The present invention relates to a vehicle lighting system which includes serrated surfaces and a reflection surface which reflects light that refracted from some of the serrated surfaces so that the light has even illumination.
A conventional vehicle lighting system 3 is shown in
However, when a viewer is located in front of the lighting device 3 as shown in
The present invention intends to provide a light guiding device for vehicle lighting system and the light beams can be refracted or reflected forward so that the head light has an even illumination.
The present invention relates to a light guiding device for vehicle lighting and comprises a tube with a light source connected therewith and the tube includes a serrated surface composed of a plurality of segment surfaces. A reflection member is located beside the serrated surface at a distance. The light beams emitted from the light source are refracted by the segment surfaces and some of the light beams that are reflected by the segment surfaces are reflected by the reflection member toward the tube so that the light have less dark areas.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
Referring to
The tube 21 with the light source 22 are connected together and the tube 21 is engaged with the lighting system 2 with the serrated surface 211 facing forward. The segment surfaces 212, 213 are located such that the light beams reflected from the segment surfaces 212 or 213 are reflected by the reflection member 214 and travel toward the tube 21.
When the light beam from the light source 22 travels along the first path 221, it refracts at the tube 21 and then refracts again at the segment surface 212 into the air, and then refracts at the segment surface 213 and goes along the serrated surface 211.
The light beam from the light source 22 travels along the second path 222, it refracts at the tube 21 and then reflects at the segment surface 212 because the input angle is too narrow which restricts the light beam to be refracted and the light beam is reflected toward the reflection member 214. The light beam is then reflected toward the serrated surface 211 and goes through the segment surface 213 of the serrated surface 211.
The light beam from the light source 22 travels along the third path 223, it refracts at the tube 21 and then reflects by the reflection member 214 and goes toward the serrated surface 211.
Therefore, for a viewer in front of the head light 2, there will be less dark area because the light beams that are reflected by the segment surface 212 are reflected by the reflection member 214 and travel through the segment surface 213 which looks bright. It is noted that diffusion material can added on the reflection member 214 so as to have a diffusion feature.
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.