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Material property models for polyethylene-based conductive blends suitable for PEM fuel cell bipolar plates

机译:适用于PEM燃料电池双极板的聚乙烯基导电混合物的材料特性模型

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Electrical and thermal conductivity models from Mamunya etal. and Kerner's equation for elastic and flexural modulus have been applied to experimental data to assess model accuracies. Experimental data were gained from a previous study where polyethylene and carbon black, graphite and magnetite composites produced by injection and compression moulding were tested. The electrical conductivity modelling gave accurate fits to the data, though available data were limited and the thermal conductivity modelling produced good fits with R-2 values greater than 0.93. The electrical and thermal model exponents were tuned for best fit and used to compare the modelling results with the literature and gain information about conduction mechanisms such as tunnelling and links, nodes and blobs and variations in local filler concentrations. A modified Kerner's equation to effectively allow for filler type and variations in composite processing was used to improve upon the original equation which modelled modulus behaviour based on the pure matrix. The new equation proved to be a better predictor of elastic modulus than flexural modulus.
机译:Mamunya等人的电导率和导热率模型。弹性模量和挠曲模量的Kerner方程已应用于实验数据,以评估模型的准确性。从先前的研究中获得了实验数据,在该研究中,对通过注塑和压缩成型生产的聚乙烯和炭黑,石墨和磁铁矿复合材料进行了测试。尽管可用数据有限,并且热导率模型产生的R-2值大于0.93,但是电导率模型对数据进行了精确拟合。对电模型和热模型的指数进行了调整,以实现最佳拟合,并用于将建模结果与文献进行比较,并获得有关传导机制的信息,例如隧穿和链接,节点和斑点以及局部填料浓度的变化。为了有效地考虑填料类型和复合工艺中的变化,使用了改进的克纳方程,以改进原始方程,该方程基于纯基质对模量行为进行建模。与弯曲模量相比,新方程被证明是更好的弹性模量预测指标。

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