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The quantitative analysis for the formation of carbon fiber paper and its influencing factors

机译:碳纤维纸形成的定量分析及其影响因素

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Carbon fiber paper (CFP) has been widely investigated as a gas diffusion layer for high-performance fuel cells, while the paper formation, one of the most important properties of CFP, has been rarely reported before owing to the lack of accurate characterization methods. Herein, using a 2D laboratory sensor, a quantitative analysis was conducted to comprehensively analyze CFP formation, carbon fiber (CF) flocs and their influencing factors. Within the study scope of this paper, improved paper formation was always accompanied with a smaller floc area and a lower ratio of large-size flocs for CFP prepared with the same length of CF. CF was too long negatively affected paper formation, as the look-through index rose from 282 (2 mm CF) to 940 (8 mm CF). Either using polyethylene oxide as a disperser or reducing the CF concentration could reduce the look-through index of the CFP (2 mm CF) to below 200. The crowding factor of the CF suspension was suggested to be no more than 5. In addition, improvement in CFP formation led to higher tensile strength and lower air permeability in CFP. All these results are expected to prepare CFP with superior formation, thereby improving other properties of CFP.
机译:碳纤维纸(CFP)已被广泛研究为高性能燃料电池的气体扩散层,而纸张形成是CFP最重要的属性之一,由于缺乏准确的表征方法,已经很少报道。这里,使用2D实验室传感器,进行定量分析以综合分析CFP形成,碳纤维(CF)絮状物及其影响因子。在本文的研究范围内,改善的纸张形成始终伴随着具有相同长度的CFP制备的CFP的较小的絮凝区域和较低的比例。 CF对纸张形成太长了,由于视野指数从282(2 mm CF)上升到940(8 mm CF)。使用聚环氧乙烷作为分散器或降低CF浓度可以将CFP(2mm CF)的视野指数降低到200以下。CF悬浮液的拥挤因子建议不超过5.此外, CFP形成的改进导致CFP中较高的拉伸强度和较低的透气性。预计所有这些结果都预计将制备具有优越的地层的CFP,从而改善CFP的其他性质。

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