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    • 1. 发明授权
    • Pixel-type two-dimensional image detector
    • 像素型二维图像检测器
    • US08993973B2
    • 2015-03-31
    • US13520451
    • 2011-01-04
    • Tatsuya NakamuraMasaki KatagiriNoriaki Tsutsui
    • Tatsuya NakamuraMasaki KatagiriNoriaki Tsutsui
    • G01T1/20G01T3/06
    • G01T3/06G01T1/20
    • In a lattice-like pixel structure in which reflecting plates that reflect a fluorescent light from a fluorescent material-based neutron detecting sheet are arranged along vertical and horizontal axes at a regular interval, a lattice-like fluorescent light detecting member is provided, in which grooves may be formed at an upper half position of the vertical axis direction reflecting plate and at a center position in a vertical axis interval for accommodating a wavelength shifting fiber for vertical axis detection and at a lower half position of the horizontal axis direction reflecting plate and at a center position in a horizontal axis interval for accommodating a wavelength shifting fiber for horizontal axis detection; and a fluorescent material-based neutron detecting sheet is arranged only at a front surface or at both of a front surface and a back surface of the lattice-like fluorescent light detecting member.
    • 在其中以荧光材料为基础的中子检测片反射荧光的反射板以规则的间隔沿垂直和水平轴布置的格子状像素结构中,提供格子状荧光检测部件,其中 可以在垂直轴方向反射板的上半部位置和垂直轴间隔的中心位置形成槽,用于容纳用于垂直轴检测的波长移动光纤和水平轴方向反射板的下半部位置, 在水平轴间隔的中心位置,用于容纳用于水平轴检测的波长移动光纤; 并且基于荧光材料的中子检测片仅布置在格子状荧光检测部件的前表面或前表面和后表面两者处。
    • 2. 发明申请
    • PIXEL-TYPE TWO-DIMENSIONAL IMAGE DETECTOR
    • 像素型二维图像检测器
    • US20120280132A1
    • 2012-11-08
    • US13520451
    • 2011-01-04
    • Tatsuya NakamuraMasaki KatagiriNoriaki Tsutsui
    • Tatsuya NakamuraMasaki KatagiriNoriaki Tsutsui
    • G01T1/20G01T3/06
    • G01T3/06G01T1/20
    • In a lattice-like pixel structure in which a reflecting plate that reflects a fluorescent light from a fluorescent material-based neutron detecting sheet is arranged along a vertical axis at a regular interval, and a reflecting plate that reflects a fluorescent light is arranged along a horizontal axis at a regular interval and at a right angle with respect to a series of fluorescent plates formed arranged along the vertical axis, a lattice-like fluorescent light detecting member is formed by providing such a structure that a groove may be formed at upper half position of the vertical axis direction reflecting plate and at a center position in a vertical axis interval for accommodating a wavelength shifting fiber for vertical axis detection for detecting the fluorescent light, and a groove may be formed at lower half position of the horizontal axis direction reflecting plate and at a center position in a horizontal axis interval for accommodating a wavelength shifting fiber for horizontal axis detection for detecting the fluorescent; and a fluorescent material-based neutron detecting sheet is arranged only at a front surface or at both of a front surface and a back surface of the lattice-like fluorescent light detecting member.
    • 在以规则的间隔沿着垂直轴配置反射来自基于荧光材料的中子检测片的荧光的反射板的格子状像素结构中,反射荧光的反射板沿着 水平轴相对于沿着垂直轴线形成的一系列荧光板以规定间隔和直角形成,通过提供这样的结构形成格子状荧光检测部件,即,可以在上半部形成凹槽 垂直轴方向反射板的位置和垂直轴间隔的中心位置,用于容纳用于检测荧光的垂直轴检测用波长移动光纤,并且可以在水平轴方向的下半位置形成反射 并且在水平轴间隔的中心位置处,用于容纳用于水平线的波长移动光纤 用于检测荧光的轮轴检测; 并且基于荧光材料的中子检测片仅布置在格子状荧光检测部件的前表面或前表面和后表面两者处。
    • 5. 发明授权
    • Neutron detector
    • 中子检测器
    • US09268045B2
    • 2016-02-23
    • US14502698
    • 2014-09-30
    • Japan Atomic Energy AgencyChichibu Fuji Co., Ltd.Masaki Katagiri
    • Tatsuya NakamuraNoriaki TsutsuiAtsushi SakaueMasaki Katagiri
    • G01T3/06
    • G01T3/06
    • A neutron detector with a unique neutron detecting element is disclosed. The neutron detecting element has an inner cylindrical neutron scintillator where a neutron detection body including a ZnS phosphor, and a neutron converter material which contains 6Li or 10B is arranged outside of the cylindrical substrate; a scintillator fluorescence detection body made by placing coiled wavelength shift fibers where two wavelength shift fibers are wound in parallel along the cylindrical substrate on said inner cylindrical neutron scintillator; and an outer cylindrical neutron scintillator where a neutron detection body is arranged inside of the cylindrical substrate, the outer cylindrical neutron scintillator being arranged on the scintillator fluorescence detection body. The fluorescence signals converted into pulse signals by two optical detectors are led to a coincidence circuit, and when two fluorescence signals are measured simultaneously during the predetermined period of time, a neutron signal is output.
    • 公开了具有独特中子检测元件的中子探测器。 中子检测元件具有内圆柱形中子闪烁器,其中包括ZnS荧光体的中子检测体和包含6Li或10B的中子转换器材料布置在圆柱形基板的外侧; 通过放置卷绕的波长位移纤维制成的闪烁体荧光检测体,其中两个波长位移纤维沿着圆柱形基底平行地缠绕在所述内圆柱形中子闪烁体上; 以及外圆柱形中子闪烁体,其中中子检测体设置在圆筒形基板的内部,外圆柱形中子闪烁体布置在闪烁体荧光检测体上。 通过两个光学检测器转换成脉冲信号的荧光信号被引导到符合电路,并且当在预定时间段期间同时测量两个荧光信号时,输出中子信号。
    • 8. 发明授权
    • X-ray tube
    • X光管
    • US07386095B2
    • 2008-06-10
    • US11512416
    • 2006-08-30
    • Tomoyuki OkadaToru FujitaTooru YamamotoTatsuya MatsumuraTatsuya Nakamura
    • Tomoyuki OkadaToru FujitaTooru YamamotoTatsuya MatsumuraTatsuya Nakamura
    • H01J35/14
    • H01J35/04H01J35/14
    • The present invention relates to an X-ray tube with a structure, by which the charging of an insulating member, disposed inside a container, is effectively prevented to enable stable operation to be secured. This X-ray tube has an electron source that emits electrons, a target that generates X-rays in response to the incidence of the electrons, first and second electrons, each having a side face portion that extends along the direction of incidence of the electrons and forming a predetermined electric field between the electron source and the target, and an insulating support member, for supporting the first and second electrodes, being disposed along the side face portions of the first and second electrodes. The second electrode, of the first and second electrodes, is positioned closest to the target and has an anti-charging edge portion that is positioned at an X-ray generating surface end of the side face portion and that extends toward the exterior of the container so as to cover over the support members from the target.
    • 本发明涉及一种具有结构的X射线管,通过该X射线管可以有效地防止设置在容器内部的绝缘构件的充电,以确保稳定的操作。 该X射线管具有发射电子的电子源,响应于电子入射而产生X射线的靶,第一和第二电子,每个具有沿着电子入射方向延伸的侧面部分 以及在所述电子源和所述靶之间形成预定的电场,以及用于支撑所述第一和第二电极的绝缘支撑构件沿着所述第一和第二电极的侧面部分设置。 第一和第二电极的第二电极位于最靠近目标的位置,并且具有位于侧面部分的X射线产生表面端部并且朝向容器外部延伸的防充电边缘部分 以覆盖来自目标的支持成员。
    • 9. 发明授权
    • Process for producing toner
    • 生产调色剂的方法
    • US06207339B1
    • 2001-03-27
    • US09377517
    • 1999-08-19
    • Masayoshi KatoHitoshi KandaTatsuya Nakamura
    • Masayoshi KatoHitoshi KandaTatsuya Nakamura
    • G03G9087
    • G03G9/0806
    • A process for producing a toner has the steps of, polymerizing a polymerizable monomer composition containing at least a polymerizable monomer and a colorant, in an aqueous dispersion medium to form colored polymer particles, and thereafter washing the colored polymer particles, followed by dewatering to prepare wet colored polymer particles, subjecting the resultant wet colored polymer particles to substantial removal of the water held by the wet colored polymer particles, by means of a dryer making use of hot air to obtain toner particles, and drying the toner particles under reduced pressure by means of a vacuum dryer so that polymerizable monomers remaining in the toner particles come to be in a residue of 200 ppm or less.
    • 调色剂的制造方法具有以下步骤:将含有至少可聚合单体和着色剂的可聚合单体组合物在水分散介质中聚合以形成着色聚合物颗粒,然后洗涤着色聚合物颗粒,然后脱水以制备 湿着色聚合物颗粒,通过使用热空气的干燥器,使得到的湿着色聚合物颗粒基本上除去湿着色聚合物颗粒保持的水,得到调色剂颗粒,并通过减压干燥调色剂颗粒 真空干燥机的方法,使残留在调色剂颗粒中的可聚合单体的残留量为200ppm以下。