Rotary decoration piece shielding structure and camera device

By setting elongated sliding holes and rails between the rotating decorative parts and the rotating connecting parts, the interference problem between the rotating decorative parts and the irregular shell is solved, realizing easy and quick camera blocking or opening, improving the operating feel and reducing costs.

CN224684263UActive Publication Date: 2026-08-25XIAN YIPU COMM TECH
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522122684.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2026-08-25
Estimated Expiration
2035-09-30

AI Technical Summary

Technical Problem

Existing rotating decorative parts are insufficient to meet the shielding requirements of irregular shells, resulting in structural interference and making it impossible to effectively close or open the camera.

Method used

By setting elongated sliding holes and circular or waist-shaped tracks between the rotating decorative piece and the rotating connector, the rotating decorative piece is allowed to slide and adjust its rotation radius during rotation, avoiding interference, and is kept in a covered or open state by the guide and the fastener.

Benefits of technology

It enables easy and quick covering or opening of irregular shells, reduces structural costs, and improves the feel of operation and ease of use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224684263U_ABST
    Figure CN224684263U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of camera, especially a kind of rotating decoration piece shielding structure and camera equipment, its technical scheme main points include: shell, and the lateral side is equipped with camera hole;Rotary connecting piece, setting at the end surface of the shell;And rotating decoration piece, one end is equipped with long strip sliding hole, the rotating decoration piece is through the long strip sliding hole with the rotary connecting piece movable cooperation;The rotating decoration piece at least includes following state: the rotary connecting piece reciprocating sliding along the length direction of the long strip sliding hole, to make the rotating decoration piece compared with the shell close away, change the rotating radius of the rotating decoration piece in this process;The rotating decoration piece rotates with the rotary connecting piece as rotation center, to make the rotating decoration piece open or shield the camera hole, the present application has solved the problem that the rotating decoration piece of existing IPC product is difficult to meet the shielding demand of irregular shell.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the technical field of cameras, and in particular to a rotating decorative part blocking structure and a camera device. Background Technology

[0002] A network camera (IPC, Internet Protocol Camera) is a smart security camera with intelligent analysis, low power consumption, and high image quality capabilities. With the rapid development of the Internet of Things (IoT), Artificial Intelligence (AI), and network transmission technologies, network cameras have been widely used in various scenarios such as smart security, smart homes, remote monitoring, and enterprise management, and have broad application prospects in the future.

[0003] Among users of IPC products, privacy is a major concern. However, ensuring users can choose to turn off the camera is crucial, especially since IPCs are constantly powered on. Therefore, a common method is to add a rotating decorative element to the IPC's casing. By rotating this element around a central point, the lens can be opened and closed.

[0004] However, as the functionality of IPC products continues to improve, the demands for their internal design and aesthetic appearance are also increasing. This means that the structure of their housing needs to be changed accordingly. Therefore, compared to the circular housing outline, housing structures with more irregular outlines are constantly being innovated. However, with the change in housing outline, conventional rotating decorative parts are prone to structural interference, making it difficult to block the lens by simply rotating it. Therefore, there is still a lack of a solution that can meet the blocking requirements of irregular housings, and thus, improvement is needed.

[0005] The above information is provided as background information only to aid in understanding this disclosure and does not constitute an assertion or admission that any of the above content can be used as prior art relative to this disclosure. Utility Model Content

[0006] This utility model provides a rotating decorative part shielding structure and a camera device to solve the problem that existing rotating decorative parts cannot meet the shielding requirements of irregular shells.

[0007] To achieve the above objectives, in a first aspect, this utility model provides a rotating decorative element blocking structure with the following technical solution:

[0008] A rotating decorative element blocking structure includes:

[0009] The outer casing has camera holes on its perimeter;

[0010] A rotating connector is disposed at the end face of the housing;

[0011] And a rotating decorative piece, one end of which is provided with an elongated sliding hole, the rotating decorative piece being movably engaged with the rotating connector through the elongated sliding hole;

[0012] The rotating decorative element includes at least the following states:

[0013] The rotating connector slides back and forth along the length of the elongated sliding hole, so that the rotating decorative piece moves closer to and further away from the outer shell, thereby changing the rotation radius of the rotating decorative piece.

[0014] The rotating decorative element rotates around the rotating connector as the rotation center, so that the rotating decorative element opens or blocks the camera hole.

[0015] Preferably, the outer edge of the rotary connector is provided with a circular track, and the inner edge of the elongated sliding hole is provided with a waist-shaped track, and the circular track and the waist-shaped track slide in cooperation with each other.

[0016] Preferably, the annular track is a grooved track, and the waist-shaped track is a raised track, with the waist-shaped track embedded within the annular track;

[0017] Alternatively, the annular track can be a raised track, and the waist-shaped track can be a grooved track, with the annular track embedded within the waist-shaped track.

[0018] Preferably, the end face of the outer shell is provided with an assembly hole, and the rotary connector is provided with an elastic fastener, and the rotary connector is movably fastened to the assembly hole through the elastic fastener.

[0019] Preferably, the rotating connector is provided with a first guide portion, and the rotating decorative piece is provided with a first arc-shaped track for sliding engagement with the first guide portion, and the extended contour of the first arc-shaped track is adapted to the moving path of the rotating decorative piece.

[0020] Preferably, the first arc-shaped track is provided with a starting fastener and an ending fastener respectively, and the first guide part is movably fastened to the starting fastener and the ending fastener respectively;

[0021] When the first guide part is engaged and positioned at the starting fastening position, the rotating decorative part blocks the camera hole;

[0022] When the first guide part is fastened and positioned to the end fastening position, the rotating decorative part opens the camera hole.

[0023] Preferably, the first arc-shaped track is provided with a ramp protrusion, the ramp protrusion having a ramp surface that slides with the first guide part, the ramp surface being used to guide the first guide part located in the first arc-shaped track to the starting fastening position or the ending fastening position.

[0024] Preferably, the other end of the rotating decorative piece is provided with a second guide portion, and the other end of the outer shell away from the rotating connector is provided with a second arc-shaped track that slides in cooperation with the second guide portion, and the extended contour of the second arc-shaped track is adapted to the rotating decorative piece and the moving path.

[0025] Preferably, the first arc-shaped track is configured as two mirror-symmetrical tracks; the second arc-shaped track is configured as two mirror-symmetrical tracks.

[0026] Secondly, this utility model provides a camera device with the following technical solution:

[0027] A camera device, including the rotating decorative element shielding structure described above.

[0028] Compared with the prior art, the present invention has the following beneficial effects:

[0029] The rotating decorative element shielding structure and camera device provided by this utility model, when the outer shell has an irregular contour, such as a raised contour on the periphery of the outer shell, can achieve this by the cooperation of the rotating connector and the elongated sliding hole. During the rotation of the rotating decorative element, the rotating decorative element can slide back and forth relative to the rotating connector. At this time, the rotating decorative element can move away from the outer shell and be adjusted to a position with a suitable rotation radius, thereby avoiding interference between the rotating decorative element and the outer shell. Ultimately, the rotating decorative element can rotate around the outer shell to shield or open the camera hole. The operation is simple and quick, and the structural cost is low. It solves the problem that existing rotating decorative elements cannot meet the shielding requirements of irregular outer shells.

[0030] This invention has other features and advantages that will be apparent from or will be set forth in detail in the accompanying drawings and the following detailed description, which together serve to explain the particular principles of this invention. Attached Figure Description

[0031] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0032] Figure 1 This is a schematic diagram of the rotating decorative part blocking structure provided in this embodiment of the present invention in the blocking closed state;

[0033] Figure 2 This is a schematic diagram of the rotating decorative element blocking structure provided in this embodiment of the present invention in the open state;

[0034] Figure 3 This is a schematic diagram of the assembly relationship of the rotating decorative part shielding structure provided in this embodiment of the utility model;

[0035] Figure 4 This is a schematic diagram of the structure of the rotary connector provided in this embodiment of the utility model;

[0036] Figure 5 This is a cross-sectional view of the rotating decorative component provided in this embodiment of the utility model.

[0037] Figure 6 This is a schematic diagram of the structure of the other end face of the outer shell provided in this embodiment of the utility model.

[0038] Figure label:

[0039] 100. First arc-shaped track; 200. Starting locking position; 300. Ending locking position; 400. Second arc-shaped track;

[0040] 1. Outer casing; 11. Camera hole; 12. Mounting hole;

[0041] 2. Rotary connector; 21. Circular track; 22. Elastic fastener; 221. Barbed part;

[0042] 3. Rotating decorative element; 31. Baffle; 32. Wing plate;

[0043] 4. Long strip sliding hole; 41. Waist-shaped track;

[0044] 5. First guide section; 51. Extension section; 52. Positioning post;

[0045] 6. Retaining wall;

[0046] 7. Slope convexity; 71. Slope surface;

[0047] 8. Second guide section. Detailed Implementation

[0048] To make the objectives, features, and advantages of this utility model more apparent and understandable, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described below are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0049] In the description of this utility model, it should be understood that when a component is considered to be "connected" to another component, it can be directly connected to the other component or there may be a component that is centrally positioned therein. When a component is considered to be "set" on another component, it can be directly set on the other component or there may be a component that is centrally positioned therein.

[0050] Furthermore, terms such as "long," "short," "inner," and "outer" indicate orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings. They are used only for the convenience of describing this utility model and do not indicate or imply that the device or component referred to must have this specific orientation or operate in a specific orientational configuration. Therefore, they should not be construed as limitations of this utility model.

[0051] The following is in conjunction with the appendix Figure 1-6 The technical solution of this utility model will be further illustrated through specific implementation methods.

[0052] Example 1:

[0053] Please refer to Figure 1 and Figure 2 This utility model provides a rotating decorative component shielding structure for use in network camera (IPC) products, including a housing 1, a rotating connector 2, and a rotating decorative component 3.

[0054] The outer casing 1 has a camera hole 11 on its periphery, the rotating connector 2 is located on the end face of the outer casing 1, and one end of the rotating decorative part 3 has a long sliding hole 4. The rotating decorative part 3 is movablely engaged with the rotating connector 2 through the long sliding hole 4.

[0055] Specifically, in some embodiments, the outer shell 1 is a long strip shell structure with two ends; in addition, the circumferential contour of the outer shell 1 is an irregular structure that is relatively flat on both sides. It can be understood that the irregular contour referred to here can be understood as the contour of the outer shell 1 that is outside the circular circumferential contour and has features such as flatness or protrusion. The specific contour of the outer shell 1 is not limited here.

[0056] At this time, the interior of the outer casing 1 is used for the installation of the camera module, and the camera hole 11 on the periphery of the outer casing 1 is used to expose the camera. The camera monitors or records the external environment through the camera hole 11. The structure of the camera module is the existing solution, and the specific structure and principle of the camera module will not be described in detail here.

[0057] At the same time, combined Figure 3The rotating decorative component 3 includes a baffle 31 and a wing plate 32. The wing plate 32 is integrally connected to the baffle 31 and is respectively disposed at both ends of the baffle 31. The rotating decorative component 3 is connected to the rotating connector 2 through the wing plate 32. For example, a long strip sliding hole 4 is provided through one of the wing plates 32. At this time, the wing plate 32 is parallel to the end face of the outer shell 1, and the wing plate 32 extends into one side of the end face of the outer shell 1 during assembly.

[0058] Additionally, the rotating connector 2 is located at one end face of the housing 1. The rotating connector 2 provides a rotational support for the rotating decorative part 3. For ease of understanding, a rotational shaft O passing through the geometric center of the rotating connector 2 is selected here (in conjunction with...). Figure 1 The rotating decorative element 3 can rotate along the rotation axis O, and during the rotation of the rotating decorative element 3, it also rotates around the outer periphery of the outer shell 1.

[0059] Based on this, the length of the elongated sliding hole 4 is greater than the width of the rotating connector 2. The rotating connector 2 is located inside the elongated sliding hole 4, and the elongated sliding hole 4 can provide the rotating connector 2 with linear sliding space, thereby enabling the rotating decorative piece 3 to move back and forth relative to the rotating connector 2. In this process, the rotating decorative piece 3 can move closer to or further away from the outer shell 1.

[0060] Based on the above configuration, the rotating decorative piece 3 has at least two degrees of freedom of movement in two directions. The first degree of freedom of movement is: rotating around the rotating connector 2 as the axis; the other degree of freedom of movement is: on the basis of the first degree of freedom of movement, the rotating decorative piece 3 can also move back and forth in a straight line, so that it moves closer to or away from the outer shell 1.

[0061] Therefore, the rotating decorative element 3 includes at least the following states:

[0062] During the rotation of the rotating decorative piece 3, the rotating connector 2 slides back and forth along the length of the elongated sliding hole 4, so that the rotating decorative piece 3 moves closer to and further away from the outer shell 1. In this process, the rotation radius of the rotating decorative piece 3 is changed so that the rotating decorative piece 3 will not have structural interference with the outer shell 1 when it rotates.

[0063] When the camera hole 11 needs to be opened or closed, the rotating decorative piece 3 rotates around the rotating connector 2 as the rotation center, so that the rotating decorative piece 3 opens or blocks the camera hole 11.

[0064] The rotating decorative element blocking structure provided in this application embodiment, by setting a rotating connector 2 on the outer shell 1 and movably setting the rotating connector 2 in the elongated sliding hole 4 of the rotating decorative element 3, allows the rotating decorative element 3 to slide back and forth relative to the rotating connector 2 during rotation, driving the rotating decorative element 3 away from the outer shell 1 and adjusting it to a position with a suitable rotation radius, avoiding interference between the rotating decorative element 3 and the outer shell 1, and ultimately enabling the rotating decorative element 3 to rotate around the outer shell 1, thereby blocking or opening the camera hole 11. The operation is simple and quick, solving the problem that the existing rotating decorative element 3 cannot meet the blocking requirements of irregular outer shell 1.

[0065] Reference Figure 3 and Figure 4 To enable the rotating connector 2 and the rotating decorative piece 3 to move and connect with each other, the outer edge of the rotating connector 2 is provided with a circular track 21, and the inner edge of the elongated sliding hole 4 is provided with a waist-shaped track 41. The circular track 21 and the waist-shaped track 41 slide and cooperate with each other.

[0066] In some embodiments, the outer edge of the rotating connector 2 has a circular outline, the annular track 21 is located on the outer periphery of the rotating connector 2, and the elongated sliding hole 4 is provided in the shape of an elongated waist. The waist-shaped track 41 extends along the inner edge outline of the elongated sliding hole 4, and the width of the waist-shaped track 41 matches the diameter of the rotating connector 2. At this time, with the cooperation of the annular track 21 and the waist-shaped track 41, on the one hand, the annular track 21 can provide rotation guidance for the rotating decorative piece 3, and on the other hand, since the waist-shaped track 41 has two parallel sides, the two sides can provide linear reciprocating movement guidance for the rotating decorative piece 3, so that the rotating decorative piece 3 can rotate and reciprocate relative to the outer shell 1.

[0067] It is understandable that the opening profile of the elongated sliding hole 4 can also be a rectangular profile, which also allows the rotating connector 2 to move within the elongated sliding hole 4. Therefore, regardless of the specific structure of the opening profile of the elongated sliding hole 4, as long as it allows the rotating connector 2 to move and enables the rotating decorative part 3 to achieve pull-out adjustment and rotation, it should be included in the equivalent interpretation scope of this solution.

[0068] Continue to refer to Figure 3 and Figure 4 To improve the stability of the fit between the rotating decorative piece 3 and the rotating connector 2, in one embodiment, the circular track 21 is a grooved track, and the waist-shaped track 41 is a raised track, with the waist-shaped track 41 embedded in the circular track 21.

[0069] Specifically, the circular track 21 is recessed from the outside to the inside along the circumferential direction of the rotating connector 2. In addition, the waist-shaped track 41 is integrally connected with the rotating decorative piece 3. At this time, with the interlocking of the circular track 21 and the waist-shaped track 41, the rotating decorative piece 3 and the rotating connector 2 are not easy to come loose from each other, and the stability of their cooperation is optimized and improved.

[0070] Alternatively, in another embodiment, the annular track 21 can be configured as a raised track, the waist-shaped track 41 as a recessed track, and the annular track 21 can be embedded in the waist-shaped track 41.

[0071] Specifically, the waist-shaped track 41 is recessed from the outside to the inside at the hole wall of the elongated sliding hole 4. In addition, the circular track 21 is integrally connected with the rotating connector 2. At this time, with the interlocking of the circular track 21 and the waist-shaped track 41, the rotating decorative piece 3 and the rotating connector 2 are also less likely to become loose, and the stability of their cooperation is also optimized and improved.

[0072] Therefore, regardless of the specific structure of the waist-shaped track 41 and the circular track 21, as long as they adopt the concave-convex interlocking method and improve the stability of the fit between the rotating decorative piece 3 and the rotating connecting piece 2, they should be included in the scope of this solution. No restrictions are placed on the specific setting of the waist-shaped track 41 and the circular track 21.

[0073] Furthermore, the rotating connector 2 is detachably mounted on the housing 1. The end face of the housing 1 is provided with an assembly hole 12, and the rotating connector 2 is provided with an elastic fastener 22. The rotating connector 2 is movably fastened in the assembly hole 12 by the elastic fastener 22.

[0074] For details, please refer to... Figure 3 and Figure 4 In some embodiments, the elastic fastener 22 includes a plurality of spring elements spaced apart along the circumferential direction of the rotating connector 2. The spring elements are provided with barbs 221. At this time, the spring elements have a certain deformation function. By elastically inserting the plurality of spring elements into the assembly hole 12 and making the barbs 221 hang on the inner wall of the housing 1, the detachable installation of the rotating connector 2 can be achieved.

[0075] It is understood that in other embodiments, the rotary connector 2 may also be detachably connected to the housing 1 by means of a threaded connection, or may be fixed to the housing by means of magnetic attraction. The specific setting method of the rotary connector 2 is not limited here. Regardless of the specific method used, it should be included in the scope of interpretation of this solution.

[0076] Based on the above configuration, by detachably mounting the rotary connector 2 onto the housing 1, the molding difficulty of the rotary connector 2 can be effectively reduced, and the above structure makes the rotary connector 2 easy to install, thereby helping to reduce the configuration cost of the structure.

[0077] Furthermore, refer to Figure 4 and Figure 5 To optimize the handling feel of the rotating decorative piece 3, the rotating connector 2 is provided with a first guide part 5, and the rotating decorative piece 3 is provided with a first arc-shaped track 100 for sliding cooperation with the first guide part 5, and the extended contour of the first arc-shaped track 100 is adapted to the moving path of the rotating decorative piece 3.

[0078] Specifically, in some embodiments, the first guide portion 5 includes an extension portion 51 integrally disposed on one side of the rotating connector 2, and a positioning post 52 disposed on the extension portion 51. Both the extension portion 51 and the positioning post 52 can be made of plastic material. In this case, the extension portion 51 has the elastic deformation capability to swing back and forth to both sides.

[0079] Furthermore, two sets of opposing baffles 6 are integrally provided on the inner side of the rotating connector 2, and the two sets of baffles 6 form a first arc track 100. At this time, the positioning post 52 is inserted into the first arc track 100. During the rotation of the rotating decorative piece 3, the positioning post 52 slides and abuts against the baffles 6, so that the baffles 6 can provide displacement guidance to the first guide part 5.

[0080] It should be explained that when using an irregular outer shell 1, the rotating decorative piece 3 usually has a more ideal movement path. When the rotating decorative piece 3 moves along this ideal path, it will not interfere with the outer shell 1. Furthermore, since there is relative movement between the positioning post 52 and the rotating decorative piece 3, the movement trajectory of the positioning post 52 within the first arc-shaped track 100 corresponds to the movement path of the rotating decorative piece 3. At this time, by adapting the extended contour of the first arc-shaped track 100 to the movement path of the rotating decorative piece 3, the first arc-shaped track 100 can be used to guide the rotating decorative piece 3 to slide repeatedly along the ideal movement path, thereby ensuring that the rotating decorative piece 3 can smoothly and accurately achieve rotation adjustment, and the operating feel is significantly improved.

[0081] Continue to refer to Figure 5 The first arc track 100 is provided with a starting fastener 200 and an ending fastener 300 respectively, and the first guide part 5 is movably fastened to the starting fastener 200 and the ending fastener 300 respectively.

[0082] Specifically, in some embodiments, a fastening protrusion can be provided on the bottom wall of the first arc-shaped track 100, and the fastening protrusion is configured as two protrusions respectively close to both ends of the first arc-shaped track 100. The two fastening protrusions can separate the ends of the first arc-shaped track 100, thereby forming a starting fastening position 200 and an ending fastening position 300 at both ends of the first arc-shaped track 100, respectively. By utilizing the elastic deformation capability of the first guide part itself, under the action of external force, the positioning post 52 is rotated to pass over the fastening protrusion and movably fasten to the starting fastening position 200 or the ending fastening position 300.

[0083] It is understandable that when the positioning post 52 slides to the starting latch 200 or the ending latch 300, the rotating decorative piece 3 can obtain a locking force to keep it in the state of opening or closing the camera hole 11, thereby preventing the rotating decorative piece 3 from swinging arbitrarily due to accidental contact.

[0084] In one configuration, the pause state of the rotating decorative element 3 can be configured as follows:

[0085] When the first guide part 5 is fastened and positioned to the starting fastening position 200, the rotating decorative part 3 blocks the camera hole 11;

[0086] When the first guide part 5 is fastened and positioned to the end fastening position 300, the rotating decorative part 3 opens the camera hole 11.

[0087] The above configuration method can maintain the camera hole 11 in both the blocked and open states.

[0088] Correspondingly, in another configuration, the pause state of the rotating decorative element 3 can also be configured as follows:

[0089] When the rotating decorative piece 3 opens the camera hole 11, the first guide part 5 is fastened and positioned at the starting fastening position 200.

[0090] When the rotating decorative piece 3 blocks the camera hole 11, the first guide part 5 is engaged and positioned at the end point 300.

[0091] The above configuration method can also maintain the state of the camera hole 11 being blocked or open.

[0092] It is understood that no specific restrictions are placed on the corresponding states of the first guide part 5 when it is fastened to the starting fastening position 200 and the ending fastening position 300. In addition, in other embodiments, magnetic positioning can be used to keep the rotating decorative part 3 in a stopped state. However, as long as a positioning method that keeps the rotating decorative part 3 from blocking or opening the camera hole 11 is used, it should be included in the scope of this solution.

[0093] Based on the above scheme, by setting a starting buckle 200 and an ending buckle 300 on the path of the first arc track 100, the rotating decorative piece 3 can remain in a stopped state when the camera hole 11 is opened or closed, making the operation more convenient and the user experience further optimized and improved.

[0094] Furthermore, continue to refer to Figure 5 The first arc-shaped track 100 is provided with a ramp protrusion 7, which has a ramp surface 71 that slides with the first guide part 5. The ramp surface 71 is used to guide the first guide part 5 located in the first arc-shaped track 100 to the starting fastening position 200 or the ending fastening position 300.

[0095] Understandably, the ramp protrusion 7 is equivalent to the snap-fit ​​protrusion mentioned above. It is also located at the bottom wall of the first arc track 100 and is used to form the starting snap position 200 and the ending snap position 300.

[0096] At this time, the ramp surface 71 slides and abuts against the positioning post 52. During the rotation of the rotating decorative piece 3, the positioning post 52 will pass through the ramp surface 71 and deform the first guide part 5 under the guidance of the ramp surface 71, and push the first guide part 5 away from the first arc track 100, the starting buckle 200 or the ending buckle 300, until the positioning post 52 continues to move and falls into other parts.

[0097] Specifically, the above process includes at least the following two transition states:

[0098] In the first state, the first guide part 5 switches between the first arc track 100 and the starting buckle 200. Specifically, the positioning post 52 is located in the starting buckle 200. At this time, by rotating the decorative piece 3, the positioning post 52 is made to abut against the ramp surface 71, gradually deforming the first guide part 5 and loosening the starting buckle 200, and finally falling into the first arc track 100. Conversely, the positioning post 52 can also be driven from the first arc track 100 into the starting buckle 200 in the same way.

[0099] In the second state, the first guide part 5 switches between the first arc track 100 and the end point fastener 300. Specifically, the positioning post 52 is located in the end point fastener 300. At this time, by rotating the decorative piece 3, the positioning post 52 is made to abut against the ramp surface 71, gradually deforming the first guide part 5 and loosening the end point fastener 300, and finally falling into the first arc track 100. Conversely, the positioning post 52 can also be driven from the first arc track 100 into the end point fastener 300 in the same way.

[0100] By adopting the above scheme, since the ramp protrusion 7 has a certain height, on the one hand, it can provide a limit for the positioning post 52 located in the starting buckle 200 and the ending buckle 300, so that the rotating decorative part 3 can remain in the open or closed state without the action of external force, thus ensuring structural stability; on the other hand, the ramp surface 71 of the ramp protrusion 7 can guide the deformation of the first guide part 5, making it easier to loosen the first guide part 5 when external force is applied, making the operation smoother and more convenient, and further optimizing and improving the user experience.

[0101] Furthermore, in some embodiments, the end face of the positioning post 52 may be chamfered, which can further improve the smoothness of operation and thus further optimize the user experience.

[0102] Reference Figure 3 and Figure 6 The other end of the rotating decorative piece 3 is provided with a second guide part 8, and the other end of the outer shell 1 away from the rotating connector 2 is provided with a second arc-shaped track 400 that slides with the second guide part 8. The extended contour of the second arc-shaped track 400 is adapted to the rotating decorative piece 3 and the moving path.

[0103] Specifically, the second arc-shaped track 400 is recessed from the outside to the inside at the end face of the outer shell 1, and the second guide part 8 has a columnar structure. The second guide part 8 is disposed on the wing plate 32 at the other end of the outer shell 1 away from the elongated sliding hole 4. The second guide part 8 is inserted into the second arc-shaped track 400 and slides against the second arc-shaped track 400.

[0104] Based on the above configuration, the second guide part 8 can provide displacement guidance to the other end of the rotating decorative part 3, so that both ends of the rotating decorative part 3 can be guided to move, making it less likely for both ends of the rotating decorative part 3 to deviate when rotating, making the overall movement of the rotating decorative part 3 more stable, and also further optimizing the operating feel.

[0105] Furthermore, referring to Figure 5 and Figure 6 The first arc track 100 is set as two tracks with mirror symmetry, and the second arc track 400 is set as two tracks with mirror symmetry.

[0106] Specifically, a reference plane I is selected with the rotation axis O. The length direction of the outer shell 1 is perpendicular to the reference plane. At this time, the first arc track 100 and the second arc track 400 are mirror-symmetrically arranged, and the ends of the two first arc tracks 100 are connected to each other and share a starting buckle 200. The ends of the two second arc tracks 400 are connected to each other.

[0107] Based on the above settings, the rotating decorative piece 3 can rotate in opposite directions along the first arc track 100 and the second arc track 400, which are set as mirror images of the reference plane. This further increases the range of motion of the rotating decorative piece 3, allowing users to choose the opening method of the rotating decorative piece 3 according to their own needs. The user experience and operation feel are further optimized and improved.

[0108] The rotating decorative element blocking structure provided in this application has the following beneficial effects:

[0109] 1. It can be matched with different body shapes, and the lens can be blocked through this design, which has good versatility.

[0110] 2. The rotating decorative piece 3 is detachably mounted on the outer shell 1 via the rotating connector 2, which allows for easy disassembly of the rotating decorative piece 3 and facilitates maintenance and replacement.

[0111] 3. The rotating decorative piece 3 can be removed without affecting the overall appearance of the machine. In other words, there is no extra structure that affects the appearance. This allows more users to choose whether to install the rotating decorative piece 3, thus optimizing and improving the product experience.

[0112] Example 2:

[0113] Based on Embodiment 1, features not explained in this embodiment are explained in Embodiment 1 and will not be repeated here. This embodiment provides a camera device, including the rotating decorative shielding structure in Embodiment 1, and also includes a camera module installed inside the housing 1.

[0114] Based on the above settings, a camera device with excellent handling and the ability to meet the occlusion requirements of an irregularly shaped casing 1 was obtained.

[0115] Therefore, the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. A rotating decorative element blocking structure, characterized in that, include: The outer casing (1) has a camera hole (11) on its periphery; A rotating connector (2) is disposed at the end face of the outer casing (1); And a rotating decorative piece (3), one end of which is provided with a long sliding hole (4), the rotating decorative piece (3) is movably engaged with the rotating connector (2) through the long sliding hole (4); The rotating decorative element (3) includes at least the following states: The rotating connector (2) slides back and forth along the length of the elongated sliding hole (4) so ​​that the rotating decorative piece (3) moves closer to and further away from the outer shell (1) in the process, thereby changing the rotation radius of the rotating decorative piece (3); The rotating decorative element (3) rotates around the rotating connector (2) as the rotation center, so that the rotating decorative element (3) opens or blocks the camera hole (11).

2. The rotating decorative element blocking structure according to claim 1, characterized in that, The outer edge of the rotating connector (2) is provided with a circular track (21), and the inner edge of the elongated sliding hole (4) is provided with a waist-shaped track (41). The circular track (21) and the waist-shaped track (41) slide together.

3. The rotating decorative element blocking structure according to claim 2, characterized in that, The circular track (21) is a grooved track, and the waist-shaped track (41) is a raised track. The waist-shaped track (41) is embedded in the circular track (21). Alternatively, the annular track (21) may be a raised track, and the waist-shaped track (41) may be a recessed track, with the annular track (21) embedded within the waist-shaped track (41).

4. The rotating decorative element blocking structure according to any one of claims 1-3, characterized in that, The end face of the outer shell (1) is provided with an assembly hole (12), and the rotating connector (2) is provided with an elastic fastener (22). The rotating connector (2) is movably fastened to the assembly hole (12) through the elastic fastener (22).

5. The rotating decorative element blocking structure according to claim 1, characterized in that, The rotating connector (2) is provided with a first guide part (5), and the rotating decorative part (3) is provided with a first arc-shaped track (100) for sliding cooperation with the first guide part (5), and the extended contour of the first arc-shaped track (100) is adapted to the moving path of the rotating decorative part (3).

6. The rotating decorative element blocking structure according to claim 5, characterized in that: The first arc track (100) is provided with a starting fastener (200) and an ending fastener (300) on its path, and the first guide part (5) is movably fastened to the starting fastener (200) and the ending fastener (300) respectively; When the first guide part (5) is fastened and positioned at the starting fastening position (200), the rotating decorative part (3) blocks the camera hole (11); When the first guide part (5) is engaged and positioned at the end point (300), the rotating decorative part (3) opens the camera hole (11).

7. The rotating decorative element blocking structure according to claim 6, characterized in that, The first arc-shaped track (100) is provided with a ramp protrusion (7), the ramp protrusion (7) has a ramp surface (71) that slides with the first guide part (5), the ramp surface (71) is used to guide the first guide part (5) located in the first arc-shaped track (100) to the starting fastener (200) or the ending fastener (300).

8. The rotating decorative element blocking structure according to claim 5, characterized in that, The other end of the rotating decorative piece (3) is provided with a second guide part (8), and the other end of the outer shell (1) away from the rotating connector (2) is provided with a second arc-shaped track (400) that slides with the second guide part (8). The extended contour of the second arc-shaped track (400) is adapted to the rotating decorative piece (3) and the moving path.

9. The rotating decorative element blocking structure according to claim 8, characterized in that, The first arc track (100) is configured as two tracks arranged in a mirror symmetry; the second arc track (400) is configured as two tracks arranged in a mirror symmetry.

10. A camera device, characterized in that, Includes a rotating decorative element shielding structure as described in any one of claims 1-9.