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    • 71. 发明授权
    • Cell laminate and fuel cell provided with the same
    • 电池层压板和燃料电池提供相同的
    • US08298715B2
    • 2012-10-30
    • US12224373
    • 2007-03-07
    • Tomokazu HayashiYoshinori YamamotoYuichi YagamiJiro AizakiJunichi Shirahama
    • Tomokazu HayashiYoshinori YamamotoYuichi YagamiJiro AizakiJunichi Shirahama
    • H01M2/02
    • H01M8/0273H01M8/0247H01M8/0256H01M8/0258H01M8/242H01M8/2483H01M2008/1095
    • There is realized a structure particularly suitable for inhibiting deformation of separators having a structure where the shapes of projections and recesses are inverted from each other on the front side and the back side of each separator as in a pressed metal separator. Between adjacent separators, there is formed either a power generation region where MEAs and frame members for holding at least a part of the MEAs are inserted or a refrigerant flow region where neither the MEAs nor the frame members are inserted. A deformation inhibiting region for inhibiting deformation of each separator is formed by a projection provided on the separator. Also, a projection for inhibiting the separator from deforming at the deformation inhibiting region or nearby is formed on each frame member. The projection is projected toward the back side of the deformation inhibiting region, where the deformation inhibiting region is a recess on the back side of the separator.
    • 实现了一种特别适合于抑制如在压制金属分离器中每个隔板的前侧和后侧上的突起和凹陷的形状彼此反转的结构的隔板的变形的结构。 在相邻的分离器之间形成有一个发电区域,其中插入用于保持至少一部分MEA的MEA和框架构件,或者不插入MEA和框架构件的制冷剂流动区域。 通过设置在隔板上的突起来形成用于抑制每个隔板变形的变形抑制区域。 此外,在每个框架构件上形成用于抑制隔板在变形抑制区域或附近变形的突起。 突起朝向变形抑制区域的背面突出,其中变形抑制区域是隔板背侧的凹部。
    • 74. 发明申请
    • COATING METHOD AND COATED ARTICLE
    • 涂层方法和涂层文章
    • US20110300370A1
    • 2011-12-08
    • US13201316
    • 2010-02-08
    • Yasuhiro YoshidaYoshinori YamamotoTeruhiko KumadaReiji Morioka
    • Yasuhiro YoshidaYoshinori YamamotoTeruhiko KumadaReiji Morioka
    • B32B3/26B05D3/02
    • B05D5/083B05D1/36B05D2420/01B05D2451/00B08B17/06C09D5/1625C09D5/1637Y10T428/249994B05D2401/20B05D2401/32
    • Provided is a coating method, including the steps of: applying a coating composition including inorganic fine particles and fluororesin particles in an aqueous medium onto a material to be coated; drying the coating composition on the material to be coated to remove the aqueous medium, thereby forming a porous film formed of the inorganic fine particles, the porous film having the fluororesin particles therein and having voids; and applying one or more water-soluble substances selected from the group consisting of a water-soluble surfactant and a water-soluble polymer onto the porous film, thereby filling the one or more water-soluble substances in the voids of the porous film. According to the coating method, there can be formed a coated article having a coating film which exhibits the excellent effect for inhibiting the attachment of oil stains for a long period and from which, even if oil stains are attached, the oil stains can be easily removed by wiping or washing with water.
    • 提供一种涂布方法,包括以下步骤:将包含无机细颗粒和氟树脂颗粒的涂料组合物在水性介质中涂布到待涂覆的材料上; 将待涂覆的材料上的涂料组合物干燥以除去水性介质,从而形成由无机细颗粒形成的多孔膜,其中具有氟树脂颗粒并具有空隙的多孔膜; 并将一种或多种选自水溶性表面活性剂和水溶性聚合物的水溶性物质施加到多孔膜上,从而将一种或多种水溶性物质填充到多孔膜的空隙中。 根据涂布方法,可以形成具有涂膜的涂布制品,该涂膜对于长时间地抑制油渍的附着具有优异的效果,并且即使附着油渍,油污也容易 通过擦拭或用水清洗除去。
    • 75. 发明授权
    • Optical fiber feature distribution sensor
    • 光纤特征分布传感器
    • US07995198B2
    • 2011-08-09
    • US12438464
    • 2007-08-21
    • Eisuke SasaokaYoshinori Yamamoto
    • Eisuke SasaokaYoshinori Yamamoto
    • G01N21/00
    • G01B11/18G01D5/35348G01K11/32G01K2011/322G01M11/083G01M11/39
    • The present invention relates to an optical fiber characteristic distribution sensor comprising a structure to effectively reduce the measurement errors of position in the temperature distribution measurement etc. The sensor comprises an optical fiber section, part of which is installed in an object to be measured and to which probe light and pumping light are inputted in opposite directions. The optical fiber section includes a marker portion where data relating to the shape of a BGS in the maker has been preliminarily measured in a state where the optical fiber section is installed in a normal state. At the time of calculating the characteristic distribution in the longitudinal direction of the optical fiber section while measuring the data relating to the BGS shape, the errors of the calculated gain occurrence position are corrected, for example, by shifting the scanning range of phase difference between the probe light and the pumping light. The amount of shift of the scanning range of phase difference is given based on a difference value between the phase difference at the time of measurement when the BGS that reflects the gain that has occurred in the marker portion is measured, and the reference phase difference when data relating to the already known shape of the BGS in the marker portion has been preliminarily measured.
    • 本发明涉及一种光纤特性分布传感器,包括有效降低温度分布测量等中位置的测量误差的结构。传感器包括光纤部分,其一部分安装在待测物体中,并且 探测光和泵浦光的方向相反。 光纤部分包括在光纤部分安装在正常状态的状态下已经预先测量了与制造商中的BGS的形状相关的数据的标记部分。 在测量与BGS形状相关的数据的同时计算光纤部分的纵向方向上的特性分布时,计算出的增益发生位置的误差被校正,例如通过将相位差的扫描范围 探头灯和抽光灯。 基于当测量反映在标记部分中发生的增益的BGS时的测量时的相位差之间的差值以及基准相位差,给出相位差的扫描范围的偏移量 已经预先测量了与标记部中的BGS的已知形状有关的数据。
    • 77. 发明申请
    • OPTICAL FIBER DISTRIBUTION TYPE SENSOR AND OPTICAL FIBER DISTRIBUTION TYPE DETECTING METHOD
    • 光纤分布式传感器和光纤分布式检测方法
    • US20100092127A1
    • 2010-04-15
    • US12443113
    • 2007-09-19
    • Eisuke SasaokaYoshinori Yamamoto
    • Eisuke SasaokaYoshinori Yamamoto
    • G01N21/00G02B6/00G01D5/353G01K11/32
    • G01K11/32G01D5/35348G01L1/242G01M11/085
    • The present invention relates to an optical fiber distribution type detecting method and the like equipped with a structure for enabling efficient measurement of a temperature distribution or strain distribution. This method regulates a modulation frequency and modulation index for probe light and pumping light opposingly incident on an object from a light source and a phase difference between the probe light and pumping light, thereby successively setting the length and location of search domains in a region to be measured. In particular, a detection process is executed while resetting the search domain length shorter at a predetermined interval of time or when an abnormality is detected. Thus partly changing the distance resolution for a specific region in the course of the detection process enables efficient measurement operations in a short time.
    • 本发明涉及一种配备有能够有效测量温度分布或应变分布的结构的光纤分布型检测方法等。 该方法调节从光源反射入射到物体上的探测光和泵浦光的调制频率和调制指数以及探测光和泵浦光之间的相位差,从而将区域中的搜索域的长度和位置依次设置为 被测量。 特别地,在以预定的时间间隔或当检测到异常时将搜索域长度更短地重置时,执行检测处理。 因此,在检测过程中部分地改变特定区域的距离分辨率能够在短时间内进行有效的测量操作。