1. Field of the Invention
The present invention relates to a light dispersing device, and more particularly to a light dispersing device generates light sources which direct go through a light transmissive plate so that the light sources are weakened and softened by the light transmissive plate outwardly.
2. Description of the Prior Art
The power consumption of light-emitting diode (LED) is so low that may economize source of energy. Many countries dedicate to develop and improve the realm of LED. Although LED has environmental protection property, the light sources generated by LED are linear so that they are unable to illuminate larger area. Not only that, but the intensities of light sources are so strong that may excite and harm eyes as the LED serves as decoration or illumination.
To overcome said disadvantages of linear light sources of LED, manufacturers adopt lateral light sources with a diffusion plate so that the light sources of LED indirect illuminate outwardly and diffuse into soft surface light sources. Nevertheless, the manner mainly emphasizes for indirect illuminating light source. With regard to light sources of LED direct goes through a light transmissive surface perpendicularly, no one brings up ideal manners for resolving the said problem so far. Additionally, when light sources of LED direct illuminate outwardly, some part of illuminated area of the light is bright (the bright area which is illuminated direct by the light of LED), and some part of that is dark, i.e. the light sources are uncoordinated.
The present invention is, therefore, arisen to obviate or at least mitigate the above mentioned disadvantages.
The main object of the present invention is to provide a light dispersing device which has at least a light transmissive plate and at least a LED luminous body. Light sources of the LED luminous body direct go through light transmissive plate and turn into soft and even light sources.
To achieve the above and other objects, a light dispersing device of the present invention comprises at least a light transmissive plate and at least a luminous body.
The light transmissive plate comprises two inclined sections, a middle section and two extending sections. The inclined sections extend respectively from two ends of middle section outwardly and inclinedly. The extending sections extend respectively from one end of one of the inclined sections where is away from the middle section laterally. The middle section is located between the extending sections.
Wherein the middle section has a first surface and a second surface. At least one of the first and the second surfaces is formed with a light reducing layer. The light reducing layer has properties of weakening the intensities of light sources and reflecting light sources.
The light-emitting diode luminous body is located at one side of the light transmissive plate and faces to the middle section of the light transmissive plate. An axis of the luminous body is perpendicular to the middle section of the light transmissive plate.
When light sources of the luminous body illuminating the middle section of the light transmissive plate perpendicularly. The intensities of light sources are weakened by the light reducing layer, and a part of light sources are reflected along the inclined sections to the extending sections. Whereby the light sources are evenly dispersed outwardly.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment(s) in accordance with the present invention.
A light dispersing device of the present invention is mainly used for installing in, but not limited to, an atomizer.
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The shell includes a base 11, a laminate 12, a tank 13, and an outer housing 14. The shell further has a bottom housing 15 under the base 11. After assembling the bottom housing 15, the base 11, the laminate 12, the tank 13, and the outer housing 14 in turn, the shell to be completely installed, and the shell is formed with a receiving space therein. The receiving space further is divided into several rooms by the base 11, the laminate 12, and the tank 13. The laminate 12 is disposed on the base 11. The outer housing 14 is disposed on the laminate 12. The tank 13 is disposed on the laminate 12. The tank 13 and the room between the bottom housing 15 and the base 11 contain water.
Wherein an outer periphery of a top portion of the base 11 and an outer periphery of the laminate 12 define a luminous space 16, as shown in
The mist generating assembly (as not shown) is disposed in the shell and used for producing and spraying mist to outside of the shell. The structure of the mist generating assembly is conventional in the art.
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The luminous bodies 32 are disposed annularly and spaced apart in the luminous space 16, and located at one side of the light transmissive ring 33. More specifically, the luminous bodies 32 are located at inside of the light transmissive ring 33. Each of luminous bodies 32 corresponds to one of the light transmissive plate 31. Wherein each of luminous bodies 32 faces to the middle section 312 of corresponding light transmissive plate 31, and an axis of each luminous body is perpendicular to the middle section 312 of corresponding light transmissive plate 31. In brief, each luminous body 32 direct faces to the middle section 312 of corresponding light transmissive plate 31, and selectively emits light sources A and B toward corresponding light transmissive plate 31. Preferably, each luminous body 32 is a single LED lamp. The LED lamps are spaced apart in the luminous space 16, and more preferably are disposed on a light strip and spaced apart to each other.
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Each light transmissive plate 31 has the middle section 312 and the inclined section 311 and 311′, and each luminous body faces to the middle section of corresponding light transmissive plate 31 direct, and the first surface 314 of the middle section is formed with the light reducing layer, whereby the evenly dispersed level of each light source is increased. As such, the light sources have been more even, soft and weak as they penetrate through the first and the second annular light transmissive portions 111 and 121. In other embodiments, inner surfaces or outer surfaces of the inclined sections or the extending sections also can be formed with a light reducing layer. In this way, the light sources are evenly dispersed much more.
Briefly, the light sources of the luminous bodies 32 direct illuminate the middle sections 312 of light transmissive plates which are in front of corresponding luminous bodies respectively. Although the light sources are strong, the light reducing layer is capable for weakening the intensities of the light sources and reflects a part of light sources. Thereafter a part of light sources move along the inclined sections to the extending sections. So the middle section and the extending sections adjacent to the middle section are planes and release evenly soft light sources that do not excite eyes of users at all.
The present invention is installed in the atomizer, and the light transmissive plates are disposed annularly in the luminous space. While users turn on the atomizer at nighttime, the first and the second light transmissive portions are bright and look like annular light circles. Due to the light sources are weak, soft and evenly dispersed, they are not only suitable for relaxation of bodies and minds of users, but create a romantic atmosphere.