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DMFC Bipolar Material and New Processing for jiDMFC MicroChannel

机译:DMFC双极材料和jiDMFC微通道的新工艺

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摘要

DMFC (Direct Methanol Fuel Cell) is attractive as green energy with the characteristics of high energy conversion rate, lower carbon and emission, eco-friendly alternative energy. In DMFC, bipolar plate is one key component because of its high performance requirements, the bipolar plate nearly always makes about 60% contribution to the cost of all fuel cell, seriously affected the commercialization progress of DMFC. Furthermore, the flow channel design and arrangement in bipolar plate has a great influence on water and heat management, distribution of reactants and smooth resultant discharge. So the DMFC bipolar plate material and flow channel processing technique obtains more concerns. After introducing the bipolar plate structure and its functions, it points out that the bipolar plate material nowadays mainly involves the graphite materials, metals and composite. Then the corresponding preparation method, advantages and disadvantages of these three kinds of bipolar plate materials are analyzed. With the rapid development of Micro and Nano-technology and the demand for electricity supply of MEMS (Micro Electro Mechanical systems, micro-energysources have been the focus, resulting in the miniaturization DMFC (μ DMFC). As the micro-bipolar plates has to survive the severe rugged working environment, such as high temperature, deep-etching, multi-field and alternating pressure), which challenges the material selection, flow channel configuration, processing method and precision. Therefore, hard-to-deform material such as titanium alloy is the preferred material for micro-bipolar plate. However, the new processing method has to be initialized for hard-to-deform material. This paper introduces the traditional and advanced processing methods of μDMFC bipolar plate. The existing problems of the DMFC bipolar plate material selection and processing are analyzed. We initialized one new technique that combines the laser-assisted heating method and micro die-pressing. The laser functions as the heater to warm up the micro sheet metal to reduce its forming force and improve the formability of hard-to-deform materials, which increase the possibility of die-pressing micro-bipolar plate in one stroke. It also means the potential prospect of processing of micro-channel.
机译:DMFC(直接甲醇燃料电池)作为绿色能源具有很高的吸引力,它具有高能量转化率,低碳和低排放,环保替代能源的特点。在DMFC中,双极板由于其高性能要求而成为关键部件之一,双极板几乎总是占所有燃料电池成本的60%左右,严重影响了DMFC的商业化进程。此外,双极板中的流道设计和布置对水和热管理,反应物的分布以及所产生的顺畅排放有很大影响。因此,DMFC双极板材料和流道处理技术引起了更多的关注。在介绍了双极板的结构及其功能之后,指出目前的双极板材料主要包括石墨材料,金属和复合材料。然后分析了这三种双极板材料的相应制备方法,优缺点。随着微米和纳米技术的飞速发展以及对MEMS(微机电系统,微能 来源一直是人们关注的焦点,从而导致了DMFC的小型化(μDMFC)。由于微双极板必须在苛刻的恶劣工作环境(例如高温,深蚀刻,多场和交变压力)中生存,这对材料选择,流路配置,加工方法和精度提出了挑战。因此,难变形的材料例如钛合金是用于微双极板的优选材料。但是,必须对难以变形的材料初始化新的处理方法。本文介绍了μDMFC双极板的传统和先进的加工方法。分析了DMFC双极板材料选择和加工中存在的问题。我们初始化了一种结合了激光辅助加热方法和微压模的新技术。激光器用作加热器,以加热微薄金属板以减小其成形力并提高难变形材料的可成形性,从而增加了在一次行程中对微双极板进行模压的可能性。这也意味着微通道加工的潜在前景。

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