1. Technical Field
The present invention generally relates to billboards and, particularly, to a billboard capable of emitting light, and a fabrication method thereof.
2. Discussion of Related Art
Conventional billboards generally include a light transmissive canvas on which patterns are printed. Due to the fact that the light transmissive canvas cannot emit light on its own, visibility of the patterns printed thereon can becomes limited in a dark environment.
Accordingly the light transmissive canvas is usually illuminated by a backlight module, for example a side backlight module or direct backlight module. Light from the backlight module, however, is dispersive and the canvas exposed to the environments can easily suffer damage.
Therefore, what is needed is a billboard capable of overcoming the described shortcomings.
A billboard, in accordance with a present embodiment, is provided. The billboard includes a backlight module, a light transmissive canvas, a pattern layer, and a light converging layer. The backlight module is configured for illuminating the light transmissive canvas. The light transmissive canvas is adjacent to the backlight module. The light transmissive canvas comprises a first surface facing the backlight module and a second surface opposite to the first surface. The pattern layer is formed on the second surface to carry graphic content. The light converging layer covers the pattern layer and comprises a plurality of microstructures formed thereon distal from the light transmissive canvas. The light converging layer is configured for converging light emitted from the backlight module and protecting the pattern layer.
Detailed features of the billboard will become more apparent from the following detailed description and claims, and the accompanying drawings.
Many aspects of the present billboard can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present billboard. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views, wherein:
Reference will now be made to the drawing to describe the embodiments of the present billboard, in detail.
Referring to
The backlight module 11 is configured for illuminating the light transmissive canvas 12. The backlight module 11 can be a side backlight module or a direct backlight module. In an example, the backlight module 11 is a side backlight module including a light guiding plate 110 and two light sources 112.
Referring to
The light sources 112 respectively face the light incident surfaces 1100. The light sources 112 may be cold cathode fluorescent lamps, light emitting diodes, or organic light emitting diodes, and in this embodiment, are light emitting diodes.
The light transmissive canvas 12 is adjacent to the backlight module 11. In this exemplary embodiment, the light transmissive canvas 12 is on the light-emitting surface 1104 of the light guide plate 110. The light transmissive canvas 12 can be plastic, such as polyvinylchloride (PVC). The light transmissive canvas 12 includes a first surface 120 attached to the light-emitting surface 1104, and a second surface 122 opposite to the first surface 120. The second surface 122 has a pattern layer 124 thereon. Light from the light-emitting surface 1104 enters the light transmissive canvas 12 from the first surface 120 thereof, and passes through the light transmissive canvas 12, and thereafter from the second surface 122 thereof.
The light converging layer 13 is configured for converging light from the second surface 122 and protecting the pattern layer 124 of the light transmissive canvas 12. The light converging layer 13 is formed on the second surface 122 and covers the pattern layer 124. The light converging layer 13 can be resin or silicon gel, which may be solidified by ultraviolet. The refractive index of the converging layer 13 is 1.4 to 1.6, and the rigidity of the converging layer is 1 to 150 after being solidified. The light converging layer 13 includes a plurality of microstructures formed on a surface thereof distal from the light transmissive canvas 12. In this exemplary embodiment, the microstructures are serrations 134 extending along a the X axis as illustrated in
A process for manufacturing the billboard 10 is also provided, the process including,
In Step I: providing a light transmissive canvas 12 with a first surface and a second surface opposite thereto, with a pattern layer (not illustrated) thereon.
In Step II a coating 130 is formed on the second surface of the light transmissive canvas 12 to cover the pattern layer. The coating 130 is resin or silicon gel, which may be solidified by ultraviolet.
In Step III, a plurality of microstructures are formed on a surface of the coating 130 distal from the light transmissive canvas 12 and solidified via ultraviolet.
In Step IV, light transmissive canvas 12 is situated adjacent to a backlight module 11 with the first surface facing a light-emitting surface 1104 of the backlight module 11.
In Step III, the microstructures, serrations 134 as shown in
It is to be understood that the serrations 134 of the light converging layer 13 can also be replaced by other microstructures. Referring to
In sum, with the backlight module 11 illuminating the light transmissive canvas 12 and the light converging layer 13 for converging emitted light and protecting the pattern layer 124, the billboard 10 provides more efficient results in darker environments with the pattern layer 124 protected from external damage.
Finally, it is to be understood that the above-described embodiments are intended to illustrate rather than limit the invention. Variations may be made to the embodiments without departing from the spirit of the invention as claimed. The above-described embodiment illustrates the scope of the invention but do not restrict the scope of the invention.
Number | Date | Country | Kind |
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200710203470.8 | Dec 2007 | CN | national |