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    • 2. 发明申请
    • AIRCRAFT FUEL TANK
    • 飞机燃油箱
    • US20110297790A1
    • 2011-12-08
    • US13201916
    • 2010-03-26
    • Hiroaki YamaguchiYuichiro KaminoTooru HashigamiKazuyuki OguriKoichi Nakamura
    • Hiroaki YamaguchiYuichiro KaminoTooru HashigamiKazuyuki OguriKoichi Nakamura
    • B64D37/06
    • B64C3/34B64D37/32B64D45/02
    • An aircraft fuel tank capable of suppressing electrostatic charging caused, for example, by flow electrification with the fuel. The aircraft fuel tank comprises an upper skin (5) and a lower skin (7) that exhibit conductivity and form a portion of a container for storing fuel, an internal structure (19) formed from a metal, and an inner surface layer (15) which has semiconductor properties or insulating properties and is formed in an integral manner on the inner surfaces of the upper skin (5) and the lower skin (7) in a location where the internal structure (19) contacts the upper skin (5) and the lower skin (7), and in the surrounding portion thereof, wherein the inner surface layer (15) is formed, at least in the surrounding portion, from a material having semiconductor properties.
    • 能够抑制静电充电的飞机燃料箱,例如通过与燃料的流动通电。 飞机燃料箱包括表现导电性并形成用于储存燃料的容器的一部分的上皮(5)和下皮(7),由金属形成的内部结构(19)和内表面层(15) ),其具有半导体性质或绝缘性能,并且在内部结构(19)接触上皮肤(5)的位置中一体地形成在上皮肤(5)和下皮肤(7)的内表面上, 和下表皮(7),并且在其周围部分中,至少在周围部分中,由具有半导体特性的材料形成内表面层(15)。
    • 4. 发明授权
    • Aircraft fuel tank
    • 飞机油箱
    • US08550403B2
    • 2013-10-08
    • US13201916
    • 2010-03-26
    • Hiroaki YamaguchiYuichiro KaminoTooru HashigamiKazuyuki OguriKoichi Nakamura
    • Hiroaki YamaguchiYuichiro KaminoTooru HashigamiKazuyuki OguriKoichi Nakamura
    • B64D37/04
    • B64C3/34B64D37/32B64D45/02
    • An aircraft fuel tank capable of suppressing electrostatic charging caused, for example, by flow electrification with the fuel. The aircraft fuel tank comprises an upper skin (5) and a lower skin (7) that exhibit conductivity and form a portion of a container for storing fuel, an internal structure (19) formed from a metal, and an inner surface layer (15) which has semiconductor properties or insulating properties and is formed in an integral manner on the inner surfaces of the upper skin (5) and the lower skin (7) in a location where the internal structure (19) contacts the upper skin (5) and the lower skin (7), and in the surrounding portion thereof, wherein the inner surface layer (15) is formed, at least in the surrounding portion, from a material having semiconductor properties.
    • 能够抑制静电充电的飞机燃料箱,例如通过与燃料的流动通电。 飞机燃料箱包括表现导电性并形成用于储存燃料的容器的一部分的上皮(5)和下皮(7),由金属形成的内部结构(19)和内表面层(15) ),其具有半导体性质或绝缘性能,并且在内部结构(19)接触上皮肤(5)的位置中一体地形成在上皮肤(5)和下皮肤(7)的内表面上, 和下表皮(7),并且在其周围部分中,至少在周围部分中,由具有半导体特性的材料形成内表面层(15)。
    • 6. 发明授权
    • Aircraft fuel tank
    • 飞机油箱
    • US08678320B2
    • 2014-03-25
    • US13131063
    • 2009-06-24
    • Hiroaki YamaguchiYuichiro KaminoTooru HashigamiKazuyuki Oguri
    • Hiroaki YamaguchiYuichiro KaminoTooru HashigamiKazuyuki Oguri
    • B64D37/02
    • B64D37/32B64C3/34B64D45/02
    • An aircraft fuel tank that is capable of suppressing the occurrence of sparks on a pipe caused by a lightning current through the pipe during a lightning strike, and also suppressing static electricity charging of a pipe caused by flow electrification generated by the fuel. An aircraft fuel tank (1) in which a storage section is formed using a conductive upper skin (5), a conductive lower skin (7) and conductive spars (9), the tank comprising: pipes inside the tank, such as a refuel pipe (17), an engine feed pipe (19) and an inert gas pipe (21), which are disposed inside the storage section and are earthed (27) at a plurality of locations, and pipe outer surface layers (31) having semiconductor properties that are formed in an integrated manner on the outer surfaces of the pipes inside the tank such as the replenishing pipe (17), the supply pipe (19) and the gas pipe (21).
    • 一种飞机燃料箱,其能够抑制由于在雷击期间通过管道的雷电流引起的管道上的火花的发生,并且还抑制由燃料产生的流动电气引起的管道的静电充电。 一种飞机燃料箱(1),其中使用导电上皮(5),导电下皮(7)和导电柱(9)形成存储部分,所述罐包括:罐内的管,例如加油 管道(17),发动机供给管(19)和惰性气体管道(21),其设置在存储部分的内部并且在多个位置处接地(27),以及具有半导体的管外表面层 一体地形成在罐内的管子的外表面上的诸如补充管(17),供应管(19)和气管(21)的特性。