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Review of materials and processing methods used in the production of bipolar plates for fuel cells

机译:燃料电池双极板生产中使用的材料和加工方法的综述

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The bipolar plate is by weight, volume and cost one of the most significant components of a fuel cell stack. The existence or creation of materials to produce bipolar plates which meet all the property requirements and can be readily manufactured to impart the fine channels represents the major challenge. Bipolar plates can be made from various materials with the most common being graphite, metal, carbon/carbon and polymer composites. Each type of material has its strengths and weaknesses. The traditional graphite plates are highly conductive and have good corrosion resistance, but are brittle and require costly machining. The metal plate has excellent bulk conductivity but its major drawback is the expense in imparting the channels and the need for a corrosion resistant coating. Carbon/carbon also requires high machining costs and the plates are subject to warping owing to chemical vapor infiltration (CVI). Materials for polymer composites are relatively inexpensive, and channels can be formed by means of a moulding process. The key is to develop a balance between sufficient electrical conductivity, processability of the resin and the mechanical properties.
机译:按重量,体积和成本计,双极板是燃料电池堆中最重要的组件之一。存在或产生用于制造满足所有性能要求的双极板的材料,并且可以容易地制造以赋予精细通道,这是主要的挑战。双极板可以由多种材料制成,最常见的是石墨,金属,碳/碳和聚合物复合材料。每种类型的材料都有其优点和缺点。传统的石墨板具有高导电性和良好的耐腐蚀性,但易碎且需要昂贵的机械加工。该金属板具有优异的整体导电性,但是其主要缺点是赋予通道的费用以及对耐腐蚀涂层的需求。碳/碳也需要很高的加工成本,并且由于化学气相渗透(CVI),板材容易翘曲。用于聚合物复合材料的材料相对便宜,并且可以通过模制工艺形成通道。关键是要在足够的电导率,树脂的可加工性和机械性能之间取得平衡。

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