, the support part is provided with a through hole penetrating through the first surface and the second surface, the through hole is arranged opposite to the light hole, the first surface is attached to the lens through the first adhesive layer, and the second surface is attached to a bottom wall of the groove through the second adhesive layer.
[0009] At least one of the first adhesive layer, the support part, the second adhesive layer and the decoration piece is formed with an air passage, one end of the air passage is in communication with the installation cavity, and the other end of the air passage is in communication with an external environment of the camera decoration assembly.
[0010] In a second aspect, the present application discloses an electronic device, comprising a shell and the camera decoration assembly described above; the shell is provided with a light opening, the decoration piece is arranged on the shell, the light hole is arranged opposite to the light opening, and one end of the air passage is in communication with the inner cavity of the shell.
[0011] In the embodiment of the present application, the decoration piece is provided with a groove, and the inner surface of the groove is provided with an annular textured surface, which is arranged opposite to the lens. In this scheme, external light can be irradiated onto the annular textured surface through the lens, thereby illuminating the annular textured surface. The textured surface can reflect the lens to form a floating effect, thus realizing the appearance effect of lens floating, thereby improving the appearance performance of the electronic device. At the same time, at least one of the first adhesive layer, the support part, the second adhesive layer and the decoration piece forms an air passage, which is used to communicate the mounting cavity and the external environment of the camera decoration assembly, so as to balance the internal and external air pressure of the mounting cavity, thereby avoiding the risk of lens burst, and improving the safety and reliability of the camera decoration assembly, and thus improving the safety and reliability of the electronic device. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 is an exploded view of the camera decoration assembly disclosed in the embodiment of the present application;
[0013] Figure 2 is a structural schematic view of the camera decoration assembly disclosed in the embodiment of the present application;
[0014] Figure 3 is Figure 2 a sectional view in A-A direction;
[0015] Figure 4 is Figure 2 a sectional view in B-B direction;
[0016] Figure 5 is a structural schematic view of the decoration piece of the camera decoration assembly disclosed in the embodiment of the present application;
[0017] Figure 6 is Figure 5 a sectional view in C-C direction;
[0018] Figure 7 is a front view of the decoration piece and the support part of the camera decoration assembly disclosed in the embodiment of the present application;
[0019] Figure 8 is a back view of the decoration piece of the camera decoration assembly disclosed in the embodiment of the present application;
[0020] Figure 9 is a front view of the decoration piece and the first adhesive layer of the camera decoration assembly disclosed in the embodiment of the present application;
[0021] Figure 10 is a partial enlarged view of the electronic device of the present application; Figure 6
[0022] Figures 11 to 16 is a structural schematic view of a support part of the camera decoration assembly disclosed by the embodiments of the present application;
[0023] Figure 17 is a structural schematic view of the electronic device disclosed by the embodiments of the present application;
[0024] Figure 18 is a structural schematic view of the electronic device disclosed by the embodiments of the present application.
[0025] Explanation of reference signs:
[0026] 100 - housing, 101 - light passing opening,
[0027] 200 - camera decoration assembly, 210 - decoration piece, 211 - light passing hole, 211a - first light passing hole, 211b - second light passing hole, 212 - annular textured surface, 213 - groove, 214 - second positioning hole, 215 - glue dispensing positioning hole, 216 - glue dispensing groove, 217 - glue overflow groove, 220 - lens, 221 - light shielding area, 2211 - first light shielding sub-area, 2212 - second light shielding sub-area, 222 - first transparent area, 2221 - first transparent sub-area, 2222 - second transparent sub-area, 223 - second transparent area, 230 - support part, 2301 - first surface, 2302 - second surface, 2303 - through hole, 2304 - strip-shaped groove, 2304a - first port, 2304b - second port, 2305 - second edge, 2306 - positioning column, 2307 - second avoiding hole, 231 - first support part, 232 - second support part, 240 - first adhesive layer, 241 - third avoiding hole, 250 - second adhesive layer, 251 - first edge, 252 - first positioning hole, 253 - first avoiding hole, 260 - third adhesive layer, 270 - fourth adhesive layer,
[0028] 310 - mounting cavity, 320 - air passing channel, 321 - main channel, 322 - communication hole, 323 - air permeable hole. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the present application will be clearly described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some but not 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 belong to the scope of protection of the present application.
[0030] The terms "first", "second", and the like in the description and in the claims of the present application are used for distinguishing between similar objects and are not necessarily used to describe a particular sequential or chronological order. It is to be understood that the use of the term data herein can be interchanged with one another in proper context so that the embodiments of the present application are able to be carried out in other sequences than those illustrated or otherwise described herein. Moreover, the term "and / or" in the description and in the claims of the present application represents at least one of the objects connected with it, and the character " / " generally represents an "or" relationship between the objects connected in front and behind.
[0031] The camera decoration assembly and the electronic device provided by the embodiments of the present application will be described in detail below in combination with the drawings, specific embodiments and application scenarios thereof.
[0032] Reference is made to Figures 1 to 16 The camera decoration assembly 200 disclosed by the embodiments of the present application is applied to an electronic device. The disclosed camera decoration assembly 200 comprises a decoration piece 210 and a lens 220.
[0033] The decoration piece 210 is the main component of the camera decoration assembly 200, and the decoration piece 210 is used to be connected with the shell 100 of the electronic device. Specifically, the decoration piece 210 is provided with a recess 213 and a light passing hole 211 which is in communication with the recess 213. The lens 220 is embedded in the recess 213 to form an installation cavity 310. Optionally, the lens 220 and the recess 213 can be bonded by a fourth adhesive layer 270. Here, the fourth adhesive layer 270 can be double-sided tape or glue.
[0034] The lens 220 here is used to cover the light passing hole 211 of the decoration piece 210, so the lens 220 is exposed. It can be understood here that the decoration piece 210 is arranged on the shell 100 of the electronic device, and the lens 220 is located on the side of the decoration piece 210 which is away from the shell 100. At this time, the recess 213 is also provided on the side of the decoration piece 210 which is away from the shell 100, so that the recess 213 and the lens 220 are both exposed outward. At this time, the external light first passes through the lens 220, and then enters the lens of the camera module of the electronic device through the light passing hole 211, so that the photographing function of the electronic device can be realized. It needs to be mentioned here that the shell 100 of the electronic device is usually provided with a light passing opening 101 which is opposite to the light passing hole 211, and the lens of the camera module is opposite to the light passing opening 101. Therefore, the light passes through the light passing hole 211 and then enters the lens through the light passing opening 101.
[0035] In the embodiments disclosed in the present application, the inner surface of the groove 213 is provided with an annular textured surface 212, which is arranged opposite to the lens 220. At this time, the external part of the light can be irradiated on the annular textured surface 212 through the lens 220, so as to illuminate the annular textured surface 212, and the annular textured surface 212 can reflect the lens 220 to form a suspended effect, so as to realize the appearance effect of the lens 220 suspension, thereby improving the appearance performance of the electronic equipment.
[0036] The lens 220 in the present application can be a full transparent structure, at this time, all areas of the entire lens 220 are transparent. Alternatively, it can also be a partial area transparent structure, at this time, the area opposite to the light transmission hole 211 of the lens 220 and the area opposite to the annular textured surface 212 of the lens 220 can be transparent, and the remaining areas can be non-transparent.
[0037] In the embodiments disclosed in the present application, the camera decoration 210 further comprises a support part 230, a first adhesive layer 240 and a second adhesive layer 250, the support part 230 is located in the mounting cavity 310, and the annular textured surface 212 surrounds the support part 230. Specifically, the support part 230 has a first surface 2301 and a second surface 2302 arranged opposite to each other, here the first surface 2301 and the second surface 2302 can be understood as two surfaces arranged along the thickness direction of the support part 230. The support part 230 is provided with a through hole 2303 penetrating the first surface 2301 and the second surface 2302. At this time, since the support part 230 is provided with the through hole 2303 along the arrangement direction of the first surface 2301 and the second surface 2302, the support part 230 can be understood as an annular structure, and the through hole 2303 is the inner ring area of the annular structure. Therefore, the first surface 2301 and the second surface 2302 here can be understood as annular surfaces. The through hole 2303 is arranged opposite to the light transmission hole 211, at this time, the external light passes through the lens and is irradiated to the light transmission hole 211 after passing through the through hole 2303.
[0038] The first surface 2301 is attached to the lens 220 through the first adhesive layer 240. The first surface 2301 is annular and thus does not affect the light entering the through hole 2303. Meanwhile, the first surface 2301 is sealed to the lens 220 through the first adhesive layer 240. The second surface 2302 is attached to the bottom wall of the groove 213 through the second adhesive layer 250. The second surface 2302 is annular and thus does not affect the light entering the light passing hole 211. Meanwhile, the second surface 2302 is sealed to the decorative piece 210 through the second adhesive layer 250. At this time, the support portion 230 is supported between the lens 220 and the groove bottom, thereby improving the overall strength of the camera decoration assembly 200 and thus improving the safety and reliability of the camera decoration assembly 200.
[0039] Optionally, the first adhesive layer 240 and the second adhesive layer 250 can be a glue layer, and of course can also be a double-sided adhesive tape.
[0040] The annular textured surface 212 in the above embodiment includes a plurality of annular array arranged protrusions, and the recesses are formed between the connected protrusions, thereby achieving the structure of light and shade intersection. Alternatively, the annular textured surface 212 can also be a knurled surface, and the specific structure of the annular textured surface 212 is not limited herein.
[0041] In the disclosed embodiment, the first surface 2301 of the support portion 230 is sealed and connected to the lens 220 through the first adhesive layer 240, and the second surface 2302 of the support portion 230 is sealed and connected to the groove bottom through the second adhesive layer 250. At this time, the support portion 230 blocks the light passing hole 211, so that the mounting cavity 310 is a closed cavity. The mounting cavity 310 is sealed, which is easy to cause a pressure difference between the internal pressure of the mounting cavity 310 and the pressure of the external environment of the camera decoration assembly 200, and thus is easy to cause the risk of lens 220 burst. The external environment of the camera decoration assembly 200 can be the external environment of the electronic device, and can also be understood as the inner cavity of the shell 100 of the electronic device.
[0042] Based on this, at least one of the first adhesive layer 240, the support portion 230, the second adhesive layer 250 and the decorative piece 210 is formed with a ventilation passage 320, one end of the ventilation passage 320 is communicated with the mounting cavity 310, and the other end of the ventilation passage 320 is communicated with the external environment of the camera decoration assembly 200.
[0043] In the embodiments disclosed in the present application, the installation cavity 310 can be connected to the external environment of the camera decoration assembly 200 through the ventilation channel 320, so that the internal and external air pressures of the installation cavity 310 are relatively balanced, thereby avoiding the risk of lens 220 burst, and improving the safety and reliability of the camera decoration assembly 200, and thus improving the safety and reliability of the electronic device.
[0044] Of course, in addition to the ventilation function of the ventilation channel 320 on the camera decoration assembly 200, after the lens 220 and the decoration piece 210 are assembled, the ventilation channel 320 can also be used as a gas tightness test channel of the camera decoration assembly 200, thereby ensuring the reliability of the assembly of the lens 220 and the decoration piece 210.
[0045] In an optional solution, the ventilation channel 320 can be formed on the first adhesive layer 240. At this time, one end of the ventilation channel 320 can face the outer circumferential surface of the support portion 230 and be connected to the installation cavity 310. The other end of the ventilation channel 320 can face the inner circumferential surface of the support portion 230 and be connected to the through hole 2303. At this time, the installation cavity 310 is connected to the through hole 2303 through the ventilation channel 320. Since the through hole 2303 is connected to the light transmission hole 211, and the light transmission hole 211 can be connected to the inner cavity of the shell 100 of the electronic device, the pressure in the installation cavity 310 can be balanced with the pressure in the inner cavity of the shell 100.
[0046] In another optional solution, the ventilation channel 320 can be formed between the first adhesive layer 240 and the first surface 2301. At this time, one end of the ventilation channel 320 can face the outer circumferential surface of the support portion 230 and be connected to the installation cavity 310. The other end of the ventilation channel 320 can face the inner circumferential surface of the support portion 230 and be connected to the through hole 2303.
[0047] In one solution, the ventilation channel 320 can be formed on the second adhesive layer 250. At this time, one end of the ventilation channel 320 can face the outer circumferential surface of the support portion 230 and be connected to the installation cavity 310. The other end of the ventilation channel 320 can face the inner circumferential surface of the support portion 230 and be connected to the through hole 2303.
[0048] Alternatively, in another optional solution, the decoration piece 210 can be provided with a ventilation channel 320 penetrating the slot bottom of the through groove 213. At this time, one end of the ventilation channel 320 penetrates the inner surface of the through groove 213, and the other end directly penetrates to the outer surface of the decoration piece 210.
[0049] In an embodiment, the ventilation passage 320 can include a main passage 321, a communication hole 322, and a gas permeation hole 323. The second surface 2302 can be provided with a strip-shaped slot 2304 having a first port 2304a and a second port 2304b, where the first port 2304a and the second port 2304b refer to the positions of the two ends of the strip-shaped slot 2304. The first port 2304a penetrates the edge of the support portion 230 and is in communication with the mounting cavity 310. At this time, the first port 2304a penetrates the edge of the support portion 230, so that the first port 2304a can be in communication with the mounting cavity 310. The second adhesive layer 250 and the strip-shaped slot 2304 can form the main passage 321. At this time, since the second adhesive layer 250 is adhered to the second surface 2302, the second adhesive layer 250 can cover the slot of the strip-shaped slot 2304, thereby forming a strip-shaped main passage 321.
[0050] The second adhesive layer 250 is provided with a communication hole 322, and the decorative part 210 is provided with a gas permeation hole 323 that penetrates the bottom wall of the recess 213 and is in communication with the external environment of the camera decoration assembly 200, where the gas permeation hole 323 can be in communication with the external environment of the electronic device or the inner cavity of the shell 100 of the electronic device. The gas permeation hole 323 is in communication with the second port 2304b through the communication hole 322. At this time, the external environment of the camera decoration assembly 200 is in communication with the mounting cavity 310 through the gas permeation hole 323, the communication hole 322, and the main passage 321 in sequence.
[0051] In this scheme, the communication port of the ventilation passage 320 with the mounting cavity 310 and the communication port with the external environment are located at the two ends of the main passage 321, and the main passage 321 has a relatively long path, so that the appearance area of the camera decoration assembly 200 can be effectively prevented from entering dust while ensuring the ventilation performance, thereby providing the camera decoration assembly 200 with good dustproof performance.
[0052] In addition, the whole ventilation passage 320 is located on the side of the support portion 230 away from the lens 220, so that the ventilation passage 320 cannot be observed on the appearance, thereby realizing the hidden design of the ventilation passage 320 and providing the appearance performance of the camera decoration assembly 200.
[0053] In the above embodiment, the first port 2304a of the strip-shaped slot 2304 penetrates the edge position of the support portion 230, thereby being in communication with the mounting cavity 310, and the second port 2304b of the strip-shaped slot 2304 does not need to penetrate the edge position of the support portion 230, thereby avoiding the case that the two ends of the main passage 321 are in communication with the mounting cavity 310.
[0054] In the above embodiment, the edge of the second adhesive layer 250 is easy to block the first port 2304a, so that the main channel 321 cannot be in communication with the mounting cavity 310.
[0055] Based on this, in another optional embodiment, the second adhesive layer 250 can have a first edge 251. The support part 230 can have a second edge 2305, and the first port 2304a penetrates through the second edge 2305. The second edge 2305 protrudes from the first edge 251, which can be understood as that the size of the second adhesive layer 250 is shrunk, or that the area of the second adhesive layer 250 is smaller than the area of the second surface 2302. In this scheme, since the second edge 2305 protrudes from the first edge 251, the second edge 2305 can avoid covering the first edge 251, thereby avoiding the risk that the edge of the second adhesive layer 250 blocks the first port 2304a, and further avoiding the risk that the main channel 321 cannot be in communication with the mounting cavity 310, thereby improving the safety and reliability of the camera decoration assembly 200.
[0056] In the above scheme, the first edge 251 can be the overall outer edge of the second adhesive layer 250, and the second edge 2305 can be the overall outer edge of the support part 230, at this time, the second edge 2305 protrudes from the first edge 251, so the area of the second surface 2302 is larger than the area of the second adhesive layer 250. Alternatively, the first edge 251 is a partial outer edge of the second adhesive layer 250, and the second edge 2305 refers to a partial edge of the support part 230 on which the first port 2304a is arranged, at this time, the second adhesive layer 250 is subjected to shrinkage treatment on the corresponding partial edge with the first port 2304a, and the other edges can be flush with the outer edge of the support part 230.
[0057] In order to improve the assembly precision of the camera decoration assembly 200, in another optional scheme, the second surface 2302 can be provided with a positioning column 2306. The second adhesive layer 250 can be provided with a first positioning hole 252. The bottom wall of the groove 213 can be provided with a second positioning hole 214. The positioning column 2306 is in positioning cooperation with the first positioning hole 252 and the second positioning hole 214. In this scheme, the positioning column 2306, the first positioning hole 252 and the second positioning hole 214 can realize the installation and positioning of the decoration piece 210, the second adhesive layer 250 and the support part 230, thereby improving the assembly precision of the camera decoration assembly 200.
[0058] In the above embodiment, the second adhesive layer 250 can seal the first positioning hole 252 and the second positioning hole 214, so that the first positioning hole 252 and the second positioning hole 214 will not affect the air tightness of the mounting cavity 310, and the mounting cavity 310 can still be in communication with the external environment of the camera decoration assembly 200 only through the ventilation channel 320.
[0059] In an alternative scheme, the decorative piece 210 and the lens 220 can be connected by means of glue dispensing, at this time, the slot edge of the decorative piece 210 can be provided with a glue dispensing groove 216 and a glue overflow groove 217, in the specific assembly process, the glue dispensing groove 216 is filled with glue, then the lens 220 is connected with the decorative piece 210, and the lens 220 is pressed, so that part of the glue in the glue dispensing groove 216 overflows into the glue overflow groove 217, thereby realizing the assembly of the decorative piece 210 and the lens 220. The glue dispensing groove 216 here is used to improve the bonding and sealing effect of the glue, and the glue overflow groove 217 is mainly to prevent the glue from overflowing after the lens 220 is assembled to affect the appearance.
[0060] The glue dispensing operation of the decorative piece 210 and the lens 220 is generally operated by a glue dispensing device, in order to facilitate positioning of the glue dispensing operation. In another alternative scheme, the bottom wall of the groove 213 can be provided with a glue dispensing positioning hole 215, at this time, the decorative piece 210 can be positioned with the glue dispensing device through the glue dispensing positioning hole 215, thereby providing the glue dispensing precision of the decorative piece 210 and the lens 220.
[0061] Further, the second bonding layer 250 can be provided with a first avoidance hole 253, the support part 230 is provided with a second avoidance hole 2307, the first bonding layer 240 is provided with a third avoidance hole 241, and the glue dispensing positioning hole 215, the first avoidance hole 253, the second avoidance hole 2307 and the third avoidance hole 241 are all oppositely arranged. In this scheme, the glue dispensing positioning hole 215, the first avoidance hole 253, the second avoidance hole 2307 and the third avoidance hole 241 can realize positioning between the decorative piece 210, the second bonding layer 250, the support part 230, the first bonding layer 240 and the lens 220, thereby further improving the assembly precision of the camera decoration assembly. In addition, the first avoidance hole 253, the second avoidance hole 2307 and the third avoidance hole 241 can avoid the glue dispensing positioning hole 215, thereby ensuring the reliability of the positioning.
[0062] In the specific assembly process, first, the support part 230 is bonded on the bottom wall of the groove 213, then glue dispensing is performed by the glue dispensing device, and then the lens 220 is installed, at this time, the edge region of the lens 220 is connected with the decorative piece 210 by glue, and the middle region of the lens 220 can be bonded with the support part 230.
[0063] In another alternative, the inner side wall of the groove 213 can be formed with an annular textured surface 212. The lens 220 can have an opaque region 221, a first transparent region 222, and a second transparent region 223, the opaque region 221 can be disposed around the first transparent region 222, and the second transparent region 223 is disposed around the opaque region 221, and the first surface 2301 is bonded to the opaque region 221 through a first bonding layer 240. The first transparent region 222 is disposed opposite to the light passing hole 211, and the first transparent region 222 here is used to pass light to the camera module. The annular textured surface 212 can be disposed opposite to the second transparent region 223, and the second transparent region 223 here is used to expose the annular textured surface 212.
[0064] In this scheme, the support portion 230 is hidden below the opaque region 221, thereby avoiding the exposure of the support portion 230, and further providing the appearance performance. In addition, light can be irradiated onto the annular textured surface 212 through the second transparent region 223, thereby illuminating the annular textured surface 212, and the annular textured surface 212 can reflect the opaque region 221, and the floating effect of the opaque region 221 is more three-dimensional, thus enabling the lens 220 to form a better floating effect, and further providing the appearance performance of the camera decoration piece 210.
[0065] In another alternative embodiment, in the axial direction of the light passing hole 211, the orthographic projection of the support portion 230, the first bonding layer 240, and the second bonding layer 250 can all be located within the orthographic projection of the opaque region 221. At this time, the outer edge and the inner edge of the support portion 230, the first bonding layer 240, and the second bonding layer 250 do not protrude from the opaque region 221, and thus it is difficult to see the support portion 230, the first bonding layer 240, and the second bonding layer 250 from the appearance, thereby further avoiding the risk of device exposure, and further providing the appearance performance of the camera decoration assembly 200.
[0066] At least two camera modules are usually provided in electronic devices, and in order to cope with such a setting, in another alternative, the number of light passing holes 211 is at least two, which are a first light passing hole 211a and a second light passing hole 211b. The first light passing hole 211a and the second light passing hole 211b here can correspond to one camera module respectively.
[0067] The opaque region 221 can include first and second spaced-apart opaque sub-regions 2211 and 2212. The first transparent region 222 can include first and second spaced-apart transparent sub-regions 2221 and 2222, and the first opaque sub-region 2211 is disposed around the first transparent sub-region 2221, and the second opaque sub-region 2212 is disposed around the second transparent sub-region 2222.
[0068] The number of support portions 230 can be at least two, i.e., a first support portion 231 and a second support portion 232. The first support portion 231 is arranged opposite to the first light-shielding sub-area 2211, and the through hole 2303 of the first support portion 231 is arranged opposite to the first light-transmitting hole 211a. The second support portion 232 is arranged opposite to the second light-shielding sub-area 2212, and the through hole 2303 of the second support portion 232 is arranged opposite to the second light-transmitting hole 211b. At this time, the number of first adhesive layers 240 is the same as that of support portions 230. One of the first adhesive layers 240 is used to bond the first support portion 231 and the first light-shielding sub-area 2211, and the other first adhesive layer 240 is used to bond the second support portion 232 and the second light-shielding sub-area 2212. Similarly, the number of second adhesive layers 250 is also the same as that of support portions 230. One of the second adhesive layers 250 is used to bond the first support portion 231 and the decorative piece 210, and the other second adhesive layer 250 is used to bond the second support portion 232 and the decorative piece 210.
[0069] This scheme can adapt to multiple camera modules, so that the position corresponding to each camera module can realize the suspension effect, further providing the appearance performance of the camera decorative piece 210.
[0070] Optionally, the lens 220 can be made of transparent glass or resin and the like. An ink screen printing area is arranged on part of the lens 220, thereby forming a light-shielding area 221. Of course, other processes can also be used to form the light-shielding area 221, which is not limited herein.
[0071] In the above embodiment, the ventilation passage 320 can be arranged in the area where the first support portion 231 is located, or in the area where the second support portion 232 is located, or in the area where the first support portion 231 and the second support portion 232 are located.
[0072] In another optional scheme, the second surface 2302 of the first support portion 231 can be provided with the above-mentioned strip-shaped slot 2304. The above-mentioned first port 2304a can penetrate to the edge of the first support portion 231 and communicate with the mounting cavity 310. The second adhesive layer 250 corresponding to the first support portion 231 can be provided with the above-mentioned communication hole 322 and form the main passage 321 with the strip-shaped slot 2304. The decorative piece 210 can be provided with the air permeation hole 323 penetrating the bottom wall of the recessed groove 213, which can communicate with the external environment of the camera decorative assembly 200. At this time, the area where the second support portion 232 is located is not designed with the ventilation passage 320.
[0073] In this scheme, the ventilation passage 320 is formed below one of the support portions 230, which can meet the ventilation requirement and simplify the structure design, thereby reducing the manufacturing cost of the camera decorative assembly 200.
[0074] Based on the camera decoration assembly 200 disclosed in the embodiments of the present application, the embodiments of the present application further disclose an electronic device, and the disclosed electronic device comprises the camera decoration piece 210 described in any of the above embodiments.
[0075] Please refer to Figure 17 and Figure 18 The electronic device disclosed in the present application can further comprise a shell 100, the shell 100 can be provided with a light opening 101, the decoration piece 210 can be arranged on the shell 100, the light hole 211 is arranged opposite to the light opening 101, and one end of the air passage 320 is in communication with the inner cavity of the shell 100. At this time, one end of the air passage 320 can be opposite to the light opening 101, so that the air passage 320 can be in communication with the inner cavity of the shell 100. Alternatively, a hole in communication with the air passage 320 can also be provided on the shell 100.
[0076] In a specific scheme, the shell 100 can comprise a front shell and a rear cover, and the rear cover is a battery cover, and the decoration piece 210 can be adhered to the outer surface of the rear cover through a third adhesive layer 260. The third adhesive layer 260 can be glue or double-sided adhesive tape.
[0077] In the embodiments disclosed in the present application, the inner surface of the groove 213 of the decoration piece 210 is provided with an annular textured surface 212, and the annular textured surface 212 is arranged opposite to the lens 220. At this time, the external part of the light can be irradiated to the annular textured surface 212 through the lens 220, so as to illuminate the annular textured surface 212, and the textured surface can reflect the lens 220 to form a suspended effect, so as to realize the appearance effect of the lens 220 suspension, thereby improving the appearance performance of the electronic device.
[0078] The electronic device disclosed in the embodiments of the present application can be a smart phone, a tablet computer, an electronic book reader, a wearable device (such as a smart watch), an electronic game machine, etc. The embodiments of the present application do not limit the specific types of electronic devices.
[0079] The embodiments of the present application are described above in combination with the drawings, but the present application is not limited to the above specific embodiments, and the above specific embodiments are only illustrative but not restrictive. Those skilled in the art can make many forms under the inspiration of the present application without departing from the scope of the present application and the protection scope of the claims.
Claims
1. A camera trim component, comprising: The decorative piece (210), the lens (220), the support part (230), the first adhesive layer (240) and the second adhesive layer (250); The decorative piece (210) is provided with a recess (213) and a light passing hole (211) communicated with the recess (213); the lens (220) is embedded in the recess (213) to form an installation cavity (310); the support part (230) is located in the installation cavity (310), and the inner surface of the recess (213) is provided with an annular textured surface (212) opposite to the lens (220), and the annular textured surface (212) surrounds the support part (230); The support part (230) has a first surface (2301) and a second surface (2302) oppositely arranged, and the support part (230) is provided with a through hole (2303) penetrating through the first surface (2301) and the second surface (2302), the through hole (2303) is opposite to the light passing hole (211), the first surface (2301) is attached to the lens (220) through the first adhesive layer (240), and the second surface (2302) is attached to the bottom wall of the recess (213) through the second adhesive layer (250); At least one of the first adhesive layer (240), the support part (230), the second adhesive layer (250) and the decorative piece (210) is formed with an air passage (320), one end of the air passage (320) is communicated with the installation cavity (310), and the other end of the air passage (320) is communicated with the external environment of the camera decoration assembly (200); The air passage (320) includes a main passage (321), a communication hole (322) and a gas permeation hole (323); the second surface (2302) is provided with a strip-shaped groove (2304) having a first port (2304a) and a second port (2304b), the first port (2304a) penetrates to the edge of the support part (230) and is communicated with the installation cavity (310), the second adhesive layer (250) and the strip-shaped groove (2304) form the main passage (321), the second adhesive layer (250) is provided with the communication hole (322), the decorative piece (210) is provided with the gas permeation hole (323) penetrating through the bottom wall of the recess (213), the gas permeation hole (323) is communicated with the external environment of the camera decoration assembly (200), and the gas permeation hole (323) is communicated with the second port (2304b) through the communication hole (322).
2. The camera trim component of claim 1, wherein, The second adhesive layer (250) has a first edge (251), the support part (230) has a second edge (2305), the second edge (2305) protrudes from the first edge (251), and the first port (2304a) penetrates through the second edge (2305).
3. The camera trim component of claim 1, wherein, The second surface (2302) is provided with a positioning column (2306), the second adhesive layer (250) is provided with a first positioning hole (252), the bottom wall of the groove (213) is provided with a second positioning hole (214), and the positioning column (2306) is in positioning cooperation with the first positioning hole (252) and the second positioning hole (214).
4. The camera trim component of claim 1, wherein, The bottom wall of the groove (213) is provided with a glue dispensing positioning hole (215), the second adhesive layer (250) is provided with a first avoiding hole (253), the supporting part (230) is provided with a second avoiding hole (2307), the first adhesive layer (240) is provided with a third avoiding hole (241), and the glue dispensing positioning hole (215), the first avoiding hole (253), the second avoiding hole (2307) and the third avoiding hole (241) are oppositely arranged.
5. The camera trim component of claim 1, wherein, The inner side wall of the groove (213) is formed with the annular textured surface (212), the lens (220) has an opaque area (221), a first transparent area (222) and a second transparent area (223), the opaque area (221) is arranged around the first transparent area (222), the second transparent area (223) is arranged around the opaque area (221), the first surface (2301) is adhered to the opaque area (221) through the first adhesive layer (240), and the first transparent area (222) is oppositely arranged with the light transmission hole (211); the annular textured surface (212) is oppositely arranged with the second transparent area (223).
6. The camera trim component of claim 5, wherein, In the axial direction of the light transmission hole (211), the orthographic projections of the supporting part (230), the first adhesive layer (240) and the second adhesive layer (250) are located in the orthographic projection of the opaque area (221).
7. The camera trim component of claim 5, wherein, The number of the light transmission holes (211) is at least two, which are a first light transmission hole (211a) and a second light transmission hole (211b); the opaque area (221) comprises first and second spaced opaque sub-areas (2211) and (2212); the first transparent area (222) comprises first and second spaced transparent sub-areas (2221) and (2222), the first opaque sub-area (2211) is arranged around the first transparent sub-area (2221), and the second opaque sub-area (2212) is arranged around the second transparent sub-area (2222); The number of the supporting parts (230) is at least two, which are a first supporting part (231) and a second supporting part (232), the first supporting part (231) is oppositely arranged with the first opaque sub-area (2211), and the through hole (2303) of the first supporting part (231) is oppositely arranged with the first light transmission hole (211a); the second supporting part (232) is oppositely arranged with the second opaque sub-area (2212), and the through hole (2303) of the second supporting part (232) is oppositely arranged with the second light transmission hole (211b).
8. The camera trim component of claim 7, wherein, The ventilation channel (320) comprises a main channel (321), a communication hole (322) and a ventilation hole (323); the second surface (2302) of the first supporting part (231) is provided with a strip-shaped slot (2304) having a first port (2304a) and a second port (2304b), the first port (2304a) penetrates through the edge of the first supporting part (231) and is in communication with the mounting cavity (310), the second adhesive layer (250) corresponding to the first supporting part (231) is provided with the communication hole (322) and forms the main channel (321) with the strip-shaped slot (2304), the decorative part (210) is provided with the ventilation hole (323) penetrating through the bottom wall of the groove (213), the ventilation hole (323) is in communication with the external environment of the camera decoration assembly (200), and the ventilation hole (323) is in communication with the second port (2304b) through the communication hole (322).
9. An electronic device, comprising: The camera decoration assembly (200) comprises a shell (100) and any one of claims 1 to 8, the shell (100) is provided with a light passing opening (101), the decorative part (210) is arranged in the shell (100), the light passing hole (211) is arranged opposite to the light passing opening (101), and one end of the ventilation channel (320) is in communication with the inner cavity of the shell (100).
Citation Information
Patent Citations
Camera component and mobile terminal
CN107360353A
Camera shooting decoration assembly, terminal equipment, assembling jig and testing jig
CN116582728A