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    • 1. 发明申请
    • CIRCULARLY POLARIZING PLATE AND THREE-DIMENSIONAL IMAGE DISPLAY APPARATUS
    • 圆形极化板和三维图像显示装置
    • US20140225499A1
    • 2014-08-14
    • US14344000
    • 2012-07-20
    • Rieko RenKoji TasakaKouji Tashiro
    • Rieko RenKoji TasakaKouji Tashiro
    • G02B27/26G02B5/30
    • G02B27/26G02B5/3083
    • A circularly polarizing plate has a polarizer and two λ/4 plates (T1, T2) bonded respectively onto both sides of the polarizer so as to face each other, the circularly polarizing plate is characterized in that the in-plane retardation values Ro of the λ/4 plates (T1) and the λ/4 plates (T2) satisfy (a) to (c) below in an environment with a temperature of 23° C. and RH of 55%. (a) The in-plane retardation value Ro of the λ/4 plates (T1), when measured within the range of 450 to 650 nm, is 3.0 to 20.0 nm smaller than the in-plane retardation value Ro of the λ/4 plates (T2). (b) The in-plane retardation value Ro of the λ/4 plates (T1) (450) falls within the range of 110 to 140 nm. (c) The in-plane retardation value Ro of the λ/4 plates (T2) (650) falls within the range of 145 to 165 nm.
    • 圆偏振板具有偏振片和分别粘合在偏振片的两面上的两个λ/ 4板(T1,T2),以便彼此面对,圆偏振片的特征在于,面偏光板的面内相位差值Ro λ/ 4板(T1)和λ/ 4板(T2)在温度为23℃,RH为55%的环境下满足下述(a)〜(c)。 (a)当在450〜650nm的范围内测量时,λ/ 4板(T1)的面内延迟值Ro比λ/ 4的面内延迟值Ro小3.0〜20.0nm 板(T2)。 (b)λ/ 4板(T1)(450)的面内延迟值Ro落在110〜140nm的范围内。 (c)λ/ 4板(T2)(650)的面内延迟值Ro在145〜165nm的范围内。
    • 2. 发明授权
    • Circularly polarizing plate and three-dimensional image display apparatus
    • 圆偏振板和三维图像显示装置
    • US08952600B2
    • 2015-02-10
    • US14344000
    • 2012-07-20
    • Rieko RenKoji TasakaKouji Tashiro
    • Rieko RenKoji TasakaKouji Tashiro
    • H01J5/16H01J61/40H01K1/26H01K1/30G02B27/26
    • G02B27/26G02B5/3083
    • A circularly polarizing plate has a polarizer and two λ/4 plates (T1, T2) bonded respectively onto both sides of the polarizer so as to face each other, the circularly polarizing plate is characterized in that the in-plane retardation values Ro of the λ/4 plates (T1) and the λ/4 plates (T2) satisfy (a) to (c) below in an environment with a temperature of 23° C. and RH of 55%. (a) The in-plane retardation value Ro of the λ/4 plates (T1), when measured within the range of 450 to 650 nm, is 3.0 to 20.0 nm smaller than the in-plane retardation value Ro of the λ/4 plates (T2). (b) The in-plane retardation value Ro of the λ/4 plates (T1) (450) falls within the range of 110 to 140 nm. (c) The in-plane retardation value Ro of the λ/4 plates (T2) (650) falls within the range of 145 to 165 nm.
    • 圆偏振板具有偏振片和分别粘合在偏振片的两面上的两个λ/ 4板(T1,T2),以便彼此面对,圆偏振片的特征在于,面偏光板的面内相位差值Ro λ/ 4板(T1)和λ/ 4板(T2)在温度为23℃,RH为55%的环境下满足下述(a)〜(c)。 (a)当在450〜650nm的范围内测量时,λ/ 4板(T1)的面内延迟值Ro比λ/ 4的面内延迟值Ro小3.0〜20.0nm 板(T2)。 (b)λ/ 4板(T1)(450)的面内延迟值Ro落在110〜140nm的范围内。 (c)λ/ 4板(T2)(650)的面内延迟值Ro在145〜165nm的范围内。
    • 10. 发明申请
    • Recording medium producing method and recording medium
    • 记录介质的制造方法和记录介质
    • US20060188670A1
    • 2006-08-24
    • US11351383
    • 2006-02-10
    • Shigeru KojimaRieko RenYukako Taka
    • Shigeru KojimaRieko RenYukako Taka
    • B05D3/02B41M5/40
    • B41M5/5245B41M5/5218
    • A recording medium producing method comprising a step of coating a coating liquid which is a mixture of an inorganic fine particle dispersion and a water-soluble binder on a support, wherein the inorganic fine particle dispersion is prepared by a process comprising the steps of heating the inorganic fine particle dispersion at a temperature of from 45° C. to 60° C. for a time of from 0.5 to 5 hours, standing the inorganic fine particle dispersion at a temperature of from 10° C. to 40° C. for a time of from 0.5 to 5 hours, and mixing the inorganic fine particle dispersion is mixed with the water-soluble binder. This invention provides a method for producing a recording medium for ink-jet recording by supplying a coating liquid which is stable in the viscosity Without increasing during standing period and a recording medium produced by the producing method which has no coating defect and gives high image density.
    • 一种记录介质的制造方法,其特征在于,在载体上涂布作为无机微粒分散体和水溶性粘合剂的混合物的涂布液的工序,其中,所述无机微粒分散液通过以下步骤制备,所述方法包括: 无机细颗粒分散体在45℃至60℃的温度下进行0.5至5小时的时间,将无机细颗粒分散体在10℃至40℃的温度下保存,用于 时间为0.5〜5小时,将无机微粒分散液与水溶性粘合剂混合。 本发明提供一种喷墨记录用记录介质的制造方法,其特征在于,通过供给粘度稳定的涂布液,在静置期间不增加的涂布液和通过不产生涂布缺陷而产生高图像浓度的制造方法制造的记录介质 。