欢迎登录材料期刊网

材料期刊网

高级检索

介绍了3D显示的基本原理,重点介绍了目前3D显示的主流技术类型,包含了眼镜式3D技术以及裸眼式3D技术,其中眼镜式3D技术包含色差式3D技术、偏光式3D技术和主动快门式3D技术;裸眼式3D技术包含视差屏障式3D技术、柱状透镜式3D技术、指向光源式3D技术和多层显示式3D技术.阐述了各种3D显示技术的基本实现原理和应用领域、并对涉及液晶显示的几种3D技术的优缺点进行了对比.结合液晶材料的特点与3D液晶显示的实际要求,阐述了3D液晶面板对液晶材料快速响应方面的要求,以及液晶透镜对液晶材料光学各向异性参数的要求.

参考文献

[1] Displaysearch.Shipments of 3D LCD TV panels reach 21M in 2011,reaching 10% penetration[EB/OL].[2012-04-05].http://www.displaysearch.com/cps/rde/xchg/displaysearch/hs.xsl/120307_shipments_of_3d_lcd_tv_panels_reach_21m in 2011.asp.
[2] 王琼华.3D显示技术与器件[M].北京:科学出版社,2011.
[3] Javidi B,Okano F.Three-Dimensional Television,Video,and Display Technologies[M].New York,USA:Springer,2002.
[4] 王永,孙可,孙士祥.3D显示技术的现状及发展[J].现代显示,2012,(2):26-29.
[5] Wikipedia.3D display[EB/OL].[2012-04-05].http://en.wikipedia.org/wiki/3D_display.
[6] 百度百科.裸眼3D[EB/OL].[2012-04-05].http://baike.baidu.com/view/3442285.htm.
[7] Realcel.FAQ[EB/OL].[2012-04-05].http://www.realcel.com/service.asp? rid=1.
[8] PureDepth.Multi-layer display[EB/OL].[2012-04-05].http://www.puredepth.com.
[9] Johnson R B,Jacobsen G A.Advances in lenticular lens arrays for visual display[J].SPIE,2005,5874:587406(1-11).
[10] Nie X Y,Lu R B,Xianyu H Q,et al.Anchoring energy and cell gap effects on liquid crystal response time[J].J.Appl.Phys.,2007,101(10):103110(1-5).
[11] Wang H Y,Wu T X,Zhu X Y,et al.Correlations between liquid crystal director reorientation and optical response time of a homeotropic cell[J].J.Appl.Phys.,2004,95(10):5502-5508.
[12] 高鸿锦.液晶化学[M].北京:清华大学出版社,2011.
[13] Kirsch P,Binder W,Hahn A,et al.Super-Fluorinated Liquid Crystals:Towards the Limits of Polarty[J].Eur.J.Org.Chem.,2008,3479-3481.
[14] Bartmann E.Liquid crystalline α,αdifluorobenzyl phenyl ethers[J].Adv.Mater.,1996,(8):570-573.
[15] Bartmann E,Hittich R,Hans A,et al.Difluoro-methylene compounds useful as low-viscosity components of liquid crystalline media for liquid crystal and electro-optical display elements:DE,4006921[P].1989-03-18.
[16] Shuichi M,Yasuyuki S,Kazutoshi M,et al.Liquid crystalline compound having a difluoropropyleneoxy group as bonding group,liquid crystal composition and liquid crystal display element:EP,1179522A1[P].2002-02-13.
[17] 牛磊,徐丽华,李曙新.可实现2D/3D转换的液晶显示装置:CN,200820095932.9[P].2009-05-13.
[18] Kao Y Y,Huang Y P,Yang K X,et al.An auto-stereoscopic 3D display using tunable liquid crystal lens array that mimics effects of GRIN lenticular lens array[C]//2009 SID International Symposium Dig.Tech.Pap.,San Antonio,USA:SID,2009,XL:111-114.
[19] Francis M,Ionescu D,Goulding M,et al.Improved liquid crystal mixtures for STN displays[J].Mol.Cryst.Liq.Cryst.,2004,411(1):71-78.
[20] Kirsch P,Bremer M,Kirsch A,et al.Matrials for liquid crystal displays with reduced power consumption[J].Mol.Cryst.Liq.Cryst.,2000,346(1):193-199.
[21] 李宁,华瑞茂,张兴,等.(多)氟取代苯基二乙炔(联)苯衍生物及其制备方法与应用:CN,201110419503.9[P].2011-12-15.
[22] 李辉,杜渭松,李建,等.芳环上氟原子对手性液晶分子扭曲力的影响[J].液晶与显示,2011,26(1):5-8.
[23] 李娟丽,安忠维.侧向氟取代双烷基环己基联苯类液晶化合物的介晶性研究[J].液晶与显示,2006,21(3):214-217.
[24] Dr P E,Volker M,Joachim K,et al.Liquid crystal compound,liquid crystal medium and liquid crystal display:JP,2002012871A[P].2002-01-15.
[25] 陆刃波,张素兵,张建民,等.3D频道开播带动3D电视产业升级[EB/OL]//中国电子商会2012年3D电视市场趋势座谈会[2012-04-14].http://info,homea,hc360.com/2012/01/161002869495.shtml.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%