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    • 15. 发明专利
    • MEASURING APPARATUS FOR PIPING THICKNESS
    • JPH03272410A
    • 1991-12-04
    • JP7266990
    • 1990-03-22
    • TOSHIBA CORP
    • SEKI EIJISANO YUJIUEHARA AKIOUYAMA KIICHIRO
    • G01B15/02
    • PURPOSE:To enable the measurement of a thickness distribution of a piping in a short time in a non-contact and non-destructive manner by carrying a gammaray source and more than one gamma ray detectors on a mechanism rotating on the outer circumference of the metal piping to detect gamma rays transmitted through the piping diametrically with one detector while gamma rays scattered on the surface of the piping with the other detector. CONSTITUTION:Outputs of first and second gamma ray detectors 12a and 21b are inputted into pulse height discriminators 15a and 15b through respective amplifiers 14a and 14b and pulses with a peak value corresponding to gamma rays energy to be measured are discriminated by height to be outputted from counters 16a and 16b. The resulting outputs are brought into a controller 17 as such corresponding to a transmissibility of the gamma rays so hat a motor 8 for driving of a chain 7 and further, the opening or closing of a shutter of a ray source container 11 with the shutter are controlled while an oscillating mechanism of a second detector 12b is controlled. Thus, a thickness distribution of a piping 1 is computed minus a thickness dimension of a heat insulating material 2 based on control signals to them and the results are outputted to a CRT.
    • 18. 发明专利
    • PLANT ABNORMALITY SUPERVISORY DEVICE
    • JPS62171009A
    • 1987-07-28
    • JP1101686
    • 1986-01-23
    • TOSHIBA CORP
    • SANO YUJI
    • G05B23/02
    • PURPOSE:To lighten the burden imposed on an operator and to quickly cope with the abnormality of a plant by automatically retrieving and displaying detailed information on a device decided to be abnormal by making diagnosis of a detection output and its process amount. CONSTITUTION:If the output of a process amount detection part 1a detecting the discharge pressure of a pump in the middle of piping drops abnormally, a diagnosis processing part 3 compares and examines related information such as the output of an apparatus action state detection part 2a detecting that the breaker of a pump drive motor is opened or closed and the output of a process amount detection part 1b detecting the number of revolution of a pump positioned at the upstream of said part 1a. If the operation is decided to be abnormal, the result is outputted to an information retrieval part 5. It retrieves a pump related piping installation diagram out of optical disk picture information included in an information recording part 4, and outputs a system number, a device number, etc., as keywords to a retrieval result recording part 6. A display control part 8 refers to the system number of the recording part 6, and automatically outputs the piping installation diagram recorded in the recording part 4 on the CRT of a display part 7.
    • 19. 发明专利
    • Remote laser processing device
    • 远程激光加工设备
    • JP2012187599A
    • 2012-10-04
    • JP2011051798
    • 2011-03-09
    • Toshiba Corp株式会社東芝
    • OKADA SATOSHISENDA ITARUSANO YUJISASAKI EIJUHIROTA KEIICHIMURAKAMI MASATO
    • B23K26/00B23K26/08F01D25/00F02C7/00G01B11/00
    • PROBLEM TO BE SOLVED: To provide a remote laser processing device that can reduce positioning work by manual operation of an operator and precisely perform appropriate processing without damaging a device and a construction object.SOLUTION: There is provided the remote laser processing device which inserts a laser irradiation head part disposed at a tip part of a tubular member into the inside of piping or a through-hole and irradiates the inner surface of the piping or the through-hole with a laser beam for processing. The device is disposed at the rear end side of the tubular member and includes: a drive mechanism for moving the laser irradiation head part; a position detecting sensor for detecting a position of the laser irradiation head part; a position detecting mechanism for calculating positional data showing the position of the laser irradiation head part based on a position detecting signal from the position detecting sensor; and a control part for controlling the drive mechanism based on the positional data calculated by the position detecting mechanism to insert the laser irradiation head part into the piping or the through-hole.
    • 要解决的问题:提供一种远程激光加工装置,其可以通过手动操作操作者来减少定位工作,并且精确地执行适当的处​​理而不损坏装置和施工对象。 解决方案:提供了一种远程激光加工装置,其将设置在管状部件的顶端处的激光照射头部插入管道内部或通孔,并照射管道的内表面或通孔 用激光束加工。 该装置设置在管状构件的后端侧,并且包括:用于移动激光照射头部的驱动机构; 位置检测传感器,用于检测激光照射头部的位置; 位置检测机构,用于基于来自位置检测传感器的位置检测信号来计算表示激光照射头部的位置的位置数据; 以及控制部,其基于由所述位置检测机构计算出的位置数据来控制所述驱动机构,以将所述激光照射头部插入到所述管道或所述通孔中。 版权所有(C)2013,JPO&INPIT
    • 20. 发明专利
    • Rotary tool for friction stir welding
    • 旋转工具用于摩擦焊接
    • JP2011020125A
    • 2011-02-03
    • JP2009165228
    • 2009-07-14
    • Fuji Heavy Ind LtdToshiba Corp富士重工業株式会社株式会社東芝
    • ADACHI TAKASHITAKEHISA HIROYUKISANO YUJISENDA ITARU
    • B23K20/12
    • B23K20/1255B23K26/0069B23K2201/20C21D1/09C21D10/005
    • PROBLEM TO BE SOLVED: To provide a rotary tool for friction stir welding which has excellent abrasion resistance and durability, and ensures excellent bonding characteristics. SOLUTION: A probe pin 20 protrudes from an apical surface 13 of a shoulder portion 11 of the rotary tool 10 for friction stir welding, and pulse laser peening is performed in a base-end area 22 on the outer circumference surface of the probe pin, the area ranging between a connecting portion 15 connected to the apical surface 13 of the shoulder portion 11, and a screw portion 23a. The surface hardness and toughness of the probe pin 20 to which compressive loading and tensile loading are applied repeatedly accompanying friction stir welding, are maintained, and damage due to buckling and heat deformation is inhibited to drastically improve durability. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供具有优异的耐磨性和耐久性的摩擦搅拌焊接用旋转工具,并且确保优异的接合特性。 解决方案:探针20从用于摩擦搅拌焊接的旋转工具10的肩部11的顶面13突出,并且在基端部区域22中进行脉冲激光喷丸处理 探头针,其连接在肩部11的顶面13的连接部15与螺纹部23a之间。 保持反复施加摩擦搅拌焊接的压缩载荷和拉伸载荷的探针20的表面硬度和韧性,并且抑制由于弯曲和热变形引起的损伤,从而显着提高耐久性。 版权所有(C)2011,JPO&INPIT