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    • 66. 发明授权
    • Reflector having pits and projections on a surface thereof, manufacturing method for the same, and reflection type liquid crystal display device employing the reflector
    • 在其表面上具有凹凸的反射板,其制造方法和使用该反射体的反射型液晶显示装置
    • US06421106B1
    • 2002-07-16
    • US09123909
    • 1998-07-28
    • Tomomasa TakatsukaKoichi MoueMasao OhkitaTatsuya MoriikeTetsushi TanadaAkito MiuraMitsuru Kano
    • Tomomasa TakatsukaKoichi MoueMasao OhkitaTatsuya MoriikeTetsushi TanadaAkito MiuraMitsuru Kano
    • G02F11335
    • G02F1/133553
    • A brighter and whiter reflector provides high reflection efficiency over a wide range of angles. An indenting tool is pressed against the surface of a matrix base material; the pressing operation is repeated while changing the position of the indenting tool on the surface of the base material for the matrix to successively form many pits, the inner surfaces of which are shaped like partial spheres, on the mold surface of the matrix base material so as to provide it as the matrix for forming the reflector. Then, a transfer mold having a mold surface which has a reversed pattern of the pits and projections of the mold surface of the matrix is made, and the mold surface of the transfer mold is transferred to the surface of the base material for the reflector to provide a reflector (1). Pits (4) of the reflector (1) are formed so that the depths the pits (4) range from 0.1 &mgr;m to 3 &mgr;m, the tilt angles of the inner surfaces of the pits (4) are distributed in the range of −18 degrees to +18 degrees, and the pitches between adjoining pits (4) range from 5 &mgr;m to 50 &mgr;m. A reflection type liquid crystal display device in accordance with the present invention is equipped with the reflector (1).
    • 更亮和更白的反射器在广泛的角度提供高反射效率。 将压痕工具压在矩阵基材的表面上; 重复按压操作,同时改变基体材料表面上的压痕工具的位置,以在基体材料的模具表面上依次形成许多凹坑,其内表面形状为局部球形, 以提供它作为形成反射器的矩阵。 然后,制造具有模具表面的转印模具,该模具表面具有基体的模具表面的凹坑和突起的相反图案,并且转印模具的模具表面被转移到用于反射器的基材的表面 提供反射器(1)。 形成反射器(1)的凹坑(4),使得凹坑(4)的深度范围为0.1μm至3μm,凹坑(4)内表面的倾斜角分布在-18° 度至+18度,相邻凹坑(4)之间的间距范围从5um到50um。 根据本发明的反射型液晶显示装置配备有反射器(1)。
    • 67. 发明授权
    • Method and apparatus for fabricating reflector
    • 制造反射体的方法和装置
    • US06193898B1
    • 2001-02-27
    • US09170715
    • 1998-10-13
    • Mitsuru KanoTomomasa TakatsukaKenji Omote
    • Mitsuru KanoTomomasa TakatsukaKenji Omote
    • G02F11333
    • G02F1/133553B29D11/00605
    • A plurality of reflectors respectively having the same rough reflecting surfaces are formed substantially simultaneously on a transparent substrate of a large area. A photosensitive resin film is formed on a surface of a transparent substrate. An embossing die having a rough working surface is pressed against a photosensitive resin part of the photosensitive resin film and the photosensitive resin part is irradiated with ultraviolet rays from below the transparent substrate to form a prehardened photosensitive resin part. Those steps are repeated to form a plurality of prehardened, embossed photosensitive resin parts on the transparent substrate, and then parts not prehardened of the photosensitive resin film are removed by etching. The prehardened, embossed photosensitive resin parts are heated for hardening, and a metal reflecting film is formed on the hardened embossed photosensitive resin parts to complete a plurality of reflectors.
    • 分别具有相同粗糙反射面的多个反射器基本上同时形成在大面积的透明基板上。 在透明基板的表面上形成感光性树脂膜。 将具有粗加工面的压花模压在感光性树脂膜的感光性树脂部分上,从透明基材的下方照射紫外线,形成预硬化感光性树脂部。 重复这些步骤以在透明基板上形成多个预硬化的压花感光树脂部件,然后通过蚀刻去除未预硬化的感光性树脂膜的部件。 预硬化的压花感光性树脂部件被加热硬化,并且在硬化的压花感光树脂部件上形成金属反射膜,以完成多个反射器。
    • 69. 发明授权
    • Evaporation method of forming transparent barrier film
    • 形成透明阻挡膜的蒸发方法
    • US5378506A
    • 1995-01-03
    • US58132
    • 1993-05-10
    • Nobuhiko ImaiMamoru SekiguchiMitsuru KanoThomas KrugGerhard SteinigerAndreas Meier
    • Nobuhiko ImaiMamoru SekiguchiMitsuru KanoThomas KrugGerhard SteinigerAndreas Meier
    • C08J7/04B65D65/42C23C14/08C23C14/32C23C14/56C23C16/00
    • B65D65/42C23C14/081
    • This invention relates to a source material for vapor deposition, which is useful for forming a magnesium oxide thin film by vacuum vapor deposition process, and to a method of forming a transparent barrier film by using the magnesium oxide source material. The source material is composed of a magnesium oxide having a bulk density of 2.5 g/ml or more. This magnesium oxide can be obtained by sintering or fusing magnesium oxide material. For producing a transparent barrier film having a gas barrier property, this magnesium oxide is vapor-deposited on a surface of a transparent plastic base film by means of vacuum vapor deposition. The volume shrinkage or cracking of the evaporation source material can be avoided, thereby stabilizing the evaporation and prolonging duration of the evaporation. Further, it is possible to utilize a high power of electron beam. Since the evaporation source material is substantially free from pore, the evacuation of gas from the evaporation apparatus can be finished within a short period of time, and the vacuum degree within the evaporation apparatus can be stabilized. Since there is no splash or scattering during the evaporation., a transparent barrier film which is uniform in thickness and free from pinhole can be obtained.
    • 本发明涉及一种用于气相沉积的源材料,其用于通过真空气相沉积法形成氧化镁薄膜,以及通过使用氧化镁源材料形成透明阻挡膜的方法。 源材料由堆积密度为2.5g / ml以上的氧化镁构成。 该氧化镁可以通过烧结或熔融氧化镁材料得到。 为了制造具有阻气性的透明阻挡膜,通过真空气相沉积将该氧化镁气相沉积在透明塑料基膜的表面上。 可以避免蒸发源材料的体积收缩或破裂,从而稳定蒸发并延长​​蒸发的持续时间。 此外,可以利用大功率的电子束。 由于蒸发源材料基本上没有孔,所以可以在短时间内完成从蒸发装置排出的气体,并且可以使蒸发装置内的真空度稳定。 由于在蒸发期间没有飞溅或散射,可以获得厚度均匀且无针孔的透明阻挡膜。