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Microfabrication of Microchannels for Fuel Cell Plates

机译:燃料电池板微通道的微细加工

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摘要

Portable electronic devices such as notebook computers, PDAs, cellular phones, etc., are being widely used, and they increasingly need cheap, efficient, and lightweight power sources. Fuel cells have been proposed as possible power sources to address issues that involve energy production and the environment. In particular, a small type of fuel-cell system is known to be suitable for portable electronic devices. The development of micro fuel cell systems can be achieved by the application of microchannel technology. In this study, the conventional method of chemical etching and the mechanical machining method of micro end milling were used for the microfabrication of microchannel for fuel cell separators. The two methods were compared in terms of their performance in the fabrication with regards to dimensional errors, flatness, straightness, and surface roughness. Following microchannel fabrication, the powder blasting technique is introduced to improve the coating performance of the catalyst on the surface of the microchannel. Experimental results show that end milling can remarkably increase the fabrication performance and that surface treatment by powder blasting can improve the performance of catalyst coating.
机译:诸如笔记本计算机,PDA,蜂窝电话等的便携式电子设备被广泛使用,并且它们越来越需要廉价,高效且轻便的电源。已经提出燃料电池作为可能的动力源,以解决涉及能源生产和环境的问题。特别地,已知一种小型的燃料电池系统适用于便携式电子设备。微燃料电池系统的开发可以通过微通道技术的应用来实现。在这项研究中,传统的化学刻蚀方法和微端面铣削的机械加工方法被用于燃料电池隔板微通道的微加工。比较了这两种方法在制造中在尺寸误差,平面度,直线度和表面粗糙度方面的性能。在微通道制造之后,引入粉末喷射技术以改善催化剂在微通道表面上的涂覆性能。实验结果表明,立铣刀可以显着提高制造性能,而喷砂表面处理可以改善催化剂涂层的性能。

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