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Forming Metallic Micro-Feature Bipolar Plates for Fuel Cell Using Combined Hydroforming and Stamping Processes

机译:液压成形与冲压相结合的燃料电池金属微特征双极板成型

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摘要

Fuel cell constitutes from different components, among which bipolar plates are the important and expensive part. Nowadays, the fabrication methods of bipolar plates are the main challenges in fuel cell technology. Among different methods, the fabrication of bipolar plates from metal forming processes is the best selection. Recently, hydroforming is one of these methods that are used in fabrication of these plates. On the other hand, there are different layouts of flow fields for various usages. These layouts can be categorized, in forming viewpoint, to two distinct groups; one of them is the simple group (e.g. serpentine or parallel flow fields) and the other is the complex group (e.g. pattern and pin type flow fields). This paper investigate on feasibility of a hybrid micro-manufacturing process to fabricate fuel cell metallic bipolar plates that consists of multi-array pin type flow field on a large surface area. First, several forming methods for formation of bipolar plates in the FEM software (ABAQUS 6.10) were simulated. Second, the best method for actual fabrication of metallic bipolar plates without any rupture or defect was hydroformed. The results indicated that the complex flow field metallic bipolar plates can be formed adequately using the combined hydroforming and stamping (sizing) processes.
机译:燃料电池由不同的组件组成,其中双极板是重要且昂贵的部分。如今,双极板的制造方法是燃料电池技术的主要挑战。在不同的方法中,由金属成型工艺制造双极板是最佳选择。最近,液压成形是用于制造这些板的这些方法之一。另一方面,对于各种用途,流场有不同的布局。从布局的角度来看,可以将这些布局分为两个不同的组:其中一个是简单组(例如蛇形或平行流场),另一个是复杂组(例如模式和针型流场)。本文研究了混合微制造工艺制造燃料电池金属双极板的可行性,该工艺由大面积的多阵列针型流场组成。首先,模拟了在FEM软件(ABAQUS 6.10)中形成双极板的几种形成方法。第二,液压成型是实际制造金属双极板而没有任何破裂或缺陷的最佳方法。结果表明,使用液压成形和冲压(定径)工艺相结合,可以充分形成复杂的流场金属双极板。

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