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    • 72. 发明申请
    • Optical recording medium and method of manufacturing the same
    • 光记录介质及其制造方法
    • US20050271853A1
    • 2005-12-08
    • US11140928
    • 2005-06-01
    • Koji MishimaDaisuke YoshitokuKenji Yamaga
    • Koji MishimaDaisuke YoshitokuKenji Yamaga
    • G11B7/24B32B3/02G11B7/26
    • G11B7/241G11B7/2533G11B7/2542Y10T428/21
    • An optical recording medium includes a support substrate 11, and a light transmission layer 12 that is disposed so as to come in contact with the support substrate 11. At least one of a refractive index of the support substrate 11 and a refractive index of the light transmission layer 12, and an extinction coefficient of the support substrate 11 and an extinction coefficient of the light transmission layer 12 is different. As such, according to the invention, a reflective layer is not formed between the support substrate 11 and the light transmission layer 12, such that the support substrate 11 and the light transmission layer 12 directly come in contact with each other. Accordingly, since at least one of the refractive index and the extinction coefficient is different, reflection occurs at the interface between the support substrate 11 and the light transmission layer 12. Therefore, data held by a plurality of pits 11a, that are arranged on the support substrate 11 in a spiral shape or a concentric shape, can be correctly read out.
    • 光记录介质包括支撑基板11和布置成与支撑基板11接触的光透射层12。 支撑基板11的折射率和透光层12的折射率,支撑基板11的消光系数和光透射层12的消光系数中的至少一个是不同的。 因此,根据本发明,在支撑基板11和透光层12之间不形成反射层,使得支撑基板11和光透射层12直接相接触。 因此,由于折射率和消光系数中的至少一个不同,所以在支撑基板11和光透射层12之间的界面处发生反射。 因此,可以正确地读出由多个凹坑11a保持的数据,其被布置在螺旋形状或同心形状的支撑基板11上。
    • 73. 发明申请
    • Optical recording medium
    • 光记录介质
    • US20050270963A1
    • 2005-12-08
    • US11144768
    • 2005-06-06
    • Koji MishimaDaisuke YoshitokuKenji YamagaJunichi Satou
    • Koji MishimaDaisuke YoshitokuKenji YamagaJunichi Satou
    • G11B7/24
    • G11B7/24094
    • An optical recording medium according to the invention has a disc body 11 in which a label side 11b can be viewed from a light incident side 11a, a printing layer 12 that is provided on the label side 11b of the disc body 11, and an ink receiving layer that is provided on the printing layer 12. Accordingly, the printed content of the printing layer 12 can be viewed from the light incident side 11a and a user can print a desired design on the ink receiving layer 13. Therefore, the design flexibility can be enhanced and a possibility of erroneous handling of the optical recording medium by the user can be drastically reduced. In addition, the optical recording medium by manufacturer or brand can be visually discriminated.
    • 根据本发明的光记录介质具有一个盘体11,其中从光入射侧11a可以看到标签侧11b,设置在盘体11的标签侧11b上的印刷层12, 以及设置在印刷层12上的油墨接收层。 因此,可以从光入射侧11a观察印刷层12的印刷内容,并且用户可以在油墨接收层13上打印所需的设计。 因此,可以提高设计灵活性,并且可以显着降低用户对光记录介质的错误处理的可能性。 此外,制造商或品牌的光学记录介质可以被视觉辨别。
    • 76. 发明申请
    • Fuel cell and separator structure used therein
    • 其中使用的燃料电池和分离器结构
    • US20050089747A1
    • 2005-04-28
    • US10785988
    • 2004-02-26
    • Kenji YamagaHiroshi YamauchiKo Takahashi
    • Kenji YamagaHiroshi YamauchiKo Takahashi
    • H01M8/02H01M8/10H01M2/08H01M4/94
    • H01M8/0247H01M8/026H01M8/0271H01M8/1018
    • It is an object of the present invention to simultaneously satisfy reduced separator thickness and pressure drop for power generation by a fuel cell. The present invention provides a fuel cell having two or more stacked units each containing a first separator in which a manifold and fuel gas passage section are formed, first seal sheet which seals the first separator periphery, membrane electrode assembly, second seal sheet which seals a second separator periphery and second separator in which a manifold and oxidizing gas passage section are formed, in this order, wherein each of the fuel gas passage section and oxidizing gas passage section is in communication with the corresponding manifold. Comb teeth structure having comb teeth are provided between the fuel gas passage section and manifold and between the oxidizing gas passage section and manifold in a diffusion layer on the membrane electrode assembly, wherein slits spaces formed between the comb teeth are in communication with the diffusion layer. The manifold in the first separator is in communication with the fuel gas passage section, and the manifold in the second separator with the oxidizing gas passage section via the slit spaces.
    • 本发明的目的在于同时满足用于燃料电池发电的减薄的隔板厚度和压降。 本发明提供一种燃料电池,其具有两个以上的堆叠单元,其各自包含形成有歧管和燃料气体通路部的第一分离器,密封第一分离器周边的第一密封片,密封a的第二密封片 第二分离器周边和第二分离器,其中形成有歧管和氧化气体通道部分,其中燃料气体通道部分和氧化气体通道部分中的每一个与相应的歧管连通。 具有梳齿的梳齿结构设置在燃料气体通道部分和歧管之间以及氧化气体通道部分和歧管之间的膜电极组件上的扩散层中,其中形成在梳齿之间的狭缝空间与扩散层连通 。 第一分离器中的歧管与燃料气体通道部分连通,并且第二分离器中的歧管与氧化气体通道部分经由狭缝空间连通。
    • 78. 发明授权
    • Separator for fuel cell
    • 燃料电池分离器
    • US08197987B2
    • 2012-06-12
    • US11626881
    • 2007-01-25
    • Hironori SasakiKenji YamagaKatsunori Nishimura
    • Hironori SasakiKenji YamagaKatsunori Nishimura
    • H01M8/04
    • H01M8/0228H01M8/0206H01M8/026
    • A separator for fuel cell comprising an electrolyte with ionic conductivity, a pair of electrodes with the electrolyte sandwiched therebetween, and a separator 10 for individually supplying a fuel gas and an oxidizing agent gas to the pair of the electrodes, respectively, wherein the separator 10 is provided with a multilayered metal sheet with at least the outermost layer thereof, and a corrosion-resistant film covering the whole surface of the metal sheet in order to form a metal separator, and the metal separator is further provided with a reacting gas sealing unit 21, a reacting gas manifold junction unit 22, and a reacting gas rectification unit 23, formed of an elastic body.
    • 一种用于燃料电池的隔板,其包括具有离子导电性的电解质,一对电极夹在其间的电极以及用于分别向所述一对电极单独供应燃料气体和氧化剂气体的隔板10,其中隔板10 设置有至少具有最外层的多层金属片和覆盖金属片的整个表面的耐腐蚀膜以形成金属隔板,并且金属隔板还设置有反应气体密封单元 21,反应气体歧管接合单元22和由弹性体形成的反应气体整流单元23。