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    • 62. 发明申请
    • CONNECTING STRUCTURE FOR PRESSURE PIPING
    • 压力管道连接结构
    • US20130285374A1
    • 2013-10-31
    • US13979125
    • 2011-10-20
    • Kazumi KobayashiMasato Kobayashi
    • Kazumi KobayashiMasato Kobayashi
    • F16L21/00
    • F16L21/00F16L23/024F16L25/08
    • The present invention addresses the problem of connecting pressure piping in a fluid-tight manner on-site without requiring welding. A plurality of through holes (h1) are provided in a cylindrical sleeve (1a) at separate locations in the lengthwise direction, and with identical angular intervals and without overlapping in the circumferential direction. Non-through holes (h2) in which screw threads have been formed are provided in pressure piping (P1, P2) at locations corresponding to the holes (h1). An insert (2a) is provided with a pair of opposing annular faces (b1, b2), and annular ring grooves (b11, b21) are formed respectively in the annular faces (b1, b2) to house O-rings (3). The insert (2a) is inserted into the sleeve (1a), after which the pressure piping (P1, P2) are inserted one from either side into the interior of the sleeve (1a), bolts (4) are inserted into the plurality of holes (h1) in the sleeve (1a), and screwed onto the screw threads of the pressure piping (P1, P2).
    • 本发明解决了现场无流体密封地连接压力管道而不需要焊接的问题。 多个通孔(h1)在长度方向上的分离位置处设置在圆筒形套筒(1a)中,并且具有相同的角度间隔并且在圆周方向上不重叠。 在与孔(h1)对应的位置处,在压力管道(P1,P2)中设置有形成螺纹的非通孔(h2)。 插入件(2a)设置有一对相对的环形面(b1,b2),并且在环形面(b1,b2)中分别形成环形环槽(b11,b21)以容纳O形环(3)。 插入件(2a)插入到套筒(1a)中,之后将压力管道(P1,P2)从两侧插入到套筒(1a)的内部,螺栓(4)插入到多个 (1a)中的孔(h1),并拧入压力管道(P1,P2)的螺纹上。
    • 68. 发明申请
    • CONTENTS DATA OUTPUT APPARATUS, CONTENTS DATA DELIVERY SYSTEM, CONTENTS DATA OUTPUT METHOD, AND CONTENTS DATA OUTPUT PROGRAM
    • 目录数据输出装置,目录数据传送系统,数据输出方法和内容数据输出程序
    • US20100312853A1
    • 2010-12-09
    • US12679149
    • 2007-09-28
    • Masato Kobayashi
    • Masato Kobayashi
    • G06F15/16
    • H04L67/06H04L67/32
    • [Problems] To surely deliver additional data to be delivered with contents data at a desired timing, and allow a delivery result to be easily confirmed.[Means for Solving Problems] When the contents data is acquired in real time from the delivery apparatus 5 by the contents data acquiring device 11a, the contents data is outputted to a display or the like and displayed in real time by the contents data outputting device 11b. At the same time, the additional data corresponding to the contents data is acquired from the delivery apparatus 5 by the additional data acquiring device 11c, the available data is acquired from the delivery apparatus 5 by the available data acquiring device 11d, and the additional data outputting period is calculated based on the available data by the additional data outputting period calculating device 11e. The additional data is outputted to a display or the like and displayed in the additional data outputting period by the additional data outputting device 11f, and is stopped outputting in response to an end of the additional data outputting period.
    • [问题]确保在期望的时间提供与内容数据一起交付的附加数据,并且允许容易地确认递送结果。 解决问题的手段当通过内容数据获取装置11a从传送装置5实时获取内容数据时,将内容数据输出到显示器等,并通过内容数据输出装置实时显示 11b。 同时,通过附加数据获取装置11c从传送装置5获取对应于内容数据的附加数据,通过可用数据获取装置11d从传送装置5获取可用数据,并且附加数据 基于附加数据输出周期计算装置11e的可用数据来计算输出周期。 附加数据被输出到显示器等,并通过附加数据输出装置11f在附加数据输出周期中显示,并且响应于附加数据输出周期的结束而停止输出。
    • 69. 发明授权
    • Mass spectrometer
    • 质谱仪
    • US07812308B2
    • 2010-10-12
    • US12067128
    • 2005-09-16
    • Masato Kobayashi
    • Masato Kobayashi
    • H01J49/00
    • H01J49/168G01N30/726G01N30/7266H01J49/165
    • In a liquid chromatograph mass spectrometer having an ionization interface capable of simultaneously performing ionization operations by ESI and APCI, a spray nozzle 22 for spraying a liquid sample given form a liquid chromatograph section as charged droplets, and a corona discharger 25 for ionizing mobile phase solvent molecules are placed in the same ionization chamber 21. The same voltages are applied to both the spray nozzle and the corona discharger from a single high-voltage power supply 41. The electrical power's value of the heater 27 of the heated dry gas supplier for drying the charged droplets generated in the spray nozzle 22 are set to be suitable for the ionization according to APCI. Consequently, the labor for the circuit design and the number of the parts are reduced. At the same time, the parameter setting items for the user are decreased, which leads to enhanced operability.
    • 在具有能够通过ESI和APCI同时进行电离操作的电离界面的液相色谱质谱仪中,用于将由液相色谱部分提供的液体样品喷射为带电液滴的喷嘴22和用于电离流动相溶剂的电晕放电器25 分子被放置在相同的电离室21中。相同的电压从单个高压电源41施加到喷嘴和电晕放电器两者。加热干燥气体供应器的干燥加热器27的电功率值 在喷嘴22中产生的带电液滴被设定为适合于根据APCI的电离。 因此,电路设计和部件数量的减少。 同时,用户的参数设置项目减少,从而提高了可操作性。