Atmosphere vehicle tail lamp capable of rotating by 360 degrees

By designing a 360-degree rotating atmosphere taillight, using the combination of the drive motor and light source light strip, the problem that existing taillights cannot provide multi-angle dynamic effects is solved, and beautiful dynamic light and shadow effects are achieved and simplified installation is improved, which is personalized and aesthetic.

CN223076794UActive Publication Date: 2025-07-08刘俊
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Patent Information

Application Number
CN202422268763.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-07-08
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

The existing taillights are designed with fixed angles, which cannot provide multi-angle and diverse dynamic effects. The structure is complex and the installation is cumbersome, which cannot meet the needs of modern consumers for personalization and aesthetics.

Method used

A 360-degree rotating atmosphere taillight is designed, and the decorative rotary plate is driven to rotate by driving the motor and the drive panel, and combined with the light source light strip to achieve dynamic light and shadow effect. The structure is simple and easy to assemble.

Benefits of technology

It realizes the beautiful dynamic light and shadow effect that can be displayed at any angle, increases visual impact, simplifies the installation process, and improves the personalization and aesthetics of the taillights.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223076794U_ABST
Patent Text Reader

Abstract

The utility model discloses an atmosphere vehicle tail lamp capable of rotating by 360 degrees, which comprises a tail lamp main body, the tail lamp main body comprises a mounting shell, a driving motor and a driving panel are respectively mounted in the mounting shell, a light source mounting shell is mounted at the front part of the mounting shell, a decorative rotating plate is arranged at the front part of the light source mounting shell, and the decorative rotating plate is arranged at the rear part of the light source mounting shell. A driving connecting rod is arranged on the front portion of the driving motor, the front end of the driving connecting rod is connected with the decorative rotating plate, a light source lamp belt is arranged on the inner side wall of the light source installation shell, a power-on lamp holder is installed on the rear portion of the installation shell, and the driving panel is connected with the driving motor, the light source lamp belt and the power-on lamp holder through electric wires. According to the atmosphere vehicle tail lamp capable of rotating by 360 degrees, dynamic atmosphere lighting is achieved, the omnibearing visual effect is provided, the tail lamp can show the attractive dynamic effect at any angle, and the atmosphere vehicle tail lamp is simple in structure and convenient and fast to assemble.
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Description

Technical Field

[0001] The utility model belongs to the technical field of lamps, and particularly relates to an ambient taillight for 360-degree rotation of motorcycles and electric vehicles. Background Art

[0002] In the current lighting technology field, taillights are an important part of vehicle safety and visual effects. With the popularization of transportation tools, especially motorcycles and electric vehicles, taillights not only play a warning role, but also become a key component to enhance the beauty and personalization of vehicles. However, the existing taillight designs still have some deficiencies, mainly manifested in the following aspects:

[0003] Traditional taillights usually adopt a fixed-angle design. This means that no matter from which angle the vehicle is viewed, the lighting effect and visual performance of the taillight are the same. This fixed design limits the visual attraction and beauty of the taillight and cannot provide multi-angle and diverse dynamic effects.

[0004] Most existing taillights can only provide static light effects. Although some taillight designs include functions such as flashing or brightness change, these changes are usually not diverse enough to achieve a dynamic ambient lighting effect. This makes the taillight unable to fully display personalization and beauty in some cases.

[0005] The structure of existing taillights is often relatively complex. The complex structure not only increases the difficulty of production and maintenance, but also makes the installation process cumbersome. Users need more time and technology to complete the installation, which may become an obstacle for some non-professional users.

[0006] Most of the taillight designs in the prior art rely on the fixed position and lighting mode of the light source and cannot innovate in the light and shadow effects. This design limits the visual impact and dynamic beauty of the taillight and cannot fully meet the needs of modern consumers for personalization and beauty.

[0007] In view of this, overcoming the defects of the above-mentioned prior art is an urgent problem to be solved in this technical field. Summary of the Utility Model

[0008] Aiming at the technical problems mentioned in the background art, the purpose of the utility model is to provide an ambient taillight that can rotate 360 degrees, which can achieve dynamic ambient lighting, provide an all-round visual effect, enable the taillight to show a beautiful dynamic effect at any angle, has a simple structure, and is convenient and fast to assemble, so as to solve the technical problems mentioned in the above background art.

[0009] To achieve the above object, the technical solution provided by the present utility model is: an atmosphere car taillight that can rotate 360 degrees, which includes a taillight main body. The taillight main body includes an installation housing. A drive motor and a drive panel are respectively installed inside the installation housing. A light source installation housing is installed at the front of the installation housing. A decorative rotating plate is provided at the front of the light source installation housing. A drive connecting rod is provided at the front of the drive motor. The front end of the drive connecting rod is connected to the decorative rotating plate. A light source light strip is provided on the inner side wall of the light source installation housing. A connection electric lamp head is installed at the rear of the installation housing. The drive panel is electrically connected to the drive motor, the light source light strip, and the connection electric lamp head through wires.

[0010] Further, a motor installation housing is provided at the front of the drive motor. A plurality of installation slots are provided inside the motor installation housing. A plurality of installation open rings are provided at the front edge of the drive motor. The plurality of installation open rings are respectively sleeved outside the plurality of installation slots and are connected and fixed to the installation slots through fasteners.

[0011] Further, fixed through columns are symmetrically provided on both sides of the installation housing. Installation clamping positions are recessed at the upper parts of the fixed through columns. Fixed through ears are symmetrically provided on both sides of the motor installation housing. Fixed through holes are symmetrically opened on both sides of the surface of the light source installation housing. The fixed through holes, the fixed through ears, and the fixed through columns are correspondingly arranged and are connected and fixed through fasteners.

[0012] Further, a first rod through hole is opened on the surface of the motor installation housing. A second rod through hole is opened on the surface of the light source installation housing. A rotating plate slot is recessed in the middle of the decorative rotating plate. The first rod through hole, the second rod through hole, and the rotating plate slot correspond to each other. The front end of the drive connecting rod passes through the first rod through hole and the second rod through hole and is inserted into the rotating plate slot and fixed by glue.

[0013] Further, a speed regulation installation slot is opened on the side of the installation housing. A speed regulator is installed in the speed regulation installation slot. The speed regulator is electrically connected to the drive panel through wires.

[0014] Further, a lamp head installation slot is opened at the rear of the installation housing. The connection electric lamp head is clamped in the lamp head installation slot.

[0015] Further, the decorative rotating plate is made of a light-transmitting material.

[0016] Further, the light source light strip is fixedly adhered to the inner side wall of the light source installation housing.

[0017] The utility model mainly has the following beneficial effects: A driving motor and a driving panel are respectively installed inside the installation shell. A light source installation shell is installed at the front of the installation shell. A decorative rotating plate is provided at the front of the light source installation shell. A driving connecting rod is provided at the front of the driving motor. The front end of the driving connecting rod is connected to the decorative rotating plate. A light source lamp strip is provided on the inner side wall of the light source installation shell. A connection electric lamp socket is installed at the rear of the installation shell. The 360-degree rotatable atmosphere car taillight of the utility model realizes dynamic atmosphere lighting, provides an all-round visual effect, enables the taillight to show a beautiful dynamic effect at any angle, has a simple structure, and is convenient and fast to assemble. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic perspective view of the overall structure of the utility model.

[0019] Figure 2 It is a schematic exploded view of the overall structure of the utility model.

[0020] Figure 3 It is a schematic view of the structure of the installation shell of the utility model.

[0021] Figure 4 It is a schematic view of the structure of the motor installation shell of the utility model.

[0022] Figure 5 It is a schematic view of the structure of the decorative rotating plate of the utility model.

[0023] Reference numerals: Taillight main body 1; Installation shell 10; Driving motor 20; Driving panel 30; Light source installation shell 40; Decorative rotating plate 50; Driving connecting rod 21; Light source lamp strip 60; Connection electric lamp socket 70; Motor installation shell 22; Installation slot 221; Installation open loop 23; Fixed through column 11; Installation clamping position 111; Fixed through ear 222; Fixed through hole 41; First rod through hole 223; Second rod through hole 42; Rotating plate slot 51; Speed regulation installation slot 12; Speed regulator 80; Lamp socket installation slot 13. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] As Figures 1 to 5As shown in the figure, a 360-degree rotatable ambient car taillight includes a taillight main body 1. The taillight main body 1 includes a mounting housing 10. Inside the mounting housing 10, a driving motor 20 and a driving panel 30 are respectively installed. At the front of the mounting housing 10, a light source mounting housing 40 is installed. At the front of the light source mounting housing 40, a decorative rotating plate 50 is provided. The decorative rotating plate 50 is made of a light-transmitting material. At the front of the driving motor 20, a driving connecting rod 21 is provided. The front end of the driving connecting rod 21 passes through the light source mounting housing 40 and is connected to the decorative rotating plate 50. On the inner side wall of the light source mounting housing 40, a light source light strip 60 is provided. The light source light strip 60 is fixedly adhered to the inner side wall of the light source mounting housing 40. At the rear of the mounting housing 10, a connection lamp head 70 is installed. The driving panel 30 is electrically connected to the driving motor 20, the light source light strip 60, and the connection lamp head 70 respectively. When in use, the connection lamp head 70 is externally connected to a power source, and current flows into the driving motor 20 through the driving panel 30. The driving motor 20 starts to work. The driving motor 20 rotates through the driving connecting rod 21 and transmits the rotational power to the decorative rotating plate 50. The driving connecting rod 21 drives the decorative rotating plate 50 to rotate 360 degrees. The rotation of the decorative rotating plate 50 changes the light projection direction of the light source light strip 60, generating a dynamic light and shadow effect. The light source light strip 60 emits light under the action of electricity. The light emitted by the light source light strip 60 irradiates through the decorative rotating plate 50, making the taillight have an ambient lighting effect. During the rotation of the decorative rotating plate 50, the light of the light source light strip 60 presents different visual effects through the light-transmitting part of the decorative rotating plate 50, thus realizing dynamic ambient lighting, providing an all-round visual effect, and enabling the taillight to show a beautiful dynamic effect at any angle. The combination of the rotating decorative rotating plate 50 and the light source light strip 60 can produce rich and variable light and shadow effects, increasing the visual impact of the taillight. The structure is simple and the installation process is convenient.

[0025] During specific implementation, at the front of the driving motor 20, a motor mounting housing 22 is provided. Inside the motor mounting housing 22, a number of mounting slots 221 are provided. At the front edge of the driving motor 20, a number of mounting open loops 23 are provided. The number of the mounting open loops 23 are respectively sleeved outside the number of the mounting slots 221 and are fixedly connected to the mounting slots 221 through fasteners, so that the motor mounting housing 22 is fixedly installed at the front of the driving motor 20.

[0026] During specific implementation, fixed through columns 11 are symmetrically arranged on both sides of the installation housing 10. An installation clamping position 111 is concavely provided at the upper part of the fixed through column 11. Fixed through ears 222 are symmetrically arranged on both sides of the motor installation housing 22. Fixed through holes 41 are symmetrically formed on both sides of the surface of the light source installation housing 40. The fixed through holes 41, the fixed through ears 222, and the fixed through columns 11 are arranged in one-to-one correspondence, and are fixedly connected by sequentially passing fasteners through the fixed through holes 41, the fixed through ears 222, and the fixed through columns 11. The structure is simple and the assembly is convenient and fast.

[0027] During specific implementation, a first rod through hole 223 is formed on the surface of the motor installation housing 22. A second rod through hole 42 is formed on the surface of the light source installation housing 40. A rotating plate slot 51 is concavely provided in the middle of the decorative rotating plate 50. The first rod through hole 223, the second rod through hole 42, and the rotating plate slot 51 correspond to each other. The front end of the driving connecting rod 21 passes through the first rod through hole 223 and the second rod through hole 42, and is inserted into the rotating plate slot 51 and fixed by glue sticking, so that the decorative rotating plate 50 is connected to the front end of the driving connecting rod 21.

[0028] A speed regulation installation groove 12 is formed on the side of the installation housing 10. A speed regulator 80 is installed in the speed regulation installation groove 12. The speed regulator 80 is electrically connected to the driving panel 30. During use, the speed regulator 80 adjusts the rotation speed of the driving motor 20 by changing the magnitude of the current. The user can adjust the control knob on the speed regulator 80 as needed to adjust the rotation speed of the decorative rotating plate 50.

[0029] A lamp socket installation groove 13 is formed at the rear of the installation housing 10. The connecting lamp socket 70 is clamped in the lamp socket installation groove 13, so that the connecting lamp socket 70 is installed at the rear of the installation housing 10, and the assembly is convenient.

[0030] In summary, a driving motor 20 and a driving panel 30 are respectively installed inside the installation housing 10. A light source installation housing 40 is installed at the front of the installation housing 10. A decorative rotating plate 50 is provided at the front of the light source installation housing 40. A driving connecting rod 21 is provided at the front of the driving motor 20. The front end of the driving connecting rod 21 is connected to the decorative rotating plate 50. A light source light strip 60 is provided on the inner side wall of the light source installation housing 40. A connecting lamp socket 70 is installed at the rear of the installation housing 10. The 360-degree rotatable ambient car taillight of the present utility model realizes dynamic ambient lighting, provides an all-round visual effect, enables the taillight to display a beautiful dynamic effect at any angle, and has a simple structure and convenient and fast assembly.

Claims

1. An atmosphere taillight that can rotate 360 degrees, characterized in that, It includes a tail lamp main body (1), and the tail lamp main body (1) includes a mounting housing (10). A driving motor (20) and a driving panel (30) are respectively installed inside the mounting housing (10). A light source mounting housing (40) is installed at the front of the mounting housing (10). A decorative rotating plate (50) is provided at the front of the light source mounting housing (40). A driving connecting rod (21) is provided at the front of the driving motor (20). The front end of the driving connecting rod (21) is connected to the decorative rotating plate (50). A light source light strip (60) is provided on the inner side wall of the light source mounting housing (40). A connecting lamp socket (70) is installed at the rear of the mounting housing (10). The driving panel (30) is electrically connected to the driving motor (20), the light source light strip (60), and the connecting lamp socket (70).

2. The 360-degree rotatable ambient car taillight according to claim 1, characterized in that A motor mounting housing (22) is provided at the front of the driving motor (20). A plurality of mounting slots (221) are provided inside the motor mounting housing (22). A plurality of mounting open loops (23) are provided at the front edge of the driving motor (20). The plurality of mounting open loops (23) are respectively sleeved outside the plurality of mounting slots (221) and are connected and fixed to the mounting slots (221) through fasteners.

3. The 360-degree rotatable ambient car taillight according to claim 2, characterized in that Fixing through columns (11) are symmetrically provided on both sides of the mounting housing (10). Mounting clamping positions (111) are recessed in the upper parts of the fixing through columns (11). Fixing through ears (222) are symmetrically provided on both sides of the motor mounting housing (22). Fixing through holes (41) are symmetrically opened on both sides of the surface of the light source mounting housing (40). The fixing through holes (41), the fixing through ears (222), and the fixing through columns (11) are correspondingly arranged and are connected and fixed through fasteners.

4. The 360-degree rotatable ambient car taillight according to claim 3, characterized in that, A first rod through hole (223) is opened on the surface of the motor mounting housing (22). A second rod through hole (42) is opened on the surface of the light source mounting housing (40). A rotating plate slot (51) is recessed in the middle of the decorative rotating plate (50). The first rod through hole (223), the second rod through hole (42), and the rotating plate slot (51) correspond to each other. The front end of the driving connecting rod (21) passes through the first rod through hole (223) and the second rod through hole (42) and is inserted into the rotating plate slot (51) and is fixed by gluing.

5. The 360-degree rotatable ambient car taillight according to claim 1, characterized in that, A speed regulation mounting groove (12) is opened on the side of the mounting housing (10). A speed regulator (80) is installed in the speed regulation mounting groove (12). The speed regulator (80) is electrically connected to the driving panel (30).

6. The 360-degree rotatable ambient car taillight according to claim 1, characterized in that, A lamp socket mounting groove (13) is opened at the rear of the mounting housing (10). The connecting lamp socket (70) is clamped in the lamp socket mounting groove (13).

7. The 360-degree rotatable ambient car taillight according to claim 1, characterized in that, The decorative rotating plate (50) is made of a light-transmitting material.

8. The 360-degree rotatable ambient car taillight according to claim 1, characterized in that, The light source light strip (60) is fixedly adhered to the inner side wall of the light source mounting housing (40).