1. Field of the Invention
The present invention relates to a light guide device, and more particularly to a light guide device for vehicle.
2. Description of the Related Art
The first adjacent surface 11 and the second adjacent surface 12 are disposed at two ends of the conventional light guide device 10, and used to receive a light source 17. The light-emitting surface 13 is used to export light. The diffusing portion 14 is disposed opposite the light-emitting surface 13, and has a plurality of zigzag structures 141 used to guide light to the light-emitting surface 13. Two defocus surfaces 15, 16 are connected between the light-emitting surface 13 and the diffusing portion 14, respectively.
When the light of the light source 17 transmit to the diffusing portion 14, part of the light from the diffusing portion 14 transmit to the light-emitting surface 13, and another part of the light directly transmit to the outside through the diffusing portion 14. Therefore, the conventional light guide device 10 has low emitting and guiding efficiency.
Therefore, it is necessary to provide a light guide device to solve the above problems.
The present invention provides a light guide device for vehicle. The light guide device of the invention includes at least one incident portion, a diffusion surface and a reflective portion. The at least one incident portion is disposed on at least one end of the light guide device, and is used to receive at least one light source. The diffusion surface is used to export light, and the diffusion surface has a plurality of zigzag structures. The reflective portion is opposite to the diffusion surface, and is used to reflect light to the diffusion surface. The at least one incident portion is disposed between the diffusion surface and the reflective portion.
Therefore, by using the light guide device of the present invention, light can be fully reflected in the light guide device, and light is exported by the diffusion surface. By disposing the reflective portion and correspondingly disposing the diffusion surface, light directly from the light source or light reflected by the diffusion surface to the reflective portion can be reflected to the diffusion surface through the reflective portion again, so no light will leak to the outside through the reflective portion, thereby greatly increasing light guiding efficiency of the light guide device of the present invention.
Referring to
The diffusion surface 22 is used to export light, and the diffusion surface 22 has a plurality of zigzag structures. The reflective portion 23 is opposite to the diffusion surface 22, and is used to reflect light to the diffusion surface 22. The at least one incident portion 21 is disposed between the diffusion surface 22 and the reflective portion 23, that is, the at least one light source 28, 29 is disposed between the diffusion surface 22 and the reflective portion 23.
In this embodiment, the reflective portion 23 includes a zigzag portion 231 and a reflective surface 232, the zigzag portion 231 has a plurality of zigzag structures, the reflective surface 232 is formed at surfaces of the zigzag structures, and the reflective surface 232 is an electroplating surface. Preferably, the electroplating surface is an electroplating aluminum surface.
After light is emitted from the light sources 28, 29, for example, a first optical path 25 is irradiated by the light source to the reflective surface 232, and is reflected by the reflective surface 232 to the diffusion surface 22, and light is exported by the diffusion surface 22. A second optical path 26 is directly irradiated by the light source to the diffusion surface 22, and light is exported by the diffusion surface 22. A third optical path 27 is directly irradiated by the light source to the diffusion surface 22, but no light is exported by the diffusion surface 22, then the third optical path 27 is reflected to the reflective surface 232 and then reflected by the reflective surface 232 to the diffusion surface 22, and light is exported by the diffusion surface 22.
Therefore, by using the light guide device of the present invention, light can be fully reflected in the light guide device, and light is exported by the diffusion surface. By disposing the reflective portion and correspondingly disposing the diffusion surface, light directly from the light source or light reflected by the diffusion surface to the reflective portion can be reflected to the diffusion surface through the reflective portion again, so no light will leak to the outside through the reflective portion, thereby greatly increasing light guiding efficiency of the light guide device of the present invention.
According to the first embodiment of the present invention, the light guide device 20 further includes at least one side surface 24, which is disposed between the diffusion surface 22 and the reflective portion 23, and the at least one side surface 24 is a nebulous surface, so that light is mainly exported from the diffusion surface 22, thereby achieving better light guiding effect and visual effect.
Referring to
Likewise, for example, a first optical path 35 is irradiated by the light source to the reflective portion 33, and reflected by the reflective portion 33 to the diffusion surface 32, and light is exported by the diffusion surface 32. A second optical path 36 is directly irradiated by the light source to the diffusion surface 32, and light is exported by the diffusion surface 32. A third optical path 37 is directly irradiated by the light source to the diffusion surface 32, but no light is exported by the diffusion surface 32, then the third optical path 37 is reflected to the reflective portion 33 and then reflected by the reflective portion 33 to the diffusion surface 32, and light is exported by the diffusion surface 32.
Referring to
Referring to
The cover body 51 covers the diffusion surface 22, the cover body 51 has a light-emitting surface 511, and light from the diffusion surface 22 is exported by the light-emitting surface 511. In this embodiment, a distance exists between the light-emitting surface 511 and the diffusion surface 22. The cover body 51 further includes two lateral portions 512 and 513, which extend downward from two side edges of the light-emitting surface 511. In this embodiment, the two lateral portions 512 and 513 wrap the side surface 24. Preferably, both the two lateral portions 512 and 513 have nebulous surface, so that light is mainly exported by the light-emitting surface 511.
While several embodiments of the present invention have been illustrated and described, various modifications and improvements can be made by those skilled in the art. The embodiments of the present invention are therefore described in an illustrative but not in a restrictive sense. It is intended that the present invention should not be limited to the particular forms as illustrated and that all modifications which maintain the spirit and scope of the present invention are within the scope defined in the appended claims.
Number | Date | Country | Kind |
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100145821 | Dec 2011 | TW | national |