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    • 2. 发明授权
    • Vehicle-mounted gaseous fuel generator
    • 车载气体燃料发生器
    • US4008692A
    • 1977-02-22
    • US520936
    • 1974-11-04
    • Hiroshi ShinoharaKunihiko MasunagaShigeo MurakamiKazuhiko Ishiguro
    • Hiroshi ShinoharaKunihiko MasunagaShigeo MurakamiKazuhiko Ishiguro
    • C10G11/20B60K15/03F02B43/00F02B51/00
    • F02B43/00Y02T10/32
    • Vehicle-mounted gaseous fuel generator consisting of a primary heat-exchange chamber holding coiled pipes for separately preheating a liquid hydrocarbon and water, a secondary heat-exchange chamber similarly equipped with coiled pipes utilizing the heat of the engine exhaust to heat and vaporize each of the fuel materials which have been preheated in the primary heat-exchange chamber, a reaction-reforming chamber composed of an outer reaction chamber for blending the hydrocarbon vaporized in the secondary heat exchange chamber with air for partial oxidation and an inner steam-reforming catalyst layer through which the combined flow of the partially oxidized gas and the vaporized water is passed to be transformed into an inflammable gas, and an apparatus for collecting the inflammable gas in a gas-collector and transmitting it via the primary heat-exchange chamber to the carburetor of the engine.
    • 车载气体燃料发生器,由主要的热交换室组成,用于单独预热液态碳氢化合物和水的连续管道;二级热交换室,其类似地配备有利用发动机排气的热量进行加热和汽化的盘管 在一次热交换室中预热的燃料,由在二次热交换室中蒸发的烃与用于部分氧化的空气混合的外部反应室和内部蒸汽重整催化剂层构成的反应重整室 通过该部分氧化气体和汽化水的组合流通过该燃气转化为易燃气体,以及用于收集集气器中的可燃性气体并通过一次热交换室将其透过化油器的装置 的发动机。
    • 8. 发明授权
    • Method and apparatus for vacuum sealing a vacuum container assembly
    • 用于真空密封真空容器组件的方法和装置
    • US4527042A
    • 1985-07-02
    • US504713
    • 1983-06-15
    • Hiroshi ShinoharaKiyoshi Nagai
    • Hiroshi ShinoharaKiyoshi Nagai
    • B23K26/00A47J41/02B23K26/12B23K26/20B29C65/00
    • B23K26/123B23K26/12B23K26/1224B23K26/206B29C66/001
    • A method and apparatus for vacuum sealing a vacuum container assembly (A) such as a vacuum bottle having an inner container (1b) and an outer container (1a). The vacuum container assembly (A) is heat treated in one location in a vacuum chamber (21) of a vacuum furnace (11) and then moved to a different location in the chamber. At the second location, a sealing plate (4) having a tapered rim (25) is installed into a complementarily tapered guide (2a) at the edge of an evacuation hole (2) in the outer chamber (1a) by a sealing plate fitting device (14). The vacuum container assembly (A) is moved to a third location in the vacuum chamber (21) where the sealing plate (4) is welded to the outer container (1a) by a laser beam (C) which passes into the vacuum chamber (21) from a laser welding device (15) situated outside the vacuum furnace (11) through a beam-transparent window (20) in the wall of the vacuum furnace (11). A transport device (13) having transport segments (13a, 13b, 13c, and 13d) transports the vacuum container assembly (A) from one location to another location inside vacuum chamber (21) of vacuum furnace (11). First and second position regulating devices (16 and 17 respectively) sense the presence of the vacuum container assembly (A) at locations for installing the sealing plate and conducting the laser welding.
    • 一种用于真空密封真空容器组件(A)的方法和装置,例如具有内部容器(1b)和外部容器(1a)的真空瓶。 真空容器组件(A)在真空炉(11)的真空室(21)中的一个位置进行热处理,然后移动到室中的不同位置。 在第二位置,具有锥形边缘(25)的密封板(4)通过密封板配件安装在外室(1a)中的排气孔(2)的边缘处的互补锥形引导件(2a)中 装置(14)。 真空容器组件(A)移动到真空室(21)中的第三位置,其中密封板(4)通过进入真空室的激光束(C)被焊接到外部容器(1a) 21)从位于真空炉(11)外侧的激光焊接装置(15)通过真空炉(11)的壁中的透光窗(20)。 具有运输段(13a,13b,13c和13d)的运输装置(13)将真空容器组件(A)从一个位置输送到真空炉(11)的真空室(21)内的另一位置。 第一和第二位置调节装置(16和17分别)在用于安装密封板并进行激光焊接的位置处感测真空容器组件(A)的存在。