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    • 3. 发明专利
    • Radioactive contamination inspection method and device
    • 放射性污染检测方法和装置
    • JP2006023162A
    • 2006-01-26
    • JP2004200639
    • 2004-07-07
    • Toshiba Corp株式会社東芝
    • SAKAI HIROTAKAINOHARA KOICHIROTSUBOI YUSUKEAOKI MASASHI
    • G01T1/167G01T1/169G01T7/08
    • PROBLEM TO BE SOLVED: To provide a radioactive contamination inspection method and its device for acquiring a satisfactory detection limit while securing throughput per unit of time, as to radioactive contamination inspection on an object under inspection continuously moving on a conveyor.
      SOLUTION: This radioactive contamination inspection device is equipped with a conveyor belt 5 for conveying the object 6 under inspection, a plurality of radiation detectors 1a to 4c disposed in the traveling direction of the conveyor belt 5 for measuring radiation radiated from the object 6, and an information processing/controlling/displaying device 8 for processing the output of the radiation detectors 1a to 4c, controlling the speed of the conveyor belt 5, and displaying the radioactive contamination state of the object 6.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种放射性污染物检查方法及其装置,用于在确保每单位时间内的生产量的同时获得令人满意的检测限,以及对在被检查物体上的放射性污染检查在输送机上连续移动。 解决方案:该放射性污染检查装置配备有用于输送检查对象物6的传送带5,沿传送带5的行进方向设置的多个辐射检测器1a〜4c,用于测量从物体辐射的辐射 6,以及用于处理放射线检测器1a至4c的输出的信息处理/控制/显示装置8,控制传送带5的速度,以及显示物体6的放射性污染状态。(COPYRIGHT:( C)2006,JPO&NCIPI
    • 4. 发明专利
    • Article taking out monitor
    • 拍摄监视器的文章
    • JP2005083978A
    • 2005-03-31
    • JP2003318404
    • 2003-09-10
    • Toshiba Corp株式会社東芝
    • TSUBOI YUSUKEAOKI MASASHI
    • G21C17/00G01T1/169G01T7/00
    • PROBLEM TO BE SOLVED: To reduce the space, weight, and drive section power supply volume of a radiation measuring apparatus and improve the processing efficiency of radiation measurement. SOLUTION: The radiation measuring apparatus comprises radiation detectors 1, 6, 2, 3, 4, 5 which are placed on the upper surface, lower surface, both sides, and front/rear sides of an object to be measured 7, respectively, to measure the presence or absence of radioactive contamination of the object to be measured 7. The apparatus includes means for hoisting and lowering the radiation detector 1 on the upper surface according to the height of the object to be measured 7 and means for driving front/rear-side radiation detectors which drives the radiation detectors 4, 5 on the front/rear sides in the opposite direction vertically, in synchronization with each other, with maintaining counterbalance therebetween. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:减少辐射测量装置的空间,重量和驱动部分供电体积,提高辐射测量的处理效率。 解决方案:辐射测量装置包括放置在待测物体7的上表面,下表面,两侧以及前/后侧的辐射探测器1,6,2,3,4,5, 分别测量待测物体7的放射性污染物的存在或不存在7.该装置包括根据待测物体7的高度起升和降低上表面上的辐射检测器1的装置和用于驱动的​​装置 前/后侧辐射检测器,它们彼此同步地沿相反方向在相反方向上驱动前/后侧的辐射检测器4,5,同时保持它们之间的平衡。 版权所有(C)2005,JPO&NCIPI
    • 5. 发明专利
    • Radiation discrimination detector and method of manufacturing the same
    • 辐射鉴别检测器及其制造方法
    • JP2014016319A
    • 2014-01-30
    • JP2012155801
    • 2012-07-11
    • Toshiba Corp株式会社東芝
    • SUMIDA AKIOSAKAI HIROTAKAHATTORI KANAKOMORI NORIAKIAOKI MASASHIIINO DAIKI
    • G01T1/20G01T1/203
    • PROBLEM TO BE SOLVED: To provide a radiation discrimination detector having improved detection sensitivity for α-rays and β-rays by optimizing the quantity of substance to pass through from radiation sources to each detection surface, and to provide a method of manufacturing the same.SOLUTION: A radiation discrimination detector 20 includes; a plastic scintillator 1 which generates first fluorescence when β-rays enter; a half mirror layer 2 which is formed on an incident surface of the plastic scintillator 1 by a dry plating method and reflects scattered light from the first fluorescence that is made incident on a surface opposite an incident surface thereof; a ZnS(Ag) layer 3 which is formed on the incident surface of the half mirror layer 2 by the dry plating method and which generates second fluorescence when α-rays enter and allows the second fluorescence to transmit through the half mirror layer 2; and a mirror layer 4 which is formed on an incident surface of the ZnS(Ag) layer 3 by the dry plating method and which reflects scattered light from the second fluorescence that is incident on a surface opposite an incident surface thereof and blocks external light.
    • 要解决的问题:提供一种辐射鉴别检测器,其通过优化从辐射源到每个检测表面的物质的量来获得具有改善的检测灵敏度的α射线和/或阵列,并提供其制造方法 散射鉴别检测器20包括: 一个塑料闪烁体1,当&进入时产生第一个荧光; 通过干式电镀法形成在塑料闪烁器1的入射面上的半透镜层2,反射来自与入射面相对的面入射的第一荧光的散射光; 通过干式电镀法形成在半透半反镜层2的入射面上的ZnS(Ag)层3,并且当α射线进入时产生第二荧光,并允许第二荧光透过半反射镜层2; 以及通过干式电镀法在ZnS(Ag)层3的入射面上形成的反射层4,其反射来自入射到与入射面相反的面的第二荧光的散射光,并阻挡外部光。
    • 6. 发明专利
    • Method of manufacturing radiation detection member and radiation detection apparatus
    • 制造辐射检测构件和辐射检测装置的方法
    • JP2013072682A
    • 2013-04-22
    • JP2011210461
    • 2011-09-27
    • Toshiba Corp株式会社東芝
    • SUMIDA AKIOSAKAI HIROTAKAMAKINO SHUNICHIROHATTORI KANAKOIINO DAIKIAOKI MASASHI
    • G01T1/203G01T1/169G01T1/20
    • PROBLEM TO BE SOLVED: To provide a method of manufacturing a radiation detection member in which an inexpensive plastic scintillator having a flat plate shape is employed and the plastic scintillator can be surely and readily welded on a light guide.SOLUTION: The method includes: a laser absorbent application step S2 of applying a laser absorbent on a surface of a plastic scintillator having a flat plate shape which emits a fluorescent light on the basis of an incidence of a radiation, after masking the whole of a radiation incidence face of the plastic scintillator; and a welding step S3 of welding the plastic scintillator on a light guide having a bar shape with laser after disposing the plastic scintillator on each side face of the light guide so that the masked face is oriented upward.
    • 解决的问题:提供一种制造放射线检测构件的方法,其中采用具有平板形状的便宜的塑料闪烁体,并且塑料闪烁体可以可靠地和容易地焊接在光导上。 解决方案:该方法包括:激光吸收剂施加步骤S2,其将具有平板形状的塑料闪烁体的表面上的激光吸收剂施加到基于辐射入射的基础上发射荧光的掩模 整个塑料闪烁体的辐射入射面; 以及焊接步骤S3,其在将塑料闪烁体设置在光导的每个侧面上之后,将塑料闪烁体焊接在具有激光条形状的导光体上,使得被掩模的面向上取向。 版权所有(C)2013,JPO&INPIT
    • 7. 发明专利
    • Radiation monitoring device and monitoring method
    • 辐射监测装置及监测方法
    • JP2013019750A
    • 2013-01-31
    • JP2011152893
    • 2011-07-11
    • Toshiba Corp株式会社東芝
    • TSUBOI YUSUKEAOKI MASASHI
    • G01T1/167
    • PROBLEM TO BE SOLVED: To accurately measure dust radiation density by calculating a bypass leak amount from a filter paper dust collection part with high precision.SOLUTION: A radiation monitoring device includes a sampling pipe 9 which guides sampling gas into a main body part 1 of a dust radiation monitor; a filter paper dust collection part 7a and a radiation detector 8 which are provided to the sampling pipe 9, and collect dust in the sampling gas; a three-way selector valve 10 which is installed in the sampling pipe 9a upstream from the filter paper dust collection part 7a; a first flow meter which is installed in the sampling pipe 9b downstream from the filter paper dust collection part 7a; a pipe 16 in the main body which guides gas in the main body part 1 to the three-way selector valve 10 through a second flow meter; and an arithmetic part 13 which finds the radiation density of the dust collected by the filter paper dust collection part by calculating the bypass leak amount on the basis of measured values of the first flow meter and second flow meter.
    • 要解决的问题:通过以高精度计算滤纸收集部件的旁路泄漏量来精确地测量粉尘辐射密度。 解决方案:辐射监测装置包括:采样管9,其将采样气体引导到尘埃辐射监测器的主体部分1中; 设置在取样管9上的滤纸收尘部7a和放射线检测器8,收集取样气体中的灰尘; 三通换向阀10,安装在从滤纸集尘部7a上游的采样管9a中; 第一流量计,安装在从滤纸集尘部7a下游的取样管9b中; 主体中的管16,其通过第二流量计将主体部1中的气体引导到三通换向阀10; 以及算术部13,其通过基于第一流量计和第二流量计的测量值计算旁路泄漏量,求出由滤纸收集部收集的灰尘的辐射密度。 版权所有(C)2013,JPO&INPIT
    • 8. 发明专利
    • Radioactive waste inspection equipment
    • 放射性废物检验设备
    • JP2011247828A
    • 2011-12-08
    • JP2010123520
    • 2010-05-28
    • Toshiba Corp株式会社東芝
    • TSUBOI YUSUKEAOKI MASASHI
    • G01T1/167G01T1/169
    • PROBLEM TO BE SOLVED: To provide radioactive waste inspection equipment which transmits one piece of power which normally operates to a plurality of drive shafts at the occurrence of an abnormality to convey radioactive waste.SOLUTION: In the radioactive waste inspection equipment which has a mobile mechanism 21 provided with a plurality of mutually connected movable elements 81, 82 at the tips of which a handling part 2 is arranged to perform different operations, the movable elements 81, 82 have power parts 5, 4 respectively, power transmission paths of the movable elements 81, 82 are duplexed, and one power transmission path is installed so that it can switch different power parts and power transmission paths so as to interpolate the different operations.
    • 要解决的问题:提供放射性废物检查设备,其在异常发生时将一个通常操作的一次电力传送到多个驱动轴以传送放射性废物。 解决方案:在具有多个相互连接的可移动元件81,82的移动机构21的放射性废物检查设备中,处理部2的前端设置有执行不同操作的可动元件81,82, 82分别具有功率部件5,4,可动元件81,82的动力传递路径是双工的,并且安装一个电力传输路径,使得其可以切换不同的功率部件和动力传递路径以内插不同的操作。 版权所有(C)2012,JPO&INPIT
    • 9. 发明专利
    • Radioactive waste contamination inspection device and its control method
    • 放射性废物污染检测装置及其控制方法
    • JP2009162704A
    • 2009-07-23
    • JP2008002819
    • 2008-01-10
    • Toshiba Corp株式会社東芝
    • TSUBOI YUSUKEAOKI MASASHI
    • G01T1/169B25J13/08B25J19/06G01T7/02G21C17/00
    • PROBLEM TO BE SOLVED: To prevent runaway of a radioactive waste contamination inspection device. SOLUTION: The radioactive waste contamination inspection device includes: an articulated movement mechanism 12 including a plurality of movable elements, an attachment part of a detection means, provided to the movable elements, a driving means such as a motor 3 moving the movable elements, and a sensor such as an encoder 4 detecting a relative position of the movable element to output it as a position signal; and a controller 16 including a current position calculation part 21 calculating the position of each movable element on the basis of the position signal, a position storage part 22 storing the positions of the movable elements, a drive signal generation part 23 generating a drive signal driving the motor 3 or the like on the basis of a target position and the current position of the attachment part, and an interlock part 24 stopping the operation of the articulated movement mechanism 12 when the variation between the position of the movable element in the operation step at the previous time and the current position is larger than a prescribed maximum position variation amount. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:防止放射性废物污染检查装置失控。 解决方案:放射性废物污染检查装置包括:包括多个可移动元件的关节运​​动机构12,设置在可移动元件上的检测装置的附接部分,诸如马达3的驱动装置, 元件,以及诸如编码器4的传感器,其检测可移动元件的相对位置以将其输出作为位置信号; 以及控制器16,其包括:当前位置计算部21,基于位置信号计算各可移动元件的位置,存储可动元件的位置的位置存储部22;产生驱动信号驱动的驱动信号生成部23 基于目标位置的电动机3等和安装部的当前位置,以及当操作步骤中的可移动元件的位置之间的变化时停止关节运动机构12的操作的联锁部件24 并且当前位置大于规定的最大位置变化量。 版权所有(C)2009,JPO&INPIT
    • 10. 发明专利
    • Body surface monitor
    • 身体表面监护仪
    • JP2009145112A
    • 2009-07-02
    • JP2007320854
    • 2007-12-12
    • Toshiba Corp株式会社東芝
    • TSUBOI YUSUKEAOKI MASASHI
    • G01T1/169G01T1/20
    • PROBLEM TO BE SOLVED: To provide a body surface monitor capable of accurately measuring the existence and quantity of radioactive contamination on the body surface of a subject according to the body surface shape of the subject. SOLUTION: This monitor comprises: a body shape measuring device 4 measuring the body shape of a subject 1; a monitor main body 3 equipped with a plurality of radiation detectors 2 which detect the radiation irradiated from the body surface of the subject; and a data processor 10 computing the body surface radioactive contamination density of the subject from the body shape measurement data of the subject and the detected values of the radiation detectors. While the radiation detection efficiency is corrected according to the distance, obtained by measuring the surface body shape of the subject, between the radiation detector and the body surface of the subject, an alarm is output in the case of inconsistency that the radiation detection limit value does not attain a predetermined value or the distance is largely separated from a predetermined distance. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够根据被检体的体表形状精确地测定被检体的体表的放射性污染物的存在和数量的体表监视器。 该监视器包括:测量被检体1的身体形状的身体形状测量装置4; 具有检测从被检体的身体表面照射的放射线的多个放射线检测器2的监视器主体3; 以及数据处理器10根据被检体的身体形状测量数据和检测到的检测值来计算被检体的体表放射性污染物浓度。 虽然根据通过测量被检体的表面体形状,在放射线检测器与被检体的体表之间的距离来校正放射线检测效率,但是在不一致的情况下输出警报,使得辐射检测限值 没有达到预定值或距离远大于预定距离。 版权所有(C)2009,JPO&INPIT