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    • 1. 发明授权
    • Spectrophotometer employing magneto-optic effect
    • 分光光度计采用磁光效应
    • US4166697A
    • 1979-09-04
    • US836971
    • 1977-09-27
    • Masaru ItoSeiichi MurayamaManabu YamamotoKounosuke Ohishi
    • Masaru ItoSeiichi MurayamaManabu YamamotoKounosuke Ohishi
    • G01J4/00G01N21/21G01N21/31G01J3/42
    • G01N21/3103
    • This application discloses a spectrophotometer employing a magneto-optic effect which enables quantitative analysis of a sample to be measured by a double beam method. In performing the double beam method for analyzing the sample, a magnetic field is applied to the sample along with linearly polarized light from a light source, the forward scattered light scattered by the sample atoms and the incident linearly polarized light from the sample are converted into two cross-polarized beams of light using an analyzer, and these two beams of cross-polarized light are spectrally analyzed by a single dispersive element. The spectrophotometer of the invention provides an arrangement such that the plane defined by the above-mentioned two beams of light is perpendicular to the plane of dispersion of the dispersive element, and the two beams of light so dispersed are independently detected by separate detectors.
    • 本申请公开了一种使用磁光效应的分光光度计,其能够通过双光束法对待测量的样品进行定量分析。 在进行用于分析样品的双光束方法中,与来自光源的线偏振光一起向样品施加磁场,将由样品原子散射的前向散射光和来自样品的入射线偏振光转换成 使用分析器的两个交叉偏振光束,并且这两个交叉偏振光束通过单个色散元素进行光谱分析。 本发明的分光光度计提供了这样的布置,使得由上述两束光束所限定的平面垂直于色散元件的色散平面,并且通过分开的检测器独立地检测到这样分散的两束光束。
    • 2. 发明授权
    • Magneto-optic spectrophotometer
    • 磁光分光光度计
    • US4165937A
    • 1979-08-28
    • US746831
    • 1976-12-02
    • Seiichi MurayamaMasaru ItoManabu YamamotoKunifusa KayamaKounosuke Oishi
    • Seiichi MurayamaMasaru ItoManabu YamamotoKunifusa KayamaKounosuke Oishi
    • G01J4/04G01N21/21G01N21/31G01J3/42
    • G01N21/3103G01N21/21
    • A magneto-optic spectrophotometer for detection or identification of atoms or molecules contained in the sample by utilizing phenomena of birefringence or rotation of polarization caused by the atoms or the molecules in a magnetic field is constructed as follows. Linearly polarized lights are incident on a space where atoms or molecules to be detected exist in a magnetic field. The lights having passed through said space are separated into two beams of lights of polarization components perpendicular and parallel to the polarization of the incident lights. The perpendicular components are used as the signal lights, and the parallel components the reference lights. The signal lights and the reference lights are spectrally analyzed by a wavelength selector in which a signal light and a reference light of a wavelength to be selected are incident on an identical dispersive element. The signal lights and the reference lights are detected by respective detectors. Then, the ratios of the outputs of the signal light detectors to the outputs of the reference light detectors are obtained. By this construction the intensities of the scattered lights by atoms or molecules to be detected can precisely be measured.
    • 用于通过利用由磁场中的原子或分子引起的双折射或偏振旋转的现象来检测或鉴定样品中包含的原子或分子的磁光分光光度计如下。 线偏振光入射到要检测的原子或分子存在于磁场中的空间。 已经穿过所述空间的光被分离成垂直并平行于入射光的偏振的两束偏振分量的光束。 垂直分量用作信号灯,并联组件参考灯。 通过波长选择器对信号灯和参考光进行光谱分析,其中信号光和要选择的波长的参考光入射到相同的色散元件上。 信号灯和参考灯由相应的检测器检测。 然后,获得信号光检测器的输出与参考光检测器的输出的比率。 通过这种结构,可以精确地测量被检测的原子或分子的散射光的强度。
    • 8. 发明授权
    • Seal bead structure of gasket
    • 垫圈密封圈结构
    • US09581244B2
    • 2017-02-28
    • US13985461
    • 2012-01-19
    • Takanori AnzaiMasaru ItoShinya NakaokaIsao Tanji
    • Takanori AnzaiMasaru ItoShinya NakaokaIsao Tanji
    • F02F11/00F16J15/02F16J15/08
    • F16J15/02F16J15/0818
    • Provided is a seal bead structure of a gasket capable of reducing the reactive force generated in a common bead portion provided between multiple through-holes and thereby capable of achieving a stable sealing function by means of aligning the compression property over the entire bead. In order to achieve this, two through-holes are provided in a row in the flat portion of a metal gasket, with one seal bead provided on the edge of one through-hole, the other seal bead provided on the edge of the other through-hole, and a common bead portion for the both seal beads provided in the intermediate position between the both through-holes, the common bead portion having a two-stage half bead shape in which the half beads are formed on two stage in the same direction.
    • 提供了一种垫圈的密封珠结构,其能够降低在多个通孔之间设置的公共胎圈部分中产生的反作用力,从而能够通过对齐整个胎圈上的压缩特性来实现稳定的密封功能。 为了实现这一点,在金属衬垫的平坦部分中设置有两个通孔,一个密封珠设置在一个通孔的边缘上,另一个密封珠设置在另一个通孔的边缘上 以及设置在两个通孔之间的中间位置的两个密封珠的公共珠部,公共珠部具有两级半珠形,其中半珠形成在两个通孔的两个台上 方向。
    • 10. 发明申请
    • METAL GASKET AND METHOD FOR MANUFACTURING DIE FOR METAL GASKET
    • 金属垫片及其制造方法
    • US20120153579A1
    • 2012-06-21
    • US13390678
    • 2010-08-24
    • Shinya NakaokaIsao TanjiMasaru Ito
    • Shinya NakaokaIsao TanjiMasaru Ito
    • F16J15/02B21K5/20
    • F16J15/0818
    • [Problem] To provide a metal gasket capable of realizing a uniform surface pressure by a bead of the metal gasket and a uniform collapse ratio of the bead, while restricting deformation of flanges upon bolt fastening.[Mechanism for Solving the Problem] A metal gasket to be provided for sealing joint surfaces between two members. The metal gasket includes: a flow passage opening (4) which corresponds to a flow passage definitely provided between and through the two members; multiple bolt holes (3), through which bolts for tightening the two members to each other are penetrated, respectively; and a bead (5). The bead (5) is configured with a height and a width which become higher and wider from the vicinity of each bolt hole (3) in a direction separating therefrom, respectively.
    • [问题]提供一种能够通过金属垫圈的珠缘实现均匀的表面压力并且具有均匀的胎圈折叠率的金属垫圈,同时限制在螺栓紧固时法兰的变形。 [解决问题的机构]设置用于密封两个构件之间的接合表面的金属衬垫。 所述金属垫圈包括:流路通道(4),其对应于通过所述两个构件之间并通过所述两个构件的流动通道; 多个螺栓孔(3)分别穿过其中两个构件相互紧固的螺栓; 和珠(5)。 胎圈(5)的高度和宽度分别从每个螺栓孔(3)附近变得更高和更宽。