Decorative light and vehicle
Patent Information
- Application Number
- CN202521866227.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-08-29
AI Technical Summary
[0002]现有技术中的深渊镜设计结构较复杂,设计、安装所需步骤多,且一些潜在的缺点无法克服,比如光线产生的效果不佳、制造成本高、光线反射出现眩光等问题
[0006] According to the decorative lamp of this utility model embodiment, the light emitted by the light source component passes through the light-transmitting area of the single-sided reflector and arrives at the translucent mirror located on the light-emitting side of the light source component. The light is then reflected multiple times by the translucent mirror, producing multi-layered beam diffusion and creating a deep visual layer like an abyss. This achieves dynamic refraction and enhancement of light, bringing a visual impact to the user.
Smart Images

Figure CN224718625U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of automotive lighting technology, specifically to decorative lights and vehicles. Background Technology
[0002] Existing abyssal mirror designs are complex, requiring numerous design and installation steps, and suffer from several inherent drawbacks, such as poor light production, high manufacturing costs, and glare from light reflection. However, simplifying the structure fails to achieve the desired rich lighting effects. Therefore, there is room for improvement. Utility Model Content
[0003] This utility model aims to solve at least one of the technical problems existing in the prior art. To this end, this utility model proposes a decorative lamp that, through an optical layout using two simple lenses and a matching light source, can achieve a deep-sea effect, bringing consumers a personalized pursuit and visual impact.
[0004] This utility model also aims to provide a vehicle having the aforementioned decorative lights.
[0005] A decorative lamp according to an embodiment of the present invention includes: a light source; a semi-transparent mirror located on the light-emitting side of the light source; and a one-sided reflector located between the semi-transparent mirror and the light source, with a gap between the one-sided reflector and the semi-transparent mirror; wherein the one-sided reflector has a light-transmitting pattern area and a reflective layer surrounding the light-transmitting pattern area on the side facing the light source.
[0006] According to the decorative lamp of this utility model embodiment, the light emitted by the light source component passes through the light-transmitting area of the single-sided reflector and arrives at the translucent mirror located on the light-emitting side of the light source component. The light is then reflected multiple times by the translucent mirror, producing multi-layered beam diffusion and creating a deep visual layer like an abyss. This achieves dynamic refraction and enhancement of light, bringing a visual impact to the user.
[0007] Compared to the overly complex mirror assembly structure used in existing technologies, the decorative light solution in this application reduces the glare problem caused by excessive reflection and refraction between mirrored glass surfaces in traditional solutions. Moreover, this solution achieves a specific light pattern and deep-sea lighting effect while maintaining a simple structure, higher disassembly and durability, and easier assembly, maintenance, and heat dissipation, resulting in lower processing and maintenance costs.
[0008] In some embodiments, the translucent pattern area is a matte area.
[0009] In some embodiments, the light-transmitting pattern area is formed by laser engraving or sandblasting the surface of the single-sided mirror to remove the reflective material layer, resulting in the matte area.
[0010] In some embodiments, the decorative lamp further includes decorative pieces spaced apart on one side of the translucent mirror and located on the side of the translucent mirror away from the one-sided reflector.
[0011] In some embodiments, the decorative piece is a metal sheet.
[0012] In some embodiments, the decorative lamp further includes a base, on which the light source is disposed; and a mask connected to the base, which covers the light source, the translucent mirror, and the one-sided reflector, wherein the mask is at least a transparent or translucent area in the portion corresponding to the light-transmitting pattern area.
[0013] In some embodiments, the two sides of the base are respectively formed with retaining edges, and the single-sided reflector is held between the two retaining edges.
[0014] In some embodiments, the edge of the translucent mirror is positioned between the clip and the mask.
[0015] In some embodiments, the mask includes a panel located on the side of the translucent mirror away from the one-sided reflector, the panel being a translucent panel or a transparent panel.
[0016] In some embodiments, the mask includes a panel located on the side of the translucent mirror away from the one-sided reflector; the one-sided reflector, the translucent mirror, and the panel are all formed as curved surfaces convex in a direction away from the light source.
[0017] In some embodiments, the decorative lamp described in any of the above embodiments has a light source consisting of a plurality of LED beads arranged in a flat pattern, and the brightness and / or color of at least two of the LED beads are individually controllable.
[0018] The vehicle according to an embodiment of the present invention includes the decorative lights described in the above embodiments.
[0019] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0020] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0021] Figure 1 This is a schematic diagram illustrating the abyss lighting effect principle of a decorative lamp according to an embodiment of this application.
[0022] Figure 2 Front and side views of the overall assembly of decorative lights according to some embodiments;
[0023] Figure 3 Exploded views of the overall structure of the decorative lamps in some embodiments;
[0024] Figure 4 An exploded side view of a decorative lamp according to some embodiments;
[0025] Figure 5 This is a schematic diagram of a vehicle in some embodiments.
[0026] Figure label:
[0027] Decorative lights 10
[0028] Component 1: Light source; Component 2: Semi-transparent mirror; Component 3: One-way mirror; Component 4: Light-transmitting pattern area A; Component 5: Reflective layer B.
[0029] Decorative piece 4, base 5, edge clip 51
[0030] 6. Face mask, 61. Panel, 7. LED beads
[0031] Vehicle 100. Detailed Implementation
[0032] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0033] In the description of this utility model, it should be understood that the terms "thickness," "upper," "lower," "front," "rear," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, features defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.
[0034] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0035] The following is for reference. Figures 1-5 Describes a decorative lamp 10 according to an embodiment of the present utility model.
[0036] According to the decorative lamp 10 of this utility model embodiment, referring to... Figure 1 It includes: light source 1, semi-transparent mirror 2, and one-sided reflector 3.
[0037] The translucent mirror 2 is located on the light-emitting side of the light source 1, and the single-sided reflector 3 is located between the translucent mirror 2 and the light source 1, with a gap between the single-sided reflector 3 and the translucent mirror 2.
[0038] Here, the semi-transparent mirror 2 is a semi-reflective mirror whose core function is to separate incident light into reflected and transmitted light in a specific ratio (rather than total internal or total transmission), while maintaining the stability of the light's phase, polarization, and other characteristics. The single-sided mirror 3 has a reflective material layer on the side facing the light source 1. Therefore, when light comes from the semi-transparent mirror 2, it enters the single-sided mirror 3, encounters the reflective material layer, and is then reflected back. Here, the reflective material layer can be a film layer; that is, the single-sided mirror 3 has a reflective film on the side facing the light source 1. The reflective material layer can also be formed by crystalline variations of the main structure of the single-sided mirror 3; no limitation is imposed here.
[0039] In this application, the one-way mirror 3 has a light-transmitting pattern area A and a reflective layer B surrounding the light-transmitting pattern area A on the side facing the light source 1. That is, on the side of the one-way mirror 3 facing the light source 1, there is an area without a reflective material layer; this area has the shape for projection by the decorative lamp 10, and is therefore called the light-transmitting pattern area A. The portion of the one-way mirror 3 on the side facing the light source 1 with a reflective material layer is called the reflective layer B. Here, the processing method of the light-transmitting pattern area A and the reflective layer B is not limited. For example, when the one-way mirror 3 needs to be coated with a reflective material layer during lens processing, the area where the light-transmitting pattern area A is located can be avoided during the coating stage. In this way, the uncoated area constitutes the light-transmitting pattern area A, and the coated area constitutes the reflective layer B. Alternatively, if the one-way mirror 3 already has a reflective material layer, a portion of this reflective material layer can be removed using a certain processing method; the removed area constitutes the light-transmitting pattern area A, and the remaining area constitutes the reflective layer B.
[0040] Understandably, referring to Figure 1 When the light source 1 emits light towards the single-sided reflector 3, the light can travel from the light-transmitting pattern area A to the translucent mirror 2, while the light does not travel through the reflective layer B. Therefore, it can be ensured that the light effect pattern presented by the decorative lamp 10 is consistent with the shape of the light-transmitting pattern area A.
[0041] When light strikes the incident surface of the translucent mirror 2, some light enters the translucent mirror 2, while some is reflected. It is understandable that the smaller the angle of incidence, the lower the reflectivity. Therefore, most of the light close to the optical axis of the light source 1 passes directly through the translucent mirror 2, creating a bright illumination effect. Light farther from the optical axis of the light source 1 will partially pass through the translucent mirror 2, while some will be reflected back to the one-way mirror 3 and enter the one-way mirror 3. This portion of light is then reflected again upon encountering the reflective layer B.
[0042] Since the semi-transparent mirror 2 is a semi-reflective mirror, after the light from the single-sided reflecting mirror 3 enters the semi-transparent mirror 2, some light will still be emitted and some light will be reflected when it encounters the light-emitting surface of the semi-transparent mirror 2.
[0043] This process is repeated, with light constantly reflecting between the translucent mirror 2 and the one-way mirror 3, creating the effect of a thousand-layered abyss. It produces a series of gradually shrinking, sequentially arranged virtual images, thus creating a visually infinite sense of depth and spatial illusion.
[0044] Compared to the overly complex mirror assembly structure used in existing technologies, the decorative lamp 10 in this application reduces the glare problem caused by excessive reflection and refraction between mirrored glass surfaces in traditional solutions. Moreover, this solution, while forming a specific light pattern and achieving a deep-sea lighting effect, has a simple structure, higher disassembly and durability, and is convenient for assembly, maintenance, and heat dissipation, resulting in lower processing and maintenance costs.
[0045] In some specific embodiments, the decorative lamp 10 also includes a base 5, and the light source 1 is disposed on the inner side of the base 5. The light-emitting side of the light source 1 faces the direction of the translucent mirror 2. Multiple lamp beads 7 can be evenly distributed on the light source 1. Compared with the existing light source 1 which is set with a single lamp bead, the light source 1 of this utility model can provide brighter and more uniform light for the single-sided reflector 3.
[0046] In some embodiments, such as Figure 1 As shown, both the translucent mirror 2 and the one-sided reflector 3 are curved mirrors with their centers bulging outwards from the light source 1. This ensures that when light is emitted, the illuminated area matches the shape of the light-transmitting pattern area A, and is positioned within the light area emitted by the decorative lamp 10. This allows for a smaller overall size of the decorative lamp 10 while maintaining a larger illuminated area.
[0047] Specifically, the semi-transparent mirror 2 and the one-sided reflecting mirror 3 have the same curvature.
[0048] The semi-transparent mirror 2 and the one-way mirror 3 have the same curvature and the same radius of curvature. Therefore, the reflection of light from the light source 1 by the semi-transparent mirror 2 and the transmission of light from the light source 1 by the one-way mirror 3 are matched. This avoids problems such as light path offset, image distortion or poor focusing caused by the inconsistent curvature of the two mirrors.
[0049] In addition, the semi-transparent mirror 2 and the single-sided reflector 3 have the same radius of curvature and can be manufactured based on the same mold or processing parameters, which reduces the processing difficulty of customized semi-transparent mirror 2 and single-sided reflector 3, and also improves the accuracy of the two in the assembly process.
[0050] In some embodiments, the light-transmitting pattern area A is a frosted area because the surface of the frosted area is microscopically uneven. When the light from the light source 1 enters the single-sided reflector 3, the light from the light source 1 changes its original straight-line propagation direction and disperses in multiple directions due to the uneven structure. This causes diffuse reflection or scattering of the light passing through the light-transmitting pattern area A. Compared with the reflective layer B, the frosted area is translucent, allowing light to pass through while also partially blocking other structures or electronic components behind the light-transmitting pattern area A, i.e., on the light-emitting side of the light source 1. However, it can still be clearly distinguished from the reflective layer B area, while reducing interference from local glare and light reflection.
[0051] In some embodiments, the translucent pattern area A is a matte area formed by laser engraving or sandblasting to remove the reflective material layer from the surface of the single-sided reflector 3. The matte area exhibits a microscopically uneven and rough structure. When light from the light source 1 is incident on the matte area, the numerous tiny, irregular textures on the matte area diffuse and scatter the light from the light source 1, resulting in a soft lighting effect. The reflective layer B has a reflective material layer. When light from the light source 1 enters the reflective layer B, the reflective layer B blocks the light. Therefore, by combining the graphic design of the translucent pattern area A with the light source of the light source 1, a "deep abyss lighting effect" with a sense of image depth can be achieved, enhancing visual depth and technological aesthetics.
[0052] Among them, the light-transmitting pattern area A is a matte area formed by laser engraving the reflective material layer off the surface of the single-sided reflective mirror 3. Specifically, a laser can be used to form nano- to micro-scale pits, grooves or molten protrusions on the material surface through high-frequency pulses. These microstructures will scatter the incident light into "diffuse reflection" (rather than "specular reflection" of a smooth surface), ultimately presenting a matte surface without obvious graininess. It is smooth to the touch and does not scratch the hand (especially for materials such as metal and plastic), and visually it looks more high-end than sandblasted matte surfaces (such as the "matte laser engraving" on the middle frame of a mobile phone, which avoids fingerprint residue while maintaining a delicate texture).
[0053] The laser spot diameter can be as small as a few micrometers, and the engraving path is precisely controlled by the program, which can achieve uniform coverage of a large area of matte surface. It will not cause the "local roughness" or "yin-yang surface" caused by the uneven size of sand particles in traditional sandblasting. If used for local matte surface (such as the transition of logo edge), "gradient matte surface" (smooth transition from matte surface to glossy surface) can also be achieved by adjusting the laser energy, with no jagged edges or breaks at the boundary.
[0054] The translucent pattern area A is a matte area formed by sandblasting the surface of the single-sided reflector 3 to remove the reflective material layer. The matte effect is stronger.
[0055] Optionally, the pattern in the translucent pattern area A can be customized according to personal preference, such as a license plate logo, text, or letters.
[0056] In some embodiments, refer to Figures 2-4 The decorative light also includes decorative pieces 4, which are spaced apart on one side of the translucent mirror 2 and located on the side of the translucent mirror 2 away from the one-sided reflector 3.
[0057] Maintaining an appropriate distance between the decorative piece 4 and the translucent mirror 2 ensures their independent positioning and stable installation. The decorative piece 4 is positioned on the side of the translucent mirror 2 furthest from the one-way mirror 3, allowing it to receive light from the translucent mirror 2. The light propagates through the gap between the decorative piece 4 and the translucent mirror 2, creating a soft optical transition. Furthermore, the decorative piece 4, based on its material, color, texture, or translucency, can further modulate the light, giving the overall lighting effect a richer expression and effectively enhancing visual depth.
[0058] In some embodiments, the decorative piece 4 is a metal sheet. When light from the translucent mirror 2 is incident on the decorative piece 4, the metal sheet can exhibit diverse optical effects based on surface treatment processes, producing a layered light effect under illumination. The high reflectivity of the metal material allows the decorative piece 4 to effectively reflect the light from the light source 1, enhancing the overall visual brightness and technological feel. Furthermore, the metal sheet can adapt to different installation environments and usage conditions, ensuring the stability and long-term durability of the decorative piece 4 structure.
[0059] Optionally, the surface of the metal sheet 4 can be customized through processes such as polishing or etching to create unique textures, colors, or patterns, further enhancing its decorative appeal and brand recognition.
[0060] In some embodiments, refer to Figure 2 , Figure 4The decorative lamp 10 also includes a base 5 and a mask 6. The light source 1 is mounted on the base 5; the mask 6 is connected to the base 5 and covers the light source 1, the semi-transparent mirror 2 and the one-sided reflector 3. The mask 6 is a transparent or semi-transparent area at least in the part corresponding to the light-transmitting pattern area A.
[0061] The light source 1 is located inside the base 5, which provides the core support foundation for its installation. The cover 6 covers the light source 1, the translucent mirror 2, and the one-way mirror 3, forming an integrated shell structure with the base 5, thus protecting the internal components. As an external protective structure, the cover 6 effectively isolates external dust, moisture, and other adverse factors, providing physical protection for the light source 1, translucent mirror 2, and one-way mirror 3, and extending the service life of the internal components.
[0062] The light emitted by the light source 1 passes through the light-transmitting pattern area A and the semi-transparent mirror 2, and then enters the transparent or semi-transparent area of the mask 6, thus fully presenting the optical effect of the pattern in the light-transmitting pattern area A. In addition, the mask 6 covers and connects the light source 1, the semi-transparent mirror 2, and the one-sided reflector 3 to the base 5, forming a complete and uniform decorative lamp module 10, which helps to simplify the assembly process and enhance product consistency.
[0063] In some embodiments, refer to Figure 4 The two sides of the base 5 form locking edges 51, and the single-sided reflector 3 is locked between the two locking edges 51.
[0064] The clamping edge 51 is integrally formed with the base 5, providing a reliable positioning structure for the single-sided reflector 3. The single-sided reflector 3 can be quickly and accurately fixed in the preset position of the base 5. The clamping edge 51 simplifies the assembly process and improves assembly efficiency. Secondly, the clamping edge 51 forms a stable clamping fit between the single-sided reflector 3 and the base 5 by clamping it, eliminating the need for additional screws, adhesives or other complex fixing methods, thus reducing the difficulty of assembling the structure. Finally, the clamping edge 51 extends from both sides of the base 5 and clamps the single-sided reflector 3, forming an effective limit and fixation in the vertical direction, enhancing the stability of the single-sided reflector 3 in the overall structure of the decorative lamp 10, and preventing the single-sided reflector 3 from loosening, shifting or even falling off during use.
[0065] In some embodiments, the edge of the translucent mirror 2 is positioned between the edge 51 and the mask 6.
[0066] The clamping edge 51 and the mask 6 together form a clamping and fixing structure for the edge of the translucent mirror 2, so that the translucent mirror 2 can be stably positioned inside the decorative lamp 10. First, the single-sided reflector 3 is clamped on both sides of the base 5 to form the clamping edge 51. Then, the translucent mirror 2 is clamped between the clamping edge 51 and the mask 6. The assembly sequence of the two is accurate with the relative position between the light source 1 and the base 5, ensuring the stability of the overall light path of the light source 1 inside the decorative lamp 10 and ensuring the accurate presentation of the optical effect. Secondly, the translucent mirror 2 can be effectively limited by the clamping and fixing of the clamping edge 51 and the mask 6, ensuring the stable connection of the translucent mirror 2.
[0067] In some embodiments, the mask 6 includes a panel 61 located on the side of the translucent mirror 2 away from the one-sided reflector 3, the panel 61 being a translucent panel or a transparent panel.
[0068] In some embodiments, refer to Figure 2 , Figure 3 The mask 6 includes a panel 61 located on the side of the translucent mirror 2 away from the one-sided mirror 3; the one-sided mirror 3, the translucent mirror 2, and the panel 61 are all formed as curved surfaces that bulge toward the direction away from the light source 1.
[0069] When the light emitted by the light source 1 passes through the translucent mirror 2 and the one-way mirror 3, it can propagate from the convex curved surface of the panel 61 toward the user, thereby enhancing the diffusion and uniformity of the overall light effect and improving the visual coverage of the lighting or decorative effect. Secondly, the convex structure of the panel 61 can naturally converge or guide the light. In particular, under the combined action of the translucent mirror 2 and the one-way mirror 3, the reflection path and transmission efficiency of the light can be optimized, so that the light is more concentrated in the pattern area A, enhancing the expressiveness of the pattern's light transmission, halo, or three-dimensional light effect. At the same time, the one-way mirror 3, the translucent mirror 2, and the panel 61 form a consistent curved shape in the same direction, which helps to ensure the relative positional accuracy and optical path consistency between the optical components, reduce the loss of light effect caused by structural misalignment or optical deviation, ensure the stable and efficient operation of the overall optical system, and improve the reliability and visual consistency of the product.
[0070] In some embodiments, refer to Figure 4 The light source 1 consists of multiple LED beads 7 arranged in a flat pattern, and the brightness and / or color of at least two LED beads 7 are individually controllable.
[0071] The planar layout of multiple LED beads 7 achieves a uniform spatial distribution of the light source, effectively improving the softness and consistency of the overall illumination and avoiding overly bright or dark spots in the decorative light 10. Simultaneously, it supports independent adjustment of the brightness and / or color of individual or partial LED beads 7, enabling the decorative light 10 to present more precise and delicate lighting effects, such as localized contrast, gradient transitions, multi-color combinations, or highlighting of key areas, enhancing the layering and visual richness of the lighting effects. Users can flexibly adjust the lighting effect mode according to different application needs, meeting diverse lighting and visual expression requirements, and improving the user experience and product functionality.
[0072] The vehicle 100 according to an embodiment of the present utility model includes the decorative light 10 of the above embodiment, with reference to... Figure 5 The decorative light 10 can be placed in any location according to the user's own preferences, providing users with personalized display opportunities.
[0073] The decorative light 10 of this application can serve as an illuminated logo light for a vehicle 100. Through a clever optical layout, the light emitted by the light source 1 is repeatedly controlled by the translucent mirror 2 and the single-sided reflector 3, generating multi-layered beam diffusion. These reflected lights converge in the luminous area of the single-sided reflector 3, creating a deep, abyss-like visual depth, achieving dynamic refraction and enhancement of light. The application of this technology not only enhances the brightness and dynamism of the logo lighting but also creates a futuristic, sci-fi feel that transcends convention, meeting modern consumers' pursuit of personalization and visual impact.
[0074] This innovative design achieves a breakthrough in the combination of function and aesthetics, not only fulfilling lighting requirements but also enhancing the automotive brand image and user experience, giving it significant academic value and social impact in the automotive decoration field. Through meticulous optical engineering and innovative visual effects, it advances cutting-edge research in automotive lighting design and plays a significant role in enhancing brand image and design competitiveness.
[0075] Of course, this solution is not limited to illuminated car logo lights; it can also be used on infotainment panels to give them a deep-sea lighting effect. This not only enhances the technological feel of the interface but also creates a consistent visual experience, reinforcing brand consistency.
[0076] Alternatively, the armrest area of vehicle 100 can utilize the decorative light 10 of this application, with a concealed design. When touched or activated, the deep light at the edge illuminates, symbolizing dynamic tactile feedback and enhancing the interactive experience of touch and vision.
[0077] Alternatively, this application solution can be used for interior trim pieces, such as dashboards, air conditioning vents, and even ambient lighting, all of which can adopt similar luminous designs to form a coherent "abyss" theme and create an immersive interior lighting art.
[0078] Alternatively, the solution proposed in this application can be used for front and rear window projection. For example, micro-projection technology can be integrated into the edges of windows or rearview mirrors to display dynamic abyss patterns, adding technological and entertainment elements to the driving process.
[0079] In this specification, the terms "embodiment," "example," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0080] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A decorative lamp, characterized in that, include: Light source components; A semi-transparent mirror, wherein the semi-transparent mirror is located on the light-emitting side of the light source; A one-sided reflector, wherein the one-sided reflector is located between the semi-transparent mirror and the light source, and there is a gap between the one-sided reflector and the semi-transparent mirror; The single-sided mirror has a light-transmitting pattern area and a reflective layer surrounding the light-transmitting pattern area on the side facing the light source.
2. The decorative lamp according to claim 1, characterized in that, The translucent pattern area is a matte area.
3. The decorative lamp according to claim 2, characterized in that, The light-transmitting pattern area is the frosted area formed after the reflective material layer is removed by laser engraving or sandblasting on the surface of the single-sided reflector.
4. The decorative lamp according to claim 1, characterized in that, Also includes: Decorative pieces are spaced apart on one side of the translucent mirror and located on the side of the translucent mirror away from the one-sided reflector.
5. The decorative lamp according to claim 4, characterized in that, The decorative piece is a metal sheet.
6. The decorative lamp according to any one of claims 1-5, characterized in that, Also includes: The base, on which the light source is mounted; A face mask is connected to the base and covers the light source, the semi-transparent mirror and the one-sided reflector. The face mask is at least a transparent or semi-transparent area in the portion corresponding to the light-transmitting pattern area.
7. The decorative lamp according to claim 6, characterized in that, The base has two side edges that form locking edges, and the single-sided reflector is locked between the two locking edges.
8. The decorative lamp according to claim 7, characterized in that, The edge of the translucent mirror is wedged between the clip and the mask.
9. The decorative lamp according to claim 6, characterized in that, The mask includes a panel located on the side of the translucent mirror away from the one-sided reflector, the panel being either a translucent panel or a transparent panel.
10. The decorative lamp according to claim 6, characterized in that, The mask includes a panel located on the side of the translucent mirror away from the one-sided reflector; The single-sided reflector, the semi-transparent mirror, and the panel are all formed as curved surfaces that bulge outwards in a direction away from the light source.
11. The decorative lamp according to any one of claims 1-5, characterized in that, The light source consists of multiple LED beads arranged in a flat pattern, and the brightness and / or color of at least two of the LED beads are individually controllable.
12. A vehicle, characterized in that, Includes decorative lamps according to any one of claims 1-11.