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1. 北京化工大学 机电工程学院 北京,100029
2. 有机-无机复合材料国家重点实验室, 北京 100029
收稿日期:2011-12-23,
修回日期:2012-01-09,
网络出版日期:2012-04-15,
纸质出版日期:2012-04-15
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何晓祥, 吴大鸣, 郑秀婷. 扩散板表面微结构对均匀度与透光率的影响[J]. 液晶与显示, 2012,(2): 153-157
HE Xiao-xiang, WU Da-ming, ZHENG Xiu-ting. Effect of Microstructure of Light Diffuser Plate on Uniformity and Transmittance[J]. , 2012,(2): 153-157
基于Light Tools光学分析软件分析了光在球形微结构扩散板和圆锥及金字塔两种非球形微结构扩散板内的传输过程
比较了球形微结构扩散板和非球形微结构扩散板的均匀度和透光率;进一步分析了金字塔非球形微结构的顶角
γ
和切削量
H
对扩散板均匀度和透光率的影响。结果表明
金字塔非球形微结构扩散板的均匀度高于圆锥非球形微结构和球形微结构两种扩散板的均匀度
透光率介于圆锥非球形微结构扩散板和球形微结构扩散板之间。金字塔非球形微结构顶角
γ
越大
透光率越高
当
γ
=100°时
扩散板的综合光学性能最好
透光率达82.1%
均匀度达82.4%;切削量
H
越大
透光率越大
均匀度先增大后减小
当
H
=0.04 mm
扩散板的综合光学性能最好
透光率为84.2%
均匀度为86.2%。
The transmission process of light in micro-sphere structure
micro-structure and micro-pyramid structure were analyzed. The transmittance and uniformity of micro-sphere structure
micro-cone structure and micro-pyramid structure were compared based on Light Tools software. At last
the effect of vertex angle
γ
and cutting quantity
H
of micro-pyramid structure on uniformity and transmittance of diffuser were simulated. The result shows that the uniformity of micro-pyramid structure is the best while the transmittance is worse than micro-sphere structure. The transmittance becomes higher when the vertex angle
γ
becomes higher. The transmittance is 82.1% and the uniformity is 82.4% when
γ
=100°.The transmittance becomes higher when the cutting quantity
H
becomes higher while the uniformity increases first and decreases latter. The transmittance is 84.2% and the uniformity is 86.2% when
H
=0.04 mm.
庄孝磊,周芳,陈林森.微透镜阵列光扩散片特性研究及制备 [J]. 苏州大学学报, 2009, 25(4): 48-52.
Kim J S, Kim D S, Kang J J, et al. Replication and comparison of concave and convex micro lens arrays of light guide plate for liquid crystal display in injection molding [J]. Polymer Engineering and Science, 2010, 50(8):1696-1704.
Huang T C, Ciou J R, Huang P H, et al. Fast fabrication of integrated surface-relief and particle-diffusing plastic diffuser by use of a hybrid extrusion roller embossing process [J]. Optical Society of America,2008, 16(1):440-448.
Liu S J, Huang Y C. Manufacture of dual-side surface-relief diffusers with various cross angles using ultrasonic embossing technique [J]. Optics Express, 2009, 17(20):18083-18093.
Hung S Y, Chen S N, Lin C P, et al. The robust design for gapless micro lens array fabrication using the incomplete developing and thermal reflow process [J]. Microwave and Optical Technology letters, 2007, 49(1):23-29.
Yaegashi M, Kinoshita M, Shishido A, et al. Direct fabrication of micro lens array with polarization selectively [J]. Advanced Materials, 2007, 19(6):801-804.
Ho J R, Shin T K, Cheng J-W J, et al. A novel method for fabrication of self-aligned double micro lens arrays [J]. Sensors and Actuators A: Physical, 2007, 135(2):465-471.
曹保柱,王晓蕊. LCD 导光板自由曲面微型槽结构设计及优化 [J]. 液晶与显示, 2010, 25(6): 817-821.
谢洪波,马若玉,罗青青.导光板中一种V-Cut槽结构的设计方法 [J]. 液晶与显示, 2009, 24(5): 681-684.
李世保,吴大鸣,庄俭,等.一种具有波形槽微结构的导光板设计 [J]. 液晶与显示, 2011, 26(4): 469-473.
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