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Properties of graphite-composite bipolar plate prepared by compression molding technique for PEM fuel cell

机译:通过压模技术制备的PEM燃料电池复合石墨双极板的性能

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Bipolar plate is an important key component of fuel cell on the basis of its manifold function. In this direction a lot of effort is going on worldwide to make light-weight and cost-effective bipolar plate for fuel cell application. In the present investigation effort was made to develop graphite-composites bipolar plate by compression molding technique to achieve the requisite goal. The composites plates were prepared by using different reinforcing fillers such as natural graphite, synthetic graphite, carbon black, carbon fibers with phenolic resin as polymer matrix precursor in its liquid and powder form. The composition of different filler constituent adjusted in between 5 and 40 vol%. The composite plates prepared with appropriate proportion of filler components were characterized for physical and mechanical properties. It is found that no single reinforcing filler constituent composites plate gives the requisite properties for being used as bipolar plate in the PEM fuel cell. The judicious combination of reinforcing constituents gives the properties which are required for bipolar plate to use in fuel cell. By controlling the ratio of reinforcing constituents, one can able to achieve properties such as bulk density ~1.85gcm~(-3), electrical conductivity > 150Scm~(-1), shore hardness > 65, bending strength > 60 MPa, modulus > 10GPa and compressive >70 MPa by applying the pressure (100 kg cm~(-2)) during compression molding. I-V characteristic of the composite bipolar plate, with optimum combination of reinforcing constituent, is found to be adequate as per the US-DOE target for composite bipolar plate.
机译:基于双极板的多种功能,它是燃料电池的重要关键组件。在这个方向上,全球正在为制造轻巧且具有成本效益的双极板进行大量努力,以用于燃料电池应用。在本研究中,人们致力于通过压缩成型技术来开发石墨复合双极板,以达到所需的目的。通过使用不同的增强填料(例如天然石墨,合成石墨,炭黑,碳纤维以及酚醛树脂作为液体和粉末形式的聚合物基质前体)制备复合材料板。不同填料成分的组成调整为5至40 vol%。用适当比例的填料组分制备的复合板的物理和机械性能被表征。发现没有单个增强填料组成的复合材料板提供在PEM燃料电池中用作双极板所必需的性能。增强成分的明智组合可提供双极板在燃料电池中使用所需的性能。通过控制增强成分的比例,可以实现诸如堆积密度〜1.85gcm〜(-3),电导率> 150Scm〜(-1),肖氏硬度> 65,弯曲强度> 60 MPa,模量>等特性。在压缩成型过程中施加100 kg cm〜(-2)的压力,压力为10GPa,压缩强度> 70 MPa。根据用于复合双极板的US-DOE目标,发现复合双极板的I-V特性以及增强成分的最佳组合已足够。

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