侧发光双厚壁仿水晶照明系统
By using the reflection and refraction design of the side-emitting double thick-walled imitation crystal lighting system, the problem of insufficient taillight penetration is solved, achieving both effective warning and aesthetic appeal in foggy or rainy weather.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DALIAN OUTFITTING SICHUAN IND ASSEMBLY TECH CO LTD
- Filing Date
- 2025-08-19
- Publication Date
- 2026-07-17
AI Technical Summary
Existing car taillights have reduced light penetration due to fogging design, resulting in a shorter warning distance for vehicles in foggy or rainy weather, increasing driving hazards.
The side-emitting double thick-walled imitation crystal lighting system uses the dimming strips, light-receiving strips, and light-emitting surfaces of the main and secondary reflectors to reflect and refract the light emitted by the LED beads, ensuring the light penetration intensity in foggy or rainy weather and creating a crystal-like beautiful effect.
Maintaining light penetration intensity in foggy or rainy weather ensures a good warning effect while also enhancing the aesthetics of the taillights.
Smart Images

Figure CN224516573U_ABST
Abstract
Claims
1. Side emitting double thick walled crystal like lighting system comprising of a tail lamp housing (1) having a tail lamp face plate (2) mounted on one side of the tail lamp housing (1) characterized by: The taillight housing (1) is provided with a bottom bracket (5) and an upper bracket (6) inside. The bottom bracket (5) and the upper bracket (6) are snapped together to form a cavity. The cavity is provided with a main reflector (3). The upper bracket (6) is located on the upper side of the bottom bracket (5). A secondary reflector (4) is installed on the upper bracket (6). The secondary reflector (4) is located on the upper side of the main reflector (3). A secondary circuit board (7) is provided on one side of the secondary reflector (4). A main circuit board (8) is provided on the lower side of the bottom bracket (5). Several LED beads (9) are installed on both the secondary circuit board (7) and the main circuit board (8). The light emitted by the LED beads (9) is reflected outward through the main reflector (3) and the secondary reflector (4).
2. The side light emitting double thick walled simulated water crystal lighting system of claim 1, wherein: Both the main reflector (3) and the secondary reflector (4) include a dimming strip (31). One end of the dimming strip (31) is provided with a reflective surface (33), and the lower side of the reflective surface (33) is provided with several downward protruding lamp placement blocks (34). The bottom of the lamp placement block (34) is provided with a lamp bead placement groove, and several LED lamp beads (9) are placed in the lamp bead placement groove at the corresponding positions.
3. The side light emitting double thick walled simulated water crystal lighting system of claim 2, wherein: The bottom of the base bracket (5) has a light inlet (51), the main circuit board (8) is fixed on the lower side of the base bracket (5), the LED beads (9) are set inside the light inlet (51), and the lamp block (34) on the main reflector (3) is set at the position corresponding to the light inlet (51).
4. The side light emitting double thick walled simulated water crystal lighting system of claim 2, wherein: Several locking strips (37) are fixed on the lower side of the dimming strip (31) on the main reflector (3), and several slots (52) corresponding to the positions of the locking strips (37) are opened at the bottom of the bottom bracket (5), and the locking strips (37) are inserted into the slots (52).
5. The side light emitting double thick walled simulated water crystal lighting system of claim 2, wherein: The main reflector (3) and the secondary reflector (4) also include a light-receiving strip (35) disposed on the side of the dimming strip (31) away from the reflective surface (33). There is a gap between the dimming strip (31) and the light-receiving strip (35). The side of the dimming strip (31) near the light-receiving strip (35) is inclined from top to bottom towards the light-receiving strip (35), and its surface is evenly arranged with a number of faceted shapes. The side of the light-receiving strip (35) near the dimming strip (31) is provided with a number of unevenly arranged faceted shapes.
6. The side light emitting double thick walled simulated water crystal lighting system of claim 5, wherein: A diffuser strip (32) is fixed on the side of the light-receiving strip (35) away from the dimming strip (31) on the main reflector (3). The diffuser strip (32) is irregularly shaped on the side away from the dimming strip (31), as well as on the top and both sides. A secondary light-emitting strip (41) is fixed on the side of the light-receiving strip (35) away from the dimming strip (31) on the secondary reflector (4). The secondary light-emitting strip (41) is irregularly shaped on the side away from the light-receiving strip (35).
7. The side light emitting double thick walled simulated water crystal lighting system of claim 6, wherein: The distance from the side of the secondary light-emitting strip (41) away from the light-receiving strip (35) to the light-receiving strip (35) is less than the distance from the side of the diffuser strip (32) away from the light-receiving strip (35) to the light-receiving strip (35), and the undulation of the light-emitting surface (36) is less than the undulation of the edge of the secondary light-emitting strip (41). The secondary light-emitting strip (41) is fixed on the upper side of the upper bracket (6), and the diffuser strip (32) is fixed on the lower bracket (5).
8. The side light emitting double thick walled simulated water crystal lighting system of claim 6, wherein: Two sockets are provided on the taillight panel (2), and one end of the auxiliary light-emitting strip (41) and the diffuser strip (32) extends through the sockets to the side of the taillight panel (2) away from the taillight housing (1).