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    • 13. 发明申请
    • TITANIUM ELECTRODE MATERIAL AND SURFACE TREATMENT METHOD OF TITANIUM ELECTRODE MATERIAL
    • 钛电极材料的钛电极材料与表面处理方法
    • US20100233587A1
    • 2010-09-16
    • US12709935
    • 2010-02-22
    • Toshiki SATOJun SuzukiYoshinori ItoJun Hisamoto
    • Toshiki SATOJun SuzukiYoshinori ItoJun Hisamoto
    • H01M8/00
    • H01M4/8657H01M4/8803H01M4/8817H01M4/8867H01M4/92H01M4/921H01M8/0206H01M2008/1095
    • It is an object of the present invention to provide a titanium electrode material which is low in cost and is excellent in electric conductivity, corrosion resistance and hydrogen absorption resistance, and a surface treatment method of a titanium electrode material. A titanium electrode material includes: on the surface of a titanium material including pure titanium or a titanium alloy, a titanium oxide layer having a thickness of 3 nm or more and 75 nm or less, and having an atomic concentration ratio of oxygen and titanium (O/Ti) at a site having the maximum oxygen concentration in the layer of 0.3 or more and 1.7 or less; and an alloy layer including at least one noble metal selected from Au, Pt, and Pd, and at least one non-noble metal selected from Zr, Nb, Ta, and Hf, having a content ratio of the noble metal and the non-noble metal of 35:65 to 95:5 by atomic ratio, and having a thickness of 2 nm or more, on the titanium oxide layer. The surface treatment method of a titanium electrode material includes a titanium oxide layer formation step, an alloy layer formation step, and a heat treatment step.
    • 本发明的目的是提供一种成本低且导电性,耐腐蚀性和耐氢吸收性优异的钛电极材料以及钛电极材料的表面处理方法。 钛电极材料包括:在包括纯钛或钛合金的钛材料的表面上,具有3nm以上且75nm以下的氧化钛层,并且具有氧和钛的原子浓度比( O / Ti)在层中的最大氧浓度为0.3以上且1.7以下的部位; 以及包含选自Au,Pt和Pd中的至少一种贵金属和选自Zr,Nb,Ta和Hf中的至少一种非贵金属的合金层,其具有贵金属和非金属的含量比, 在氧化钛层上的原子比为35:65〜95:5的贵金属,厚度为2nm以上。 钛电极材料的表面处理方法包括氧化钛层形成步骤,合金层形成步骤和热处理步骤。
    • 14. 发明授权
    • Titanium electrode material and surface treatment method of titanium electrode material
    • 钛电极材料和钛电极材料的表面处理方法
    • US08349519B2
    • 2013-01-08
    • US12709935
    • 2010-02-22
    • Toshiki SatoJun SuzukiYoshinori ItoJun Hisamoto
    • Toshiki SatoJun SuzukiYoshinori ItoJun Hisamoto
    • H01M8/00
    • H01M4/8657H01M4/8803H01M4/8817H01M4/8867H01M4/92H01M4/921H01M8/0206H01M2008/1095
    • It is an object of the present invention to provide a titanium electrode material which is low in cost and is excellent in electric conductivity, corrosion resistance and hydrogen absorption resistance, and a surface treatment method of a titanium electrode material. A titanium electrode material includes: on the surface of a titanium material including pure titanium or a titanium alloy, a titanium oxide layer having a thickness of 3 nm or more and 75 nm or less, and having an atomic concentration ratio of oxygen and titanium (O/Ti) at a site having the maximum oxygen concentration in the layer of 0.3 or more and 1.7 or less; and an alloy layer including at least one noble metal selected from Au, Pt, and Pd, and at least one non-noble metal selected from Zr, Nb, Ta, and Hf, having a content ratio of the noble metal and the non-noble metal of 35:65 to 95:5 by atomic ratio, and having a thickness of 2 nm or more, on the titanium oxide layer. The surface treatment method of a titanium electrode material includes a titanium oxide layer formation step, an alloy layer formation step, and a heat treatment step.
    • 本发明的目的是提供一种成本低且导电性,耐腐蚀性和耐氢吸收性优异的钛电极材料以及钛电极材料的表面处理方法。 钛电极材料包括:在包括纯钛或钛合金的钛材料的表面上,具有3nm以上且75nm以下的氧化钛层,并且具有氧和钛的原子浓度比( O / Ti)在层中的最大氧浓度为0.3以上且1.7以下的部位; 以及包含选自Au,Pt和Pd中的至少一种贵金属和选自Zr,Nb,Ta和Hf中的至少一种非贵金属的合金层,其具有贵金属和非金属的含量比, 在氧化钛层上的原子比为35:65〜95:5的贵金属,厚度为2nm以上。 钛电极材料的表面处理方法包括氧化钛层形成步骤,合金层形成步骤和热处理步骤。
    • 19. 发明授权
    • Object identification apparatus and method for identifying object
    • 用于识别物体的物体识别装置和方法
    • US08819015B2
    • 2014-08-26
    • US12685551
    • 2010-01-11
    • Hiroshi SatoKatsuhiko MoriYoshinori Ito
    • Hiroshi SatoKatsuhiko MoriYoshinori Ito
    • G06F17/30
    • G06K9/00281G06K9/00288G06K9/00926G06K9/6214
    • An object identification apparatus includes an image data input unit configured to input captured image data including an object, an object identification data generation unit configured to generate data for identifying the object by extracting a feature vector from a partial area of the input image data to convert the feature vector according to the partial area, an object dictionary data storage unit configured to store object dictionary data generated from previously recorded image data, and an object identification unit configured to identify a class to which the object belongs, which is included in the image data input by the image data input unit, based on the data for identifying the object and the object dictionary data.
    • 物体识别装置包括图像数据输入单元,被配置为输入包括对象的拍摄图像数据,对象识别数据生成单元,被配置为通过从输入图像数据的部分区域提取特征向量来生成用于识别对象的数据,以转换 根据部分区域的特征向量,被配置为存储从先前记录的图像数据生成的对象词典数据的对象字典数据存储部,以及被配置为识别包含在图像中的对象所属的类的对象识别单元 基于用于识别对象的数据和对象词典数据,由图像数据输入单元输入的数据。
    • 20. 发明申请
    • ANTI-REFLECTION SHEET, DISPLAY ELEMENT AND DISPLAY DEVICE
    • 防反射片,显示元件和显示设备
    • US20140092480A1
    • 2014-04-03
    • US14097999
    • 2013-12-05
    • Kosuke SanariYoshinori ItoAtsushi OkanoYoshihiko Takagi
    • Kosuke SanariYoshinori ItoAtsushi OkanoYoshihiko Takagi
    • G02B1/11
    • G02B1/118G02B1/11G02F1/133502G02F1/133526H01L51/5281
    • An anti-reflection sheet includes a transparent substrate; and a resin layer formed on a surface of a transparent substrate. The resin layer includes a first surface that faces the surface of the transparent substrate; a second surface that faces away from the surface of the transparent substrate; and a plurality of projections arranged on the second surface of the resin layer so as to form a projection layer. Each of the plurality of projections has a cross section that includes an entire center axis perpendicular to the surface of the transparent substrate. Each of the plurality of projections has a cross section that is in a shape of quadratic function. An arranged pitch of each of the plurality of projections is not more than half of a wavelength of incident light. An aspect ratio of each of the plurality of projections is 1 or less. A difference between a refractive index n1 of the transparent substrate and a refractive index n2 of the resin layer satisfies the following expression: |n1−n2|≦0.05. A thickness of the resin layer is 11 μm or more. The plurality of projections are shaped and arranged so as to satisfy a linear relationship between an effective refractive index of the projection layer and a height of the projection layer.
    • 抗反射片包括透明基板; 以及形成在透明基板的表面上的树脂层。 树脂层包括面向透明基板的表面的第一表面; 远离所述透明基板的表面的第二表面; 以及设置在树脂层的第二表面上以形成突起层的多个突起。 多个突起中的每一个具有包括垂直于透明基板的表面的整个中心轴的横截面。 多个突起中的每一个具有呈二次函数形状的横截面。 多个突起中的每一个的排列间距不大于入射光的波长的一半。 多个突起中的每一个的纵横比为1以下。 透明基板的折射率n1和树脂层的折射率n2之差满足下式:| n1-n2 |≦̸ 0.05。 树脂层的厚度为11μm以上。 多个突起的形状和布置以满足突出层的有效折射率和突出层的高度之间的线性关系。