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    • 2. 发明授权
    • Method for measuring birefringence
    • 双折射测量方法
    • US4973163A
    • 1990-11-27
    • US417177
    • 1989-10-04
    • Kiyokazu SakaiShigeyoshi Osaki
    • Kiyokazu SakaiShigeyoshi Osaki
    • G01N21/23
    • G01N21/23
    • The combination of a polarizer and an analyzer, and a sample interposed therebetween are rotated relative to each other to determine the relationship between the angle of rotation and the intensity of light transmitted through the arrangement. The birefringence of the sample is obtained from the retardation values calculated from the result of the determination. When the determination is made for two kinds of light with different wavelengths close to each other, the retardation can be determined straightforwardly. When at least three kinds of light with different wavelengths are used for the determination, different retardation values are obtained for the respective wavelengths for a highly accurate analysis.
    • 偏振器和分析器的组合以及插入其间的样品相对于彼此旋转以确定旋转角度和透射通过该装置的光的强度之间的关系。 从由测定结果计算的延迟值获得样品的双折射。 当对具有彼此接近的不同波长的两种光进行确定时,可以直接确定延迟。 当使用至少三种具有不同波长的光用于确定时,对于各种波长获得不同的延迟值用于高精度分析。
    • 4. 发明授权
    • Apparatus for determining water content of powder/granule
    • 用于测定粉末/颗粒的含水量的装置
    • US5046356A
    • 1991-09-10
    • US413323
    • 1989-09-27
    • Shigeyoshi OsakiKiyokazu SakaiShinichi Nagata
    • Shigeyoshi OsakiKiyokazu SakaiShinichi Nagata
    • G01N22/00G01N5/04G01N22/04H05B6/80
    • G01N22/04G01N5/045H05B6/80
    • An apparatus for determining water content of powder/granule sample including a rectangular waveguide system substantially set up in the upright or vertical disposition, consisting of a microwave transmitting converter, a microwave waveguide, and a microwave receiving converter; the apparatus comprising: a sample container for containing powder or granular sample and being accommodated inside of the microwave waveguide; the waveguide being provided with an inlet hole communicated to the inner space of the cavity resonator at one of side walls, and having a door for opening and closing the hole and a supporting element for the sample container within the waveguide; a buffer weighing system for supporting the hollow waveguide on a supporting table in the upright or vertical disposition and generates electric signals designating the supporting weight; and signal processing means for receiving signal output from the microwave receiving converter and the other signal from said buffer weighing system, storing and arithmetically processing these signals.
    • 一种用于确定粉末/颗粒样品的含水量的装置,包括基本上以直立或垂直布置设置的矩形波导系统,包括微波发射转换器,微波波导和微波接收转换器; 该装置包括:用于容纳粉末或颗粒样品并容纳在微波波导内部的样品容器; 所述波导设置有入口孔,所述入口孔在一个侧壁处连通到所述空腔谐振器的内部空间,并且具有用于打开和关闭所述孔的门以及用于所述波导内的所述样本容器的支撑元件; 缓冲称重系统,用于以直立或垂直布置的方式在支撑台上支撑中空波导,并产生指示支撑重量的电信号; 以及信号处理装置,用于接收从微波接收转换器输出的信号和来自所述缓冲称重系统的其他信号,存储和算术处理这些信号。
    • 5. 发明授权
    • Method of measuring orientation of sheet or web like material
    • 测量片材或网状材料取向的方法
    • US4781063A
    • 1988-11-01
    • US9556
    • 1987-01-30
    • Shigeyoshi OsakiShinichi NagataYoshihiko Fujii
    • Shigeyoshi OsakiShinichi NagataYoshihiko Fujii
    • G01N22/00
    • G01N22/00
    • A method of measuring the orientation of the constituents of specimens is disclosed, which includes the steps of preparing a cavity resonator in the form of a pair of waveguides forming a cavity, said waveguides being formed with a slit, inserting a specimen sheet or web in said slit, oscillating said cavity resonator by microwaves of fixed frequency while producing a relative rotation between said inserted specimen sheet or web and the plane of microwaves of the cavity resonator, measuring the amount of attenuation of the output signal or transmitted microwave intensity from said cavity resonator with respect to said exciting input signal, and measuring the orientation from the relation between said amount of attenuation or transmitted microwave intensity and the angle of said specimen sheet with respect to the cavity resonator, said method being characterized in that the oscillation frequency of said microwaves is set shifted slightly toward the higher side from the resonance frequency of the cavity resonator as measured when the specimen sheet or web is inserted in the slit and held therein at an arbitrary angle relative to the cavity resonator.
    • 公开了一种测量试样组分取向的方法,其包括制备形成空腔的一对波导形式的空腔谐振器的步骤,所述波导形成有狭缝,将样品片或网片插入 所述狭缝通过固定频率的微波振荡所述空腔谐振器,同时在所述插入的样本片或幅材与空腔谐振器的微波平面之间产生相对旋转,测量输出信号的衰减量或从所述腔体发射的微波强度 谐振器,并且根据所述衰减量或透射微波强度与所述样品片相对于腔谐振器的角度之间的关系测量取向,所述方法的特征在于所述振荡频率为所述激励输入信号 微波设置偏离谐振频率较高的一侧 当样本片或网被插入狭缝中并相对于空腔谐振器以任意的角度保持在其中时测量的腔谐振器的细节。
    • 7. 发明授权
    • Method of measuring orientation or dielectric characteristic of
dielectric sheets or webs
    • 测量电介质片材或纤维网的取向或介电特性的方法
    • US4710700A
    • 1987-12-01
    • US777453
    • 1985-09-18
    • Shigeyoshi OsakiYoshihiko Fujii
    • Shigeyoshi OsakiYoshihiko Fujii
    • G01N22/00G01R27/26G01R27/04G01B5/16
    • G01R27/2664G01N22/00
    • A method of measuring the orientation or dielectric characteristic of a dielectric sheet or web is disclosed, with the steps of inserting a sample portion of the dielectric sheet or web in a small clearance in a cavity resonator formed of a pair of waveguides respectively having a transmitting antenna and a receiving antenna, said waveguides being spaced apart from each other with their openings defining said clearance therebetween, irradiating said sample portion with frequency sweep type linearly polarized microwaves from the upper waveguide perpendicularly to said sample portion while producing a relative rotational motion between the plane of polarization of microwaves and said sample portion around the axis of said cavity resonator, and measuring the resonance frequency or Q value of the microwaves received by the lower waveguide.
    • 公开了一种测量电介质片或网状物的取向或介电特性的方法,其步骤是将电介质片或网的样品部分以小间隙插入由分别具有透射 天线和接收天线,所述波导彼此间隔开,其开口限定了所述间隙,在垂直于所述样本部分的同时,从所述上波导面照射所述采样部分与频率扫描型线偏振微波,同时产生相对旋转运动 微波极化平面和所述样品部分围绕所述腔谐振器的轴线,并测量由下波导接收的微波的谐振频率或Q值。
    • 8. 发明授权
    • Instrument for measuring high frequency characteristics of sheet-like
materials
    • 用于测量片状材料的高频特性的仪器
    • US4943778A
    • 1990-07-24
    • US287442
    • 1988-12-20
    • Shigeyoshi Osaki
    • Shigeyoshi Osaki
    • G01B15/02G01N22/00G01R27/26
    • G01N22/00
    • An instrument for measuring the high frequency characteristics of a sheet-like material comprising: a pair of opposed slits formed in a pair of opposed tube walls of a cavity resonator having an optional cross-sectional shape, said slits extending parallel to the tube axis and enabling a sheet-like material to be inserted such that it extends across said cavity resonator; a driving section disposed at one end of said cavity resonator and having a driving conductor for producing microwaves for driving said cavity resonator in the direction to form an electric field which is perpendicular to the tube wall surfaces formed with said pair of slits; a detecting section disposed at the other end of said cavity resonator and having a probe conductor for receiving said microwaves; and a controlling and calculating device for detecting the resonant frequency or attenuation of received microwaves and calculating the high frequency characteristics of the sample from the detection result.
    • 一种用于测量片状材料的高频特性的仪器,包括:一对相对的狭缝,形成在具有任选横截面形状的空腔谐振器的一对相对的管壁中,所述狭缝平行于管轴延伸, 使得片状材料能够插入,使得其延伸穿过所述空腔谐振器; 驱动部,其设置在所述空腔谐振器的一端,并具有用于产生用于驱动所述空腔谐振器的方向的微波的驱动导体,以形成与形成有所述一对狭缝的管壁表面垂直的电场; 检测部,设置在所述空腔谐振器的另一端,并具有用于接收所述微波的探针导体; 以及用于检测接收的微波的谐振频率或衰减并根据检测结果计算样本的高频特性的控制和计算装置。