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    • 33. 发明授权
    • Electromagnetic flow meter
    • 电磁流量计
    • US5207105A
    • 1993-05-04
    • US538092
    • 1990-06-14
    • Masao FukunagaIkuo UematsuMasahiro IkegawaMasayuki Kaiho
    • Masao FukunagaIkuo UematsuMasahiro IkegawaMasayuki Kaiho
    • G01F1/58G01F1/60G01F25/00
    • G01F25/0007G01F1/58G01F1/588G01F1/60
    • An apparatus in which a magnetic field is generated by an excitation coil provided in the outside of a conduit and electromotive force generated in electrodes attached on the conduit is detected to thereby measure a flow rate of a fluid flowing in the conduit, in which the conduit is made thinner in a manner so that a ratio of the axial length of the conduit to the inside diameter of the conduit is set to a value within a range of from 0.2 to 1.0, and in which correction data previously analyzed in accordance with magnetic permeability and inside surface conductivity of a mate piping to which the conduit is to be connected are stored so that a detection signal from the electrodes is corrected on the basis of the correction data to thereby measure the flow rate of the fluid flowing in the conduit.
    • 检测由设置在导管外部的励磁线圈产生磁场的装置,并且检测在连接在导管上的电极中产生的电动势,从而测量在导管中流动的流体的流量,其中导管 以使导管的轴向长度与导管的内径的比率设定为0.2〜1.0的范围内的值的方式变薄,并且其中根据磁导率先前分析的校正数据 存储要将导管连接到的配合管道的内表面电导率,以便根据校正数据校正来自电极的检测信号,从而测量在管道中流动的流体的流量。
    • 34. 发明申请
    • GLUCOSE SENSOR CHIP
    • 葡萄糖传感器芯片
    • US20110142718A1
    • 2011-06-16
    • US12966548
    • 2010-12-13
    • Masaaki HIRAKAWAIkuo Uematsu
    • Masaaki HIRAKAWAIkuo Uematsu
    • G01N21/00
    • C12Q1/006G01N21/7703
    • According to one embodiment, a glucose sensor chip includes an optical waveguide layer on a main surface of a substrate, the optical waveguide layer including a pair of gratings which are separated each other, a sensing film on a surface of a portion of the optical waveguide layer between the pair of the gratings, the sensing film being constituted with a membrane polymer, a cross-linking polymer and a low-molecular compound, the sensing film including a first enzyme which oxidizes or reduces a color forming dye and a glucose, and a second enzyme which reacts with a product of the first enzyme and generates a material which produces the color forming dye.
    • 根据一个实施例,葡萄糖传感器芯片包括在基板的主表面上的光波导层,所述光波导层包括彼此分离的一对光栅,在所述光波导的一部分的表面上的感测膜 所述传感膜由膜聚合物,交联聚合物和低分子化合物构成,感测膜包括氧化或还原成色染料和葡萄糖的第一酶,以及 第二酶与第一酶的产物反应并产生产生着色染料的材料。
    • 35. 发明授权
    • Ceramic conduit assembly with metal outer tube
    • 陶瓷导管组件带金属外管
    • US4914950A
    • 1990-04-10
    • US259321
    • 1988-10-18
    • Ikuo UematsuMasao FukunagaAkiomi Kohno
    • Ikuo UematsuMasao FukunagaAkiomi Kohno
    • F16L49/00G01F1/58G01F15/18
    • F16L49/00G01F1/58G01F15/185
    • A ceramic conduit with a metal outer tube is joined to bonding rings through insert members between end surfaces of the rings and annular bonding surfaces, with the annular bonding surface being not parallel to the axis of the conduit and the insert member being bonded to the ring and conduit. The rings are joined to the outer tube through welds between forward ends of annular protrusions provided in end surfaces which are the reverse surfaces of the surface bonded with the insert members and the forward ends of annular protrusions provided in axial end surfaces of the outer tube. The inner periphery of the outer tube is fitted on the outer periphery of the conduit with a small gap therebetween. The rings are bonded to the conduit with the insert members by being pressed against the conduit in the axial direction of the conduit and only a small quantity of heat is transmitted from the welds to other portions. The outer tube is joined to the rings through portions having a low rigidity to achieve a highly reliable metal and ceramic bonding is achieved and the bonded surfaces are not deteriorated by the welding nor is the outer tube deformed by the welding heat, and an external load is not substantially transmitted to the bonded surfaces.
    • 具有金属外管的陶瓷导管通过环的端表面之间的插入构件和环形接合表面连接到结合环,环形接合表面不平行于导管的轴线并且插入构件结合到环 和导管。 这些环通过设置在端面的环形突起的前端之间的焊接部分与外管接合,端面是与插入件接合的表面的相反表面,以及设置在外管的轴向端面中的环形突起的前端。 外管的内周与导管的外周嵌合,间隙较小。 通过在管道的轴向方向上被压靠在管道上,环通过插入件结合到导管上,并且只有少量的热量从焊缝传递到其它部分。 外管通过具有低刚度的部分连接到环,以实现高可靠性的金属,并且实现陶瓷接合,并且接合表面不会由于焊接而劣化,也不会由于焊接热而导致外管变形,并且外部负载 基本上不传递到接合表面。
    • 38. 发明申请
    • DOUBLE-SIDED COATING APPARATUS
    • 双面涂装
    • US20120204787A1
    • 2012-08-16
    • US13370871
    • 2012-02-10
    • Masaomi NakahataIkuo UematsuHideaki Morishima
    • Masaomi NakahataIkuo UematsuHideaki Morishima
    • B05C11/02
    • B05C11/025B05C5/0254B05C9/04H01M4/0404H01M4/139
    • According to one embodiment, a double-sided coating apparatus includes a transport mechanism configured to convey the substrate, a first coating head disposed on one surface side of the substrate and configured to apply the coating liquid to the coated and uncoated regions, a second coating head disposed on the other surface side of the substrate and configured to apply the coating liquid to the coated and uncoated regions, and a coating roll disposed on the one surface side of the substrate and near a position where the coating roll is opposed to the second coating head with the substrate therebetween and includes first rollers disposed on axially opposite portions, at least one second roller disposed between the first rollers, and a rotation mechanism configured to rotate the first and second rollers such that the peripheral speed of the first rollers is higher than that of the second roller.
    • 根据一个实施方案,双面涂布装置包括配置成输送基材的输送机构,设置在基材的一个表面侧上并构造成将涂布液施加到涂覆和未涂覆区域的第一涂料头,第二涂层 头部,其设置在基板的另一个表面侧上,并且构造成将涂布液施加到涂覆和未涂覆的区域;以及涂布辊,其设置在基板的一个表面侧上并且在涂布辊与第二个 涂覆头,其间具有基底,并且包括设置在轴向相对部分上的第一辊,设置在第一辊之间的至少一个第二辊和被配置为使第一和第二辊旋转的旋转机构,使得第一辊的圆周速度更高 而不是第二辊。