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    • 7. 发明授权
    • Transparent laminate and filter for use for plasma display panel using the transparent laminate
    • 透明层压板和过滤器,用于使用透明层压板的等离子体显示面板
    • US06252703B1
    • 2001-06-26
    • US09455904
    • 1999-12-07
    • Toshitaka NakamuraKazuaki SasaKazuhiko MiyauchiYoshihiro Hieda
    • Toshitaka NakamuraKazuaki SasaKazuhiko MiyauchiYoshihiro Hieda
    • G02B526
    • G02B1/10H01J2211/44
    • There is provided a transparent laminate which comprises a transparent substrate, and four to five units each of a high refractive index transparent film and a silver type transparent electrical conductor film. The units are laminated successively on a surface of the transparent substrate, and one high refractive index transparent film is further disposed as an outermost layer. The high refractive index transparent film is an optically transparent film having a refractive index of from 1.5 to 2.7. The silver type transparent electrical conductor film has a thickness in a range of from 5 to 20 nm. A thickness of the silver type transparent electrical conductor film disposed in a first layer with reference to the transparent substrate is substantially equal to a thickness of the silver type transparent electrical conductor film in an outermost layer with reference to the transparent substrate. A thickness of the silver type transparent electrical conductor film in each of other layers is 3/2(1±0.2) times as large as the thickness of the silver type transparent electrical conductor film in the first layer. A thickness of the high refractive index transparent film in a first layer with reference to the transparent substrate is substantially equal to a thickness of the high refractive index transparent film in an outermost layer with reference to the transparent substrate and is 7/2(1±0.2) times as large as the thickness of the silver type transparent electrical conductor film in the first layer. The thickness of the high refractive index transparent film in each of other layers is 7 (1±0.2) times as large as the thickness of the silver type transparent electrical conductor film in the first layer.
    • 提供一种透明层压体,其包括透明基材,以及高分子折射率透明膜和银型透明导电膜四至五个单元。 将该单元依次层压在透明基板的表面上,另外还设置一个高折射率透明膜作为最外层。 高折射率透明膜是折射率为1.5〜2.7的光学透明膜。 银型透明电导体膜的厚度为5〜20nm。 相对于透明基板设置在第一层中的银型透明电导体膜的厚度基本上等于相对于透明基板的最外层中的银型透明导电膜的厚度。 其他层中的银型透明导电膜的厚度为第一层中的银型透明导电膜的厚度的3/2(1±0.2)倍。 相对于透明基板,第一层中的高折射率透明膜的厚度基本上等于相对于透明基板的最外层的高折射率透明膜的厚度,为7/2(1± 0.2)倍于第一层中银型透明电导体膜的厚度。 其他各层中的高折射率透明膜的厚度为第一层中的银型透明导电膜的厚度的7(1±0.2)倍。
    • 10. 发明授权
    • Reversible heat-sensitive recording medium
    • 可逆热敏记录介质
    • US5604175A
    • 1997-02-18
    • US240528
    • 1994-05-10
    • Yutaka NakabayashiYoshihiro HiedaSeiji Kondo
    • Yutaka NakabayashiYoshihiro HiedaSeiji Kondo
    • B41M5/337B41M5/36B41M5/26
    • B41M5/363Y10S428/913Y10S428/914
    • A reversible heat-sensitive recording medium comprising(i) a resin matrix,(ii) at least one organic low molecular weight material (A) which is at least partially insoluble in the resin matrix, exists in the resin matrix by phase separation and is dispersed as particles in the resin matrix, and(iii) an organic low molecular weight material (B) soluble in the resin matrix, wherein the organic low molecular weight material (B) can impart an orientation to the melt of the organic low molecular weight material (A) at a temperature of from T.sub.1 to T.sub.2 (wherein T.sub.1 is the melting point of the organic low molecular weight material (A) in the resin matrix, and T.sub.2 is the melting point of the organic low molecular weight material (B) in the resin material).
    • 一种可逆热敏记录介质,其包含(i)树脂基质,(ii)至少部分不溶于树脂基质的至少一种有机低分子量材料(A),通过相分离存在于树脂基质中,并且是 作为颗粒分散在树脂基质中,和(iii)可溶于树脂基质的有机低分子量材料(B),其中有机低分子量材料(B)可赋予有机低分子量的熔体取向 材料(A)在T1至T2的温度(其中T1是有机低分子量材料(A)在树脂基体中的熔点,T2是有机低分子量材料(B)的熔点, 在树脂材料中)。