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    • 1. 发明专利
    • Portable communication terminal device with dosimeter and environmental radiation monitoring system
    • 便携式通信终端设备,带有DOSIMETER和环境辐射监测系统
    • JP2013044648A
    • 2013-03-04
    • JP2011182720
    • 2011-08-24
    • Toshiba Corp株式会社東芝
    • KATO MASAYOMUKAI SHIGEHIKOONODERA TORUNAITO SUSUMUOSHIMA TOMOMI
    • G01T1/00G01T1/16G01T7/00
    • PROBLEM TO BE SOLVED: To provide a portable communication terminal device with a dosimeter and an environmental radiation monitoring system which enable the public to easily and rapidly share information such as an accurate radiation dose.SOLUTION: A portable communication terminal device 1 with a dosimeter comprises: a radiation detection unit 3; a signal processing unit 4 which is connected with the radiation detection unit 3 and calculates a radiation dose; position detection means; a memory 12 which stores the radiation dose and various information; a display unit 5 which displays the radiation dose and the various information; and a communication function for performing transmission/reception of data with the outside. The radiation detection unit 3, the signal processing unit 4, and the display unit 5 share a power supply mounted in the portable communication terminal device 1 with the dosimeter.
    • 要解决的问题:提供具有剂量计和环境辐射监测系统的便携式通信终端设备,其使得公众能够容易且快速地共享诸如准确的辐射剂量的信息。 解决方案:具有剂量计的便携式通信终端装置1包括:放射线检测单元3; 信号处理单元4,其与放射线检测单元3连接并计算辐射剂量; 位置检测装置; 存储辐射剂量和各种信息的存储器12; 显示单元5,其显示辐射剂量和各种信息; 以及用于与外部进行数据的发送/接收的通信功能。 辐射检测单元3,信号处理单元4和显示单元5通过剂量计共享安装在便携式通信终端设备1中的电源。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Cleaning apparatus
    • 清洁装置
    • JP2010190697A
    • 2010-09-02
    • JP2009034860
    • 2009-02-18
    • Toshiba Corp株式会社東芝
    • HOZUMI HISASHISHIMAMURA MITSUAKITOGASAWA YUTAKAMUKAI SHIGEHIKOTOKI SHINJIYUGUCHI YASUHIROSOMA KOICHI
    • G21C19/02A47L7/00B08B9/08G21F9/28
    • B08B9/08B08B5/04G21C19/207
    • PROBLEM TO BE SOLVED: To reliably and rapidly clean through a narrow cleaned surface since a plurality of projections have projected.
      SOLUTION: A cleaning apparatus includes: a suction nozzle 11 including a suction port 16 for sucking dust on an inner surface of the bottom of a furnace, namely a surface to be cleaned; a suction hose 12 of which one end and the other end are connected to the suction nozzle and a suction unit including a suction pump, respectively; a support member 13 having a low center of gravity that is arranged in the suction hose and serves as a fulcrum when the suction hose is bent and deformed; wires 14A-14D arranged along the suction hose while the tips are supported by the suction nozzle; and an operation section for bending and deforming the suction hose 12 with the support member 13 having a low center of gravity as a fulcrum by pulling or pushing out the wire.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:由于已经突出了多个突起,能够可靠且快速地清洁窄的清洁表面。 解决方案:清洁装置包括:吸嘴11,其包括用于在炉底部的内表面上吸入灰尘的吸入口16,即待清洁的表面; 其一端和另一端连接到吸嘴的抽吸软管12和分别包括抽吸泵的抽吸单元; 具有低重心的支撑构件13,其布置在抽吸软管中并且当抽吸软管弯曲和变形时用作支点; 导线14A-14D沿着抽吸软管布置,而尖端由吸嘴支撑; 以及操作部,通过拉动或推出线将具有低重心的支撑部件13的抽吸软管12弯曲变形为支点。 版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Shock wave generating device, surface treatment method, nondestructive testing method, and treatment method
    • 冲击波发生装置,表面处理方法,非破坏性测试方法和处理方法
    • JP2007313549A
    • 2007-12-06
    • JP2006147582
    • 2006-05-29
    • Toshiba Corp株式会社東芝
    • TANAKA NOBUHIKOMUKAI SHIGEHIKOSANO YUJI
    • B23K26/00A61B17/22A61B18/00A61B18/20G01N29/04
    • PROBLEM TO BE SOLVED: To provide a shock wave having coherent phase, which changes the intensity according to the change in the intensity of a laser source. SOLUTION: A shock wave generating device comprises: the laser source 10 for generating a laser beam; a laser beam intensity changing means 22 provided inside or outside of this laser source 10 and changing the laser intensity of the laser beam according to time; a light transmission device 20 for transmitting the laser beam changing according to the time; a transmission window 40 provided on the outer wall of a container 31 and transparent relative to the laser beam transmitted via the light transmission device 20; and a shock wave generating medium 30 stored in the container 31, wherein the laser beam is absorbed by the shock wave generating medium 30 via the transmission window 40, and the shock wave whose phase aligns along the surface shape of the transmission window 40 and changes the intensity according to the change in the intensity of the laser beam. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供具有相干相位的冲击波,其根据激光源的强度的变化改变强度。 冲击波产生装置包括:用于产生激光束的激光源10; 设置在该激光源10的内部或外部并根据时间改变激光束的激光强度的激光束强度改变装置22; 用于传输根据时间改变的激光束的光传输装置20; 设置在容器31的外壁上且相对于经由光传输装置20传输的激光束透明的透射窗40; 以及存储在容器31中的冲击波发生介质30,其中激光束经由透射窗40被冲击波产生介质30吸收,并且冲击波沿着透射窗40的表面形状相对准并且改变 根据激光束强度变化的强度。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • In-furnace maintenance/repair apparatus
    • 炉内维护/修理设备
    • JP2005227218A
    • 2005-08-25
    • JP2004038357
    • 2004-02-16
    • Toshiba Corp株式会社東芝
    • SATO KATSUHIKOMUKAI SHIGEHIKOYODA MASAKIHAMAMOTO YOSHIOYAMAMOTO TETSUO
    • G21C5/00G21C19/02G21D1/00
    • Y02E30/40
    • PROBLEM TO BE SOLVED: To execute maintenance/repair work over a wide range in a bottom section of a reactor core by a single unit, simplify a main body of the unit, reduce costs, reduce the number of times of setting up the main body of the unit and raise the efficiency of work required for positioning. SOLUTION: The in-furnace maintenance/repair apparatus is installed in the core of a pressure vessel of a boiling water reactor to execute improvement of residual stresses in a structure in the reactor core, modification of the surface, welding repair and the like by projecting a laser beam to a structure in the bottom section in the reactor core. The apparatus comprises a turning mechanism 101 accommodated within a case, a lifting mechanism 108 turnably connected with the turning mechanism, a laser oscillator 118 accommodated in a hydraulic pressure-proof vessel guided by a support supporting the lifting mechanism and capable of bing turned by the turning mechanism and lifted/lowered by the lifting mechanism, a light guide tube 121 connected with a laser output port of the hydraulic pressure-proof vessel to aerially transmitting the laser beam emitted from the laser oscillator 118 toward the structure in the bottom section of the reactor core and an arm mechanism 116 having a laser projecting head secured on the tip end of the light guide tube 121 to project the laser beam transmitted through the light guide tube toward the structure in the reactor core. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:通过单个单元在反应堆堆芯的底部进行大范围的维护/维修工作,简化机组主体,降低成本,减少设置次数 提高单位的主体,提高定位工作的效率。 解决方案:炉内维护/修理设备安装在沸水反应堆的压力容器的核心中,以改善反应堆堆芯结构中的残余应力,表面改性,焊接修补和 通过将激光束投射到反应堆芯的底部部分中的结构。 该装置包括容纳在壳体内的转动机构101,与转动机构可转动地连接的提升机构108,容纳在由支撑提升机构的支撑件引导的液压耐压容器中的激光振荡器118,并且能够通过 转动机构,由提升机构升降,配置有与液压耐压容器的激光输出口连接的导光管121,将从激光振荡器118射出的激光束朝向底部的结构 反应堆芯和臂机构116,其具有固定在导光管121的前端的激光投射头,以将通过导光管透射的激光束朝向反应堆芯中的结构投影。 版权所有(C)2005,JPO&NCIPI
    • 5. 发明专利
    • Liquid level measuring device, method and program
    • 液位测量装置,方法和程序
    • JP2013140029A
    • 2013-07-18
    • JP2011289625
    • 2011-12-28
    • Toshiba Corp株式会社東芝
    • KURODA HIDEHIKOMUKAI SHIGEHIKOKAWAKAMI OSAMUTAKEMURA MAKOTOTAKADA YUKASHIRAISHI FUJIO
    • G01F23/22G01F23/28
    • G01F23/2965F01K5/02G01F23/2961G01F23/2967G01F23/2968G21C17/035
    • PROBLEM TO BE SOLVED: To provide a liquid level measuring device which allows a liquid level to be accurately measured even for a boiling liquid contained in a reservoir.SOLUTION: A liquid level measuring device comprises ultrasonic sensors 15 (15;1≤m≤M) which transmit and receive ultrasonic waves, a transmitting and receiving control part 11 which controls the transmitting and receiving of ultrasonic waves for any one of the ultrasonic sensors 15 at a plurality of positions, an intensity detection part 12 which detects the intensity of ultrasonic waves which satisfy at least an expression: 2≤N, among the ultrasonic waves reflected N times (N: natural number) on the inner surface of a reservoir 21, a gas-liquid determination part 13 which determines whether the reflection point at the inner surface is in contact with a liquid 22 or a gas 24 on the basis of the detected intensity of ultrasonic waves, and a level determination part 14 which determines the liquid level 23 on the basis of the gas-liquid determination results derived from the respective ultrasonic sensors 15(1≤m≤M) at a plurality of positions.
    • 要解决的问题:提供一种液位测量装置,即使对于容纳在容器中的沸腾液体也能够精确地测量液位。解决方案:液位测量装置包括超声波传感器15(15;1≤m≤M )发送和接收超声波的发送和接收控制部分11,其控制多个位置中的任何一个超声波传感器15的超声波的发送和接收;强度检测部分12,其检测超声波的强度 其满足在储存器21的内表面上反射N次(N:自然数)的超声波中的至少2≤N,气液判定部13,其判定内表面的反射点 基于检测到的超声波的强度与液体22或气体24接触,以及水平确定部14,其确定基底上的液面23 是在多个位置从各个超声波传感器15(1≤m≤M)得到的气液测定结果。
    • 6. 发明专利
    • Laser ultrasonic inspection apparatus
    • 激光超声波检查装置
    • JP2011064697A
    • 2011-03-31
    • JP2010260160
    • 2010-11-22
    • Toshiba Corp株式会社東芝
    • OCHIAI MAKOTOMIURA TAKAHIROKURODA HIDEHIKOOTSUBO TORUMUKAI SHIGEHIKO
    • G01N29/00G01N21/00G01N29/04
    • PROBLEM TO BE SOLVED: To provide a laser ultrasonic inspection apparatus capable of sensitively and efficiently inspecting a plurality of test objects or a wide-area test object existing in a small space. SOLUTION: The laser ultrasonic inspection apparatus includes: irradiating means 2 for irradiating an object to be inspected with a first laser beam; irradiating and condensing means M6 for irradiating a surface of the object to be inspected with a second laser beam and receiving a reflected component thereof; a receiving optical system OP for optically detecting an ultrasonic signal generated in the object to be inspected by irradiation with the first laser beam from the reflected component thus condensed; signal converting means REC for converting the ultrasonic signal received by the receiving optical system OP into an electrical signal; and signal processing means 41 for processing the output signal of the signal converting means REC to compute, display, and record information regarding the propagation of the ultrasonic signal and the properties of the object to be inspected. The irradiating means 2 includes the same number of irradiating means 2 as the number of sites to be inspected in the object to be inspected, so does the irradiating and condensing means M6. The laser ultrasonic inspection apparatus further includes signal discrimination means by which measured signals at inspection points selected by polarization of the first and second laser beams are discriminated for each of the inspection points. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够敏感且有效地检查存在于小空间中的多个测试对象或广域测试对象的激光超声波检查装置。 解决方案:激光超声波检查装置包括:照射装置2,用于用第一激光束照射被检查物体; 照射和冷凝装置M6,用于用第二激光束照射待检查物体的表面并接收其反射分量; 接收光学系统OP,用于通过从如此冷凝的反射分量的第一激光束的照射光学地检测在被检查物体中产生的超声波信号; 信号转换装置REC,用于将由接收光学系统OP接收的超声信号转换为电信号; 以及信号处理装置41,用于处理信号转换装置REC的输出信号,以计算,显示和记录关于超声信号的传播和待检查对象的属性的信息。 照射装置2包括与被检查物体中待检查的位置数目相同数量的照射装置2,照射和聚光装置M6也是如此。 激光超声波检查装置还包括信号鉴别装置,通过该信号鉴别装置,对于每个检查点来区分由第一和第二激光束的偏振选择的检查点处的测量信号。 版权所有(C)2011,JPO&INPIT
    • 7. 发明专利
    • Optical fiber monitoring system and laser beam machining system
    • 光纤监控系统和激光光束加工系统
    • JP2006292424A
    • 2006-10-26
    • JP2005109948
    • 2005-04-06
    • Toshiba Corp株式会社東芝
    • SENDA ITARUMUKAI SHIGEHIKOUEHARA TAKUYASAEKI RIYOUICHIHIROTA KEIICHI
    • G01M11/00B23K26/00B23K26/08
    • PROBLEM TO BE SOLVED: To provide an optical fiber monitoring device capable of detecting a damage of an optical fiber like chipping off, breaking off, or the like in real time, when the damage occurs in an end face of the optical fiber or inside it, and a high-reliability laser beam machining system equipped with the monitoring device. SOLUTION: This monitoring device is constituted, by providing a laser oscillator 1 for emitting a laser beam 2 of a specific frequency, an optical condensing system 8 for condensing rays of reflected light 6 from the optical fiber 4 on which the laser beam 2 is incident, and a photodetector 5 which measures the quality of the reflected light 6 made to impinge on itself from the optical system 8. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:为了提供一种光纤监测装置,当光纤的端面发生损伤时,能够实时检测光纤的损坏,如切断,断线等。 或其内部,以及配备有该监视装置的高可靠性激光束加工系统。 解决方案:该监视装置通过设置用于发射特定频率的激光束2的激光振荡器1,用于聚集来自光纤4的反射光6的光线的聚光系统8,在该光纤4上激光束 光检测器5测量从光学系统8自身撞击的反射光6的质量。(C)2007,JPO和INPIT
    • 9. 发明专利
    • Laser beam machining system
    • 激光束加工系统
    • JP2005300182A
    • 2005-10-27
    • JP2004112251
    • 2004-04-06
    • Toshiba Corp株式会社東芝
    • CHIHOSHI ATSUSHIONODERA TORUMUKAI SHIGEHIKOHAMAMOTO YOSHIOSAEKI RIYOUICHI
    • G01B17/00B23K26/04
    • PROBLEM TO BE SOLVED: To improve machining accuracy by performing the positional control of a laser irradiation head by correctly measuring the focus distance between the laser irradiation head of the laser beam machining system and the working surface of the work.
      SOLUTION: The laser beam 4 from the laser oscillator 1 irradiates the working surface 3a of the work 3 from the laser irradiation head 5. The ultrasonic waves 10 generated when the laser beam 4 irradiates the work 3 is received by a plurality of ultrasonic wave detection means 8a, 8b. The focus distance Lf from the working surface 3a to the laser head 5 is determined from the detection signal from the ultrasonic wave detection means 8a, 8b and the irradiation timing of the laser beam 4, and the position control of the laser irradiation head 5 is performed so as to keep the focal distance between the working surface 3a and the laser irradiation head 5 constant based on the focus distance Lf.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过正确地测量激光束加工系统的激光照射头与工件的工作面之间的聚焦距离,通过执行激光照射头的位置控制来提高加工精度。 解决方案:来自激光振荡器1的激光束4从激光照射头5照射工件3的工作表面3a。当激光束4照射工件3时产生的超声波10被多个 超声波检测装置8a,8b。 根据来自超声波检测装置8a,8b的检测信号和激光束4的照射定时,确定从工作面3a到激光头5的聚焦距离Lf,激光照射头5的位置控制为 执行以便基于聚焦距离Lf使工作表面3a和激光照射头5之间的焦距保持恒定。 版权所有(C)2006,JPO&NCIPI
    • 10. 发明专利
    • Heavy particle ion generator for heavy particle beam therapy
    • 重型颗粒离子发生器用于重粒子束治疗
    • JP2012133935A
    • 2012-07-12
    • JP2010283554
    • 2010-12-20
    • Toshiba Corp株式会社東芝
    • KURODA HIDEHIKOKUME NAOTOSUMIYA AKIKOHAYASHI KAZUOMUKAI SHIGEHIKO
    • H01J27/24A61N5/10H01J37/08H05H1/00H05H1/24H05H7/08H05H13/04
    • PROBLEM TO BE SOLVED: To provide a heavy particle ion generator for heavy particle beam therapy which can generate required number of heavy particle ions in a steady manner for a heavy particle beam therapy device.SOLUTION: A heavy particle ion generator for heavy particle beam therapy includes: a material for producing plasma by irradiation of laser light; a container for housing the material; a laser source for generating laser light; light focusing means for focusing the laser light such that a focus of the laser light is formed on the material; electrode means for drawing heavy particle ions out of the plasma produced from the material by Coulomb force and delivering the ions outside of the container; observation means for observing the plasma produced from the material and determining a focus diameter of the laser light based on a plasma diameter in the region contacting the material; position adjusting means for adjusting the position of the material or the position of the light focusing means; a control section for controlling position adjustment of the material performed by the position adjusting means such that the focus diameter determined by the observation means becomes equal to a predetermined reference focus diameter.
    • 要解决的问题:提供一种用于重粒子束治疗的重粒子离子发生器,其能够以稳定的方式为重粒子束治疗装置产生所需数量的重粒子离子。 解决方案:用于重粒子束治疗的重粒子离子发生器包括:用于通过照射激光产生等离子体的材料; 用于容纳材料的容器; 用于产生激光的激光源; 光聚焦装置,用于聚焦激光,使得在该材料上形成激光的焦点; 电极装置,用于将重粒子离子从库仑力产生的等离子体中排出,并将离子输送到容器外部; 观察装置,用于观察由材料产生的等离子体,并且基于与材料接触的区域中的等离子体直径确定激光的聚焦直径; 位置调节装置,用于调节材料的位置或光聚焦装置的位置; 控制部分,用于控制由位置调节装置执行的材料的位置调整,使得由观察装置确定的聚焦直径变得等于预定的参考聚焦直径。 版权所有(C)2012,JPO&INPIT