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Optical Film for LED with Triangular-Pyramidal Array Using Size-Reducible Embossing Method

机译:采用尺寸缩小的压印方法的三角金字塔形阵列的LED光学膜

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This study presents a modified hot-embossing process to fabricate micro-triangular-pyramidal array (MTPA). First, a tungsten (W) steel mold (as the first mold) is manufactured by precision machining including optical projection grinding, lapping, and polishing processes. The dimension of a triangular pyramid with acute angle of 85° on the W-steel mold is about 300 μm in width and 139 μm in height. The pitch between two triangular-pyramidal tips is about 170 μm. Then, only the portion of the tip area of the triangular-pyramidal patterns is transferred on bulk metallic glass (BMG, Mg_(58)Cu_(31)Y_(11)) using this modified multi-step hot-embossing method to reduce the pattern size. With a position-adjustable mechanism, size-reduced concaved-shaped MTPA can be selectively formed, used as the secondary mold. In this way, not only can the size of triangular-pyramidal patterns on W-steel mold be reduced down on BMG, but also the tool arc between each triangular-pyramid on W-steel mold caused by machine tool can be eliminated. This is based on the fact that amorphous glass alloys contain no dislocation that can be responsible for yielding in crystalline materials. Thus, BMG is expected to be strong and hard enough to be used as a mold material. Then the secondary mold is used to emboss convex-shaped MTPA on PolymethylMethacrylate (PMMA) optical film. Experiments with different embossing times and embossing pressures are conducted and discussed. Large-sized triangular-pyramidal array on the W-steel mold has been successfully and selectively miniaturized on BMG, and then transferred on PMMA. Finally, this optical film of PMMA with MTPA is packaged on light-emitting diode (LED) to improve its lighting uniformity and luminance. In comparison with commercial 3M optical film (3M Vikuiti TBEF2-T-65i), the film with MTPA shows a good optical performance.
机译:这项研究提出了一种改进的热压花工艺来制造微三角锥阵列(MTPA)。首先,通过包括光投射研磨,研磨和抛光工艺在内的精密加工来制造钨(W)钢模具(作为第一模具)。在W型钢模具上,锐角为85°的三角锥的尺寸为宽约300μm,高约139μm。两个三角锥尖端之间的间距约为170μm。然后,使用这种改进的多步热压花方法,仅将三角形金字塔形图案的尖端区域的一部分转移到块状金属玻璃(BMG,Mg_(58)Cu_(31)Y_(11))上,以减少图案大小。通过位置调节机构,可以选择性地形成尺寸减小的凹形MTPA,用作次级模具。这样,不仅可以减小BMG上W型钢模具上三角锥图案的尺寸,而且可以消除机床在W型钢模具上每个三角锥之间的刀弧。这是基于这样的事实,即非晶态玻璃合金不包含可导致结晶材料屈服的位错。因此,期望BMG足够坚固和坚硬以用作模具材料。然后,使用辅助模具在聚甲基丙烯酸甲酯(PMMA)光学膜上压印凸形MTPA。进行并讨论了具有不同压花时间和压花压力的实验。 W型钢模具上的大型三角锥阵列已成功且选择性地在BMG上小型化,然后转移到PMMA上。最后,将带有MTPA的PMMA光学膜封装在发光二极管(LED)上,以提高其照明均匀性和亮度。与市售3M光学膜(3M Vikuiti TBEF2-T-65i)相比,具有MTPA的膜显示出良好的光学性能。

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