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    • 2. 发明申请
    • METHOD OF MANUFACTURING AN OPTICAL ELEMENT
    • 制造光学元件的方法
    • US20130241090A1
    • 2013-09-19
    • US13989451
    • 2011-12-08
    • Jun-ichi SakamotoJunji TeradaMasaya Hisamatsu
    • Jun-ichi SakamotoJunji TeradaMasaya Hisamatsu
    • G02B5/00
    • B29D11/0073G02B1/118G02B5/00G02B5/1809G02B5/1852G02B27/283
    • Provided is a method of manufacturing an optical element having a structure, which is represented by a one-dimensional lattice, with high yield with the use of a sol-gel material. A titanium based sol-gel material is applied onto a substrate (1), and then is subjected to vacuum drying to form a titania sol layer (2) corresponding to a dried sol-gel film. Onto the titania sol layer (2), a line-and-space structure is transferred by embossing using a mold (3), and then the mold (3) is separated. Thus, a titania sol layer (4) having the structure is formed. Next, heating is performed to accelerate the dehydration condensation reaction of the sol-gel material to cure the sol-gel material, and thus a titanium oxide structure portion (5) having the line-and-space structure is formed.
    • 提供了使用溶胶 - 凝胶材料以高产率制造具有由一维网格表示的结构的光学元件的方法。 将钛基溶胶 - 凝胶材料施加到基材(1)上,然后进行真空干燥以形成对应于干燥的溶胶 - 凝胶膜的二氧化钛溶胶层(2)。 在二氧化钛溶胶层(2)上,通过使用模具(3)通过压花转移线间距结构,然后分离模具(3)。 因此,形成具有该结构的二氧化钛溶胶层(4)。 接下来,进行加热以加速溶胶 - 凝胶材料的脱水缩合反应以固化溶胶 - 凝胶材料,因此形成具有线间距结构的氧化钛结构部分(5)。
    • 5. 发明申请
    • METHOD OF PRODUCING WIRE-GRID POLARIZER AND WIRE-GRID POLARIZER
    • 生产网状极化器和电网偏振器的方法
    • US20120176676A1
    • 2012-07-12
    • US13339278
    • 2011-12-28
    • Jun-ichi Sakamoto
    • Jun-ichi Sakamoto
    • G02B5/30B05D5/06
    • G02B5/3058
    • A line-and-space structure having a line portion and a space portion is formed by applying a sol-gel coating on a substrate and transferring a structure of a mold to the coating, and an embedded metal portion is formed by filling the space portion with a molten metal. As the metal to be molten, a metal material having a melting point of not higher than 650° C. and showing, after the solidification, an average extinction coefficient of higher than 5.0 or an average extinction coefficient of higher than 4.5 and an average refractive index of less than 1, at a wavelength range of 400 to 700 nm, is selected to improve optical characteristics.
    • 具有线部分和空间部分的线间空间结构通过在基底上施加溶胶 - 凝胶涂层并将模具的结构转移到涂层而形成,并且通过填充空间部分形成嵌入的金属部分 与熔融金属。 作为熔融金属,熔点不高于650℃的金属材料,凝固后的平均消光系数高于5.0,平均消光系数高于4.5,平均折射率 在400〜700nm的波长范围内小于1的指数被选择以改善光学特性。
    • 9. 发明授权
    • Flush toilet bowl
    • 冲水马桶
    • US3932901A
    • 1976-01-20
    • US499512
    • 1974-08-22
    • Kanji InuiJun-Ichi SakamotoYukihiro Gokoh
    • Kanji InuiJun-Ichi SakamotoYukihiro Gokoh
    • E03D5/012E03D5/08E03D11/10
    • E03D5/012
    • A flush toilet bowl of water reservoir containing and pedal operating type which is compact, easy to assemble and convenient and economical in operation is provided. The toilet bowl comprises a bowl unit including a bowl and a water reservoir formed between the bowl and an outer case and a supporting unit separable from the bowl unit and having a dropping port normally closed by a slidable valve and communicated with discharging port in the lower part of the bowl. The supporting unit comprises a diaphragm pump communicated with the water reservoir in the bowl unit for pumping its water to inner wall of the bowl, means for sliding the valve to open the dropping port, means for operating the diaphragm pump and treading pedals for operating the respective means separately. A further pedal is provided for simultaneously operating the treading pedals.
    • 提供一种紧凑,易于组装,操作方便,经济的冲水马桶水箱和踏板操作型。 所述马桶包括碗单元,所述碗单元包括碗和形成在所述碗和外壳之间的储水器和与所述碗单元分离的支撑单元,并且具有通过可滑动阀常闭的下降口,并与所述下部的排出口连通。 碗的一部分。 支撑单元包括隔膜泵,其与碗单元中的储水器连通,用于将其水泵送到碗的内壁,用于滑动阀以打开下落口的装置,用于操作隔膜泵和踏板踏板的装置,用于操作 各自的手段分开。 提供另一个踏板以同时操作踩踏踏板。