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    • 4. 发明申请
    • FUEL TANK DEVICE CAPABLE OF DETECTING CONSISTENCY
    • 能够检测一致性的燃油罐装置
    • US20080209991A1
    • 2008-09-04
    • US11838691
    • 2007-08-14
    • TSANG-MING CHANGChien-An ChenWen Jui Chuang
    • TSANG-MING CHANGChien-An ChenWen Jui Chuang
    • G01M15/04
    • H01M8/04201H01M8/0618H01M8/0631H01M8/1011Y02E60/523Y02P70/56
    • A fuel tank device capable of detecting consistency includes a fuel storage tank and a consistency detecting box. The fuel storage tank provides fuel needed by a fuel cell as a fuel supply source for the fuel cell. A consistency detecting passage is disposed near the bottom of the fuel storage tank for the fuel flowing outward to the consistency detecting box. The consistency detecting box further includes a signal emitting component, which is disposed in the consistency detecting box and capable of emitting a signal piercing the fuel in the consistency detecting box, a signal receiving component, which is disposed in the consistency detecting box and capable of collecting the signal after piercing the fuel in the consistency detecting box and a consistency detecting component, which is attached to the consistency detecting box, compares the emitted signal with the collected signal for detecting a consistency of the fuel.
    • 能够检测一致性的燃料箱装置包括燃料储罐和一致性检测箱。 燃料储罐提供燃料电池所需的燃料作为燃料电池的燃料供应源。 一致性检测通道设置在燃料储罐的底部附近,用于向外流向一致性检测箱的燃料。 一致性检测箱还包括信号发射部件,该信号发射部件设置在一致性检测箱中,并能够发出穿过一致性检测箱中的燃料的信号,信号接收部件设置在一致性检测箱中,并且能够 在一致性检测箱中刺穿燃料之后收集信号,并且附着到一致性检测箱的一致性检测部件将发射的信号与收集的信号进行比较,以检测燃料的一致性。
    • 6. 发明申请
    • MIXER FOR LIQUID FUELS
    • 液体燃料混合器
    • US20080050636A1
    • 2008-02-28
    • US11840932
    • 2007-08-18
    • HSI-MING SHUTSANG-MING CHANGWEI-LI HUANGCHIEN-AN CHENWEN JUI CHUANG
    • HSI-MING SHUTSANG-MING CHANGWEI-LI HUANGCHIEN-AN CHENWEN JUI CHUANG
    • H01M8/04
    • H01M8/04164H01M8/04208H01M8/1011Y02E60/523Y10T137/86212
    • A liquid fuel mixer is disclosed, which is used to store liquid fuels for a fuel cell. The liquid fuel mixer includes a casing, one or more radiators and a gas permeable but liquid impermeable film. The casing forms a first internal compartment and a second internal compartment, and the first internal compartment is adjacent to the second internal compartment. The casing next to and separating the first internal compartment from the second internal compartment includes at least one vent and at least one drain. The second internal compartment contains the liquid fuels. The radiators are disposed in the first internal compartment. The gas permeable but liquid impermeable film is disposed on the vent. To avoid water condensing on the walls, the bottom of the first internal compartment includes a slopping channel and/or a flow-guilding channel, and the drain is disposed on the end of the lower portion of the slopping channel or the flow-guilding channel.
    • 公开了一种用于储存用于燃料电池的液体燃料的液体燃料混合器。 液体燃料混合器包括壳体,一个或多个散热器和透气但不透液体的膜。 壳体形成第一内部隔室和第二内部隔室,并且第一内部隔室与第二内部隔室相邻。 旁边并且将第一内部隔室与第二内部隔室分离的外壳包括至少一个通风口和至少一个排水口。 第二个内部隔间含有液体燃料。 散热器设置在第一内部隔室中。 透气但不透液膜设置在排气口上。 为了避免在壁上的冷凝,第一内部隔室的底部包括一个倾斜通道和/或一个流动通道,并且排水口设置在该倾斜通道或流动通道的下部的一端 。
    • 7. 发明申请
    • LAYER LAMINATION INTEGRATED FUEL CELL
    • 层叠式集成燃料电池
    • US20070264559A1
    • 2007-11-15
    • US11747915
    • 2007-05-13
    • Tsang-Ming ChangChih-Jung KaoChun-Wei PanWei-Li Huang
    • Tsang-Ming ChangChih-Jung KaoChun-Wei PanWei-Li Huang
    • H01M8/02
    • H01M8/241H01M8/0213H01M8/0215H01M8/0221H01M8/0226H01M8/0228H01M8/0247H01M8/0258H01M8/0269H01M8/1011H01M8/242Y02E60/523
    • The present invention provides a layer lamination integrated fuel cell, which comprises: two sheets of one-sided cathode flow field boards, at least one sheet of two-sided cathode flow field board, at least one sheet of two-sided anode flow field board, and, at least one sheet of bipolar fuel cell boards; in which, the two sheets of one-sided cathode flow field boards are configured on the both outmost sides of the fuel cell; these two-sided cathode flow field boards, these two-sided anode flow field boards, and these bipolar fuel cell boards are configured between the fuel cell in separated layers. The side surfaces with the cathode configured on the outmost two sheets of bipolar fuel cell boards for the fuel cell are tightly bonded with two sheets of one-sided cathode flow field boards, respectively; and, the side surfaces with the cathode configured in layers on the other bipolar fuel cell boards for the fuel cell are tightly bonded with each sheet of two-sided cathode flow field board, respectively; and, the side surfaces with the anode for these layered bipolar fuel cells are tightly bonded with each sheet of two-sided anode flow field board, respectively.
    • 本发明提供一种层叠一体化燃料电池,其包括:两片单面阴极流场板,至少一片双面阴极流场板,至少一片双面阳极流场板 ,和至少一片双极性燃料电池板; 其中,两片单面阴极流场板构造在燃料电池的两个最外侧; 这些双面阴极流场板,这些双面阳极流场板和这些双极性燃料电池板被构造在分离层中的燃料电池之间。 用于燃料电池的最外面的两片双极性燃料电池板上配置有阴极的侧面分别与两片单面阴极流场板紧密结合; 并且,分别与各片双面阴极流场基板紧密地结合有用于燃料电池的其它双极性燃料电池板上的阴极配置的侧面, 并且与这些层状双极型燃料电池单元的阳极侧面分别与两片侧面阳极流场板紧密接合。
    • 9. 发明申请
    • Fuel cell apparatus of feedback module
    • 燃料电池装置的反馈模块
    • US20070082241A1
    • 2007-04-12
    • US11245005
    • 2005-10-07
    • Hsi-Ming ShuFeng-Yi DengTsang-Ming ChangChien-Lang WangYu Tang
    • Hsi-Ming ShuFeng-Yi DengTsang-Ming ChangChien-Lang WangYu Tang
    • H01M8/04
    • H01M8/1011H01M8/04007H01M8/04097H01M8/04194H01M8/04328H01M8/04447H01M8/04753H01M8/0488H01M8/04992H01M8/1097H01M2250/30Y02B90/18Y02E60/523
    • The present invention is a fuel cell apparatus of feedback module which comprises at least one fuel cell unit and energy management unit. The energy management unit used to manage the power efficiency of the fuel cell unit at least comprises the following components: sensing module, which is used to at least sense the temperature variation of the fuel, the liquid level variation of the fuel, the concentration variation of the fuel utilized in the electrochemical reaction proceeded by the fuel cell unit, and used to produce the corresponding sensed signals to these variations; I/O interface, which is used to provide the conducting paths for the signal and the electrical power; constant voltage module, which is used to connect the fuel cell unit and receive the electrical power produced by the fuel cell unit and then output a stable voltage of power supply; microprocessor, which is used to manage the power efficiency of the fuel cell unit based on these sensed signals and the signal received from I/O interface; electrical loop, which is used to connect the fuel cell unit, sensing module, I/O interface, constant voltage module and microprocessor.
    • 本发明是一种反馈模块的燃料电池装置,其包括至少一个燃料电池单元和能量管理单元。 用于管理燃料电池单元的功率效率的能量管理单元至少包括以下部件:用于至少感测燃料的温度变化,燃料的液位变化,浓度变化的感测模块 在燃料电池单元进行的电化学反应中使用的燃料,并用于产生对这些变化的对应的感测信号; I / O接口,用于提供信号和电力的导通路径; 恒压模块,用于连接燃料电池单元并接收燃料电池单元产生的电力,然后输出稳定的电源电压; 微处理器,用于基于这些感测信号和从I / O接口接收的信号来管理燃料电池单元的功率效率; 电气回路,用于连接燃料电池单元,感应模块,I / O接口,恒压模块和微处理器。
    • 10. 发明申请
    • Testing fixture for membrane electrode assembly
    • 膜电极组件测试夹具
    • US20060269820A1
    • 2006-11-30
    • US11137663
    • 2005-05-26
    • Ko-Chen ShenTsang-Ming Chang
    • Ko-Chen ShenTsang-Ming Chang
    • H01M8/04G01N27/26
    • H01M8/1004H01M8/0247H01M8/0258H01M8/0273H01M8/04305H01M8/247
    • This invention relates to a testing fixture for membrane electrode assembly, for testing performance of the membrane electrode assembly, the testing fixture including a first mold unit and a second mold unit. The first and second mold units are capable of clamping towards and separating from each other, and during testing, the membrane electrode assembly is interposed between the first and second mold units clamped to each other. The first mold unit supplies anode fuel to an anode of the membrane electrode assembly and includes a first retaining plate, an anode fuel flow field plate and an anode current collection plate. The second mold unit supplies cathode fuel to a cathode of the membrane electrode assembly and includes a second retaining plate, a cathode fuel flow field plate and a cathode current collection plate.
    • 本发明涉及一种用于膜电极组件的测试性能的膜电极组件的测试夹具,该测试夹具包括第一模具单元和第二模具单元。 第一和第二模具单元能够彼此夹紧并分离,并且在测试期间,膜电极组件插入在相互夹紧的第一和第二模具单元之间。 第一模具单元将阳极燃料供应到膜电极组件的阳极,并且包括第一保持板,阳极燃料流场板和阳极集流板。 第二模具单元将阴极燃料供应到膜电极组件的阴极,并且包括第二保持板,阴极燃料流场板和阴极集电板。