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Development of multifunctional carbon composite bipolar plate for vanadium redox flow batteries

机译:钒液流电池用多功能碳复合双极板的研制

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The carbon/epoxy composite bipolar plate is a promising substitute for the conventional graphite bipolar plate for the vanadium redox flow battery due to its high mechanical property and productivity. The carbon/epoxy composite bipolar plate, a multifunctional structure, requires expanded graphite coating or additional surface treatments to decrease the interfacial contact resistance. However, expanded graphite coating has low durability under vanadium redox flow battery operating condition and surface treatments are costly to implement. In this work, excess resin-absorbing method is developed with polyester fabric to uniformly remove the resin-rich layer and expose carbon fibers on the surface of the carbon/epoxy composite bipolar plate. This method not only decreases the interfacial contact resistance by exposing carbon fibers but also forms a unique ditch pattern which is desirable to fix carbon felt electrode in place. Durability against acidic environment, mechanical property, and gas permeability of the composite bipolar plate manufactured by excess resin-absorbing method is investigated.
机译:碳/环氧树脂复合双极板由于其高机械性能和生产率而成为钒还原液流电池的常规石墨双极板的有希望的替代品。碳/环氧树脂复合双极板是一种多功能结构,需要扩展的石墨涂层或其他表面处理以降低界面接触电阻。然而,膨胀的石墨涂层在钒氧化还原液流电池的操作条件下具有低的耐久性,并且表面处理成本高昂。在这项工作中,用聚酯织物开发了多余的树脂吸收方法,以均匀地去除富含树脂的层并使碳纤维暴露在碳/环氧树脂复合双极板的表面上。该方法不仅通过暴露碳纤维来降低界面接触电阻,而且形成独特的沟槽图案,这是将碳毡电极固定在适当位置所需要的。研究了通过过量树脂吸收法制造的复合双极板在酸性环境下的耐久性,机械性能和透气性。

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