Cheng Hsin-Chung, Huang Chiung-Fang, Lin Yi, Shen Yung-Kang
School of Dentistry, College of Oral Medicine, Taipei Medical University, Taipei, Taiwan, China.
Opt Express. 2010 Dec 20;18(26):26887-904. doi: 10.1364/OE.18.026887.
This study describes the brightness field distributions of microlens arrays fabricated by micro injection molding (μIM) and micro injection-compression molding (μICM). The process for fabricating microlens arrays used room-temperature imprint lithography, photoresist reflow, electroforming, μIM, μICM, and optical properties measurement. Analytical results indicate that the brightness field distribution of the molded microlens arrays generated by μICM is better than those made using μIM. Our results further demonstrate that mold temperature is the most important processing parameter for brightness field distribution of molded microlens arrays made by μIM or μICM.
本研究描述了通过微注塑成型(μIM)和微注射压缩成型(μICM)制造的微透镜阵列的亮度场分布。制造微透镜阵列的过程采用了室温压印光刻、光刻胶回流、电铸、μIM、μICM和光学性能测量。分析结果表明,由μICM生成的模制微透镜阵列的亮度场分布优于使用μIM制造的微透镜阵列。我们的结果进一步表明,模具温度是由μIM或μICM制造的模制微透镜阵列亮度场分布的最重要加工参数。