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    • 5. 发明申请
    • Combined Pressure Reducing and Shut-Off Valve
    • 联合减压和关闭阀
    • US20070204915A1
    • 2007-09-06
    • US11659740
    • 2005-08-26
    • Masahiko KimbaraNobuo KobayashiNobuyuki OgamiAkira Yamashita
    • Masahiko KimbaraNobuo KobayashiNobuyuki OgamiAkira Yamashita
    • F16K31/14
    • G05D16/2086G05D16/10Y10T137/7782Y10T137/7826
    • A pressure-reducing valve is disclosed which is capable of preventing leakage of a fluid from a passage aperture in a state in which the passage aperture is closed by a valve body. The pressure-reducing valve is structured such that a plunger is moved upward due to a biasing force of a shut spring when a magnetic field generated around and inside a solenoid body is released. Thus, the valve body is pushed up from below by a pressing portion of the plunger with a pressing force based on the biasing force of a shut spring. Due to the valve body being pushed up, the upper end of the valve body is placed in close contact with the inner peripheral portion of the passage aperture so that the passage aperture is closed. In this manner, leakage of hydrogen gas from a primary pressure chamber to a secondary pressure chamber (leakage of the gas pressure) can be prevented with certainty, and thus an unintentional increase of the pressure at the secondary pressure chamber side can be prevented with certainty.
    • 公开了一种减压阀,其能够防止在通道孔被阀体关闭的状态下流体从通道孔泄漏。 减压阀被构造成使得当螺线管体内部和内部产生的磁场被释放时,柱塞由于闭合弹簧的偏置力而向上移动。 因此,阀体通过基于弹簧的偏置力的按压力被柱塞的按压部从下方向上推动。 由于阀体被向上推动,阀体的上端与通道孔的内周部分紧密接触,使得通道孔闭合。 以这种方式,可以确定地防止氢气从一次压力室泄漏到二次压力室(泄漏气体压力),从而可以确定地防止二次压力室侧的压力的无意的增加 。
    • 6. 发明授权
    • Gas storage apparatus
    • 储气装置
    • US07112239B2
    • 2006-09-26
    • US10848055
    • 2004-05-19
    • Masahiko KimbaraDaigoro MoriTakehiro NitoHidehito KuboKeiji Toh
    • Masahiko KimbaraDaigoro MoriTakehiro NitoHidehito KuboKeiji Toh
    • F17C11/00
    • C01B3/0005F17C11/005F17C2205/013F17C2223/0123F17C2227/0337Y02E60/321Y02E60/327
    • A hydrogen storage apparatus that includes multiple gas storage tanks that each house a storing/adsorbing material and through the interior of which a fluid travels is provided. The gas storage apparatus 10 includes roughly cylindrical gas storage tanks 20 that house hydrogen-storing alloy. The multiple gas storage tanks 20 are disposed longitudinally parallel to each other in an ordered fashion such that roughly triangular prism-shaped empty spaces are formed between multiple adjacent hydrogen storage tanks 20. Coolant paths through which coolant flows are formed in these roughly triangular prism-shaped empty spaces. These coolant paths are thermally connected to the hydrogen-storing alloy in the gas storage tanks 20 via constituent members of the gas storage tanks 20 and via heat transfer plates 28 disposed on the gas storage tanks 20.
    • 一种氢存储装置,其包括多个储气罐,每个储气罐容纳储存/吸附材料并且通过其流体行进的内部。 气体存储装置10包括容纳储氢合金的大致圆筒形的储气罐20。 多个储气罐20以有序的方式彼此纵向平行地设置,使得在多个相邻的氢存储罐20之间形成大致三角形的棱柱形空间。 冷却剂流过的冷却剂路径形成在这些大致三角形的棱柱形空间中。 这些冷却剂路径经由气体储存槽20的构成部件和设置在气体储存槽20上的传热板28与气体储罐20中的储氢合金热连接。
    • 10. 发明授权
    • Stepping actuators
    • 步进执行器
    • US5577436A
    • 1996-11-26
    • US365843
    • 1994-12-29
    • Masahiko Kimbara
    • Masahiko Kimbara
    • F15B15/06F16H25/12F16H27/02F16J1/10F01B9/00
    • F15B15/068F16H27/02
    • A stepping actuator having a housing containing two linearly reciprocating members independently and axially slidable, and a common rotating member passed through them. One of the housing and linearly reciprocating members has endless circulating grooves formed by tilted grooves interconnected by circumferentially extending grooves while another one of them holds projections adapted to fit in the circulating grooves. The circumferentially extending grooves have a circumferential length equal to a circumferential length of an opposite tilted groove corresponding to another of said slidable reciprocating members. The linearly reciprocating members and rotating member are linked together by a coupling that transmits the rotary motion while allowing free axial motion.
    • 具有独立且可轴向滑动的包含两个线性往复运动件的壳体的步进致动器和通过它们的公共旋转构件。 壳体和线性往复运动件中的一个具有由周向延伸的槽相互连接的倾斜槽形成的无端循环槽,而另一个保持适于装配在循环槽中的突起。 周向延伸的槽具有等于与另一个所述可滑动往复运动件相对应的相对倾斜槽的圆周长度的圆周长度。 线性往复构件和旋转构件通过联接器连接在一起,该联接器允许旋转运动同时允许自由轴向运动。