This application claims priority of Taiwanese Application No. 103221323, filed on Dec. 2, 2014.
This invention relates to an optical prism sheet, more particularly to an optical prism sheet including a plurality of prisms, each of which has a scalene triangular cross-section.
The conventional optical diffuser assembly 5 is likely to have observable defects caused by Wet-out and Moiré effects and/or scratches formed during assembly of the optical diffuser assembly 5. The Wet-out effect occurs when two surfaces of two different optical films are stacked one above the other, thus effectively removing the change in refractive index for light propagating from one of the optical films to the other of the optical films, which causes varying appearance over the optical diffuser assembly 5. The Moiré effect is caused by optical interference, and occurs when two prisms are stacked one above the other and are perpendicularly aligned with each other. In addition, the optical diffuser assembly 5 has a relatively large overall thickness due to the combination of the bottom diffuser 51, the lower prism sheet 52, the upper prism sheet 53, and the top diffuser 54.
Therefore, an object of the present disclosure is to provide an optical prism sheet that can overcome at least one of the aforesaid drawbacks associated with the prior art.
According to this disclosure, there is provided an optical prism sheet that includes a transparent substrate having a light-entrance surface; and a plurality of elongated prisms that are disposed at one side of the transparent substrate opposite to the light-entrance surface, that protrude from the transparent substrate in a direction away from the light-entrance surface, and that are substantially parallel to one another. Each of the prisms has a scalene triangular cross-section and first and second surfaces that intersect each other to define an apex angle which is opposite to and faces toward the transparent substrate. The apex angle of each of the prisms is divided by a normal line of the transparent substrate into first and second sub-angles that are different from each other. At least one of the light-entrance surface and the first and second surfaces of each of the prisms is roughened to form a plurality of micro-protrusions, each of which has a height ranging from 0.1 μm to 5 μm.
In drawings which illustrate embodiments of the disclosure,
Before the present disclosure is described in greater detail with reference to the accompanying exemplary embodiments, it should be noted herein that like elements are denoted by the same reference numerals throughout the disclosure.
The transparent substrate 6 has a light-entrance surface 61 and a light-exit surface 62 opposite to the light-entrance surface 61, is flexible, and may be made from a polymeric material, such as polyethylene terephthalate (PET), polyethylene naphthalate (PEN), and polycarbonate (PC). In this embodiment, the light-entrance surface 61 is flat and smooth.
The prisms 7 may be made from a material, such as UV-cured resin, are disposed at one side of the transparent substrate 6 (in this embodiment, the one side is the light-exit surface 62) opposite to the light-entrance surface 61, protrude upwardly from the light-exit surface 62 of the transparent substrate 6 in a direction away from the light-entrance surface 61, and are substantially parallel to one another. The prisms 7 may be attached to the transparent substrate 6 or integrally formed with the transparent substrate 6. The UV-cured resin may have a refractive index ranging from 1.45 to 1.62.
Each of the prisms 7 has a scalene triangular cross-section and first and second surfaces 71, 72 that intersect each other to define an apex angle (θ) which is opposite to and faces toward the light-exit surface 62 of the transparent substrate 6. The apex angle (θ) of each of the prisms 7 is divided by a normal line (L) of the transparent substrate 6 into first and second sub-angles (θ1, θ2) that are different from each other. Each of the first and second sub-angles (θ1, θ2) ranges from 10 degrees to 50 degrees, so that light ray (L1) entering the light-entrance surface 61 with an incident angle ranging from 40 degrees to 80 degrees relative to the normal line (L) of the transparent substrate 6 may be refracted out from the first and second surfaces 71, 72 with an exit angle ranging from −50 degrees to +50 degrees relative to the normal line (L) of the transparent substrate 6.
In this embodiment, the first sub-angles (θ1) of the prisms 7 are larger than the second sub-angles (θ2) of the prisms 7.
At least one of the light-entrance surface 61 and the first and second surfaces 71, 72 of each of the prisms 7 is roughened to form a bed region 80 and a plurality of micro-protrusions 8 that protrude outwardly from the bed region 80 (see
In this embodiment, the first and second surfaces 71, 72 of each of the prisms 7 are roughened and are formed with the micro-protrusions 8.
The first surfaces 71 of the prisms 7 are parallel to one another, and the second surfaces 72 of the prisms 7 are parallel to one another. The apex angles (θ) of the prisms 7 are equal.
In this embodiment, the second surface 72 of one of every two adjacent ones of the prisms 7 and the first surface 71 of the other of the every two adjacent ones of the prisms 7 are connected to each other to form a V-shaped valley 701.
While the invention has been described in connection with what are considered the exemplary embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation and equivalent arrangements.
Number | Date | Country | Kind |
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103221323 | Dec 2014 | TW | national |