首页> 外文期刊>Journal of Fuel Cell Science and Technology >Fabrication of Metallic Bipolar Plates for Proton Exchange Membrane Fuel Cell by Flexible Forming Process-Numerical Simulations and Experiments
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Fabrication of Metallic Bipolar Plates for Proton Exchange Membrane Fuel Cell by Flexible Forming Process-Numerical Simulations and Experiments

机译:柔性成形工艺制备质子交换膜燃料电池金属双极板-数值模拟与实验

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摘要

PEM fuel cell nowadays is expensive for widespread commercialization, though it has obvious advantages, such as high efficiency, high power density, fast startup and high system robustness. As one of the most important and costliest components in the PEM fuel cell stack, bipolar plates (BPPs) account for more than 80% of the weight and 30% of the cost of the whole stack. By replacing the conventional graphitic or machined thick metal plates with the lightweight and low-cost thin metallic sheet BPP with sustainable coating, PEM fuel cell will become an attractive choice for manufacturers. In this study, the fabrication of micro-channel features by flexible forming process (FFP) are studied first, which demonstrates the feasibility of using FFP to manufacture thin metallic BPPs. Then, the obtained knowledge is applied onto the fabrication of real thin metallic BPPs with some process amendment. The first investigation of this study focuses on the forming of micro-channel features with 100 μm thickness stainless steel sheet. A finite element analysis (FEA) model is built and key process parameters (hardness of soft tools used in FFP, friction coefficients between contact surfaces) associated with the formability of BPPs are studied. The FEA is partly validated by the experiments. In the second investigation, finite element analysis method is adopted in the design of the BPP forming process. Based on the numerical simulation results, the die setup is prepared and some process amendments are made to improve the formability of BPPs. As a result, high quality metallic BPPs are obtained in the latter experiments, which demonstrates the feasibility to manufacture the metallic bipolar plate by FFP.
机译:尽管PEM燃料电池具有明显的优势,例如高效率,高功率密度,快速启动和高系统耐用性,但如今对于广泛的商业化而言,其价格昂贵。作为PEM燃料电池堆中最重要和最昂贵的组件之一,双极板(BPP)占整个堆的重量的80%以上和成本的30%。通过用具有可持续涂层的轻质低成本低成本金属薄板BPP代替传统的石墨或机加工厚金属板,PEM燃料电池将成为制造商的诱人选择。在这项研究中,首先研究了通过柔性成形工艺(FFP)制造微通道特征的方法,这证明了使用FFP制造薄金属BPP的可行性。然后,将获得的知识应用于经过一些工艺修改的实际薄金属BPP的制造中。这项研究的第一个研究重点是使用厚度为100μm的不锈钢板形成微通道特征。建立了有限元分析(FEA)模型,并研究了与BPP成型性相关的关键工艺参数(FFP中使用的软工具的硬度,接触表面之间的摩擦系数)。实验证明了有限元分析的有效性。在第二次调查中,在BPP成形工艺的设计中采用了有限元分析方法。基于数值模拟结果,准备了模具设置,并进行了一些工艺改进以提高BPP的可成形性。结果,在后面的实验中获得了高质量的金属BPP,这证明了用FFP制造金属双极板的可行性。

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