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Investigation of Bipolar Plate Forming with Various Die Configurations by Magnetic Pulse Method

机译:磁脉冲法研究不同模具结构双极板的成形

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Bipolar plates are a major part of fuel cells, which are a clean and recyclable energy source. This study was carried out with two dies for a bipolar plate forming investigation with the magnetic pulse method: a bipolar plate die and a 10-channel die. With the bipolar plate die, the forming of bipolar plates with a Cu110 sheet and a Grade 2 Ti sheet indicated that the bipolar plate die needed optimization for a full replication. The obtained maximum average depth percentage was 86% for a Cu110 sheet, while it was 54% for a Grade 2 Ti sheet in this study. A further increase of the depth percentage is possible but requires a much higher capacitor bank energy. The increase of the capacitor bank energy would result in severe tearing, while the depth percentage increase was little. The primary current and flyer velocity were measured at various capacitor bank energies. With the 10-channel die, the die parameters’ effect on metal sheet forming was investigated with a Cu110 sheet and an SS201 sheet. The draft angle had a significant effect on the replication of the die surface. The full replication was achieved for channels with proper parameters with both a Cu110 sheet and an SS201 sheet. Therefore, the bipolar plate die could be optimized based on the 10-channel die results.
机译:双极板是燃料电池的主要部分,是清洁和可回收的能源。这项研究是用两个模具进行的,用于通过磁脉冲方法进行双极板成型研究:双极板模具和10通道模具。对于双极板模具,用Cu110薄板和2级Ti薄板形成双极板表明,双极板模具需要优化以完全复制。在本研究中,获得的最大平均深度百分比对于Cu110薄板为86%,而对于2级Ti薄板则为54%。深度百分比的进一步增加是可能的,但需要更高的电容器组能量。电容器组能量的增加将导致严重的撕裂,而深度百分比的增加很少。在各种电容器组能量下测量一次电流和飞行速度。对于10通道模具,使用Cu110板和SS201板研究了模具参数对金属板成型的影响。拔模角对模具表面的复制有重要影响。带有Cu110薄板和SS201薄板的具有适当参数的通道可实现完全复制。因此,可以基于10通道管芯结果优化双极板管芯。

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