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    • 1. 发明申请
    • Method for manufacturing membrane electrode assembly of fuel cell by printing processes
    • 通过印刷工艺制造燃料电池的膜电极组件的方法
    • US20050276913A1
    • 2005-12-15
    • US10854342
    • 2004-05-27
    • Charn-Ying ChenPeng YangYing-Sheng LeeKin-Fu Lin
    • Charn-Ying ChenPeng YangYing-Sheng LeeKin-Fu Lin
    • B05D5/12H01M4/86H01M4/88H01M4/90H01M4/92H01M8/10
    • H01M4/926B41M1/12B41M1/26H01M4/881H01M4/8835H01M4/8882
    • A method for manufacturing membrane electrode assembly of fuel cell includes positioning an ion exchange membrane that is cleaned and trimmed to a predetermined size in advance to a base plate, mounting the base plate to a printing platform, attaching a printing plate to the platform, coating a catalyst solution on the printing plate with a scraper, printing the catalyst solution onto the ion exchange membrane with the scraper, heating the ion exchange with a heating board to a temperature of 70-80° C., and waiting for the ion exchange membrane to return flat to complete the coating of the catalyst solution on the ion exchange membrane. The printing and heating steps are repeated for both anode and cathode of the ion exchange membrane. The ion exchange membrane is further subject to hot pressing and then a piece of carbon cloth is positioned on the catalyst coating to serve as a diffusion layer. This completes the manufacturing of the membrane electrode assembly.
    • 一种制造燃料电池的膜电极组件的方法,其特征在于,将预先清洗和修整的离子交换膜预先设定在基板上,将基板安装在印刷台上,将印版安装在平台上,涂布 用刮刀在印版上的催化剂溶液,用刮刀将催化剂溶液印刷到离子交换膜上,加热与加热板的离子交换到70-80℃的温度,并等待离子交换膜 以平整以完成催化剂溶液在离子交换膜上的涂层。 对于离子交换膜的阳极和阴极都重复印刷和加热步骤。 离子交换膜进一步进行热压,然后将一块碳布置于催化剂涂层上,作为扩散层。 这完成了膜电极组件的制造。
    • 2. 发明申请
    • Fluid channel structure for polar plate of fuel cell
    • 燃料电池极板流体通道结构
    • US20060228616A1
    • 2006-10-12
    • US11103571
    • 2005-04-12
    • Charn-Ying ChenPeng YangYeong-Der LinYing-Sheng LeeKin-Fu Lin
    • Charn-Ying ChenPeng YangYeong-Der LinYing-Sheng LeeKin-Fu Lin
    • H01M8/02
    • H01M8/026H01M8/0258H01M8/2483H01M2008/1095
    • A fluid channel structure for polar plate of fuel cell includes a plurality of parallel passages provided in a reaction area of a polar plate, two through holes of fluid inlet and outlet provided on the polar plate, a plurality of communicating channels connecting the through holes to two ends of the passages, and a plurality of tunnels formed between the communicating channels and each of the through holes. The tunnels are formed by closing a top cover onto a locating zone formed on the polar plate near the through hole, so that slots formed at a lower side of the top cover are aligned with horizontal groove sections and vertical step sections formed in the locating zone to form the tunnels. The top cover bears a relatively large fluid pressure, enabling the fluid channel structure to transfer sufficient reactant fluid to the polar plate without the risk of leaking.
    • 燃料电池极板的流体通道结构包括设置在极板反应区域中的多个平行通道,设在极板上的流体入口和出口的两个通孔,连通通孔的多个连通通道 通道的两端,以及形成在连通通道和每个通孔之间的多个通道。 通过将顶盖封闭在靠近通孔的极板上形成的定位区域上形成隧道,使得形成在顶盖下侧的槽与水平槽部分和形成在定位区域中的垂直台阶部分对准 形成隧道。 顶盖具有相对较大的流体压力,使流体通道结构能够将足够的反应物流体转移到极板上,而不会有泄漏的危险。
    • 3. 发明授权
    • Method for manufacturing membrane electrode assembly of fuel cell by printing processes
    • 通过印刷工艺制造燃料电池的膜电极组件的方法
    • US07041191B2
    • 2006-05-09
    • US10854342
    • 2004-05-27
    • Charn-Ying ChenPeng YangYing-Sheng LeeKin-Fu Lin
    • Charn-Ying ChenPeng YangYing-Sheng LeeKin-Fu Lin
    • B05D5/12H01M4/86H01M4/90
    • H01M4/926B41M1/12B41M1/26H01M4/881H01M4/8835H01M4/8882
    • A method for manufacturing membrane electrode assembly of fuel cell includes positioning an ion exchange membrane that is cleaned and trimmed to a predetermined size in advance to a base plate, mounting the base plate to a printing platform, attaching a printing plate to the platform, coating a catalyst solution on the printing plate with a scraper, printing the catalyst solution onto the ion exchange membrane with the scraper, heating the ion exchange with a heating board to a temperature of 70–80° C., and waiting for the ion exchange membrane to return flat to complete the coating of the catalyst solution on the ion exchange membrane. The printing and heating steps are repeated for both anode and cathode of the ion exchange membrane. The ion exchange membrane is further subject to hot pressing and then a piece of carbon cloth is positioned on the catalyst coating to serve as a diffusion layer. This completes the manufacturing of the membrane electrode assembly.
    • 一种制造燃料电池的膜电极组件的方法包括:将预先清洁和修整的预定尺寸的离子交换膜定位到基板上,将基板安装到印刷平台上,将印版安装到平台上,涂布 用刮刀在印版上的催化剂溶液,用刮刀将催化剂溶液印刷到离子交换膜上,加热与加热板的离子交换到70-80℃的温度,并等待离子交换膜 以平整以完成催化剂溶液在离子交换膜上的涂层。 对于离子交换膜的阳极和阴极都重复印刷和加热步骤。 离子交换膜进一步进行热压,然后将一块碳布置于催化剂涂层上,作为扩散层。 这完成了膜电极组件的制造。
    • 4. 发明申请
    • Fuel container for fuel cells
    • 燃料电池燃料容器
    • US20070181572A1
    • 2007-08-09
    • US11346349
    • 2006-02-03
    • Charn-Ying ChenPeng YangChun ChangYing-Sheng Lee
    • Charn-Ying ChenPeng YangChun ChangYing-Sheng Lee
    • B65D6/00
    • B65D77/0486F17C2270/0763H01M8/04208H01M8/04291H01M8/1011Y02E60/523
    • A fuel container is disclosed, which is used for supplying fuel to a fuel cell. The fuel container, adapted for supplying fuel to a fuel cell, is composed of a tank and a cover covering the tank, in that the tank is further comprised of: a first reservoir for accommodating a methanol solution; and a second reservoir for accommodating the water generated during the operating of the fuel cell and the water to be replenished therein. The fuel container of the invention not only is capable of storing and supplying fuel to a fuel cell, but also is capable of recycling the water generated during the operating of the fuel cell to be used as replenishing water. Moreover, the replacing of water and methanol can be accomplished at the same time as the fuel container is replaced, so that the space utilization of fuel cell can be rationalized and optimized for enhancing the usability and convenience of the fuel cell.
    • 公开了一种用于向燃料电池供应燃料的燃料容器。 适用于向燃料电池供应燃料的燃料容器由罐和覆盖罐的盖组成,因为该罐还包括:用于容纳甲醇溶液的第一储存器; 以及第二储存器,用于容纳在燃料电池操作期间产生的水和待补充的水。 本发明的燃料容器不仅能够向燃料电池储存和供给燃料,而且能够再循环在作为补充水使用的燃料电池的操作期间产生的水。 此外,更换水和甲醇可以在更换燃料容器的同时实现,从而可以使燃料电池的空间利用合理化和优化,以提高燃料电池的可用性和便利性。
    • 5. 发明申请
    • Fuel cell system with waste-heat recovery
    • 具有废热回收的燃料电池系统
    • US20070128486A1
    • 2007-06-07
    • US11293229
    • 2005-12-05
    • Charn-Ying ChenPeng YangChun ChangYing-Sheng Lee
    • Charn-Ying ChenPeng YangChun ChangYing-Sheng Lee
    • H01M8/04
    • H01M8/04014H01M8/04186H01M8/1011Y02E60/523
    • A fuel cell system enabling waste heat recovery includes an air supply unit and a fuel supply unit for supplying required air and methanol/water mixture, respectively, to the fuel cell stack for reaction. The methanol/water mixture is then expelled from the fuel cell stack after having been used in the reaction in the fuel cell stack. The methanol/water mixture is supplied to the fuel supply unit from a mixing tank, into which pure methanol and water are separately supplied and then mixed. Waste gas produced in the reaction in the fuel cell stack is expelled from the fuel cell stack and led into the mixing tank to evenly mix with the methanol/water mixture. Reaction heat produced in the reaction in the fuel cell stack may be recovered to heat the air supplied to the fuel cell stack to thereby upgrade the performance of the fuel cell stack.
    • 能够进行废热回收的燃料电池系统包括供给单元和燃料供给单元,用于分别向燃料电池堆供应所需的空气和甲醇/水混合物用于反应。 然后在燃料电池堆中的反应中使用甲醇/水混合物之后从燃料电池堆中排出。 甲醇/水混合物从混合罐供应到燃料供应单元,单独提供纯甲醇和水,然后混合。 在燃料电池堆中的反应中产生的废气从燃料电池堆中排出并引入混合罐中以与甲醇/水混合物均匀混合。 可以回收在燃料电池堆中的反应中产生的反应热,以加热供应到燃料电池堆的空气,从而提高燃料电池堆的性能。