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    • 52. 发明授权
    • Fuel cell apparatus
    • 燃料电池装置
    • US07901827B2
    • 2011-03-08
    • US11947788
    • 2007-11-30
    • Cheng WangNien-Hui HsuJin-Shu HuangChing-Po Lee
    • Cheng WangNien-Hui HsuJin-Shu HuangChing-Po Lee
    • H01M8/02
    • H01M8/04089
    • A fuel cell apparatus including a reaction unit for performing a chemical reaction, at least one fan for providing an airflow, and an airflow guiding device is provided. The airflow guiding device is connected to the fan and the reaction unit. The airflow guiding device includes an airflow rectification segment and a first airflow separation segment. The airflow rectification segment is connected to the fan and has one flow channel. The first airflow separation segment is connected to the airflow rectification segment and disposed between the airflow rectification segment and the reaction unit. A number of flow channels inside the first airflow separation segment is N1, where N1 is a positive integer and N1>1.
    • 提供一种燃料电池装置,包括用于进行化学反应的反应单元,至少一个用于提供气流的风扇和气流引导装置。 气流引导装置连接到风扇和反应单元。 气流引导装置包括气流整流段和第一气流分离段。 气流整流段连接风扇,并具有一个流路。 第一气流分离段连接到气流整流段,并设置在气流整流段和反应单元之间。 第一气流分离段内的多个流动通道为N1,其中N1为正整数,N1> 1。
    • 54. 发明申请
    • Fuel cell system and membrane electrode assembly thereof
    • 燃料电池系统及其膜电极组件
    • US20090011305A1
    • 2009-01-08
    • US11905435
    • 2007-10-01
    • Ching-Po LeeCheng WangJin-Shu HuangNien-Hui Hsu
    • Ching-Po LeeCheng WangJin-Shu HuangNien-Hui Hsu
    • H01M8/02H01M8/10
    • H01M8/0247H01M8/0265H01M2008/1095
    • A membrane electrode assembly (MEA) of a three-edge configuration is provided for a fuel cell system. The MEA is tailored to have three edges and the three edges are embedded in an open space of a frame. The three-edge MEA is arranged between an anode collector plate and a cathode collector plate of the fuel cell system. A flow field plate is arranged at the anode side of the MEA with the anode collector plate interposed between the flow field plate and the MEA. The flow field plate forms a fuel transporting channel that is delimited by three side walls and has three vertices. The configuration of the fuel transporting channel corresponds in shape to the three-edge configuration of the MEA and is in communication with at least one fuel inlet and at least one fuel outlet corresponding to the fuel inlet. Anode fuel is fed through the fuel inlet into the fuel transporting channel of the flow field plate and then discharged through the fuel outlet whereby the anode fuel carries out catalytic reaction with the MEA.
    • 为燃料电池系统提供三边形结构的膜电极组件(MEA)。 MEA被定制为具有三个边缘,并且三个边缘嵌入在框架的空闲空间中。 三边MEA布置在燃料电池系统的阳极集电板和阴极集电板之间。 在MEA的阳极侧设置流场板,其中阳极集电板插入在流场板和MEA之间。 流场板形成由三个侧壁限定并具有三个顶点的燃料输送通道。 燃料输送通道的结构形状对应于MEA的三边缘结构,并且与至少一个燃料入口和对应于燃料入口的至少一个燃料出口连通。 阳极燃料通过燃料入口进入流场板的燃料输送通道,然后通过燃料出口排出,由此阳极燃料与MEA进行催化反应。
    • 55. 发明申请
    • FLOW CHANNEL PLATE
    • 流通道板
    • US20080318115A1
    • 2008-12-25
    • US11962113
    • 2007-12-21
    • Cheng WangNien-Hui HsuChing-Po LeeJin-Shu Huang
    • Cheng WangNien-Hui HsuChing-Po LeeJin-Shu Huang
    • H01M2/18
    • H01M8/0258H01M8/1011Y02E60/523
    • A flow channel plate suitable for use in a fuel cell including a plate body and at least a group of flow guiding blocks is provided. The plate body has a first side wall and a second side wall opposite to the first side wall. The first side wall has at least an inlet and the second side wall has at least an outlet. The group of flow guiding blocks is disposed in the plate body and is adjacent to the first side wall, and includes a plurality of flow guiding blocks. One of the flow guiding blocks is a first flow guiding block aligned with the inlet. The rest of flow guiding blocks are arranged into m rows between the first flow guiding block and the second side wall and the first row thereof is adjacent to the first flow guiding block. Where m is a nature number.
    • 提供适用于包括板体和至少一组导流块的燃料电池的流路板。 板体具有与第一侧壁相对的第一侧壁和第二侧壁。 第一侧壁具有至少一个入口,并且第二侧壁具有至少一个出口。 一组流动引导块设置在板体中并与第一侧壁相邻,并且包括多个流动引导块。 一个导流块是与入口对准的第一流动引导块。 其余的流动引导块在第一流动引导块和第二侧壁之间布置成m列,并且其第一排与第一流动引导块相邻。 其中m是自然数。
    • 57. 发明申请
    • Direct oxide fuel cell
    • 直接氧化物燃料电池
    • US20080241633A1
    • 2008-10-02
    • US12007884
    • 2008-01-16
    • Cheng WangJin-Shu HuangChing-Po LeeNien-Hui Hsu
    • Cheng WangJin-Shu HuangChing-Po LeeNien-Hui Hsu
    • H01M8/04
    • H01M8/1009H01M8/0258H01M8/026H01M8/04186H01M8/04201H01M8/1011Y02E60/523
    • A direct oxide fuel cell includes a membrane electrode assembly (MEA), an anode collector, a cathode collector, an anode flow channel plate, and an equalization structure. The anode collector and the cathode collector are disposed on two sides of the MEA respectively. The anode collector contains a plurality of through zones surrounded and a non-through zone. The anode flow channel plate is disposed on a side of the anode collector facing away from the MEA, and includes a fuel transmission channel. The equalization structure disposed in the fuel transmission channel has an end connected to the anode flow channel plate and an opposite end abutting against the anode collector. An area of non-through zones abutted by the equalization structure is bigger than an area of the through zones abutted by the equalization structure.
    • 直接氧化物燃料电池包括膜电极组件(MEA),阳极集电器,阴极集电器,阳极流动通道板和均衡结构。 阳极集电体和阴极集电体分别设置在MEA的两侧。 阳极收集器包含多个通过的区域和不通过区域。 阳极流路板设置在远离MEA的阳极集电体的一侧,并且包括燃料传输通道。 设置在燃料传输通道中的均衡结构具有连接到阳极流动通道板的端部和与阳极集电体抵接的相对端。 由均衡结构邻接的非通过区域的面积大于与均衡结构邻接的贯通区域的面积。
    • 58. 发明申请
    • FUEL CELL
    • 燃料电池
    • US20080171254A1
    • 2008-07-17
    • US11829973
    • 2007-07-30
    • Jin-Shu HuangChing-Po LeeNien-Hui HsuCheng Wang
    • Jin-Shu HuangChing-Po LeeNien-Hui HsuCheng Wang
    • H01M2/00H01M8/00
    • H01M8/04089H01M8/04186H01M8/1011Y02E60/523
    • A fuel cell including at least a membrane electrode assembly (MEA), a pipe, a pump and a linkage arrangement is provided. The MEA includes an anode layer, a cathode layer and an electrolyte layer disposed between the anode layer and the cathode layer. The pump is adapted to drive a fluid flowing in the pipe to provide fuel for the anode layer. The linkage arrangement includes a first blade, at least a second blade and a connecting element. The first blade is disposed inside the pipe and located on a flowing path of the fluid, and the fluid is adapted to drive the first blade to rotate. The second blade is disposed outside the pipe, and the connecting element is adapted to connect the first blade and the second blade so that the first blade drives the second blade to rotate to bring air to flow through the cathode layer.
    • 提供至少包括膜电极组件(MEA),管道,泵和连接装置的燃料电池。 MEA包括阳极层,阴极层和设置在阳极层和阴极层之间的电解质层。 泵适于驱动在管中流动的流体以为阳极层提供燃料。 连接装置包括第一叶片,至少第二叶片和连接元件。 第一叶片设置在管内并且位于流体的流动路径上,并且流体适于驱动第一叶片旋转。 第二叶片设置在管的外部,并且连接元件适于连接第一叶片和第二叶片,使得第一叶片驱动第二叶片旋转以使空气流过阴极层。
    • 60. 发明申请
    • METHOD FOR SHUTTING OFF PROJECTOR
    • 切断投影机的方法
    • US20080030689A1
    • 2008-02-07
    • US11761382
    • 2007-06-12
    • Nien-Hui Hsu
    • Nien-Hui Hsu
    • G03B21/16
    • G03B21/16
    • A method for shutting off a projector having a fan and a light source is provided. The method includes the following steps. The power of the light source is reduced from a first power to a second power and the speed of the fan is increased from a first speed to a second speed after the projector receiving a first command. Then, a process is executed for shutting off the light source and the fan after the projector receiving a second command. The above-mentioned method is capable of not only preventing the projector from damage result from over-shooting, but also shortening the time needed to shut off the projector.
    • 提供一种用于关闭具有风扇和光源的投影仪的方法。 该方法包括以下步骤。 在投影机接收到第一命令之后,光源的功率从第一功率减小到第二功率,并且风扇的速度从第一速度增加到第二速度。 然后,执行在投影机接收到第二命令之后关闭光源和风扇的处理。 上述方法不仅可以防止投影机因过度拍摄而造成的损坏,还能缩短关闭投影机所需的时间。