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    • 32. 发明专利
    • Method for producing anodic oxidation porous alumina and nanoimprint mold fabricated using anodic oxidation porous alumina
    • 生产阳极氧化多孔氧化铝的方法和使用阳极氧化多孔铝制备的纳米薄膜模具
    • JP2012046802A
    • 2012-03-08
    • JP2010191006
    • 2010-08-27
    • Kanagawa Acad Of Sci & Technol財団法人神奈川科学技術アカデミー
    • MASUDA HIDEKIKONDO TOSHIAKIMIYAZAKI HAYATO
    • C25D11/16C25D11/04
    • PROBLEM TO BE SOLVED: To provide an anodic oxidation porous alumina including pores that are controlled to be formed in a specific lattice arrangement without the need of complicated operations, and a method for producing the anodic oxidation porous alumina.SOLUTION: The method for producing an anodic oxidation porous alumina includes the steps of: fabricating a second mold having surface projections formed to be in substantially the same arrangement using a first mold comprising an anodic oxidation porous alumina having surface pores formed in a predetermined arrangement; fabricating a third mold having surface pores formed to be in substantially the same arrangement using the second mold; transferring the arrangement of the surface pores from the third mold in a state after arrangement change where the third mold is deformed to change the arrangement of the surface pores, and thereby fabricating a fourth mold having surface projections formed to be in substantially the same arrangement as the arrangement of the surface pores in the state after arrangement change; and forming a pore generation point of anodic oxidation on a surface of an aluminum base material using the fourth mold and subjecting the aluminum base material to anodic oxidation treatment using the pore generation point as a starting point.
    • 待解决的问题:提供一种阳极氧化多孔氧化铝,其包括被控制成特定格子排列而不需要复杂操作的孔,以及生产阳极氧化多孔氧化铝的方法。 解决方案:制备阳极氧化多孔氧化铝的方法包括以下步骤:制备具有形成为基本相同布置的表面突起的第二模具,该第一模具使用第一模具,该第一模具包括阳极氧化多孔氧化铝,其具有形成在 预定安排; 制造具有使用第二模具形成为基本上相同布置的表面孔的第三模具; 在第三模具变形的状态下从第三模具转移表面孔的布置以改变表面孔的布置,从而制造具有形成为基本相同布置的第四模具 布置改变后状态下的表面孔布置; 并使用第四模具在铝基材的表面上形成阳极氧化的孔产生点,并使用孔生成点作为起始点对铝基材进行阳极氧化处理。 版权所有(C)2012,JPO&INPIT
    • 34. 发明专利
    • Method of manufacturing stamper
    • 制造冲压件的方法
    • JP2009258743A
    • 2009-11-05
    • JP2009164498
    • 2009-07-13
    • Kanagawa Acad Of Sci & Technol財団法人神奈川科学技術アカデミー
    • MASUDA HIDEKIYASUI KENJIKAWAMOTO YASUSHI
    • B29C33/38C25D11/04C25D11/12C25D11/24G02B1/11G02B1/118
    • PROBLEM TO BE SOLVED: To provide an anti-reflection film manufacturing method capable of forming a desired anti-reflection film on a polymer film surface with an anodic oxidation porous alumina as a mold, an anti-reflection film formed by this method, a stamper allowing the anti-reflection film to be efficiently formed, and a manufacturing method of the stamper.
      SOLUTION: In the anti-reflection film manufacturing method of reducing reflection by forming irregularities on a surface of a polymer film to continuously change the refractive index, an anodic oxidation porous alumina having narrow pores in a surface thereof, wherein each pore has the diameter continuously changed to have a taper shape by combining anodic oxidation and diameter increasing processing, or a stamper produced with the anodic porous alumina as a mold is used as a mold for formation of the irregularities. The anti-reflection film is formed by this method. The stamper for formation of the anti-reflection film and the manufacturing method thereof are provided.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:为了提供一种能够在阳极氧化多孔氧化铝作为模具的聚合物膜表面上形成期望的抗反射膜的抗反射膜制造方法,通过该方法形成的抗反射膜 ,能够有效地形成防反射膜的压模,以及压模的制造方法。 解决方案:在通过在聚合物膜的表面上形成不规则性以反复连续地改变折射率的反射膜制造方法中,在其表面具有窄孔的阳极氧化多孔氧化铝,其中每个孔具有 通过组合阳极氧化和直径增加处理,直径连续地变成具有锥形形状,或者将作为模具的阳极多孔氧化铝制成的压模用作形成不规则的模具。 通过该方法形成防反射膜。 提供了用于形成防反射膜的压模及其制造方法。 版权所有(C)2010,JPO&INPIT
    • 38. 发明专利
    • Imprinting mold and manufacturing method therefor
    • 印刷模具及其制造方法
    • JP2009052066A
    • 2009-03-12
    • JP2007218240
    • 2007-08-24
    • Kanagawa Acad Of Sci & Technol財団法人神奈川科学技術アカデミー
    • MASUDA HIDEKIYAGISHITA TAKASHIKUMAGAI NAOKO
    • C25D11/04C25D11/08C25D11/10
    • PROBLEM TO BE SOLVED: To provide an imprinting mold which has a fine asperity pattern formed on its surface and can transmit light from a back face, and to provide a manufacturing method therefor. SOLUTION: The imprinting mold has a regular hole-arrayed structure formed on its surface by the anodic oxidation of an aluminum material. The manufacturing method includes further anodizing the aluminum material to oxidize the remaining base metal aluminum part and covert the base metal aluminum part to aluminum oxide. Thereby, the whole part of the mold can transmit light. The obtained optically-transparent mold can be irradiated with ultraviolet rays necessary for curing a photo-curable resin from the back face of the mold pattern, and accordingly is effective as a mold for forming the fine asperity pattern on an opaque substrate with a light imprinting technique. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种压印模具,其在其表面上形成有细微的凹凸图案,并且可以从背面透射光,并提供其制造方法。 解决方案:压印模具通过铝材料的阳极氧化在其表面上形成规则的孔阵列结构。 制造方法包括进一步阳极氧化铝材料以氧化剩余的贱金属铝部件并将贱金属铝部件转换成氧化铝。 因此,模具的整个部分可以透射光。 所获得的光学透明模具可以从模具图案的背面照射固化光固化树脂所需的紫外线,因此作为用于在不透明基材上形成微细凹凸图案的模具是有效的,其具有轻的印记 技术。 版权所有(C)2009,JPO&INPIT
    • 39. 发明专利
    • Antireflection film and method for manufacturing same, and stamper for preparing antireflection film and method for manufacturing same
    • 抗反射膜及其制造方法以及用于制备抗反射膜的印刷机及其制造方法
    • JP2007086283A
    • 2007-04-05
    • JP2005273561
    • 2005-09-21
    • Kanagawa Acad Of Sci & Technol財団法人神奈川科学技術アカデミー
    • MASUDA HIDEKIYASUI KENJIYAGISHITA TAKASHINISHIO KAZUYUKI
    • G02B1/11B29C33/38B29C33/42B29L11/00G02B1/118
    • PROBLEM TO BE SOLVED: To provide: a method for manufacturing an antireflection film which can effectively form an optimum antireflection structure on the surface of a polymer film with anodized porous alumina as a mold; the antireflection film formed by the method; a stamper which can form the antireflection film; and a method for manufacturing the stamper.
      SOLUTION: The method for manufacturing the antireflection film is characterized in that the anodized porous alumina which has fine pores of a vertical sectional shape where a pore diameter is curvedly tapered in a depth direction, is manufactured by combining anodic oxidation with pore diameter expansion treatment and adjusting respective treatment conditions, and then the anodized porous alumina is used as the mold or the stamper prepared with the anodized porous alumina as the mold is used to form arrangement of protrusions or recesses of a shape corresponding to the shape of the fine pore on the surface of a polymer material. Further the antireflection film formed by the method, the stamper for forming the antireflection film and the method for manufacturing the same are also provided.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供:一种制造抗反射膜的方法,其可以在阳极氧化多孔氧化铝作为模具的聚合物膜的表面上有效形成最佳抗反射结构; 通过该方法形成的防反射膜; 可形成抗反射膜的压模; 以及制造压模的方法。 解决方案:制造抗反射膜的方法的特征在于,通过将阳极氧化与孔径结合来制造具有细孔直径在深度方向上呈锥形的垂直截面形状的细孔的阳极氧化多孔氧化铝 膨胀处理和调整各自的处理条件,然后将阳极氧化多孔氧化铝用作模具或用阳极氧化多孔氧化铝制备的压模,因为模具用于形成对应于精细形状的形状的突起或凹部的布置 聚合物材料表面的孔隙。 此外,还提供了通过该方法形成的抗反射膜,用于形成防反射膜的压模及其制造方法。 版权所有(C)2007,JPO&INPIT