Camera decoration member, camera decoration assembly and electronic device

By introducing limiting protrusions and elastic elements into the camera decorative parts, the decorative ring can be detachably connected, solving the problem of the decorative parts being unable to be removed, and improving the user experience and the convenience of equipment maintenance.

WO2026016916A1PCT designated stage Publication Date: 2026-01-22HUAWEI TECH CO LTD
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Patent Information

Application Number
PCT/CN2025/107014
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-07-15
Filing Date
2025-07-04
Publication Date
2026-01-22

AI Technical Summary

Technical Problem

The camera trim in existing electronic devices cannot be disassembled or replaced, which makes repair and cleaning inconvenient and increases maintenance costs.

Method used

A detachable camera decorative piece was designed, which allows for switching between locked and unlocked states by setting a limiting protrusion and an elastic element between the decorative ring and the base, allowing the decorative ring to be detachably connected to the base.

Benefits of technology

The decorative ring can be detached, which improves the user experience, facilitates maintenance and cleaning, reduces maintenance costs, and improves the stability and structural strength of the decorative parts.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN2025107014_22012026_PF_FP_ABST
    Figure CN2025107014_22012026_PF_FP_ABST
Patent Text Reader

Abstract

Provided in the present application are a camera decoration member, a camera decoration assembly and an electronic device. The camera decoration member (500) comprises a base (10), a decorative ring (20) and an elastic member (30). The decorative ring (20) is detachably connected to the base (10), and a first limiting protrusion (23) is provided on the inner peripheral side surface of the decorative ring (20). A fixing portion (31) of the elastic member (30) is fixed to the outer peripheral side surface of the base (10), and at least part of a limiting portion (32) of the elastic member is arranged opposite and spaced apart from the outer peripheral side surface of the base (10). When the camera decorative member (500) is in a locked state, the first limiting protrusion (23) is located on the side of the limiting portion (32) of the elastic member (30) away from the fixing portion (31), and the first limiting protrusion (23) cooperates with the limiting portion (32) to limit the rotation of the decorative ring (20) relative to the base (10) in a first rotation direction (a). When the camera decoration member (500) is in an unlocked state, the first limiting protrusion (23) is located on the side of the limiting portion (32) of the elastic member (30) close to the fixing portion (31), and the limiting portion (32) of the elastic member (30) can deform in the radial direction of the base (10) to enable the first limiting protrusion (23) to pass over the limiting portion (32). In the present application, the decorative ring is detachably connected to the base, making it convenient for a user to perform maintenance, cleaning, and other operations.
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Description

Camera decorative parts, camera decorative components and electronic devices

[0001] This application claims priority to Chinese Patent Application No. 202410949349.3, filed on July 15, 2024, entitled "Camera Decorative Part, Camera Decorative Assembly and Electronic Device", the entire contents of which are incorporated herein by reference. Technical Field

[0002] This application relates to the field of electronic devices, and in particular to a camera decorative piece, camera decorative assembly, and electronic device. Background Technology

[0003] Currently, most camera decorative parts in electronic devices use a fixed connection method, making it impossible to disassemble or replace them. This results in camera decorative parts being inconvenient to repair and clean, and having high maintenance costs. Summary of the Invention

[0004] This application provides a camera decorative piece, a camera decorative assembly, and an electronic device, aiming to provide a detachable camera decorative piece, including a camera decorative assembly of the camera decorative piece and an electronic device including the camera decorative assembly.

[0005] In a first aspect, a camera decorative component is provided. The camera decorative component includes a base; a decorative ring surrounding the base, the decorative ring being detachably connected to the base, the inner circumferential side of the decorative ring having a first limiting protrusion, the first limiting protrusion being opposite to and spaced apart from the outer circumferential side of the base; and an elastic component including a connecting fixing portion and a limiting portion, the fixing portion being fixed to the outer circumferential side of the base, and at least a portion of the limiting portion being opposite to and spaced apart from the outer circumferential side of the base; wherein the camera decorative component has a locked state and an unlocked state; when the camera decorative component is in the locked state, the first limiting protrusion is located on the side of the limiting portion of the elastic component away from the fixing portion, the first limiting protrusion cooperating with the limiting portion to restrict the decorative ring from rotating relative to the base in a first rotational direction; when the camera decorative component is in the unlocked state, the first limiting protrusion is located on the side of the limiting portion of the elastic component closer to the fixing portion; the limiting portion of the elastic component is deformable along the radial direction of the base, so that the first limiting protrusion passes over the limiting portion.

[0006] Understandably, in this embodiment, the fixing part of the elastic element is fixed to the outer peripheral side of the base, the limiting part is spaced apart from the outer peripheral side of the base, and a first limiting protrusion is provided on the inner peripheral side of the decorative ring. When the camera decorative piece is in the locked state, the first limiting protrusion can cooperate with the limiting part of the elastic element to restrict the decorative ring from rotating relative to the base in the first rotation direction. The limiting part of the elastic element can move radially along the base, allowing the camera decorative piece to switch from a locked state to an unlocked state. In this way, the decorative ring can be detachably connected to the base, allowing users to disassemble the decorative ring according to their needs, resulting in a better user experience.

[0007] In one possible implementation, during the transition from a locked to an unlocked state for the camera decorative element, the limiting portion of the elastic element deforms radially along the base under a first external force, and the decorative ring rotates relative to the base in a first rotational direction under a second external force, with the first limiting protrusion passing over the limiting portion of the elastic element. During the transition from an unlocked to a locked state for the camera decorative element, the decorative ring rotates relative to the base in a second rotational direction under a third external force, and the first limiting protrusion presses against the elastic element. The elastic element deforms radially along the base under the pressure of the first limiting protrusion, with the first limiting protrusion passing over the limiting portion. The second rotational direction is opposite to the first rotational direction. This allows the decorative ring to be detachably connected to the base, enabling users to disassemble the decorative ring according to their needs, resulting in a better user experience.

[0008] In one possible implementation, when the camera decorative piece is in the locked state, the first limiting protrusion and the limiting part are positioned opposite each other in the circumferential direction of the base. Thus, when the camera decorative piece is in the locked state, the first limiting protrusion can cooperate with the limiting part to restrict the decorative ring from rotating relative to the base in the first rotational direction.

[0009] In one possible implementation, the distance between the surface of the limiting part facing away from the outer peripheral side of the base and the outer peripheral side of the base is a first distance, and the distance between the first limiting protrusion and the outer peripheral side of the base is a second distance. When the camera decorative piece is in the locked state, the first distance is greater than the second distance.

[0010] It is understood that when the camera decorative piece in this embodiment is in the locked state, the first distance can be greater than the second distance. Thus, when the user needs to remove the decorative ring from the base, a first external force must first be applied to the limiting portion of the elastic element, causing it to deform along the radial direction of the base, making the first distance less than the second distance, so that the first limiting protrusion and the limiting portion of the elastic element are offset in the circumferential direction of the base. At this time, the decorative ring can rotate relative to the base in the first rotational direction, causing the camera decorative piece to switch from the locked state to the unlocked state, allowing the user to remove the decorative ring from the base. In this way, even if the user accidentally operates the decorative ring, applying force to it and causing it to tend to rotate relative to the base in the first rotational direction, the first limiting protrusion can still remain abutting against the limiting portion of the elastic element, preventing the first limiting protrusion from crossing the limiting portion of the elastic element, thereby limiting the rotation of the first limiting protrusion relative to the base in the first rotational direction, i.e., limiting the rotation of the decorative ring relative to the base in the first rotational direction, resulting in better stability of the camera decorative piece in the locked state.

[0011] In one possible implementation, the first limiting protrusion has a first surface. When the camera decorative piece is in a locked state, the first surface is disposed toward the limiting part, and the angle between the first surface and the length extension direction of the elastic member is less than or equal to 90°.

[0012] In this way, even if the user accidentally applies force to the decorative ring, causing it to tend to rotate relative to the base in the first rotation direction, the first surface of the first limiting protrusion can still abut against the limiting portion 32 of the elastic member, preventing the first limiting protrusion from exceeding the limiting portion of the elastic member, thereby limiting the rotation of the first limiting protrusion relative to the base in the first rotation direction, that is, limiting the rotation of the decorative ring relative to the base in the first rotation direction. In other words, by setting the angle between the first surface of the first limiting protrusion and the elastic member in this embodiment, the first surface can also cooperate with the limiting portion of the elastic member to form a foolproof design. Even if the user accidentally applies a large force to the decorative ring, the first limiting protrusion of the decorative ring will not exceed the limiting portion of the elastic member, causing the decorative ring to continue rotating relative to the base in the first rotation direction, resulting in the camera decorative piece switching from the locked state to the unlocked state. The stability of the camera decorative piece in maintaining the locked state is good.

[0013] In one possible implementation, the base has a first mounting groove with an opening formed on the outer peripheral side of the base. The first mounting groove includes a bottom surface facing the opening. At least a portion of an elastic member is located within the first mounting groove. The fixing portion of the elastic member is fixed to the bottom surface of the groove, and the limiting portion is opposite to and spaced apart from the bottom surface of the groove. At least a portion of the first limiting protrusion is located within the first mounting groove. In this way, the elastic member can utilize the radial space of the base, achieving space reuse and facilitating the miniaturization of the camera decorative component.

[0014] In one possible implementation, the base includes a top surface and a bottom surface disposed opposite to each other along the thickness direction of the camera decorative piece. A first mounting groove is spaced apart from the top and bottom surfaces. The first mounting groove includes a first groove side surface and a second groove side surface disposed opposite to each other, with the first groove side surface being closer to the top surface than the second groove side surface. When the camera decorative piece is in a locked state, at least a portion of the first limiting protrusion is located between the first groove side surface and the second groove side surface. The first limiting protrusion cooperates with the first groove side surface to restrict the movement of the first limiting protrusion relative to the base along a first direction. The first direction is the direction from the bottom surface to the top surface, and is parallel to the thickness direction of the camera decorative piece. Thus, when the camera decorative piece is in a locked state, the first limiting protrusion can also cooperate with the first mounting groove to restrict the movement of the decorative ring relative to the base along the first direction.

[0015] In one possible implementation, the base also has a first outlet that penetrates the top surface and connects to the first mounting groove. The first outlet is located on the side of the limiting portion of the elastic member near the fixing portion. When the camera decorative piece is in the unlocked state, the first limiting protrusion is exposed relative to the first outlet, and the first limiting protrusion can pass through the first outlet in a first direction to separate the decorative ring from the base. Thus, when the camera decorative piece is in the unlocked state, by exposing the first limiting protrusion relative to the first outlet, the decorative ring can be moved relative to the base in the first direction to remove it from the base. This operation is relatively simple and provides a better user experience.

[0016] In one possible implementation, the base also has a second mounting groove, the opening of which is formed on the outer peripheral side of the base. The inner peripheral side of the decorative ring also has a second limiting protrusion, which is spaced apart from the first limiting protrusion. During the process of the camera decorative piece switching from a locked state to an unlocked state, the second limiting protrusion slides out of the second mounting groove. During the process of the camera decorative piece switching from an unlocked state to a locked state, the second limiting protrusion slides into the second mounting groove. When the camera decorative piece is in the locked state, the second limiting protrusion cooperates with the second mounting groove to restrict the decorative ring from rotating relative to the base in a second rotation direction.

[0017] It is understood that the inner circumferential side of the decorative ring in this embodiment is also provided with a second limiting protrusion, and the protrusion of the base is also provided with a second mounting groove. The second mounting groove can cooperate with the second limiting protrusion to restrict the decorative ring from rotating relative to the base in a second rotation direction. In this way, when the camera decoration is in the locked state, the cooperation between the second limiting protrusion and the second mounting groove, as well as the cooperation between the first limiting protrusion and the elastic element, can prevent the decorative ring from wobbling relative to the base in a plane perpendicular to the thickness direction of the camera decoration, thereby preventing the decorative ring and the base from colliding due to wobbling, generating noise, and affecting the user experience.

[0018] Furthermore, in this embodiment, when the camera decorative piece switches between a locked state and an unlocked state, the second limiting protrusion can slide into or out of the second mounting groove. The second limiting protrusion does not undergo elastic deformation and can be a rigid component. Thus, the overall structure of both the decorative ring and the base can be rigid, resulting in strong structural strength and reduced susceptibility to damage, which helps extend the service life of the camera decorative piece.

[0019] In one possible implementation, the base includes a top surface and a bottom surface disposed opposite to each other along the thickness direction of the camera decorative piece. A second mounting groove is spaced apart from the top and bottom surfaces. The second mounting groove includes a third groove side surface and a fourth groove side surface disposed opposite to each other, with the third groove side surface being closer to the top surface than the fourth groove side surface. When the camera decorative piece is in the locked state, at least a portion of the second limiting protrusion is located between the third groove side surface and the fourth groove side surface. The second limiting protrusion cooperates with the third groove side surface to restrict the movement of the second limiting protrusion relative to the base along a first direction. The first direction is the direction from the bottom surface to the top surface, and is parallel to the thickness direction of the camera decorative piece. Thus, when the camera decorative piece is in the locked state, the second limiting protrusion can also cooperate with the second mounting groove to restrict the movement of the decorative ring relative to the base along the first direction.

[0020] In one possible implementation, the base also has a second outlet that penetrates the top surface and connects to a second mounting slot. The second outlet and the second mounting slot are arranged in the circumferential direction of the base. When the camera decorative piece is in the unlocked state, the second limiting protrusion is spaced apart from the second mounting slot and located within the second outlet. The second limiting protrusion can pass through the second outlet along a first direction to separate the decorative ring from the base. Thus, when the camera decorative piece is in the unlocked state, by exposing the second limiting protrusion relative to the second outlet, the decorative ring can be moved relative to the base along the first direction to remove it from the base. This operation is relatively simple and provides a better user experience.

[0021] In one possible implementation, the third groove side intersects with the fourth groove side, and the distance between the third and fourth groove sides gradually increases along the direction towards the second outlet. When the camera decoration is in the locked state, the second limiting protrusion also cooperates with the third groove side to restrict the second limiting protrusion from rotating relative to the base in the second rotation direction. Thus, when the camera decoration is in the locked state, the cooperation between the inclined third groove side and the second limiting protrusion simultaneously restricts the rotation of the decoration ring relative to the base in the second rotation direction and restricts the movement of the decoration ring relative to the base in the first direction, which simplifies the overall structure of the camera decoration and reduces manufacturing costs.

[0022] In one possible implementation, the decorative ring also includes a first clearance groove. The opening of the first clearance groove is formed on the inner circumferential side of the decorative ring. When the camera decorative piece is in the locked state, the first clearance groove is located on the side of the first limiting protrusion near the limiting part, and part of the limiting part is located within the first clearance groove. Thus, by providing the first clearance groove to avoid the limiting part of the elastic element, the elastic element can also utilize the circumferential space of the decorative ring, achieving space reuse, which is beneficial for miniaturizing the camera decorative piece. Simultaneously, the elastic element can have a certain thickness and good structural strength, thereby avoiding problems such as deformation, damage, or breakage of the elastic element due to excessive force exerted by the decorative ring under large external forces caused by a thin elastic element and weak structural strength. This helps extend the service life of the camera decorative piece. In other words, the camera decorative piece in this embodiment can balance the thickness of the elastic element itself with the overall miniaturized design of the camera decorative piece.

[0023] In one possible implementation, the decorative ring also includes a connecting hole that penetrates both the outer and inner circumferential sides of the decorative ring. When the camera decorative component is in the locked state, the connecting hole is located on the side of the first limiting protrusion closest to the limiting portion and is positioned opposite to the limiting portion. This allows the user to apply force to the limiting portion of the elastic element simply by using an external tool through the connecting hole, causing it to deform radially along the base. This facilitates the switching of the camera decorative component from the locked to the unlocked state, simplifying the unlocking operation and providing a better user experience. Furthermore, the decorative ring has a simple structure, is easy to manufacture, and reduces the difficulty of manufacturing and assembly.

[0024] In one possible implementation, the decorative ring includes a top plate and a frame. The top plate is fixedly connected to the periphery of the frame, and the frame surrounds the base and is detachably connected to the base. The top plate and the base are stacked in the thickness direction of the camera decorative element. The base has a first mounting hole, and the top plate has a second mounting hole that communicates with the first mounting hole. The radial dimension of the second mounting hole is smaller than that of the first mounting hole. In this way, the top plate can partially cover the first mounting hole, thereby preventing dust, impurities, etc., from entering the interior of the electronic device and affecting the normal operation of other components inside the electronic device.

[0025] Secondly, a camera decorative assembly is provided. The camera decorative assembly includes a lens barrel, a connector, and the aforementioned camera decorative element. The lens barrel is located inside the base and the decorative ring. A first gap exists between the lens barrel and the base, and a second gap exists between the lens barrel and the decorative ring. The width of the second gap is smaller than the width of the first gap. The connector is ring-shaped, connecting the lens barrel and the base, and covering the first gap. In this way, the connector can isolate the first gap from the light-transmitting hole of the back cover, thereby effectively preventing impurities, dust, moisture, etc., from entering the interior of the electronic device through the first gap and affecting the normal operation of other components inside the electronic device.

[0026] In one possible implementation, the camera decorative assembly also includes a motor connected to the lens barrel. The motor drives the lens barrel to extend or retract relative to the decorative ring and base along the thickness direction of the camera decorative component. The connector is made of an elastic material and deforms during the extension or retraction of the lens barrel along the thickness direction of the camera decorative component. This allows the camera decorative assembly to be applied to camera modules with lifting capabilities. The decorative ring, on the one hand, conceals the gap between the lens barrel and the base, improving the overall aesthetic appeal of the electronic device; on the other hand, the decorative ring is detachably connected to the base, facilitating user removal for inspection, repair, and cleaning of internal components (such as the camera module), thus enhancing the user experience.

[0027] Thirdly, a camera decorative assembly is provided. The camera decorative assembly includes a base having a first mounting hole; a lens barrel located within the first mounting hole, with a first gap between the lens barrel and the base; a ring-shaped connector connecting the base and the lens barrel, the connector covering the first gap; and a decorative ring including a top plate and a frame portion, the top plate being fixedly connected to the periphery of the frame portion, the frame portion surrounding the base and detachably connected to the base, the top plate being located on the side of the base facing away from the connector, the top plate having a second mounting hole communicating with the first mounting hole, a second gap between the lens barrel and the top plate, the width of the second gap being smaller than the width of the first gap.

[0028] In this way, the connector can isolate the first gap from the light-transmitting hole of the back cover, effectively preventing impurities, dust, moisture, etc. from entering the interior of the electronic device through the first gap and affecting the normal operation of other components inside the electronic device. The decorative ring can cover the gap between the lens barrel and the base, improving the overall appearance and refinement of the electronic device. On the other hand, the decorative ring is detachably connected to the base, making it convenient for users to remove the decorative ring to inspect, repair, and clean the internal components of the electronic device (such as the camera module), thus improving the user experience.

[0029] In one possible implementation, the camera decorative assembly also includes a motor connected to the lens barrel. The motor drives the lens barrel to extend or retract relative to the decorative ring and base along the thickness direction of the camera decorative component. The connector is made of an elastic material and deforms during the extension or retraction of the lens barrel along the thickness direction of the camera decorative component. This allows the camera decorative assembly to be applied to camera modules with lifting capabilities. The decorative ring, on the one hand, conceals the gap between the lens barrel and the base, improving the overall aesthetic appeal of the electronic device; on the other hand, the decorative ring is detachably connected to the base, facilitating user removal for inspection, repair, and cleaning of internal components (such as the camera module), thus enhancing the user experience.

[0030] In one possible implementation, the decorative ring further includes a first limiting protrusion, which is fixed to the inner peripheral side of the frame and is spaced apart from the outer peripheral side of the base. The camera decorative assembly also includes an elastic element, which includes a fixing part and a limiting part. The fixing part is fixed to the outer peripheral side of the base, and the limiting part is spaced apart from the outer peripheral side of the base. The camera decorative assembly has a locked state and an unlocked state. When the camera decorative assembly is in the locked state, the first limiting protrusion is located on the side of the limiting part of the elastic element away from the fixing part. The first limiting protrusion cooperates with the limiting part to restrict the decorative ring from rotating relative to the base in a first rotation direction. When the camera decorative assembly is in the unlocked state, the first limiting protrusion is located on the side of the limiting part of the elastic element closer to the fixing part. The limiting part of the elastic element can deform along the radial direction of the base so that the first limiting protrusion passes over the limiting part.

[0031] Understandably, in this embodiment, the fixing part of the elastic element is fixed to the outer peripheral side of the base, the limiting part is spaced apart from the outer peripheral side of the base, and a first limiting protrusion is provided on the inner peripheral side of the decorative ring. When the camera decorative piece is in the locked state, the first limiting protrusion can cooperate with the limiting part of the elastic element to restrict the decorative ring from rotating relative to the base in the first rotation direction. The limiting part of the elastic element can move radially along the base, allowing the camera decorative piece to switch from a locked state to an unlocked state. In this way, the decorative ring can be detachably connected to the base, allowing users to disassemble the decorative ring according to their needs, resulting in a better user experience.

[0032] In one possible implementation, during the transition from a locked to an unlocked state for the camera decorative element, the limiting portion of the elastic element deforms radially along the base under a first external force, and the decorative ring rotates relative to the base in a first rotational direction under a second external force, with the first limiting protrusion passing over the limiting portion of the elastic element. During the transition from an unlocked to a locked state for the camera decorative element, the decorative ring rotates relative to the base in a second rotational direction under a third external force, and the first limiting protrusion presses against the elastic element. The elastic element deforms radially along the base under the pressure of the first limiting protrusion, with the first limiting protrusion passing over the limiting portion. The second rotational direction is opposite to the first rotational direction. This allows the decorative ring to be detachably connected to the base, enabling users to disassemble the decorative ring according to their needs, resulting in a better user experience.

[0033] In one possible implementation, when the camera decorative component is in the locked state, the first limiting protrusion and the limiting part are disposed opposite each other in the circumferential direction of the base. Thus, when the camera decorative component is in the locked state, the first limiting protrusion can cooperate with the limiting part to restrict the decorative ring from rotating relative to the base in the first rotational direction.

[0034] In one possible implementation, the first limiting protrusion has a first surface. When the camera decorative assembly is in the locked state, the first surface faces the limiting portion, and the angle between the first surface and the length extension direction of the elastic member is less than or equal to 90°. Thus, even if the user accidentally operates the decorative ring, applying force to it and causing it to tend to rotate relative to the base in the first rotation direction, the first surface of the first limiting protrusion can still remain in contact with the limiting portion 32 of the elastic member, preventing the first limiting protrusion from crossing the limiting portion of the elastic member, thereby limiting the rotation of the first limiting protrusion relative to the base in the first rotation direction, that is, limiting the rotation of the decorative ring relative to the base in the first rotation direction. In other words, by setting the angle between the first surface of the first limiting protrusion and the elastic member in this embodiment, the first surface can also cooperate with the limiting part of the elastic member to form a foolproof design. Even if the user accidentally applies a large force to the decorative ring, the first limiting protrusion of the decorative ring will not exceed the limiting part of the elastic member, so that the decorative ring can continue to rotate relative to the base in the first rotation direction, causing the camera decorative piece to switch from the locked state to the unlocked state. The stability of the camera decorative piece in maintaining the locked state is good.

[0035] In one possible implementation, the distance between the surface of the limiting part facing away from the outer peripheral side of the base and the outer peripheral side of the base is a first distance, and the distance between the first limiting protrusion and the outer peripheral side of the base is a second distance. When the camera decorative component is in the locked state, the first distance is greater than the second distance.

[0036] It is understood that when the camera decorative piece in this embodiment is in the locked state, the first distance can be greater than the second distance. Thus, when the user needs to remove the decorative ring from the base, a first external force must first be applied to the limiting portion of the elastic element, causing it to deform along the radial direction of the base, making the first distance less than the second distance, so that the first limiting protrusion and the limiting portion of the elastic element are offset in the circumferential direction of the base. At this time, the decorative ring can rotate relative to the base in the first rotational direction, causing the camera decorative piece to switch from the locked state to the unlocked state, allowing the user to remove the decorative ring from the base. In this way, even if the user accidentally operates the decorative ring, applying force to it and causing it to tend to rotate relative to the base in the first rotational direction, the first limiting protrusion can still remain abutting against the limiting portion of the elastic element, preventing the first limiting protrusion from crossing the limiting portion of the elastic element, thereby limiting the rotation of the first limiting protrusion relative to the base in the first rotational direction, i.e., limiting the rotation of the decorative ring relative to the base in the first rotational direction, resulting in better stability of the camera decorative piece in the locked state.

[0037] In one possible implementation, the base has a first mounting groove with an opening formed on the outer peripheral side of the base. The first mounting groove includes a bottom surface facing the opening. At least a portion of an elastic member is located within the first mounting groove. The fixing portion of the elastic member is fixed to the bottom surface of the groove, and the limiting portion is opposite to and spaced apart from the bottom surface of the groove. At least a portion of the first limiting protrusion is located within the first mounting groove. In this way, the elastic member can utilize the radial space of the base, achieving space reuse and facilitating the miniaturization of the camera decorative component.

[0038] In one possible implementation, the base includes a top surface and a bottom surface disposed opposite to each other along the thickness direction of the camera decorative component. A first mounting groove is spaced apart from the top and bottom surfaces. The first mounting groove includes a first groove side surface and a second groove side surface disposed opposite to each other, with the first groove side surface being closer to the top surface than the second groove side surface. When the camera decorative component is in a locked state, at least a portion of the first limiting protrusion is located between the first groove side surface and the second groove side surface. The first limiting protrusion cooperates with the first groove side surface to restrict the movement of the first limiting protrusion relative to the base along a first direction. The first direction is the direction from the bottom surface to the top surface, and is parallel to the thickness direction of the camera decorative component. Thus, when the camera decorative component is in a locked state, the first limiting protrusion can also cooperate with the first mounting groove to restrict the movement of the decorative ring relative to the base along the first direction.

[0039] In one possible implementation, the base also has a first outlet that penetrates the top surface and connects to the first mounting groove. The first outlet is located on the side of the limiting portion of the elastic member near the fixing portion. When the camera decorative component is in the unlocked state, the first limiting protrusion is exposed relative to the first outlet, and the first limiting protrusion can pass through the first outlet in a first direction to separate the decorative ring from the base. Thus, when the camera decorative component is in the unlocked state, by exposing the first limiting protrusion relative to the first outlet, the decorative ring can be moved relative to the base in the first direction to remove it from the base. This operation is relatively simple and provides a better user experience.

[0040] In one possible implementation, the base also has a second mounting groove, the opening of which is formed on the outer peripheral side of the base. The inner peripheral side of the decorative ring also has a second limiting protrusion, which is spaced apart from the first limiting protrusion. During the process of the camera decorative component switching from a locked state to an unlocked state, the second limiting protrusion slides out of the second mounting groove. During the process of the camera decorative component switching from an unlocked state to a locked state, the second limiting protrusion slides into the second mounting groove. When the camera decorative component is in the locked state, the second limiting protrusion cooperates with the second mounting groove to restrict the decorative ring from rotating relative to the base in a second rotation direction.

[0041] It is understood that the inner circumferential side of the decorative ring in this embodiment is also provided with a second limiting protrusion, and the protrusion of the base is also provided with a second mounting groove. The second mounting groove can cooperate with the second limiting protrusion to restrict the decorative ring from rotating relative to the base in a second rotation direction. In this way, when the camera decoration is in the locked state, the cooperation between the second limiting protrusion and the second mounting groove, as well as the cooperation between the first limiting protrusion and the elastic element, can prevent the decorative ring from wobbling relative to the base in a plane perpendicular to the thickness direction of the camera decoration, thereby preventing the decorative ring and the base from colliding due to wobbling, generating noise, and affecting the user experience.

[0042] Furthermore, in this embodiment, when the camera decorative piece switches between a locked state and an unlocked state, the second limiting protrusion can slide into or out of the second mounting groove. The second limiting protrusion does not undergo elastic deformation and can be a rigid component. Thus, the overall structure of both the decorative ring and the base can be rigid, resulting in strong structural strength and reduced susceptibility to damage, which helps extend the service life of the camera decorative piece.

[0043] In one possible implementation, the base includes a top surface and a bottom surface disposed opposite to each other along the thickness direction of the camera decorative component. A second mounting groove is spaced apart from the top and bottom surfaces. The second mounting groove includes a third groove side surface and a fourth groove side surface disposed opposite to each other, with the third groove side surface being closer to the top surface than the fourth groove side surface. When the camera decorative component is in a locked state, at least a portion of the second limiting protrusion is located between the third groove side surface and the fourth groove side surface. The second limiting protrusion cooperates with the third groove side surface to restrict the movement of the second limiting protrusion relative to the base along a first direction. The first direction is the direction from the bottom surface to the top surface, and is parallel to the thickness direction of the camera decorative component. Thus, when the camera decorative component is in a locked state, the second limiting protrusion can also cooperate with the second mounting groove to restrict the movement of the decorative ring relative to the base along the first direction.

[0044] In one possible implementation, the base also has a second outlet that penetrates the top surface and connects to a second mounting slot. The second outlet and the second mounting slot are arranged in the circumferential direction of the base. When the camera decorative component is in the unlocked state, the second limiting protrusion is spaced apart from the second mounting slot and located within the second outlet. The second limiting protrusion can pass through the second outlet along a first direction to separate the decorative ring from the base. Thus, when the camera decorative component is in the unlocked state, by exposing the second limiting protrusion relative to the second outlet, the decorative ring can be moved relative to the base along the first direction to remove it from the base. This operation is relatively simple and provides a better user experience.

[0045] In one possible implementation, the third groove side intersects with the fourth groove side, and the distance between the third and fourth groove sides gradually increases along the direction towards the second outlet. When the camera decoration component is in the locked state, the second limiting protrusion also cooperates with the third groove side to restrict the second limiting protrusion from rotating relative to the base in the second rotation direction. Thus, when the camera decoration component is in the locked state, the cooperation between the inclined third groove side and the second limiting protrusion simultaneously restricts the rotation of the decoration ring relative to the base in the second rotation direction and restricts the movement of the decoration ring relative to the base in the first direction, which helps to simplify the overall structure of the camera decoration component and reduce manufacturing costs.

[0046] In one possible implementation, the decorative ring also includes a first clearance groove. The opening of the first clearance groove is formed on the inner circumferential side of the decorative ring. When the camera decorative component is in the locked state, the first clearance groove is located on the side of the first limiting protrusion near the limiting part, and part of the limiting part is located within the first clearance groove. Thus, by providing the first clearance groove to avoid the limiting part of the elastic element, the elastic element can also utilize the circumferential space of the decorative ring, achieving space reuse, which is beneficial for miniaturizing the camera decorative component. Simultaneously, the elastic element can have a certain thickness and good structural strength, thereby avoiding problems such as deformation, damage, or breakage of the elastic element due to excessive force exerted by the decorative ring under large external forces caused by a thin elastic element and weak structural strength. This helps extend the service life of the camera decorative component. In other words, the camera decorative component in this embodiment can balance the thickness of the elastic element itself with the overall miniaturized design of the camera decorative component.

[0047] In one possible implementation, the decorative ring also includes a connecting hole that penetrates both the outer and inner circumferential sides of the decorative ring. When the camera decorative component is in the locked state, the connecting hole is located on the side of the first limiting protrusion closest to the limiting portion and is positioned opposite to the limiting portion. This allows the user to apply force to the limiting portion of the elastic element simply by using an external tool through the connecting hole, causing it to deform radially along the base. This facilitates the switching of the camera decorative component from the locked to the unlocked state, simplifying the unlocking operation and providing a better user experience. Furthermore, the decorative ring has a simple structure, is easy to manufacture, and reduces the difficulty of manufacturing and assembly.

[0048] Fourthly, an electronic device is provided. The electronic device includes a housing, a camera module, and the aforementioned camera decorative component. The camera module is installed within the interior space of the housing. The housing has a light-transmitting hole, and the light-entry hole of the camera module faces the light-transmitting hole. The camera decorative component is installed within the light-transmitting hole. It is understood that the decorative ring of the electronic device in this embodiment can be detachably connected to the base, allowing users to remove the decorative ring according to their own usage needs, resulting in a better user experience.

[0049] In one possible implementation, the lens of the camera module can extend or retract relative to the light-transmitting hole. This allows the camera decorative component to be applied to camera modules with a lifting function. The decorative ring serves two purposes: firstly, it conceals the gap between the lens barrel and the base, enhancing the overall aesthetic appeal of the electronic device; secondly, the decorative ring is detachably connected to the base, facilitating user access to inspect, repair, and clean internal components (such as the camera module), thus improving the user experience. Attached Figure Description

[0050] To more clearly illustrate the technical solutions in the embodiments of this application or the background art, the accompanying drawings used in the embodiments of this application or the background art will be described below.

[0051] Figure 1 is a schematic diagram of the structure of the electronic device provided in some embodiments of this application;

[0052] Figure 2 is a structural schematic diagram of the electronic device shown in Figure 1 from another perspective;

[0053] Figure 3 is an exploded structural diagram of the electronic device shown in Figure 1 in some embodiments;

[0054] Figure 4 is a schematic diagram of the structure of the back cover and camera decoration assembly of the electronic device shown in Figure 3 in some embodiments;

[0055] Figure 5 is a schematic diagram of the assembly structure of the back cover and camera decorative assembly shown in Figure 4 in some embodiments;

[0056] Figure 6 is a schematic cross-sectional view of one embodiment of the structure shown in Figure 2 cut along point AA;

[0057] Figure 7 is a structural schematic diagram of the camera decorative component shown in Figure 4 in some embodiments;

[0058] Figure 8 is an exploded structural diagram of the camera decorative component shown in Figure 7 in some embodiments;

[0059] Figure 9 is a structural schematic diagram of the base shown in Figure 8 in some embodiments;

[0060] Figure 10 is a partial cross-sectional structural diagram of one embodiment of the camera decorative component shown in Figure 7, cut along BB.

[0061] Figure 11 is a partial cross-sectional structural diagram of one embodiment of the camera decorative component shown in Figure 7, cut along CC.

[0062] Figure 12 is a structural schematic diagram of the elastic element shown in Figure 8 in some embodiments;

[0063] Figure 13 is a schematic diagram of the assembly structure of the base and elastic element shown in Figure 8 in some embodiments;

[0064] Figure 14 is a partial cross-sectional structural diagram of one embodiment of the camera decorative component shown in Figure 7, cut along CC.

[0065] Figure 15 is a structural schematic diagram of the decorative ring shown in Figure 8 in some embodiments from another perspective;

[0066] Figure 16 is a partial cross-sectional structural diagram of one embodiment of the camera decorative component shown in Figure 7, cut along CC.

[0067] Figure 17 is a schematic diagram of the assembly structure of the base, decorative ring and elastic element of the camera decorative component shown in Figure 8 in some embodiments.

[0068] Figure 18 is a partial cross-sectional structural diagram of one embodiment of the camera decorative component shown in Figure 7, cut along CC.

[0069] Figure 19 is a partial cross-sectional structural diagram of one embodiment of the camera decorative component shown in Figure 7, cut along DD;

[0070] Figure 20 is a partial cross-sectional structural diagram of one embodiment of the camera decorative component shown in Figure 7, cut along EE;

[0071] Figure 21 is a schematic diagram of the structure shown in Figure 18 when the camera decorative piece is in the unlocked state;

[0072] Figure 22 is a schematic diagram of the structure shown in Figure 19 when the camera decorative piece is in the unlocked state;

[0073] Figure 23 is a schematic diagram of the structure shown in Figure 20 when the camera decorative piece is in the unlocked state;

[0074] Figure 24 is a schematic diagram of one of the intermediate states of the structure shown in Figure 18 during the switching process from the locked state to the unlocked state in some embodiments.

[0075] Figure 25 is a schematic diagram of the lens barrel of the camera decorative assembly shown in Figure 8 in some embodiments;

[0076] Figure 26 is a schematic diagram of the assembly structure of the lens barrel and protective cover shown in Figure 8 in some embodiments;

[0077] Figure 27 is a structural schematic diagram of the connector of the camera decorative assembly shown in Figure 8 in some embodiments;

[0078] Figure 28 is a schematic cross-sectional view of one embodiment of the camera decorative component shown in Figure 7, cut along BB. Detailed Implementation

[0079] The embodiments of this application are described below with reference to the accompanying drawings.

[0080] In the description of the embodiments of this application, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation" and "connection" should be interpreted broadly. For example, "connection" can be a detachable connection or a non-detachable connection; it can be a direct connection or an indirect connection through an intermediate medium. "Fixed connection" refers to a connection where the relative positional relationship remains unchanged after connection. The directional terms mentioned in the embodiments of this application, such as "upper," "lower," "inner," and "outer," are only for reference to the directions in the accompanying drawings. Therefore, the directional terms used are for better and clearer explanation and understanding of the embodiments of this application, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this application. "Multiple" refers to at least two.

[0081] In the embodiments of this application, the terms "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined with "first," "second," "third," and "fourth" may explicitly or implicitly include one or more of that feature.

[0082] In the embodiments of this application, "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent three cases: A existing alone, A and B existing simultaneously, and B existing alone. Additionally, the character " / " in this document generally indicates that the preceding and following related objects have an "or" relationship.

[0083] References to "one embodiment" or "some embodiments" as used in this specification mean that one or more embodiments of this application include a specific feature, structure, or characteristic described in connection with that embodiment. Therefore, phrases such as "in one embodiment," "in some embodiments," "in other embodiments," and "in another embodiment" appearing in different parts of this specification do not necessarily refer to the same embodiment, but rather mean "one or more, but not all, embodiments," unless otherwise specifically emphasized. The terms "comprising," "including," "having," and variations thereof mean "including but not limited to," unless otherwise specifically emphasized.

[0084] It is understood that the specific embodiments described herein are merely for explaining the relevant invention and not for limiting the invention. It should also be noted that, for ease of description, only the parts relevant to the invention are shown in the accompanying drawings.

[0085] Figure 1 is a schematic diagram of the electronic device 1000 provided in some embodiments of this application. Figure 2 is a schematic diagram of the electronic device 1000 shown in Figure 1 from another perspective. Figure 3 is an exploded structural diagram of the electronic device 1000 shown in Figure 1 in some embodiments.

[0086] As shown in Figures 1 to 3, the electronic device 1000 can be a mobile phone, tablet computer, laptop computer, personal digital assistant (PDA), camera, personal computer, laptop computer, wearable device, or other device with camera functionality. Figure 1 illustrates the electronic device 1000 using a mobile phone as an example. It should be noted that Figures 1 to 3 and the related accompanying drawings only schematically show some components of the electronic device 1000; the actual shape, size, location, and structure of these components are not limited by Figure 1 and the accompanying drawings.

[0087] For example, electronic device 1000 may include a screen 100 and a housing 200. The screen 100 may be mounted on the housing 200. The screen 100 may be used to display images, text, etc. The housing 200 may include a mid-frame 201 and a back cover 202. The back cover 202 may be located on the side of the mid-frame 201 facing away from the screen 100 and is fixedly connected to the mid-frame 201. In this case, the back cover 202 and the mid-frame 201 may enclose the internal space of electronic device 1000. The internal space of electronic device 1000 may be used to house internal components of electronic device 1000, such as batteries, speakers, microphones, and earpieces.

[0088] For example, the electronic device 1000 may further include a camera decorative assembly 300 and a camera module 400. The back cover 202 may have a light-transmitting hole 203. The camera module 400 may be mounted on the side of the mid-frame 201 facing away from the screen 100. The light-entry hole of the camera module 400 may be exposed relative to the light-transmitting hole 203 of the back cover 202. The camera decorative assembly 300 may be fixed to the back cover 202. The projection of the camera decorative assembly 300 onto the plane of the back cover 202 may cover the light-transmitting hole 203.

[0089] In other embodiments, when the electronic device 1000 is a device of other types, the electronic device 1000 may not include the screen 100.

[0090] Figure 4 is a structural schematic diagram of the back cover 202 and camera decorative assembly 300 of the electronic device 1000 shown in Figure 3 in some embodiments. Figure 5 is a schematic diagram of the assembly structure of the back cover 202 and camera decorative assembly 300 shown in Figure 4 in some embodiments. Figure 6 is a cross-sectional schematic diagram of one embodiment of the structure shown in Figure 2 cut along point AA.

[0091] As shown in Figures 4 to 6, the camera decorative assembly 300 may include a base 10, a decorative ring 20, and a first limiting structure (not shown). The periphery of the base 10 can be fixed to the light-transmitting hole 203 of the back cover 202, and the middle part of the base 10 can protrude relative to the back cover 202 in a direction away from the screen 100. The decorative ring 20 can be detachably fixed to the protruding part of the base 10 relative to the back cover 202. The first limiting structure can be used to limit the rotation of the decorative ring 20 relative to the base 10 in a first rotation direction a. In this way, by setting the first limiting mechanism, the decorative ring 20 can be detachably connected to the base 10, allowing users to remove and replace the decorative ring 20 according to their own usage needs, thereby improving the aesthetics of the electronic device 1000. At the same time, the detachable connection of the decorative ring 20 to the base 10 also facilitates users to remove the decorative ring 20 to inspect, repair, and clean the internal components of the electronic device 1000 (such as the camera module 400), thereby improving the user experience.

[0092] The following section will describe a camera decorative component 300 in detail with reference to the accompanying drawings.

[0093] Figure 7 is a structural schematic diagram of the camera decorative assembly 300 shown in Figure 4 in some embodiments. Figure 8 is an exploded structural schematic diagram of the camera decorative assembly 300 shown in Figure 7 in some embodiments.

[0094] As shown in Figures 7 and 8, the camera decorative assembly 300 may further include an elastic element 30, a lens barrel 40, a protective cover plate 50, a connector 60, a first adhesive layer 70, and a second adhesive layer 80. The protective cover plate 50 may be a glass cover plate. The protective cover plate 50 allows light to pass through. Both the elastic element 30 and the connector 60 may be made of elastic materials and can deform under external force. The connector 60 may be made of rubber. In other embodiments, the camera decorative assembly 300 may not include one or more of the lens barrel 40, protective cover plate 50, connector 60, first adhesive layer 70, and second adhesive layer 80.

[0095] Figure 9 is a structural schematic diagram of the base 10 shown in Figure 8 in some embodiments. Figure 10 is a partial cross-sectional structural schematic diagram of the camera decorative assembly 300 shown in Figure 7 cut along BB in one embodiment. Figure 11 is a partial cross-sectional structural schematic diagram of the camera decorative assembly 300 shown in Figure 7 cut along CC in one embodiment.

[0096] As shown in Figures 9 to 11, the base 10 may include a base plate 11 and a protrusion 12. Both the base plate 11 and the protrusion 12 may be generally annular. The radial dimension of the protrusion 12 may be smaller than the radial dimension of the base plate 11. Exemplarily, the base plate 11 may include a first surface 111 and a second surface 112 disposed opposite to each other. The protrusion 12 may be stacked and fixed to the first surface 111 of the base plate 11. The base plate 11 may have a first through hole 113. The protrusion 12 may include a third surface 121 facing away from the base plate 11. The protrusion 12 may also have a second through hole 122. The second through hole 122 may connect to the first through hole 113 and penetrate the third surface 121. In this case, the second surface 112 of the base plate 11 may form the bottom surface of the base 10. The third surface 121 of the protrusion 12 may form the top surface of the base 10. The first through hole 113 and the second through hole 122 may together form the first mounting hole 10a of the base 10. It should be noted that although the base 10 is described in this embodiment as divided into two parts (i.e., the base plate 11 and the protrusion 12), it does not affect the fact that the base 10 is an integrally formed structure, that is, the base plate 11 and the protrusion 12 can be integrally formed.

[0097] For example, the protrusion 12 may be provided with a first mounting groove 123. A portion of the outer peripheral side surface 12a of the protrusion 12 may be recessed inward to form the first mounting groove 123, that is, the opening of the first mounting groove 123 may be formed on the outer peripheral side surface 12a of the protrusion 12. The first mounting groove 123 may be spaced apart from the third surface 121. The first mounting groove 123 may include a first end face 1231 and a second end face 1232 spaced apart along the circumferential direction of the protrusion 12. The first mounting groove 123 may also include a groove bottom surface 1233. The groove bottom surface 1233 may face the opening of the first mounting groove 123 and connect between the first end face 1231 and the second end face 1232. The protrusion 12 may also be provided with a mounting protrusion 124. The mounting protrusion 124 may be fixedly connected to the groove bottom surface 1233 of the first mounting groove 123. The mounting protrusion 124 may be positioned closer to the first end face 1231 than the second end face 1232. The first mounting groove 123 may further include a first groove side surface 1234 and a second groove side surface 1235 disposed opposite to each other in the first direction Z1. The first groove side surface 1234 may be disposed away from the base plate 11 relative to the second groove side surface 1235. The first direction Z1 may be parallel to the thickness direction of the camera decorative assembly 300. The first direction Z1 may be the direction from the base plate 11 to the protrusion 12.

[0098] Exemplarily, the protrusion 12 may also be provided with a first outlet 125. The first outlet 125 may penetrate the top surface of the base 10 (i.e., the third surface 121 of the protrusion 12 in this embodiment) and communicate with the first mounting groove 123. The arrangement direction of the first outlet 125 and the first mounting groove 123 may be parallel to the first direction Z1. The first outlet 125 may be disposed closer to the first end face 1231 than the mounting protrusion 124. The dimension of the first outlet 125 in the circumferential direction of the protrusion 12 may be smaller than the dimension of the first mounting groove 123 in the circumferential direction of the protrusion 12.

[0099] As shown in Figures 9 to 11, the protrusion 12 may also be provided with a second mounting groove 126. A portion of the outer peripheral side surface 12a of the protrusion 12 may be recessed inward to form the second mounting groove 126; that is, the opening of the second mounting groove 126 may be formed on the outer peripheral side surface 12a of the protrusion 12. The second mounting groove 126 may be spaced apart from the third surface 121. The second mounting groove 126 may also be spaced apart from the first mounting groove 123 in the circumferential direction of the base 10.

[0100] Exemplarily, the protrusion 12 may also be provided with a second outlet 127. The opening of the second outlet 127 may be formed on the outer peripheral side surface 12a and the third surface 121 of the protrusion 12. The second outlet 127 may be arranged with the second mounting groove 126 along the circumferential direction of the base 10. The second outlet 127 may communicate with the second mounting groove 126. The second mounting groove 126 may include a third end face 1261. The third end face 1261 may be disposed facing the second outlet 127. The size of the opening of the second mounting groove 126 facing the second outlet 127 in the first direction Z1 may be larger than the size of the third end face 1261 in the first direction Z1.

[0101] For example, the second mounting groove 126 may further include a third groove side 1262 and a fourth groove side 1263 disposed opposite to each other in the first direction Z1. The third groove side 1262 may be disposed away from the base plate 11 of the base 10 relative to the fourth groove side 1263.

[0102] Figure 12 is a structural schematic diagram of the elastic element 30 shown in Figure 8 in some embodiments. Figure 13 is a structural schematic diagram of the assembly structure of the base 10 and the elastic element 30 shown in Figure 8 in some embodiments. Figure 14 is a partial cross-sectional structural schematic diagram of the camera decorative assembly 300 shown in Figure 7 cut along CC in one embodiment.

[0103] As shown in Figures 12 to 14, the elastic element 30 can be located within the first mounting groove 123 of the protrusion 12. The elastic element 30 may include a connecting fixing part 31 and a limiting part 32. The fixing part 31 may have a first groove 311. The opening of the first groove 311 may face the bottom surface 1233 of the first mounting groove 123. The first groove 311 can cooperate with the mounting protrusion 124 within the first mounting groove 123 to fix the elastic element 30 within the first mounting groove 123. For example, the size of the first groove 311 may be smaller than the size of the mounting protrusion 124. Thus, the fixing part 31 can be engaged with the mounting protrusion 124 by the elastic deformation of the elastic element 30. In other embodiments, the size of the first groove 311 may be greater than or equal to the size of the mounting protrusion 124. The mounting protrusion 124 can be fixed to the first groove 311 by means of adhesion or other methods. In some other embodiments, the elastic element 30 may also be integrally formed with the base 10. It should be understood that the fixed part 31 and the limiting part 32 of the elastic member 30 are schematically divided by dashed lines in Figure 12. It should be noted that although the elastic member 30 is described in this embodiment as divided into two parts (that is, the fixed part 31 and the limiting part 32), it does not affect the fact that the elastic member 30 is a one-piece molded structure, that is, the fixed part 31 and the limiting part 32 can be integrally molded.

[0104] For example, a portion of the fixing part 31 may protrude relative to the limiting part 32 in a direction opposite to the bottom surface 1233 of the first mounting groove 123, and form a second groove 312 with the limiting part 32. The second groove 312 may communicate with the first outlet 125 of the base 10.

[0105] For example, the projection of the first outlet 125 onto the plane of the protrusion 12 may be offset from the elastic member 30. That is, the projection of the first outlet 125 onto the plane of the protrusion 12 may not overlap with the elastic member 30. The first outlet 125 may be disposed opposite to the second groove side 1235 of the first mounting groove 123. In some embodiments, the projection of the first outlet 125 onto the plane of the protrusion 12 may also overlap with a portion of the elastic member 30.

[0106] For example, the limiting portion 32 may be disposed closer to the first end face 1231 than the fixing portion 31. At least a portion of the limiting portion 32 may be disposed spaced apart from the bottom surface 1233 of the first mounting groove 123. The distance between the surface of the limiting portion 32 facing away from the bottom surface 1233 of the first mounting groove 123 and the bottom surface 1233 may be a first distance D1. The first distance D1 may be the maximum distance between the surface of the limiting portion 32 facing away from the bottom surface 1233 and the bottom surface 1233 in the radial direction along the protrusion 12.

[0107] Figure 15 is a structural schematic diagram of the decorative ring 20 shown in Figure 8 from another perspective in some embodiments. Figure 16 is a partial cross-sectional structural schematic diagram of the camera decorative assembly 300 shown in Figure 7 cut along CC in one embodiment.

[0108] As shown in Figures 15 and 16, the decorative ring 20 may include a top plate 21 and a frame portion 22. Both the top plate 21 and the frame portion 22 may be approximately annular. The top plate 21 may be fixedly connected to the periphery of the frame portion 22. The top plate 21 may have a second mounting hole 211. The frame portion 22 may have a third through hole 221. The second mounting hole 211 may communicate with the third through hole 221. The size of the second mounting hole 211 may be smaller than the size of the third through hole 221. It should be noted that although the decorative ring 20 is described in this embodiment as divided into two parts (i.e., the top plate 21 and the frame portion 22), this does not affect the fact that the decorative ring 20 is an integrally formed structure, that is, the top plate 21 and the frame portion 22 can be integrally formed.

[0109] For example, the decorative ring 20 may be provided with a first limiting protrusion 23. The first limiting protrusion 23 may be fixed to the inner peripheral side surface 22a of the frame portion 22. The decorative ring 20 may also be provided with a first clearance groove 24 and a second clearance groove 25. The openings of the first clearance groove 24 and the second clearance groove 25 may both be formed on the inner peripheral side surface 22a of the frame portion 22. The first clearance groove 24 and the second clearance groove 25 may be spaced apart along the circumferential direction of the decorative ring 20. The first clearance groove 24 and the second clearance groove 25 may be located on opposite sides of the first limiting protrusion 23.

[0110] For example, the decorative ring 20 may also be provided with a connecting hole 26. The connecting hole 26 can penetrate the outer peripheral side 22b and the inner peripheral side 22a of the frame portion 22. The connecting hole 26 can connect to the first clearance groove 24.

[0111] For example, the first limiting protrusion 23 may include a first surface 231, a second surface 232, and a third surface 233 connected in sequence. The first surface 231 may face the first clearance groove 24. The second surface 232 may face the third through hole 221. The third surface 233 may face the second clearance groove 25. The second surface 232 may connect the first surface 231 and the third surface 233.

[0112] As shown in Figures 15 and 16, the decorative ring 20 may also be provided with a second limiting protrusion 27. The second limiting protrusion 27 can be fixed to the inner peripheral side 22a of the frame portion 22 and is spaced apart from the first limiting protrusion 23. The second limiting protrusion 27 may be approximately wedge-shaped.

[0113] Figure 17 is a schematic diagram of the assembly structure of the base 10, decorative ring 20, and elastic element 30 of the camera decorative assembly 300 shown in Figure 8 in some embodiments. Figure 18 is a schematic diagram of a partial cross-sectional structure of the camera decorative assembly 300 shown in Figure 7 cut along CC in one embodiment.

[0114] As shown in Figures 17 and 18, the frame portion 22 of the decorative ring 20 can be fitted around the protrusion 12 of the base 10. The top plate 21 of the decorative ring 20 can be located on the side of the protrusion 12 of the base 10 facing away from the base plate 11. The size of the second mounting hole 211 of the top plate 21 can be smaller than the size of the second through hole 122 of the protrusion 12. That is, the second through hole 122 can completely cover the projection of the second mounting hole 211 onto the plane of the protrusion 12. The first limiting protrusion 23 can be located within the first mounting groove 123 and spaced apart from the bottom surface 1233 of the first mounting groove 123. At this time, the base 10, the decorative ring 20, and the elastic member 30 can together constitute the camera decorative member 500.

[0115] Exemplarily, the first surface 231 of the first limiting protrusion 23 may be disposed toward the first end face 1231 of the first mounting groove 123. The second surface 232 may be disposed toward the bottom surface 1233 of the first mounting groove 123. The third surface 233 may be disposed toward the second end face 1232 of the first mounting groove 123. The distance between the second surface 232 and the bottom surface 1233 of the first mounting groove 123 may be a second distance D2. The second distance D2 may be less than the first distance D1. The second distance D2 may also be greater than or equal to the thickness of the elastic member 30. It should be noted that the second distance D2 may be the distance between the portion of the second surface 232 near the second end face 1232 of the first mounting groove 123 and the bottom surface 1233 of the first mounting groove 123. The thickness direction of the elastic member 30 may be parallel to the plane of the base 10.

[0116] Figure 19 is a partial cross-sectional view of one embodiment of the camera decorative assembly 300 shown in Figure 7, cut along DD. Figure 20 is a partial cross-sectional view of one embodiment of the camera decorative assembly 300 shown in Figure 7, cut along EE.

[0117] As shown in Figures 18 to 20, the camera trim 500 may include a locked state. When the camera trim 500 is in the locked state, the trim ring 20 cannot be detached from the base 10. When the camera trim 500 is in the unlocked state, the trim ring 20 can be detached from the base 10.

[0118] For example, when the camera trim 500 is in the locked state, the elastic member 30 can be in its original state. The first limiting protrusion 23 can be located in a first position. The first limiting protrusion 23 can be located on the side of the limiting portion 32 of the elastic member 30 facing away from the fixing portion 31. The first limiting protrusion 23 can be opposite to and spaced apart from the bottom surface 1233 of the first mounting groove 123. The first surface 231 of the first limiting protrusion 23 can be disposed towards the limiting portion 32 of the elastic member 30. The limiting portion 32 of the elastic member 30 can be disposed opposite to the first surface 231 of the first limiting protrusion 23 in the circumferential direction of the base 10. Part of the limiting portion 32 of the elastic member 30 can be located in the first clearance groove 24 of the decorative ring 20 and opposite to the connecting hole 26.

[0119] The first surface 231 of the first limiting protrusion 23 can form a first angle α with the length extension direction of the elastic member 30. The angle α can be less than or equal to 90°. The first surface 231 of the first limiting protrusion 23 can cooperate with the elastic member 30 to restrict the decorative ring 20 from rotating relative to the base 10 in the first rotation direction a. The first limiting protrusion 23 can be spaced apart from the first outlet 125, that is, the first outlet 125 does not expose the first limiting protrusion 23. Alternatively, the first limiting protrusion 23 can also be partially exposed relative to the first outlet 125. In this case, the first limiting protrusion 23 can also cooperate with the first groove side 1234 and the second groove side 1235 of the first mounting groove 123 (see Figure 9) to restrict the decorative ring 20 from moving relative to the base 10 in the first direction Z1. In this case, the elastic member 30 and the first mounting groove 123 can together form a first limiting structure. The first limiting structure can be used to restrict the decorative ring 20 from rotating relative to the base 10 in a first rotational direction a when the camera decorative component 500 is in a locked state. Exemplarily, the first limiting structure can also be used to restrict the decorative ring 20 from moving relative to the base 10 in a first direction Z1 when the camera decorative component 300 is in a locked state.

[0120] For example, when the camera decorative assembly 300 is in the locked state, the second limiting protrusion 27 can be located in the third position. The second limiting protrusion 27 can be located within the second mounting groove 126. The shape of the second mounting groove 126 can be adapted to the shape of the second limiting protrusion 27. The second limiting protrusion 27 can cooperate with the second mounting groove 126 to restrict the decorative ring 20 from rotating relative to the base 10 in the second rotation direction b. The second rotation direction b can be opposite to the first rotation direction a. The second limiting protrusion 27 can be spaced apart from the second outlet 127, that is, the second outlet 127 does not expose the second limiting protrusion 27. Alternatively, the second limiting protrusion 27 can also be partially exposed relative to the second outlet 127. In this case, the second limiting protrusion 27 can also cooperate with the third groove side 1262 and the fourth groove side 1263 of the second mounting groove 126 to restrict the decorative ring 20 from moving relative to the base 10 in the first direction Z1. In this case, the second limiting protrusion 27 and the second mounting groove 126 can together constitute a second limiting structure. The second limiting structure can be used to restrict the decorative ring 20 from rotating relative to the base 10 in the second rotation direction b when the camera decorative piece 500 is in the locked state. Exemplarily, the second limiting structure can also be used to restrict the decorative ring 20 from moving relative to the base 10 in the first direction Z1 when the camera decorative piece 500 is in the locked state.

[0121] Exemplarily, the third groove side surface 1262 may intersect with the first direction Z1. The third groove side surface 1262 may intersect with the fourth groove side surface 1263. The third groove side surface 1262 may be an inclined surface. The distance between the third groove side surface 1262 and the fourth groove side surface 1263 may gradually increase in the direction toward the second outlet 127. Thus, when the second limiting protrusion 27 is located in the second mounting groove 126 and contacts the third groove side surface 1262, the third groove side surface 1262 may cooperate with the second limiting protrusion 27, thereby restricting the movement of the second limiting protrusion 27 relative to the base 10 along the first direction Z1 and restricting the rotation of the second limiting protrusion 27 relative to the base 10 along the second rotation direction b. In some embodiments, the second limiting protrusion 27 may also cooperate with the third end face 1261 to restrict the rotation of the second limiting protrusion 27 relative to the base 10 along the second rotation direction b. In other embodiments, the third groove side surface 1262 may also be parallel to the fourth groove side surface 1263. At this time, when the second limiting protrusion 27 is located within the second mounting groove 126, the third end face 1261 of the second mounting groove 126 can engage with the second limiting protrusion 27 to restrict the second limiting protrusion 27 from rotating relative to the base 10 in the second rotation direction b. The side face 1262 of the third groove can engage with the second limiting protrusion 27 to restrict the second limiting protrusion 27 from moving relative to the base 10 in the first direction Z1.

[0122] In some embodiments, when the camera decoration assembly 300 is in the locked state, the third surface 233 of the first limiting protrusion 23 can also cooperate with the second end face 1232 of the first mounting groove 123 to restrict the first limiting protrusion 23 from rotating relative to the base 10 in the first rotation direction a.

[0123] Figure 21 is a schematic diagram of the structure shown in Figure 18 when the camera decorative piece 500 is in the unlocked state. Figure 22 is a schematic diagram of the structure shown in Figure 19 when the camera decorative piece 500 is in the unlocked state. Figure 23 is a schematic diagram of the structure shown in Figure 20 when the camera decorative piece 500 is in the unlocked state.

[0124] As shown in Figures 21 to 23, the camera decorative element 500 also includes an unlocked state. When the camera decorative element 500 is in the unlocked state, the elastic element 30 can be in its original state. The first limiting protrusion 23 can be located in a second position. The first limiting protrusion 23 can be located on the side of the elastic element 30 facing away from the bottom surface 1233 of the first mounting groove 123, and located within the second groove 312 of the elastic element 30. The first limiting protrusion 23 can also be exposed relative to the first outlet 125. Exemplarily, the second surface 232 of the first limiting protrusion 23 can contact the elastic element 30, or be spaced apart from the elastic element 30. There may be no interaction force between the first limiting protrusion 23 and the elastic element 30.

[0125] For example, when the camera trim 500 is in the unlocked state, the second limiting protrusion 27 can be located in the fourth position. The second limiting protrusion 27 can be located outside the second mounting groove 126. The second limiting protrusion 27 can be located inside the second outlet 127. The second limiting protrusion 27 can be exposed relative to the second outlet 127. At this time, the trim ring 20 can move relative to the base 10 in the first direction Z1, so that the first limiting protrusion 23 passes through the first outlet 125 and the second limiting protrusion 27 passes through the second outlet 127, thereby allowing the trim ring 20 to be separated from the base 10, realizing the disassembly of the trim ring 20 from the base 10.

[0126] In some embodiments, when the first limiting protrusion 23 is in the second position, it can contact the fixing portion 31 of the elastic member 30. Thus, when the first limiting protrusion 23 moves to the second position, the fixing portion 31 of the elastic member 30 can still cooperate with the first limiting protrusion 23 to restrict the first limiting protrusion 23 from continuing to rotate relative to the base 10 along the first rotation direction a, preventing the first limiting protrusion 23 from misaligning with the first outlet 125, thus preventing the first limiting protrusion 23 from passing through the first outlet 125 to disassemble the decorative ring 20 from the base 10. In other words, by setting the fixing portion 31 of the elastic member 30 to protrude relative to the limiting portion 32 in a direction opposite to the bottom surface 1233 of the first mounting groove 123, a tactile feedback is provided during the rotation of the first limiting protrusion 23 relative to the base 10 along the first rotation direction a, allowing the user to accurately identify the movement of the first limiting protrusion 23 to the second position, facilitating subsequent disassembly of the decorative ring 20 from the base 10, resulting in a better user experience.

[0127] Figure 24 is a structural schematic diagram of one of the intermediate states of the structure shown in Figure 18 during the switching process of the camera trim 500 from the locked state to the unlocked state in some embodiments.

[0128] As shown in Figures 18, 21, and 24, when a user needs to remove the decorative ring 20 from the base 10, the user must first switch the camera decorative component 500 from the locked state to the unlocked state, and then remove the decorative ring 20 from the base 10 along the first direction Z1. During the switching process of the camera decorative component 300 from the locked state to the unlocked state, the user can first apply a first external force to the limiting portion 32 of the elastic member 30, causing the limiting portion 32 of the elastic member 30 to deform along the direction close to the bottom surface 1233 of the first mounting groove 123, and gradually shorten the first distance D1. That is, the elastic member 30 can deform under the action of the first external force, and the limiting portion 32 of the elastic member 30 can be approximately arc-shaped. The shape of the limiting portion 32 of the elastic member 30 can conform to the shape of the bottom surface 1233 of the first mounting groove 123. For example, a user can insert an external tool (such as a pin or other slender structure) into the connecting hole 26 to apply force to the limiting portion 32 of the elastic member 30, so that the limiting portion 32 of the elastic member 30 deforms.

[0129] For example, when the first distance D1 is shortened to be less than the second distance D2, the limiting portion 32 of the elastic member 30 can be offset from the first limiting protrusion 23. At this time, the user can apply a second external force to the decorative ring 20. Under the action of the second external force, the decorative ring 20 can rotate relative to the base 10 in a first rotation direction a, so that the first limiting protrusion 23 can pass over the limiting portion 32 of the elastic member 30 and move to the second position, and the second limiting protrusion 27 can move to the fourth position.

[0130] During the rotation of the decorative ring 20 relative to the base 10 along the first rotation direction a, the first limiting protrusion 23 can rotate relative to the protrusion 12 of the base 10 along the first rotation direction a and move from the first position to the second position. The second limiting protrusion 27 can rotate relative to the protrusion 12 of the base 10 along the first rotation direction a and gradually exit the second mounting groove 126, moving from the third position to the fourth position. When the first limiting protrusion 23 begins to overlap with the elastic member 30 in the radial direction of the protrusion 12, the user can remove the force applied to the limiting portion 32 of the elastic member 30. The first limiting protrusion 23 can replace the first external force to continue to compress the elastic member 30, keeping the limiting portion 32 of the elastic member 30 in a deformed state. During the process of the first limiting protrusion 23 beginning to overlap with the elastic member 30 in the radial direction of the protrusion 12 and moving to the second position, the first limiting protrusion 23 can always compress the limiting portion 32 of the elastic member 30 and rotate relative to the protrusion 12 along the first rotation direction a. At this time, the second limiting protrusion 27 can also rotate relative to the protrusion 12 along the first rotation direction a. When the first limiting protrusion 12 moves to the second position, the first limiting protrusion 23 can release the force from the elastic member 30. The second limiting protrusion 27 can move to the fourth position. At this time, the elastic member 30 can return to its original state. The first limiting protrusion 23 can also be exposed relative to the first outlet 125. The second limiting protrusion 27 can be exposed relative to the second outlet 127. The camera decorative assembly 300 can be in the unlocked state.

[0131] As shown in Figures 18 to 23, when the user needs to fix the decorative ring 20 to the base 10, the user first needs to fit the decorative ring 20 onto the protrusion 12 of the base 10 along the second direction Z2. The second direction Z2 can be opposite to the first direction Z1. At this time, the first limiting protrusion 23 can be located at the second position, and the second limiting protrusion 27 can be located at the fourth position. Then, the user can continue to operate the camera decoration 500 to switch from the unlocked state to the locked state to fix the decorative ring 20 to the base 10. During the process of switching the camera decoration 500 from the unlocked state to the locked state, the user can apply a third external force to the decorative ring 20. Under the action of the third external force, the decorative ring 20 can rotate relative to the base 10 along the second rotation direction b, so that the first limiting protrusion 23 can pass over the limiting part 32 of the elastic member 30 and move to the first position, and the second limiting protrusion 27 can move to the third position.

[0132] During the rotation of the decorative ring 20 relative to the base 10 along the second rotation direction b, the first limiting protrusion 23 can rotate relative to the protrusion 12 of the base 10 along the second rotation direction b and move from the second position to the first position. The second limiting protrusion 27 can rotate relative to the protrusion 12 of the base 10 along the second rotation direction b and gradually slide into the second mounting groove 126, moving from the fourth position to the third position. During the movement of the first limiting protrusion 23 from the second position to the first position, the first limiting protrusion 23 can compress the limiting portion 32 of the elastic member 30, causing the limiting portion 32 of the elastic member 30 to deform. When the first limiting protrusion 23 passes the limiting portion 32 of the elastic member 30 and moves to the first position, the first limiting protrusion 23 can relieve the force on the elastic member 30. The second limiting protrusion 27 can be located in the third position. At this time, the elastic member 30 can return to its original state. The first limiting protrusion 23 and the first outlet 125 are spaced apart in the circumferential direction of the base 10. The second limiting protrusion 27 can be spaced apart from the second outlet 127 in the circumferential direction of the base 10. The camera decorative piece 500 can be in a locked state.

[0133] Understandably, in this embodiment, the fixing part 31 of the elastic member 30 is fixed to the outer peripheral side of the base 10, the limiting part 32 is spaced apart from the outer peripheral side of the base 10, and a first limiting protrusion 23 is provided on the inner peripheral side of the decorative ring 20. When the camera decorative piece 500 is in the locked state, the first limiting protrusion 23 and the limiting part 32 of the elastic member 30 are arranged in the circumferential direction of the base 10. The first limiting protrusion 23 cooperates with the limiting part 32 of the elastic member 30 to restrict the decorative ring 20 from rotating relative to the base 10 in the first rotation direction a. The limiting part 32 of the elastic member 30 can deform in the radial direction of the base 10 under the action of the first external force, so that the camera decorative piece 500 can switch from the locked state to the unlocked state. In this way, the decorative ring 20 can be detachably connected to the base 10, allowing the user to disassemble the decorative ring 20 according to their own usage needs, resulting in a better user experience.

[0134] Secondly, the first limiting protrusion 23 in this embodiment has a first surface 231. When the camera decorative piece 500 is in the locked state, the first surface 231 can be positioned towards the limiting portion 32 of the elastic member 30. In one possible embodiment, the angle formed between the first surface 231 and the length extension direction of the elastic member 30 (also known as the first angle α in this embodiment) can be less than or equal to 90°. Thus, even if the user accidentally operates the decorative ring 20 and applies force to it, causing the decorative ring 20 to tend to rotate relative to the base 10 in the first rotation direction a, the first surface 231 of the first limiting protrusion 23 can still remain in contact with the limiting portion 32 of the elastic member 30, preventing the first limiting protrusion 23 from passing over the limiting portion 32 of the elastic member 30, thereby limiting the rotation of the first limiting protrusion 23 relative to the base 10 in the first rotation direction a, that is, limiting the rotation of the decorative ring 20 relative to the base 10 in the first rotation direction a. In other words, by setting the angle between the first surface 231 of the first limiting protrusion 23 and the elastic member 30 in this embodiment, the first surface 231 can also cooperate with the limiting part 32 of the elastic member 30 to form a foolproof design. Even if the user accidentally applies a large force to the decorative ring 20, the first limiting protrusion 23 of the decorative ring 20 will not cross the limiting part 32 of the elastic member 30, so that the decorative ring 20 can continue to rotate relative to the base 10 in the first rotation direction a, causing the camera decorative member 500 to switch from the locked state to the unlocked state. The stability of the camera decorative member 500 in maintaining the locked state is good.

[0135] Secondly, when the camera decorative piece 500 in this embodiment is in the locked state, the distance between the surface of the limiting portion 32 of the elastic member 30 facing away from the outer peripheral side of the base 10 and the outer peripheral side of the base 10 is the first distance D1. The distance between the first surface 231 and the outer peripheral side of the base 10 is the second distance D2. The first distance D1 can be greater than the second distance D2. When the user needs to remove the decorative ring 20 from the base 10, a first external force needs to be applied to the limiting portion 32 of the elastic member 30 to deform it in the radial direction of the base 10, so that the first distance D1 is less than the second distance D2, so that the first limiting protrusion 23 and the limiting portion 32 of the elastic member 30 are offset in the circumferential direction of the base 10. At this time, the decorative ring 20 can rotate relative to the base 10 in the first rotation direction a, so that the camera decorative piece 500 switches from the locked state to the unlocked state, so that the user can remove the decorative ring 20 from the base 10. In this way, even if the user accidentally operates the decorative ring 20 and applies force to it, causing the decorative ring 20 to tend to rotate relative to the base 10 in the first rotation direction a, the first surface 231 of the first limiting protrusion 23 can still abut against the limiting part 32 of the elastic member 30, preventing the first limiting protrusion 23 from passing over the limiting part 32 of the elastic member 30, thereby limiting the rotation of the first limiting protrusion 23 relative to the base 10 in the first rotation direction a, that is, limiting the rotation of the decorative ring 20 relative to the base 10 in the first rotation direction a, and the stability of the camera decorative part 500 in maintaining the locked state is better.

[0136] Secondly, the decorative ring 20 in this embodiment also has a connecting hole 26. The connecting hole 26 can penetrate through the outer and inner peripheral sides of the decorative ring 20. When the camera decorative piece 500 is in the locked state, the connecting hole 26 can be positioned opposite to the limiting part 32 of the elastic member 30. In this way, the user only needs to use an external tool to apply force to the limiting part 32 of the elastic member 30 through the connecting hole 26, so that it deforms in the radial direction of the base 10, so that the camera decorative piece 500 can switch from the locked state to the unlocked state. The user's unlocking operation is relatively simple and the user experience is better. At the same time, the structure of the decorative ring 20 is relatively simple and easy to manufacture, which helps to reduce the difficulty of manufacturing and assembly.

[0137] Furthermore, in this embodiment, the elastic element 30 can be an independent elastic element fixed to the outer peripheral side of the base 10. External force is applied to the elastic element 30 to cause it to elastically deform, allowing the camera decorative component 500 to switch between a locked and unlocked state. In this way, both the decorative ring 20 and the base 10 can be rigid components, resulting in high structural strength and resistance to damage, which helps extend the service life of the camera decorative component 300.

[0138] In addition, the decorative ring 20 in this embodiment is also provided with a first clearance groove 24, the opening of which can be formed on the inner circumferential side of the decorative ring 20. When the camera decorative piece 500 is in the locked state, the first clearance groove 24 can be located on the side of the first limiting protrusion 23 facing the elastic member 30. The limiting part 32 of part of the elastic member 30 can be located in the first clearance groove 24. In this way, by setting the first clearance groove 24 to avoid the limiting part 32 of the elastic member 30, the elastic member 30 can also utilize the circumferential dimension space of the decorative ring 20 to achieve space reuse, which is conducive to the miniaturization of the camera decorative piece 500. At the same time, the elastic member 30 can have a certain thickness and better structural strength, thereby avoiding the problem of deformation, damage, or breakage of the elastic member 30 caused by the decorative ring 20 applying a large force under a large external force due to the thinness and weak structural strength of the elastic member 30, which is conducive to extending the service life of the camera decorative piece 500. In other words, the camera decorative component 500 in this embodiment can take into account the thickness of the elastic component 30 itself, as well as the overall miniaturization design of the camera decorative component 500.

[0139] In addition, the inner circumferential side of the decorative ring 20 in this embodiment is provided with a second limiting protrusion 27, and the outer circumferential side 12a of the protrusion 12 of the base 10 is provided with a second mounting groove 126. The second mounting groove 126 can cooperate with the second limiting protrusion 27 to restrict the decorative ring 20 from rotating relative to the base 10 in the second rotation direction b. In this way, when the camera decoration 500 is in the locked state, the cooperation between the second limiting protrusion 27 and the second mounting groove 126, and the cooperation between the first limiting protrusion 23 and the elastic member 30, can prevent the decorative ring 20 from shaking relative to the base 10 in a plane perpendicular to the thickness direction of the camera decoration 500, thereby preventing the decorative ring 20 and the base 10 from colliding due to shaking, generating noise, and affecting the user experience.

[0140] Furthermore, in this embodiment, when the camera decorative piece 500 switches between a locked state and an unlocked state, the second limiting protrusion 27 can slide into or out of the second mounting groove 126. The second limiting protrusion 27 will not undergo elastic deformation, and can be a rigid component. In this way, the overall structure of both the decorative ring 20 and the base 10 can be rigid components, resulting in strong structural strength and resistance to damage, which helps to extend the service life of the camera decorative piece 500.

[0141] In some embodiments, referring to Figures 11, 15, and 16, the number of second limiting protrusions 27 can be multiple. These multiple second limiting protrusions 27 can be spaced apart along the circumferential direction of the frame portion 22. The number of second mounting slots 126 can also be multiple. These multiple second mounting slots 126 can be arranged spaced apart along the circumferential direction of the base 10. The number of second outlets 127 can also be multiple, and the number of second outlets 127 can be the same as the number of second mounting slots 126. These multiple second outlets 127 can be correspondingly arranged with the multiple second mounting slots 126. The number of second limiting protrusions 27 can be the same as the number of second mounting slots 126. When the camera decoration component 500 is in the locked state, the multiple second limiting protrusions 27 can be located within the multiple second mounting slots 126 in a corresponding manner. Thus, by providing multiple sets of second limiting protrusions 27 cooperating with the second mounting slots 126, the stability of the camera decoration component 300 in the locked state is improved. For example, the distance between any two adjacent second limiting protrusions 27 can be equal. That is, multiple second limiting protrusions 27 can be evenly distributed around the periphery of the base 10. In this way, when the camera decoration 500 is in the locked state and the decoration ring 20 is subjected to external force, the multiple second limiting protrusions 27 can evenly distribute the stress, avoiding stress concentration that could damage the camera decoration 500, and thus helping to extend the service life of the camera decoration 500.

[0142] The above text describes the structural arrangement between the decorative ring 20, the base 10, and the elastic element 30 of the camera decorative component 500. The following text will introduce some other components of the camera decorative component 300 in conjunction with the attached drawings.

[0143] Figure 25 is a schematic diagram of the lens barrel 40 of the camera decorative assembly 300 shown in Figure 8 in some embodiments. Figure 26 is a schematic diagram of the assembly structure of the lens barrel 40 and the protective cover plate 50 shown in Figure 8 in some embodiments.

[0144] As shown in Figures 25 and 26, the lens barrel 40 may include a top 41 and a barrel portion 42. The top 41 may be fixedly connected to the periphery of the barrel portion 42. The lens barrel 40 may also include one or more lifting sleeves 43. It should be understood that Figure 8 also illustrates the structure of the lens barrel 40. The camera decoration assembly 300 may also include a motor (not shown). The motor may be connected to multiple lifting sleeves 43. The motor may be used to drive the lens barrel 40 to move relative to the base 10 in a first direction Z1 or a second direction Z2. In this way, the camera decoration assembly 300 can be applied to a liftable camera module 400. When the lens of the camera module 400 is raised, the lens barrel 40 of the camera decoration assembly 300 can be raised accordingly to avoid obstructing the lens of the camera module 400.

[0145] Exemplarily, the top 41 may have a light-transmitting hole 411. A protective cover 50 may be fixed to the surface of the top 41 facing away from the barrel 42 and cover the light-transmitting hole 411. That is, the projection of the protective cover 50 onto the plane of the top 41 may cover the light-transmitting hole 411. In some embodiments, the surface of the top 41 facing away from the barrel 42 may be partially recessed in the direction toward the barrel 42, forming a groove. The groove may surround the light-transmitting hole 411. The protective cover 50 may be fixed within the groove. In this way, the protective cover 50 can be configured using the thickness of the top 41, improving space utilization and ensuring surface flatness between the protective cover 50 and the top 41 of the lens barrel 40, thus improving aesthetics.

[0146] In other embodiments, the camera module 400 may also be a camera module 400 without a lifting function. In this case, the electronic device 1000 may not include a motor. The lens barrel 40 may also not include multiple lifting sleeves 43.

[0147] Figure 27 is a structural schematic diagram of the connector 60 of the camera decorative assembly 300 shown in Figure 8 in some embodiments. Figure 28 is a cross-sectional structural schematic diagram of the camera decorative assembly 300 shown in Figure 7 cut along BB in one embodiment.

[0148] As shown in Figures 27 and 28, the connector 60 may include a first annular portion 61, a middle portion 62, and a second annular portion 63. The middle portion 62 may be fixedly connected between the first annular portion 61 and the second annular portion 63. Specifically, the middle portion 62 may be fixedly connected to the inner periphery of the first annular portion 61 and the outer periphery of the second annular portion 63.

[0149] Exemplarily, the lens barrel 40 can be located inside the decorative ring 20 and the base 10. A portion of the lens barrel 40 can be located within the first mounting hole 10a of the base 10, and a portion of the lens barrel 40 can be located within the second mounting hole 211 of the decorative ring 20. A first gap S1 can be present between the lens barrel 40 and the protrusion 12 of the base 10. A second gap S2 can be present between the lens barrel 40 and the top plate 21 of the decorative ring 20. The width of the second gap S2 can be smaller than the width of the first gap S1. That is, the top plate 21 of the decorative ring 20 can partially cover the first gap S1.

[0150] For example, the connector 60 can be located on the side of the base 10 facing away from the top plate 21. The first annular portion 61 can be fixedly connected to the surface of the top plate 21 of the base 10 facing away from the decorative ring 20 by the first adhesive layer 70. The second annular portion 63 can be fixedly connected to the surface of the cylindrical portion 42 of the lens barrel 40 facing away from the top 41 by the second adhesive layer 80. At this time, the connector 60 can isolate the first gap S1 from the light-transmitting hole 203 of the back cover 202 (see FIG. 6), and the first gap S1 from the internal space of the electronic device 1000. The connector 60 can cover the first gap S1. Wherein, the connector 60 can cover the first gap S1 means that the projection of the connector 60 on the plane of the base 10 can cover the projection of the first gap S1 on the plane of the base 10.

[0151] For example, the camera trim assembly 300 is applied to a camera module 400 with a lifting function (see Figure 3). The lens barrel 40 rises relative to the trim ring 20 in a first direction Z1, or retracts relative to the trim ring 20 in a second direction Z2. When the lens barrel 40 moves relative to the trim ring 20, the connector 60 can deform to accommodate the movement of the lens barrel 40.

[0152] For example, the camera decorative assembly 300 can have a locked state and an unlocked state. The locked state of the camera decorative assembly 300 can correspond to the locked state of the camera decorative piece 500. The unlocked state of the camera decorative assembly 300 can correspond to the unlocked state of the camera decorative piece 500. Thus, when the camera decorative assembly 300 is in the unlocked state, the decorative ring 20 can be detached from the base 10, thereby exposing the first gap S1 previously covered by the decorative ring 20, allowing the user to clean dust and impurities within the first gap S1.

[0153] It is understood that the camera decorative assembly 300 in this embodiment may further include a connector 60 and a lens barrel 40, with the lens barrel 40 located inside the decorative ring 20 and the base 10. A first gap S1 exists between the lens barrel 40 and the base 10. A portion of the connector 60 can be fixedly connected to the base 10, and a portion can be fixedly connected to the lens barrel 40. In this way, the connector 60 can isolate the first gap S1 from the light-transmitting hole 203 of the back cover 202, thereby effectively preventing impurities, dust, moisture, etc., from entering the interior of the electronic device 1000 through the first gap S1 and affecting the normal operation of other components inside the electronic device 1000.

[0154] Secondly, the decorative ring 20 in this embodiment may include a top plate 21 and a frame portion 22. The frame portion 22 may be fitted onto the protrusion 12 of the base 10. A second gap S2 exists between the top plate 21 and the lens barrel 40. The width of the second gap S2 may be smaller than the width of the first gap S1. That is, the top plate 21 may cover part of the first gap S1. In this way, by setting a part of the decorative ring 20 (i.e., the top plate 21 in this embodiment) to cover part of the first gap S1, and the width of the second gap S2 being smaller than the width of the first gap S1, on the one hand, the width of the first gap S1 is larger, which facilitates the rinsing of dust and impurities blocked by the connector 60; on the other hand, the width of the second gap S2 is smaller, which helps to ensure the exquisite appearance of the camera decorative component 300 and improve the user experience.

[0155] In some embodiments, the camera decorative assembly 300 may further include a first reinforcing member 91 and a second reinforcing member 92. Both the first reinforcing member 91 and the second reinforcing member 92 can be reinforcing steel sheets. Both the first reinforcing member 91 and the second reinforcing member 92 can be annular. The first reinforcing member 91 can be fixed to the surface of the first annular portion 61 of the connector 60 facing away from the second annular portion 63. The second reinforcing member 92 can be fixed to the surface of the second annular portion 63 facing away from the first annular portion 61. At this time, the first adhesive layer 70 can be fixedly connected between the first reinforcing member 91 and the protrusion 12 of the base 10. The second adhesive layer 80 can be fixedly connected between the second reinforcing member 92 and the cylindrical portion 42 of the lens barrel 40. Thus, by providing the first reinforcing member 91 and the second reinforcing member 92, the connector 60 can be structurally reinforced, extending the service life of the connector 60.

[0156] It should be noted that, in the absence of conflict, the features in the embodiments of this application can be combined with each other, and any combination of features in different embodiments is also within the protection scope of this application. That is to say, the multiple embodiments described above can also be arbitrarily combined according to actual needs.

[0157] It should be noted that all the above figures are exemplary illustrations of this application and do not represent the actual size of the product. Furthermore, the dimensional proportions between the components in the figures are not intended to limit the actual product of this application.

[0158] The above are merely some embodiments of this application, and the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A camera trim (500), characterized by, The camera decoration piece (500) comprises a base (10), a decorative ring (20) arranged around the base (10), the decorative ring (20) being detachably connected to the base (10), an inner circumferential side of the decorative ring (20) being provided with a first limiting protrusion (23), the first limiting protrusion (23) being oppositely and spacedly arranged with respect to an outer circumferential side of the base (10), and an elastic member (30) comprising a fixed portion (31) and a limiting portion (32) connected to each other, the fixed portion (31) being fixed to the outer circumferential side of the base (10), at least a part of the limiting portion (32) being oppositely and spacedly arranged with respect to the outer circumferential side of the base (10). The camera decoration piece (500) has a locked state and an unlocked state. When the camera decoration piece (500) is in the locked state, the first limiting protrusion (23) is located on a side of the limiting portion (32) of the elastic member (30) away from the fixed portion (31), and the first limiting protrusion (23) cooperates with the limiting portion (32) to limit rotation of the decorative ring (20) with respect to the base (10) in a first rotation direction (a). When the camera decoration piece (500) is in the unlocked state, the first limiting protrusion (23) is located on a side of the limiting portion (32) of the elastic member (30) close to the fixed portion (31). The limiting portion (32) of the elastic member (30) can be deformed in a radial direction of the base (10) to enable the first limiting protrusion (23) to pass over the limiting portion (32). In a process of switching the camera decoration piece (500) from the locked state to the unlocked state, the limiting portion (32) of the elastic member (30) is deformed in the radial direction of the base (10) under the action of a first external force, the decorative ring (20) is rotated in the first rotation direction (a) with respect to the base (10) under the action of a second external force, and the first limiting protrusion (23) passes over the limiting portion (32) of the elastic member (30). In a process of switching the camera decoration piece (500) from the unlocked state to the locked state, the decorative ring (20) is rotated in a second rotation direction (b) with respect to the base (10) under the action of a third external force, the first limiting protrusion (23) presses the elastic member (30), the limiting portion (32) of the elastic member (30) is deformed in the radial direction of the base (10) under the pressing of the first limiting protrusion (23), the first limiting protrusion (23) passes over the limiting portion (32), and the second rotation direction (b) is opposite to the first rotation direction (a). When the camera decoration piece (500) is in the locked state, the first limiting protrusion (23) and the limiting portion (32) are oppositely arranged in a circumferential direction of the base (10).

2. The camera trim (500) of claim 1, wherein, ​ ​ 3. The camera trim (500) according to claim 1 or 2, characterized in that, ​ 4. The camera trim (500) according to any one of claims 1 to 3, characterized in that, A distance between a surface of the limiting portion (32) facing away from the outer circumferential side of the base (10) and the outer circumferential side of the base (10) is a first distance (D1), a distance between the first limiting protrusion (23) and the outer circumferential side of the base (10) is a second distance (D2), and the first distance (D1) is greater than the second distance (D2) when the camera decoration (500) is in the locked state.

5. The camera trim (500) according to any one of claims 1 to 4, characterized in that, The first limiting protrusion (23) has a first surface (231), and the first surface (231) is arranged towards the limiting portion (32) when the camera decoration (500) is in the locked state, and an included angle between the first surface (231) and a length extension direction of the elastic member (30) is less than or equal to 90°.

6. The camera trim (500) according to any one of claims 1 to 5, characterized in that, The base (10) has a first mounting groove (123), and an opening of the first mounting groove (123) is formed on the outer circumferential side of the base (10), and the first mounting groove (123) includes a groove bottom surface (1233) facing the opening of the first mounting groove (123); At least part of the elastic member (30) is located in the first mounting groove (123), the fixed portion (31) of the elastic member (30) is fixed to the groove bottom surface (1233), the limiting portion (32) is arranged opposite and spaced apart from the groove bottom surface (1233), and at least part of the first limiting protrusion (23) is located in the first mounting groove (123).

7. The camera trim (500) of claim 6, wherein, The base (10) includes a top surface (121) and a bottom surface (112) arranged opposite along a thickness direction of the camera decoration (500), the first mounting groove (123) is arranged spaced apart from the top surface (121) and the bottom surface (112), the first mounting groove (123) includes first and second groove side surfaces (1234, 1235) arranged opposite, and the first groove side surface (1234) is arranged closer to the top surface (121) than the second groove side surface (1235); When the camera decoration (500) is in the locked state, at least part of the first limiting protrusion (23) is located between the first and second groove side surfaces (1234, 1235), the first limiting protrusion (23) cooperates with the first groove side surface (1234) to limit movement of the first limiting protrusion (23) relative to the base (10) along a first direction (Z1), the first direction (Z1) is a direction in which the bottom surface (112) points to the top surface (121), and is parallel to the thickness direction of the camera decoration (500).

8. The camera trim (500) of claim 7, wherein, The base (10) further has a first outlet (125) penetrating the top surface (121) and communicating with the first mounting groove (123), and the first outlet (125) is located on a side of the limiting portion (32) of the elastic member (30) close to the fixed portion (31). When the camera decoration piece (500) is in the unlocked state, the first limiting protrusion (23) is exposed relative to the first outlet (125), and the first limiting protrusion (23) can pass through the first outlet (125) in the first direction (Z1) to separate the decoration ring (20) from the base (10).

9. The camera trim (500) according to any one of claims 1 to 8, characterized in that, The base (10) also has a second mounting groove (126), and an opening of the second mounting groove (126) is formed on an outer circumferential side of the base (10). An inner circumferential side of the decoration ring (20) is also provided with a second limiting protrusion (27), and the second limiting protrusion (27) is arranged in a spaced manner relative to the first limiting protrusion (23). In the process of switching the camera decoration piece (500) from the locked state to the unlocked state, the second limiting protrusion (27) slides out of the second mounting groove (126). In the process of switching the camera decoration piece (500) from the unlocked state to the locked state, the second limiting protrusion (27) slides into the second mounting groove (126). When the camera decoration piece (500) is in the locked state, the second limiting protrusion (27) cooperates with the second mounting groove (126) to limit rotation of the decoration ring (20) relative to the base (10) in a second rotation direction (b).

10. The camera trim (500) of claim 9, wherein, The base (10) includes a top surface (121) and a bottom surface (112) arranged in opposite directions along a thickness direction of the camera decoration piece (500). The second mounting groove (126) is arranged in a spaced manner relative to the top surface (121) and the bottom surface (112). The second mounting groove (126) includes a third groove side (1262) and a fourth groove side (1263) arranged in opposite directions. The third groove side (1262) is arranged closer to the top surface (121) than the fourth groove side (1263). When the camera decoration piece (500) is in the locked state, at least part of the second limiting protrusion (27) is located between the third groove side (1262) and the fourth groove side (1263). The second limiting protrusion (27) cooperates with the third groove side (1262) to limit movement of the second limiting protrusion (27) relative to the base (10) in a first direction (Z1). The first direction (Z1) is a direction in which the bottom surface (112) points to the top surface (121) and is parallel to the thickness direction of the camera decoration piece (500).

11. The camera trim (500) of claim 10, wherein, The base (10) also has a second outlet (127) that penetrates the top surface (121) and communicates with the second mounting groove (126). The second outlet (127) and the second mounting groove (126) are arranged in a circumferential direction of the base (10). When the camera decoration piece (500) is in the unlocked state, the second limiting protrusion (27) is spaced apart from the second mounting groove (126) and located in the second outlet (127), and the second limiting protrusion (27) can pass through the second outlet (127) in the first direction (Z1) to separate the decoration ring (20) from the base (10).

12. The camera trim (500) of claim 11, wherein, The third groove side surface (1262) intersects the fourth groove side surface (1263), and the distance between the third groove side surface (1262) and the fourth groove side surface (1263) gradually increases in the direction toward the second outlet (127); When the camera decoration piece (500) is in the locked state, the second limiting protrusion (27) also cooperates with the third groove side surface (1262) to limit the rotation of the second limiting protrusion (27) relative to the base (10) in the second rotation direction (b).

13. The camera trim (500) according to any one of claims 1 to 12, characterized in that, The decoration ring (20) is also provided with a first avoiding groove (24), and an opening of the first avoiding groove (24) is formed on an inner circumferential side surface of the decoration ring (20). When the camera decoration piece (500) is in the locked state, the first avoiding groove (24) is located on a side of the first limiting protrusion (23) close to the limiting portion (32), and part of the limiting portion (32) is located in the first avoiding groove (24).

14. The camera trim (500) according to any one of claims 1 to 13, characterized in that, The decoration ring (20) is also provided with a communication hole (26) penetrating through an outer circumferential side surface and an inner circumferential side surface of the decoration ring (20). When the camera decoration assembly (300) is in the locked state, the communication hole (26) is located on a side of the first limiting protrusion (23) close to the limiting portion (32) and is oppositely arranged relative to the limiting portion (32).

15. The camera trim (500) according to any one of claims 1 to 14, characterized in that, The decoration ring (20) comprises a top plate (21) and a frame portion (22), the top plate (21) is fixedly connected to a circumferential edge of the frame portion (22), the frame portion (22) is arranged around the base (10) and is detachably connected to the base (10), the top plate (21) and the base (10) are stacked in a thickness direction of the camera decoration piece (500), the base (10) has a first mounting hole (10a), the top plate (21) has a second mounting hole (211), the second mounting hole communicates with the first mounting hole, and a radial dimension of the second mounting hole is smaller than a radial dimension of the first mounting hole.

16. A camera trim component (300), characterized in that, The camera decoration piece (500) comprises a lens barrel (40), a connecting piece (60), and the camera decoration piece (500) according to any one of claims 1 to 15, the lens barrel (40) is located on an inner side of the base (10) and the decoration ring (20), a first gap (S1) is formed between the lens barrel (40) and the base (10), a second gap (S2) is formed between the lens barrel (40) and the decoration ring (20), and a width of the second gap (S2) is smaller than a width of the first gap (S1), The connecting piece (60) is annular, and connects the lens barrel (40) and the base (10) and covers the first gap (S1).

17. The camera trim component (300) of claim 16, wherein, The camera decoration assembly (300) further comprises a motor connected to the lens barrel (40), and the motor is used to drive the lens barrel (40) to extend or retract relative to the decoration ring (20) and the base (10) along the thickness direction of the camera decoration (500). The connecting piece (60) is made of elastic material, and deforms during the extension or retraction of the lens barrel (40) along the thickness direction of the camera decoration (500).

18. A camera trim component (300), characterized by, Comprise: a base (10) having a first mounting hole (10a); a lens barrel (40) located in the first mounting hole (10a), and having a first gap (S1) between the lens barrel (40) and the base (10); a connecting piece (60) in the form of a ring, connecting the base (10) and the lens barrel (40), and covering the first gap (S1); and a decoration ring (20) comprising a top plate (21) and a frame portion (22), the top plate (21) being fixedly connected to the periphery of the frame portion (22), the frame portion (22) being arranged around the base (10) and being detachably connected to the base (10), the top plate (21) being located on the side of the base (10) away from the connecting piece (60), the top plate (21) having a second mounting hole (211) communicating with the first mounting hole, and the lens barrel (40) and the top plate (21) having a second gap (S2) therebetween, the width of the second gap (S2) being smaller than the width of the first gap (S1).

19. The camera trim component (300) according to claim 18, characterized by, The camera decoration assembly (300) further comprises a motor connected to the lens barrel (40), and the motor is used to drive the lens barrel (40) to extend or retract relative to the decoration ring (20) and the base (10) along the thickness direction of the camera decoration (500). The connecting piece (60) is made of elastic material, and deforms during the extension or retraction of the lens barrel (40) along the thickness direction of the camera decoration (500).

20. The camera decoration assembly (300) according to claim 18 or 19, characterized in that, The decoration ring (20) further comprises a first limiting protrusion (23) fixed to the inner circumferential side of the frame portion (22), and the first limiting protrusion (23) is arranged opposite and spaced apart from the outer circumferential side of the base (10); The camera decoration assembly (300) further comprises an elastic member (30) comprising a fixed portion (31) and a limiting portion (32), the fixed portion (31) being fixed to the outer circumferential side of the base (10), and the limiting portion (32) being arranged opposite and spaced apart from the outer circumferential side of the base (10); The camera decoration assembly (300) has a locked state and an unlocked state. When the camera decoration part (500) is in the locked state, the first limiting protrusion (23) is located on the side of the limiting portion (32) of the elastic member (30) away from the fixed portion (31), and the first limiting protrusion (23) cooperates with the limiting portion (32) to limit the rotation of the decoration ring (20) relative to the base (10) in the first rotation direction (a). When the camera decoration part (500) is in the unlocked state, the first limiting protrusion (23) is located on the side of the limiting portion (32) of the elastic member (30) close to the fixed portion (31). The limiting portion (32) of the elastic member (30) can be deformed in the radial direction of the base (10) to make the first limiting protrusion (23) pass through the limiting portion (32).

21. The camera trim component (300) according to claim 20, characterized by, In the process of switching the camera decoration part (500) from the locked state to the unlocked state, the limiting portion (32) of the elastic member (30) is deformed in the radial direction of the base (10) under the action of a first external force, the decoration ring (20) rotates relative to the base (10) in the first rotation direction (a) under the action of a second external force, and the first limiting protrusion (23) passes through the limiting portion (32) of the elastic member (30). In the process of switching the camera decoration part (500) from the unlocked state to the locked state, the decoration ring (20) rotates relative to the base (10) in the second rotation direction (b) under the action of a third external force, the first limiting protrusion (23) presses the elastic member (30), the elastic member (30) is deformed in the radial direction of the base (10) under the pressing of the first limiting protrusion (23), the first limiting protrusion (23) passes through the limiting portion (32), and the second rotation direction (b) is opposite to the first rotation direction (a).

22. The camera trim component (300) according to claim 20 or 21, characterized in that, When the camera decoration assembly (300) is in the locked state, the first limiting protrusion (23) and the limiting portion (32) are oppositely arranged in the circumferential direction of the base (10).

23. The camera trim component (300) according to any one of claims 20 or 21 to 22, characterized in that, The first limiting protrusion (23) has a first surface (231), and when the camera decoration assembly (300) is in the locked state, the first surface (231) is arranged towards the limiting portion (32), and the included angle between the first surface (231) and the length extension direction of the elastic member (30) is less than or equal to 90°.

24. The camera trim component (300) according to any one of claims 20-23, characterized in that, The distance between the surface of the limiting portion (32) away from the outer circumferential side of the base (10) and the outer circumferential side of the base (10) is a first distance (D1), and the distance between the first limiting protrusion (23) and the outer circumferential side of the base (10) is a second distance (D2), and when the camera decoration assembly (300) is in the locked state, the first distance (D1) is greater than the second distance (D2).

25. The camera trim component (300) according to any one of claims 20-24, characterized in that, The base (10) has a first mounting groove (123), an opening of the first mounting groove (123) is formed on the outer circumferential side of the base (10), the first mounting groove (123) comprises a groove bottom surface (1233), the groove bottom surface (1233) faces the opening of the first mounting groove (123); At least part of the elastic member (30) is located in the first mounting groove (123), the fixed part (31) of the elastic member (30) is fixed to the groove bottom surface (1233), the limiting part (32) is oppositely and spacedly arranged with the groove bottom surface (1233), and at least part of the first limiting protrusion (23) is located in the first mounting groove (123).

26. The camera trim component (300) according to claim 25, characterized by, The base (10) comprises a top surface (121) and a bottom surface (112) oppositely arranged along the thickness direction of the camera decoration assembly (300), the first mounting groove (123) is spacedly arranged with the top surface (121) and the bottom surface (112), the first mounting groove (123) comprises a first groove side surface (1234) and a second groove side surface (1235) oppositely arranged, and the first groove side surface (1234) is arranged closer to the top surface (121) than the second groove side surface (1235); When the camera decoration assembly (300) is in the locked state, at least part of the first limiting protrusion (23) is located between the first groove side surface (1234) and the second groove side surface (1235), the first limiting protrusion (23) cooperates with the first groove side surface (1234) to limit the movement of the first limiting protrusion (23) relative to the base (10) along a first direction (Z1), the first direction (Z1) is the direction in which the bottom surface (112) points to the top surface (121), and is parallel to the thickness direction of the camera decoration assembly (300).

27. The camera trim component (300) according to claim 26, characterized by, The base (10) further has a first outlet (125), the first outlet (125) penetrates the top surface (121) and communicates with the first mounting groove (123), and the first outlet (125) is located on the side of the limiting part (32) of the elastic member (30) close to the fixed part (31); When the camera decoration assembly (300) is in the unlocked state, the first limiting protrusion (23) is exposed relative to the first outlet (125), and the first limiting protrusion (23) can pass through the first outlet (125) along the first direction (Z1) to separate the decoration ring (20) from the base (10).

28. The camera trim component (300) according to any of claims 20-27, characterized by, The base (10) further has a second mounting groove (126), an opening of the second mounting groove (126) is formed on the outer circumferential side of the base (10), and the inner circumferential side of the decoration ring (20) is further provided with a second limiting protrusion (27), the second limiting protrusion (27) is spacedly arranged with the first limiting protrusion (23); When the camera decoration assembly (300) is switched from the locked state to the unlocked state, the second limiting protrusion (27) slides out of the second mounting groove (126), and when the camera decoration part (500) is switched from the unlocked state to the locked state, the second limiting protrusion (27) slides into the second mounting groove (126); When the camera decoration assembly (300) is in the locked state, the second limiting protrusion (27) cooperates with the second mounting groove (126) to limit the rotation of the decoration ring (20) relative to the base (10) in the second rotation direction (b).

29. The camera trim component (300) according to claim 28, characterized by, The base (10) comprises a top surface (121) and a bottom surface (112) arranged opposite to each other in the thickness direction of the camera decoration assembly (300), and the second mounting groove (126) is arranged spaced apart from the top surface (121) and the bottom surface (112). The second mounting groove (126) comprises a third groove side surface (1262) and a fourth groove side surface (1263) arranged opposite to each other, and the third groove side surface (1262) is arranged closer to the top surface (121) than the fourth groove side surface (1263). When the camera decoration assembly (300) is in the locked state, at least part of the second limiting protrusion (27) is located between the third groove side surface (1262) and the fourth groove side surface (1263), and the second limiting protrusion (27) cooperates with the third groove side surface (1262) to limit the movement of the second limiting protrusion (27) relative to the base (10) in the first direction (Z1). The first direction (Z1) is the direction in which the bottom surface (112) points to the top surface (121), and is parallel to the thickness direction of the camera decoration assembly (300).

30. The camera decoration assembly (300) according to claim 29, characterized by, The base (10) further has a second outlet (127) penetrating through the top surface (121) and communicating with the second mounting groove (126). The second outlet (127) and the second mounting groove (126) are arranged in the circumferential direction of the base (10). When the camera decoration assembly (300) is in the unlocked state, the second limiting protrusion (27) is arranged spaced apart from the second mounting groove (126) and located in the second outlet (127). The second limiting protrusion (27) can pass through the second outlet (127) in the first direction (Z1) to separate the decoration ring (20) from the base (10).

31. The camera decoration assembly (300) according to claim 30, characterized by, The third groove side surface (1262) and the fourth groove side surface (1263) intersect, and the distance between the third groove side surface (1262) and the fourth groove side surface (1263) gradually increases in the direction towards the second outlet (127). When the camera decoration assembly (300) is in the locked state, the second limiting protrusion (27) also cooperates with the third groove side surface (1262) to limit the rotation of the second limiting protrusion (27) relative to the base (10) in the second rotation direction (b).

32. The camera trim component (300) according to any of claims 20-31, characterized by, The decorative ring (20) is further provided with a first avoiding groove (24), an opening of the first avoiding groove (24) is formed on an inner circumferential side of the decorative ring (20), when the camera decoration assembly (300) is in the locked state, the first avoiding groove (24) is located on a side of the first limiting protrusion (23) close to the limiting part (32), and part of the limiting part (32) is located in the first avoiding groove (24).

33. The camera trim component (300) according to any of claims 29-32, characterized by, The decorative ring (20) is further provided with a communication hole (26), the communication hole (26) penetrates through an outer circumferential side and an inner circumferential side of the decorative ring (20), when the camera decoration assembly (300) is in the locked state, the communication hole (26) is located on a side of the first limiting protrusion (23) close to the limiting part (32), and is arranged opposite to the limiting part (32).

34. An electronic device (1000), characterized by, The camera decoration assembly (300) is installed on the light transmission hole (203).

35. The electronic device (1000) according to claim 34, characterized by, The lens of the camera module (400) can be extended or retracted relative to the light transmission hole (203). The lens of the camera module (400) can be extended or retracted relative to the light transmission hole (203).

Citation Information

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