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Luminance and brightness field distribution of light guiding plate for backlight panel (BLP) by micro molding

机译:微型成型背光板(BLP)导光板的亮度和亮度场分布

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This research investigates the luminance and the brightness field distribution of the microstructure of a light guiding plate (LGP) by micro injection molding (MIM) and micro injection-compression molding (MICM). The process of manufacturing a LGP includes photo-etching, MIM, MICM, and optical field measurement. The results show that the luminance of microstructure of LGPs produced using MICM is better than those made using MIM. The results also indicate that the most important processing parameter is the mold temperature for the luminance distribution of the LGP whether made by MIM or MICM. The maximum luminance of the LGP is 80 Nit (cd/m{sup}2) on micro molding. The brightness field distribution of the LGP made using MICM is more uniform than those made using MIM for the same processing parameters. MICM is a more suitable process than MIM for the fabrication of a LGP on a backlight panel (BLP).
机译:本研究通过微注射成型(MIM)和微注射压缩成型(MICM)研究了导光板(LGP)的微结构的亮度和亮度场分布。 LGP的制造过程包括光刻,MIM,MICM和光场测量。结果表明,使用MICM生产的LGP的微观结构的亮度优于使用MIM生产的LGP。结果还表明,最重要的加工参数是模具温度,无论是通过MIM还是MICM制成的LGP的亮度分布。微成型时,LGP的最大亮度为80 Nit(cd / m {sup} 2)。对于相同的处理参数,使用MICM制成的LGP的亮度场分布比使用MIM制成的LGP的亮度场分布更均匀。对于在背光面板(BLP)上制造LGP而言,MICM比MIM更合适。

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