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    • 2. 发明授权
    • Anti-glare, anti-reflection film, polarizing plate and liquid crystal display device
    • 防眩光,防反射膜,偏光板和液晶显示装置
    • US06731363B2
    • 2004-05-04
    • US09984963
    • 2001-10-31
    • Kazuhiro NakamuraNaohiro Matsunaga
    • Kazuhiro NakamuraNaohiro Matsunaga
    • G02F11335
    • G02B1/11G02F1/133502
    • An object of the invention is to provide an anti-glare, anti-reflection film of which various characteristics such as anti-reflection, contamination resistance, scratch-resistance and transmission image sharpness, among which anti-reflection is particularly important, are consistent with a sufficiently high anti-glare property when the film is loaded in image display devices, in particular, a high-resolution liquid crystal display device, and which can be produced entirely by wet coating processes at a low manufacturing cost, and further provide a liquid crystal display excelling in image contrast, image visibility and image sharpness. The object is achieved by an anti-glare, anti-reflection film made of a low refractive index layer provided on a transparent support, and an anti-glare layer arranged between the transparent support and the low refractive index layer, the surface energy of the anti-glare layer being 25 mN·m−1 to 70 mN·m−1.
    • 本发明的目的是提供一种防眩光防反射膜,其抗反射性,耐污染性,耐刮擦性和透射图像清晰度等各种特性,其中抗反射特别重要,其与 当将膜装载到图像显示装置,特别是高分辨率液晶显示装置中时,具有足够高的抗眩光性能,并且可以以低制造成本完全通过湿式涂布方法制造,并且还提供液体 水晶显示器在图像对比度,图像可视性和图像清晰度方面表现优异。 该目的是通过设置在透明支撑体上的由低折射率层制成的抗眩光防反射膜和布置在透明支撑体和低折射率层之间的防眩光层来实现的, 防眩层为25mN.m -1至70mN.m <-1。 >
    • 8. 发明申请
    • AUTOMATIC ANALYSIS APPARATUS
    • 自动分析仪
    • US20130243653A1
    • 2013-09-19
    • US13988859
    • 2011-11-29
    • Yuichi KoisoKazuhiro Nakamura
    • Yuichi KoisoKazuhiro Nakamura
    • G01N35/10
    • G01N35/1002G01N35/1011G01N35/1079G01N2035/1025
    • There is provided a highly reliable automatic analysis apparatus in which a piercing type reagent container is loaded. The apparatus reduces the load on a reagent sampling mechanism, alarms and reagent splashing which are caused by contact between a dispensing nozzle and a piercing cap. In reagent dispensing operation, in specific zones A and B before and after the dispensing nozzle 31 descends and passes through the piercing cap 34, the decent velocity of the dispensing nozzle 31 is temporarily set to a low velocity (velocity: 0.02 m/s) and after the nozzle has passed over the zones, it is set to a normal velocity (velocity: 0.04 m/s), so as to decrease the frictional force generated when the dispensing nozzle 31 comes into contact with the piercing cap 34, reduce false abnormal descent detection and reduce the load on the reagent sampling mechanism.
    • 提供了一种高度可靠的自动分析装置,其中装有穿刺型试剂容器。 该装置减少了由分配喷嘴和穿孔盖之间的接触引起的试剂取样机构的负载,报警和试剂飞溅。 在试剂分配操作中,在分配喷嘴31之前和之后的特定区域A和B下降并穿过穿孔帽34时,分配喷嘴31的体面速度暂时设定为低速(速度:0.02m / s) 并且在喷嘴经过这些区域之后,将其设定为正常速度(速度:0.04m / s),以便减小当分配喷嘴31与穿孔帽34接触时产生的摩擦力,减少假 异常下降检测,减少试剂取样机构的负荷。