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首页> 外文期刊>Journal of power sources >Development of preform moulding technique using expanded graphite for proton exchange membrane fuel cell bipolar plates
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Development of preform moulding technique using expanded graphite for proton exchange membrane fuel cell bipolar plates

机译:质子交换膜燃料电池双极板用膨胀石墨预成型技术的发展

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摘要

A preform moulding technique using expanded graphite is developed to manufacture composite bipolar plates for proton exchange membrane fuel cells (PEMFCs). The preform is composed of expanded graphite, graphite flake and phenol resin. Preforms utilizing the tangled structure of expanded graphite are easily fabricated at a low pressure of 0.07-0.28 MPa. A pre-curing temperature (100 ℃) slightly above the melting point of phenol powders (90 ℃) induces moderate curing, but also prevents excessive curing. After the preform is placed in a steel mould, compression moulding is carried out at high pressure (10MPa) and temperature (150℃). The fabrication conditions are optimized by checking the electrical conductivity, flexural strength and microstructure of the composite. The optimized electrical conductivity and flexural strength, 250 S cm~(-1) and 50 MPa, respectively, met the requirements for PEMFC bipolar plates.
机译:开发了一种使用膨胀石墨的瓶坯成型技术,以制造用于质子交换膜燃料电池(PEMFC)的复合双极板。瓶坯由膨胀石墨,石墨薄片和酚醛树脂组成。利用膨胀石墨的缠结结构的预成型件很容易在0.07-0.28 MPa的低压下制造。略高于酚粉熔点(90℃)的预固化温度(100℃)可以引起中等程度的固化,但也可以防止过度固化。将预成型坯放入钢模中后,在高压(10MPa)和温度(150℃)下进行压缩成型。通过检查复合材料的电导率,抗弯强度和微观结构来优化制造条件。优化的电导率和抗弯强度分别为250 S cm〜(-1)和50 MPa,可以满足PEMFC双极板的要求。

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