首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >3D MEMBRANE ELECTRODE ASSEMBLIES (MEAS) FOR DIRECT METHANOL FUEL CELLS (DMFCS)
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3D MEMBRANE ELECTRODE ASSEMBLIES (MEAS) FOR DIRECT METHANOL FUEL CELLS (DMFCS)

机译:3D膜电极组件(MEA)用于直接甲醇燃料电池(DMFC)

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Passive Micro-Direct Methanol fuel cells (micro-DMFCs) can be the power supply solution for the next generation of handheld devices if high volumetric power densities can be achieved. One approach to improve the volumetric power density of passive DMFC designs is to increase the reactive area without a corresponding increase in overall volume by patterning MEAs with corrugated 3-D geometries. In this paper, geometric analysis is presented that demonstrates significant active area gain in fuel cell MEAs patterned with high aspect ratio corrugations. A thermoforming process was used to pattern MEAs with 3-D corrugated geometries using aluminum molds. In order to perform functional tests on 3D corrugated MEAs, the fuel and oxidant reservoirs have been redesigned to accommodate the special packaging requirements of the 3D MEAs. Electrodes were modified to serve as the current collectors and also provided backing layers for catalyst. The simplified design avoids the large clamping force and high strength requirements of the endplate material in order to minimize the electrical contact resistance between the electrodes and the current collectors. Finally, the potential power density gain from the 3D MEAs is illustrated.
机译:如果可以实现高容量功率密度,无源微直接甲醇燃料电池(Micro-DMFC)可以是下一代手持设备的电源解决方案。一种提高无源DMFC设计的体积功率密度的一种方法是通过用波纹3-D几何形状进行图案化而没有相应的体积增加而没有相应的反应区域。在本文中,提出了几何分析,其示出了具有高纵横比波状的燃料电池测量中的显着的有源区域增益。使用铝模具使用热成型过程与3-D波纹几何形状的测量。为了对3D波纹测定进行功能测试,已重新设计燃料和氧化剂储存器以适应3D Meas的特殊包装要求。改变电极以用作集电器,并且还提供用于催化剂的背衬层。简化的设计避免了端板材料的大夹紧力和高强度要求,以便最小化电极和集电器之间的电接触电阻。最后,示出了来自3D测量的潜在功率密度增益。

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