首页> 外文会议>International Conference on Fuel Cell Science, Engineering, and Technology >FAST DESIGN AND MANUFACTURED ON COMPLEX FLOW CHANNEL BY RAPID PROTOTYPING FOR AIR-BREATHING POLYMER ELECTROLYTE MEMBRANE FUEL CELLS
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FAST DESIGN AND MANUFACTURED ON COMPLEX FLOW CHANNEL BY RAPID PROTOTYPING FOR AIR-BREATHING POLYMER ELECTROLYTE MEMBRANE FUEL CELLS

机译:通过快速原型设计,在复杂的流动通道上进行快速设计和制造,用于空气呼吸聚合物电解质电解质膜燃料电池

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The miniature and air-breathing fuel cell has become the globally major design concepts of fuel cell development recently. In this paper, the authors used 3-D drafting software for fast design and utilize rapid prototyping (RP) technology to accelerate the prototype development of new stack designs and optimize the assembly method. A fast design and convenient manufacture tool, i.e., rapid prototyping, has been first successfully applied to the fabrication of the complicated flow channels of both DMFC and PEMFC in this paper. The honeycomb shape methanol reservoir and honeycomb cathode structure design of DMFC and a complex flow distributor design of mono-polar PEMFC stack, which are almost impossibly manufactured by traditional CNC manufacturing, is fabricated by rapid prototyping technology and illustrated for the extraordinary advantages of RP technology. This paper shows that the fast design and manufacture characteristics are more important for the feasibility study of a complicated structure and any new design ideas. Although the performance of air-breathing pseudo-polar DMFC is only 2.16 mW/cm~2 in peak power density by using 50% of hydrophobic carbon paper; this poor performance is resort to the MEA of DMFC is not well prepared. The other example of the power density of 188 mW/cm~2 (at 0.425 V) in parallel-connection and 123mW/cm~2 (at 4.25V) in serial-connection for the air-breathing mono-polar PEMFC stack are achieved. The performance of the stack is close to the state-of-the-art comparing to recently published literatures.
机译:最近的微型和空气呼吸燃料电池已成为燃料电池开发的全球主要设计概念。在本文中,作者使用了3-D绘图软件进行快速设计,利用快速原型设计(RP)技术来加速新堆栈设计的原型开发,并优化组装方法。快速设计和方便的制造工具,即快速原型设计,首先成功地应用于本文中的DMFC和PEMFC的复杂流动通道的制造。 DMFC的蜂窝形状甲醇储存器和蜂窝水电结构设计和单极PEMFC堆栈的复杂流动分配器设计,几乎不可通过传统的CNC制造制造,通过快速的原型技术制造,并以RP技术的非凡优势说明。本文表明,快速的设计和制造特性对于复杂结构和任何新设计思路的可行性研究更为重要。虽然空气呼吸伪DMFC的性能仅通过使用50%的疏水性碳纸为峰值功率密度仅为2.16mW / cm〜2;这种表现不佳是诉诸DMFC的MEA没有做好准备。实现了在呼吸式单极PEMFC堆叠的平行连接和123mW / cm〜2(在4.25V)中的188mW / cm〜2(0.425V)的电力密度的另一个例子。堆栈的性能与最近发表的文献相比,靠近最先进的比较。

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