Decorative lamp structure and vehicle
By designing the active light-emitting module and sliding block system for the decorative light structure, the problem of high-temperature ablation caused by sunlight focusing on vehicle lenses was solved, extending the life of the lighting module and improving safety and user experience.
Patent Information
- Application Number
- CN202520545142.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-03-26
AI Technical Summary
The lenses of existing vehicle lighting modules are prone to focusing under sunlight, which can lead to high-temperature ablation, posing a safety hazard and reducing their service life.
A decorative lamp structure is designed, including a fixed base, a first light-emitting module, a second light-emitting module, and a third light-emitting module. The movable bracket of the first light-emitting module is controlled to move on the fixed base by a driving component, so as to flexibly close or open the opening to avoid direct sunlight on the lens. The movement accuracy is improved by the sliding groove and the slider, and the reliability is enhanced by the connecting parts and the clamping part.
It extends the lifespan of the lighting module, improves vehicle safety, enhances the user experience, and protects the light-emitting components from damage through an embedded design.
Smart Images

Figure CN223795097U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of lighting technology, and more specifically, to a decorative lamp structure and a vehicle. Background Technology
[0002] Vehicles are typically equipped with lighting modules to provide high and low beam illumination, and these modules usually employ a combination of high and low beam lenses to achieve optimal lighting performance. However, when sunlight shines on the lenses, it can cause focusing, leading to high temperatures that can ablate the lenses and surrounding components, posing a certain safety hazard. Utility Model Content
[0003] To address the aforementioned issues, this application provides a decorative lamp structure and vehicle, aiming to resolve the problem in related technologies where sunlight shining on a lens easily creates a focusing phenomenon, leading to high-temperature ablation of the lens and surrounding components, posing certain safety hazards.
[0004] In a first aspect, this application provides a decorative lamp structure, including a mounting base, a first light-emitting module, a second light-emitting module, and a third light-emitting module. The mounting base has an opening. The first light-emitting module is movably disposed on the mounting base to close or open the opening. The second light-emitting module is connected to a first side of the mounting base. The third light-emitting module is connected to a second side of the mounting base opposite to the first light-emitting module. When the first light-emitting module closes the opening, the first light-emitting module, the second light-emitting module, and the third light-emitting module combine to form a first light pattern. When the first light-emitting module opens the opening, the first light-emitting module, the second light-emitting module, and the third light-emitting module combine to form a second light pattern.
[0005] In the above technical solution, when the vehicle is in operation, the first light-emitting module moves to the open position to open the opening, exposing the lighting module. At this time, the lighting module can illuminate through the opening, and the light-emitting position of the first light-emitting module is below the opening. When the vehicle is not in operation, the first light-emitting module moves to the closed position to close the opening, blocking the lighting module, and the light-emitting position of the first light-emitting module covers the opening. In this case, sunlight will shine on the first light-emitting module, not the lens of the lighting module, thus avoiding focusing when sunlight shines on the lighting module, preventing high-temperature ablation of the lighting module, extending the lifespan of the lighting module, and improving vehicle safety. Furthermore, when the position of the first light-emitting module on the mounting bracket changes, the light pattern formed by it, the fixed second light-emitting module, and the third light-emitting module will also change accordingly. This allows the user to accurately determine the opening and closing status of the opening in real time based on the light pattern formed by the first, second, and third light-emitting modules, while also expanding the design of the decorative light structure and improving the user experience.
[0006] In conjunction with the first aspect, in some possible implementations, the first light-emitting module includes a movable bracket and a driving component; the movable bracket is movably disposed on the fixed base, and the first light-emitting component is mounted on the movable bracket; the driving component is fixedly connected to the fixed base and the movable bracket, and the driving component is configured to drive the movable bracket to move along a first direction to close or open the opening.
[0007] In the above technical solution, the positions of the movable bracket and the first light-emitting element on the fixed base can be flexibly changed by the driving component, providing high flexibility. By flexibly closing or opening the opening and changing the light-emitting position of the first light-emitting element on the fixed base, the user can accurately know the opening / closing status in real time based on the light-emitting position of the first light-emitting element, improving the user experience. Secondly, the driving component can precisely control the position of the movable bracket, improving the movement accuracy of the movable bracket and the first light-emitting element, ensuring that the movable bracket and the first light-emitting element can move into place, making the opening completely exposed or completely blocked.
[0008] In combination with the first aspect and the above-described implementations, in some possible implementations, the movable bracket includes a first connecting part, a second connecting part, a connecting rod, and a fixing rod; the first connecting part is movably connected to a first side of the fixed seat; the second connecting part is movably connected to a second side of the fixed seat, and the second connecting part is parallel to the first connecting part; the connecting rod is fixedly connected to the driving component, and the connecting rod is angularly connected to the first connecting part and the second connecting part; the fixing rod is angularly connected to the first connecting part and the second connecting part, and the fixing rod is parallel to the connecting rod, the fixing rod is provided with a first mounting groove, the first mounting groove extends along a second direction, and the first light-emitting component is embedded in the first mounting groove; wherein, the second direction is perpendicular to the first direction.
[0009] In the above technical solution, the movable bracket is movably connected to the first and second sides of the fixed base via the first connecting part and the second connecting part. By setting the first connecting part and the second connecting part, the overall mobility reliability of the movable bracket on the fixed base can be improved, avoiding the problem of deviation in the movement trajectory of the movable bracket, thereby improving the accuracy of the movable bracket's movement on the fixed base, so that the movable bracket and the first light-emitting element can be moved into place. Secondly, the first light-emitting element is embedded in the first mounting groove, which improves the firmness of the first light-emitting element fixed on the movable bracket, and avoids loosening or damage to the first light-emitting element due to external vibration or impact.
[0010] In combination with the first aspect and the above-described implementation, in some possible implementations, a first groove is provided on the first side of the fixing base, the first groove extends along a first direction, a first slider is provided laterally on the first connecting part, and the first slider is slidably disposed in the first groove; and, a second groove is provided on the second side of the fixing base, the second groove extends along a first direction, a second slider is provided laterally on the second connecting part, and the second slider is slidably disposed in the second groove.
[0011] In the above technical solution, the first connecting part and the second connecting part can be moved relative to the fixed seat by two sets of sliding grooves and sliders. The design of the sliding grooves can provide a very smooth moving experience to reduce the vibration and shaking of the slider during the movement. Secondly, the sliding grooves and sliders can precisely control the moving distance and position to improve the moving accuracy of the movable bracket on the fixed seat.
[0012] In combination with the first aspect and the above implementation methods, in some possible implementation methods, the connecting rod is provided with a through groove that extends along the first direction, and the sidewall of the through groove is provided with multiple limiting members; the first light-emitting module also includes a connector, one end of which is connected to the multiple limiting members, and the other end of which is connected to the driving member.
[0013] In the above technical solution, compared to directly connecting or welding the drive component to the connecting rod, the drive component and connecting rod are fixedly connected using a connector, providing a more reliable and adjustable connection method. Thus, if either the drive component or the connecting rod fails, because they are fixedly connected by the connector, disassembly, repair, or replacement is convenient without requiring extensive structural adjustments. Furthermore, the connector design also acts as a buffer, effectively reducing the transmission of vibrations generated by the drive component during operation to the connector and even the entire decorative lamp structure, thus reducing noise while ensuring the mechanical performance of the decorative lamp structure.
[0014] In combination with the first aspect and the above-mentioned implementation methods, in some possible implementation methods, the connector includes a third connecting part and a clamping part; the side wall of the third connecting part is provided with at least one spring piece, the third connecting part is located in the through groove, and the spring piece abuts against the limiting member; the clamping part is fixedly connected to the third connecting part, and the opening of the clamping part is connected to the driving member.
[0015] In the above technical solution, when the third connecting part is located in the through groove, the spring piece on its side wall abuts against the spring piece in the through groove to achieve a fixed connection between the third connecting part and the connecting rod, thereby improving the connection strength between the third connecting part and the connecting rod. The opening of the clamping part is connected to the driving component, which can ensure that the transmission rod of the driving component is firmly fixed in the axial direction, preventing the driving component from loosening or falling off due to vibration or other external factors, thereby improving the reliability of the entire decorative lamp structure. Secondly, the clamping part can fix the transmission rod of the driving component through a uniformly distributed force, avoiding the stress concentration problem caused by excessive local pressure, and extending the service life of the driving component and the connecting part.
[0016] In combination with the first aspect and the above implementation methods, in some possible implementation methods, the first light-emitting module further includes a first baffle, which covers the connecting rod and the fixing rod and is connected to the first connecting part, the second connecting part and the fixing rod. A first light-emitting groove is provided at the position of the first baffle opposite to the first mounting groove, and the first light-emitting element is located in the first light-emitting groove.
[0017] In the above technical solution, when the movable bracket moves to the closed position, the first baffle covering the connecting rod and the fixed rod is located above the opening, thus shielding the opening and the movable bracket and intercepting dust, moisture, and other impurities. This prevents dust and moisture from adhering to the lighting module through the movable bracket and the opening, thereby affecting the normal use of the subsequent lighting module. Secondly, the first baffle also improves the aesthetics of the first light-emitting module.
[0018] In combination with the first aspect and the above-mentioned implementation methods, in some possible implementation methods, the second light-emitting module includes a first fixed bracket and a second baffle; the first fixed bracket is connected to a first side of the fixed base, the first fixed bracket is provided with a second mounting groove, the second mounting groove extends along a second direction, and a second light-emitting element is installed in the second mounting groove; the second baffle covers the first fixed bracket and is connected to the first fixed bracket, and a second light-emitting groove is provided at a position opposite to the second mounting groove on the second baffle, and the second light-emitting element is located in the second light-emitting groove.
[0019] In the above technical solution, a second mounting groove is provided on the first fixed bracket. The size of the second mounting groove matches the size of the second light-emitting element, allowing the second light-emitting element to be embedded in the second mounting groove. This improves the firmness of the second light-emitting element fixed on the first fixed bracket and prevents it from loosening or being damaged due to external vibration or impact. Secondly, the embedded design allows the second light-emitting element to be flush with or slightly recessed from the surrounding surfaces of the first fixed bracket and the second baffle, reducing any unsightly appearance. Furthermore, embedding the second light-emitting element in the second mounting groove effectively prevents dust, moisture, and other external factors from damaging the second light-emitting element, thereby extending its service life.
[0020] In combination with the first aspect and the above-mentioned implementation methods, in some possible implementation methods, the third light-emitting module includes a second fixed bracket and a third baffle; the second fixed bracket is connected to the second side of the fixed base, the second fixed bracket is provided with a third mounting groove, the third mounting groove extends along the second direction, and a third light-emitting element is installed in the third mounting groove; the third baffle covers the second fixed bracket and is connected to the second fixed bracket, and a third light-emitting groove is provided at the position opposite to the third mounting groove on the third baffle, and the third light-emitting element is located in the third mounting groove; wherein, when the movable bracket closes the opening, the first light-emitting element, the second light-emitting element, and the third light-emitting element are flush along the second direction.
[0021] In the above technical solution, the second fixed bracket is provided with a third mounting groove. The size of the third mounting groove matches the size of the third light-emitting element, allowing the third light-emitting element to be embedded in the third mounting groove. This improves the firmness of the third light-emitting element fixed to the second fixed bracket and prevents it from loosening or being damaged due to external vibration or impact. Secondly, the embedded design allows the third light-emitting element to be flush with or slightly recessed from the surrounding surfaces of the second fixed bracket and the third baffle, reducing any unsightly appearance. Furthermore, embedding the third light-emitting element in the third mounting groove effectively prevents dust, moisture, and other external factors from damaging the third light-emitting element, thereby extending its service life.
[0022] Secondly, embodiments of this application also provide a vehicle, including a lighting module and a decorative lamp structure as described in any of the first aspects, wherein the openings of the lighting module and the decorative lamp structure are opposite to each other. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of a decorative lamp structure provided in an embodiment of this application;
[0024] Figure 2 This is a schematic diagram of another decorative lamp structure provided in an embodiment of this application;
[0025] Figure 3 This is a partial structural diagram of a decorative lamp structure provided in an embodiment of this application;
[0026] Figure 4 This is a partial structural diagram of another decorative lamp structure provided in an embodiment of this application;
[0027] Figure 5 This is a partially exploded structural diagram of a decorative lamp structure provided in an embodiment of this application;
[0028] Figure 6 This is a schematic diagram of the structure of a fixing base provided in an embodiment of this application;
[0029] Figure 7 This is a side view of a decorative lamp structure provided in an embodiment of this application;
[0030] Figure 8 This is a side view of another decorative lamp structure provided in an embodiment of this application;
[0031] Figure 9 This is a cross-sectional structural diagram of a decorative lamp structure provided in an embodiment of this application;
[0032] Figure 10 This is a cross-sectional structural diagram of another decorative lamp structure provided in an embodiment of this application;
[0033] Figure 11 This is a partially exploded structural diagram of another decorative lamp structure provided in an embodiment of this application;
[0034] Figure 12 This is an exploded structural diagram of a decorative lamp structure provided in an embodiment of this application;
[0035] Figure 13 This is an exploded view of the rear structure of a decorative lamp structure provided in an embodiment of this application.
[0036] The following are the labeling elements in the figure:
[0037] 1. Decorative lamp structure; 11. Fixing base; 11A. Opening; 111. First slide groove; 111A. First notch; 112. Second slide groove; 112A. Second notch; 12. First light-emitting module; 12A. First light-emitting element; 121. Movable bracket; 1211. First connecting part; 1212. Second connecting part; 1213. Connecting rod; 1213A. Through groove; 1214. Fixing rod; 1214A. First mounting groove; 1215. First slider; 1216. Second slider; 1217. Limiting element; 122. Driving element; 123. Connecting element; 124. 1. Third connecting part; 1232. Spring piece; 1233. Clamping part; 124. First baffle; 124A. First light-emitting slot; 13. Second light-emitting module; 13A. Second light-emitting element; 131. First fixing bracket; 131A. Second mounting slot; 132. Second baffle; 132A. Second light-emitting slot; 14. Third light-emitting module; 141. Second fixing bracket; 141A. Third mounting slot; 142. Third baffle; 142A. Third light-emitting slot; AA. First direction; BB. Second direction; 15. First lamp board; 16. Second lamp board; 17. Third lamp board. Detailed Implementation
[0038] The technical solutions in this application will be clearly and thoroughly described below with reference to the accompanying drawings. In the description of the embodiments of this application, unless otherwise stated, " / " means "or," for example, A / B can mean A or B. "And / or" in the text is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, and B existing alone. Furthermore, in the description of the embodiments of this application, "multiple" refers to two or more than two.
[0039] Hereinafter, the terms "first" and "second" are used for descriptive purposes only and should not be construed as implying or suggesting relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature.
[0040] Vehicles are typically equipped with lighting modules to provide high and low beam illumination. To offer superior lighting performance, vehicles currently often use a combination of high and low beam lenses. This combination is relatively small and provides excellent illumination, offering drivers strong brightness and clear illumination boundaries, thus improving the driving experience. However, when sunlight shines on the lens, it can cause focusing, leading to high temperatures that can ablate the lens and surrounding components, reducing their lifespan and posing certain safety hazards.
[0041] Therefore, this application provides a decorative lamp structure and a vehicle. The first light-emitting module in the decorative lamp structure can not only flexibly close or open the opening to extend the service life of the lighting module, but also flexibly change its light-emitting position on the fixed base, so that the user can know the opening and closing status of the opening in real time based on different light-emitting positions.
[0042] The decorative light structure and vehicle provided in the embodiments of this application are described below with reference to the accompanying drawings.
[0043] This application provides a vehicle including a lighting module and a decorative light structure. The decorative light structure covers the lighting module. When the vehicle is in operation (e.g., in motion), the decorative light structure exposes the lighting module to ensure its lighting reliability and achieve high and low beam illumination. When the vehicle is not in operation (e.g., off), the decorative light structure covers the lighting module to shield it, preventing sunlight from focusing and causing high-temperature ablation, thus extending the lifespan of the lighting module and improving vehicle safety.
[0044] To allow the decorative light structure to flexibly conceal or expose the lighting module, please refer to an example. Figure 1 and Figure 2 As shown, the decorative lamp structure 1 includes a fixing base 11 and a first light-emitting module 12. The fixing base 11 is provided with an opening 11A. The lighting module (not shown in the figure) is opposite to the opening 11A of the decorative lamp structure 1. The first light-emitting module 12 is movably disposed on the fixing base 11 to close or open the opening 11A.
[0045] In this example, when the vehicle is in operation, such as Figure 2 As shown, the first light-emitting module 12 moves to the open position to open the opening 11A, exposing the lighting module. At this time, the lighting module can provide illumination through the opening 11A, and the light-emitting position of the first light-emitting module 12 is below the opening 11A. When the vehicle is not in operation, to prevent sunlight from shining on the lens of the lighting module and causing it to burn out, as... Figure 1As shown, the first light-emitting module 12 moves to the closed position to close the opening 11A, thus blocking the lighting module and covering the opening 11A with the light-emitting position of the first light-emitting module 12. At this time, sunlight shines on the first light-emitting module 12, rather than the lens of the lighting module, thereby avoiding focusing when sunlight shines on the lighting module, which could lead to high-temperature ablation of the lighting module. This extends the lifespan of the lighting module and improves vehicle safety. Thus, when the first light-emitting module 12 is movably mounted on the fixed base 11, it can not only flexibly close or open the opening 11A, but also flexibly change its light-emitting position on the fixed base 11, allowing the user to accurately determine the opening / closing status of the opening 11A in real time based on the light-emitting position of the first light-emitting module 12.
[0046] In one example, please refer to Figure 1 and Figure 2 As shown, the decorative lamp structure 1 also includes a second light-emitting module 13 and a third light-emitting module 14. The second light-emitting module 13 is connected to the first side of the fixing base 11, and the third light-emitting module 14 is connected to the second side of the fixing base 11 away from the first light-emitting module 12. It can be understood that the second light-emitting module 13 and the third light-emitting module 14 are respectively arranged on opposite sides of the fixing base 11, such as the left and right sides, or the top and bottom sides.
[0047] In this example, the second light-emitting module 13 and the third light-emitting module 14 are fixedly connected to the first and second sides of the mounting base 11, respectively, meaning that the positions of the second light-emitting module 13 and the third light-emitting module 14 relative to the mounting base 11 are relatively fixed. At this time, the movable first light-emitting module 12 will form different light patterns with the second light-emitting module 13 and the third light-emitting module 14. For example, as... Figure 1 As shown, when the first light-emitting module 12 closes the opening 11A, the first light-emitting module 12, the second light-emitting module 13, and the third light-emitting module 14 combine to form a first light pattern. This first light pattern is a through-type horizontal stripe, meaning the light pattern of the decorative lamp structure 1 is in a straight line, which is aesthetically pleasing. For example, as... Figure 2 As shown, when the first light-emitting module 12 opens the opening 11A, the first light-emitting module 12, the second light-emitting module 13, and the third light-emitting module 14 combine to form a second light pattern, which is three parallel and staggered horizontal light stripes. Thus, when the position of the first light-emitting module 12 on the fixing base 11 changes, the light pattern formed by it and the fixed second light-emitting module 13 and third light-emitting module 14 will also change accordingly. This allows the user to accurately determine the opening and closing state of the opening 11A in real time based on the light pattern formed by the first light-emitting module 12, the second light-emitting module 13, and the third light-emitting module 14, while also expanding the shape of the decorative lamp structure 1 and improving the user experience.
[0048] Optionally, the mounting base 11 is fixedly connected to the vehicle body. In this case, the second light-emitting module 13 and the third light-emitting module 14 are not only fixedly connected to the mounting base 11, but also fixedly connected to the vehicle body to improve the connection strength between the second light-emitting module 13 and the third light-emitting module 14 and the vehicle.
[0049] To allow the first light-emitting module 12 to flexibly obscure or expose the lighting module, in one example, please refer to... Figure 3 and Figure 4 As shown, the first light-emitting module 12 includes a movable bracket 121 and a driving member 122. The movable bracket 121 is movably mounted on the fixed base 11, and the first light-emitting element 12A is mounted on the movable bracket 121. The driving member 122 is fixedly connected to the fixed base 11 and the movable bracket 121. The driving member 122 is configured to drive the movable bracket 121 to move along the first direction AA to close or open the opening 11A. It is worth noting that the specific direction of the first direction AA is related to the installation state of the decorative light structure 1. For example, when the decorative light structure 1 is horizontally installed on the vehicle body, the first direction AA can be as follows: Figure 3 and Figure 4 The vertical direction shown, the first direction AA, can also refer to other directions, and this application does not impose specific restrictions on this.
[0050] In this example, the drive unit 122 can drive the movable bracket 121 to move along the first direction AA to the corresponding position. When the vehicle is not in operation, such as Figure 3 As shown, the driving component 122 drives the first light-emitting module 12 to move to the closed position to close the opening 11A, so that the lighting module is blocked by the movable bracket 121. At this time, sunlight will shine on the movable bracket 121, rather than the lens of the lighting module, thereby avoiding the focusing phenomenon when sunlight shines on the lighting module, which would cause high temperature ablation of the lighting module, thus extending the service life of the lighting module and improving vehicle safety. When the vehicle is in working condition, such as Figure 4 As shown, the driving component 122 drives the first light-emitting module 12 to move to the open position to open the opening 11A, exposing the lighting module. At this time, the lighting module can provide illumination through the opening 11A. Secondly, when the driving component 122 drives the movable bracket 121 to move along the first direction AA, it also drives the first light-emitting element 12A mounted on the movable bracket 121 to move accordingly. When the driving component 122 drives the first light-emitting module 12 to the closed position, the first light-emitting element 12A covers the opening 11A; when the driving component 122 drives the first light-emitting module 12 to the open position, the first light-emitting element 12A is below the opening 11A.
[0051] Thus, the positions of the movable bracket 121 and the first light-emitting element 12A on the fixed base 11 can be flexibly changed by the driving component 122, providing high flexibility. By flexibly closing or opening the opening 11A and changing the light-emitting position of the first light-emitting element 12A on the fixed base 11, the user can accurately know the opening / closing state of the opening 11A in real time based on the light-emitting position of the first light-emitting element 12A, improving the user experience. Secondly, the driving component 122 can precisely control the position of the movable bracket 121 to improve the movement accuracy of the movable bracket 121 and the first light-emitting element 12A, ensuring that the movable bracket 121 and the first light-emitting element 12A can move into place so that the opening 11A is completely exposed or completely blocked.
[0052] Optionally, the driving component 122 can be a drive motor, which is connected to the first light-emitting module 12 via a transmission rod. The drive motor offers high control precision, fast response speed, high energy efficiency, and ease of integration. It connects to the motherboard in the electronic device, which typically also includes physical buttons or switches electrically connected to the motherboard. When the opening 11A needs to be opened or closed, the user presses the physical button or switch. The motherboard receives electrical signals from these signals and sends corresponding control signals to the drive motor. The drive motor then drives the transmission rod to rotate accordingly, moving the movable bracket 121 to close or open the opening 11A. The driving component 12 can also employ other devices capable of achieving the above functions; this application does not impose specific limitations on this.
[0053] In order for the movable bracket 121 to move relative to the fixed base 11 to close or open the opening 11A, in one example, please refer to Figures 3 to 5 As shown, the movable bracket 121 includes a first connecting part 1211, a second connecting part 1212, a connecting rod 1213, and a fixing rod 1214. The first connecting part 1211 is movably connected to the first side of the fixed base 11, and the second connecting part 1212 is movably connected to the second side of the fixed base 11. The second connecting part 1212 is arranged parallel to the first connecting part 1211. The connecting rod 1213 is fixedly connected to the driving member 122, and the connecting rod 1213 is angularly connected to the first connecting part 1211 and the second connecting part 1212. The fixing rod 1214 is angularly connected to the first connecting part 1211 and the second connecting part 1212, and the fixing rod 1214 is arranged parallel to the connecting rod 1213. The fixing rod 1214 is provided with a first mounting groove 1214A, which extends along the second direction BB. The first light-emitting member 12A is embedded in the first mounting groove 1214A. Wherein, the second direction BB is perpendicular to the first direction AA, that is, when the first direction AA is a vertical direction, the second direction BB is a horizontal direction.
[0054] The fixing rod 1214 is angled to the first connecting part 1211 and the second connecting part 1212, or it can be perpendicular to them. In this case, the movable bracket 121 is composed of the first connecting part 1211 and the second connecting part 1212 arranged parallel to the first direction AA, and the connecting rod 1213 and the fixing rod 1214 arranged parallel to the second direction BB. The fixing rod 1214 is provided with a first mounting groove 1214A. The size of the first mounting groove 1214A matches the size of the first light-emitting element 12A, so that the first light-emitting element 12A can be embedded in the first mounting groove 1214A, which improves the firmness of the first light-emitting element 12A fixed on the movable bracket 121 and avoids the first light-emitting element 12A from loosening or being damaged due to external vibration or impact. Secondly, the embedded design can make the first light-emitting element 12A flush with or slightly recessed from the surrounding surface of the fixing rod 1214 to reduce the abruptness and make the overall appearance of the movable bracket 121 more concise and harmonious. Furthermore, embedding the first light-emitting element 12A in the first mounting groove 1214A can effectively prevent dust, moisture and other external factors from damaging the first light-emitting element 12A, thereby extending the service life of the first light-emitting element 12A.
[0055] Optionally, the first light-emitting element 12A can be partially embedded in the first mounting groove 1214A, with the remaining portion protruding from the fixing rod 1214. In this case, the light-emitting effect of the first light-emitting element 12A is better. Alternatively, the first light-emitting element 12A can be completely embedded in the first mounting groove 1214A, emitting light outwards through the first mounting groove 1214A. In this case, the protection effect of the first light-emitting element 12A is better. The specific position of the first light-emitting element 12A can be set according to actual needs, and this application does not impose specific limitations on this.
[0056] The fixing rod 1214 is angularly connected to the first connecting part 1211 and the second connecting part 1212, or specifically, it can be vertically connected. In this case, the movable bracket 121 is a quadrilateral structure composed of the first connecting part 1211 and the second connecting part 1212 arranged parallel to the first direction AA, the connecting rod 1213 arranged parallel to the second direction BB, and the fixing rod 1214, which has a high aesthetic appeal.
[0057] In this example, the movable bracket 121 is movably connected to the first and second sides of the fixed base 11 via the first connecting part 1211 and the second connecting part 1212. By setting the first connecting part 1211 and the second connecting part 1212, the overall mobility reliability of the movable bracket 121 on the fixed base 11 can be improved, avoiding the problem of deviation in the movement trajectory of the movable bracket 121, thereby improving the accuracy of the movable bracket 121's movement on the fixed base 11, so that the movable bracket 121 and the first light-emitting element 12A can be moved into place. Secondly, the first light-emitting element 12A is embedded in the first mounting groove 1214A, which improves the firmness of the first light-emitting element 12A fixed on the movable bracket 121, and avoids the first light-emitting element 12A from loosening or damage due to external vibration or impact.
[0058] Optionally, the first connecting part 1211, the second connecting part 1212, the connecting rod 1213, and the fixing rod 1214 are integrally formed.
[0059] To improve the reliability of the movement of the first connecting part 1211 and the first connecting part 1212 on the fixed base 11, in one example, please refer to... Figures 6 to 8 As shown, a first groove 111 is provided on the first side of the fixing base 11, extending along a first direction AA. A first slider 1215 is provided laterally on the first connecting portion 1211, and the first slider 1215 is slidably disposed within the first groove 111. Correspondingly, a second groove 112 is provided on the second side of the fixing base 11, extending along the first direction AA. A second slider 1216 is provided laterally on the second connecting portion 1212, and the second slider 1216 is slidably disposed within the second groove 112.
[0060] In this example, the first groove 111 and the second groove 112 are disposed on both sides of the opening 11A along the second direction BB. Figure 7 The first connecting part 1211 moves to the closed position. Figure 8The second connecting part 1212 is moved to the open position. The first slider 1215 of the first connecting part 1211 is located within the first slide groove 111 and can move along the first slide groove 111. The first slide groove 111 provides movement space for the first slider 1215, allowing the first slider 1215 to move along the first slide groove 111. Since the first slide groove 111 extends along the first direction AA, the first slider 1215 can move within the first slide groove 111 along the first direction AA. That is, at this time, the first slide groove 111 not only provides movement space for the first slider 1215, but also limits the movement of the first slider 1215, thereby improving the reliability and accuracy of the movement of the first slider 1215. The second slider 1216 of the second connecting part 1212 is located within the second slide groove 112. The second slide groove 112 provides movement space for the second slider 1216, allowing it to move along the second slide groove 112. Since the second slide groove 112 extends along the first direction AA, the second slider 1216 moves within the second slide groove 112 along the first direction AA. In other words, the second slide groove 112 not only provides movement space for the second slider 1216 but also limits its movement, thereby improving the reliability and accuracy of the second slider 1216's movement.
[0061] Thus, the first connecting part 1211 and the second connecting part 1212 can move relative to the fixed base 11 through two sets of sliding grooves and sliders. The design of the sliding grooves can provide a very smooth moving experience to reduce the vibration and shaking of the slider during the movement. Secondly, the sliding grooves and sliders can precisely control the moving distance and position to improve the moving accuracy of the movable bracket 121 on the fixed base 11.
[0062] To further improve the reliability of the movement of the first connecting part 1211 and the first connecting part 1212 on the fixed base 11, optionally, such as Figure 7 As shown, the first side of the fixed base 11 is provided with two first sliding grooves 111, which are spaced apart along a first direction AA. The first connecting portion 1211 is laterally provided with two first sliders 1215, which are spaced apart along the first direction AA and are slidably disposed within the two first sliding grooves 111. The cooperation of the two first sliders 1215 and the two first sliding grooves 111 further improves the reliability of the movement of the first connecting portion 1211 on the fixed base 11. Figure 8As shown, the second side of the fixed base 11 is provided with two second sliding grooves 112, which are spaced apart along the first direction AA. The second connecting part 1212 is laterally provided with two second sliders 1216, which are spaced apart along the first direction AA and are slidably disposed within the two second sliding grooves 112. The cooperation of the two second sliders 1216 and the two second sliding grooves 112 further improves the reliability of the movement of the second connecting part 1212 on the fixed base 11.
[0063] Optionally, the number of sliding blocks can be set according to actual needs. For example, if it is desired to improve the reliability of the movement of the first connecting part 1211 and the first connecting part 1212 on the fixed base 11, multiple sets of sliding blocks can be provided. If it is desired to save manufacturing costs, only one set of sliding blocks can be provided. This application does not impose specific limitations on this.
[0064] In this example, to facilitate the quick disassembly of the first connecting part 1211 and the second connecting part 1212 for maintenance or replacement of parts, please refer to the following example. Figure 7 and Figure 8 As shown, the top of the first slide groove 111 is provided with a first notch 111A, and the top of the second slide groove 112 is provided with a second notch 112A. When the movable bracket 121 needs to be removed, the first slider 1215 and the second slider 1216 slide to the top of the first slide groove 111 and the second slide groove 112 respectively, and disengage from the first slide groove 111 and the second slide groove 112 along the first notch 111A and the second notch 112A, thereby separating the slider from the slide groove and realizing the quick disassembly between the movable bracket 121 and the fixed base 11. During installation, the first slider 1215 and the second slider 1216 are then inserted into the first slide groove 111 and the second slide groove 112 along the first notch 111A and the second notch 112A to realize the assembly of the slider with the slide groove, thereby realizing the quick assembly between the movable bracket 121 and the fixed base 11. Thus, by providing the first notch 111A and the second notch 112A, the quick disassembly and assembly between the movable bracket 121 and the fixed base 11 can be achieved.
[0065] Optionally, a transmission structure capable of achieving the above functions, such as a rack and pinion, a linear guide and a slider, or a belt and a slider, may be provided between the fixed base 11, the first connecting part 1211, and the second connecting part 1212. This application does not impose specific limitations on this.
[0066] In one example, please refer to Figures 9 to 11As shown, the connecting rod 1213 is provided with a through groove 1213A, which extends along the first direction AA. The sidewall of the through groove 1213A is provided with multiple limiting members 1217. The first light-emitting module 12 also includes a connector 123. One end of the connector 123 is connected to the multiple limiting members 1217, and the other end of the connector 123 is connected to the driving member 122.
[0067] In this example, one end of the connector 123 is fixed within the through groove 1213A by multiple limiting members 1217, thus achieving a fixed connection between the connector 123 and the connecting rod 1213. The other end of the connector 123 is fixedly connected to the drive member 122. Therefore, compared to directly connecting or welding the drive member 122 to the connecting rod 1213, the fixed connection of the drive member 122 and the connecting rod 1213 using the connector 123 provides a more reliable and adjustable connection method. If either the drive member 122 or the connecting rod 1213 fails, since they are fixedly connected by the connector 123, disassembly, repair, or replacement is convenient without requiring extensive structural adjustments. Furthermore, the connector 123 design also acts as a buffer, effectively reducing the transmission of vibrations generated by the drive member 122 during operation to the connector 123 and even the entire decorative lamp structure 1, thus reducing noise while maintaining the mechanical performance of the decorative lamp structure 1.
[0068] In one example, please refer to Figure 10 and Figure 11 As shown, the connector 123 includes a third connecting portion 1231 and a clamping portion 1233. At least one spring piece 1232 is provided on the side wall of the third connecting portion 1231. The third connecting portion 1231 is located within the through groove 1213A, and the spring piece 1232 abuts against the limiting member 1217. The clamping portion 1233 is fixedly connected to the third connecting portion 1231, and the opening of the clamping portion 1233 is connected to the driving member 122.
[0069] In this example, when the third connecting part 1231 is located within the through groove 1213A, the spring piece 1232 on its groove sidewall abuts against the spring piece 1232 within the through groove 1213A, thereby achieving a fixed connection between the third connecting part 1231 and the connecting rod 1213, thus improving the connection strength between the third connecting part 1231 and the connecting rod 1213. The opening of the clamping part 1233 is connected to the driving member 122, ensuring that the transmission rod of the driving member 122 is firmly fixed in the axial direction, preventing the driving member 122 from loosening or falling off due to vibration or other external factors, thereby improving the reliability of the entire decorative lamp structure 1. Secondly, the clamping part 1233 can fix the transmission rod of the driving member 122 through a uniformly distributed force, avoiding stress concentration problems caused by excessive local pressure, and extending the service life of the driving member 122 and the connecting member 123. Furthermore, by adjusting the opening size of the clamping part 1233, it can be adapted to transmission rods of different sizes and shapes, and is easy to adjust to meet different torque transmission requirements.
[0070] To improve the aesthetics of the first light-emitting module 12, in one example, such as Figure 5 As shown, the first light-emitting module 12 also includes a first baffle 124, which covers the connecting rod 1213 and the fixing rod 1214 and is connected to the first connecting part 1211, the second connecting part 1212 and the fixing rod 1214. The first baffle 124 is provided with a first light-emitting groove 124A at a position opposite to the first mounting groove 1214A, and the first light-emitting element 12A is located in the first light-emitting groove 124A.
[0071] In this example, when the movable bracket 121 moves to the closed position, the first baffle 124 covering the connecting rod 1213 and the fixed rod 1214 is located above the opening 11A, thus shielding the opening 11A and the movable bracket 121. This prevents dust, moisture, and other impurities from adhering to the lighting module through the movable bracket 121 and the opening 11A, thereby affecting the normal use of the subsequent lighting module. Furthermore, the first baffle 124 also improves the aesthetics of the first light-emitting module 12.
[0072] It is understood that the first baffle 124 is connected to the first connecting part 1211, the second connecting part 1212, and the fixing rod 1214, meaning it can move with the movable bracket 121. To improve the connection strength between the first baffle 124 and the movable bracket 121, optionally, the first baffle 124 is provided with connecting parts on its left and right sides along the second direction BB for fixed connection with the first connecting part 1211 and the second connecting part 1212, respectively.
[0073] In one example, please refer to Figures 12 to 13As shown, the second light-emitting module 13 includes a first fixed bracket 131 and a second baffle 132. The first fixed bracket 131 is connected to the first side of the fixed base 11. The first fixed bracket 131 is provided with a second mounting groove 131A, which extends along the second direction BB. The second light-emitting element 13A is mounted in the second mounting groove 131A. The second baffle 132 covers the first fixed bracket 131 and is connected to the first fixed bracket 131. A second light-emitting groove 132A is provided at a position opposite to the second mounting groove 131A on the second baffle 132. The second light-emitting element 13A is located in the second light-emitting groove 132A.
[0074] In this example, the first fixed bracket 131 is provided with a second mounting groove 131A. The size of the second mounting groove 131A matches the size of the second light-emitting element 13A, so that the second light-emitting element 13A can be embedded in the second mounting groove 131A. This improves the firmness of the second light-emitting element 13A fixed on the first fixed bracket 131 and avoids loosening or damage to the second light-emitting element 13A due to external vibration or impact. Secondly, the embedded design allows the second light-emitting element 13A to be flush with or slightly recessed from the surrounding surfaces of the first fixed bracket 131 and the second baffle 132, reducing any abruptness. Furthermore, embedding the second light-emitting element 13A in the second mounting groove 131A can effectively prevent dust, moisture, and other external factors from damaging the second light-emitting element 13A, thereby extending its service life.
[0075] Optionally, the second light-emitting element 13A can be partially embedded in the second mounting groove 131A, with the remaining portion protruding from the second baffle 132. In this case, the light-emitting effect of the second light-emitting element 13A is better. Alternatively, the second light-emitting element 13A can be completely embedded in the second mounting groove 131A, emitting light outward through the second mounting groove 131A and the second light-emitting groove 132A. In this case, the protection effect of the second light-emitting element 13A is better. The specific position of the second light-emitting element 13A can be set according to actual needs, and this application does not impose specific limitations on this.
[0076] In one example, please refer to Figure 12 and Figure 13 As shown, the third light-emitting module 14 includes a second fixed bracket 141 and a third baffle 142. The second fixed bracket 141 is connected to the second side of the fixed base 11. The second fixed bracket 141 is provided with a third mounting groove 141A, which extends along the second direction BB. A third light-emitting element 14A is mounted in the third mounting groove 141A. The third baffle 142 covers the second fixed bracket 141 and is connected to the second fixed bracket 141. A third light-emitting groove 142A is provided at a position opposite to the third mounting groove 141A on the third baffle 142. The third light-emitting element 14A is located within the third mounting groove 141A.
[0077] In this example, the second fixed bracket 141 is provided with a third mounting groove 141A. The size of the third mounting groove 141A matches the size of the third light-emitting element 14A, so that the third light-emitting element 14A can be embedded in the third mounting groove 141A. This improves the firmness of the third light-emitting element 14A fixed on the second fixed bracket 141 and avoids loosening or damage to the third light-emitting element 14A due to external vibration or impact. Secondly, the embedded design allows the third light-emitting element 14A to be flush with or slightly recessed from the surrounding surfaces of the second fixed bracket 141 and the third baffle 142, reducing any abruptness. Furthermore, embedding the third light-emitting element 14A in the third mounting groove 141A can effectively prevent dust, moisture, and other external factors from damaging the third light-emitting element 14A, thereby extending its service life.
[0078] Optionally, the third light-emitting element 14A can be partially embedded in the third mounting groove 141A, with the remaining portion protruding from the third baffle 142. In this case, the light-emitting effect of the third light-emitting element 14A is better. Alternatively, the third light-emitting element 14A can be completely embedded in the third mounting groove 141A, emitting light outward through the third mounting groove 141A and the second light-emitting groove 132A. In this case, the protection effect of the third light-emitting element 14A is better. The specific position of the third light-emitting element 14A can be set according to actual needs, and this application does not impose specific restrictions on it.
[0079] When the movable bracket 121 closes the opening 11A, the first light-emitting element 12A, the second light-emitting element 13A, and the third light-emitting element 14A are aligned along the second direction BB. At this time, the movable first light-emitting element 12A, the second light-emitting element 13A, and the third light-emitting element 14A will form different light patterns. When the movable bracket 121 closes the opening 11A, the first light-emitting element 12A, the second light-emitting element 13A, and the third light-emitting element 14A combine to form the first light pattern, which is a through horizontal light pattern. That is, the light pattern of the decorative light structure 1 is in the shape of a "I" and has a high aesthetic appeal. For example, when the movable bracket 121 opens the opening 11A, the first light-emitting element 12A, the second light-emitting element 13A, and the third light-emitting element 14A combine to form the second light pattern, which is three parallel and staggered horizontal light patterns. Thus, when the position of the first light-emitting element 12A on the fixed base 11 changes, the light pattern formed by it, the fixed second light-emitting element 13A, and the third light-emitting element 14A will also change accordingly, so that the user can know the opening and closing status of the opening 11A in real time based on the light pattern formed by the first light-emitting element 12A, the second light-emitting element 13A, and the third light-emitting element 14A. At the same time, it expands the shape of the decorative lamp structure 1 and improves the user experience.
[0080] To achieve precise control over the luminous states of the first light-emitting element 12A, the second light-emitting element 13A, and the third light-emitting element 14A, please refer to the following example: Figure 12 and 13 As shown, the decorative lamp structure 1 also includes a first lamp panel 15, a second lamp panel 16, and a third lamp panel 17. The first lamp panel 15 is electrically connected to the first light-emitting element 12A, the second lamp panel 16 is electrically connected to the second light-emitting element 13A, and the third lamp panel 17 is electrically connected to the third light-emitting element 14A. Furthermore, the first lamp panel 15, the second lamp panel 16, and the third lamp panel 17 are all connected to the main board (not shown in the figure).
[0081] In this example, the illumination states of the first light-emitting element 12A, the second light-emitting element 13A, and the third light-emitting element 14A can be precisely controlled via the first light panel 15, the second light panel 16, and the third light panel 17. For example, assuming the vehicle is driving normally in sunlight during the day, the movable bracket 121 closes the opening 11A. To reduce power consumption, the main board controls the first light-emitting element 12A, the second light panel 13A, and the third light panel 17 to keep them off. For example, assuming the vehicle is driving normally at night, the movable bracket 121 opens the opening 11A. To improve aesthetics, the main board controls the first light-emitting element 12A, the second light panel 13A, and the third light panel 17 to illuminate the first light-emitting element 12A, the second light panel 13A, and the third light panel 17. The specific illumination states can be adjusted according to requirements; this application does not impose specific limitations on this.
[0082] The first lamp board 15 can be fixedly mounted on the fixed base 11 or fixedly connected to the movable bracket 121 so that it can move with the movable bracket 121 relative to the fixed base 11. The first lamp board 15 only needs to be able to achieve electrical connection with the first light-emitting element 12A. The specific setting position of the first lamp board 15 can be set according to actual needs. This application does not impose specific restrictions on this.
[0083] Optionally, the first fixed bracket 131 and the second fixed bracket 141 can be fixedly connected to the first and second sides of the fixed base 11 by fasteners such as bolts and screws.
[0084] In summary, when the vehicle is in operation, the first light-emitting module 12 moves to the open position to open the opening 11A, exposing the lighting module. At this time, the lighting module can provide illumination through the opening 11A, and the light-emitting position of the first light-emitting module 12 is below the opening 11A. When the vehicle is not in operation, the first light-emitting module 12 moves to the closed position to close the opening 11A, blocking the lighting module, and the light-emitting position of the first light-emitting module 12 covers the opening 11A. In this case, sunlight will shine on the first light-emitting module 12, rather than the lens of the lighting module, thus avoiding the focusing phenomenon caused by sunlight shining on the lighting module, which could lead to high-temperature ablation of the lighting module. This extends the service life of the lighting module and improves vehicle safety. Secondly, when the position of the first light-emitting module 12 on the fixed base 11 changes, the light pattern formed by it together with the fixed second light-emitting module 13 and the third light-emitting module 14 will also change accordingly, so that the user can know the opening and closing status of the opening 11A in real time based on the light pattern formed by the first light-emitting module 12, the second light-emitting module 13 and the third light-emitting module 14. At the same time, it expands the shape of the decorative lamp structure 1 and improves the user experience.
[0085] Through the above description of the embodiments, those skilled in the art will understand that, for the sake of convenience and brevity, only the division of the above functional modules is used as an example. In actual applications, the above functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above.
[0086] In the embodiments provided in this application, it should be understood that the disclosed apparatus and methods can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative; for instance, the division of modules or units is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another device, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be through some interfaces; the indirect coupling or communication connection between devices or units may be electrical, mechanical, or other forms.
[0087] The above description is merely a specific embodiment of this application, but 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 decorative light structure (1) applied to a vehicle, characterized in that, The decorative lamp structure (1) includes: A fixing base (11) is provided with an opening (11A); A first light-emitting module (12) is movably disposed on the fixed base (11) to close or open the opening (11A); A second light-emitting module (13) is connected to a first side of the fixing base (11); and, The third light-emitting module (14) is connected to the second side of the fixing base (11) away from the first light-emitting module (12); When the first light-emitting module (12) closes the opening (11A), the first light-emitting module (12), the second light-emitting module (13), and the third light-emitting module (14) combine to form a first light shape; when the first light-emitting module (12) opens the opening (11A), the first light-emitting module (12), the second light-emitting module (13), and the third light-emitting module (14) combine to form a second light shape.
2. The decorative lamp structure (1) according to claim 1, characterized in that, The first light-emitting module (12) includes: A movable bracket (121) is movably disposed on the fixed base (11), and a first light-emitting element (12A) is mounted on the movable bracket (121); and, A drive member (122) is fixedly connected to the fixed base (11) and the movable bracket (121). The drive member (122) is configured to drive the movable bracket (121) to move in a first direction to close or open the opening (11A).
3. The decorative lamp structure (1) according to claim 2, characterized in that, The movable support (121) includes: The first connecting part (1211) is movably connected to the first side of the fixed base (11); The second connecting part (1212) is movably connected to the second side of the fixed base (11), and the second connecting part (1212) is arranged parallel to the first connecting part (1211); A connecting rod (1213) is fixedly connected to the driving member (122), and the connecting rod (1213) is angularly connected to the first connecting part (1211) and the second connecting part (1212); and, A fixing rod (1214) is connected at an angle to the first connecting part (1211) and the second connecting part (1212), and the fixing rod (1214) is arranged parallel to the connecting rod (1213). The fixing rod (1214) is provided with a first mounting groove (1214A), which extends along a second direction. The first light-emitting element (12A) is embedded in the first mounting groove (1214A). The second direction is perpendicular to the first direction.
4. The decorative lamp structure (1) according to claim 3, characterized in that, The first side of the fixed base (11) is provided with a first slide groove (111), the first slide groove (111) extends along the first direction, and the first connecting part (1211) is provided with a first slider (1215) on the side, the first slider (1215) being slidably disposed in the first slide groove (111). and, The second side of the fixed base (11) is provided with a second slide groove (112), which extends along the first direction. The second connecting part (1212) is provided with a second slider (1216) on its side, which is slidably disposed in the second slide groove (112).
5. The decorative lamp structure (1) according to claim 3, characterized in that, The connecting rod (1213) is provided with a through groove (1213A), the through groove (1213A) extends along the first direction, and the sidewall of the through groove (1213A) is provided with a plurality of limiting members (1217); The first light-emitting module (12) further includes a connector (123), one end of which is connected to a plurality of limiting members (1217), and the other end of which is connected to the driving member (122).
6. The decorative lamp structure (1) according to claim 5, characterized in that, The connector (123) includes: A third connecting portion (1231) has at least one spring piece (1232) provided on its sidewall. The third connecting portion (1231) is located within the through groove (1213A), and the spring piece (1232) abuts against the limiting member (1217). The clamping part (1233) is fixedly connected to the third connecting part (1231), and the opening of the clamping part (1233) is connected to the driving member (122).
7. The decorative lamp structure (1) according to claim 3, characterized in that, The first light-emitting module (12) also includes: A first baffle (124) covers the connecting rod (1213) and the fixing rod (1214) and is connected to the first connecting part (1211), the second connecting part (1212) and the fixing rod (1214). A first light-emitting groove (124A) is provided on the first baffle (124) opposite to the first mounting groove (1214A). The first light-emitting element (12A) is located in the first light-emitting groove (124A).
8. The decorative lamp structure (1) according to any one of claims 2-7, characterized in that, The second light-emitting module (13) includes: A first fixed bracket (131) is connected to the first side of the fixed base (11). The first fixed bracket (131) is provided with a second mounting groove (131A), which extends along a second direction. A second light-emitting element (13A) is mounted in the second mounting groove (131A). The second baffle (132) covers the first fixed bracket (131) and is connected to the first fixed bracket (131). The second baffle (132) is provided with a second light-emitting groove (132A) at a position opposite to the second mounting groove (131A). The second light-emitting element (13A) is located in the second light-emitting groove (132A).
9. The decorative lamp structure (1) according to claim 8, characterized in that, The third light-emitting module (14) includes: A second fixing bracket (141) is connected to the second side of the fixing base (11). The second fixing bracket (141) is provided with a third mounting groove (141A), which extends along the second direction. A third light-emitting element (14A) is mounted in the third mounting groove (141A). The third baffle (142) covers the second fixed bracket (141) and is connected to the second fixed bracket (141). The third baffle (142) is provided with a third light-emitting groove (142A) at a position opposite to the third mounting groove (141A). The third light-emitting element (14A) is located in the third mounting groove (141A). When the movable bracket (121) closes the opening (11A), the first light-emitting element (12A), the second light-emitting element (13A) and the third light-emitting element (14A) are flush along the second direction.
10. A vehicle, characterized in that, include: Lighting module; as well as, The decorative lamp structure (1) as described in any one of claims 1-9, wherein the lighting module is opposite to the opening (11A) of the decorative lamp structure (1).