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    • 12. 发明授权
    • Fuel cell and fuel cell fastening device
    • 燃料电池和燃料电池紧固装置
    • US08318378B2
    • 2012-11-27
    • US12529381
    • 2008-05-21
    • Norihiko SaitoKimihide Horio
    • Norihiko SaitoKimihide Horio
    • H01M2/02
    • H01M8/248
    • A fuel cell (10) includes a fuel cell stack (50) in which a plurality of fuel cell units are stacked on one another, a pair of end plates (61, 61b, 63, 63b) respectively contact both ends of the fuel cell stack in a direction (Ds) in which the plurality of fuel cell units are stacked, and a side member (62, 62b, 62g) that extends in the stacking direction and is disposed between the end plates. The fuel cell further includes a connecting bolt portion, having a bolt shank (644, 624g) that penetrates one of the end plates substantially along the stacking direction. The connecting bolt portion connects the one of the end plates and the side member. The fuel cell further includes a cushion joint (66, 66a, 66b, 66c, 66d, 66e, 66f) disposed between the side member and one of the end plates, and through which the bolt shank passes.
    • 燃料电池(10)包括燃料电池堆(50),多个燃料电池单元彼此堆叠在一起,一对端板(61,61b,63,63b)分别接触燃料电池的两端 堆叠多个燃料电池单元的方向(Ds)堆叠的侧构件(62,62b,62g),其沿堆叠方向延伸并设置在端板之间。 燃料电池还包括连接螺栓部分,其具有基本上沿堆叠方向穿透端板之一的螺栓柄(644,624g)。 连接螺栓部分连接端板和侧件中的一个。 燃料电池还包括设置在侧构件和一个端板之间的缓冲接头(66,66a,66b,66c,66d,66e,66f),并且螺栓杆通过该缓冲接头。
    • 13. 发明授权
    • Diagnostic apparatus and diagnostic method for fuel cell
    • 燃料电池诊断装置及诊断方法
    • US07867664B2
    • 2011-01-11
    • US11976259
    • 2007-10-23
    • Norihiko SaitoMasaaki Kondo
    • Norihiko SaitoMasaaki Kondo
    • H01M8/04
    • H01M8/04089H01M8/04007
    • According to an aspect of the invention, a diagnostic apparatus which diagnoses a state of the fuel cell includes an operation device which is used for operating the fuel cell; an operational state detecting portion which detects a change in an operational state of the fuel cell; a device control portion which controls the operation device such that the fuel cell is operated according to at least one predetermined operation pattern; and a diagnostic portion which diagnoses the state of the fuel cell based on the change in the operational state of the fuel cell that is detected by the change in the operational state detecting portion when the fuel cell is operated by the device control portion according to the at least one predetermined operation pattern, and the at least one predetermined operation pattern.
    • 根据本发明的一个方面,诊断燃料电池的状态的诊断装置包括用于操作燃料电池的操作装置; 操作状态检测部,其检测燃料电池的动作状态的变化; 装置控制部分,其控制所述操作装置,使得所述燃料电池根据至少一个预定操作模式操作; 以及诊断部,其基于燃料电池的操作状态的变化来诊断燃料电池的状态,所述燃料电池的操作状态由操作状态检测部的变化检测到,当燃料电池由装置控制部分操作时,根据 至少一个预定操作模式和至少一个预定操作模式。
    • 14. 发明申请
    • FUEL CELL AND FUEL CELL FASTENING DEVICE
    • 燃料电池和燃料电池紧固装置
    • US20100092836A1
    • 2010-04-15
    • US12529381
    • 2009-05-21
    • Norihiko SaitoKimihide Horio
    • Norihiko SaitoKimihide Horio
    • H01M2/02
    • H01M8/248
    • A fuel cell (10) includes a fuel cell stack (50) in which a plurality of fuel cell units are stacked on one another, a pair of end plates (61, 61b, 63, 63b) respectively contact both ends of the fuel cell stack in a direction (Ds) in which the plurality of fuel cell units are stacked, and a side member (62, 62b, 62g) that extends in the stacking direction and is disposed between the end plates. The fuel cell further includes a connecting bolt portion, having a bolt shank (644, 624g) that penetrates one of the end plates substantially along the stacking direction. The connecting bolt portion connects the one of the end plates and the side member. The fuel cell further includes a cushion joint (66, 66a, 66b, 66c, 66d, 66e, 66f) disposed between the side member and one of the end plates, and through which the bolt shank passes.
    • 燃料电池(10)包括燃料电池堆(50),多个燃料电池单元彼此堆叠在一起,一对端板(61,61b,63,63b)分别接触燃料电池的两端 堆叠多个燃料电池单元的方向(Ds)堆叠的侧构件(62,62b,62g),其沿堆叠方向延伸并设置在端板之间。 燃料电池还包括连接螺栓部分,其具有基本上沿堆叠方向穿透端板之一的螺栓柄(644,624g)。 连接螺栓部分连接端板和侧件中的一个。 燃料电池还包括设置在侧构件和一个端板之间的缓冲接头(66,66a,66b,66c,66d,66e,66f),并且螺栓杆通过该缓冲接头。
    • 17. 发明授权
    • Fuel cell stack and vehicle equipped with fuel cell system
    • 燃料电池堆和配备燃料电池系统的车辆
    • US08318372B2
    • 2012-11-27
    • US12597265
    • 2008-04-25
    • Norihiko Saito
    • Norihiko Saito
    • H01M8/24B60K1/04
    • H01M8/247H01M8/2475H01M8/248H01M2250/20Y02T90/32
    • A fuel cell stack in accordance with the invention has a cell laminate obtained by stacking multiple plates with at least one of functions of a power generation assembly and a separator, and a pair of end plates located outside and on both ends of the cell laminate in a stacking direction. The fuel cell stack further includes a displacement preventing member extended along the stacking direction of the cell laminate and fastened to the pair of end plates, and a deformable intermediate material located between the cell laminate and the displacement preventing member over an area of two or more plates among the multiple plates. At least either one of the two or more plates and the displacement preventing member is designed to have a concavo-convex shape formed at least partially on a face in contact with the intermediate material. Such a simple structure of the fuel cell stack effectively enhances the resistance against an inertial force acting in an in-plane direction that is perpendicular to the stacking direction.
    • 根据本发明的燃料电池堆具有通过将具有发电组件和隔板的功能中的至少一个的多个板堆叠并且位于电池层叠体的外部和两端的一对端板而获得的电池层叠体 堆叠方向。 燃料电池堆还包括沿着电池层叠体的堆叠方向延伸并紧固到一对端板的位移防止构件,以及位于电池层叠体和位移防止构件之间的两个或更多个区域上的可变形中间材料 多个板之间的板。 两个或更多个板和位移防止构件中的至少任一个被设计成具有至少部分地形成在与中间材料接触的面上的凹凸形状。 燃料电池堆的这种简单的结构有效地增强了抵抗垂直于堆叠方向的面内方向作用的惯性力的阻力。
    • 19. 发明申请
    • Diagnostic apparatus and diagnostic method for fuel cell
    • 燃料电池诊断装置及诊断方法
    • US20080220299A1
    • 2008-09-11
    • US11976259
    • 2007-10-23
    • Norihiko SaitoMasaaki Kondo
    • Norihiko SaitoMasaaki Kondo
    • H01M8/04H01M8/02
    • H01M8/04089H01M8/04007
    • According to an aspect of the invention, a diagnostic apparatus which diagnoses a state of the fuel cell includes an operation device which is used for operating the fuel cell; an operational state detecting portion which detects a change in an operational state of the fuel cell; a device control portion which controls the operation device such that the fuel cell is operated according to at least one predetermined operation pattern; and a diagnostic portion which diagnoses the state of the fuel cell based on the change in the operational state of the fuel cell that is detected by the change in the operational state detecting portion when the fuel cell is operated by the device control portion according to the at least one predetermined operation pattern, and the at least one predetermined operation pattern.
    • 根据本发明的一个方面,诊断燃料电池的状态的诊断装置包括用于操作燃料电池的操作装置; 操作状态检测部,其检测燃料电池的动作状态的变化; 装置控制部分,其控制所述操作装置,使得所述燃料电池根据至少一个预定操作模式操作; 以及诊断部,其基于燃料电池的操作状态的变化来诊断燃料电池的状态,所述燃料电池的操作状态由操作状态检测部的变化检测到,当燃料电池由装置控制部分操作时,根据 至少一个预定操作模式和至少一个预定操作模式。