首页> 外文期刊>Journal of Fuel Cell Science and Technology >Channel Dimensional Error Effect of Stamped Bipolar Plates on the Characteristics of Gas Diffusion Layer Contact Pressure for Proton Exchange Membrane Fuel Cell Stacks
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Channel Dimensional Error Effect of Stamped Bipolar Plates on the Characteristics of Gas Diffusion Layer Contact Pressure for Proton Exchange Membrane Fuel Cell Stacks

机译:冲压双极板的通道尺寸误差对质子交换膜燃料电池堆气体扩散层接触压力特性的影响

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摘要

Thin metallic bipolar plates (BPPs) fabricated by stamping technology are regarded as promising alternatives to traditional graphite BPPs in proton exchange membrane (PEM) fuel cell. However, during the stamping process, dimensional error in terms of the variation in channel height is inevitable, which results in performance loss for PEM fuel cell stack. The objective of this study is to investigate the effect of dimensional error on gas diffusion layer (GDL) pressure characteristics in the multicell stacks. At first, parameterized finite element (FE) model of metallic BPP/GDL assembly is established, and the height of channels is considered as varying parameters of linear distribution according to measurements of actual BPPs. Evaluation methods of GDL contact pressure are developed by considering the pressure distribution in the in-plane and through-plane directions. Then, simulation of the assembly process for a series of multicell stacks is performed to explore the relation between dimensional error and contact pressure based on the evaluation methods. Influences of channel number, cell number, and clamping force on the constitutive relation are discussed. At last, experiments are conducted and pressure sensitive films are used to obtain the actual GDL contact pressure. The numerical results show the same trend as experimental results. This study illustrates that contact pressure of each cell layer is in severely uneven distribution for the in-plane direction, and pressure change is unavoidable for the through-plane direction in the multicell stack, especially for the first several cells close to the endplate. The methodology developed is beneficial to the understanding of the dimensional error effect, and it can also be applied to guide the assembling of PEM fuel cell stack.
机译:通过冲压技术制造的薄金属双极板(BPP)被认为是质子交换膜(PEM)燃料电池中传统石墨BPP的有希望的替代品。然而,在冲压过程中,不可避免的是由于沟道高度变化引起的尺寸误差,这导致PEM燃料电池堆的性能损失。这项研究的目的是研究尺寸误差对多电池堆中气体扩散层(GDL)压力特性的影响。首先,建立了金属BPP / GDL组件的参数化有限元(FE)模型,并根据实际BPP的测量结果将通道高度视为线性分布的变化参数。通过考虑面内和面内方向的压力分布来开发GDL接触压力的评估方法。然后,基于评估方法,对一系列多电池堆的组装过程进行了仿真,以探索尺寸误差与接触压力之间的关系。讨论了通道数,单元数和夹持力对本构关系的影响。最后,进行实验并使用压敏膜获得实际的GDL接触压力。数值结果显示出与实验结果相同的趋势。这项研究表明,每个电池层的接触压力在面内方向上均存在严重的不均匀分布,并且在多电池堆中,尤其是对于靠近端板的前几个电池,在整个面内方向上的压力变化是不可避免的。所开发的方法学有助于理解尺寸误差效应,也可用于指导PEM燃料电池堆的组装。

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