会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明专利
    • Radioactive material monitoring device
    • 放射性材料监测装置
    • JP2014020903A
    • 2014-02-03
    • JP2012159485
    • 2012-07-18
    • Ihi Construction Machinery LtdIhi建機株式会社Ihi Corp株式会社IhiKumagai Gumi Co Ltd株式会社熊谷組Japan Atomic Energy Agency独立行政法人日本原子力研究開発機構
    • YAMASHITA HIROSHICHISAKA OSAMUNOSE HIROYUKIKITAHARA SHIGEOMATSUMURA SHUJITORII TAKEO
    • G01T1/29G01T1/00G01T1/16G01T1/20G01T1/36
    • PROBLEM TO BE SOLVED: To consecutively monitor the movement of a radioactive material in the neighborhood of a ground surface.SOLUTION: In a radiation dose spatial distribution measuring instrument 1, a scintillation fiber 2 is set to be partially arranged in an aboveground space from the ground surface to a certain height position and to be partially embedded underground to a certain depth position. A monitoring device 11 is connected to a multi-channel analyzer 5 of the radiation dose spatial distribution measuring instrument 1. The monitoring device 11 converts a measurement result of a spatial distribution of a radiation dose in the longitudinal direction of the scintillation fiber 2 to be input from the multi-channel analyzer 5 on the basis of shape data of the scintillation fiber 2 stored in a shape data storage unit 12, and then obtains a measurement result as the measurement result of a spatial distribution of a radiation dose with respect to an aboveground height. When an integration value of counting of a radiation for each time that is obtained by the integration of a measurement result exceeds a predetermined threshold, alarm is transmitted from a radio device 13.
    • 要解决的问题:连续监测地表附近的放射性物质的运动。解决方案:在辐射剂量空间分布测量仪1中,闪烁纤维2被设置为从地面上的空间部分地布置 地面到一定的高度位置,并部分地嵌入地下到一定的深度位置。 监视装置11与放射线剂量空间分布测定装置1的多通道分析装置5连接。监视装置11将闪烁光纤2的长度方向的辐射剂量的空间分布的测定结果变换为 基于存储在形状数据存储单元12中的闪烁光纤2的形状数据从多通道分析器5输入,然后获得测量结果作为辐射剂量的空间分布的测量结果 地上高度。 当通过测量结果的积分获得的每次的辐射的计数的积分值超过预定阈值时,从无线电设备13发送警报。
    • 4. 发明专利
    • In-soil radioactivity distribution measuring instrument
    • 土壤放射性分布测量仪器
    • JP2014020902A
    • 2014-02-03
    • JP2012159484
    • 2012-07-18
    • Ihi Construction Machinery LtdIhi建機株式会社Ihi Corp株式会社IhiKumagai Gumi Co Ltd株式会社熊谷組Japan Atomic Energy Agency独立行政法人日本原子力研究開発機構
    • YAMASHITA HIROSHICHISAKA OSAMUNOSE HIROYUKIYAMANISHI AKIOKITAHARA SHIGEOMATSUMURA SHUJITORII TAKEO
    • G01T1/167G01T1/20
    • PROBLEM TO BE SOLVED: To examine a radioactivity distribution in a depth direction in soil in a short time.SOLUTION: A scintillation fiber 3 is wound in a circumferential direction around the outer periphery of a sample 4 cut from soil in a cylindrical shape extending in the depth direction of a ground surface 5 at a measurement object place, to thereby form a radiation detection unit 2 where the whole shape of the scintillation fiber 3 becomes a cylindrical shape. A measurement system 6 is connected to the scintillation fiber 3, that has a function of obtaining a count value of a radiation at a depth-directional position from a ground surface corresponding to the axial direction of a cylindrical shape formed by the scintillation fiber 3 after obtaining a spatial distribution of a radiation in the longitudinal direction of the scintillation fiber 3, and a function of obtaining a radioactive distribution in a depth direction from a ground surface on the basis of the obtained count value of a radiation at a depth-directional position from the ground surface. A radioactive distribution in a depth direction from a ground surface concerning a sample 4 is obtained by the measurement system 6 in one radiation measurement operation with respect to a sample 4.
    • 要解决的问题:在短时间内检查土壤中的深度方向的放射性分布。解决方案:闪烁光纤3围绕从土壤切割的样品4的外周围绕圆周方向缠绕,圆柱形延伸 在测量对象位置处的地表面5的深度方向,从而形成闪烁光纤3的整个形状变为圆筒形的放射线检测单元2。 测量系统6连接到闪烁光纤3,该闪烁光纤3具有从与由闪烁纤维3形成的圆筒形状的轴向方向相对应的地面的深度方向位置获得辐射的计数值的功能,之后 获得沿着闪烁光纤3的纵向的辐射的空间分布,以及基于获得的深度方向上的辐射的计数值从地面获得沿深度方向的放射性分布的功能 从地面。 通过测量系统6在相对于样品4进行的一次辐射测量操作中,从与地面相关的样品4的深度方向上的放射性分布获得。
    • 5. 发明专利
    • Self-propelled dosimetry device
    • 自我推荐的数位设备
    • JP2014020900A
    • 2014-02-03
    • JP2012159482
    • 2012-07-18
    • Ihi Construction Machinery LtdIhi建機株式会社Ihi Corp株式会社IhiKumagai Gumi Co Ltd株式会社熊谷組Japan Atomic Energy Agency独立行政法人日本原子力研究開発機構
    • YAMASHITA HIROSHICHISAKA OSAMUNOSE HIROYUKIYAMANISHI AKIOKITAHARA SHIGEOMATSUMURA SHUJITORII TAKEO
    • G01T1/169G01T1/00G01T1/167G01T1/29
    • PROBLEM TO BE SOLVED: To exclude any influence on a measurement result due to vibration in traveling.SOLUTION: A scintillation fiber 6 is attached via distortion preventing means 7 to a support frame 3 attached to an arm 2 of a truck loader 1. The distortion preventing means 7 is constituted of a pipe material 8 and an air bubble cushioning material 9 interposed between the scintillation fiber 6 inserted through the inside and a peripheral wall. A measurement system having a function for searching the spatial distribution of a radiation and a function for displaying the distribution of planar radiation dose as a map on the basis of the position change of the scintillation fiber 6 accompanied by the traveling of the truck loader 1 is connected to the scintillation fiber 6. When the truck loader 1 travels, the transmission of vibration to the scintillation fiber 6 is reduced, and the distortion of the scintillation fiber 6 is suppressed by the distortion preventing means 7 so that it is possible to prevent the change of the attenuating characteristics of scintillation lights, and to improve the accuracy of the measurement result of the measurement system.
    • 要解决的问题:排除由于旅行中的振动对测量结果的任何影响。解决方案:闪烁纤维6通过变形防止装置7附接到安装在卡车装载机1的臂2上的支撑框架3上。变形 防止装置7由插入通过内部的闪烁纤维6和周壁之间的管材8和气泡缓冲材料9构成。 具有搜索辐射的空间分布的功能的测量系统和用于显示平面辐射剂量的分布的功能,作为伴随着卡车装载机1行驶的闪烁纤维6的位置变化的映射, 连接到闪烁纤维6.当卡车装载机1行进时,向闪烁纤维6的振动传递减少,并且由失真防止装置7抑制闪烁纤维6的变形,使得可以防止 改变闪烁灯的衰减特性,提高测量系统测量结果的准确性。
    • 6. 发明专利
    • Radiation measurement device
    • 辐射测量装置
    • JP2014020901A
    • 2014-02-03
    • JP2012159483
    • 2012-07-18
    • Ihi Construction Machinery LtdIhi建機株式会社Ihi Corp株式会社IhiKumagai Gumi Co Ltd株式会社熊谷組Japan Atomic Energy Agency独立行政法人日本原子力研究開発機構
    • YAMASHITA HIROSHICHISAKA OSAMUNOSE HIROYUKIYAMANISHI AKIOKITAHARA SHIGEOMATSUMURA SHUJITORII TAKEO
    • G01T1/00G01T1/16G01T1/20
    • PROBLEM TO BE SOLVED: To increase the detecting efficiency of radiation even when any distortion is generated in a scintillation fiber.SOLUTION: A radiation measurement device is configured such that a measurement system 2 constituted of photo-detectors 5a and 5b, amplifiers 6a and 6b, discriminators 7a and 7b, a time-to-pulse height converter 8 for detecting the incident position of a radiation in the longitudinal direction of a scintillation fiber 1 and a multi-channel analyzer 10 for searching the spatial distribution of radiation dose following the longitudinal direction of the scintillation fiber 1 is connected to the scintillation fiber 1. The radiation measurement device includes stain measurement means 3 for measuring the distortion amounts of the scintillation fiber 1 by a stain gauge 11 attached to the scintillation fiber 1 and an adjustment device 4 for inputting the measurement result. The adjustment device 4 adjusts the noise-cut threshold of the discriminators 7a and 7b of the measurement system 2 by expecting the attenuation of scintillation lights due to the distortion of the scintillation fiber 1.
    • 要解决的问题:即使在闪烁纤维中产生任何失真,也可以提高辐射的检测效率。解决方案:辐射测量装置被配置为使得由光电检测器5a和5b,放大器6a和6b构成的测量系统2 鉴别器7a和7b,用于检测在闪烁纤维1的纵向上的辐射的入射位置的时间 - 脉搏高度转换器8和用于搜索跟随纵向的辐射剂量的空间分布的多通道分析器10 闪烁光纤1的方向连接到闪烁纤维1.辐射测量装置包括用于通过安装在闪烁纤维1上的污迹计11测量闪烁纤维1的变形量的污点测量装置3和用于 输入测量结果。 调整装置4通过期望由于闪烁纤维1的变形引起的闪烁灯的衰减,来调整测量系统2的鉴别器7a和7b的噪声阈值。
    • 7. 发明专利
    • Decontamination method
    • 去污方法
    • JP2014048060A
    • 2014-03-17
    • JP2012188894
    • 2012-08-29
    • Kumagai Gumi Co Ltd株式会社熊谷組Fatec:Kk株式会社ファテック
    • KITAHARA SHIGEOMATSUMURA SHUJIYOKOZUKA SUSUMUTANABE DAIJIROKAKIUCHI YUKIOHIRABAYASHI MAMORU
    • G21F9/28B01J19/08B09C1/02B09C1/08
    • PROBLEM TO BE SOLVED: To provide a decontamination method in which application of reuse after the decontamination of an object to be decontaminated is not limited and the object to be decontaminated can be easily and inexpensively decontaminated.SOLUTION: The decontamination method according to the present invention peels a harmful substance from an object 100 to be decontaminated by giving a pressure wave 95 generated with discharge to the object 100 to be decontaminated adhered with the harmful substance on the surface of a matter. Further, the value of a grain size set as a border value whether or not to be a decontaminated object is decided as a reference value, and the contaminated soil of an object to be processed is divided into the contaminated soil of a grain group equal to or lower than the reference value and the contaminated soil of the grain group equal to or higher than the reference value, and the contaminated soil of the grain group in which a ratio of the residual radioactivity to the total contaminated soil of the processing object is small and a weight ratio to the total contaminated soil of the processing object is large is defined as the object 100 to be decontaminated from among the contaminated soil of the grain groups divided on the basis of the reference value.
    • 要解决的问题:提供一种净化方法,其中在对要净化的物体进行去污染之后的再利用的应用不受限制,并且可以容易且廉价地去污染待净化的物体。解决方案:根据本发明的去污方法 从物体100中剥离有害物质,通过将物质100产生的压力波95与被污物附着在被处理物100上而被除去。 此外,将作为净化对象的边界值设定的粒度的值确定为参考值,将被处理物体的污染土壤分为等于 或低于基准值的污染土壤和等于或大于参考值的污染土壤,以及处理对象的残留放射性与总污染土壤的比例小的谷物组的污染土壤 并且与加工对象的总污染土壤的重量比大,被定义为根据参考值划分的谷物组的污染土壤中要净化的物体100。
    • 8. 发明专利
    • Water purifying device
    • 水净化装置
    • JP2013132571A
    • 2013-07-08
    • JP2011282891
    • 2011-12-26
    • Kumagai Gumi Co Ltd株式会社熊谷組
    • SAKANISHI TAKAHITOKITAHARA SHIGEO
    • C02F1/52B01D21/01B01D21/24B01D21/30
    • PROBLEM TO BE SOLVED: To provide a water purifying device for quickly and desirably setting the turbidity of water to be cleaned in a flocculating and stirring tank to which a slurry is returned to desired turbidity, and for easily performing an operation to maintain the turbidity of the water to be cleaned in the flocculating and stirring tank to which the slurry is returned to desired turbidity.SOLUTION: The water purifying device includes: a flocculating and stirring tank 12 for flocculating impurities in water to be cleaned; a flocculant charging device for charging flocculant into the flocculating and stirring tank; a slurry tank; a slurry returning device for returning a slurry from the slurry tank to the flocculating and stirring tank. The flocculating and stirring tank includes: a stirring treating part 31 disposed at an inlet side; a rectifying part 32 disposed at an outlet side; and a partitioning part 33 for partitioning the stirring treating part from the rectifying part, and for forming a communication path communicating the stirring treating part with the rectifying part at the inner bottom part of the flocculating and stirring tank. At least either a discharge path (conduit 12a) for discharging the water to be cleaned to the slurry tank side by communicating with the outlet of the flocculating and stirring tank or the rectifying part 32 includes a confirmation part 50 for visually confirming the size of the impurity particles in the water to be cleaned from the outside.
    • 要解决的问题:提供一种水净化装置,用于在将浆料返回到所需浊度的絮凝和搅拌槽中快速且期望地将待清洁的水的浊度设定为,并且为了容易地进行操作以保持浊度 在絮凝和搅拌槽中待清洗的水被返回到所需的浊度。解决方案:净水装置包括:絮凝和搅拌槽12,用于絮凝待清洁的水中的杂质; 絮凝剂充填装置,用于将絮凝剂装入絮凝和搅拌槽; 泥浆罐; 用于将浆料从浆料罐返回到絮凝和搅拌槽的浆料返回装置。 絮凝搅拌槽包括:设置在入口侧的搅拌处理部31; 设置在出口侧的整流部32; 以及分隔部33,用于将搅拌处理部分与精馏部分隔开,并且用于形成将搅拌处理部与絮凝和搅拌槽的内底部处的整流部连通的连通路径。 至少用于通过与絮凝和搅拌槽或整流部32的出口连通而将待清洁的水排出到浆料罐侧的排出路径(导管12a)包括确认部50,用于目视确认 要从外面清洗的水中的杂质颗粒。
    • 9. 发明专利
    • Method of excavating slope of ground under water
    • 水下地下施工方法
    • JP2013023892A
    • 2013-02-04
    • JP2011159210
    • 2011-07-20
    • Kumagai Gumi Co Ltd株式会社熊谷組
    • KITAHARA SHIGEOSAKANISHI TAKAHITOKATONO HITOSHISATO HIDEAKIUMEDA HIDENORI
    • E02F5/00E02F9/26
    • PROBLEM TO BE SOLVED: To know the position of an excavator on a slope of the ground under water with any transparency in the water, to confirm that the excavator is at a predetermined position of design on the slope when the slope is excavated, and to accurately excavate the slope by the excavator.SOLUTION: The method of excavating the slope of the ground under the water includes: arranging a pedestal at a position on the ground at a distance from the slope; placing the excavator on the pedestal; lifting the pedestal on which the excavator is placed from a position above the ground and lowering the pedestal on the slope; measuring the position of the excavator on the slope; displaying the position of the excavator on the slope on a monitor based upon a result of the measurement; and excavating the slope by the excavator while monitoring the position of the excavator displayed on the monitor.
    • 要解决的问题:要知道挖掘机在水下的地面坡度上具有任何透明度的位置,以便在挖掘斜坡时确认挖掘机处于坡度上的预定设计位置 ,并通过挖掘机准确挖掘斜坡。 解决方案:在水下开挖地面斜坡的方法包括:在距离斜坡一定距离处的地面上布置基座; 将挖掘机放置在基座上; 从地面上方的位置抬起挖掘机放置的基座并降低斜坡上的基座; 测量挖掘机在斜坡上的位置; 基于测量结果,在监视器上显示挖掘机在斜坡上的位置; 并且在监视显示在监视器上的挖掘机的位置的同时通过挖掘机挖掘斜坡。 版权所有(C)2013,JPO&INPIT
    • 10. 发明专利
    • Remote control supporting device for work apparatus
    • 远程控制支持设备的工具
    • JP2008017338A
    • 2008-01-24
    • JP2006188389
    • 2006-07-07
    • Kumagai Gumi Co LtdNishio Rent All Co Ltd株式会社熊谷組西尾レントオール株式会社
    • KITAHARA SHIGEOICHIKAWA YOSHIHARUARAKI SOJI
    • H04N5/225B60R11/02B60R11/04H04B1/03H04N7/18
    • PROBLEM TO BE SOLVED: To improve handleability and versatility as a remote control supporting device for a work apparatus.
      SOLUTION: The remote control supporting device for the work apparatus is equipped with: a camera 4A for freely shooting the surrounding of a work apparatus 1 and a data transmitter 5C freely performing wireless transmission of data shot by the camera 4A while they are installed on the work apparatus 1 being freely remote-controlled, and also is equipped with a data receiver 7A freely receiving shot data from the data transmitter 5C and a monitor 7B freely imaging the shot data received by the data receiver. In the remote control supporting device, the camera 4A has a first attachment T2 that is freely attached to and detached from the work apparatus 1, the data transmitter 5C has a second attachment T2 that is freely attached to and detached from the work apparatus 1, and each of the data receiver and the monitor 7B is configured to be portable.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提高作为工作装置的遥控支撑装置的可操作性和多功能性。 解决方案:用于工作装置的遥控支持装置配备有:用于自由拍摄工作装置1的周围的照相机4A和自由地执行由照相机4A拍摄的数据的无线发送的数据发送器5C 安装在工作装置1上可自由遥控,并且还配备有数据接收器7A,其自由地接收来自数据发送器5C的拍摄数据,以及监视器7B,自由地成像由数据接收器接收的拍摄数据。 在遥控器支持装置中,摄像机4A具有自由地附接到工作装置1和从工作装置1拆卸的第一附件T2,数据发送器5C具有自由地附接到工作装置1和从工作装置1拆卸的第二附件T2, 并且数据接收器和监视器7B中的每一个被配置为便携式。 版权所有(C)2008,JPO&INPIT