会议论文详细信息
19th Chemnitz Seminar on Materials Engineering – 19. Werkstofftechnisches Kolloquium
Requirements and testing methods for surfaces of metallic bipolar plates for low-temperature PEM fuel cells
Jendras, P.^1 ; Lötsch, K.^1 ; Von Unwerth, T.^1
Department of Advanced Powertrains, Institute for Automotive Research, Technical University of Chemnitz, Chemnitz
09126, Germany^1
关键词: Automotive applications;    Automotive manufacturers;    High flexural strength;    Hydrogen fuel cell vehicles;    Interfacial contact resistance;    Metallic bipolar plates;    Research and development;    Sensitive components;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/181/1/012018/pdf
DOI  :  10.1088/1757-899X/181/1/012018
来源: IOP
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【 摘 要 】

To reduce emissions and to substitute combustion engines automotive manufacturers, legislature and first users aspire hydrogen fuel cell vehicles. Up to now the focus of research was set on ensuring functionality and increasing durability of fuel cell components. Therefore, expensive materials were used. Contemporary research and development try to substitute these substances by more cost-effective material combinations. The bipolar plate is a key component with the greatest influence on volume and mass of a fuel cell stack and they have to meet complex requirements. They support bending sensitive components of stack, spread reactants over active cell area and form the electrical contact to another cell. Furthermore, bipolar plates dissipate heat of reaction and separate one cell gastight from the other. Consequently, they need a low interfacial contact resistance (ICR) to the gas diffusion layer, high flexural strength, good thermal conductivity and a high durability. To reduce costs stainless steel is a favoured material for bipolar plates in automotive applications. Steel is characterized by good electrical and thermal conductivity but the acid environment requires a high chemical durability against corrosion as well. On the one hand formation of a passivating oxide layer increasing ICR should be inhibited. On the other hand pitting corrosion leading to increased permeation rate may not occur. Therefore, a suitable substrate lamination combination is wanted. In this study material testing methods for bipolar plates are considered.

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