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    • 1. 发明授权
    • Liquid-fuel storage vessel and vapor jet system using the same
    • 液体燃料储存容器和使用其的蒸气喷射系统
    • US08769923B2
    • 2014-07-08
    • US12401496
    • 2009-03-10
    • Takayuki YamamotoOsamu MoriJunichiro Kawaguchi
    • Takayuki YamamotoOsamu MoriJunichiro Kawaguchi
    • B64G1/40
    • F02K9/42B64G1/401B64G1/402
    • Disclosed is a liquid-fuel storage vessel for use in a vapor jet system to store liquid fuel, wherein the vapor jet system is adapted to jet the fuel in a state after being vaporized inside the liquid-fuel storage vessel, outside the liquid-fuel storage vessel, to obtain a thrust. The liquid-fuel storage vessel comprises: a hollow tank for storing the liquid fuel, wherein the tank has an ejection port for ejecting the vaporized fuel, outside the liquid-fuel storage vessel therethrough; a heating device for heating the tank; and a porous metal formed to have a plurality of interconnected cells and provided inside the tank, wherein at least a part of the liquid fuel is held in the cells of the porous metal, and heat energy given from the heating device to the tank is transferred to the liquid fuel through the porous metal to cause vaporization of at least a part of the liquid fuel. The liquid-fuel storage vessel of the present invention can obtain a stable thrust level and ensure spacecraft attitude control.
    • 公开了一种用于蒸汽喷射系统中储存液体燃料的液体燃料储存容器,其中蒸气喷射系统适于在液体 - 燃料储存容器内蒸发之前的状态下喷射燃料,在液体燃料外 储存容器,以获得推力。 液体燃料储存容器包括:用于储存液体燃料的中空罐,其中罐具有用于喷射蒸发燃料的喷射口,在液体燃料储存容器的外面; 用于加热罐的加热装置; 以及形成为具有多个相互连接的电池并设置在所述槽内的多孔金属,其中所述液体燃料的至少一部分保持在所述多孔金属的电池中,并且从所述加热装置向所述罐传递的热能被转移 通过多孔金属使液体燃料通过至少一部分液体燃料蒸发。 本发明的液体燃料储存容器可获得稳定的推力水平并确保航天器的姿态控制。
    • 5. 发明授权
    • Hydraulic brake system
    • 液压制动系统
    • US09533663B2
    • 2017-01-03
    • US13508818
    • 2010-03-03
    • Tetsuya MiyazakiTakayuki YamamotoYoshito Tanaka
    • Tetsuya MiyazakiTakayuki YamamotoYoshito Tanaka
    • B60T8/40B60T8/88B60T8/94
    • B60T8/4081B60T8/885B60T8/94B60T2270/402
    • A hydraulic brake system including: (a) a first hydraulic-pressure generating device including a manual hydraulic pressure source; (b) a second hydraulic-pressure generating device including a power hydraulic pressure source; (c) a manual-operation-associated brake line including a communicating device that is to be brought into communication with the manual hydraulic pressure source and brake cylinder or cylinders of the plurality of hydraulic brakes; (d) an output hydraulic-pressure control device and a flow restraining device disposed in parallel with each other between the manual-operation-associated brake line and the second hydraulic-pressure generating device; and (e) a power hydraulic pressure source control device for activating the power hydraulic pressure source such that the hydraulic pressure is supplied to the manual-operation-associated brake line via the flow restraining device, when the output hydraulic-pressure control device cannot control the hydraulic pressure outputted by the second hydraulic-pressure generating device.
    • 一种液压制动系统,包括:(a)包括手动液压源的第一液压发生装置; (b)包括动力液压源的第二液压发生装置; (c)手动操作相关的制动线,其包括与所述手动液压源和所述多个液压制动器的制动缸或气缸连通的连通装置; (d)在与手动关联的制动管路和第二液压发生装置之间并联设置的输出液压控制装置和流量限制装置; 以及(e)动力液压源控制装置,用于当输出液压控制装置不能控制时启动动力液压源,使得液压通过流量限制装置供给到与手动关联的制动管路 由第二液压发生装置输出的液压。
    • 10. 发明授权
    • Brake control apparatus
    • 制动控制装置
    • US08550571B2
    • 2013-10-08
    • US13062982
    • 2009-09-30
    • Takayuki YamamotoKoji WatanabeTakashi Satou
    • Takayuki YamamotoKoji WatanabeTakashi Satou
    • B60T13/18
    • B60T8/4081B60T8/3655
    • A brake control apparatus is equipped with a plurality of fluid pressure adjusting valves that have opening degrees thereof adjusted through energization control to adjust the fluid pressures, a plurality of valves that are provided in series with at least two of the fluid pressure adjusting valves, are closed during stoppage of energization to hold the fluid pressures, and a brake ECU. The brake ECU controls fluid pressure adjustment achieved by supplying the fluid pressures to the wheel cylinders respectively, opening the communication valves, and adjusting the opening degrees of the fluid pressure adjusting valves to adjust the fluid pressures respectively, and fluid pressure holding achieved by closing the communication valves, opening the fluid pressure adjusting valves, and holding the fluid pressures by means of the communication valves respectively.
    • 制动控制装置配备有多个流体压力调节阀,其通过通电控制调节开度,以调节流体压力,与至少两个流体压力调节阀串联设置的多个阀是 在停止通电期间闭合以保持流体压力,以及制动ECU。 制动ECU控制通过分别向轮缸供给流体压力而实现的流体压力调节,打开连通阀,并且调节流体压力调节阀的开度以分别调节流体压力,并且通过关闭流体压力来实现流体压力保持 连通阀,打开流体压力调节阀,并分别通过连通阀保持流体压力。